MicroPerforation.com gives information about a perforation machine manufacturer

Title

IPM International Perforation Management, hi-tech engineering manufacturing in electrostatic or laser micro cluster perforation machines, systems, cigarette, tipping, plugwrap, flexible packaging, filter, paper, cement sack, bags, Kraft, fine, printing, coating, laminate, media, rotogravure, non-wovens, on-the-fly, online intelligent sensor porosity scanner measurement at high speed moving fabrics, webs, substrates

Description

IPM is a hi-tech engineering manufacturing company, based in Germany and Asia, specialized, with highly skilled technicians and engineers who, with competent partners in Germany and China, develop, design, tailor-made, manufacture, install and commission electrostatic or laser micro cluster perforation systems, machines for fast moving paper webs or other material treatment.

As well with sophisticated, intelligent sensor scanner porosity controls technology for global sales and potential customers as ready-to-use projects.

Strong hands-on engineering, demanding time at clients side, qualification, training, technology transfer for maintenance and operation personnel quality, quantity control are an essential part of our services for prosperous long term cooperation with global clients.

The founder of IPM, Mr. Werner Grosse, has been working since 1979 as application engineer, project, operation manager, technical director in the international field of applied electrostatic and laser processes as well in optical inline porosity control for the tobacco, fine paper, refinement and other industries. During his professional career and collaboration in research assignments he initiated more than 46 inventions, more than 34 patents, outside of Europe and in China as well. Thanks patented technologies and production processes, new generations of refinement procedures, products properties, characteristics, application fields, production machines and vision control systems has been developed. It includes world wide new in-situ dyne measurement process at fast moving plastic films and foils.

After he became a self-employer and entrepreneur in 1992, the GmbH was established in 1993. This resulted in an expansion of micro electrostatic perforation technology into application fields such as filter, cigarette, tipping, packaging, printing, sack, bag, food and non-woven for paper refinement and packaging industry. Since 1994 the GmbH belong to an international supplier group.

After many years of prosperous cooperation as shareholder and managing director, Mr. Grosse left the GmbH at the end of 2001 in order to enhance innovations with his own engineering company IPM International Perforation Management in January 2002 to design production machines and products which among other qualities have specific and outstanding product characteristics in cooperation with relatively large clients, especially in Asia, US and South America.

Apart from this business, he has joined national, international organizations whose aim is to enhance innovative, creative, patent conforming and educational targets and which international exchanging of technical, economical knowledge. As a result of his membership in several organizations and due to his work in the field of micro perforation, material treatment and porosity, scanning and vision control technology, Mr. Werner Grosse has given many lectures, published a great number of technical papers and engineering reports which are available in German, English, Spanish, Mandarin, French and Italian.

He received several government honors from China and other countries. For his expertise as foreign entrepreneur for added values of innovative hi-tech production technology, achieved by transfer of knowledge and successful cooperation with large tobacco Group in China and others to build new machines to improve significant production processes.

http://bfe.yxrs.gov.cn/article.asp?id=2005092011030968

http://www.tobaccochina.com/news/data/20038/c815083548.htm

http://tobaccoreportermagazine.com/china/2004/Dec04China/Industry%20Briefs%201204.htm

IPM Mr. Werner Grosse as Director and his engineer team operates as technology experts with project managements in the tobacco, cigarette supplier, paper, packaging, printing, material treatment, automotive, robotic handling and other hi-tech industry.

In mechanical, electrical engineering, manufacturing, delivery of entire perforation electronics and long term spare part guarantees IPM cooperating since many years with German key-suppliers which manage all commercial details and goods deliveries independently to IPM global clients.

For twin bobbin or wide web laser perforation machines we are cooperating with competent contract partners and cigarette manufactures in China.

Cooperation

IPM is searching for strategic business partnerships with expansion in micromachining, material processing, treatment and production technology for unique applications and product characteristics in certain market segments. These may rewind, printing machine manufacture, force measurement, power electronics, high automation, mechanical electrical engineering, drives, switching units, textile and flexible packaging or process orientated companies. Preferable in regions as China, Indonesia, Malaysia, Thailand, Vietnam, Singapore, India were excellent condition are partly available in industrial fields of electrostatic or laser micro material treatments. It includes existent partnerships in laser perforation or surface treatment technology with Chinese laser manufacturer.

Regions as South America or East Europe would also be an attractive option. Starting capital or financial support is not required, but a functioning, fair partnership for acquisition of new clients, launch production technology to obtain unique product characteristics and improve turnovers. We will be pleased to exchange further details by email.

Existent business contacts: China, Indonesia, USA, France, Spain, Germany, Russia, Vietnam, Malaysia, India, Argentina, Chile, Cuba, Venezuela, Mexico, Brazil, Thailand, Ukraine. Specific information is to find on our websites.

Material treatment and microperforation in cluster systems

Web material as regenerated cellulose film, filter, cigarette, tipping, roll-your-own RYO, make your own MYO, wall, decoration, transparent, coated, laminate, sack, bag or packaging paper, bonded fabrics, spun bonded non-wovens, food, fruit, medical, under roof house or agriculture vegetable covering, packs, technical textiles, fabrics, laminate with base weights 20 g/m2 up to 180 g/m2, thicknesses 10 up to 80 microns, up to 20 g/m2 LPDE coatings are perforate electro statically micro, or by laser with micro or macro holes for wide range of application purposes.

Technology

ELECTROSTATIC NANO MICRO CLUSTER PERFORATION or material treatment, based at micro discharging and sparking, plasma tunnel effects with gas atomic ionization in nano second time windows. The pores are normally statistical irregularly distributed in controlled size ranges from 0.05 up to 80 microns diameter and analogically, under LASER or MICRO or MACRO PERFORATION, arranged in diameter sizes from 60 up to 200 microns, at best non-inclined holes und holes rows of diverse arrangement comprehension. For the naked human eye invisible electrostatic nano or micro perforations may be arranged in areas or zone bands with specific distances within its web. Controlled pore sizes in wide ranges from 0.050 up to 80 micron diameters by holes sequences up to 16 million pores per second and 0.1 up to 3 mill Joule discharge energy for each pore. Process and power electronics patent grant with DE10328937.

Performance

Arrangements of zones are usually carried out in width from 2 to 6 mm and pores density of 15 up to 250 pores per square cm whereas the perforation of areas results in pore densities of up to 5 million pores per m2 in surface-all-over design. Electro static perforations allow porosity levels from 80 up to 2500 Coresta Units (ml/min/2cm2, 1000Pa), equality from 40 down to 3 Gurley material web widths from 100 up to 2000mm at web speeds of up to 500 m/min, depending on porosity and material consistency in relation to its ability to perforate.

Physical Properties

One of the foremost postulation which can be applied to many application purposes and products containing bonded fabrics, bag or packaging papers, non-woven, etc. with gas or steam permeability but water in-permeability will be found at the application stage of the electrostatic micro cluster perforation. Which means pore sizes from 0.050 up to 80 microns diameter by up to 5 million per square meter. This is due to the water’s greater surface tension which hampers the permeation through the relatively small micro pores. These and other physical advantages of the relatively small pores necessarily demand the application of the cluster perforation method because alternative perforation or processes are NOT feasible, too expensive or simply uneconomical and would not lead to a successful application. Products, applications, advantages

breathable and ventilated mass products as cigarette, tipping, filter, packaging, plug wrap, refinish or fine paper booklet, bible, printing, flexo, magazine, promotion, flyers or newspaper with improved or modified surface property decoration or gift paper with thin coating films PVC laminate, Vinyl, decoration or wall paper to eliminate one side condensation effects enable control gas exchanges, avoid rises of mildew or rottenness joint or corner Kraft paper tapes to avoid glue bubbles and enables material diffusion fleece bonding material with thin plastic film layers for outdoor and under roof protection or covering, wooden houses, etc., enables gas exchanges technical textiles for gas exchanges to avoid condensation processes breathable overalls, heavy duty or disposable work dresses, trousers, aprons, jackets or shoes made of thin PE fleeces or other material thin PP or PE contacted Kraft paper bag, cement sacks, plaster, maize, grain, pet food, granulate or powder for gained air outlet or blowing during filling processes with multiple time reduce efficiency keep packed products in the same barrier condition as without micro perforation extending storage, live time or durability of certain goods and products biotopes and prevention of water pollution synthetic, real leather, or cloth inlets for comfortable non sweat wearing under wet, high humidity and tropical condition soap, deodorant, hygiene, beauty creams, baby care or other packaging products which needs smell suggestion for marketing indication and buying advantages vegetable, flowers or food with paper packaging replacements for gas exchanges bread, rolls, fruits or food to improve the freshness and aroma technical multi layer foils for industry, medical, bioengineering or filtration purposes, surface modification or improve roughness micro filter, membranes, battery separation layers, bio or lab analytic, alcohol liquid or blood filtration, clean room, agriculture plant applications reduction or force growth rates of bio processes

Differences and system integration

It is also used especially for additionally treating materials when aiming special characteristics by physical or regular process reasons what cannot be achieved by other process technologies. Moving material web base weights from 20 up to 180 grams per square meters by thicknesses 10-80 microns are possible to use. Including defect inspection, process automation, moisture vapor transmission rate, abrasion resistance of lamination, water proof, ventilated or breathable fabrics. Our state-of-the-art industrially approved, sophisticated, compact, multi functional, optical online sensor scanning systems together or without electrostatic laser perforation technology operates precise and reliable 24/7, are integrate able into existing rewinding, slitting, spooling, spreading, printing, labeling, complex production lines or other machines and production processes as well. Also, they can be used as completely independent micro surface-all-over or zone perforation units. Fully new ranges of applications will be made available total new products with special features and properties.

Micro laser perforation technology

Laser perforation in general, possible to perforate by pulsed or enlarged focused laser beams are holes sizes from 60 up to 200 microns at density of holes of typically 10 up to 30 holes per cm, holes sequences 100000 up to 500000 holes per second at a maximal of 16 punctured rows by laser distributed over the material web width with traditional systems or machines. Means in cigarette, tipping, plug wrap, filter, packaging, packs, tear tape, plastic and other material webs. With porosity levels from 100 up to 3000 C. U., normally in web widths from 100 up to 500 mm at web speeds of up to 600 m/min, depending on porosity and material consistency in relation to its ability to perforate.

IPM’s laser cluster material treatment and microperforation technology

LPM-1 is patent granted DE102004001327 and operates with quadruple Co2 carbon or other laser beam inputs up to 4 Kilowatt to a high power twin vacuum level multiplexer to generate up to 200 individual laser output channels, perforation rows across the web material, combines automatic positioned laser perforation heads, focus setting, web speeds up to 400 m/min, web widths up to 2000 mm, up to 2.5 Million holes per second, jumbo roll-by-roll production, optical inline permeability as perforation line position control, porosity feedback, hi-tech automation level and other features. Each laser micro perforation lines can archive 100 up to 1000 C.U.

Industry fields

The conception of high power twin level laser beam multiplexer enables hundred options in other industry application fields as cutting, cut-off, welding, surface finishing, high-speed drilling, ablation, cleaning, micromachining, polishing, forming, melting, surface treatment, roughness improvement. Each of 200 single laser beams is coupled via flexible hollow fibers allows treatment processes or microperforation heads easy to position in X across and in Y direction of running web or static placed sheet material. The automatic processes, equipments and devices open now outstanding possibilities in industry, metal, plastic, domestic, tobacco product, medical, hygienic, wall covering, security cards, bank notes or food application.

LPM-1 means cluster material treatment at wide web, large area, surface or whole material treatment, high power dual rotation laser beam splitter, twin multiplexer level, CO2, YAG, EXCIMER, DIODE, SOLID STATE laser with multiple optical inputs, flexible hollow waveguide fiber, HCW, HWG and up to 200 output channels. Material treatment with robot handling for stainless steel, ceramic, aluminum, wafer, glass, ceramic, brass, copper, wafer, silicon, plastic sheets, titanium, jewelry, silicon, solar, panel, photovoltaic, micromachining, slitting, rewinding, refining, hybrid laser cutting machines or stand along systems.

Anti piracy counterfeiting design and cluster system

As known offline laser perforation machines or processes generating strait holes lines in web direction of the running tipping or other material sheets. Excluding spray laser designs which looks similar as random holes into certain zone areas as electrostatic perforation. The world wide new and patent pending DE102004012081 Micro Laser Line technology generating cluster pattern, micro holes, sinus, waves, zigzag, cryptograms, logos, holograms, brand names or other kind of perforation designs in web direction which can look like as a group of micro laser lines. Concerned tipping paper means non coaxial circumference at the cigarette filter. New beam divert moving, scanning, flipping elements control each single laser perforation lines in across material direction which are precise focused for micro holes in ranges from 50 up to 120 microns. All to uses for laser sources and types as Co2, YAG, EXCIMER, UV, FIBER, SOLID STATE or DIODE.

Super high-speed Co2 laser beam control

Technologically as ultra high scan speeds up to 4000 Hz or 240000 rpm with commercial air-bearing motors. REAL galvanometer scanner alternatives, precise laser beam deflection up to 4 Kilowatt Co2 by high dynamic performances. From 8 up to 15 mm laser beam aperture diameter, advantage beam quality factor M2 less 0.9 for focus spots down to 60 micron. Absolute diffraction limits, because small focused spot sizes which are proportional inversely of laser beam input diameter. In other words, larger laser beam apertures will produce smaller focused spot sizes, as especially needed for micro cluster perforation, drilling and other micro machining applications.

Spin actuator with special optical coating, optimized outer shape, very precise rotation balance by inner body laser ablation, hollow body with inner cavities by low mass material condition, excellent relation of stiffness-to-weight, high hardness, adapted total vibration free vacuum cylinder case, asymmetrically rotary reflection cones from 40 up to 80 mm base diameter, average mirror surface roughness lower as 0.1 micron, form accuracy lower 0.01 micron, operation sequences are precise synchronize with material speed. Envelope curves of the selected perforation pattern are storage and calculated by PLC control before single holes and holes groups supervised during production processes.

Product process advantages enable total different product indicators and milestones against other laser perforation or material treatment processes which allows significant product property, trademark indications, patent claims, unique company features in micro perforation of tipping, cigarette packaging or other paper or material. E.g. wide range of laser perforation groups as common active ventilation zone to obtain several advances in air stream distributions into cigarette filter, perfect perforation line guiding around cigarette filters or other food, domestic, industry products to assure constant porosity results.

Several pattern or wave line design for different brands, number of holes or pattern with 10 or 20 per cm length are constant, porosity range 100 up to 1000 C.U., holes sizes 60 up to 120 micron, holes densities from 100000 up to 600000 holes per second in total.1 up to 6 perforation pattern, lines, marks or scripts can combines a group, perforation hole, pattern quality or porosity remains in standard levels.

Other web material, substrate or products are treatable in similar processes, existent laser perforation, treatment machines are able to modify with new optical, micro mechanical and control elements. Low investment and finance budget of technical modifications because exchanges of certain elements, complete devices are adaptable on existent offline perforation machines or other laser treatment handling systems. Capability to adapt beam divert devices or units at online perforation system at cigarette making machines up 12000 cpm.

OESP-1 OLP-1 multiple ventilation of mass products

Electrostatic perforation has been used since 30 years for ventilation of non-filter cigarettes to create a directed and guided air bypass. For this purpose, cigarette paper for some MYO or RYO and almost every kind of filter cigarettes tipping papers are perforated electro statically offline in zones from 2 up to 6 mm width or in rows width by uses of sealed-off laser to reduce the harmful substances such as nicotine and condensate down to countries restricted levels. Another effect is the possibility to control the degree of ventilation of cigarettes. IPM inline technology and former patents EP0460369, DE4018209 enables cigarette tipping paper perforation while cigarette making processes to reduce nicotine and condensate levels for non filter cigarettes.

The electrostatic inline multiple perforation process opening now new possibilities for cigarette tipping paper ventilation during cigarette manufacturing by full integration of perforation equipment or cassettes. This provides for uniform, intensive and very powerful perforation and the cigarette paper treated can be continuously supplied to the cigarette machine for further processing in the longitudinal direction of the cigarette. Advantages, direct mechanical integration of perforation units, functional interfacing and EMI level in according of international CE conformity, EG, EN, NEC, CCC standards archiving high production efficiencies and controllable ventilation grades on highly automated cigarette machines. Dual IGBT power electronics and multiple perforation performances cross the strips and circumference of each cigarette, allows problem less perforations on high speed cigarette making machines up to 12000 cpm at MAX-S, MK9, Protos 80, 90.

Online perforation with patent granted high-speed laser multiplexer, 8 laser lines, 10.6 microns wavelength, Co2 sealed-off e.g. M2Additional Information

Related Domains



Description

云南认可Grosse为“外国专家” 德国IPM国际项目管理公司的高级执行长官 Werner Grosse 荣获了中国云南省政府颁发的彩云外国专家奖。

此项奖励是为Grosse在中国进行的工程设计和技术转让项目而颁发的。这些技术项目包括静电及激光穿孔技术,以及用于水松纸的光学在线透气控制系统。

IPM国际项目管理公司已经与红塔集团等知名的中国烟草公司进行了合作。

IPM 国际项目管理公司 成立于2002年年初, 致力于打孔新工艺,尤其是 MICRO ELECTROSTATIC LASER PERFORATION 打孔机,在世界香烟生产、供应和精制纸工业市场的推广。

IPM 是一个工程公司,该公司以其专业技术人员和工程师队伍开发新型打孔机和光学孔隙率测量技术,与其它公司合作,在全世界范围内进行设备的生产、销售和安装,向客户提供交钥匙工程。该公司的服务范围还包括对技术人员和生产操作人员的技术培训。

Werner Grosse 先生是IPM公司的创始人。自1979年起,作为开发和实施工程师以及项目负责人, 他在静电打孔和光学在线孔隙率测量技术的国际开发领域里,通过合作研究,为带状物品在精制纸的调制改进和卷烟业完成了44项发明,其中许多已成为国内和国外的专利。由此,开发出了新的精制方法、打孔工艺、光学在线测量系统和生产设备,并且在全世界销售。这些设备也适合于微观打孔物品所具有的特殊产品性能。

他于1991 年开始创业,并于1993年创立了微观打孔工程股份有限公司。以此,将ESP-打孔技术的应用范围扩展到滤纸、包装纸、包装袋纸、韧性纸、无纺布和纸的调制改进等其它领域,尤其是还扩展到了国际市场的包装业。自1994年起,微观打孔工程股份有限公司归属于集团。 在经营多年之后,Grosse 先生于 2001 底离开了这家企业,开始以他的新公司 IPM 进行新的创业,并且将公司的生产技术推向世界。

除此之外,Grosse先生还是一些国内和国际机构的成员,这些机构密切注视革新的目标、有创造性的目标、专利权销售以及联邦确定的目标,并且,进行国际水平的技术经济信息交流。

Yunnan Government http://bfe.yxrs.gov.cn/article.asp?id=2005092011030968

Tobacco China http://www.tobaccochina.com/news/data/20038/c815083548.htm

http://tobaccoreportermagazine.com/china/2004/Dec04China/Industry%20Briefs%201204.htm

作为这些机构的成员,他在静电微观/宏观打孔领域和光学在线过程测量技术领域,用德文、英文、西班牙文、法文和意大利文发表了大量的专业文献报告,这些专业文献和报告列入了 云南认可 Grosse 为“外国专家”

德国IPM国际项目管理公司的高级执行长官 Werner Grosse 荣获了中国云南省政府颁发的彩云外国专家奖。

此项奖励是为Grosse在中国进行的工程设计和技术转让项目而颁发的。这些技术项目包括静电及激光穿孔技术,以及用于水松纸的光学在线透气控制系统。IPM国际项目管理公司已经与红塔集团等知名的中国烟草公司进行了合作。


高功率激光多路器的工作原理 - 专利号 DE102004001327

随着Co2光导纤维的使用,一个旋转立方体或者2*4光束分配,也可是多棱镜上的一个平面, 一个高功率光学激光多路器在完成一个循环上的瞄准,是可以实现与工业使用200道激光通道匹配的 。在激光打孔的那部分装置和收卷部分之间是控制输出光束在材质幅上打孔的光学在线透气度控制系统的安装位置。

应 用

较高自动化水平和马达调整聚焦的每一个打孔头,可调整位置使得光束能够穿过材质幅。那些自动化的程序和他们的设备在宽幅激光打孔机以完全的新方式运作,速度可达到400m/min, 以及非常高数量的激光孔道。

随着光学在线透气度的使用,透气度,孔的质量和所有的孔排位置都可以控制,并且可以直接通过反馈补偿到打孔系统。也就是意味着,在中间不停机的情况下,完整的生产能打出高质量和数量的产品。

新的高功率的激光多路器的应用领域很多,如切削, 焊接,表面处理,钻孔等。

概要 随着Co2光导纤维的使用,一个旋转立方体或者2*4光束分配,也可是多棱镜上的一个平面, 一个高功率光学激光多路器在完成一个循环上的瞄准,是可以实现与工业使用200道激光孔道匹配的,同时,每一个激光孔道的输出功率可以达到40瓦。

离线激光打孔机的孔道达到200道,激光光束的自动对准和设置,材质幅速度达到300m/min, 幅宽达到1000mm, 一次可以打20盘材质, 一卷接一卷的可达到25000m, 以及完全自动化的生产,包括OPSS-1透气度扫描和反馈控制系统,非常适合大卷的生产。 一卷接一卷不停机的生产的激光打孔技术,适合象纸,包装,涂层材料和其他适合激光打孔的材质。


宽幅激光打孔机的原理 本专利描述的宽幅薄型基材激光打孔机的打孔方法和设备,可达到幅宽2000mm,200道打孔孔道以及每秒打出200万个孔。 波长在500nm 到10.6 µm之间的新高功率激光多路器(分光器)从4/8 KW的激光源输入的4条光束中分出多达200条的光束输出,在一盘纸上能够打出多达6排激光孔,自动化的激光光束的校准和对准,纸幅速度达到了300 m/min,幅宽达到1000 mm,不停机生产达到25000 米和完全自动化的生产。一次生产过程即可打出多达160盘纸。当然,如果有OPSS-1透气度扫描和反馈控制系统帮助的话。 高功率激光多路器的工作原理

随着Co2光导纤维的使用,通过一个旋转立方体或者2*4光束分配,也可是多棱镜上的一个平面, 一个高功率光学激光多路器完成一个循环上的瞄准即打孔,是可以实现与工业使用200道激光通道匹配的 。在激光打孔的那部分装置和收卷部分之间是控制输出光束在材质幅上打孔的光学在线透气度控制系统的安装位置。 应 用

较高自动化水平和马达调整聚焦的每一个打孔头,可调整位置使得光束能够穿过材质幅。那些自动化的程序和他们的设备在宽幅激光打孔机以完全的新方式运行,速度可达到 400m/min, 以及非常高数量的激光孔道。 随着光学在线透气度的使用,透气度,孔的质量和所有的孔排位置都可以控制,并且可以直接通过反馈补偿到打孔系统。也就是意味着,在中间不停机的情况下,完整的生产能打出高质量和数量的产品。

新的高功率的激光多路器的应用领域很多,如切削,焊接,表面处理,钻孔等。概 要 随着CO2光导纤维的使用,通过一个旋转立方体或者2*4光束分配,也可是多棱镜上的一个平面, 一个高功率光学激光多路器在完成一个循环上的瞄准即打孔,是可以实现与工业使用200道激光孔道匹配的,同时,每一个激光孔道的输出功率可以达到40瓦。

离线激光打孔机的孔道达到200道,激光光束的自动对准和设置,材质幅速度达到300m/min, 幅宽达到1000mm, 一次可以打20盘材质, 一卷接一卷的可达到25000m, 以及完全自动化的生产,包括OPSS-1透气度扫描和反馈控制系统,非常适合大卷的生产。

一卷接一卷不停机的生产的激光打孔技术,适合象纸,包装,涂层材料和其他适合激光打孔的材质。


MLL-1 – 微激光在线/离线打孔 – 专利号 DE102004012081

基本概述 众所周知,除了喷射式激光打孔机象静电打孔那样在固定的区域打出任意孔以外,其他的离线激光打孔机和工艺都是在水松纸(接装纸)或者其他的薄型材质运行方向上打出规则的孔道。

世界范围内的新型微型激光打孔技术在材质幅方向上产生湾型,波浪型,之字型或者其他类型的孔道,他们看起来象微型激光束的包装。

水松纸(接装纸)是指包裹在卷烟滤棒上的那层纸。

新的转向装置使得每一条激光束在穿过的方向上,直接聚焦到运行的纸幅和其他的材质幅上。 产品和工艺优点 微型激光打孔跟其他的激光打孔工艺完全不同,它应许产品拥有自己的特性/商标 - 专利申明 微型激光打孔的设计说明了一种水松纸打孔工艺和 水松纸供应商 孔的数量可达:10 – 20 个 透气度范围: 100 - 2000 CU 孔道数:1~6道 打孔质量和透气度保持在标准范围内 其他材料和产品的打孔或者论述是相同的 现有的和新的激光打孔机/系统 现有的激光打孔机可以通过改进光束转换的光学,机械和控制单元部分成为新的微型激光打孔机。 技术改革的投资非常低,因为这些确定的部件


基本概述 众所周知,除了喷射式激光打孔机象静电打孔那样在固定的区域打出任意孔以外,其他的离线激光打孔机和工艺都是在水松纸(接装纸)或者其他的薄型材质运行方向上打出规则的孔道。世界范围内的新型微型激光打孔技术在材质幅方向上产生湾型,波浪型,之字型或者其他类型的孔道,他们看起来象微型激光束的包装。

水松纸(接装纸)是指包裹在卷烟滤棒上的那层纸。新的转向装置使得每一条激光束在穿过的方向上, 直接聚焦到运行的纸幅和其他的材质幅上。

产品和工艺优点 微型激光打孔跟其他的激光打孔工艺完全不同,它应许产品拥有自己的特性/商标 - 专利申明 微型激光打孔的设计说明了一种水松纸打孔工艺和提供给水松纸供应商一种选择。 激光打孔机宽的打孔范围能够象普通的通风区域那样获得高质量的空气进入卷烟滤棒 在滤棒周围完全的打孔能够使卷烟达到透气度的要求。 能够为不同的品牌设计出几种打孔图案。 孔的数量可达:10 – 20 个 透气度范围: 100 - 2000 CU 孔道数:1~6道 打孔质量和透气度保持在标准范围内 其他材料和产品的打孔或者论述是相同的

现有的和新的激光打孔机/系统 现有的激光打孔机可以通过改进光束转换的光学,机械和控制单元部分成为新的微型激光打孔机。 技术改革的投资非常低,因为这些确定的部件的价格很低 MLL-1设备能够适应现有的离线激光打孔机或者其他的打孔系统。 在卷烟机的在线打孔系统上安装MLL-1设备是可行的。

应 用 对适合微激光打孔MLL-1的材料,象纸,金属,绝缘材料,塑料等薄型基材,给他们设计出波形,之字型,或者其他形式的纹路,就象在卷烟滤棒上打出完美的孔进行通风那样,MLL-1微激光打孔很容易在打孔位置上做到这一点。

微激光打孔的特别之处就是从根本创造出产品新的功能。例如在包裹卷烟滤棒的水松纸靠近嘴唇端或者其他象这类的产品,微激光打孔机能打出品牌的标示或者能够被人们认可的标志,如果孔是可见的,或者借助放大镜能够看到,就象是打孔密码一样。

激光束的偏振,从技术上说,就是Piezo 偏振器,象装有金属光学或者不对称旋转反射圆锥体的螺线管,它的功能和时间连续操作与纸幅的速度是相同的。

在对单一孔和孔群的检测由程序控制系统对当前的打孔方法监督和管理之前,选择打孔形式轮廓线的点,是经过计算过的。


ESP(静电打孔)IGBT 双高功率、高频率开关单元, 专利 DE10328937

应用于ESP静电打孔, 透气度范围:80 C.U. – 2500 C.U. 纸幅走纸速度达到450m/min,纸幅幅宽达到1200mm 电路条件 对象精制纸,水松纸,卷烟纸,包装纸或者其他基质材料的微型或者纳米级的静电打孔,一个双HV fast switching IGBT, MOSFET or HVFET 高功率/频率的电路就可以达到。电路本身有交替的时钟频率和可变的脉冲宽度, 一个普通的负载电容和连接高压变压器硅铁的自感应线圈就可以提升功率/频率转换,而不需要对频率进行共振操作。

电路的优点 在固定的时间操作窗口,可控的脉冲时钟以常量或者变量的频率,使得高压电火花穿过材质幅,产生孔的大小和范围。整个电路的重复频率能达到一个半导体产生的双开关频率。

在每一个电火花道上的可变电流总和达到150 kHz的总开关频率是可行的。 同时,双半导体开关单元能达到仅有一个单元工作时的双倍功率水平。

应用领域 微型打孔 现在,柔型材料的超微型,微型,纳米级的打孔都能打出极小的孔和产品。这种打孔技术可应用在打孔量比较多的包装,填充,无机织工业,也可应用在科学和技术领域 。

多年来,克重在 20 - 150 g/sqm精制纸或者其他类型的纸张,静电打孔已经能在大区域打出孔。

孔的大小在1 - 100 微米之间,孔的分布可达到4 百万个每平方米,或者在一厘米的打孔区域达到200个/每平方厘米。透气度范围在 50 - 2500 C.U,每个孔的透气度达到 3 - 50 C.U

其他应用领域 新的双半导体可应用在建造混合驱动器,半导体高水平平台,或者支持电容,高压磁体变压器的高低转换器。

其他的优势如在频率/功率传输和能量损失比的高效率。 传统的冠状或者中型频率发生器达到30 KHz运行范围很容易改造成双频率和功率的水平。

电路条件 对象精制纸,水松纸,卷烟纸,包装纸或者其他基质材料的微型或者纳米级的静电打孔,一个双HV fast switching IGBT, MOSFET or HVFET 高功率/频率的电路就可以达到。电路本身有交替的时钟频率和可变的脉冲宽度, 一个普通的负载电容和连接高压变压器硅铁的自感应线圈就可以提升功率/频率转换,而不需要对频率进行共振操作。

电路的优点 在固定的时间操作窗口,可控的脉冲时钟以常量或者变量的频率,使得高压电火花穿过材质幅,产生孔的大小和范围。整个电路的重复频率能达到一个半导体产生的双开关频率。

在每一个电火花道上的可变电流总和达到150 kHz的总开关频率是可行的 同时,双半导体开关单元能达到仅有一个单元工作时的双倍功率水平。 应用领域 微型打孔 现在,柔型材料的超微型,微型,纳米级的打孔都能打出极小的孔和产品。这种打孔技术可应用在打孔量比较多的包装,填充,无机织工业,也可应用在科学和技术领域。多年来,克重在20 - 150 g/sqm 精制纸或者其他类型的纸张

静电打孔已经能在大区域打出孔。孔的大小在1 - 100 微米之间,孔的分布可达到4 百万个每平方米,或者在一厘米的打孔区域达到200个/每平方厘米。

透气度范围在 50 - 2500 C.U,每个孔的透气度达到3 - 50 C.U

其他应用领域 新的双半导体可应用在建造混合驱动器,半导体高水平平台 或者支持电容,高压磁体变压器的高低转换器。

其他的优势如在频率/功率传输和能量损失比的高效率。

传统的冠状或者中型频率发生器达到30 KHz运行范围很容易改造成双频率和功率的水平。


光学在线透气度扫描系统 专利 DE10251610

应用于静电和激光打孔机,或者其他纸张 幅宽:300mm - 1600 mm 透气度范围:80 C.U. - 5000 C.U. 对静电打孔每一条孔道的全反馈 光学透气度控制的运行原理 静电和激光打孔机在幅宽达到2000 mm,生产时速度达到600 m/min的打孔幅型材料打孔,对孔的透气度是很难控制的,因为象幅型材料的间隙,挤压,折叠,灰尘以及流动的污垢都会对系统产生影响,造成透气度控制的困难。 这些困难被固定的装置克服了,即光学在线透气度检测系统。 透气度范围在:80 C.U. - 5000 C.U

OPSS-1 透气度扫描系统的多单元传感器包括一个精确的线激光,一个颜色传感器和一个内部控制单元,用于扫描打孔区域并且测量。它控制卷形或者盘形材质的形状,并能与存在的测量材质重量,厚度,成分的扫描单元机械连接。

当两套不同的传感器在盘纸和宽纸幅做横向运动时,能够实时收集打孔位置和透气度的数据,并且在激光/静电打孔机的在线测量程序和他们的设备上显示出来。

测量系统横向运动穿越纸幅时,线激光检测单一孔,孔群和打孔区域的质量和位置。同时,光发射单元检测透气度范围和进行积分运算。 所以,OPSS-1 透气度扫描系统能实时,直接将数据反馈到打孔系统进行补偿,使得能够实现生产不需要停机和产品质量的可控。

概述 光学在线透气度控制系统是由包括一个精确的线激光,一个颜色传感器和一个内部控制单元组成两个不同的传感器穿越纸幅时,进行实时位置和透气度控制和检测的。

对离线激光/静电打孔机来说,大批量不停机的生产是能够做到从幅宽300 - 1600mm,透气度范围从80 - 5,000CU,并且直接把数据反馈到每一条孔道,自动生产控制的。整个OPSS-1 系统能够使激光或者静电打孔机的生产在质量和数量上符合ISO认证要求。 光学在线透气度扫描系统 专利 DE10251610 应用于静电和激光打孔机,或者其他纸张 幅宽:300 - 1600 mm 透气度范围:80 C.U. - 5000 C.U. 对静电打孔每一条孔道的全反馈

光学透气度控制的运行原理 静电和激光打孔机在幅宽达到2000 mm,生产时速度达到600 m/min的打孔幅型材料打孔,对孔的透气度是很难控制的,因为象幅型材料的间隙,挤压,折叠,灰尘以及流动的污垢都会对系统产生影响,造成透气度控制的困难。 这些困难被固定的装置克服了,即光学在线透气度检测系统。

透气度范围在:80 C.U. - 5000 C.U. OPSS-1 透气度扫描系统的应用 OPSS-1 透气度扫描系统的多单元传感器包括一个精确的线激光,一个颜色传感器和一个内部控制单元,用于扫描打孔区域并且测量。

它控制卷形或者盘形材质的形状,并能与已有的测量材质重量,厚度,成分的扫描单元机械连接。当两套不同的传感器在盘纸和宽纸幅做横向运动时,能够实时收集打孔位置和透气度的数据,并且在激光/静电打孔机的在线测量程序和他们的设备上显示出来。

测量系统横向运动穿越纸幅时,线激光检测单一孔,孔群和打孔区域的质量和位置。同时,光发射单元检测透气度范围和进行积分运算。 所以,OPSS-1 透气度扫描系统能实时,直接将数据反馈到打孔系统进行补偿,使得能够实现生产不需要停机和产品质量的可控。

概 述 光学在线透气度控制系统是由包括一个精确的线激光,一个颜色传感器和一个内部控制单元组成两个不同的传感器穿越纸幅时,进行实时位置和透气度控制和检测的。

对离线激光/静电打孔机来说,大批量不停机的生产是能够做到从幅宽300 ~ 1600 mm,透气度范围从80 - 5000 CU,并且直接把数据反馈到每一条孔道,自动生产控制的。整个OPSS-1系统能够使激光或者静电打孔机的生产在质量和数量上符合ISO认证要求。


在运行的塑料膜和其他基质材料上的光学表面张力控制 下载 以前的专利申请 DE19543289

http://www.microperforation.com/englishengineerreport.htm

此专利描述的是基质材料在其运行方向和横向方向上,进行光学动态在线表面张力检测的一种方法和设备。 在这个发明中,所指的运行基质或者材料幅包括象PE, PP, LDPE, HDPE, LLDPE, EVOH, PTFE, PET, PU, PMMA, PBMA, PVC, PA的塑料薄膜,也包括经碾压过或者涂层的薄膜,纸幅;专利还显示了进行光学测量传输的波长范围在1200 到2200 nm之间。

在许多应用领域内,要求材质在制造,印刷,运行工艺方面,有更好的可印刷性,涂层性,支持能力,可通过增加材质的表面张力分别得到更好的湿度适应性,和材质支持性。

此专利描述的是光学动态在线表面张力测量的方法和设备,测量范围在30 - 60 dynes 达因)。

与材质幅运行方向垂直的方向上安装有一个彩色光发射器,它有两个光学孔道,并且彼此成90°角;在材质幅的另一边安装有两个光学的测量系统以接收彩色光发射器发射的光。他们与光发射器组成了测量间隙。

根据材质的特性选择波长范围,光束发射角度转换,光偏振槽膜和横向位移,在材质幅边界区域IR光子形成光的散射和衍射。经过测量接收的光的强度和计算,就能直接得出材质幅表面张力。

影响表面张力测量的因素包括:材质本身,材质表面密度,结晶度,厚度,灰尘,结构,磁性强弱,温度和材质处理类型。 介绍 对运行中的象塑料膜一类,涂层和碾压过的材质幅,进行无连接,实时和在线运行的表面张力测量系统,在世界范围内是没有的。由于经过表面处理(未处理)的塑料膜,无机纤维,涂层和碾压纸的应用非常广泛,所以光学在线表面张力测量和控制系统潜在的市场是非常巨大的。

关于ODSTM-1程序测量系统,来自国外的不同公司对项 来自德国光学专家的评论 他7月3号的信中提到在测量方法的差异(在第一页的低部和第二页的顶部),经过第一次的调查研究后,都解决了。

我查看了早期我的测量方法和在专利申请的成功。在早期的发射测量中,通过IR-过滤器的应用和光学轴的移动,测量出的值与专利申请中的理论计算值不等。测量方法的差异和表面张力的微小差异已经在专利申请书的第八页的顶部做了解释。

我的观点是在给出材质的独立要求下,表面张力的差异取决于使用光谱仪的早期测量方法和目前的测量结果(见专利文件)确定的测量条件。


光学动态表面张力测试系统的基本数据 幅宽:可达6000 mm 速度:可达600 m/min 基质材料:PE, PP, HDPE, LDPE, PET, EVA, BOPP, 等等 表面张力检测范围:30 - 55 mNm 重复定位精度:+/- 0.5 mNm 单边或者双边测量处理过或未经处理的膜 IR 波长范围:1200 nm - 1800 nm 运行代码:在传输代码中,可见光波长的双散射或者多传感器系统。 测量方法:类似于椭偏仪 测量间隙:大约 5 - 20 mm 固定或者随纸幅移动的测量头 光导纤维反馈给测量头系统 部分可控高稳定性IR 光源产生光束 波长转换由一个庞大的光学转换器完成 工业计算机,多通道处理系统,数据记录,分析,产品档案建立,统计等等。 上限值输出,模拟电压 0 - 10 V 有光导纤维或者 RS232, RS422, Ethernet, Profibus, CAN 系列输出

结 论 此专利描述的是光学动态在线表面张力测量的方法和设备,测量范围在 30 - 60 dyne(达因)。

与材质幅运行方向垂直的方向上安装有一个彩色光发射器,它有两个光学孔道,并且彼此成90°角;在材质幅的另一边安装有两个光学的测量系统以接收彩色光发射器发射的光。他们与光发射器组成了测量间隙。

根据材质的特性选择波长范围,光束发射角度转换,光偏振槽膜和横向位移,在材质幅边界区域IR光子形成光的散射和衍射。

经过测量接收的光的强度和计算,就能直接得出材质幅表面张力。

影响表面张力测量的因素包括:材质本身,材质表面密度,结晶度,厚度,灰尘,结构,磁性强弱,温度和材质处理类型。


IPM se fundó a principios del año 2002 Para ser una industria proveedora, de acondicionamiento y de papel fino con innovaciones, en especial con máquinas de nano y micro perforación electroestática, láser y sistemas de control óptico online punteros en los sectores del mercado mundial del tabaco. IPM es una empresa de ingeniería de alta tecnología que, con un equipo de técnicos e ingenieros especializados, desarrolla máquinas de perforación y técnicas porosimétricas ópticas online para hojas continuas en Alemania, China y Tailandia, donde las fabrica con socios autorizados que aportan soluciones, las vende a escala mundial y las transfiere a los clientes potenciales como proyectos llave en mano. La formación, instrucción y la transferencia de tecnología necesaria para el personal técnico y de producción son un elemento esencial del volumen de suministro y de la cooperación. Werner Grosse, fundador de IPM es, desde 1979, ingeniero de aplicación, director de operacion, y desarrollo y director del departamento de aplicación internacional de técnica porosimétrica óptica y perforación electroestática en la industria de acabado del papel y de tabaco.

En el marco de esta actividad y gracias a numerosos contratos de estudio, creó más de 46 ingenios y patentes, muchos de ellos reconocidos y 34 registrados con patente nacional e internacional. Gracias a ello, y unido a las características especiales del producto para hojas continuas con perforación de alta precisión, se desarrollan y comercializan a escala mundial nuevos procedimientos de acabado, tecnologías de perforación, sistemas métricos ópticos online y máquinas de producción. En 1991 comenzó a trabajar por cuenta propia, lo que dio lugar a la creación de GmbH en el año 1993. Con ello se relaciona la expansión en el mercado internacional de la técnica de perforación electroestática ESP hacia otros campos de aplicación, papeles filtrantes, de saco, de bolsa, non-woven, tela no tejida spunbonded, telas, papeles revestidos y papeles Kraft, para la industria de acabado del papel, de elaboración y especialmente de embalaje. GmbH pertenece desde 1994 a grupos de proveedores internacionales de la industria.

Tras muchos años como socio y gerente, Grosse abandonó la empresa a finales de 2001 para desarrollar nuevas líneas de innovación con IPM y, en estrecha colaboración con nuevos clientes relativamente importantes, implantar en todo el mundo las técnicas de producción. Además de su actividad y compromiso como innovador, ingeniero y empresario, es miembro de instituciones nacionales e internacionales que persiguen objetivos de innovación, de ingenio, de derecho de propiedad internacional y federal y que practican un intercambio de información técnica y económica a escala internacional.

A éstas pertenecen entre otras DABEI, DCW, ASIANET, CHINANET, INDONET, THAINET, technology cluster. En el sector de la técnica de la micro macro perforación, de la técnica porosimétrica óptica online y como miembro de diferentes instituciones ha publicado un sin número de artículos especializados y conferencias en alemán, inglés, español, francés, italiano y chino. En las webs existe una relación de sus publicaciones, invenciones y patentes con títulos y fuentes. Desde 01-2002, las publicaciones y patentes aparecen publicadas. Werner Grosse recibió del Gobierno de China y mas país en 2004 la distinción Caiyun para galardonarle con el título de Experto extranjero en tecnología por las tecnologías de innovación, transferencia de know-how, técnicas de producción y exitosa colaboración en el sector de la perforación láser electroestática y sistemas de proceso de porosidad ópticos online en colaboración con el enterprise grupo de China. De manera que IPM actúa desde Asia, Estados Unidos, Sur Americano, Rusia, Europea y mucho para la industria internacional de tabaco, cigarrillos, papel, embalaje, automacion, rebotics y automotiva industria.

Honour from China Government http://bfe.yxrs.gov.cn/article.asp?id=2005092011030968

http://www.tobaccochina.com/news/data/20038/c815083548.htm

http://tobaccoreportermagazine.com/china/2004/Dec04China/Industry%20Briefs%201204.htm

Rebuscado socios y clientes

Estamos buscando socios o asociaciones tecnología en la industria de laser por estratégica alianza en mercados del ASEAN, MERCOSUR, BANCO-del-SUR en Americano Latina, Costa Rica, Cuba, Nicaragua, Brasil, Venezuela, Colombia, Chile, Argentina, Perú, México, Ecuador. Empresa, fabricante, manufactura, usuario maquinas cortadoras, rebobinadoras, línea del acabado, impresión, automático, papel fotocopia del media, periódico, en la industria y ingeniero, mecánico, eléctrico, especialista, proveer abastecer potencia, laser, óptico, electrónico, universidad, instituto, centro de investigación.

Nano micro perforación

Los materiales en forma de hoja como papeles de fumar, papeles de recubrimiento de boquilla, papeles filtrantes, papeles especiales, papeles craft, papeles de saco o de embalar, telas no tejidas, textiles técnicos, laminados, papeles revestidos etc. con un gramaje de 20 g/m2 a 160 g/m2 se someten a una nano o micro o macro perforación para las más diversas aplicaciones. Con la los poros se distribuyen por estadística de manera irregular, en un tamaño variante y con la macro se ordenan por igual y con la misma medida o por pistas de perforaciones de diferente disposición. Invisibles a los ojos humanos, las nano- micro perforaciones pueden distribuirse de forma plana o por zonas y a distancias determinadas dentro de las hojas, con lo cual, tras la perforación a través de rayos láser pulsados o dilatados se obtienen poros de tamaño 0.05-150 y 60 en 200 respectivamente.

Las perforaciones planas hacen posible una concentración de poros de hasta 5 millones m2 y de hasta 16 millones de poros/segundo y las perforaciones por zonas con anchuras de 2 - 6 mm máx. 300 poros/cm2. Determinados campos de aplicación unidos a las telas no tejidas, hojas de embalaje o de saco, tras una impermeabilidad al agua y una permeabilidad a los gases, pertenecen al campo de aplicación de la nano micro a que el agua, por su tensión superficial relativa más alta, no puede penetrar lo micro poros, principal exigencia. Perforación de las bandas de papel de recubrimiento de boquillas o de papel de fumar para la ventilación. La perforación electrostática se aplica especialmente a la ventilación de cigarrillos sin filtro o con filtro para generar un bypass de aire.

A tal fin se realiza una perforación electrostática, láser o una micro macro perforación del papel de fumar para cigarrillos sin filtro o del papel de recubrimiento de boquilla para cigarrillos con filtro, para reducir los elementos contaminantes para el fumador, nicotina y condensado entre otros, y guiar el grado de ventilación del cigarro.

Medición óptica online de porosidad o de permeabilidad Los materiales que se van a perforar o los porosos de naturaleza se mueven a velocidades de hasta 600 m/min y en un ancho de hoja de hasta 2000 mm se crea una medición neumática, es decir, una medición de porosidad tangente a la hoja, de extraordinaria dificultad. Este método de medición provoca problemas de elevación del tren de hoja, de desgaste del material, de formación de pliegues, de no hermeticidad en la cabeza medidora, intensa suciedad y alinealidad. Por lo tanto, para las hojas con porosidad natural o micro macro perforadas se ofrece un sistema de medición óptico para la medición de transmisión con conversión matemática hacia la permeabilidad neumática a los gases. Las exigencias establecidas se solucionan según la elaboración del producto y control online mencionados al principio, mediciones geométricas muy pequeñas, velocidades de la hoja extremadamente altas y buena reproducción del valor de medida con la técnica de porosidad óptica.

La perforacion electrostatica alcanzaron ampalia difusion en la nano micro perforacion de bandas de papel fino y tambien los nano micro poros en materiales flexibles para embalaje en rollos y productos fabricados con estos permeables al vapor de gas, por lo tanto, con respiration active pero, sin embargo, permaneceran impermeables para los liquidos en un grando importante y de esta manera actuaran como barreras justamente segun lo requerido en la bandas con coating o plasticos. Los materiales acabados de esta manera son de interes para el papel fino, cigarrillo, empaquetado, en el Ilenado, en Ia industria de Ios no tejidos y para otros compos tecnicos de aplicacion. Los micro poros se pueden insertar en Ia banda en movihiento en forma electrostatica, incluso con veIocidades de proceso medias y granges anchos de Ia cinta. En el pasado y ahora los papeles finos y otros, con gramajes entre 20 y 150 g/m2 han sido perforados electrostaticamente en todo su superficie en zonas, linea o area especiales.

Entre ellos se encuentra el papel de cigarrillo, el papel fino para Ios extremos de cigarrillos ventilados, el papel de filtro y papeles kraft asi como varies no tejidos y otros materiales en bobinas. Tamamos de poros desde 0.05 hasta 150 micrones y distribuciones de Ios poros hasta 5 millones del m2 con perforaciones en toda Ia superficie y de 240 poros del cm2 con perforación de zona y 16 millones poros del secundo se pueden alcanzar medicate la microperforacion electrostatica. Los anchor de Ia banda y las velocidades de la maquina dependen de Ias aplicaciones, del formato del producto, de Ia consistencies de los materials y de Ios valores de permeabilidad a gases de 100 en 600 m/min.

Principio de Ia perforación

ESP de perforacion que generan micro poros dependen de consistencia los materiales, por debajo de 1 micrones, mediante la ayuda de pulsos de alto voltaje concentrados para aumentar la transmisibilidad al aire y al vapor de gas, mientras que conservan una estanqueidad al liquida. La perforabilidad especifica, Ias frutas y la calidad de Ios poros, y Ia eficacia de la perforation dependen de Ia resistencia dielectrica, constante dielectrica, espesor del material, y Ia estructura molecular, asi como de Ios pigmentos, cargas, y la calidad de Ia superficie. Por lo tanto, la unica manera de determinar Ia microperforabilidad del material de Ia banda es mediante ensayos previos sobre formatos de hoja o en bobinas pequenas para la primera prueba. Se ofrecen actualmente instalaciones para fabricacion de productos con perforaciones electrostaticas sobre bandas anchas hasta ahora no disponibles.

Lo posibilidad de medicion en linea, de la zona o area de porosidad o de la permeabilidad de la zona y de la control de la perforacion permite que sean resultos Ios requisitos para Ios tipos particulares y las disposiciones determinandas de poros en el material especifico. Con perforado sobre toda la superficie es posible producir nana o micro perforacion en bandas del papel fino, panel revestido, no tejidos, papel Kraft, papel cementos, balsas de todo tipo y cualquier clase de bandas de papel para empaquetado en una variedad amplia de aplicaciones. Un criteria de calidad importante es que Ia nano o micro perforacion sobre una banda no tendria que no ser visible. Esto puede lograrse solapando el entrelazamiento del electrodo, mediante el desplazamiento de la banda, y optimizando condiciones de energia en la section de la descarga de la chispa. Tienen que considerable otros puntos similares para Iograr Ia formacion del poro exenta de rebabas y residuos, para asegurar que Ios poros no tengan ningun efecto prejudicial en Ios procesos de conversion del material perforado y que Ia presion del rebobinado no altere Ia porosidad. Deseno, aplicaciones, producto.

Principios de derivacion para Ios filtros ventilados de cigarrillos, Resistencia adicional al gas del papel de cigarrillos sin filtro, Permeabilidad alta del papel de filtro especial, Procesos de Ilenado mas rapidos para Ios sacos y bolsos con Ios productos de cemento, alimento de animal domestico, maiz, en polvo o granulados, Bandas de papel revestido con PE coating para intercambios de gas, Packaging respirable con papeles revestidos para productos alimenticios, Papeles revestidos con caractesticas de barrera para aplicaciones varies, como el empaquetado de jabon, Papeles revestidos para las mercancias que no toleranca la condensacion local, Peliculas plastico especiales o coating para el proceso de filtracion para el enriquecimiento del oxygeno o gas, Peliculas de multiples capas especiales para la ropa impermeable y para el acabado impermeable de la ropa, Hojos de proteccion de entretechos con intercambios de gas, Uniones de Ios guardapolvos desechables de una sola pieza, Textiles finos industriales, fabrics, peliculas, Bandas de papel Kraft para las places destinadas a construccion en seco.

Perforabilidad de diversos materials

Hasta ahora se pueden perforar con el proceso los materiales siguientes en bandas. Papel de cigarrillos, papeles finos y en general del 20 en 150 g/m2, Bandas de papel Kraft, saco, cementos, papel hasta gramajes de 50 en 150 g/m2, LDPE con espesor de 5 en 10 micrones o 12 g/m2, papel o coating revestidos con PE o PP con capas hasta 10 micrones o 12 g/m2, multiples capas, papeI, cuero, LDPE papel con espesor de 5 en 10 micrones o 12 g/m2, PE, no tejido, con costuras soldadas, 45 en 150 g/m2, 100 en 200 micrones, Textil, revestimientos de poliuretano y, acrilato para ropa impermeable, ropa deportiva, ropas protectoras, aplicaciones tecnico tales como filtros, membrane, non-wovend, fabrics, tissue.


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