Plastics Technology

APR 2017

Plastics Technology - Dedicated to improving Plastics Processing.

Issue link: http://pty.epubxp.com/i/802323

Contents of this Issue

Navigation

Page 7 of 91

Nissei Plastic Industrial Co., Ltd. of Japan is building its first U.S. plant to make injection molding machines in San Antonio, Tex. The facility is due to be completed in November and production will start in February 2018. Operated by a newly formed subsidiary called Nissei Plastic Machinery America Inc., the $20 million, 392,040 ft 2 facility will perform machining and assembly of Nissei's hybrid presses from 500 to 1440 tons. The main components will be supplied from Nissei plants in Asia. Nissei's U.S. sales arm is Nissei America Inc., Anaheim, Calif. The new plant will include a technical center to provide technical support to custom- ers. It will house demonstration machines for mold and material trials. 714-693-3000 • nisseiamerica.com Printed circuit boards reduced to a thin, flexible film; and electronic parts like cell-phone antennas made with one- step, chemical-free application of circuitry—both are being developed with novel conductive inks that make printing of electrical circuitry on rigid and flexible plastics much easier and less expensive than ever before. Developed by PV Nano Cell in Israel (pvnanocel.com), the Sicrys inks are based on patented single-crystal nanoparticles of silver or copper. Silver inks were developed in 2010 and copper versions in 2012 (enhanced copper inks were launched last year). Both can be applied by digital printing techniques, either inkjet or aerosol jet. This simple, one-step application using exist- ing equipment reportedly offers dramatically lower costs and lead times than more complex techniques. For example, circuitry can be printed directly onto flexible film (photo) without the multiple steps, chemi- cal etching, and hazardous waste production of photoli- thography used to make PC boards. PV Nano Cell (PVN) is working with beta-site customers in China, Europe, and Israel, which are currently printing monolayer circuitry on 19 x 21 in. sheets at a rate of 20 sheets/hr. Rigid molded parts like cell-phone antennas (photo) are typically produced today by laser direct structuring Dramatic New Potential for Circuitry Printed on Plastics (LDS), which involves multicomponent injection molding with two grades of polycarbonate, one of which contains special additives that react to laser light to permit chemi- cal deposition of metal circuitry. PVN reportedly can lower cost by 30% with direct application of conductive inks onto the surface of the part. A line capable of printing 4.5 million antennas/yr has been installed in China, according to PVN CEO Dr. Fernando de la Vega. What's more, he says his inks allow printing the antenna onto the inside of the phone case, no longer requir- ing a separate injection molded part. According to de la Vega, competing conductive inks suffer from clumping of the nanoparticles when jetted at the high frequencies needed for mass production, which reduces throughput and raises cost. His single-crystal nanoparticles resist clumping and can be produced inexpensively. His silver ink sells for below $1500/kg in high volumes, a fraction of the price of other nano-silver inks and competitive with stan- dard silver inks for screen printing. His brand-new copper nanoparticle inks are priced two-thirds less than the silver versions and are said to be the first copper inks with long- term resistance to oxidation (1 yr or more). PVN is working with a number of printing equipment makers (including 3D printing), such as Stratasys, Eden Prairie, Minn. ( stratasys.com), and Optomec, Albuquerque, N.M. ( optomec.com). In some printed electronics applica- tions, customers that commit to purchase a certain annual volume of ink will get the printer for free. Nissei Building First U.S. Plant to Assemble Injection Machines 6 APRIL 2017 Plastics Technology PTonline.com T E C H N O L O G Y A N D I N D U S T R Y N E W S St ar t ing Up

Articles in this issue

Links on this page

Archives of this issue

view archives of Plastics Technology - APR 2017