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  • High-Temperature Tooling Board for Advanced Composites
    The advent of higher-temperature resins and carbon-fiber composites such as Hexcel's HexTOOL (R)*, created the need for polyurethane foam that can withstand much higher process temperatures. It needed to stand up to high-heat prepreg and autoclave curing while delivering substantial cost
  • Interior Polyurethane Foam Bonding - FT 7951 (.pdf)
    Scrim reinforced tape offering very good adhesion to a wide variety of foams on low surface energy substrates. High temperature resistant and relative low fogging, very suitable for automotive interior applications.
  • Development of High Performance Polyether Based Elastomers
    Polyether polyols, and specially Polytetramethylene Ether Glycol (PTMEG), are widely used in the development of high. performance elastomers. However, PTMEG polyols with molecular weight greater than 1000 are solid at room temperature,. making them difficult to handle. Because
  • How to Achieve Several Efficiencies by Using Polyurethane Potting Compound for Electronics
    and vibrations. This is where electronic potting comes in. The enclosure of the miniature electronic component will have to be filled up with suitable materials to protect them from shocks, vibrations, water, high temperature, chemicals, and other external factors.
  • High Performance Bonding to Ether and Ester - UHA 8250 (.pdf)
    Excellent adhesion to open cell polyurethane foams. Ideal for applications requiring temperature resistance and good conformability. 2.0 mils of UHA acrylic on the unwind side and 2.0 mils of UHA rubber on the liner side.
  • Ultimate Performance Bonding to Ether and Ester Urethane Foams with High Heat Resistance - UHA 9350 (.pdf)
    Excellent adhesion to open cell polyurethane foams. Ideal for applications requiring temperature resistance. 2.0 mils of UHA acrylic on the unwind side and 2.0 mils of UHA rubber on the liner side.
  • RTD's with Metallized Backside
    In definition, response time refers to the interval in time a system needs to react to a given input. Decreasing response time while maintaining a high quality and accuracy is an issue which many suppliers are facing on a daily basis. Temperature sensors are mostly used in assembly constructions
  • Dielectric Materials for Use in Radomes
    they are used to seal and insulate fragile and sensitive microelectronic components. These polyurethanes are formulated to be useful in a varying degree of physical, thermal and electrical environments. They provide dielectric properties, as well as high resistance to water, chemicals, temperature
  • New Urethane Technology for Potting & Encapsulation in Electronics
    temperatures (185º C) and provide a low durometer. Unfortunately, they are expensive and do not provide good adhesion. Conventional polyurethanes can be formulated to be flexible or rigid and have a low peak exothermic temperature during cure. But, these conventional polyether and polyester urethanes

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