high performance plasticizer definition

  • high performance plasticizer definition
  • high performance plasticizer definition
  • high performance plasticizer definition
  • What is a high performance plastic?
  • High-performance plastics are used to replace metal components in machinery and airplanes that require durability but need to be light. Making these changes can reduce fuel requirements and consumption, lowering costs. High-performance plastics have a high resistance to wear.
  • Why are high-performance plastics used in medical products?
  • The medical industry has some of the strictest standards and the products require materials with biocompatibility, no chemical reactivity, and radiation resistance. High-performance plastics are chosen when creating testing and diagnostic machines, pumps and valves, medical device batteries, lab instruments, and so much more.
  • What are high-performance polymers?
  • High-performance polymers are characterized by their extreme strength, durability, and resistance to wear and damage. These polymers meet higher requirements than engineering plastics due to their more desirable properties and are generally used for applications in demanding environments that require tight tolerances.
  • What are plasticizers?
  • Plasticizers are intermediate chemical products whose properties determine greatly the performance of the products which they are added. It is estimated that in the search for plasticizers to modify rigid polymers, more than 30,000 substances have been tested.
  • Are high performance plastics chemical resistant?
  • High performance plastics also offer outstanding chemical resistance. PPS, FEP/PFA and PAI are resistant to a broad range of chemicals while Teflon® (PTFE) is almost entirely chemically inert and highly insoluble in most solvents or chemicals.
  • What is a high performance polymer (HPP)?
  • High performance polymers (HPPs) are defined as polymers that can withstand harsh conditions (corrosive environments, high temperature and pressure conditions, etc.), while retaining their desirable properties. They have been termed as high temperature polymers, advanced engineering materials, and heat-resistant polymers.

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