• 专利标题:   Polytricyclopentadiene/elastomer interpenetrating polymer network (IPN) alloy material comprises elastomer uniformly dispersed in polytricyclopentadiene resin system whose crosslinked network are entangled with each other to form IPN.
  • 专利号:   CN112961453-A, WO2022188202-A1
  • 发明人:   CHEN Z
  • 专利权人:   ZHEJIANG HUTONG MOULD CO LTD, ZHEJIANG HUTONG MOULD CO LTD
  • 国际专利分类:   C08L023/22, C08L025/08, C08L025/18, C08L045/00, C08L009/02, C08G061/08
  • 专利详细信息:   CN112961453-A 15 Jun 2021 C08L-045/00 202159 Pages: 11 Chinese
  • 申请详细信息:   CN112961453-A CN10268516 12 Mar 2021
  • 优先权号:   CN10268516

▎ 摘  要

NOVELTY - Polytricyclopentadiene/elastomer interpenetrating polymer network (IPN) alloy material comprises polytricyclopentadiene resin system, and elastomer, where the elastomer is uniformly dispersed in polytricyclopentadiene resin system, and the crosslinked network of polytricyclopentadiene resin system and elastomer are entangled with each other to form interpenetrating polymer network. USE - Used as the polytricyclopentadiene/elastomer interpenetrating polymer network (IPN) alloy material. ADVANTAGE - The alloy material: has high impact strength, high thermal deformation temperature, has acid resistance, alkali resistance, salt water corrosion resistance, halogen gas corrosion resistance, and fatigue resistance, and has wide range of applications. The method: is simple, convenient, is suitable for large-scale industrial production; and has high preparation efficiency. DETAILED DESCRIPTION - An INDEPENDENT CLAIM is also included for preparing the alloy material comprising preparing liquid resin raw materials, where the liquid resin raw materials comprises 50-100 wt.% tricyclopentadiene, then dissolving elastomer raw material in liquid resin raw material to obtain a mixture, dividing the mixture into two components, i.e. component A and component B, adding catalyst to component A and/or component B, mixing the component A and component B, then injecting into cavity of closed mold, heating, polymerizing the component A and component B, then crosslinking, curing, opening the mold, and demolding.