ポリウレタン樹脂の発泡流動解析

書誌事項

タイトル別名
  • Analysis of Polyurethane Foaming Flow
  • Part 3: Foaming Flow Analysis with Reaction of Heat Generation
  • 第三報 発熱反応を考慮した発泡流動挙動の解析

説明

Modeling of the polyurethane foaming flow process is difficult because the temperature, density, and thermal conductivity profiles change greatly due to the heat generation in the two-liquid mixture of polyol and polyisocyanate. The precise simulation of the polyurethane foaming flow process would be very effective for reducing the development period and production costs. In this study, the interdependence of heat generation reaction, density and thermal conductivity for polyurethane resin was determined experimentally. A foaming flow simulation was then developed by applying these relationships in a 3D flow simulation program. The following results were obtained by comparing the simulations with the experimental observations.<br>(1) The temperature of the polyurethane resin in the foaming flow process rises greatly from the initial temperature to about 100°C due to the heat generation reaction. The resin temperature can be calculated with a precision of ±10°C even as the wall thickness and mold temperatures change.<br>(2) The foaming flow analysis can reproduce (simulate) an increase in specific volume by 30-fold. The specific volume can be calculated with a precision of ±8% even as the wall thickness and mold temperatures change. At the end of the foaming flow process, however, the precision of the prediction becomes worse as the wall thickness changes.

収録刊行物

  • 成形加工

    成形加工 17 (6), 407-418, 2005-06-20

    一般社団法人 プラスチック成形加工学会

被引用文献 (2)*注記

もっと見る

参考文献 (7)*注記

もっと見る

詳細情報 詳細情報について

問題の指摘

ページトップへ