复合材料科学与工程 ›› 2026, Vol. 0 ›› Issue (6): 119-125.DOI: 10.19936/j.cnki.2096-8000.20260628.013

• 设计与工艺 • 上一篇    下一篇

纤维增强聚氨酯拉挤工艺用催化剂和内脱模剂协同作用研究

符罗坪, 翟保利, 张林, 徐英特, 蒋俊, 王恩东   

  1. 四川东树新材料有限公司,德阳 618000
  • 收稿日期:2025-04-08 发布日期:2026-07-03
  • 作者简介:符罗坪(1994—),男,硕士,工程师,研究方向为环氧树脂、聚氨酯功能材料,fuluoping@outlook.com。

Research on the synergistic effect of catalysts and internal release agents in fiber-reinforced polyurethane pultrusion process

FU Luoping, ZHAI Baoli, ZHANG Lin, XU Yingte, JIANG Jun, WANG Endong   

  1. Sichuan Dongshu New Materials Co., Ltd., Deyang 618000, China
  • Received:2025-04-08 Published:2026-07-03

摘要: 纤维增强拉挤工艺凭借其高效性与精确性,在复合材料制造领域占据重要地位。聚氨酯拉挤成型具有速度快、过程气味小等特点,已成为拉挤工艺的理想基体材料。在聚氨酯拉挤成型过程中,催化体系的调控对生产效率、工艺窗口期、制品性能至关重要。本研究针对纤维增强聚氨酯拉挤工艺,系统探究了拉挤聚氨酯体系中内脱模剂(IMRAs)对胺类与金属类催化剂催化活性的抑制行为。研究发现,酸性或碱性内脱模剂均能抑制催化剂的活性,大幅延长常温凝胶时间,但在高温下抑制效果较弱。通过优选催化剂和内脱模剂的种类及加量,确定催化剂选用TCAT-S054(添加量为0.3wt%);内脱模剂选用G-161A(4.0wt%~4.5wt%)或INT-1948(3.5wt%~4.0wt%)。将优化后的体系用于光伏边框拉挤成型工艺,可实现1.0 m/min的拉挤速度,且边框型材表面光滑,漆膜附着力能够达到0级。

关键词: 拉挤成型, 聚氨酯催化体系, 光伏复合边框

Abstract: Fiber-reinforced pultrusion processes have established a pivotal position in composite manufacturing due to their high efficiency and precision. Polyurethane(PU) pultrusion, characterized by rapid forming speed and minimal process odor, has emerged as an ideal matrix material for pultrusion technologies. In the PU pultrusion process, the regulation of the catalytic system is critical for production efficiency, process window, and product performance. This study systematically investigates the inhibitory effect of internal mold release agents(IMRAs) on the catalytic activity of amine- and metal-based catalysts in fiber-reinforced PU pultrusion systems. The research reveals that both acidic and alkaline IMRAs suppress catalyst activity, significantly prolonging the gel time at room temperature, whereas the inhibitory effect weakens at high temperatures. Through optimized selection of catalyst and IMRA typesand dosages—using TCAT-S054 catalyst at 0.3wt% and G-161A(4.0wt%~4.5wt%) or INT-1948(3.5wt%~4.0wt%) as IMRAs—the developed system was applied to pultrusion of photovoltaic(PV) frame profiles. The process achieved a pultrusion speed of 1.0 m/min, with the profiles exhibiting smooth surfaces and paint adhesion reaching Grade 0, meeting the highest industry standards.

Key words: pultrusion molding, polyurethane catalytic system, photovoltaic composite frame

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