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Effect of cooling temperature on deconsolidation and pulling forces in a thermoplastic pultrusion process

机译:冷却温度对热塑性拉挤工艺中脱焊和拉伸力的影响

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摘要

Surface finish deficiencies and thermal deconsolidation are common problems in thermoplastic composites pultrusion (TPC pultrusion). These problems occur in general as a result of the improper execution of the cooling process. We have developed an efficient cooling system that is able to precisely control the pultrudate's cooling temperature profile. The aim of this study is to investigate the impact that changing the cooling die temperature profile will have on the thermal deconsolidation behavior and pulling forces in a TPC pultrusion process. C/PEI (Amorphous) and C/PEEK (Semi-crystalline) pultruded rods were pultruded and reprocessed to quantify the adhesion forces during the cooling process. The selected cooling temperatures were in relation to the glass transition and melting temperature, (T-g) and (T-m) respectively. The cooling profiles were characterized by inserting a follow-on thermocouple. Deconsolidation and surface finish quality were assessed through the use of microscopy and by measuring the surface roughness. Lower pulling forces were experienced, and deconsolidation was avoided when the pultrudates were quickly cooled below T-g. For the amorphous PEI polymer, a surface finish (Ra) of 0.72 mu m was achieved when cooling at 100 degrees C below T-g. The best surface finish (Ra = 0.56 mu m) for C/PEEK was achieved at a cooling temperature of 243 degrees C. It is suspected that this cooling temperature promoted fast crystallization. The cooling system was then used during steady-state pultrusion experiments producing 10 m of C/PEI and C/PEEK fully consolidated rods having surface finish Ra value lower than 0.8 mu m. The developed cooling system will create significant new opportunities for the usage of pultruded thermoplastic composites in many fields, including additive manufacturing and composite joining.
机译:表面光洁度缺陷和热除焊是热塑性复合材料拉挤型常见问题(TPC拉挤)。由于冷却过程的执行不当,这些问题通常发生。我们开发了一种高效的冷却系统,能够精确地控制拉丝特的冷却温度曲线。本研究的目的是研究改变冷却模具温度曲线在TPC拉挤工艺中的热解覆待行为和拉动力的影响。将C / PEI(非晶)和C / PEEK(半结晶)拉挤杆被拉挤出并再加工以在冷却过程中量化粘附力。所选择的冷却温度分别与玻璃过渡和熔化温度(T-G)和(T-M)相关。通过插入后续热电偶的特征来表征冷却型材。通过使用显微镜和测量表面粗糙度来评估去焊和表面光洁度质量。经历了较低的拉力,当浆丁酸盐迅速冷却以下T-g时,避免了脱屑。对于无定形PEI聚合物,当在T-G低于100℃下冷却时,实现了0.72μm的表面光洁度(Ra)。 C / PEEK的最佳表面光洁度(RA =0.56μm)在冷却温度为243℃的冷却温度下实现。怀疑该冷却温度促进了快速结晶。然后在稳态拉伸实验期间使用冷却系统,其产生10μm的C / PEI和C / PEEK完全固结棒,其表面处理Ra值低于0.8μm。开发的冷却系统将在许多领域中使用不同的覆膜热塑性复合材料,包括添加剂制造和复合连接。

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  • 来源
    《Composites. B, Engineering》 |2021年第15期|108889.1-108889.15|共15页
  • 作者单位

    Polytech Montreal Ctr Rech Syst Polymeres & Composites Haute Perfor Adv Composites & Fibres Struct Lab 2900 Boul Edouard Montpetit Montreal PQ H3T 1J4 Canada;

    Polytech Montreal Ctr Rech Syst Polymeres & Composites Haute Perfor Adv Composites & Fibres Struct Lab 2900 Boul Edouard Montpetit Montreal PQ H3T 1J4 Canada;

    Polytech Montreal Ctr Rech Syst Polymeres & Composites Haute Perfor Adv Composites & Fibres Struct Lab 2900 Boul Edouard Montpetit Montreal PQ H3T 1J4 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pultrusion; Cooling; Deconsolidation; Thermoplastic;

    机译:挤压;冷却;去粘连;热塑性;

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