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Modelling the pultrusion process of an industrial L-shaped composite profile

机译:模拟工业L形复合型材的拉挤成型过程

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摘要

A numerical process simulation tool is developed for the pultrusion of an industrial L-shaped profile. The composite contains the combination of uni-directional (UD) roving and continuous filament mat (CFM) layers impregnated by a polyester resin system specifically prepared for the process. The chemo-rheology and elastic behavior of the resin are obtained by applying a differential scanning calorimetry (DSC) and a dynamic mechanical analyser (DMA), respectively. The process induced stresses and shape distortions are predicted in a 2D quasi-static mechanical analysis. The numerical process model predicts the residual spring-in angle which is found to be close to the one measured from the real pultruded L-shaped products. The residual spring-in angle is further analyzed using the developed simulation tool for different pulling rates. Through-thickness stress variations are found to prevail inside the part such that the UD and CFM layers have different stress levels at the end of the process. The predicted stress pattern is verified by performing a stress calculation using the classical laminate theory (CLT).
机译:开发了一种数值过程仿真工具,用于拉挤工业L形型材。该复合材料包含单向(UD)粗纱和连续长丝毡(CFM)层的组合,这些层由专门为该工艺准备的聚酯树脂系统浸渍。分别通过差示扫描量热法(DSC)和动态机械分析仪(DMA)获得树脂的化学流变学和弹性行为。在2D准静态机械分析中预测了过程引起的应力和形状变形。数值过程模型预测了残余弹入角,该残余弹入角接近于从实际拉挤的L形产品中测得的残余弹入角。使用开发的仿真工具针对不同的拉速进一步分析残余的弹入角。整个厚度应力变化在零件内部普遍存在,因此UD和CFM层在过程结束时具有不同的应力水平。通过使用经典层压理论(CLT)进行应力计算,可以验证预测的应力模式。

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