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Process Induced Micro Structure Evolution in Polyester Polyurethane and Mechanical Properties Relationship

机译:工艺引起的聚酯聚氨酯微观结构演变与力学性能的关系

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摘要

MDI-HQEE-Capa based thermoplastic polyurethane (TPU) with Shore hardness of 94 A was injection molded. In order to study the influence of melt conditions on the material structure evolution and resulting mechanical properties a systematical variation in processing temperatures in the range between 195 °C and 250 °C was applied. The mold temperature was kept constant at 60 °C. Process induced samples morphologies were investigated by means of light microscope (LM), scanning electron microscope (SEM) and differential scanning calorimeter (DSC). Mechanical visco-elastic properties were determined by means of cyclic tensile experiment and were correlated with results of structural investigations. The evaluation of morphology micrographs of raw TPU material and specimens molded at different temperatures shows a reduction in visual crystalline fraction. This gains a distinct change in the deformation behavior of injection molded TPU with increasing melt processing temperature.
机译:将肖氏硬度为94 A的MDI-HQEE-Capa基热塑性聚氨酯(TPU)注塑成型。为了研究熔体条件对材料结构演变和所产生的机械性能的影响,在195°C至250°C的温度范围内应用了系统的变化。模具温度保持恒定在60℃。通过光学显微镜(LM),扫描电子显微镜(SEM)和差示扫描量热仪(DSC)研究了过程诱导的样品形态。机械粘弹性能是通过循环拉伸实验确定的,并与结构研究的结果相关。 TPU原料的原始材料和在不同温度下模制的样品的形态显微照片评估显示出可见的结晶分数降低了。随着熔融加工温度的升高,这将使注塑成型TPU的变形行为发生明显变化。

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