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Tensile Stress Relaxation Behavior of Thermosetting Polyurethane Solid and Foams: Experiment and Model Prediction

机译:热固性聚氨酯固体和泡沫的拉伸应力松弛行为:实验和模型预测

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摘要

Stress relaxation behavior of thermosetting polyurethane (PU) solid and foams were investigated in tensile mode using a dynamic mechanical analyzer (DMA). PU solid sam ples were manufactured in a closed mold to avoid any foam formation, whilst PU foam samples were manufactured inside a woven using a silicone mold. Samples with rectan gular cross-section were subjected to a predetermined amount of tensile strain and the tensile force was recorded as a function of time. Relaxation modulus was determined for different temperatures up to near the glass transition temperature. It was found that the viscous part becomes more dominant with increasing test temperature. Although the stress relaxation behavior of PU solid and foam were found similar at lower temperature, the relaxation behavior of the foam was influenced by the cellular structure especially at higher temperature due to the combination of gas expansion and cell wall softening. Different stress relaxation models such as Maxwell model, Burgers model, Generalized Maxwell (GM) model, and Stretched exponential model were employed to predict the relaxation behavior of PU solid and foams. It was found that the GM model (with three or more elements) and the Stretched exponential model were in good agreement with the experimental data in predicting the stress relaxation behavior of both solid and foams. The predicted relaxation time and equilibrium modulus were found to decrease with increase in temperature.
机译:使用动态机械分析仪(DMA)以拉伸模式研究了热固性聚氨酯(PU)固体和泡沫的应力松弛行为。 PU固体样品是在密闭的模具中制造的,以避免形成任何泡沫,而PU泡沫样品则是使用硅树脂模具在机织内部制造的。使具有矩形横截面的样品经受预定量的拉伸应变,并且将拉伸力记录为时间的函数。确定了直至接近玻璃化转变温度的不同温度的弛豫模量。已经发现,随着测试温度的升高,粘性部分变得更加占优势。尽管在较低温度下发现PU固体和泡沫的应力松弛行为相似,但由于气体膨胀和孔壁软化的结合,泡沫的松弛行为受到孔结构的影响,尤其是在较高温度下。采用不同的应力松弛模型,例如Maxwell模型,Burgers模型,广义Maxwell(GM)模型和Stretched指数模型,来预测PU固体和泡沫的松弛行为。发现GM模型(具有三个或更多元素)和Stretched指数模型与预测固体和泡沫体应力松弛行为的实验数据非常吻合。发现预测的弛豫时间和平衡模量随温度升高而降低。

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