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Experimental Investigation and Constitutive Modeling of the Uncured Rubber Compound Based on the DMA Strain Scanning Method

机译:基于DMA应变扫描法的未固化橡胶化合物的实验研究与本构模拟

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摘要

Existing research tends to focus on the performance of cured rubber. This is due to a lack of suitable testing methods for the mechanical properties of uncured rubber, in particular, tensile properties. Without crosslinking by sulfur, the tensile strength of uncured rubber compounds is too low to be accurately tested by general tensile testing machines. Firstly, a new tensile stress testing method for uncured rubber was established by using dynamic thermomechanical analysis (DMA) tensile strain scanning. The strain amplitude was increased under a set frequency and constant temperature. The corresponding dynamic force needed to maintain the amplitude was then measured to obtain the dynamic force-amplitude curve observed at this temperature and frequency. Secondly, the Burgers model is usually difficult to calculate and analyze in differential form, so it was reduced to its arithmetic form under creep conditions and material relaxation. Tensile deformation at a constant strain rate was proposed, so the Burgers model could be modified to a more concise form without any strain terms, making mathematical processing and simulating much more convenient. Thirdly, the rate of the modified Burgers model under constant strain was in good agreement with the test data, demonstrating that the elastic stiffness was 1–2 orders of magnitude less than the tensile viscosity. In the end, it was concluded that large data dispersion caused by the universal tensile test can be overcome by choosing this model, and it may become an effective way to study the tensile modeling of uncured rubber compound.
机译:现有的研究倾向于专注于固化橡胶的性能。这是由于缺乏未固化橡胶的机械性能的合适测试方法,特别是拉伸性能。在不通过硫交联的情况下,通过一般拉伸试验机器,未固化橡胶化合物的拉伸强度太低而无法精确地测试。首先,通过使用动态热机械分析(DMA)拉伸应变扫描来建立新的橡胶的新拉伸应力测试方法。在设定的频率和恒定温度下增加应变幅度。然后测量保持幅度所需的相应动态力以获得在该温度和频率下观察到的动态力振幅曲线。其次,汉堡模型通常难以计算和分析差异形式,因此在蠕变条件和材料松弛下减少到其算术形式。提出了恒定应变速率以恒定应变速率的拉伸变形,因此可以将汉堡模型进行修改为更简洁的形式,没有任何应变术语,使数学加工和模拟更方便。第三,在恒定菌株下改进的汉堡模型的速率与测试数据吻合良好,表明弹性刚度为比拉伸粘度小1-2的数量级。最后,得出结论是,通过选择该模型,可以克服由通用拉伸试验引起的大数据分散,并且可能成为研究未固化橡胶化合物的拉伸建模的有效方法。

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