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Influence of Experimental Parameters on Fatigue Crack Growth and Heat Build-Up in Rubber

机译:实验参数对橡胶疲劳裂纹扩展和发热的影响

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摘要

Loading parameters (frequency, amplitude ratio and waveform) are varied to determine their influence on fatigue crack growth in rubber. Up to three different rubber blends are investigated: one actual engineering material and two model materials. Fatigue crack growth curves and strain distributions of pure shear and faint waist pure shear samples are compared for a model material. Fatigue behavior is studied for three different frequencies (1 Hz, 3 Hz and 5 Hz). Amplitude ratio appears to be another important influence factor concerning fatigue crack growth in rubber. The beneficial effect of positive amplitude ratios (tensional loading conditions) is shown for different materials. However, fatigue crack growth is considerably increased for negative amplitude ratios (tensional-compressional loading conditions). Furthermore, the influence of the waveform is determined for three different waveform shapes. One is sinusoidal, and two have a square shape, including dwell periods and sinusoidal slopes. Special focus lies on heat build-up, which is substantial, especially for large loads, high frequencies and/or highly filled rubber blends. Plateau temperatures are determined for various loading conditions and rubber blends. A very simple linear relationship with dissipated energy per time and unit area is obtained. Results gathered with dynamic mechanical analyses show, likewise, a linear trend, but the heat build-up is very small, due to different sample geometries.
机译:改变载荷参数(频率,振幅比和波形)以确定它们对橡胶疲劳裂纹扩展的影响。最多研究了三种不同的橡胶混合物:一种实际的工程材料和两种模型材料。比较了模型材料的纯剪切和微弱腰部纯剪切样品的疲劳裂纹扩展曲线和应变分布。研究了三种不同频率(1 Hz,3 Hz和5 Hz)的疲劳行为。振幅比似乎是影响橡胶疲劳裂纹扩展的另一个重要影响因素。对于不同的材料,显示出正振幅比(拉伸载荷条件)的有益效果。但是,对于负振幅比(拉伸压缩载荷条件),疲劳裂纹的增长会大大增加。此外,针对三种不同的波形形状确定波形的影响。一个是正​​弦曲线,两个是正方形,包括保压周期和正弦曲线斜率。特别着重于热量的积累,尤其是对于大负载,高频和/或高填充率的橡胶混合物而言,热量的积累非常重要。确定各种装载条件和橡胶混合物的高原温度。获得了一个非常简单的线性关系,它具有单位时间和单位面积的耗散能量。通过动态力学分析收集的结果同样显示出线性趋势,但是由于样品的几何形状不同,热量累积非常小。

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