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首页> 外文期刊>International Journal of Fracture >Investigation of fatigue crack growth characteristics of NR/BR blend based tyre tread compounds
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Investigation of fatigue crack growth characteristics of NR/BR blend based tyre tread compounds

机译:NR / BR共混物胎面胶的疲劳裂纹扩展特性研究

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摘要

Tyre tread directly comes in contact with various road surfaces and is prone to damage due to cuts from sharp objects during service. As tyres undergo millions of fatigue cycles, these cuts propagate continuously and lead to catastrophic failure. Therefore fatigue crack growth (FCG) characteristics should be an essential criterion for tread compound selection. The present study investigates FCG behavior of blends comprising of Natural Rubber (NR) and Polybutadi-ene Rubber (BR) over a wide range of tearing energy. Pure shear specimens with a notch on both edges were tested in a Tear Analyser. Rapid increase in FCG rate after a certain strain level was observed. This transition point appeared in a strain range of 20-35 %, depending on the blend composition. The higher BR containing compounds exhibited better FCG characteristics below the transition point but reversal of ranking was seen above this point. The influence of temperature, R ratio, waveforms and cure system on FCG characteristics was also investigated in NR and 60-40 NR/BR blend compounds. Higher FCG rate was achieved under pulse loading compared to the sine waveform. The relaxation time between pulse cycles played an important role. With an increase in relaxation time, FCG rate decreases significantly. The higher sensitivity towards R ratio was observed in NR compound. The 60-40 NR/BR blend showed higher FCG rate with increase in temperature compared to the NR compound. The NR compound with high Sulfur/Accelerator (S/Ac) ratio showed better FCG characteristics whereas for 60-40 NR/BR blend with low S/Ac ratio achieved superior FCG characteristics.
机译:轮胎胎面直接接触各种路面,并且在维修过程中容易被锋利物体割伤而损坏。随着轮胎经历数百万次的疲劳循环,这些切口会不断传播并导致灾难性故障。因此,疲劳裂纹扩展(FCG)特性应该是胎面胶选择的必要标准。本研究调查了天然橡胶(NR)和聚丁二烯橡胶(BR)的共混物在大范围的撕裂能量下的FCG行为。在Tear Analyser中测试两个边缘都有缺口的纯剪切试样。观察到一定应变水平后,FCG速率迅速增加。取决于共混物组成,该转变点出现在20-35%的应变范围内。在过渡点以下,含BR较高的化合物显示出更好的FCG特性,但在该点以上,排名倒转。还研究了NR,60-40 NR / BR共混物中温度,R比,波形和固化体系对FCG特性的影响。与正弦波形相比,在脉冲负载下获得了更高的FCG速率。脉冲周期之间的弛豫时间起着重要作用。随着弛豫时间的增加,FCG速率显着降低。在NR化合物中观察到对R比率的更高的敏感性。与NR化合物相比,60-40 NR / BR共混物随着温度的升高显示出更高的FCG速率。高硫/促进剂(S / Ac)比的NR化合物表现出更好的FCG特性,而低S / Ac比的60-40 NR / BR共混物则具有优异的FCG特性。

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