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Ratcheting response of nylon fiber reinforced natural rubber/styrene butadiene rubber composites under uniaxial stress cycles: Experimental studies

机译:尼龙纤维增强天然橡胶/丁苯橡胶复合材料在单轴应力循环下的棘轮响应:实验研究

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The present study intends to study the ratcheting response of nylon fiber reinforced natural rubber (NR)-styrene butadiene rubber (SBR) composite samples under asymmetric stress cycles. Uniaxial tests conducted on composite samples have shown how influential the weight fraction of short nylon fibers on the stress-strain curves/loops under monotonic and cyclic loads is. NR/SBR composite samples with various fiber contents of 0,10,20,30, and 40 per hundred rubber (phr) were tested under asymmetric stress cycles. In these tests, stress-strain hysteresis loops were progressively shifted over stress cycles resulting in progressive plastic strain accumulation. Over stress cycles, ratcheting strain progressed within the first few cycles with a relatively high rate, and as the number of cycles increased, this rate decayed resulting in a plateau in strain accumulation (shakedown). The ratcheting strain rate and magnitude resulting in shakedown were highly affected by the nylon fiber content. The experimental observations showed that this plateau (shakedown) occurred after a number of cycles in NR/SBR composite samples where the widths of hysteresis loops stayed unchanged. Samples with no fiber and that with 10 phr fiber content possessed high ratcheting rates leading samples to failure after a few stress cycles. Fracture surfaces in these samples were further analyzed through SEM investigation.
机译:本研究旨在研究尼龙纤维增强天然橡胶(NR)-丁苯橡胶(SBR)复合材料在不对称应力循环下的棘轮响应。在复合材料样品上进行的单轴测试表明,短尼龙纤维的重量分数对单调和循环载荷下的应力-应变曲线/环有何影响。在不对称应力循环下测试了各种纤维含量分别为0、10、20、30和40/100橡胶(phr)的NR / SBR复合样品。在这些测试中,应力-应变磁滞回线在应力循环中逐渐移动,从而导致逐渐的塑性应变累积。在应力循环中,棘轮应变在最初的几个循环中以相对较高的速率进行,并且随着循环次数的增加,该速率下降,从而导致应变累积达到稳定(降低)。引起摇晃的棘轮应变率和幅度受尼龙纤维含量的很大影响。实验观察结果表明,在NR / SBR复合样品的多个循环中,磁滞回线的宽度保持不变后,发生了平稳(停顿)。没有纤维且纤维含量为10 phr的样品具有较高的棘齿率,导致样品在经过几次应力循环后会失效。通过SEM研究进一步分析这些样品中的断裂表面。

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