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Acoustic emission and residual strength of aircraft tire carcass composites

机译:飞机轮胎胴体复合材料的声发射和剩余强度

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The question of how the static strength of angle-plied nylon cord-reinforced rubber composites simulating aircraft tire carcass is affected by damage accumulation or materials degradation was examined in this study. Upon cyclic loading at 1 Hz, residual tensile strength was gradually lowered with the progression of fatigue damage. The degradation of the residual strength became more drastic toward the end of the fatigue life because of worsening delamination. In contrast, the residual strength after cyclic loading of 10 Hz exhibited a rapid decrease at the beginning of the fatigue life, presumably due to thermal degradation, and then remained virtually constant throughout the life. Acoustic emission (AE) activities were monitored to assess the extent of damage and to explore a possibility of indirect monitoring of residual strength of composites. Total cumulative values of AE hits, counts, and energy, which were defined at the final point of gross failure in static tension, were proportional to the residual strength independently of the frequency used in pervious fatigue loading. The observation indicated that, subjected to static tensile loading, initially stronger or less fatigue-damaged composite specimens can sustain more damage and, therefore, produce greater amount of AE activities up to failure. For rates of AE activities prior to the delamination were also measured for virgin specimens as well as the specimens rates of AE activities under static tension were found to be proportional to the residual strength.
机译:角度尼龙线加强橡胶复合材料模拟飞机轮胎胴体的静电强度受到损伤积累的影响,或者在本研究中研究了降解的问题。在循环加载时在1 Hz时,随着疲劳损伤的进展逐渐降低残留的拉伸强度。由于恶化的分层,残余强度的降解变得更加激动地朝向疲劳寿命的结束。相反,10Hz的循环负载后的残余强度在疲劳寿命开始时表现出快速减少,可能是由于热劣化,然后在整个生命中保持几乎恒定。监测声学发射(AE)活动以评估损坏程度,并探讨间接监测复合材料的残留强度的可能性。在静张力粗张力总体故障中定义的AE命中,计数和能量的总累积值与既有疲劳负荷所使用的频率一样与残余强度成比例。观察结果表明,经过静态拉伸载荷,最初较强或更小的疲劳损坏的复合标本可以维持更多的损伤,因此产生更大的AE活性达到失败。对于在分层之前的AE活性的速率,也针对原始标本测量了分层,并且发现静态张力下的AE活性的标本率与残余强度成比例。

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