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Bulk Fatigue Damage Evolution in Polyamide-6 and in Polyamide-6 Nanocomposites

机译:聚酰胺6和聚酰胺6纳米复合材料的整体疲劳损伤演化

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摘要

The mechanical response of a polyamide-6 montmorillonite clay nanocomposite and of a polyamide-6 was monitored during axial fatigue tests performed at Rratios of 0.1 and \u20131. For both materials, two transitions were usually observed in the evolution of all the stressstrain- time parameters studied after similar numbers of loading cycles, suggesting interrelationships between the mechanisms of molecular reorganization. Fatigue test monitoring indicated an initial decrease in the storage modulus and a subsequent trend for this modulus to increase, especially in polyamide-6. During all tests, a partially recoverable strain was accumulated because of viscoelastic deformation. Nanoparticles reduced this strain in the initial cyclic straining regime but not in the last regime, probably because such particles cannot inhibit viscoelastic events constrained in a volume larger than their interaction volume within the matrix. Based on the accumulated volume variation measured, the nucleation and growth of microvoids can be expected to occur in the last cyclic straining regime.
机译:在Rratios值为0.1和20131进行的轴向疲劳测试过程中,对聚酰胺6蒙脱土粘土纳米复合材料和聚酰胺6的机械响应进行了监测。对于这两种材料,通常在经过相似数量的加载循环后研究的所有应力-应变时间参数的演变过程中通常都会观察到两个转变,这表明分子重组机制之间存在相互关系。疲劳试验监测表明,储能模量开始下降,并且随后出现该模量增加的趋势,尤其是在聚酰胺6中。在所有测试中,由于粘弹性变形,积累了部分可恢复的应变。纳米颗粒在初始循环应变方案中减小了该应变,但在最后一个周期中并未减小,这可能是因为此类颗粒无法抑制粘弹性事件,该事件的体积大于其在基质中的相互作用体积。基于所测量的累积体积变化,可以预期在最后的循环应变过程中会发生微孔的成核和生长。

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