...
首页> 外文期刊>Journal of Materials Science >Influence of temperature on fracture initiation in PET and PA66 fibres under cyclic loading
【24h】

Influence of temperature on fracture initiation in PET and PA66 fibres under cyclic loading

机译:温度对循环载荷下PET和PA66纤维断裂起始的影响

获取原文
获取原文并翻译 | 示例

摘要

The fatigue of single thermoplastic fibres has been well documented to occur in a reproducible manner when they are subjected to certain cyclic loading conditions. The fatigue fracture morphologies of these fibres are very distinctive and differ markedly from other types of failure. This type of behaviour, which is clearly seen with the unambiguous tests on single fibres, must reflect behaviour of fibres in more complex structures which are subjected to cyclic loading. Only limited numbers of reports have, however, shown similar fracture morphologies with fibres extracted from fibre bundles embedded in a matrix material such as rubber. Usually the fractured ends of fibres taken from structures are seen to be shorter than those obtained in single fibre tests and also they show more complex and confused crack growth. The present study reveals that the low thermal conductivity of the fibres, exacerbated when they are embedded in a rubber matrix, leads to very high temperature rises, which is not the case in single fibre tests and under these conditions, crack initiation occurs across the fibre section instead of being restricted to the near surface region. Tests on single fibres at temperatures up to and beyond the glass transition temperature have shown how the fracture morphologies become modified. The fatigue process has been seen to become generalised throughout the fibre and failure occurs due to the coalescence of several cracks, some of which are initiated in the core of the fibre. In all cases, the cracks can be seen to have been initiated by solid inclusions in the fibres.
机译:已经充分证明了单根热塑性纤维在经受一定的循环载荷条件时会以可再现的方式发生疲劳。这些纤维的疲劳断裂形态非常独特,并且与其他类型的破坏明显不同。通过对单根纤维进行明确测试可以清楚地看到这种行为,这种行为必须反映出处于循环载荷下的更复杂结构中纤维的行为。但是,只有有限的报告显示了类似的断裂形态,从纤维束中提取的纤维嵌入橡胶等基质材料中。通常,取自结构的纤维的断裂端比单纤维测试的断裂端短,而且它们显示出更复杂和混乱的裂纹扩展。本研究表明,纤维的低导热性在嵌入橡胶基体中时会加剧,从而导致非常高的温度升高,这在单纤维测试中并非如此,在这些条件下,纤维上会发生裂纹萌生截面,而不是局限于近表面区域。在高达或超过玻璃化转变温度的温度下对单根纤维进行的测试表明,断裂形态如何发生改变。已经发现疲劳过程在整个光纤中普遍存在,并且由于多个裂纹的聚结而发生故障,其中一些裂纹是在光纤的芯部引发的。在所有情况下,可以看出裂纹是由纤维中的固体夹杂物引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号