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Relationship between the residual and total strain from creep-recovery tests of polypropylene/multiwall carbon nanotube composites

机译:聚丙烯/多壁碳纳米管复合材料蠕变恢复试验中残留和总应变的关系

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摘要

An assessment of accumulated irreversible strains in polymer composites is a crucial element for controlling dimensional stability of structural components and their remnant life. The residual strains as functions of total creep strains are analyzed by example of creep-recovery data of polypropylene (PP)/multiwall carbon nanotube (MWCNT) composites. To cover wide range of strains, creep test regimes with different stresses, loading time, and number of cycles were applied. Totally, data of 62 single creep-recovery tests for 7 material compositions were used for analysis. A general empirical relationship between the residual and total creep strain is established and finely described by a power law. The residual strain increases with increasing stress and time of loading and decreases with growing amount of MWCNT. The total creep strain, which is implicitly related to stress, time, and sample specificity, determines the contribution of irreversible deformation. This fact overcomes data variability within one series of samples. Similar empirical relationships are obtained for 25 polymer composites from literature reinforced with different types and amount of fillers and tested under different temperatures. The empirical relationship can be used for an express assessment of residual strains accumulated in a long term by performing just a few short-term control tests.
机译:聚合物复合材料中累积不可逆应变的评估是控制结构部件尺寸稳定性及其剩余寿命的关键因素。以聚丙烯(PP)/多壁碳纳米管(MWCNT)复合材料的蠕变恢复数据为例,分析了残余应变与总蠕变应变的关系。为了覆盖广泛的应变范围,采用了不同应力、加载时间和循环次数的蠕变试验制度。总共使用了7种材料成分的62次单次蠕变恢复试验的数据进行分析。建立了残余蠕变应变和总蠕变应变之间的一般经验关系,并用幂律进行了精细描述。残余应变随应力和加载时间的增加而增加,随MWCNT用量的增加而减小。总蠕变应变与应力、时间和样品特异性密切相关,决定了不可逆变形的贡献。这一事实克服了一系列样本中的数据可变性。从文献中获得了25种聚合物复合材料的类似经验关系,这些复合材料使用不同类型和数量的填料增强,并在不同温度下进行了测试。通过仅进行几次短期对照试验,经验关系可用于明确评估长期累积的残余应变。

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