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Strain rate effects on the shear mechanical properties of a highly oriented thermoplastic composite material using a contacting displacement measurement methodology--Part A: elasticity and shear strength

机译:使用接触位移测量方法,应变速率对高取向热塑性复合材料的剪切机械性能的影响-A部分:弹性和剪切强度

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This paper is concerned with the characterisation of the shear mechanical properties of glass-fibre-reinforced thermoplastic composite laminates over a range of strain rates. The research was carried out as part of the DTI/EPSRC-funded CRACTAC programme, which was part of the FASMAT Foresight Vehicle suite of projects. Twenty-two [+-45]_(2s) laid-up specimens each were tested at 5, 50 and 500 (mm/min) crosshead displacement rates, using a universal testing machine. The longitudinal and transverse strains were obtained experimentally using contacting extensometry apparatus and then transformed to the ply axis using Classical Laminate Theory. A rigourous statistical treatment method was proposed for the processing and analysis of the raw data. The shear modulus decreased for increasing strain rate. The shear failure stress increased for increasing strain rate. Semi-empirical linear functions of the shear modulus and shear failure strength were proposed with respect to the logarithm of the shear strain rate. The shear failure strain was independent of strain rate. Finally, the observed opposing trends of in-plane shear modulus and shear failure stress suggested that shear damage evolution is strain rate dependent for the examined material.
机译:本文关注在一定的应变速率范围内玻璃纤维增​​强的热塑性复合材料层压板的剪切机械性能。该研究是DTI / EPSRC资助的CRACTAC计划的一部分,该计划是FASMAT预见车辆项目套件的一部分。使用通用测试机,分别以5、50和500(mm / min)的十字头位移速率测试22个[+ -45] _(2s)放置的样本。使用接触式引伸计设备通过实验获得纵向和横向应变,然后使用经典层压理论将其转换为帘布层轴。提出了一种严格的统计处理方法来处理和分析原始数据。剪切模量降低以增加应变率。剪切破坏应力增加以增加应变率。相对于剪切应变率的对数,提出了剪切模量和剪切破坏强度的半经验线性函数。剪切破坏应变与应变率无关。最后,观察到的平面内剪切模量和剪切破坏应力的相反趋势表明,对于所检查的材料,剪切损伤的演化取决于应变率。

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