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Modified three rail shear fixture (ASTM D 4255/D 4255M) and an experimental study of nonlinear in-plane shear behaviour of FRC

机译:改进的三轨剪切夹具(ASTM D 4255 / D 4255M)和FRC的非线性面内剪切特性的实验研究

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In order to understand the nature of nonlinearity in the in-plane shear behaviour of fibre reinforce composites (FRC), experimental data of such materials under loading cycles, involving loading, unloading, reversed loading and unloading from reversed loading, are essential. Using the standard ASTM D 4255/ D 4255 M method, it will require the fixture to be subjected to tension as well as compression. It has been proven in this paper that the standard ASTM D 4255/D 4255 M fixture is incapable of delivering such data as premature buckling is expected when the fixture is under tension, even though it claimed that the fixture could be loaded in tension as well as in compression. A cyclic rail shear fixture (CRSF) as a modified version of ASTM D 4255/D 4255 M fixture has been proposed in this paper and it has been designed and manufactured. The new fixture, which maintains all the capabilities of its standard counterpart, is truly capable of sustaining loading in tension as well as in compression so that specimens can be tested for loading and reversed loading. A series of experiments have been carried out using the new fixture to characterise the nonlinear in-plane shear stress-strain relationship of unidirectional fibre reinforced composite specimens under various cyclic loading conditions. Some new experimental data of this nature are presented in this paper, which are novel in contents and crucial in guiding the formulation of theoretical models for the nonlinear behaviour of in-plane shear for general applications.
机译:为了了解纤维增强复合材料(FRC)的面内剪切行为中的非线性性质,此类材料在加载循环下的实验数据至关重要,涉及加载,卸载,反向加载和反向加载的卸载。使用标准的ASTM D 4255 / D 4255 M方法,将要求夹具承受拉力和压缩力。本文已证明,标准ASTM D 4255 / D 4255 M夹具无法提供这样的数据,例如在夹具受拉时会过早屈曲,即使它声称夹具也可以受拉。如压缩。本文提出了一种循环导轨剪切夹具(CRSF),作为ASTM D 4255 / D 4255 M夹具的改进版本,并且已经过设计和制造。新型夹具保持了标准夹具的所有功能,真正具有承受拉伸和压缩载荷的能力,因此可以测试样品的载荷和反向载荷。使用新夹具进行了一系列实验,以表征在各种循环载荷条件下单向纤维增强复合材料试样的非线性面内剪切应力-应变关系。本文介绍了这种性质的一些新的实验数据,这些数据的内容新颖,对于指导一般应用中面内剪切非线性行为的理论模型的建立至关重要。

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