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Measurement of residual strains as a parameter of matrix cracking in CFRP laminates

机译:作为CFRP层压板中基质裂缝参数的残留菌株的测量

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Matrix cracking in CFRP laminates results in degradation of mechanical properties of the material and appearance of residual strains. In this study, the residual strains are investigated experimentally and analytically for CFRP [0/75_(6)]_(s) laminates. The typical stress-strain curves of cracked CFRP always show the presence of residual strain, a nonrecoverable strain in the laminates as the strain does not return to 0% even after being unloaded back to 0 MPa. This is a phenomenon where the matrix cracking in laminates increases the residual strain due to relaxation of curing stresses. Initially, the coefficients of thermal efficiency (CTE) of the laminates is measured to be used in the analysis to predict the residual strain due to the matrix cracks. The strain gauges were used in this study to measure the strains. Due to very small residual strains at the unloading condition, the residual strains were also measured at different stress levels for laminates with different crack densities and are compared with theoretical predictions. Time-dependent viscoelastic behavior of the material is also considered to accurately measure the residual strains due to the occurrence of matrix cracks. This was done by using the strain recovery test when the loads were stopped for 1-1.5 hours during unloading and the strain changes during these times were recorded. The experimental results of the residual strains are in reasonably good agreement with the theoretical predictions. The fiber non-linearity properties of the laminates may cause some experimental data to shift above the analytical line.
机译:CFRP层压材料中的基质破裂导致物质的机械性能和残留菌株的出现降解。在该研究中,实验和分析对CFRP [0 / 75_(6)] _(S)层压材料进行实验和分析研究残留菌株。裂化CFRP的典型应力 - 应变曲线始终显示残留菌株的存在,即使在卸载回到0MPa之后,菌株也不会返回0%的层压板中的不可恢复应变。这是一种现象,其中层压材料中的基质破裂增加了由于沉积固化应力而增加的残余菌株。最初,测量层压板的热效率(CTE)的系数用于分析以预测由于基质裂缝引起的残余应变。在该研究中使用应变仪以测量菌株。由于卸载条件下的残余菌株非常小,还在具有不同裂缝密度的层压物的不同应力水平下测量残留菌株,并与理论预测进行比较。还考虑了材料的时间依赖性粘弹性行为,以准确地测量由于基质裂缝的发生而准确地测量残留菌株。这是通过使用应变恢复测试完成,当卸载载荷1-1.5小时时,记录在这些时间内的应变变化。残留菌株的实验结果与理论预测相当好。层压板的纤维非线性性质可能导致一些实验数据转移到分析线上方。

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