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Effect of Circular Hole on Compressive Behavior of Pultruded Composites

机译:圆孔对拉挤复合材料压缩行为的影响

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Compressive behavior of E-glass fiber / isophthalic polyester resin matrix pultruded composites, in the form of sheet, is reported for two thicknesses. The effect of circular hole on Compressive strength and failure strain was also investigated. In the first series, compression tests were performed with plate specimens without any hole. These were instrumented with several pairs of back-to-back axial strain gages at different locations on the surface of the specimen to capture global buckling (if any) during compression. In the second series, the plate specimens with circular hole were prepared. A wide range of diameter to width ratio of D/W = 0.075 to 0.75 was chosen. The open-hole specimens were also instrumented with several strain gages (combination of single and strip gages) in and around the surface of hole to determine the strain distribution, strain concentration factor, transverse and through-the-thickness normal strain, etc. A relationship between the Compressive strength and hole-diameter was established, and compared with the base line material properties. Finally, an attempt was made to determine the compressive failure initiation mechanisms and failure progression mechanisms in the presence of hole through sectioning and examining under a stereo microscope.
机译:据报道,e-玻璃纤维/间苯二甲酸酯树脂基质覆膜复合材料的压缩性能为两种厚度。还研究了圆孔对抗压强度和失效菌株的影响。在第一个系列中,用板标本进行压缩测试,没有任何孔。这些在样本表面的不同位置处用几对背对背轴向应变计进行仪器,以在压缩期间捕获全球屈曲(如果有的话)。在第二系列中,制备具有圆孔的板标本。选择宽的直径为d / w = 0.075至0.75的宽度比。开孔样本也用几个应变计(单个和条带测量的组合),在孔表面和周围的孔中,以确定应变分布,应变浓度因子,横向和厚度正常菌株等建立压缩强度和孔径之间的关系,与基线材料特性进行比较。最后,通过在立体显微镜下通过切片和检查来确定孔的存在下的压缩失败起始机制和失效进展机制。

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