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Combined impact and fatigue of glass fiber reinforced composites

机译:玻璃纤维增​​强复合材料的综合冲击和疲劳

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摘要

The low velocity impact and tension-tension fatigue behavior of glass fiber reinforced polyester resin composites have been investigated. Two fiber geometries, namely [±45°]_4 and [0/90°]_(2s) stitch bonded glass fibers were studied. The results revealed that even low energy impact could seriously impair the tensile properties of [±45°]_4 composites. For the [0/90°]_(2s) glass fiber composites, a critical impact energy was found. Below this energy level the tensile properties were hardly affected by the impact but above it the tensile properties reduced with increasing energy. Low velocity impact also reduced the fatigue lives of the composites and this reduction could be related to the degradation in tensile strength. By normalizing the fatigue stress against the post-impact residual tensile strength of the composite, it was found that for each fiber geometry a single S-N curve could be drawn, which encompassed both undamaged and impacted samples. This implies that fatigue lifetimes of impact damaged composites can be predicted from measurement of the residual tensile strength of impacted specimens and the S-N curve of undamaged samples.
机译:研究了玻璃纤维增​​强聚酯树脂复合材料的低速冲击和拉伸疲劳性能。研究了两种纤维几何形状,即[±45°] _4和[0/90°] _(2s)缝编玻璃纤维。结果表明,即使低能量冲击也可能严重损害[±45°] _4复合材料的拉伸性能。对于[0/90°] _(2s)玻璃纤维复合材料,发现了临界冲击能。低于该能量水平,拉伸性能几乎不受冲击的影响,但高于该能量水平,拉伸性能随能量增加而降低。低速冲击还降低了复合材料的疲劳寿命,这种降低可能与拉伸强度的降低有关。通过将疲劳应力相对于复合材料的冲击后残余抗张强度进行归一化,发现对于每种纤维几何形状,都可以绘制一条S-N曲线,其中包括未损坏和受影响的样品。这意味着可以通过测量受冲击样品的残余拉伸强度和未损坏样品的S-N曲线来预测受冲击损坏的复合材料的疲劳寿命。

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