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Fractographic study of welded joints of carbon fiber/PPS composites tested in lap shear

机译:钢管剪切焊接碳纤维/ PPS复合材料焊接关节的Fretography研究

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摘要

This work shows a fractographic study on fracture surfaces of welded joints by electrical resistance of thermoplastic composites based on polyphenylenesulfide (PPS) reinforced with continuous carbon fiber (CF), evaluated after lap shear loading. The fracture surfaces were generated with the complete breakdown of the specimens under the same conditions used in the mechanical test. The fractographic aspects of fracture surfaces were analyzed by scanning electron microscopy (SEM). SEM analyzes allowed evaluating the interfacial adhesion of fiber/matrix and matrix/heating element (a stainless steel mesh). All laminates showed a well-consolidated composite fracture surfaces, exhibiting cusps, river lines aspects and fibers recovered by a thin layer of polymeric matrix. This latter aspect indicates a strong fiber/matrix interfacial adhesion associated to the presence of voids. Moreover, the matrix/heating element interfacial adhesion was effective only in the laminates with higher lap shear strength values. In these cases, a good adhesion of the matrix was observed in the heating element. The highest strength values determined are attributed to the interdiffusion mechanism of the polymeric chains in the welded region of joints and also to the mechanical anchoring of polymer on the heating element surface. It was also observed the presence of matrix regions with globular aspects indicating unexpected effort in mode I during the lap shear strength test.
机译:这项工作显示了基于连续碳纤维(CF)加强的聚苯磺酰硫醚(PPS)的热塑性复合材料的电阻的焊接接头断裂表面的分接研究,在搭载剪切载荷后评价。在机械测试中使用的相同条件下,在样本的完全击穿产生断裂表面。通过扫描电子显微镜(SEM)分析断裂表面的法式方面。 SEM分析允许评估纤维/基质和矩阵/加热元件(不锈钢网)的界面粘附。所有层压板均显示出良好的复合骨折表面,展示尖头,河流线和纤维由薄的聚合物基质回收。后一种方面表明与空隙的存在相关的强纤维/基质界面粘连。此外,基质/加热元件界面粘附仅在具有较高杠杆剪切强度值的层压板中有效。在这些情况下,在加热元件中观察到基质的良好附着力。确定的最高强度值归因于接头的焊接区域中的聚合物链的相互扩散机构,也归因于加热元件表面上的聚合物的机械锚固。还观察到存在矩阵区域的存在,所述球状区域在膝盖剪切强度试验期间在模式I中表明在模式I中的意外努力。

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