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Effects of defects in hybrid sheet moulding compound - Evaluation of defects and the impact on mechanical properties

机译:杂交片成型化合物中缺陷的影响 - 评价缺陷及对力学性能的影响

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摘要

Sheet moulding compound is a widely used fibre-reinforced material. Generally, it consists of discontinuous glass fibres in a thermoset matrix system. Due to the finite fibre length, mechanical properties of structural components are limited. To overcome this drawback, sheet moulding compound is locally reinforced with a unidirectional carbon fibre sheet moulding compound material in the approach presented in this contribution. The manufacturing of this hybrid material consisting of discontinuous glass fibre sheet moulding compound and continuous carbon fibre sheet moulding compound can result in different defects, such as folds or fibre misalignments. These defects may affect mechanical properties of the hybrid material. Consequently, this article deals with the investigation and analysis of defective hybrid sheet moulding compound components, which were examined by means of tensile tests. Results point out that investigated defects have different effects on mechanical properties. However, independent from the type of defect, mechanical properties were reduced. With a reduction of 68.86 %, folds have one of the greatest influences on tensile strength. In addition, depending on the angle deviation, even greater reductions can occur. Furthermore, the reduction of the mechanical properties can be identified clearly with increasing angle deviation.
机译:板材成型化合物是一种广泛使用的纤维增强材料。通常,它由热固性矩阵系统中的不连续玻璃纤维组成。由于有限的纤维长度,结构部件的机械性能有限。为了克服该缺点,用单向碳纤维片模塑复合材料在本贡献中的方法中局部增强片材成型化合物。该混合材料的制造包括不连续玻璃纤维片成型化合物和连续碳纤维片成型化合物可以导致不同的缺陷,例如折叠或纤维未对准。这些缺陷可能影响混合材料的机械性能。因此,本文涉及通过拉伸试验检查的有缺陷的杂化片成型化合物组分的调查和分析。结果指出,研究的缺陷对机械性能产生了不同的影响。然而,独立于缺陷的类型,减少了机械性能。减少68.86%,折叠具有对拉伸强度的最大影响之一。另外,根据角度偏差,可能发生更大的还原。此外,可以随着角度偏差清楚地识别机械性能的降低。

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