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Initial Fracture and Crack Progress of Off-axis Glass Woven Composites

机译:离轴玻璃编织复合材料的初始断裂和裂纹进展

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Generally the initial fracture is the micro-fracture and the final fractures might be caused by the accumulation of the micro-fractures. A characteristic property of materials is a knee point in the stress-strain curve. In the case of woven fabrics, it is known that the knee point appears in consequence of the initial micro-fracture as transverse cracks Sun et at. [1, 2] studied the relation between the tensile properties of the woven fabric composite and the micro-fracture by observing the fracture behavior in detail.One of the main causes of the occurrence of the micro- fracture is artificial miss. When the laminate composites are made by hand-lay up method, the misalignment occurs with very high probability. The misalignments are the gap between the fiber direction and the loading direction. In the materials with the misalignments, the stress at knee point initial fracture and strength would occur at the lower stress. Therefore it is very important that to clarify the influences of the occurrence of initial micro-fractures and these behaviors on the mechanical properties of the woven composites.In this study, off-axis woven fabric composites were considered as woven composites with the misalignments. The purpose of this study was to clarify the effect of the angle between fiber orientation direction and loading direction on initial fracture behavior, crack progress and tensile strength in the off-axis tensile test. The observation of single layer and 5 layers composites were performed. Based on the results of tensile test, the FEM analyses of the three dimensions elastic also analyses were carried out.
机译:通常,初始裂缝是微裂缝,而最终裂缝可能是由微裂缝的积累引起的。材料的特征是应力-应变曲线中的拐点。在机织织物的情况下,众所周知,拐点的出现是由于最初的微裂纹,如Sun等人所见的横向裂纹。 [1,2]通过详细观察断裂行为研究了机织物复合材料的拉伸性能与微断裂之间的关系。 发生微裂缝的主要原因之一是人为失误。当通过手糊法制备层压复合材料时,极有可能发生错位。失准是纤维方向和加载方向之间的间隙。在不对齐的材料中,拐点处的初始应力和强度会在较低的应力下发生。因此,弄清初始微断裂的发生以及这些行为对机织复合材料力学性能的影响非常重要。 在这项研究中,离轴机织织物复合材料被认为是具有错位的机织复合材料。这项研究的目的是阐明离轴拉伸试验中纤维取向方向和加载方向之间的角度对初始断裂行为,裂纹进展和拉伸强度的影响。进行了单层和五层复合材料的观察。根据拉伸试验的结果,对三维弹性进行了有限元分析,并进行了分析。

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