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Study on mechanical properties of composite materials by in-situ tensile test

机译:原位拉伸试验研究复合材料的力学性能

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The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by SEM in-situ tensile test. The emergence and propagation of the crack, and the fracture behavior in materials have been observed and studied. It is found that in the case of the tensile test, the crack emerged in SiC fiber initially. In the case of the strong cohesion of the fiber-metal interface, the crack propagated in the fiber, meanwhile the fibers in the neighborhood of the cracked fiber began to crack and the Mg-Al metal deformed plastically, and at last the material fractured. Otherwise the toughness of the materials grows in the case of the lower cohesion of the fiber-metal matrix interface.
机译:通过SEM原位拉伸试验研究了SiC纤维增强Mg-Al金属基复合材料的力学性能。观察并研究了裂纹的产生和扩展以及材料的断裂行为。发现在拉伸试验的情况下,裂纹最初在SiC纤维中出现。在纤维-金属界面的强内聚力的情况下,裂纹在纤维中传播,同时在裂纹的纤维附近的纤维开始断裂,Mg-Al金属塑性变形,最后材料断裂。否则,在纤维-金属基质界面的内聚力较低的情况下,材料的韧性会提高。

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