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Unidirectional (60%, volume fraction) and orthogonal (50%, volume fraction) M40 graphite fibre reinforced AZ91D magnesium alloy matrix composites were fabricated by pressure infiltration method. The coefficients of thermal expansion (in the temperature range of 20-350 ℃) and dimensional stability (in the temperature range of 20-150 ℃) of the composites and the corresponding AZ91D magnesium alloy matrix were measured. The results show that coefficients of thermal expansion of the composites in longitudinal direction decrease with elevating temperature. The coefficients of thermal expansion (CTE) for unidirectional M40/AZ91D composites and orthogonal M40/AZ91D composites are 1.24×10-6 ℃-1 and 5.71×10-6 ℃-1 at 20 ℃, and 0.85×10-6 ℃-1 and 2.75×10-6 ℃-1 at 350 ℃, respectively, much lower than those of the AZ91D alloy matrix. Thermal cycling testing demonstrates that the thermal stress plays an important role on residual deformation. Thus, a better dimensional stability is obtained for the AZ91D magnesium alloy matrix composites. More extreme strain hysteresis and residual plastic deformation are observed in orthogonally fabric M40 reinforced AZ91D composite, but its net residual strain after each cycle is similar to that of the unidirectional M40/AZ91D composite.  相似文献   
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<正>石墨烯(Graphene)是一种由碳原子构成的单层片状结构新材料。由于其特殊的二维结构,石墨烯的电学、光学、热学和机械性能优异。自2004年被成功制备后[1],石墨烯相关的基础研究和工程应用研究也成为近几年的研究热点之一,在我国已经得到了政府、学术界和企业界的高度重视。国家科技重大专项、国家"973"计划围绕"石墨烯宏量可控制备"、"石墨烯基电路制造设备、工艺和材料创新"等方向  相似文献   
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