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Effect of Heat Treatment on Microstructure and Mechanical Properties of Semi-solid Formed Magnesium Alloy AZ91D

机译:热处理对半固体形成镁合金AZ91D的微观结构和力学性能的影响

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The semi-solid slurry of AZ91D magnesium alloy was prepared by twin-screw stirring mixer, the microstructure and mechanical properties of semi-solid formed magnesium alloy AZ91D produced by rheo-diecasting and conventional liquid die casting were investigated, respectively. The strengthen mechanism of the semi-solid formed magnesium alloy after heat treatment was analysed by EDS. The results show that the mechanical properties of semi-solid formed magnesium alloy can be enhanced markedly by T4 and T6 heat treatment, owing to decrease of the porosity and less segregation in casting, brittle eutectic compounds dissolves gradually into α-Mg matrix, and the primary phase α-Mg decomposes in the course of heat treatment. In as-cast state, the tensile strength, elongation and hardness of semi-solid formed magnesium alloy AZ91D are 222MPa, 2.3% and 74 HBS, respectively. In T4 heat treatment state, the tensile strength and elongation are increased by 13% and 210%, and in T6 heat treatment state, the tensile strength and hardness are increased by 11% and 16%. The mechanical properties of castings formed by conventional liquid die casting are deteriorated distinctly after T6 heat treatment due to its porosity and crack defects.
机译:通过双螺杆搅拌混合器制备AZ91D镁合金的半固体浆料,研究了通过Rheo-Diecasting和常规液体压铸产生的半固体形成的镁合金AZ91D的微观结构和机械性能。 EDS分析了热处理后半固体成分镁合金的强化机理。结果表明,由于渗透孔隙率和较少的浇铸中的散射和较少的浇铸,脆性共晶化合物逐渐溶于α-Mg基质,可以通过T4和T6热处理来提高半固体形成镁合金的机械性能。初级相α-MG在热处理过程中分解。在以浇铸状态下,半固体形成的镁合金AZ91D的拉伸强度,伸长率和硬度分别为222MPa,2.3%和74 HBs。在T4热处理状态下,拉伸强度和伸长率增加了13%和210%,在T6热处理状态下,拉伸强度和硬度增加11%和16%。由于其孔隙率和裂纹缺陷,在T6热处理后,通过常规液体压铸件形成的铸件的机械性能明显劣化。

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