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The Enhancement of Mechanical Properties of A356 Alloy Solidified at Lower Cooling Rate via Effectively Grain Refinement

机译:通过有效的晶粒细化提高在较低冷却速率下凝固的A356合金的力学性能

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For A356 alloy, solidification with relative lower cooling rate will result in coarse grain size and lower mechanical properties. In this case, Al5Ti1B mater alloy was not the effective one to refine the A356 alloy. In present study, the effective grain refiner for A356 alloy was developed. Experimental results showed that the equiaxed grains were obtained with modified A356 alloy, rather than the dendritic grains of A356 refined by Al5Ti1B master alloy. Compared to the A356 alloy refined by 0.2 wt%Al5Ti1B, the yield strength, ultimate tensile strength and elongation of modified A356 alloy were increased by 4 MPa, 30.6 MPa, and 4.5% respectively. The value of yield strength, ultimate tensile strength and elongation of modified A356 alloy were 182.3 MPa, 278.3 MPa and 8.2%. The significant improvement of mechanical properties was ascribed to the effective nucleation of α-Al and the morphology evolution of eutectic Si.
机译:对于A356合金,冷却速度相对较低的凝固将导致晶粒粗大和机械性能下降。在这种情况下,Al5Ti1B母合金不是改进A356合金的有效方法。在本研究中,开发了用于A356合金的有效晶粒细化剂。实验结果表明,等轴晶粒是用改性的A356合金获得的,而不是用Al5Ti1B中间合金精炼的A356的树枝状晶粒。与用0.2 wt%Al5Ti1B精炼的A356合金相比,改性A356合金的屈服强度,极限拉伸强度和伸长率分别提高了4 MPa,30.6 MPa和4.5%。改性A356合金的屈服强度,极限抗拉强度和伸长率分别为182.3 MPa,278.3 MPa和8.2%。力学性能的显着提高归因于α-Al的有效成核和共晶Si的形貌演化。

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