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Impact of Intensification Pressure and Grain Refiner on the Hot Tearing Susceptibility of a Semi-Solid Cast Al-Zn-Mg-Cu Alloy

机译:强化压力和晶粒细化剂对半固态铸造Al-Zn-Mg-Cu合金热撕裂敏感性的影响

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摘要

The commercial application of wrought aluminum alloys to semi-solid casting would be extremely beneficial, as wrought alloys often exhibit better strength-ductility combinations than cast aluminum alloys. Semi-solid casting typically reduces the hot tearing tendency, as it requires a globular microstructure and produces grain refinement, but hot tearing often still occurs during the semi-solid die casting of complex-shaped components produced from wrought alloys. This study examined the impact of intensification pressure and grain refinement on the hot tearing tendency of an Al-Zn-Mg-Cu alloy. Semi-solid slurries were produced using the SEED (Swirled Equilibrium Enthalpy Device) process. A specially designed constrained rod mold was used to evaluate hot tearing. Results showed the tendency for hot tearing decreased with increasing of intensification pressure. Grain refinement (with 0.06Ti) was also found to be beneficial to the elimination of hot tearing.
机译:锻铝合金在半固态铸造中的商业应用将是极为有益的,因为锻铝合金通常比铸造铝合金表现出更好的强度-延展性组合。半固态铸造通常会降低热撕裂趋势,因为它需要球状微结构并产生晶粒细化,但是在半固态压铸中,锻造合金制成的复杂形状部件经常仍会发生热撕裂。这项研究检查了强化压力和晶粒细化对Al-Zn-Mg-Cu合金热撕裂趋势的影响。使用SEED(涡旋平衡焓设备)工艺生产半固体浆料。使用专门设计的约束棒模来评估热撕裂。结果表明,随着撕裂强度的增加,热撕裂的趋势减小。还发现晶粒细化(含0.06Ti)有利于消除热撕裂。

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