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Effect of solution treatment on the microstructural evolution and mechanical properties of an aged Mg-4Zn-0.3Ca alloy

机译:固溶处理对时效Mg-4Zn-0.3Ca合金组织演变和力学性能的影响

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摘要

The effect of solution treatment on the microstructure, mechanical properties, and creep resistance of cast Mg-4Zn-0.3Ca (wt%) alloy was investigated. Creep behavior was assessed by the impression creep testing at 175 and 225 ℃, while shear yield stress (SYS) and ultimate shear strength (USS) values were measured by the shear punch testing (SPT) at room temperature and 175 ℃. A semi-continuous network of Ca_2Mg_6Zn_3 phase was found to form at grain boundaries after a single-step (SS) solution treatment (500 ℃/4 h). This phase was, however, completely dissolved into the matrix after a double-step (DS) solution treatment (350 ℃/20 h+510 ℃/3 h). The SS treated samples exhibited better mechanical properties and creep resistances, due to the presence of the thermally stable Ca_2Mg_6Zn_3 phase, mainly at grain boundaries. This phase, however, made the SS treated samples more susceptible to brittle fracture by acting as preferred sites for initiation of micro-cracks that could easily propagate through the intergranular phase network. On the other hand, DS treated samples had inferior mechanical properties and creep resistances, as compared to the SS treated condition, due to the elimination of the intergranular phases and activation of twinning during deformation.
机译:研究了固溶处理对铸造Mg-4Zn-0.3Ca(wt%)合金的组织,力学性能和耐蠕变性的影响。通过在175和225℃下的压痕蠕变试验评估蠕变行为,而在室温和175℃下通过剪切冲头试验(SPT)测量剪切屈服应力(SYS)和极限剪切强度(USS)值。经过单步(SS)固溶处理(500℃/ 4 h)后,在晶界形成了Ca_2Mg_6Zn_3相的半连续网络。然而,经过两步(DS)固溶处理(350℃/ 20 h + 510℃/ 3 h)后,该相完全溶解在基质中。经过SS处理的样品主要在晶界处存在热稳定的Ca_2Mg_6Zn_3相,因此具有较好的机械性能和抗蠕变性。然而,该相通过充当微裂纹的引发首选位置,使经SS处理的样品更容易发生脆性断裂,这些裂纹很容易通过晶间相网络传播。另一方面,与SS处理相比,DS处理的样品的机械性能和抗蠕变性较差,这是由于消除了晶间相并在变形过程中激活了孪晶。

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