首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of mould temperature and grain refiner amount on microstructure and tensile properties of thixoforged AZ63 magnesium alloy
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Effects of mould temperature and grain refiner amount on microstructure and tensile properties of thixoforged AZ63 magnesium alloy

机译:模具温度和晶粒细化剂用量对触变AZ63镁合金组织和拉伸性能的影响

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摘要

The effects of mould temperature and addition amount of MgCO_3 refiner on the microstructure and tensile properties of thixoforged AZ63 alloy have been investigated. The results indicated that both the mould temperature and addition amount of MgCO_3 refiner have large effects on the microstructure and tensile properties of the thixoforged AZ63 alloy. The mould temperature affects the solidification behavior, plastic deformation and recrystallization during thixoforging through changing solidification rate. But the effects of the refiner are realized through altering the morphology and size of primary a-Mg particles and the Al content of liquid phase. Generally, high mould temperature or high refiner addition amount are beneficial for obtaining a compact microstructure with uniform deformation, and thus for improving tensile properties. The properties with ultimate tensile strength of 310 MPa and elongation of 10.7% can be obtained using the thixoforging. Crack propagation path during tensile testing changes from completely or partially along the secondarily solidified structures between the primary particles to completely across the a-Mg particles as the temperature or the refiner addition amount increases. Work hardening from the plastic deformation plays an important role for the tensile properties and this effect also varies with the temperature or the refiner amount. A new technology has been developed for producing AZ63 alloy components with uniform and small grains.
机译:研究了模具温度和MgCO_3精制剂的添加量对触变型AZ63合金组织和拉伸性能的影响。结果表明,模具温度和MgCO_3精制剂的添加量对触变型AZ63合金的组织和拉伸性能影响很大。模具温度通过改变凝固速率来影响触变过程中的凝固行为,塑性变形和再结晶。但是,通过改变初级a-Mg颗粒的形态和尺寸以及液相中的Al含量,可以实现精炼机的效果。通常,较高的模具温度或较高的磨浆机添加量对于获得具有均匀变形的致密的微观结构并由此改善拉伸性能是有利的。使用触变性可以得到极限拉伸强度为310 MPa,伸长率为10.7%的性能。随着温度或磨浆机添加量的增加,拉伸试验期间的裂纹扩展路径从完全或部分沿着一次颗粒之间的二次凝固结构改变为完全跨越a-Mg颗粒。塑性变形引起的加工硬化对于拉伸性能起着重要作用,并且这种影响还随温度或磨浆量的变化而变化。已经开发出一种新技术,用于生产晶粒细小均匀的AZ63合金部件。

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