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Influence of Processing Techniques on Microstructure and Mechanical Properties of a Biodegradable Mg-3Zn-2Ca Alloy

机译:加工工艺对可生物降解的Mg-3Zn-2Ca合金组织和力学性能的影响

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摘要

New Mg-3Zn-2Ca magnesium alloy was prepared using different processing techniques: gravity casting as well as squeeze casting in liquid and semisolid states. Materials were further thermally treated; thermal treatment of the gravity cast alloy was additionally combined with the equal channel angular pressing (ECAP). Alloy processed by the squeeze casting in liquid as well as in semisolid state exhibit improved plasticity; the ECAP processing positively influenced both the tensile and compressive characteristics of the alloy. Applied heat treatment influenced the distribution and chemical composition of present intermetallic phases. Influence of particular processing techniques, heat treatment, and intermetallic phase distribution is thoroughly discussed in relation to mechanical behavior of presented alloys.
机译:使用不同的加工技术制备了新型Mg-3Zn-2Ca镁合金:重力铸造以及液态和半固态挤压铸造。材料经过进一步热处理;重力铸造合金的热处理还与等通道角挤压(ECAP)结合在一起。在液态和半固态状态下通过挤压铸造加工的合金表现出改善的可塑性。 ECAP加工对合金的拉伸和压缩特性都有积极影响。施加的热处理影响了当前金属间相的分布和化学组成。讨论了特定加工技术,热处理和金属间相分布的影响,并与所提供合金的机械性能有关。

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