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Tensile Properties and Corrosion Behavior of Extruded Low-Alloyed Mg–1Sn–1Al–1Zn Alloy: The Influence of Microstructural Characteristics

机译:挤压低合金Mg-1Sn-1Al-1Zn合金的拉伸性能和腐蚀行为:微观组织特性的影响

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摘要

A low-alloyed Mg–Sn–Al–Zn system was developed and successfully fabricated through the extrusion process. The dependence of tensile properties and corrosion behavior on microstructural characteristics of the studied alloy has been investigated. After extrusion, the alloy consists of fine dynamically recrystallized (DRXed) grains of ~2.65 μm and strongly textured coarse unDRXed grains. As a consequence, the extruded alloy showed a high-tensile yield strength (YS) of 259 MPa, ultimate tensile strength (UTS) of 297 MPa and elongation (EL) of 19.0%. The strengthening response was discussed in terms of grain size, texture and solutes. The as-extruded alloy presented severe pitting corrosion and the dependence of corrosion properties on the crystallographic orientation and the formation of corrosion products was analyzed.
机译:开发了低合金Mg-Sn-Al-Zn系统,并通过挤压工艺成功制造了该系统。已经研究了拉伸性能和腐蚀行为对所研究合金的显微组织特性的依赖性。挤压后,该合金由〜2.65μm的细动态重结晶(DRXed)晶粒和强烈织构的粗非DRXed晶粒组成。结果,挤出合金显示出259MPa的高拉伸屈服强度(YS),297MPa的极限拉伸强度(UTS)和19.0%的伸长率(EL)。从晶粒尺寸,织构和溶质方面讨论了强化响应。挤压后的合金表现出严重的点蚀,并分析了腐蚀性能对晶体取向的依赖性以及腐蚀产物的形成。

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