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The origin of 'rare earth' texture development in extruded Mg-based alloys and its effect on tensile ductility

机译:镁基挤压合金中“稀土”织构发展的起源及其对拉伸塑性的影响

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摘要

The extrusion behaviour, texture and tensile ductility of five binary Mg-based alloys have been examined and compared to pure Mg. The five alloying additions examined were Al, Sn, Ca, La and Gd. When these alloys are compared at equivalent grain size, the La- and Gd-containing alloys show the best ductilities. This has been attributed to a weaker extrusion texture. These two alloying additions, La and Gd, were found to also produce a new texture peak with (1121) parallel to the extrusion direction. This "rare earth texture" component was found to be suppressed at high extrusion temperatures. It is proposed that the (1121) texture component arises from oriented nucleation at shear bands.
机译:已经检查了五种二元镁基合金的挤压性能,织构和拉伸延展性,并将其与纯镁进行了比较。检验的五种合金添加剂为Al,Sn,Ca,La和Gd。当以等效晶粒度比较这些合金时,含La和Gd的合金表现出最佳的延展性。这归因于较弱的挤出纹理。发现这两种合金添加物La和Gd还会产生一个新的织构峰,其(1121)平行于挤压方向。发现该“稀土质地”成分在高挤出温度下被抑制。提出(1121)纹理分量是由剪切带上的定向成核引起的。

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