首页> 外文会议>World Conference on Titanium v.3; 20030713-20030718; Hamburg; DE >Effect of Texture and Deformation Temperature on the Strain Hardening Response of Polycrystalline α-Titanium
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Effect of Texture and Deformation Temperature on the Strain Hardening Response of Polycrystalline α-Titanium

机译:织构和变形温度对多晶α-钛合金应变硬化响应的影响

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The stress-strain behavior of two grades of textured α-titanium was established using quasi-static simple compression tests over a temperature range of 25-718℃. Compression samples cut from the specimen reference directions (RD, TD, and ND) were used to evaluate the effect of crystallographic texture on the stress-strain response. Plots of the strain-hardening rate versus stress revealed three distinct stages for material that had the basal pole close to the compression axis or perpendicular to it. The activity of compressive and tensile twin systems was also determined using orientation imaging microscopy (OIM). A correlation between deformation twinning and the three stages of strain hardening was established. The deformation temperature, initial texture, and impurity level were also found to affect the mechanical behavior at different strain levels.
机译:通过准静态简单压缩试验,在25-718℃的温度范围内,建立了两个等级的织构α-钛的应力应变行为。从样品参考方向(RD,TD和ND)切出的压缩样品用于评估晶体织构对应力-应变响应的影响。应变硬化率与应力的关系图显示了基极靠近压缩轴或垂直于压缩轴的材料的三个不同阶段。还使用取向成像显微镜(OIM)测定了压缩和拉伸孪生系统的活性。建立了变形孪生与应变硬化三个阶段之间的相关性。还发现变形温度,初始织构和杂质水平会影响不同应变水平下的机械性能。

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