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Flow Behavior Of A Superplastic Zn-22% Al Alloy Processed By Equal-channel Angular Pressing

机译:等通道转角挤压超塑性Zn-22%铝合金的流动行为

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A Zn-22% Al eutectoid alloy was processed using equal-channel angular pressing (ECAP) to reduce the grain size to ~0.8 μm. A maximum elongation of ~2230% was recorded in tensile testing at 473 K at a strain rate of 1.0 × 10~(-2) s~(-1) The significance of grain boundary sliding was evaluated by measuring the offsets in surface marker lines for samples pulled to an elongation of 30% at three different strain rates. The highest sliding contribution was recorded under testing conditions corresponding to the maximum superplastic elongation. Detailed measurements showed that relatively high sliding offsets were recorded at the Zn-Zn and Zn-Al interfaces whereas the offsets were smaller at the Al-Al interfaces. The measurements show that grain boundary sliding is a major flow process during superplastic deformation in the Zn-22% Al alloy processed by ECAP.
机译:采用等径角挤压(ECAP)工艺对Zn-22%Al共析合金进行了处理,以将晶粒尺寸减小至约0.8μm。在473 K的拉伸试验中,应变率为1.0×10〜(-2)s〜(-1),记录的最大伸长率为〜2230%。通过测量表面标记线的偏移来评估晶界滑动的重要性。对于在三种不同应变率下拉至30%伸长率的样品。在对应于最大超塑性伸长率的测试条件下记录了最大的滑动贡献。详细的测量结果表明,在Zn-Zn和Zn-Al界面处记录了相对较高的滑动偏移,而在Al-Al界面处偏移较小。测量表明,在ECAP处理的Zn-22%铝合金中,晶界滑动是超塑性变形过程中的主要流动过程。

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