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Effect of natural aging on RT and HSR superplasticity of ultrafine grained Zn-22Al alloy

机译:自然老化对超细晶粒Zn-22al合金的RT和HSR超塑性的影响

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Zn-22Al alloy was processed using a well-designed two-step equal channel angular extrusion/pressing (ECAE/P), and ultrafine-grained (UFG) microstructure with 200 nm grain size was achieved. UFG Zn-22A1 was subjected to long-term (up to 60 days) aging at room temperature (RT) and it was seen that natural aging caused limited grain growth in the microstructure. Grain sizes of about 300 nm, 350 nm and 350 nm were measured after 15, 30 and 60 days aging, which mean that UFG Zn-22A1 alloy has a good microstructural stability at RT up to 60 days. ECAPed Zn-22A1 alloy showed a maximum elongation of about 400% at a high strain rate of 5×10~(-2) s~(-1) and maximum elongation decreased with increasing grain size. Elongation to failures of ~375% and ~350% were obtained with the samples having 300 nm and 350 nm grain sizes, respectively. In addition, natural aging slightly decreased the strain rate at which superplastic region formed. While the maximum elongation occurred at the strain rate of 5×10~(-2) s~(-1) in ECAPed UFG alloy, it took place at lower strain rate of 1×10~(-2) s~(-1) after aging for all time periods. Also, flow stress of the alloy increased with increasing grain size during natural aging.
机译:使用良好设计的两步等通道角挤出/压制(ECAE / P)处理Zn-22al合金,并且实现了具有200nm晶粒尺寸的超细颗粒(UFG)微观结构。在室温(RT)下,UFG Zn-22A1经过长期(最长60天)的老化,并且可以看到天然衰老引起了微观结构的有限晶粒生长。在15,30和60天老化后测量约300nm,350nm和350nm的晶粒尺寸,这意味着UFG Zn-22a1合金在室温下具有良好的微观结构稳定性,最多60天。 ECAPED Zn-22a1合金以5×10〜(-2)S〜(-1)的高应变速率显示约400%的最大伸长率,并且随着晶粒尺寸的增加而降低了最大伸长率。用具有300nm和350nm粒尺寸的样品获得〜375%和〜350%的故障伸长率。此外,天然老化略微降低了所形成的超塑区的应变率。虽然在杂铜UFG合金中以5×10〜(-2)〜(-2)S〜(-1)的应变率发生的最大伸长率,但它以1×10〜(-2)〜(-1 )衰老后的所有时间段。而且,合金的流量应力随着天然老化期间的粒度尺寸的增加而增加。

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