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Stored energy analysis of Zn-5Al eutectic alloy in superplastic deformation

机译:Zn-5Al共晶合金超塑性变形的储能分析

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The stored energy and the energy release during SPD (superplastic deformation) of a Zn-5Al alloy were studied. The alloy after rolling process gains more stored energy, and the as-rolled specimen can obtain maximum elongation and minimum flow stress without hot holding treatment before SPD. Experimental results show that stored energy release process is along with SPD process and is also an impetus to SPD. The as-rolled Zn-5Al alloy has 48 J/mol stored energy which was measured with DSC (differential scanning calorimeter) and conforms well to the calculated value. The as-rolled Zn-5Al alloy after SPD with an elongation of 2 500 percent releases 112 J/mol stored energy. Analysis shows that the strain rate is in direct ratio to the rate of stored energy release.
机译:研究了Zn-5Al合金的SPD(超塑性变形)过程中的储能和能量释放。压延后的合金获得更多的储能,并且在SPD之前无需进行热保持处理,轧制后的试样即可获得最大的伸长率和最小的流变应力。实验结果表明,储能释放过程与SPD过程同时发生,也是SPD的动力。轧制后的Zn-5Al合金的储能为48 J / mol,用DSC(差示扫描量热仪)测量,与计算值非常吻合。 SPD后的Zn-5Al轧制合金的伸长率为2500%,释放的能量为112 J / mol。分析表明,应变率与储能释放率成正比。

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