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Superplastic Deformation of a Mg-8 Li Alloy Processed at Room Temperature by ECAP

机译:ECAP在室温下处理的Mg-8%Li合金的超塑性变形

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摘要

Significant phase refinement and dispersion were achieved in a cast Mg-8% Li alloy through processing by ECAP using a die having an internal channel angle of 135° and a pressing temperature of 293 K. Following extrusion and subsequent ECAP through 4 passes, the alloy exhibited superplasticity at a testing temperature of 473 K. A maximum fracture elongation of 1610% was attained with an initial strain rate of 1.5 × 10~(-4) s~(-1). The strain rate sensitivities under the optimum superplastic conditions were measured as about 0.6. The maximum elongation achieved in this investigation is very high by comparison with most Mg alloys tested in tension at similar temperatures and strain rates.
机译:通过使用具有135°内部通道角和293 K压制温度的模具的ECAP处理,在Mg-8%铸造的Mg-8%Li合金中实现了显着的细化和分散。在挤压和随后的ECAP经过4次通过之后,合金在473 K的测试温度下具有超塑性。初始应变率为1.5×10〜(-4)s〜(-1),最大断裂伸长率为1610%。在最佳超塑性条件下测得的应变速率敏感性约为0.6。与大多数在相似温度和应变速率下进行拉伸测试的Mg合金相比,本研究中获得的最大伸长率非常高。

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