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Mechanical behavior and impact toughness of the ultrafine-grained Grade 5 Ti alloy processed by ECAP

机译:ECap处理的超细晶粒5级Ti合金的力学行为和冲击韧性

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摘要

This paper reports on a study of the relationship between microstructure, mechanical behavior and impact toughness of the UFG Grade 5 Ti alloy. The mechanical behavior and impact toughness of the Grade 5 Ti alloy in a coarse-grained state, and in an ultrafine-grained (UFG) state produced by equal-channel angular pressing (ECAP) with subsequent deformation-and-thermal treatments via extrusion and warm upsetting in isothermal conditions, were studied extensively. It is shown that a strong refinement of α-grains (less than 250 nm) in the alloy by ECAP and extrusion leads to high strength but with low values of the uniform elongation and lower impact toughness. It is demonstrated that, in order to increase the impact toughness of UFG Ti alloys, it is possible to use approaches realizing ductility enhancement associated with an increase of the strain hardening capacity. An enhancement in the impact toughness of the UFG alloy through an increase in the uniform tensile elongation of the sample is achieved by the preservation of the ultrafine size of α-grains (about 800 nm) with predominantly high-angle boundaries and a decrease in the dislocation density due to recovery and dynamic recrystallization during warm upsetting.
机译:本文报道了UFG 5级Ti合金的组织,力学行为和冲击韧性之间的关系的研究。 5级Ti合金的机械行为和冲击韧性处于粗粒状态,并且是通过等通道角挤压(ECAP)以及随后通过挤压和变形进行的热处理而产生的超细颗粒(UFG)状态对等温条件下的热up进行了广泛的研究。结果表明,通过ECAP和挤压对合金中的α晶粒(小于250 nm)进行了强烈的细化会导致较高的强度,但均匀伸长率的值较低,冲击韧性较低。已经证明,为了增加UFG Ti合金的冲击韧性,可以使用实现与应变硬化能力的增加相关的延展性提高的方法。通过保留主要具有高角度边界的超细尺寸的α晶粒(约800 nm),并通过减小试样的均匀拉伸伸长率来提高UFG合金的冲击韧性。由于热up锻过程中的恢复和动态再结晶而导致位错密度升高。

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