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Effect of incremental equal channel angular pressing (I-ECAP) on the microstructural characteristics and mechanical behaviour of commercially pure titanium

机译:等通道渐进角压制(I-ECAP)对商业纯钛微结构特征和力学行为的影响

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Abstract Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformation (SPD) processes. This paper presents the processing of commercial purity titanium (CP-Ti) using a double billet variant of I-ECAP process. Ultrafine-grain (UFG) structure was successfully achieved after six passes of I-ECAP at 300°C. Microstructural evolution and texture development were tracked using EBSD. Analysis revealed continuous dynamic recrystallization (CDRX) as one of the grain refinement mechanism during processing. Room temperature tensile tests carried out before and after six passes, shows significant increase in strength with acceptable levels of ductility. The yield strength was increased from 308 to 558MPa and ultimate tensile strength from 549 to 685MPa. Compression tests conducted at different strain rates shows considerable increase in strength and enhanced strain rate sensitivity after processing. A distinct three-stage strain hardening was observed during compression. However the processed material displayed a loss in strain hardening ability during tensile as well as in compression tests. Detailed microhardness measurements show the evolution of hardness after subsequent passes with a reasonable level of homogeneity after the sixth pass. It is demonstrated that I-ECAP is an effective method for grain refinement in CP-Ti and subsequently improving its mechanical properties. Graphical abstract Display Omitted Highlights Commercial purity titanium was processed via incremental equal channel angular pressing at 300°C. The grain refinement achieved was in the ultrafine grain size range and CDRX was a dominant mechanism for grain refinement. Significant increase in yield and ultimate tensile strength was achieved with minimal loss of ductility. Compression tests at various strain rates reveal a distinct three-stage strain hardening behaviour. The processing yielded noticeable increase in hardness characteristics.
机译: 摘要 递增等通道角挤压(I-ECAP)是连续的严重塑性变形(SPD)过程之一。本文介绍了使用I-ECAP工艺的双方坯工艺加工商业纯度钛(CP-Ti)。 I-ECAP在300 °C下经过六次通过后,成功实现了超细颗粒(UFG)结构。使用EBSD跟踪微观结构的演变和纹理的发展。分析显示,连续动态重结晶(CDRX)是加工过程中晶粒细化的机制之一。在六次通过之前和之后进行的室温拉伸试验表明,强度显着提高,并且具有可接受的延展性。屈服强度从308增加到558 MPa,极限拉伸强度从549增加到685 MPa。在不同的应变率下进行的压缩测试显示,加工后强度显着提高,应变率敏感性增强。在压缩过程中观察到明显的三阶段应变硬化。然而,加工过的材料在拉伸以及压缩测试中显示出应变硬化能力的损失。详细的显微硬度测量结果显示,随后的焊道经过第六次焊道后具有合理的均匀度,从而使硬度得以提高。事实证明,I-ECAP是在CP-Ti中细化晶粒并随后改善其机械性能的有效方法。 图形摘要 省略显示 突出显示 商业纯度钛是通过在300 °C“下通过等通道渐进等角挤压加工的。 实现的晶粒细化在超细晶粒尺寸范围内,而CDRX是晶粒细化的主要机制。 / ce:para> 在最大程度地降低延展性的情况下,实现了产量和极限抗拉强度的显着提高。 在不同应变率下的压缩测试显示出独特的三阶段应变硬化行为。 加工工艺使硬度特性显着提高。 < / ce:list-item>

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