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Microstructure and mechanical behavior of UFG copper processed by ECAP following different processing regimes

机译:ECAP处理不同加工方式的UFG铜的微观结构和力学行为

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Commercially pure (99.9%) copper was severe plastically deformed by equal-channel angular pressing (ECAP) following route-Bc in three different processing regimes in order to obtain ultrafine-grained (UFG) microstructures leading to improved mechanical properties. In regime-1, the billets were processed at room temperature up to eight passes. The billets were processed at 200°C up to eight passes in regime-2. Regime-3 is a hybrid regime by which the billets were deformed at 200°C up to four passes first, and these billets were then processed at room temperature for one, two and four passes. In all regimes, the ECAP processing results in a refinement of the conventionally grained (CG) initial microstructure of copper down to sub-micron level leading to a great improvement in the strength as compared to CG copper. Among the regimes applied, regime-3 was found to be the best regime for improvement in strength along with adequate ductility. The samples showed more than eight times increases in yield strength after processing in regime-3 for 4 + 4 passes, from 47 MPa for CG copper to about 408 MPa for the UFG sample. Such improvement in strength was accompanied by a 16.9% total elongation and 6% uniform elongation. The processing in regime-2 resulted in the best elongation to failure of about 22% after eight passes, but it gave the lowest strength values among others.
机译:为了获得可改善机械性能的超细晶粒(UFG)显微组织,在三种不同的加工方式下,按照路线Bc,通过等通道角挤压(ECAP)对商业纯铜(99.9%)进行了严重的塑性变形。在方案1中,将坯料在室温下加工八道次。在200型制度下,钢坯在200°C的温度下经过了八次加工。 Regime-3是一种混合方案,通过该方案,钢坯首先在200°C的温度下变形至四道次,然后在室温下对它们进行一次,两道和四道道次的加工。在所有方案中,ECAP加工均可将铜的常规晶粒化(CG)初始微观结构细化至亚微米水平,从而与CG铜相比,极大地提高了强度。在所采用的方案中,方案3被认为是提高强度和延展性的最佳方案。样品显示在制度3中处理4 + 4通孔后,屈服强度增加了八倍以上,从CG铜的47 MPa增加到UFG样品的约408 MPa。强度的这种改善伴随着16.9%的总伸长率和6%的均匀伸长率。方案2中的处理在八次通过后可导致最佳的断裂伸长率,约为22%,但其中强度值最低。

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