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等通道转角挤压工艺制备的多层高纯钛带材的拉伸性能及界面结合

Tensile properties and interfacial bonding of multi-layered, high-purity titanium strips fabricated by ARB process.

作者信息

Ghafari-Gousheh Soroush, Nedjad Syamak Hossein, Khalil-Allafi Jafar

机构信息

Research Center for Advanced Materials and Minerals Processing, Faculty of Materials Engineering, Sahand University of Technology, P. O. Box: 51335-1996, Tabriz, Iran.

Research Center for Advanced Materials and Minerals Processing, Faculty of Materials Engineering, Sahand University of Technology, P. O. Box: 51335-1996, Tabriz, Iran.

出版信息

J Mech Behav Biomed Mater. 2015 Nov;51:147-53. doi: 10.1016/j.jmbbm.2015.07.012. Epub 2015 Jul 26.

Abstract

Severe plastic deformation (SPD) processing has shown very effective in promotion of mechanical properties of metals and alloys. In this study, the results of investigating mechanical properties and also inter-layer bond performance of accumulative roll bonded high purity titanium (HP-Ti) strips are presented. High purity titanium plates were severely deformed by use of a combination of cold rolling (CR) to a thickness reduction of approximately 87% and then accumulative roll bonding (ARB) for three cycles (N=3) at ambient temperature. Optical and scanning electron microscopy, tensile testing, and hardness measurements were conducted. The ARB strips exhibited lower tensile strength and ductility in comparison to cold rolled one which can basically be attributed to the poor function of the latest bonds established in the centerlines of the strips. Fractographic examinations revealed the interfacial de-bonding along the centerline between the layers having undergone roll bonding for just one cycle. It was while the interfaces having experienced roll bonding for more cycles showed much higher resistance against delaminating.

摘要

严重塑性变形(SPD)加工已被证明在提升金属及合金的力学性能方面非常有效。在本研究中,展示了对累积轧制粘结高纯钛(HP-Ti)带材的力学性能以及层间结合性能的研究结果。高纯钛板通过冷轧(CR)至厚度减少约87%,然后在室温下进行三个循环(N=3)的累积轧制粘结(ARB)而发生严重变形。进行了光学和扫描电子显微镜检查、拉伸试验以及硬度测量。与冷轧带材相比,ARB带材表现出较低的抗拉强度和延展性,这基本上可归因于在带材中心线处新建立的结合性能不佳。断口分析显示,仅经过一个循环轧制粘结的层间沿中心线发生界面脱粘。而经过更多循环轧制粘结的界面表现出对分层的更高抗性。

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