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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Mechanical Properties of ECAP-Biomedical Titanium Materials: A Review
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Mechanical Properties of ECAP-Biomedical Titanium Materials: A Review

机译:ECAP-生物医学钛材料的力学性能研究进展

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Wide use of titanium (Ti) materials in medicine gives impetus to a search for development new techniques with elevated properties such as strength, corrosion resistance and Young's modulus close to that of bone tissue. This article presents most recent state of the art on the use of equal channel angular pressing (ECAP) technique in evolving mechanical characteristics of the ultrafine-grained bio-grade Ti materials. Over past few decades, research activities in this area have grown enormously and have produced interesting results, including achieving combination of conflicting properties that are desirable for biomedical applications by severe plastic deformation (SPD) processing. A review of the most recent work in this area is systematically presented. The challenges in processing ultrafinegrained Ti materials are identified and discussed. An overview of the biomedical Ti alloys processed with ECAP technique is given in this review, along with a summary of their effect on the important mechanical properties that can be achieved by SPD processing. The paper also offers insights in the mechanisms underlying SPD.
机译:钛(Ti)材料在医学中的广泛应用推动了开发具有更高性能(例如强度,耐腐蚀性和杨氏模量接近骨骼组织)的新技术的寻求。本文介绍了在等通道角挤压(ECAP)技术发展超细晶粒生物级Ti材料的机械特性方面的最新技术。在过去的几十年中,该领域的研究活动取得了巨大的发展,并产生了令人感兴趣的结果,包括通过严重的塑性变形(SPD)处理实现生物医学应用所需的相互冲突的特性的组合。系统地介绍了该领域的最新工作。确定并讨论了加工超细晶Ti材料的挑战。本文概述了用ECAP技术处理的生物医学钛合金,以及它们对通过SPD处理可实现的重要机械性能的影响的概述。本文还提供了有关SPD潜在机制的见解。

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