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合金元素对生物医用钛合金压缩力学性能的影响:一项系统综述。

Effect of Alloying Elements on the Compressive Mechanical Properties of Biomedical Titanium Alloys: A Systematic Review.

作者信息

Jawed Syed Faraz, Rabadia Chirag Dhirajlal, Khan Muhammad Ahmed, Khan Saad Jawaid

机构信息

Department of Biomedical Engineering, NED University of Engineering & Technology, Karachi 75270, Pakistan.

School of Engineering, Edith Cowan University, Joondalup, Western Australia 6027, Australia.

出版信息

ACS Omega. 2022 Aug 15;7(34):29526-29542. doi: 10.1021/acsomega.2c02096. eCollection 2022 Aug 30.

Abstract

Due to problems such as the stress-shielding effect, strength-ductility trade-off dilemma, and use of rare-earth, expensive elements with high melting points in Ti alloys, the need for the design of new Ti alloys for biomedical applications has emerged. This article reports the effect of various alloying elements on the compressive mechanical performance of Ti alloys for biomedical applications for the first time as a systematic review following the PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) guidelines on this subject. The search strategy in this systematic review used Scopus, Web of Science, and PubMed databases and searched the articles using (Beta-type OR β) AND Titanium AND (Mechanical property OR Microstructure) AND Alloying element keywords. Original articles from 2016 to 2022 published in English have been selected for this study as per the inclusion criteria. The results have shown that Nb can be used as the primary alloying element with Ti as it is a strong β-stabilizer element which also reduces the elastic modulus of Ti alloys. The β-eutectic elements (Fe, Cr, and Mn) have also emerged as cost-effective alloying elements that could improve the mechanical performance of Ti alloys. Ti-Nb-Zr-Ta alloyed with Si has shown potential to withstand the strength-ductility trade-off dilemma. The combination of a Ti-Nb binary alloy has emerged as an attractive material for designing low elastic modulus Ti alloys. The mechanical performance of the Ti-Nb alloy can be further improved using the β-eutectic (Fe, Cr, and Mn) and neutral (Zr, Sn) elements to be alloyed with a Ti-Nb binary alloy. The strength-ductility trade-off issue can be overcome using Si as an alloying element in Ti-Nb-Zr-Ta alloys.

摘要

由于存在应力屏蔽效应、强度-延展性权衡困境以及钛合金中使用稀土、高熔点昂贵元素等问题,因此出现了设计用于生物医学应用的新型钛合金的需求。本文首次按照PRISMA(系统评价和Meta分析的首选报告项目)指南,作为系统评价报告了各种合金元素对用于生物医学应用的钛合金压缩力学性能的影响。该系统评价中的检索策略使用了Scopus、科学网和PubMed数据库,并使用(β型或β)AND钛AND(力学性能或微观结构)AND合金元素关键词搜索文章。根据纳入标准,本研究选取了2016年至2022年以英文发表的原创文章。结果表明,铌可作为与钛的主要合金元素,因为它是一种强β稳定元素,还能降低钛合金的弹性模量。β共晶元素(铁、铬和锰)也已成为具有成本效益的合金元素,可改善钛合金的力学性能。与硅合金化的Ti-Nb-Zr-Ta合金已显示出有潜力克服强度-延展性权衡困境。Ti-Nb二元合金的组合已成为设计低弹性模量钛合金的有吸引力的材料。使用β共晶(铁、铬和锰)和中性(锆、锡)元素与Ti-Nb二元合金合金化,可以进一步提高Ti-Nb合金的力学性能。在Ti-Nb-Zr-Ta合金中使用硅作为合金元素可以克服强度-延展性权衡问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8689/9434758/e46fef041702/ao2c02096_0001.jpg

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