生产具有优异抗压性能的谐波结构钛的新方法

IF 1.6 4区 材料科学 Q2 Materials Science
Debdipta Banik, Rahul Mitra, S. Mukherjee, J. Bhagyaraj, K. Mondal
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引用次数: 0

摘要

本研究采用新设计的新型压磨法对钛粉末颗粒进行表面变形,并在随后进行烧结,从而开发出谐波结构的商用纯钛。谐波结构是细粒和粗粒的双峰分布,细粒的连续网络(壳)围绕着离散的粗粒团(核)。得到的谐波结构钛具有平均晶粒大小约为 4.3 μm 的壳和平均晶粒大小约为 12 μm 的核。XRD 图谱中的 HCP 晶体结构表明压磨过程中没有发生任何相变。外壳区域的硬度提高了 ~ 2.5 倍。压缩研究还表明,谐波结构钛的强度和延展性得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Novel Method to Produce Harmonic Structured Ti with Excellent Compressive Properties

A Novel Method to Produce Harmonic Structured Ti with Excellent Compressive Properties

The present study deals with the development of a harmonic structured commercially pure Ti using a novel and newly designed press-milling method to surface-deform the Ti powder particles and subsequent sintering. The harmonic structure is a bimodal distribution of fine and coarse grains where a continuous network of fine grains (shell) surrounds discrete clusters of coarse grains (core). A harmonic structured Ti featuring a shell with an average grain size of ~ 4.3 μm and a core with an average grain size of ~ 12 μm is obtained. The HCP crystal structure in the XRD patterns indicates the absence of any phase transformation due to press-milling. The hardness of the shell region improves ~ 2.5 times that of core regions. The compression studies also show an improved combination of strength and ductility in the harmonic structured Ti.

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来源期刊
Transactions of The Indian Institute of Metals
Transactions of The Indian Institute of Metals Materials Science-Metals and Alloys
CiteScore
2.60
自引率
6.20%
发文量
3
期刊介绍: Transactions of the Indian Institute of Metals publishes original research articles and reviews on ferrous and non-ferrous process metallurgy, structural and functional materials development, physical, chemical and mechanical metallurgy, welding science and technology, metal forming, particulate technologies, surface engineering, characterization of materials, thermodynamics and kinetics, materials modelling and other allied branches of Metallurgy and Materials Engineering. Transactions of the Indian Institute of Metals also serves as a forum for rapid publication of recent advances in all the branches of Metallurgy and Materials Engineering. The technical content of the journal is scrutinized by the Editorial Board composed of experts from various disciplines of Metallurgy and Materials Engineering. Editorial Advisory Board provides valuable advice on technical matters related to the publication of Transactions.
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