Characterizing of anisotropy and asymmetry of tubular materials

Heng Li, Heng Yang, Jun Ma, Zhen Yong Feng

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Titanium tubular materials with high strength, long-lifetime and light weight has attracted wide attention in many industries such as aerospace, energy and chemistry. While, titanium tubular materials are subjected to complex multiple thermal-mechanical processing, and generally present pronounced anisotropy/asymmetry properties, which greatly affects the formability and the performance of the tubular materials. Meanwhile, thin-walled tubular materials are difficult-to-characterizing materials. Thus, how to accurately and comprehensively characterize the mechanical properties is the most vital issue and precondition for innovative design of the fabricating and forming of the tubular materials and components. However, the hollow structure of tubular materials, especially thin-walled geometry, makes the testing and characterizing of the mechanical properties a challenge. In this research, a general testing and characterizing framework is developed to determine anisotropic and asymmetrical mechanical properties for tubular materials. In the framework, Knoop microhardness is first employed to qualitatively identify anisotropy and asymmetry of titanium tubes. The basic tension and compression mechanical properties along axial direction are determined by mean of uniaxial tensile and compressive tests. Combined with tension and compression tests, the viscoplastic self-consistent crystal plasticity (VPSC) is calibrated to complement the deformation behaviors along other different loading directions. Taking Ti-3Al-2.5V titanium tube and commercial pure titanium (CP-Ti) tube as the case materials, the application of the above framework for the mandrel bending demonstrates the feasibility of the proposed methodology.

源语言英语
主期刊名Technology of Plasticity
编辑Gou-Jen Wang, Kuang-Jau Fann, Yeong-Maw Hwang, Cho-Pei Jiang
出版商Trans Tech Publications Ltd
211-216
页数6
ISBN(印刷版)9783035713039
DOI
出版状态已出版 - 2018
活动1st Asia Pacific Symposium on Technology of Plasticity, APSTP 2017 - Taichung, 中国台湾
期限: 22 11月 201725 11月 2017

出版系列

姓名Materials Science Forum
920 MSF
ISSN(印刷版)0255-5476
ISSN(电子版)1662-9752

会议

会议1st Asia Pacific Symposium on Technology of Plasticity, APSTP 2017
国家/地区中国台湾
Taichung
时期22/11/1725/11/17

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