Chinese Journal of Mechanical Engineering | |
Novel Ring Compression Test Method to Determine the Stress-Strain Relations and Mechanical Properties of Metallic Materials | |
Bo Liang1  Yang Lyu1  Maobo Huang2  Lixun Cai2  Guangzhao Han2  Chen Bao2  Xiaokun Liu2  | |
[1] AVIC Touchstone Technology Testing Innovation (Dachang) Co. LTD, 065300, Langfang, China;Applied Mechanics and Structure Safety Key Laboratory of Sichuan Province, Southwest Jiaotong University, 610031, Chengdu, China; | |
关键词: Ring compression; Energy density equivalence; Stress-strain relation; Strength; Metallic material; | |
DOI : 10.1186/s10033-021-00622-y | |
来源: Springer | |
【 摘 要 】
Although there are methods for testing the stress-strain relation and strength, which are the most fundamental and important properties of metallic materials, their application to small-volume materials and tube components is limited. In this study, based on energy density equivalence, a new dimensionless elastoplastic load-displacement model for compressed metal rings with isotropy and constitutive power law is proposed to describe the relations among the geometric dimensions, Hollomon law parameters, load, and displacement. Furthermore, a novel test method was developed to determine the elastic modulus, stress-strain relation, yield and tensile strength via ring compression test. The universality and accuracy of the method were verified within a wide range of imaginary materials using finite element analysis (FEA), and the results show that the stress-strain curves obtained by this method are consistent with those inputted in the FEA program. Additionally, a series of ring compression tests were performed for seven metallic materials. It was found that the stress-strain curves and mechanical properties predicted by the method agreed with the uniaxial tensile results. With its low material consumption, the ring compression test has the potential to be as an alternative to traditional tensile test when direct tension method is limited.
【 授权许可】
CC BY
【 预 览 】
Files | Size | Format | View |
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RO202112046694648ZK.pdf | 4521KB | download |