Residual Microstress of Austenitic Stainless Steel Due to Tensile Deformation

Author:

Suzuki Kenji1,Shobu Takahisa2

Affiliation:

1. Niigata University

2. Japan Atomic Energy Agency

Abstract

Material of the specimen was austenitic stainless steel (SUS316L). The specimens were given tensile plastic strains from 0% to 55%. The Vickers hardness of the specimen corresponded to the plastic strain. The residual macrostress was measured by Mn-Kα radiations. The residual macrostress of the annealed specimen had a small compression and changed into a tension after ten- sile plastic deformation. The specimen with 1% plastic strain showed the maximum tensile residual stress. To examine the dependency of the residual stress on the lattice plane, the residual microstress for each lattice plane was measured by hard synchrotron X-rays. The residual microstress was related with Young’s modulus which was calculated by Kro¨ ner model. A new method, 2θ-cos2 χ method, was proposed to solve the problem of coarse grains and it was excellent in comparison with the sin2 ψ method.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference10 articles.

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Micro-Residual Stresses of Plastically Deformed Austenitic Stainless Steel;Journal of the Society of Materials Science, Japan;2018-07-15

2. On the hardness of high carbon ferrous martensite;IOP Conference Series: Materials Science and Engineering;2018-06

3. Characteristics of Residual Stress by Water-Jet Peening;Materials Science Forum;2013-09

4. Residual Stresses of Water-Jet Peened Austenitic Stainless Steel;Journal of the Society of Materials Science, Japan;2013

5. Aging Behavior of Cu-Cr-Zr-Y Alloy;Advanced Materials Research;2011-08

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