2024MATERIALS TRANSACTIONSOpen access

Effect of Mean Torsional Stress on Very High Cycle Torsional Fatigue Strength of High Strength Steel

Yoshinobu SHIMAMURA, Yusuke Hayashi, Masao KINEFUCHI, Ryota Tanegashima, Kazuya Sugitani, Yusuke Sandaiji, Tomoyuki Fujii, Shoichi Kikuchi, Keiichiro TOHGO

Open full text 1 citations

Abstract

Mean torsional stress is considered to have less effect on the torsional fatigue strength of steels, but several experimental results have been recently reported that mean torsional stress caused significant reduction in torsional fatigue strength in the very high cycle region for shot-peened spring steel.To investigate the effect of mean torsional stress on high strength steel, ultrasonic torsional fatigue tests with mean torsional stress were conducted for spring steel and bearing steel, which are used for mechanical components subjected to cyclic shear stress.Torsional fatigue strengths up to 10 9 cycles were obtained for fully-reversed torsional loading (R = ¹1) to pulsating torsional loading (R = 0).The results revealed that mean torsional stress caused a reduction in fatigue strength in the very high cycle region for both spring steel and bearing steel, and applying higher mean shear stress would result in transition of the fracture origin from a surface to an internal inclusion.The reduction in torsional fatigue strength was discussed from the viewpoint of the transition of the fatigue origin, and applicability of a ffiffiffiffiffiffiffiffiffi area p parameter model was discussed for predicting the reduction in torsional fatigue strength.[

Open-access reader

About this research paper

What this paper is about

Mean torsional stress is considered to have less effect on the torsional fatigue strength of steels, but several experimental results have been recently reported that mean torsional stress caused significant reduction in torsional fatigue strength in the very high cycle region for shot-peened spring steel.To investigate the effect of mean torsional stress on high strength steel, ultrasonic torsional fatigue tests with mean torsional stress were conducted for spring steel and bearing steel, which are used for mechanical components subjected to cyclic shear stress.Torsional fatigue strengths up to 10 9 cycles were obtained for fully-reversed torsional loading (R = ¹1) to pulsating torsional loading (R = 0).The results revealed that mean torsional stress caused a reduction in fatigue strength in the very high cycle region for both spring steel and bearing steel, and applying higher mean shear stress would result in transition of the fracture origin from a surface to an internal inclusion.The reduction in torsional fatigue strength was discussed from the viewpoint of the transition of the fatigue origin, and applicability of a ffiffiffiffiffiffiffiffiffi area p parameter model was discussed for predicting the reduction in torsional fatigue strength.[

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Mean torsional stress is considered to have less effect on the torsional fatigue strength of steels, but several experimental results have been recently reported that mean torsional stress caused significant reduction in torsional fatigue strength in the very high cycle region for shot-peened spring steel.To investigate the effect of mean torsional stress on high strength steel, ultrasonic torsional fatigue tests with mean torsional stress were conducted for spring steel and bearing steel, which are used for mechanical components subjected to cyclic shear stress.Torsional fatigue strengths up to 10 9 cycles were obtained for fully-reversed torsional loading (R = ¹1) to pulsating torsional loading (R = 0).The results revealed that mean torsional stress caused a reduction in fatigue strength in the very high cycle region for both spring steel and bearing steel, and applying higher mean shear stress would result in transition of the fracture origin from a surface to an internal inclusion.The reduction in torsional fatigue strength was discussed from the viewpoint of the transition of the fatigue origin, and applicability of a ffiffiffiffiffiffiffiffiffi area p parameter model was discussed for predicting the reduction in torsional fatigue strength.[

Key concepts: Materials science, Fatigue limit, High strength steel, Composite material, Stress (linguistics), Cyclic stress, Fatigue testing, Goodman relation

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of Mean Torsional Stress on Very High Cycle Torsional Fatigue Strength of High Strength Steel — Research Paper | ScholarLens