Effect of material hardness on crack size rendered harmless by shot peening

K. Houjou, Koji Takahashi, K. Ando, R. Fueki, H. Okada
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Abstract

The effects of material hardness on the maximum size of a slit, which was rendered harmless by shot peening, were investigated. Specimens of two types of hardness were made of spring steel (SUP9), and a semi-circular slit was introduced by using an end mill. After the shot-peening process, bending fatigue tests with a stress ratio of R = 0.05 were carried out in air. The maximum depth of slit rendered harmless by shot peening for 270 HV and 350 HV were a0p = 0.2 and 0.3 mm, respectively. Considering the experimental results of the present and previous works, the hardness did not have a large influence on the size of a0p. In order to predict the size of a0p, the range of the stress intensity factors at the semi-circular crack caused by the residual stress and applied stress during the fatigue test were analyzed. The calculated result corresponded well with the experimental result.
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材料硬度对喷丸处理后无害裂纹尺寸的影响
研究了材料硬度对裂纹最大尺寸的影响,并对经喷丸处理后无损伤的裂纹进行了研究。用弹簧钢(SUP9)制作两种硬度试样,用立铣刀引入半圆狭缝。喷丸处理后,在空气中进行应力比R = 0.05的弯曲疲劳试验。在270 HV和350 HV条件下,喷丸强化的最大无害化狭缝深度分别为a0p = 0.2和0.3 mm。综合本文和前人的实验结果,硬度对a0p的尺寸影响不大。为了预测a0p的尺寸,分析了疲劳试验中残余应力和外加应力引起的半圆裂纹处应力强度因子的变化范围。计算结果与实验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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