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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Improving reliability of high-strength steel designed against fatigue limit using surface crack nondamaging technology by shot peening
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Improving reliability of high-strength steel designed against fatigue limit using surface crack nondamaging technology by shot peening

机译:采用表面裂纹Nondamaging技术,提高高强度钢的可靠性射击喷丸

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摘要

Recently, surface crack nondamaging technology has been developed to render harmless surface cracks that can reduce the fatigue limit of metals by 20-60%. This is due to the effects of compressive residual stress induced by shot peening. To improve the reliability of high-strength steel equipment designed against fatigue limit using surface crack nondamaging technology, the following characteristics were determined: (1) the effects of surface crack aspect ratio on maximum harmless crack depth (α_(hlm)) at high-strength steel for three residual stress distributions; (2) the relationship between the maximum allowable crack depth (α_(crN)) and α_(hlm) assuming the value of safety factor; (3) the relationship between minimum detectable crack depth via nondestructive inspection (α_(NDI)) and α_(hlm), assuming that nondestructive inspection could detect the crack with sufficient probability; and (4) the relationships between α_(hlm), α_(NDI), and α_(crN).
机译:最近,已经开发了表面裂纹Nondamaging技术,以使无害的表面裂缝能够将金属疲劳极限降低20-60%。 这是由于射击喷丸引起的压缩残余应力的影响。 为了提高使用表面裂缝Nondamaging技术设计针对疲劳极限的高强度钢设备的可靠性,确定了以下特征:(1)表面裂纹宽高比对高的最大无害裂纹深度(α_(HLM))的影响 强度钢三个残余应力分布; (2)假设安全系数值的最大允许裂纹深度(α_(CRN))和α_(HLM)之间的关系; (3)假设非破坏性检测可能检测到具有足够概率的裂缝,通过非破坏性检测(α_(NDI))和α_(HLM)之间的最小可检测裂纹深度之间的关系; (4)α_(HLM),α_(NDI)和α_(CRN)之间的关系。

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