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首页> 外文期刊>材料 >Internal Fracture with Fish-Eye and Effect of Surface Improvement by Dynamic Strain Aging on High Temperature Fatigue of a low Alloy Steel
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Internal Fracture with Fish-Eye and Effect of Surface Improvement by Dynamic Strain Aging on High Temperature Fatigue of a low Alloy Steel

机译:用鱼眼内部骨折和动态应变老化对低合金钢高温疲劳的动态菌株效果的影响

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摘要

Stepwise S-N curves were obtained under rotating bending fatigue tests at high temperatures for an low alloy steel, as well as fatigue tests at room temperature for surface hardened specimens by shot peening or carburizing treatment. In the high cycle region, internal fracture with fish-eye pattern was dominant. As for mechanisms of internal fatigue fracture for 1Cr-0.5Mo steel, under high cycle region at high temperatures, following results can be obtained. (1) Oxidized surface layer itself has no effect on preventing fatigue crack from initiating at the specimen surface. (2) Specimen surface hardens during rotating bending fatigue test at 673K due to dynamic strain aging. Because of this phenomenon, it is difficult for Stage I cracks to initiate at specimen surface. (3) Effects of surface improvement by dynamic strain aging on fatigue strength can be recognized.
机译:在低合金钢的高温下旋转弯曲疲劳试验获得逐步S-N曲线,以及通过喷丸或渗碳处理的室温下的疲劳试验。 在高循环区域中,具有鱼眼图案的内部骨折优势。 对于1Cr-0.5Mo钢的内部疲劳骨折的机制,在高温下的高循环区域下,可以获得以下结果。 (1)氧化表面层本身对防止疲劳裂缝引发在样品表面上没有作用。 (2)由于动态应变老化,在673K旋转弯曲疲劳试验期间试样表面硬化。 由于这种现象,阶段I难以在标本表面发动。 (3)通过动态应变老化对疲劳强度的表面改善的影响可以识别。

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