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Defect size dependence on threshold stress intensity for high-strength steel with internal hydrogen

机译:含内部氢的高强度钢的缺陷尺寸取决于阈值应力强度

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A series of tensile tests were carried out using hydrogen-precharged specimens of SAE52100. Two types of tensile specimens were used: (ⅰ) smooth specimens and (ⅱ) specimens having various shapes of artificial defects with sizes of about 35-500 μm. In the smooth specimens, fracture origins were non-metallic inclusions with the size of 10-30 μm (e.g. A1_2O_3 (CaO)_x, TiN and TiC). In both types of specimens, hydrogen charging drastically decreased the tensile strength. The fracture toughness determined for the small defects at the fracture origin, that is, the threshold stress intensity K·_(ΓH) calculated from the defect size (area)~(1/2) and the applied tensile stress at the failure of the specimen σ_f, showed a defect size dependence, where area denotes the area of the domain defined by projecting the defect on a plane normal to the cylindrical axis of the specimen. Namely, the threshold value was reduced with a decrease in the defect size, which is similar to the crack size dependence in the ΔK_(th) for small fatigue crack. The values of K_(TH) for both the non-metallic inclusions and artificial defects were much smaller than those for large cracks measured by the standard WOL (Wedge Opening Load) and CT (Compact Tension) specimens.
机译:使用SAE52100的预充氢样品进行了一系列拉伸试验。使用了两种类型的拉伸试样:(ⅰ)光滑试样和(ⅱ)具有各种形状的人工缺陷的试样,尺寸约为35-500μm。在光滑的试样中,断裂起源是尺寸为10-30μm的非金属夹杂物(例如Al_2O_3(CaO)_x,TiN和TiC)。在两种类型的样品中,充氢都会大大降低抗张强度。确定断裂起点处的小缺陷的断裂韧性,即根据缺陷尺寸(面积)〜(1/2)和断裂时施加的拉伸应力计算出的阈值应力强度K·_(ΓH)。样品σ_f表现出缺陷尺寸依赖性,其中面积表示通过将缺陷投影到垂直于样品圆柱轴的平面上而定义的区域面积。即,阈值随着缺陷尺寸的减小而减小,这类似于小疲劳裂纹的ΔK_(th)中的裂纹尺寸依赖性。非金属夹杂物和人工缺陷的K_(TH)值均比标准WOL(楔形开口载荷)和CT(紧凑张力)试样测得的大裂纹的K_(TH)值小得多。

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