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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Ductile fracture strength of nickel-based alloy plates with a surface flaw
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Ductile fracture strength of nickel-based alloy plates with a surface flaw

机译:具有表面缺陷的镍基合金板的韧性断裂强度

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Limit-load analysis is applied to fracture analyses of flawed components made of materials with high ductility in the JSME code for inservice inspection for nuclear power plant. However, the applicability of limit-load analysis to Ni-based alloys has not yet been clarified. Furthermore, flow-stress level for Ni-based alloy has not been verified by experiments. To clarify applicability of limit-load analysis and actual flow-stress level for Ni-based alloys, the ductile fracture tests were conducted.The specimens were made from both base metal and welded joint plates with a surface flaw or a through-wall flaw. In specimens with a shallow flaw, the tensile load increased with the tip of flaw blunting, and the load dropped down at the penetration of ductile crack initiated at the blunted flaw tip. In the specimens with a deep flaw, the tensile load increased due to the blunting of the flaw tip at the width direction after penetration of ductile crack. The load dropped down at the beginning of ductile crack growth in the width direction. In all cases, the net stress at the maximum tensile load was higher than 2.7 Sm and the average of yield stress and ultimate strength.
机译:极限载荷分析适用于JSME规范中由高延展性材料制成的缺陷组件的断裂分析,用于核电厂的在役检查。但是,极限载荷分析对镍基合金的适用性尚未阐明。此外,镍基合金的流变应力水平尚未通过实验验证。为了阐明镍基合金的极限载荷分析和实际流应力水平的适用性,进行了延性断裂试验,样品由贱金属和焊接连接板制成,表面有裂纹或通孔缺陷。在具有浅缺陷的样品中,拉伸载荷随着缺陷尖端的钝化而增加,并且载荷在钝化缺陷尖端开始的延展性裂纹的渗透时下降。在具有深缺陷的试样中,由于韧性裂纹穿透后,缺陷尖端在宽度方向上的钝化,导致拉伸载荷增加。在延性裂纹扩展开始时,载荷在宽度方向上下降。在所有情况下,最大拉伸载荷下的净应力均高于2.7 Sm,并且屈服应力和极限强度的平均值更高。

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