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Cryogenic fracture toughness of 9%Ni steel flux cored arc welds

机译:9%Ni钢通芯弧焊的低温断裂韧性

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The fracture toughness was investigated by using Crack Tip Opening Displacement (CTOD) test at room temperature (23 degrees C) and low temperature (- 193 degrees C). With the increase of welding heat input, the austenitic fraction of the weld increased but the number of precipitated phases decreased. At room temperature, the fatigue cracks propagated transgranularly when precipitation was scarce. When precipitation was extensive on grain bound-aries, crack propagation was intergranular. At - 193 degrees C, most cracks propagated in intergranular mode. A small amount of precipitated phases also caused fatigue cracks to grow along grain boundaries. Some large precipitates on the propagation path of fatigue cracks were broken. Precipitates reduced the resistance of crack propagation at austenite grain boundaries. The influence of precipitates on grain boundaries increased at low temperature. The number and size of precipitates should be controlled strictly in the FCAW process of 9%Ni steel.
机译:通过在室温(23℃)和低温( - 193℃)下使用裂缝尖端开口位移(CTOC)测试来研究裂缝韧性。随着焊接热输入的增加,焊缝的奥氏体分数增加,但沉淀相的数量降低。在室温下,疲劳裂缝在沉淀稀缺时逐渐传播。当沉淀在晶粒束 - 白羊蛋白上广泛时,裂纹繁殖是晶间的。在-193摄氏度下,在晶间模式中传播的大多数裂缝。少量沉淀的阶段也导致沿晶界生长的疲劳裂缝。对疲劳裂缝的传播路径进行了一些大的沉淀。沉淀物降低了奥氏体晶界裂纹繁殖的抗性。低温下沉淀对晶界的影响增加。沉淀物的数量和尺寸应严格控制9%Ni钢的Fcaw工艺。

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