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Low-cycle Fatigue and Fracture Behaviour of 9%Ni Steel Flux Cored Arc Welding joint at Cryogenic Temperature

机译:低温下9%Ni钢药芯焊丝电弧焊接头的低周疲劳和断裂行为

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In the present work, low-cycle fatigue (LCF) test and crack tip opening displacement (CTOD) test were performed for 9% Ni steel flux cored arc welding (FCAW) joint at room temperature (296 K) and cryogenic temperature (80 K). At cryogenic temperature, the strain amplitude had a far greater impact on fatigue life of 9%Ni steel welded joint and it decreased dramatically lead to a significant increase in fatigue life. It was found that most fracture initiation of joints located in fusion area at room temperature, while it occurred in weld seam at low temperature. The fracture toughness of weld seam was higher than that of fusion zone no matter the testing temperature. The effect of precipitated phase was the true reason. The fatigue cracks propagated in transgranular mode at room temperature, ultimately, and intergranular mode at low temperature in both LCF specimens and CTOD specimens.
机译:在当前工作中,在室温(296 K)和低温(80 K)下对9%Ni钢药芯焊丝电弧焊(FCAW)接头进行了低周疲劳(LCF)试验和裂纹尖端张开位移(CTOD)试验。 )。在低温下,应变幅度对9%Ni钢焊接接头的疲劳寿命影响更大,并且急剧降低,导致疲劳寿命显着增加。研究发现,在室温下,位于焊接区域的接缝大多数是由断裂引起的,而在低温下则发生在焊缝中。无论测试温度如何,焊缝的断裂韧性均高于熔合区。沉淀相的影响是真正的原因。 LCF标本和CTOD标本中的疲劳裂纹最终在室温下以晶间模式传播,而在低温下以晶间模式传播。

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