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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >On the Role of Grain Boundary Serration in Simulated Weld Heat-Affected Zone Liquation of a Wrought Nickel-Based Superalloy
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On the Role of Grain Boundary Serration in Simulated Weld Heat-Affected Zone Liquation of a Wrought Nickel-Based Superalloy

机译:晶界锯齿在锻造镍基高温合金的模拟焊接热影响区液化中的作用

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摘要

The effects of grain boundary serration on boron segregation and liquation cracking behavior in a simulated weld heat-affected zone (HAZ) of a wrought nickel-based superalloy 263 have been investigated. The serrated grain boundaries formed by the developed heat treatment were highly resistant to boron segregation; the serrated sample contained 41.6 pct grain boundaries resistant to boron enrichment as compared with 14.6 pct in the unserrated sample. During weld thermal cycle simulation, liquated grain boundaries enriched with boron were observed at the peak temperature higher than 1333 K (1060 °C) in both unserrated and serrated samples; however, serrated grain boundaries exhibited a higher resistance to liquation. The primary cause of liquation in this alloy was associated with the segregation of the melting point depressing element boron at grain boundaries. The hot ductility testing result indicated that the serrated grain boundaries showed a lower susceptibility to liquation cracking; the grain boundary serration led to an approximate 15 K decrease in the brittle temperature range. These results reflect closely a significant decrease in interfacial energy as well as a grain boundary configuration change by the serration.
机译:研究了变形镍基高温合金263的模拟焊接热影响区(HAZ)中晶界锯齿对硼偏析和液化开裂行为的影响。通过发达的热处理形成的锯齿状晶界对硼偏析具有很高的抵抗力。锯齿状样品含有41.6 pct耐硼富集的晶界,而未锯齿状样品中则为14.6 pct。在焊接热循环模拟过程中,在未锯齿状和锯齿状样品中,在高于1333 K(1060°C)的峰值温度下观察到富集了硼的液化晶界。但是,锯齿状晶界表现出较高的抗液化性。该合金中发生液化的主要原因与熔点降低元素硼在晶界的偏析有关。热延展性测试结果表明,锯齿状晶界对液化裂纹的敏感性较低。晶界锯齿导致脆性温度范围降低约15K。这些结果紧密反映了界面能的显着降低以及锯齿引起的晶界构型变化。

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