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Effect of Phosphorus on Stress Rupture Properties of GH4133 Ni-Base Superalloy

机译:磷对GH4133镍基高温合金应力断裂性能的影响

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摘要

The effect of phosphorus on the stress rupture property of GH4133 alloy has been investigated and is compared with that of IN718 alloy. The GH4133 alloy is crept by dislocation movement. Phosphorus has a tendency to prolong the rupture life of some wrought superalloys by inhibiting the dislocation movement. If the phosphorus addition is too high, its effect on impairing the grain boundary cohesion overwhelms that on inhibiting the dislocation movement, and the life of the GH4133 alloy can be shortened. The two functions of inhibiting the dislocation movement and impairing the grain boundary cohesion determine that the optimum phosphorus content in the GH4133 alloy is around 0.011 wt pct. Phosphorus exhibits a greater effect on prolonging the rupture life of IN718 alloy than that of GH4133 alloy. The two alloys are crept by different mechanisms. The intergranular phosphorus-bearing phase is precipitated in the IN718 alloy, while not in the GH4133 alloy. The precipitation of the phosphorus bearing phase can balance the phosphorus segregation at the grain boundaries and allows a more remarkable effect of phosphorus on extending the rupture life of IN718 alloy.
机译:研究了磷对GH4133合金应力断裂性能的影响,并与IN718合金进行了比较。 GH4133合金由于位错运动而蠕变。磷具有通过抑制位错运动来延长某些锻造高温合金的断裂寿命的趋势。如果磷的添加量过多,则其对破坏晶界内聚力的作用将超过抑制位错运动的作用,并且可缩短GH4133合金的寿命。抑制位错运动和削弱晶界内聚力的两个功能决定了GH4133合金中的最佳磷含量约为0.011 wt%。与GH4133合金相比,磷在延长IN718合金的断裂寿命方面表现出更大的作用。两种合金的蠕变机理不同。晶间含磷相在IN718合金中析出,而在GH4133合金中不析出。含磷相的沉淀可以平衡磷在晶界处的偏析,并允许磷对延长IN718合金的断裂寿命产生更显着的影响。

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