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Grain Boundary Segregation and Fracture Behavior of Boron Containing Fe-Mn-Ni-(Mo,W) Age Hardening Alloys

机译:含Fe-Mn-Ni-(Mo,W)时效硬化合金硼的晶界偏析和断裂行为

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摘要

The effects of boron addition on the grain boundary segregation and fracture behavior of tempered Fe-Mn-Ni-Mo and Fe-Ni-Mn-W steels were investigated. High segregation of Mn to prior austenitie grain boundaries resulted in severe grain boundary embrittlement in W-bearing alloys. Boron addition did not significantly affect the grain boundary segregation of other alloying elements. Nevertheless, improvement of tensile properties is observed in 16 ppm boron doped W-bearing steel. Segregation of boron itself to grain boundaries is believed to affect the grain boundary strength of this alloy. Lower Mn segregation in Mo containing steels resulted in the ductile fracture when tempered at 480 deg C.
机译:研究了硼对回火Fe-Mn-Ni-Mo和Fe-Ni-Mn-W钢的晶界偏析和断裂行为的影响。 Mn与先前奥氏体晶界的高度偏析导致含W合金中的严重晶界脆化。硼的添加没有显着影响其他合金元素的晶界偏析。然而,在掺有16 ppm硼的含W钢中观察到了拉伸性能的改善。硼自身偏析到晶界被认为影响该合金的晶界强度。当在480℃回火时,含Mo钢中较低的Mn偏析导致韧性断裂。

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