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The effects of machinability of new typcial superalloy on its surface integrity

机译:新型超级合金对其表面完整性的影响的影响

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Nickel-based superalloy is mostly used as the material of aeroturbine blades for its high strength and high heat-resistance. Equiax crystalline alloys produced by conventional precise casting are strengthened by the regular dispersion of gamma' phase, which enhances the strength and stability but weaken the ductility of alloys. It's found that almost all the damages of equiax crystals such as high temperature creep and heat fatigue damages are related to the grain boundaries perpendicular to the axis of stress. By the newly developed casting technology of directional solidification, the blades can get columnar crystals with preferred (001) orientation parallel to the stress axis, thus increases the plasticikty, ductility and creep resistance of alloy by eliminating most grain boundaries perpendicular to the stress axis (1).
机译:基于镍的超合金主要用作其高强度和高耐热性的Aeroturbine叶片的材料。通过常规精确铸件产生的Equiax结晶合金通过γ“相的常规分散来增强,这提高了强度和稳定性,但削弱了合金的延展性。结果发现,诸如高温蠕变和热疲劳损坏的诸如高温蠕变和热疲劳损伤的几乎所有损坏都与垂直于应力轴线的晶界有关。通过新开发的定向凝固铸造技术,叶片可以通过平行于应力轴线获得优选的(001)取向的柱状晶体,从而通过消除垂直于应力轴的大多数晶界来增加合金的塑料,延展性和蠕变电阻( 1)。

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