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High Temperature Rupture Life of Nickel-Based Superalloy under Directional Solidification with High Temperature Gradient

机译:高温梯度定向凝固下镍基高温合金的高温断裂寿命

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摘要

The stress rupture life of DZ125 nickel-based superalloy that was prepared by directional solidification process under the temperature gradient of 500 K/cm has been studied at 900℃ and 235MPa. The results showed that with the increase of directional solidification rate from 50 um/s to 800 μm/s, the primary dendrite arm spacing reduced from 94 μm to 35.8 μm and γ' precipitates reduced and more uniformed in size. The high temperature stress rupture life of as-cast sample increased firstly and then decreased and reached its maximum at the solidification rate of 500 μm/s. The dislocation configuration of sample with refine dendritic structure after stress rupture was investigated and discovered that the dislocations in different parts of sample had different morphology and density, which indicated that the deformation of as-cast samples were uneven during high temperature stress rupture. A lot of dislocations intertwined around carbides and at the interface of γ/γ', and the dislocation networks were destroyed and the dislocations entered γ' precipitate by the way of cutting.
机译:研究了在900 K和235 MPa温度梯度下通过定向凝固工艺制备的DZ125镍基高温合金的应力断裂寿命。结果表明,随着定向凝固速率从50 um / s增加到800μm/ s,一次枝晶臂间距从94μm减小到35.8μm,并且γ'析出物减少并且尺寸更加均匀。铸态样品的高温应力断裂寿命先升高后降低,在凝固速率为500μm/ s时达到最大值。研究了应力断裂后具有细化树枝状结构的样品的位错结构,发现样品不同部位的位错具有不同的形貌和密度,这表明铸态样品在高温应力断裂过程中的变形是不均匀的。在碳化物周围和γ/γ'的界面处有许多位错交织在一起,位错网络被破坏,位错通过切削进入γ'沉淀。

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