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Methodology of quantitative evaluation of porosity, dendrite arm spacing and grain size in directionally solidified blades made of CMSX-6 nickel alloy

机译:CMSX-6镍合金定向凝固叶片中孔隙率,枝晶臂间距和晶粒尺寸的定量评估方法

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摘要

Modem nickel-based alloys are constructional materials used in the production of parts of aircraft engines. The paper presents the results of studies of nickel superalloy CMSX-6 used for the manufacture of blades for turbojet engines. The scope of the study encompasses a development of a quantitative evaluation methodology regarding the blade's porosity and primary structure, as well as an analysis of the influence of the location of material sampled for the study on the results of a quantitative evaluation of the structure. Parallel columnar crystals, characteristic for a correct solidification process during directional crystallization, were detected on the surface of the product. It has been found that porosity of the investigated blades does not exceed 0.145 percent, which is a sufficient value to fulfil the acceptance requirements for casts. The transitory region between the blade root and airfoil is an area of the highest porosity. In addition, an influence of the size of the blade's plane cross-section on the spacing of dendrite secondary arms in the cast has been evidenced.
机译:现代镍基合金是用于飞机发动机零件生产的建筑材料。本文介绍了用于涡轮喷气发动机叶片制造的镍超合金CMSX-6的研究结果。研究范围包括有关叶片孔隙率和主要结构的定量评估方法的发展,以及对用于研究的采样材料位置对结构定量评估结果的影响的分析。在产品表面检测到平行柱状晶体,该晶体具有定向结晶过程中正确固化过程的特征。已经发现,所研究的叶片的孔隙率不超过0.145%,这足以满足铸件的验收要求。叶片根部与翼型之间的过渡区域是孔隙率最高的区域。另外,已经证明叶片的平面横截面的尺寸对铸件中枝晶次级臂的间距的影响。

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