Analysis of technological processes of production of spherical powders and granules of NiAl nickel monoaluminide for the needs of domestic engine building

M. Zharov
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引用次数: 1

Abstract

The article is devoted to the study of the features of various methods for obtaining granules of nickel aluminide NiAl. The problems hindering the widespread use of nickel aluminide NiAl in modern aircraft and engine construction are analyzed. It has been revealed that the main problems hindering the widespread industrial use of nickel aluminide NiAl are practically zero plasticity of the material during pressure treatment and difficulties in machining parts made of this material. However, this problem can be solved with the use of pellet metallurgy technologies, when by sintering the granular material, an almost finished product is obtained that requires minimal amounts of subsequent machining. Within the framework of the conducted studies, the quality criteria of the obtained granules were determined, which include the sphericity of the granules, the stability of the obtained dimensions of the granular material, the absence of defects in the form of pores, the absence of satellites on the surface of the granules, the presence of a finely dispersed dendritic structure of the granule material. Several methods of obtaining granules of nickel aluminide NiAl have been investigated from the point of view of obtaining the highest quality raw materials, namely: the method of spraying the melted billet with a high-temperature inert gas flow (gas atomization method), the method of centrifugal spraying of the melted electrode (PREP method), the method of centrifugation of the melt using a perforated crucible. It is determined that the optimal way to obtain a high-quality granulate of NiAl material is the method of centrifugal spraying of the melted electrode. In the course of the conducted research, it was proved that the main parameter of the process of centrifugal spraying of the melted electrode, affecting the quality of the obtained granules, their diameter and the value of the dendritic parameter of the microstructure of the granules, is not so much the current strength I as the rotation speed of the melted electrode n. The optimal values of the electrode rotation speeds are determined, which are n ≈ 15000-16000 revolutions per minute at a current strength I ≈ 1000-1500 A. A technology for obtaining high-quality NiAl material granulate has been developed and tested, which includes operations for obtaining initial NiAl blanks by self-propagating high-temperature synthesis, subsequent remelting of semi-finished products, heat treatment, separation of granules and subsequent granulation by the PREP method.
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针对国内发动机制造的需要,对NiAl单铝镍球形粉末和颗粒的生产工艺进行了分析
本文研究了制备铝化镍NiAl颗粒的各种方法的特点。分析了阻碍铝镍合金在现代飞机和发动机制造中广泛应用的问题。研究表明,阻碍镍铝化NiAl在工业上广泛应用的主要问题是材料在压力处理过程中的塑性几乎为零,以及用该材料制成的零件加工困难。然而,这个问题可以通过使用球团冶金技术来解决,当通过烧结颗粒材料时,获得几乎完成的产品,需要最少的后续加工。在进行的研究框架内,确定了获得的颗粒的质量标准,其中包括颗粒的球形度,颗粒材料尺寸的稳定性,孔隙形式的缺陷的存在,颗粒表面不存在卫星,颗粒材料的精细分散的枝晶结构的存在。从获得最高质量原料的角度出发,研究了几种获得镍铝化NiAl颗粒的方法,即:用高温惰性气体流喷涂熔融钢坯的方法(气体雾化法)、熔融电极离心喷涂的方法(PREP法)、用穿孔坩埚离心熔体的方法。确定了获得高质量颗粒状NiAl材料的最佳方法是对熔化电极进行离心喷涂。在进行的研究过程中,证明了熔化电极离心喷涂过程中,影响所得颗粒质量、颗粒直径和颗粒微观结构枝晶参数值的主要参数与其说是电流强度I,不如说是熔化电极的转速n。确定了电极转速的最佳值。转速为n≈15000 ~ 16000转/分钟,电流强度为I≈1000 ~ 1500a。开发并测试了一种获得高质量NiAl材料造粒的技术,包括通过自蔓延高温合成获得初始NiAl毛坯、随后的半成品重熔、热处理、颗粒分离和随后的PREP法造粒的操作。
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