Ni-Al膜多层结构对Ni-Al表面合金成形过程中熔化阈值和熔体厚度的影响

D. Shepel', E. Yakovlev, A. Markov, V. Petrov, A. Solovyov
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引用次数: 0

摘要

对钢基体表面Ni-Al合金的合成进行了数值研究。表面合金比涂层具有显著的优势,因为它们提供最高水平的附着力。镍铝耐热合金具有密度小、导热系数高、高温下抗断裂强度高等特点,在工程上得到了广泛的应用。研究了液相混合法制备Ni、Al多层结构在表面Ni-Al合金中的应用。考虑了层厚度等几何参数的影响。在一定的有效层厚度比下,多层结构的熔化阈值最小。
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Ni-Al Film Multilayered Structure Effect on Melting Threshold and Melt Thickness in Ni-Al Surface Alloy Forming Process
The synthesis of the surface Ni-Al alloy on a steel substrate is numerically studied. Surface alloys have a significant advantage over coatings since they provide the highest level of adhesion. Heat resistant alloys based on nickel-aluminum are widely used in engineering due to their low density, combination of high thermal conductivity and fracture strength at high temperatures. The application of the Ni and Al multilayer structure for the formation of the surface Ni-Al alloy by the method of liquid-phase mixing is studied. The effect of geometry parameters such as thicknesses of layers is considered. At a certain ratio of effective layer thicknesses the melting threshold of the multilayer structure is minimal.
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