Sialon型相增强铝-氮化硅复合粉末功能涂层的结构与性能研究

IF 0.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
T. I. Bobkova, A. I. Dmitryuk, E. A. Nezhensky, N. A. Lukyanova
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引用次数: 0

摘要

本文研究了氮化铝硅复合粉体的合成过程,以确定颗粒的形成机理和颗粒中Sialon型硬化相(Sialon)的分布。本文研究了采用不同机械合成方式制备的粉末复合材料的性能。给出了镀层硬度、化学成分和元素分布的测定结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Study of the Structure and Properties of Functional Coatings from Composite Powders of the Aluminum–Silicon Nitride System Additionally Reinforced with a Sialon Type Phase

Study of the Structure and Properties of Functional Coatings from Composite Powders of the Aluminum–Silicon Nitride System Additionally Reinforced with a Sialon Type Phase

The work is devoted to the study of the process of synthesis of a composite powder of the aluminum–silicon nitride system in order to identify the mechanism of the formation of granules and the distribution of the hardening phase of the Sialon type (SiAlON) in them. The properties of a powder composite obtained using various modes of mechanosynthesis have been studied. The results of determining the hardness, chemical composition, and distribution of elements in the resulting coating are given.

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来源期刊
Inorganic Materials: Applied Research
Inorganic Materials: Applied Research Engineering-Engineering (all)
CiteScore
0.90
自引率
0.00%
发文量
199
期刊介绍: Inorganic Materials: Applied Research  contains translations of research articles devoted to applied aspects of inorganic materials. Best articles are selected from four Russian periodicals: Materialovedenie, Perspektivnye Materialy, Fizika i Khimiya Obrabotki Materialov, and Voprosy Materialovedeniya  and translated into English. The journal reports recent achievements in materials science: physical and chemical bases of materials science; effects of synergism in composite materials; computer simulations; creation of new materials (including carbon-based materials and ceramics, semiconductors, superconductors, composite materials, polymers, materials for nuclear engineering, materials for aircraft and space engineering, materials for quantum electronics, materials for electronics and optoelectronics, materials for nuclear and thermonuclear power engineering, radiation-hardened materials, materials for use in medicine, etc.); analytical techniques; structure–property relationships; nanostructures and nanotechnologies; advanced technologies; use of hydrogen in structural materials; and economic and environmental issues. The journal also considers engineering issues of materials processing with plasma, high-gradient crystallization, laser technology, and ultrasonic technology. Currently the journal does not accept direct submissions, but submissions to one of the source journals is possible.
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