OT4合金废料在增材机水中电分散制备钛粉的粒度组成

IF 0.3 Q4 METALLURGY & METALLURGICAL ENGINEERING
E. V. Ageev, G. R. Latypova, A. E. Ageeva
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引用次数: 0

摘要

对添加剂机用OT4合金废渣在蒸馏水中电分散制备的钛粉粒度特性进行了实验研究,结果表明:平均体积粒径为26.3 μm,模态粒径为35.41 μm,粒径范围为2.26,颗粒比表面积为13 227 cm2/cm3,延伸系数(长径比)为1.1。利用OT4钛合金废料电分散制备的球形钛粉材料可有效地用于增材机械。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Granulometric Composition of the Titanium Powders Produced by the Electrodispersion of the OT4 Alloy Waste in Water for Additive Machines

Granulometric Composition of the Titanium Powders Produced by the Electrodispersion of the OT4 Alloy Waste in Water for Additive Machines

Granulometric Composition of the Titanium Powders Produced by the Electrodispersion of the OT4 Alloy Waste in Water for Additive Machines

The experimental studies of the size characteristics of the titanium powders produced by the electrodispersion of the OT4 alloy waste in distilled water for additive machines demonstrate that the average volumetric particle diameter is 26.3 μm, the modal particle diameter is 35.41 μm, the particle size range is 2.26, the specific surface area of the particles is 13 227 cm2/cm3, and the elongation coefficient (aspect ratio) of the particles is 1.1. The spherical titanium powder materials produced by the electrodispersion of the OT4 titanium alloy waste is shown to be effectively used for additive machines.

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来源期刊
Russian Metallurgy (Metally)
Russian Metallurgy (Metally) METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
0.70
自引率
25.00%
发文量
140
期刊介绍: Russian Metallurgy (Metally)  publishes results of original experimental and theoretical research in the form of reviews and regular articles devoted to topical problems of metallurgy, physical metallurgy, and treatment of ferrous, nonferrous, rare, and other metals and alloys, intermetallic compounds, and metallic composite materials. The journal focuses on physicochemical properties of metallurgical materials (ores, slags, matters, and melts of metals and alloys); physicochemical processes (thermodynamics and kinetics of pyrometallurgical, hydrometallurgical, electrochemical, and other processes); theoretical metallurgy; metal forming; thermoplastic and thermochemical treatment; computation and experimental determination of phase diagrams and thermokinetic diagrams; mechanisms and kinetics of phase transitions in metallic materials; relations between the chemical composition, phase and structural states of materials and their physicochemical and service properties; interaction between metallic materials and external media; and effects of radiation on these materials.
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