有色金属合金带材冷轧后的硬度与主要机械性能之间的关系

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING
R. L. Shatalov, Viet Hoang Pham, Vu Quang Tran
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引用次数: 0

摘要

对3 × 25 × 200 mm的AD33铝合金和M0铜合金带材进行压下量分别为10%、20%和30%的试验轧制,并进行断裂试验,以确定轧制产品的力学性能与变形的相关性。结果用于绘制图表,找出已知化学成分的有色合金带材的硬度随力学性能和冷变形程度的变化规律。推导了轧制有色金属带材的主要硬度特性和力学性能的回归方程。高相关系数(R2 >;0.9)允许我们推荐它们用于计算轧制力特性和计算机辅助设计(CAD)中在工业轧机上轧制有色金属(AD33铝合金,M0铜合金)的带材和带材的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Relationships between the Hardness and the Main Mechanical Properties of Nonferrous Metal Alloy Strips upon Cold Rolling

Relationships between the Hardness and the Main Mechanical Properties of Nonferrous Metal Alloy Strips upon Cold Rolling

3 × 25 × 200-mm strips made of AD33 aluminum alloy and M0 copper alloy are subjected to experimental rolling at a reduction of 10, 20, and 30% with subsequent rupture test to determine the correlation between the mechanical property and the deformation of the rolled product. The results are used to construct plots and to find the regularities of changes in the hardness as a function of the mechanical properties and the degree of cold deformation of the strips made of nonferrous alloys of known chemical compositions. Regression equations are derived to calculate the main hardness characteristics and mechanical properties on rolling nonferrous metal strips. The adequacy of the equations confirmed by high correlation coefficients (R2 > 0.9) allows us to recommend them for calculating the force characteristics of rolling and designing in computer-aided design (CAD) for rolling of strips and ribbons made of nonferrous metals (AD33 aluminum alloy, M0 copper alloy) on industrial rolling mills.

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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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