外文翻译--- 关于工艺参数对热挤压镁合金影响的研究
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1、 PDF外文:http:/ 关于工艺参数对热挤压镁合金影响的研究 1 Investigation of the influence of process parameters on hot extrusion of magnesium alloy tubes Abstract: During the hot extrusion of magnesium alloy, the change of process parameters will affect the mechanical properties of extruded product
2、s. In this study, Taguchi method and analysis of variance (ANOVA) are applied to analyze the influence of process parameters on the hot extrusion of magnesium alloy tubes under extrusion ratio of 21.05. The experiments are arranged by orthogonal array method in which magnesium alloys AZ31and AZ61 ar
3、e used as outer arrays, the factors selected as inner arrays are the billet heating temperature, the initial extrusion speed, the container temperature and the lubricants. The extruded tubes will be carried out tensile test and flattening test, the test results are analyzed by the quality measuremen
4、t of Taguchi method to find the relationship between the process parameters and mechanical properties of the products, and to acquire the optimal combination of parameters. Then based on the results obtained from the additive model, confirmatory experiments are performed. Besides, the microstructure
5、s of extruded tubes are observed to clarify the influence of process parameters on the grain size. Finally, with the same extrusion condition, the variations in tensile strength and flattening strength due to different compositions are discussed. 2007 Elsevier B.V. All rights reserved. Keywords: Hot
6、 extrusion tube; Magnesium alloy; Mechanical properties; Taguchi method; Orthogonal array 1. Introduction Magnesium alloy has low specific gravity, high specific strength, good ventilation and shock absorption. It is also opaque to electromagnetic waves and recycle. In recent years, magnesium alloy
7、has begun to replace steel, aluminum and plastic as products have become increasingly miniaturized. Magnesium alloy is 35% and 77% less dense than aluminum alloy and steel, respectively. Therefore, as lightweight products, environmental protection and recyclability become increasingly important, the
8、 demand for magnesium alloy has increased and been extensively applied to the automobile industry, the bicycle industry, the aerospace and national defense industries, the civic product manufacturing industry and the 3C (computer, communication and consumer electronic) electronic industry. At presen
9、t, die casting is the main method for forming and processing magnesium alloy.Wu and Chang used the Taguchi method in the die casting of magnesium alloy to produce a cover for a personal data assistant (PDA), and thus to identify the optimal process parameters. Takudaetal adopted the finite element m
10、ethod to analyze the formability of AZ31 magnesium base material during deep drawing. Finite 关于工艺参数对热挤压镁合金影响的研究 2 element analysis can be used to predict cracking position, which can then be verified experimentally. Chen et al.applied an AZ31 magnesium alloy sheet to study t
11、he deep drawing of a square cup. Following deep drawing at room temperature, the final sheet had defects, but at over 200 C, the formability is improved. In a related study of magnesium alloy, Mwembelaetal.studied the microstructure of AZ31 magnesium alloy during hot working.A high temperature of 30
12、0450C was firstly employedfor rolling, which was followed by forging. As the temperature increased over 300C, the grains grew, and the strength of the alloy decreased. In a study of the extrusion of magnesium alloy, Gouveiaetal. used the finite-element method to simulate forming by cold forward extr
13、usion. Chandrasekara and Shyan John investigated three magnesium alloys, AZ31, AZ61 and ZK60, as well as the effect of temperature on formability during forward extrusion. They showed that these magnesium alloys cannot be formed at between room temperature and 175 C, and that these magnesium alloys
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