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AlSi7Mg合金热处理参数的优化

Optimization of Heat Treatment Parameters of AlSi7Mg Alloy.

作者信息

Pezda Jacek

机构信息

Department of Manufacturing Technology and Automation, University of Bielsko-Biala, 43-309 Bielsko-Biała, Poland.

出版信息

Materials (Basel). 2022 Feb 2;15(3):1163. doi: 10.3390/ma15031163.

Abstract

Constantly growing requirements concerning the quality of poured machinery components give rise to the need to find new solutions to improve their mechanical and technological properties, considering economic and ecological aspects resulting from energy consumption of the casting and heat treatment processes. This study presents the investigation of the effect of heat treatment on mechanical properties (tensile strength , elongation , hardness ) of the AlSi7Mg alloy without modification and modified with strontium. Obtained results allowed us to determine T6 heat treatment parameters associated with the improvement of mechanical properties of the alloy with simultaneous limitation of duration of solutioning and aging treatments. The maximum increase in was 67%, and 55% in the case of , with a slight decrease in elongation (approx. 10%) in relation to an alloy not subjected to heat treatment in the adopted scope of tests for the total time of heat treatment of 4-6 h. The increase in elongation of up to 250% requires aging at a temperature exceeding 300 °C, which also causes a decrease in durability and hardness by 20%. Modification of the alloy using strontium before heat treatment facilitates the process of fragmentation and balling of silicone precipitates.

摘要

对浇注机械部件质量不断增长的要求,引发了寻找新解决方案以改善其机械和工艺性能的需求,同时要考虑到铸造和热处理过程中的能源消耗所带来的经济和生态方面的因素。本研究展示了对未经变质处理和经锶变质处理的AlSi7Mg合金进行热处理后,其机械性能(抗拉强度、伸长率、硬度)所受影响的研究。所得结果使我们能够确定与改善合金机械性能相关的T6热处理参数,同时限制固溶处理和时效处理的时间。在所采用的测试范围内,对于总热处理时间为4 - 6小时的情况,抗拉强度的最大增幅为67%,伸长率的最大增幅为55%,相对于未进行热处理的合金,伸长率略有下降(约10%)。伸长率提高至250%需要在超过300°C的温度下进行时效处理,这也会使耐久性和硬度降低20%。在热处理前使用锶对合金进行变质处理,有助于硅沉淀物的破碎和球化过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a573/8840199/47afa27cdea5/materials-15-01163-g001.jpg

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