Mróz Sebastian, Jagielska-Wiaderek Karina, Szota Piotr, Stefanik Andrzej, Kosturek Robert, Wachowski Marcin
Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology, 42-201 Częstochowa, Poland.
Faculty of Mechanical Engineering, Military University of Technology, 00-908 Warsaw, Poland.
Materials (Basel). 2021 Nov 16;14(22):6926. doi: 10.3390/ma14226926.
The paper presents the results of experimental tests of the rolling process of Mg/Al bimetallic bars in two systems of classic passes (horizontal oval-circle-horizontal oval-circle variant I) and modified (multi-radial horizontal oval-multi-radial vertical oval-multi-radial horizontal oval-circle-variant II). The feedstock in the form of round bimetallic bars with a diameter of 22 mm and 30% of the outer aluminum layer was made through explosive welding. The bimetallic bars consisted of an AZ31 magnesium core and a 1050A aluminum outer layer. Bars with a diameter of 17 mm were obtained as a result of rolling in four passes. The rolling process in the passes was conducted at two temperatures of 300 and 400 °C. Based on the analysis of the test results, it was found that the use of modified passes and a lower rolling temperature (300 °C) ensures a more homogenous distribution of the plating layer around the circumference of the core and results in an even grain decreasing, which improves the corrosion resistance of bimetallic bars compared to rolling bars in a classic system of passes and at a higher temperature (400 °C).
本文介绍了镁/铝双金属棒材在两种孔型系统(水平椭圆-圆形-水平椭圆-圆形变体I)的经典孔型和改良孔型(多径向水平椭圆-多径向垂直椭圆-多径向水平椭圆-圆形变体II)中的轧制过程的实验测试结果。直径为22mm且外层铝层占30%的圆形双金属棒材形式的原料是通过爆炸焊接制成的。双金属棒由AZ31镁芯和1050A铝外层组成。经过四道次轧制后得到了直径为17mm的棒材。道次轧制过程在300和400°C这两个温度下进行。基于对测试结果的分析,发现使用改良孔型和较低的轧制温度(300°C)可确保镀层在芯材圆周周围分布更均匀,并导致晶粒均匀细化,与在经典孔型系统和较高温度(400°C)下轧制棒材相比,这提高了双金属棒的耐腐蚀性。