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Suppressing Aluminum Carbide in Welding Aluminum Silicon Carbide Composite

机译:抑制焊接碳化硅铝复合物中的碳化铝

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Weldability of aluminum-based metal matrix composite A359/SiC/10p using gas tungsten arc welding and R356.0 filler material is investigated. The welding current, welding speed, and preheat temperature affect the weld quality significantly. Finite element analysis is successfully applied to map the weldment temperature during preheating and welding. During mechanical testing of welded specimens, a crack propagates in the parent composite or in the weld, but not in the stronger zone between the weld and the parent material. The weld region contains reasonably uniform distribution of SiC particles due to high viscosity of the molten weld and its fast cooling rate. Proper control of heat input and addition of silicon-rich filler material hinder the interface reaction between aluminum matrix and the reinforcing SiC particles, and successfully suppresses the formation of harmful aluminum carbide flakes in the weld. The average tensile and flexural strengths of optimally welded specimens approach those of the parent composite while its ductility exceeds that of the parent material.
机译:研究了使用钨极氩弧焊和R356.0填充材料对铝基金属基复合材料A359 / SiC / 10p的焊接性。焊接电流,焊接速度和预热温度会显着影响焊接质量。有限元分析已成功应用于在预热和焊接过程中绘制焊件温度的图表。在焊接试样的机械测试过程中,裂纹会在母材复合材料或焊缝中扩展,但不会在焊缝与母材之间的较强区域扩展。由于熔融焊缝的高粘度及其快速的冷却速度,焊缝区域包含合理均匀的SiC颗粒分布。适当控制热量的输入和富硅填料的添加会阻碍铝基体与增强SiC颗粒之间的界面反应,并成功地抑制焊缝中有害的碳化铝薄片的形成。最佳焊接试样的平均抗拉强度和挠曲强度接近母体复合材料的延展性和挠曲强度,而其延展性却超过了母体材料。

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