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Numerical design of high depth-to-width ratio friction stir welding

机译:高深度宽度比摩擦搅拌焊接的数值设计

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Tools with a high depth-to-width ratio of 0.6 were designed and tested. The thread structure of pin could promote material flow but increase fracture risk. The pins with milling facets were more beneficial to achieve sound joint. The tapered thread tool with triple facets was the optimal structure for high depth-to-width ratio friction stir welding at a rotational speed of 800 rpm and a welding speed of 30 mm/min. The measured temperature and joint formation agreed with the predicted data well. A narrower average heat affected zone with the width of 440 mu m was obtained, which was far lower than that underwater friction stir welding.
机译:设计和测试具有高宽度宽度比为0.6的工具。 销的螺纹结构可以促进材料流动,但增加骨折风险。 具有铣削面的销更有利于实现合作接头。 具有三重面的锥形螺纹工具是高深度到宽度比摩擦搅拌焊接的最佳结构,其转速为800 rpm,焊接速度为30mm / min。 测量的温度和关节形成与预测数据很好。 获得宽度为440μm的较窄平均热影响区域,远低于水下摩擦搅拌焊接。

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