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Thermal Science of Weld Bead Defects: A Review

机译:焊缝缺陷热科学:综述

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摘要

Mechanisms for the formation of bead defects, such as humping, gouging, rippling, and other unexpected surface patterns, encountered in welding or drilling are interpreted and reviewed from thermal-fluid science viewpoint. These defects usually accompanying with porosity, undercut, segregation, stress concentration, etc., seriously reduce the properties and strength of the joint or solidification. Even though different mechanisms for formation of the defects have been extensively proposed in the past, more systematical understanding of pattern formations from thermal, fluid, physics, electromagnetic, pattern selections, and metallurgy sciences is still limited. The effects of working parameters and properties on humping and rippling, for example, can be systematically and quantitatively interpreted from scale analysis presented in this work. Good comparison with experimental results reveals mechanisms of different surface patterns. The mechanistic findings for bead defects are also useful for other manufacturing and materials processing.
机译:从热流科学的角度解释并回顾了在焊接或钻孔过程中遇到的形成珠缺陷的机制,例如隆起,气刨,波纹和其他意外的表面图案。这些缺陷通常伴有气孔,咬边,偏析,应力集中等现象,严重降低了接头或凝固的性能和强度。尽管过去已经广泛提出了形成缺陷的不同机制,但是从热,流体,物理,电磁,图案选择和冶金科学对图案形成的更系统的理解仍然受到限制。例如,工作参数和特性对起伏和起伏的影响可以通过本文中的规模分析系统地和定量地解释。与实验结果的良好比较揭示了不同表面图案的机理。磁珠缺陷的机械发现也可用于其他制造和材料加工。

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