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Physical and Technological Features of Formation of Large Thickness Welded Joints in Electron-Beam Welding

机译:电子束焊接中厚壁焊接接头形成的物理和技术特征

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In this paper, based on the gas-kinetic theory of plasma, a theoretical analysis of the possibility of forming a plasma state in melting channel as a result of the interaction of high-energy electrons of the electron beam with the atoms of the material, being processed in melting channel (in free state) is proposed. Also the assessment of a possible impact of this process on the quality of weld metal is given. It is shown that if we take the electron-beam welding of large thickness with formation of a knife-form melting zone, the occurring processes can develop both in the direction of self-organization (synergetic, evolution) and chaotically (it all depends on the set of after-effects, caused by them, and their duration), which is manifested either as autofocusing and melted depth increase (synergy, evolution) or as formation of defects in the center of the channel (in the central part of the weld) in the form of steam and gas cavities of quite considerable size.
机译:本文基于等离子体的气体动力学理论,由于电子束与材料原子的高能电子的相互作用,在熔融通道中形成等离子体状态的可能性的理论分析。提出在熔融通道(在自由状态下)。还给出了该方法对焊接金属质量的可能影响的评估。结果表明,如果我们用刀形熔化区形成大厚度的电子束焊接,则发生的过程可以在自组织(协同,进化)方向上发展(协同,进化)和混合(这一切都取决于由它们引起的后续效应和它们的持续时间),其表现为自动聚焦和熔化深度增加(协同,进化)或作为通道中心的缺陷的形成(在焊缝的中央部分中)以相当大的蒸汽和气体腔的形式。

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