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Application of Dynamic Beam Positioning for Creating Specified Structures and Properties of Welded Joints in Electron-Beam Welding

机译:动态电子束定位在电子束焊接中建立特定的焊接接头结构和性能中的应用

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摘要

The application of electron beam sweep makes it possible to carry out multifocal and multi-beam welding, as well as combine the welding process with local heating or subsequent heat treatment, which is important when preparing products from thermally-hardened materials. This paper presents a method of electron beam welding (EBW) with dynamic beam positioning and its experimental-calculation results regarding the formation of structures and properties of heat-resistant steel welded joints (grade of steel 20Cr3MoWV). The application of electron beam oscillations in welding makes it possible to change the shape and dimensions of welding pool. It also affects the crystallization and formation of a primary structure. It has been established that EBW with dynamic beam positioning increases the weld metal residence time and the thermal effect zone above the critical point, increases cooling time and considerably reduces instantaneous cooling rates as compared to welding without beam sweep. Also, the difference between cooling rates in the depth of a welded joint considerably reduces the degree of structural non-uniformity. A bainitic–martensitic structure is formed in the weld metal and the thermal effect zone throughout the whole depth of fusion. As a result of this structure, the level of mechanical properties of a welded joint produced from EBW with dynamic electron beam positioning approaches that of parent metal to a greater extent than in the case of welding by a static beam. As a consequence, welding of heat-resistant steels reduces the degree of non-uniformity of mechanical properties in the depth of welded joints, as well as decreases the level of hardening of a welded joint in relation to parent metal.
机译:电子束扫掠的应用使得可以进行多焦点和多束焊接,并将焊接过程与局部加热或后续热处理相结合,这对于由热硬化材料制备产品时非常重要。本文介绍了一种采用动态束定位的电子束焊接(EBW)方法,以及有关耐热钢焊接接头(钢种20Cr3MoWV的组织和性能)形成的实验计算结果。电子束振荡在焊接中的应用使得可以改变焊接池的形状和尺寸。它还影响一级结构的结晶和形成。已经确定,与没有束扫的焊接相比,具有动态束定位的EBW增加了焊接金属的停留时间和超过临界点的热效应区,增加了冷却时间并大大降低了瞬时冷却速率。而且,在焊接接头的深度上的冷却速率之间的差异大大降低了结构不均匀的程度。在整个熔化深度中,在焊缝金属和热效应区中形成了贝氏体-马氏体结构。由于这种结构,与通过静态束进行焊接的情况相比,由具有动态电子束定位的EBW制成的焊接接头的机械性能水平更接近母体金属的水平。结果,耐热钢的焊接降低了焊接接头深度内机械性能的不均匀程度,并且降低了焊接接头相对于母材的硬化程度。

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