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THERMAL ELASTO-PLASTIC ANALYSIS OF WELDING SEQUENCE FOR LEAST DISTORTION OF OVERLAY WELDED STRUCTURE

机译:堆焊结构最小变形焊接顺序的热弹塑性分析

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Generally, equipment or mechanical parts are worn out by abrasion, impact, erosion, and environmental corrosion. To reduce these losses, the welding that wears the surface of the material with abrasion or corrosion resistance is called overlay welding. Corrosion and high temperature oxidation are very important factors in overlay welding material selection because they have a great effect on wear rate. Typical equipment is made of carbon steel, stainless steel or a material that is not wear resistant. Therefore, overlay welding is applied to parts where the parts themselves are subject to severe wear or corrosion. The diffusion of chlorine and alkaline ash during the combustion process causes foiling, corrosion, and erosion in the water wall panel & tube which is a heat transfer device. In order to protect the water wall panel & tube from various chemical and physical phenomena occurring during the combustion process, heat-resistant alloy steel such as Inconel is overlay welded on the outer surface of carbon steel pipe. However, since the length of the water wall panel & tube is more than 7 meters, the deformation after overlay welding is very large and the straightening work requires a lot of time and money. Also, since cooling water flows through the pipe during welding, the temperature of the cooling water also affects the welding deformation. In this study, welding process sequence and coolant temperature are optimized to minimize welding deformation during overlay welding.
机译:通常,设备或机械零件会因磨损,撞击,腐蚀和环境腐蚀而磨损。为了减少这些损失,将具有耐磨性或耐腐蚀性的材料表面磨损的焊接称为堆焊。腐蚀和高温氧化是堆焊材料选择中非常重要的因素,因为它们对磨损率有很大的影响。典型的设备由碳钢,不锈钢或不耐磨的材料制成。因此,堆焊应用于零件本身遭受严重磨损或腐蚀的零件。氯和碱灰在燃烧过程中的扩散会在作为传热装置的水冷壁板和管中产生箔化,腐蚀和腐蚀。为了保护水冷壁板和管不受燃烧过程中发生的各种化学和物理现象的影响,耐热合金钢(例如因科镍合金)被堆焊在碳钢管的外表面上。然而,由于水墙板和管的长度超过7米,因此堆焊后的变形非常大,并且矫直工作需要大量的时间和金钱。而且,由于冷却水在焊接期间流过管道,所以冷却水的温度也影响焊接变形。在这项研究中,对焊接工艺顺序和冷却液温度进行了优化,以最大程度地减少堆焊过程中的焊接变形。

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