首页> 外文会议>International Welding/Joining Conference-Korea; 20070510-12; Seoul(KR) >Determination of Optimum LASER Welding Parameters and the Development of a LASER Welding Technique To Enhance the Lateral Impact Strength of a Spacer Grid Assembly for a PWR Fuel Assembly
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Determination of Optimum LASER Welding Parameters and the Development of a LASER Welding Technique To Enhance the Lateral Impact Strength of a Spacer Grid Assembly for a PWR Fuel Assembly

机译:确定最佳LASER焊接参数并开发LASER焊接技术以增强压水堆燃料组件的隔板格栅组件的侧向冲击强度

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摘要

A spacer grid assembly, which is an interconnected array of slotted grid straps welded at the intersections to form an egg crate structure, is one of the core structural components of the nuclear fuel assemblies of a Pressurized light Water Reactor (PWR). The spacer grid assembly is structurally required to have enough buckling strength under lateral loads so that the nuclear fuel rods are maintained in a coolable geometry, and that control rods are able to be inserted. The ability of a spacer grid assembly to resist lateral loads is usually characterized in terms of its dynamic and static crush strengths. Since the crush strengths of a spacer grid assembly are known to depend on the weld qualities at the intersections of the slotted grid straps, high-tech welding methods, such as a TIG welding, LASER beam welding or Electron beam welding method, have been used recently in the nuclear fuel manufacturing fields. In this study, to meet the above requirements, two kinds of researches were carried out. First, by adjusting the LASER beam welding parameters, an optimum welding combination of the LASER beam welding parameters was obtained for welding a spacer grid assembly. Second, a new LASER beam welding technique was proposed to obtain a longer weld line and a smaller weld bead size by tilting the LASER beam. The buckling strength of the spacer grid welded by the new LASER beam welding technique was enhanced by up to 30 % when compared to that by the conventional LASER beam welding method.
机译:间隔栅组件是在交叉点处焊接以形成蛋箱结构的开槽栅带的互连阵列,是加压轻水堆(PWR)核燃料组件的核心结构组件之一。在结构上要求间隔栅组件在横向载荷下具有足够的抗弯强度,以使核燃料棒保持可冷却的几何形状,并且能够插入控制棒。间隔栅组件抵抗侧向载荷的能力通常以其动态和静态抗压强度为特征。由于已知间隔栅组件的抗压强度取决于开槽栅带的交点处的焊接质量,因此使用了高科技焊接方法,例如TIG焊接,LASER束焊接或电子束焊接方法最近在核燃料制造领域。为了满足上述要求,本研究进行了两种研究。首先,通过调节激光束焊接参数,获得用于焊接间隔栅组件的激光束焊接参数的最佳焊接组合。其次,提出了一种新的激光束焊接技术,以通过倾斜激光束来获得更长的焊接线和更小的焊道尺寸。与传统的激光束焊接方法相比,通过新型激光束焊接技术焊接的隔离栅的屈曲强度提高了30%。

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