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FRICTION WELDING OF 20MnMoNi55 RPV STEEL - SS 304 BIMETALLIC WELD JOINTS FOR NUCLEAR APPLICATIONS

机译:摩擦焊接20mnmoni55 RPV钢 - SS 304用于核应用的双金属焊接接头

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The use of Reactor Pressure Vessel (RPV) steel 20MnMoNi55 and Stainless Steel 304 bimetallic weld joint is inevitable in pressurized water reactor systems. This bimetallic weld joint is a critical component from the safety point of view in the nuclear power plant. The joining of RPV steel-Stainless steel is usually carried out using conventional arc welding processes. Arc welding processes generally used are Submerged arc welding, Manual metal arc welding, Tungsten inert gas welding and Metal inert gas welding. Friction welding provides a new and unique solid state approach for joining without adding any external filler metal. This approach is particularly useful in joining of dissimilar welds. The reason for increased utility being the absence of any external filler material which may otherwise add to the heterogeneity of the weld structure. This research paper discusses the fabrication and mechanical-micro structural characterization of bimetallic weld joints fabricated using friction welding approach. The effect of friction welding parameters on the strength of the bimetallic weld joints has been investigated. An attempt has been made to relate the micro-structural and macro-scopic behavior of the friction welded bimetallic weld joints with the variation in friction welding process parameters.
机译:使用反应器压力容器(RPV)钢20mnmoni55和不锈钢304双金属焊接接头在加压水反应器系统中是不可避免的。这种双金属焊接接头是来自核电站安全观点的关键部件。 RPV钢 - 不锈钢的连接通常使用常规电弧焊接工艺进行。一般使用的电弧焊接工艺是浸没电弧焊接,手动金属弧焊,钨惰性气体焊接和金属惰性气体焊接。摩擦焊接提供了一种新的和独特的固态方法,用于加入,而无需添加任何外部填充金属。这种方法特别适用于加入不同的焊接。增加效用的原因是没有任何外部填料材料,其否则可以增加焊接结构的异质性。本研究论文讨论了使用摩擦焊接方法制造的双金属焊接接头的制造和机械微结构表征。研究了摩擦焊接参数对双金属焊缝强度的影响。已经尝试涉及摩擦焊接双金属焊接接头的微结构和宏观行为与摩擦焊接工艺参数的变化。

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