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Mechanical and microstructural behavior effect of 304 and 316L austenitic stainless during the rotary friction welding process

机译:旋转摩擦焊接过程304和316L奥氏体不锈钢的机械和微观结构作用

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The objective of the current work was to explore the mechanical and microstructural behavior effect of process parameters for dissimilar joints welded with rotary friction welding. The welding was carried out with three different rotational speeds and forging pressure respectively while friction pressure, friction time, forging time, and burn-off were kept constant throughout the process. Rotary friction welding response graph was used to assist on how the process parameter reacts during a certain time. It was discovered that forging pressure and rotational speed were the major parameters that influenced the hardness and bonding at the interface region irrespective of the process combination. The grains in the Thermo-mechanically affected were found to be refined, hence in the heat-affected zone, the grains were deformed.
机译:目前工作的目的是探讨用旋转摩擦焊接焊接不同接头的工艺参数的机械和微观结构的影响。 在整个过程中,分别用三种不同的转速和锻造压力进行三种不同的转速和锻造压力进行焊接,而在整个过程中保持恒定。 旋转摩擦焊接响应图用于帮助如何在一定时间内反应过程参数。 发现锻造压力和转速是影响界面区域的硬度和键合的主要参数,而不管过程组合如何。 发现热机械受影响的晶粒被精制,因此在热影响区域中,晶粒变形。

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