首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >PROCESS PARAMETER OPTIMIZATION OF FRICTION CRUSH WELDING (FCW) OF AISI 304 STAINLESS STEEL
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PROCESS PARAMETER OPTIMIZATION OF FRICTION CRUSH WELDING (FCW) OF AISI 304 STAINLESS STEEL

机译:AISI 304不锈钢摩擦挤压焊接(FCW)的工艺参数优化

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AISI 304 stainless steel is one of the grades of steel widely used in engineering applications particularly in chemical equipments, food processing, pressure vessels and paper industry. Friction crush welding (FCW) is type of friction welding, where there is a relative motion between the tool and work-piece. In FCW process, the edges of the work-piece to be joined are prepared with flanged edges and then placed against each other. A non-consumable friction disc tool will transverse with a constant feed rate along the edges of the work-piece, which leads to welding. The joint is formed by the action of crushing a certain amount of additional flanged material into the gap formed by the contacting material. The novelty of present work is that FCW removes the limitations of friction stir welding and Steel work pieces can be economically welded by FCW. Taguchi method of Design of Experiments (DOE) is used to find optimal process parameters of Friction Crush Welding (FCW). A L9 Orthogonal Array, Signal to Noise ratio (S/N) and Analysis of Variance are applied to analyze the effect of welding parameters (welding speed, RPM, tool profile) on the weld properties like bond strength. Grain refinement takes place in friction crush welding as is seen in friction stir welding. Friction crush welding process also has added advantage in reducing distortion and residual stresses.
机译:AISI 304不锈钢是钢等级之一,尤其是化学设备,食品加工,压力容器和造纸工业的工程应用。摩擦挤压焊接(FCW)是摩擦焊接的类型,其中工具和工件之间存在相对运动。在FCW工艺中,用凸缘边缘制备要连接的工件的边缘,然后彼此放置。不可消耗的摩擦圆盘工具将沿沿工件边缘的恒定进料速率横向横向横向横向焊接。通过将一定量的额外凸缘材料压入通过接触材料形成的间隙的作用来形成接头。目前工作的新颖性是FCW去除摩擦搅拌焊接的局限性,钢工程可以通过FCW经济焊接。实验设计(DOE)的Taguchi方法用于找到摩擦挤压焊接(FCW)的最佳过程参数。 L9正交阵列,信噪比(S / N)和方差分析应用于分析焊接参数(焊接速度,RPM,刀具轮廓)对焊接性能的效果。在摩擦搅拌焊接中看到谷物细化在摩擦压碎焊接中进行。摩擦挤压焊接过程还具有降低变形和残余应力的优点。

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