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NEW RESIDUAL STRESS MAPPING TOOL APPLIED TO ATLAS CURRENT JOINT DESIGN

机译:适用于ATLAS电流关节设计的新的残余应力映射工具

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A redesigned cylindrical liner system has been implemented for use on the Atlas capacitor bank. This new design dramatically changes how the liner, glide planes and current joints of the system are formed. The previous design relied on interference of the liner with the glide plane by thermal shrink fit using liquid nitrogen coolant to form current joints. The new design achieves the required fit by mechanically distorting soft metals with a swaged joint. In this paper, we present the results of the first application of a new residual stress mapping technique, the contour method, to the design and fabrication process of the Atlas upper current joint. One of the strengths of the contour method is that it provides a full cross-sectional map of the residual-stress component normal to the cross section. The results showed significant stresses in the stainless steel glide plane with expected maximum compression near the joint and stresses in the aluminum part liner and return current conductor that corresponds well with measured form distortions.
机译:已经在ATLAS电容器组上使用了重新设计的圆柱形衬垫系统。这种新设计显着改变了衬垫,滑动平面和系统的电流接头的变化。先前的设计依赖于使用液氮冷却剂形成衬里与滑动平面的滑动平面的干扰,以形成电流接头。新设计通过用锻膝部机械扭曲软金属来实现所需的拟合。在本文中,我们介绍了一种新的剩余应力映射技术,轮廓方法的第一次应用的结果,对地图集上流接头的设计和制造过程。轮廓方法的一个优点是它提供了横截面正常的残余应力分量的完整横截面图。结果表明,在铝部衬里的接头附近具有预期的最大压缩的不锈钢滑动平面的显着应力,并返回到测量的形式扭曲的返回电流导体。

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