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Fatigue failure of regenerator screens in a high frequency Stirling engine

机译:高频斯特林发动机中再生器滤网的疲劳失效

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摘要

Failure of Stirling Space Power Demonstrator Engine (SPDE) regenerator screens was investigated. After several hours of operation the SPDE was shut down for inspection and on removing the regenerator screens, debris of unknown origin was discovered along with considerable cracking of the screens in localized areas. Metallurgical analysis of the debris determined it to be cracked-off-deformed pieces of the 41 micron thickness Type 304 stainless steel wire screen. Scanning electron microscopy of the cracked screens revealed failures occurring at wire crossovers and fatigue striations on the fracture surface of the wires. Thus, the screen failure can be characterized as a fatigue failure of the wires. The crossovers were determined to contain a 30 percent reduction in wire thickness and a highly worked microstructure occurring from the manufacturing process of the wire screens. Later it was found that reduction in wire thickness occurred because the screen fabricator had subjected it to a light cold-roll process after weaving. Installation of this screen left a clearance in the regenerator allowing the screens to move. The combined effects of the reduction in wire thickness, stress concentration (caused by screen movement), and highly worked microstructure at the wire crossovers led to the fatigue failure of the screens.
机译:研究了斯特林空间动力演示机(SPDE)再生器筛网的故障。运行数小时后,关闭SPDE进行检查,并取下蓄热器滤网,发现了未知来源的碎屑,并在局部区域发现了滤网的明显破裂。对碎片进行冶金分析,确定其为41微米厚的304型不锈钢丝网的破裂变形块。破裂的筛网的扫描电子显微镜显示出在导线交叉处发生的故障和导线断裂表面上的疲劳条纹。因此,筛网故障可以表征为电线的疲劳故障。测得的跨线可减少30%的线径,并在线网的制造过程中产生高度加工的微观结构。后来发现,由于丝网制造者在编织后对其进行了轻度的冷轧加工,从而使线的厚度减小。安装此筛网后,在蓄热室中留有空隙,可以移动筛网。线材厚度减少,应力集中(由筛网移动引起)和线材交叉处高度加工的微观结构的综合影响导致了筛网的疲劳失效。

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