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Qualification of the Inclined Fuel Transfer Machine Chain Based on Fatigue and Break Load Test

机译:基于疲劳和断裂载荷试验的倾斜燃料转移机链的鉴定

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Certain surface defects of significant depth with maximum linear indication of 20 mm at the weld area have been observed during Liquid Penetrant Inspection (LPI) of the Inclined Fuel Transfer Machine (IFTM) welded chain. The same has been subjected to fatigue and break load testing to ascertain its structural integrity under service conditions. Two specimens have been subjected for testing to get repeatable experimental observations. Both the specimens tested for the required number of fatigue cycles (97000 cycles as per ASME, Mandatory Appendix 6) towards the structural integrity demonstration. At the end of fatigue testing, the maximum linear indication of the surface defect of the weld area increased from 20 mm to 25 mm without any loss of integrity. Individual links of both the chains were able to articulate freely after completing the fatigue test. After completing the required fatigue cycle both the specimens were subjected to break load testing. The lowest break load obtained from both the specimen was 27.1t and the respective collapse load obtained as per the ASME double slope method was 221. The above results indicated that, IFTM chain assembly qualifies for the safety with very high margins. Also, these experimental results give confidence that, collapse load obtained by the ASME double slope method is having a very high margin (~ 18%) with the actual break load. Finite element analysis has also been performed before conducting the experiment to understand the overall stress distribution of the chain under load condition and also to identify the critical location. The critical location predicted by FE analysis was in good agreement with the experimental results.
机译:在倾斜燃料转移机(IFTM)焊接链的液体渗透检查(LPI)期间,已经观察到焊接区域的最大线性指示的一些显着深度的表面缺陷。相同的是疲劳和断裂载荷测试,以确定其在服务条件下的结构完整性。已经进行了两种标本进行测试以获得可重复的实验观察结果。两种标本都测试了所需数量的疲劳循环(根据ASME,强制性附录6)所需的疲劳循环(97000周期),朝向结构完整性示范。在疲劳测试结束时,焊接区域的表面缺陷的最大线性指示从20mm到25mm增加而没有任何完整性的损失。在完成疲劳测试后,两条链的各个链接都能够自由地铰接。完成所需的疲劳循环后,对试样进行破裂载荷测试。从标本中获得的最低断裂载荷为27.1T,根据ASME双斜率方法获得的相应的塌陷载荷为221.上述结果表明,IFTM链组件符合非常高利润率的安全性。此外,这些实验结果提供了置信度,通过ASME双斜率方法获得的坍塌载荷具有非常高的边缘(〜18%),具有实际断裂载荷。在进行实验之前还进行了有限元分析,以了解负载条件下链条的总应力分布,也可以识别临界位置。 Fe分析预测的临界位置与实验结果吻合良好。

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