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FULL-SCALE TEST AND SIMULATION OF FITTINGS PERFORMANCE OF A CURRENT CRUDE OIL TANK CAR

机译:电流原油坦克汽车配件性能的全尺度测试和仿真

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A full-scale rollover crash test was performed on a CPC-1232 specification, crude oil tank car to document the base-case safety performance of the car top-fittings in a roll-over scenario. The specimen tank car was placed into a test fixture designed to roll the entire loaded and un-trucked carbody about a fixed pivot. A concrete surface target was used as the impacting surface of the top-fittings manway bonnet. At an impact speed of 7.8 mph, the manway bonnet deformed inward and sheared off completely. In addition, the vacuum relief valve sheared off and caused leakage of water through the connection. Reasonable correlation was observed between the pre-test simulations and the test results, which were further improved post-test. The effort has highlighted an alternate failure mode, bolt shear, which seems to be initiated when the top fittings bonnet structures are strengthened by the use of thicker or higher strength materials, i.e., strengthening the bonnet structure moves the weakest link to the bolted connections, resulting in failure and lading release. The railroad industry can use the test generated structural performance and behavior data to improve top-fittings protection.
机译:在CPC-1232规格,原油罐车上进行全尺寸翻转碰撞试验,以记录汽车顶部配件的基本情况安全性能。将样品罐车放入测试夹具中,设计用于将整个装载的和未加载的车身卷绕固定枢轴。混凝土表面靶标被用作顶部配件Manway Bonnet的冲击表面。在7.8英里/小时的冲击速度下,Manway Bonnet向内变形并完全剪切。此外,真空释放阀剪切并引起了水的泄漏。在预测试模拟和测试结果之间观察到合理的相关性,其后检验后进一步改善。努力突出了替代故障模式,螺栓剪切似乎是通过使用较厚或更高强度材料加强的顶部配件阀罩结构,即加强阀杆结构移动到螺栓连接的最薄弱的连接,导致失败和提升释放。铁路行业可以使用测试产生的结构性能和行为数据来改善顶部配件保护。

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