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A New Method for Preventing Plastic Collapse of Ellipsoidal Head Under Internal Pressure

机译:一种预防内部压力下椭圆头塑性塌陷的新方法

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Ellipsoidal head is a common end closure of pressure vessel. Plastic collapse is a crucial failure mode considered in the design of ellipsoidal head subjected to internal pressure. Internally pressurized ellipsoidal head tends to be hemisphere (geometric strengthening) due to the effect of material hardening before plastic collapse occurs, which enhances load carrying capacity of ellipsoidal head. However, in the current pressure vessel codes such as ASME BPVC.Ⅷ. 1 and BPVC.Ⅷ.2, EN 13445-3, and Chinese codes GB/T 150.3 and JB 4732, design methods based on linear elastic or perfectly-plastic theory are used to prevent plastic collapse of ellipsoidal head, leading to conservative design. Therefore, we developed a new method for preventing plastic collapse of ellipsoidal head under internal pressure, considering the effects of material hardening and geometric strengthening. The new method was developed on basis of our previous extensive work on finite element analysis and experiments for plastic collapse of internally pressurized ellipsoidal heads. The new method provides sufficient margin of safety by checking against the experimental bursting results of full-scale ellipsoidal heads with various geometries, various material types and various manufacturing methods. Compared with the design methods in the current pressure vessel codes, the new method shows an advantage of economy. This new method had been approved by China Standardization Committee on Boilers and Pressure Vessels, and at present it has been introduced into the Chinese pressure vessel code.
机译:椭圆头是压力容器的共同闭合。塑料坍塌是在椭圆形头部进行内部压力的设计中考虑的关键失效模式。由于塑性坍塌前的材料硬化在发生之前,内部加压的椭圆头倾向于半球(几何强化),这提高了椭圆头的负荷承载能力。但是,在当前压力容器代码,如ASMEBPVC.ⅷ. 1和BPVC.2,EN 13445-3和中国代码GB / T 150.3和JB 4732,基于线性弹性或完美塑料理论的设计方法用于防止椭圆头的塑性塌陷,导致保守设计。因此,考虑到材料硬化和几何强化的影响,我们开发了一种防止椭圆头塑料塌陷的新方法。新方法是在我们之前的有限元分析和内部加压椭圆头塑性坍塌实验的广泛工作的基础上开发的。通过检查具有各种几何形状,各种材料类型和各种制造方法的全尺寸椭圆头的实验爆破结果,新方法提供了足够的安全余量。与当前压力容器码中的设计方法相比,新方法显示了经济的优势。这项新方法已被中国标准化委员会批准锅炉和压力船舶,目前已被引入中国压力船舶代码。

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