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Design charts for the general instability of ring-stiffened conical shells under external hydrostatic pressure

机译:外部静水压力下环形加劲圆锥壳的一般不稳定性设计图

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The paper describes experimental tests carried out on three ring-stiffened circular conical shells that suffered plastic general instability under uniform external hydrostatic pressure. In this mode of failure, the entire ring-shell combination buckles bodily in its flank. The cones were carefully machined from EN1A mild steel to a very high degree of precision. Using the results obtained from these three vessels, together with the results obtained from elsewhere, the paper also provides two-design charts, which are much easier to use than older design charts. The design charts allow the possibility of obtaining a plastic knockdown factor, so that the theoretical elastic buckling pressures for perfect vessels, can be divided by the plastic knockdown factor, to give the predicted buckling pressures. Although similar design charts have been produced in the past, the design charts presented here are based on using the simpler ring-stiffened circular cylinder, which has been made equivalent to the much more complex ring-stiffened circular conical shell. The advantage of using this method is that it is simpler and the design time is reduced by a factor of about 10 with little loss of precision. This method can also be used for the design of full-scale vessels.
机译:该论文描述了在三个均匀加有外部静水压力下遭受塑性一般不稳定性的环形加筋的圆形圆锥壳上进行的实验测试。在这种故障模式下,整个环壳组合在其侧面会发生弯曲。锥体由EN1A低碳钢精心加工而成,具有很高的精度。使用从这三个容器中获得的结果以及从其他容器中获得的结果,本文还提供了两个设计图,比以前的设计图更易于使用。设计图允许获得塑性击穿系数,从而可以将理想容器的理论弹性屈曲压力除以塑性击穿系数,从而得出预测的屈曲压力。尽管过去已经产生了类似的设计图,但此处提供的设计图是基于使用更简单的环形加筋圆柱体制成的,该圆柱体已等效于复杂得多的环形加筋圆锥形壳体。使用此方法的优点是更简单,设计时间减少了约10倍,而精度损失很小。该方法也可用于满量程容器的设计。

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