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Mechanism Analysis on Stress Accumulation in Cylindrical Vertical-Placed Metal Hydride Reactor

机译:圆柱形立式金属氢化物反应器中应力累积的机理分析

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It’s known that the pulverization-densification mechanism of metal hydride may cause the stress accumulation in metal hydrides reactors. In this paper, this idea is proved based on granulometry and a new idea of cycling compression effect is presented, which is caused by the friction between wall and metal hydrides. Through theoretical analysis, the cycling compression effects is shown to increase the localized packing rate from top to down in vertical-placed reactors and thus lead to the maximum deformation in the bottom of reactors, proving that it is the interaction of pulverization-densification effect and cycling compression effect resulting in the stress problems of vertical-placed reactors. Further study points that the effective methods relieving the cycling compress effect are to decrease hydrogen absorption/desorption cycle number, slenderness ratio of reactor, wall friction factor and initial packing rate, or to lower the thermal conductivity and the volume expansion coefficient of metal hydrides.
机译:众所周知,金属氢化物的粉碎-致密化机制可能会在金属氢化物反应堆中引起应力累积。本文通过粒度分析论证了这一思想,提出了一种由壁与金属氢化物之间的摩擦引起的循环压缩效应的新思想。通过理论分析,表明循环压缩效应在垂直放置的反应堆中从上到下提高了局部填充率,从而导致反应堆底部的最大变形,证明这是粉化-致密化作用与循环压缩效应导致垂直放置反应堆的应力问题。进一步的研究表明,减轻循环压缩效应的有效方法是减少氢的吸收/解吸循环次数,反应器的细长比,壁摩擦系数和初始填充率,或者降低金属氢化物的导热系数和体积膨胀系数。

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