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On the Buckling Behaviour of Telescopic Hydraulic Cylinders

机译:伸缩式液压缸的屈曲行为

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Telescopic cylinders are generally employed as linear actuators, when the desired moving span is several times the length of the closed device, like in cargo trucks lifting applications, for instance.rnDuring the active phase of the actuation, hydraulic power is normally used to feed pressurized fluid inside the cylinder, thus providing the progressive extension of the cylinder elements and the required operative axial thrust. In this condition, therefore, cylinders must bear external compressive loadings in an increasingly slenderness configuration, which can give rise to buckling failures. In this study, experimental measurements of the limiting axial loadings of telescopic cylinders, in full extended conditions, have been performed both in laboratory and during real operations on the field. The strains of the material in the critical sections and the lateral deflections of the tested structures have been recorded as a function of the applied loads. The results of this investigation are presented and discussed, in order to identify the signals of incipient buckling and find out the ultimate load carrying capabilities of this kind of components.
机译:伸缩缸通常用作线性致动器,当所需的移动跨度是闭合设备的长度的几倍时,例如在货运卡车的起重应用中。液压缸内的流体,从而提供了液压缸元件的渐进延伸和所需的有效轴向推力。因此,在这种情况下,气缸必须以越来越细的构造承受外部压缩载荷,这会引起屈曲故障。在这项研究中,在实验室和实地实际操作中,都在完全伸展的条件下对伸缩筒的极限轴向载荷进行了实验测量。已经记录了材料在关键部分的应变和被测结构的横向变形,这是所施加载荷的函数。提出并讨论了这项研究的结果,以便识别初期屈曲的信号,并找出此类组件的最终承载能力。

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