首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental study on the energy absorption capability of circular corrugated tubes under lateral loading and axial loading
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Experimental study on the energy absorption capability of circular corrugated tubes under lateral loading and axial loading

机译:圆形波纹管在横向和轴向载荷下能量吸收能力的实验研究。

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A new type of energy absorber called an expansion joint (i.e. a corrugated tube) is examined in this research. Several experiments are performed on three types of thin-walled specimen, namely circular tubes, preformed corrugated tubes and complete corrugated tubes, to investigate the energy absorption of steel specimens under different conditions for quasi-static lateral loading and axial loading. For this purpose, some steel specimens were compressed between two rigid platens in the axial direction, and the other specimens were laterally compressed. The preformed corrugated tubes and the complete corrugated tubes were produced by the hydroforming method. In each geometrical group of specimens, several tubes, which have different wall thicknesses, different inner diameters and different lengths and which are either empty or filled with polyurethane foam, were tested. Experiments show that, for a lateral load, the specific absorbed energies of the complete corrugated tubes are higher than those of the corresponding preformed corrugated tubes and circular tubes with the same characteristics. Tests show that, under lateral loading, a complete corrugated tube with a thicker wall and a smaller diameter is the optimum energy absorber system. Therefore, when a circular tube transforms into the corrugated tube, a better energy absorber system with a higher capability is achieved under lateral loading. Also, experiments show that, under axial loading, simple circular tubes with no forming process have higher specific absorbed energies than corrugated tubes do. Corrugated specimens have more controllable plastic deformation and a more regular deformation mode than simple tubes have. Tests under axial loading illustrate that, when the preformed corrugated tubes are filled with polyurethane foam, the specific absorbed energy increases by up to 74%. A comparison of the results on empty and filled specimens shows that, in some cases, the specific absorbed energies of corrugated tubes under lateral loading are higher than the specific absorbed energies of circular tubes under axial loading. This means that, by shaping the circular tubes into preformed corrugated tubes and complete corrugated tubes via the hydroforming process, a new thin-walled structure with a high specific absorbed energy during the lateral compression process is introduced.
机译:在这项研究中,研究了一种新型的能量吸收器,称为膨胀节(即波纹管)。在圆形管,预制波纹管和完整波纹管这三种类型的薄壁试样上进行了一些实验,以研究钢试样在不同条件下对于准静态横向载荷和轴向载荷的能量吸收。为此,将一些钢样本沿轴向压缩在两个刚性压板之间,而将其他样本横向压缩。预制的波纹管和完整的波纹管通过液压成型法生产。在每个几何样本组中,测试了几根试管,这些试管具有不同的壁厚,不同的内径和不同的长度,并且是空的或填充有聚氨酯泡沫。实验表明,对于横向载荷,完整波纹管的比吸收能量要高于相应的具有相同特性的预制波纹管和圆形管的吸收能量。试验表明,在横向载荷下,壁厚较厚,直径较小的完整波纹管是最佳的能量吸收器系统。因此,当圆形管转变成波纹管时,在横向载荷下可获得具有更高能力的更好的能量吸收器系统。而且,实验表明,在轴向载荷下,没有成形过程的简单圆形管比波纹管具有更高的比吸收能。与简单的试管相比,波纹试样具有更可控的塑性变形和更规则的变形模式。轴向载荷下的测试表明,当预制波纹管中填充聚氨酯泡沫时,比吸收能最多增加74%。对空的和充满的样品的结果的比较表明,在某些情况下,波纹管在横向载荷下的比吸收能比圆管在轴向载荷下的比吸收能高。这意味着,通过液压成型将圆形管成型为预成型的波纹管和完整的波纹管,就引入了一种新的薄壁结构,该结构在横向压缩过程中具有较高的比吸收能。

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