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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Pyramidal lattice truss structures with hollow trusses
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Pyramidal lattice truss structures with hollow trusses

机译:带有空心桁架的金字塔形桁架结构

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A method for fabricating pyramidal lattice structures with hollow metallic trusses has been explored. A periodic diamond hole pattern sheet consisting of 304L stainless steel hollow tubes was made by an alternating collinear lay-up process followed by vacuum brazing. The array was then folded at the nodes to create a periodic pyramidal cellular metal lattice and was then bonded to face sheets by a second vacuum brazing process. The out-of-plane compression properties of this hollow truss lattice structure have been investigated and compared to a similar lattice made with the solid trusses. In both cases, the peak strength is found to be governed by inelastic truss buckling. The compressive strength of a hollow lattice with a relative density of 2.8% was approximately twice that of a solid pyramidal lattice of similar relative density. The increased strength resulted from an increase in the buckling resistance of hollow trusses because of their higher radius of gyration.
机译:已经探索了一种制造具有空心金属桁架的金字塔晶格结构的方法。通过交替的共线铺层工艺,然后进行真空钎焊,制成由304L不锈钢空心管组成的周期性金刚石孔图案板。然后将阵列在节点处折叠以形成周期性的金字塔形蜂窝状金属晶格,然后通过第二个真空钎焊工艺将其粘结到面板上。已经研究了该空心桁架格架结构的平面外压缩特性,并将其与用实心桁架制成的类似格架进行了比较。在这两种情况下,峰值强度均受非弹性桁架屈曲支配。相对密度为2.8%的中空晶格的抗压强度约为相对密度相似的实心金字塔形晶格的抗压强度的两倍。强度的增加是由于中空桁架的较高回转半径而使其抗屈曲性增加所致。

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