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首页> 外文期刊>Journal of Sandwich Structures and Materials >Cushioning Properties of Multi-layer Corrugated Sandwich Structures
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Cushioning Properties of Multi-layer Corrugated Sandwich Structures

机译:多层波纹夹心结构的缓冲性能

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摘要

Multi-layer corrugated sandwich structure is a favorable kind of cushioning and packaging material, but there is little reference to the selection of multi-layer corrugated sandwich structures as a cushioning media. This article analyses the compressive behavior of multi-layer corrugated sandwich structures. During the compression processing, the corrugated sandwiches are gradually squished from top to bottom. Experimental results show the compressive resistances are similar for the same type of corrugated sandwiches with different layers; the energy absorption of the multi-layer corrugated sandwich structures is significantly greater than the monolayer one; and the multi-layer corrugated sandwich structures have compression resistance capability for repetitious shock. Based on the compressive tests of common corrugated sandwich paperboards of B, C, E, BE, CE, and BC types, the relationship between cushioning properties of multi-layer corrugated sandwiches and their relative density was researched. The energy absorption of multi-layer corrugated sandwich structures increases with the relative density. These research results can be used to optimize and design corrugated sandwich pads.
机译:多层波纹夹心结构是一种很好的缓冲和包装材料,但是很少提及选择多层波纹夹心结构作为缓冲介质。本文分析了多层波纹夹心结构的抗压性能。在压缩过程中,瓦楞三明治从上到下逐渐被挤压。实验结果表明,相同类型,不同层的瓦楞三明治的抗压强度相似。多层波纹夹心结构的能量吸收明显大于单层波纹结构。多层波纹夹层结构具有抗压能力,可反复冲击。基于B,C,E,BE,CE和BC型瓦楞纸夹心纸板的压缩试验,研究了多层瓦楞纸夹心的缓冲性能与其相对密度之间的关系。多层波纹夹心结构的能量吸收随着相对密度的增加而增加。这些研究结果可用于优化和设计瓦楞纸夹心垫。

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