MODELLING FOR SINGLE-WALL CORRUGATED FIBREBOARD WITH A TRAPEZOIDAL CORE UNDER THE QUASI-STATIC EDGEWISE CRUSHING LOAD

Guan Shili, Liang Youzhen, Wang Jun, Lu Lixin, Hou Xue
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Abstract

In this paper, the energy absorption of single-wall corrugated fibreboard with a trapezoidal core under edgewise crushing load was studied experimentally and analytically, and a physical surfacebonding was assumed to represent the interaction between the fluted board and thelinerboard based on the production process of corrugated fibreboards. Anew folding element was proposed, including two boards and two trapezoidal corrugated cores with central symmetry. Moreover, three folding modes of the fluted board were proposed based on experimental phenomena, and a plateau stress model was characterized by the geometry parameters of the corrugated fibreboard. It was found that the plateaustress predicted by thedeveloped model compared well with the experimental results, from which one can conclude that the proposed model was effective and helpful for corrugated structures design and parameters selection to meet different strength requirements.
拟静态边缘破碎载荷作用下带梯形芯单壁瓦楞纤维板的建模
本文根据波纹纤维板的生产工艺,对带梯形芯的单壁波纹纤维板在边缘挤压载荷作用下的吸能特性进行了实验和分析研究,并假设槽形板与内衬板之间的相互作用存在物理表面结合。提出了一种新的折叠单元,包括两块板和两个中心对称的梯形波纹芯。基于实验现象,提出了波纹纤维板的三种折叠模式,并利用波纹纤维板的几何参数建立了平台应力模型。结果表明,该模型预测的平台应力与试验结果吻合较好,为波纹结构设计和参数选择提供了有效依据,可满足不同强度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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