文章摘要
牟信妮,卢立新,马永胜.蜂窝芯层创新结构及成型性[J].包装工程,2017,38(15):72-76.
MOU Xin-ni,LU Li-xin,MA Yong-sheng.Innovative Structure and Formability of Honeycomb Core[J].Packaging Engineering,2017,38(15):72-76.
蜂窝芯层创新结构及成型性
Innovative Structure and Formability of Honeycomb Core
投稿时间:2016-09-19  修订日期:2017-08-10
DOI:
中文关键词: 蜂窝芯层  结构创新  肋板结构  平台应力  粘合工艺
英文关键词: honeycomb core  structural innovative  rib structure  plateau stress  bonding technology
基金项目:天津市高等学校科技发展基金(20110421);天津职业大学科学研究基金(20151102)
作者单位
牟信妮 1.江南大学无锡 2141222.天津职业大学天津 300410 
卢立新 1.江南大学无锡 2141222.江苏省食品先进制造装备技术重点实验室无锡 214122 
马永胜 广州科技职业技术学院广州 510550 
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中文摘要:
      目的 设计一款增强型蜂窝芯层创新结构。方法 通过平板粘合尺寸决定新增芯层在六边形蜂窝胞元中的形状,选取直线肋板结构为研究对象,对比创新结构与常规结构的面外承载性能,在现有蜂窝芯层加工工艺的基础上,对此蜂窝芯层的成型工艺及参数进行分析研究。结果 新结构可实现平板状粘合,当胞元内粘合尺寸为胞元边长的0.625倍时,在蜂窝孔内形成直线肋板结构,分布均匀,创新结构比常规结构的平台应力提高了315.74%,同时针对该结构改进设计了半自动及全自动粘合工艺方法。结论 创新结构科学稳定,承载性能得到显著提高,芯层粘合工艺改动小,能为扩充夹层板材结构及成型工艺提供参考。
英文摘要:
      The work aims to design an innovative structure of reinforced honeycomb core. The shape of the new core layer in the hexagonal honeycomb cell was determined based on the bonding size of the plate. With the straight rib structure selected as the research object, out-plane bearing capacities of the innovative structure and common structure were compared. Based on the existing processing technology of the existing honeycomb core, the forming process and parameters of such honeycomb core were analyzed and researched. The new structure could realize bonding in plate state. When the bonding size in cell element was 0.625 times the size of side length of cell element, the straight rib structure could be formed in honeycomb core and distributed uniformly. The plateau stress of the innovative structure was 315.74% higher than that of the common structure. Besides, semi-automatic and fully automatic bonding processes were designed with respect to such structure. The innovative structure is scientific and stable, the bearing capacity is significantly improved, and the core bonding process changes little, which could provide a reference for the expansion of sandwich plate structure and forming process.
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