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3D Energy Absorption Diagram Construction of Paper Honeycomb Sandwich Panel

机译:纸蜂窝夹芯板的3D能量吸收图构造

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Paper honeycomb sandwich panel is an environment-sensitive material. Its cushioning property is closely related to its structural factors, the temperature and humidity, random shocks, and vibration events in the logistics environment. In order to visually characterize the cushioning property of paper honeycomb sandwich panel in different logistics conditions, the energy absorption equation of per unit volume of paper honeycomb sandwich panel was constructed by piecewise function. The three-dimensional (3D) energy absorption diagram of paper honeycomb sandwich panel was constructed by connecting the inflexion of energy absorption curve. It takes into account the temperature, humidity, strain rate, and characteristics of the honeycomb structure. On the one hand, this diagram breaks through the limitation of the static compression curve of paper honeycomb sandwich panel, which depends on the test specimen and is applicable only to the standard condition. On the other hand, it breaks through the limitation of the conventional 2D energy absorption diagram which has less information. Elastic modulus was used to normalize the plateau stress and energy absorption per unit volume. This makes the 3D energy absorption diagram universal for different material sandwich panels. It provides a new theoretical basis for packaging optimized design.
机译:纸蜂窝夹芯板是对环境敏感的材料。它的缓冲性能与其结构因素,温度和湿度,随机冲击以及物流环境中的振动事件密切相关。为了直观地表征纸蜂窝夹芯板在不同物流条件下的缓冲性能,通过分段函数构造了纸蜂窝夹芯板每单位体积的能量吸收方程。通过连接能量吸收曲线的弯曲度来构建纸蜂窝夹芯板的三维(3D)能量吸收图。它考虑了温度,湿度,应变率和蜂窝结构的特性。一方面,该图突破了纸蜂窝夹芯板静态压缩曲线的限制,该限制取决于测试样本,并且仅适用于标准条件。另一方面,它突破了信息较少的传统二维能量吸收图的局限性。弹性模量用于标准化平台应力和每单位体积的能量吸收。这使得3D能量吸收图可用于不同材料的夹心板。它为包装优化设计提供了新的理论基础。

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