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首页> 外文期刊>Journal of Applied Packaging Research >Evaluation of a Bulge Reduction Technology for Corrugated Fiberboard Containers Under Static Compression
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Evaluation of a Bulge Reduction Technology for Corrugated Fiberboard Containers Under Static Compression

机译:静态压缩下瓦楞纤维板容器凸起技术评价

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This research examines the effect of top-to-bottom static compression load on the bulge of RSC containers. The study compares a control regular slotted container (RSC) constructed with corrugated fiberboard to tape-reinforced designs. The bulge reduction, achieved using various tape placements and conditioning environments, were measured. Currently, no research on the effect of reinforcement tape towards reduction in the out-of-plane displacement (bulging) of the corrugated fiberboard panels has been undertaken. Samples related to four different container designs, varying by presence, quantity and the position of the reinforcement tape on the vertical panels, were tested and analyzed. The study involved the use of a prototype cutting table, environmental conditioning chambers, a compression testing system and a patented container bulge measuring fixture. The statistical analysis of the observations confirms that the reinforcement tape significantly reduces the out-of-plane displacement of the container side panels under ambient environmental conditions (23 ± 1 °C, 50 ± 2% relative humidity). In tropical and refrigerated conditions (40 ± 2 °C, 90 ± 5% relative humidity and 5 ± 2 °C, 85 ± 5% relative humidity) it was observed that the reinforcement tape has potential in reducing bulge. The findings of this study should be valuable to packaging engineers towards the potential reduction of material usage while improving the stacking strength and rigidity of an optimized corrugated fiberboard containers.
机译:本研究探讨了顶部到底静态压缩负荷对RSC容器膨胀的影响。该研究将用瓦楞纤维板构成的控制规则开槽容器(RSC)与胶带增强的设计进行了比较。测量使用各种磁带放置和调节环境实现的凸起减少。目前,已经没有对瓦楞纤维板板的平面外位移(凸出)减小的加固磁带减少的研究。测试并分析了与垂直板上的四种不同容器设计相关的样品,随着垂直面板上的加强带的存在,数量和位置而变化。该研究涉及使用原型切割台,环境调节室,压缩测试系统和专利容器凸起测量夹具。观察结果的统计分析证实,加强胶带在环境环境条件下显着降低了容器侧板的平面外位移(23±1°C,50±2%相对湿度)。在热带和冷藏条件下(40±2°C,90±5%相对湿度和5±2°C,85±5%相对湿度),观察到加强带具有减少凸起的电位。本研究的调查结果应该对包装工程师来说,朝向材料使用的潜在降低,同时提高优化的波纹纤维板容器的堆叠强度和刚性。

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