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Paper Presented At Iapri Symposium 2013: Drop Test of Plastic Packagings - Correlation with Material Parameters and Change of Packaging Behaviour After Impact of Standard Liquids

机译:在2013年Iapri研讨会上发表的论文:塑料包装的跌落测试-与材料参数的关系以及标准液体冲击后包装行为的变化

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A guided drop test was performed to achieve a defined and reproducible impact orientation of jerrycans. The drop heights where 50% of the jerrycans experienced a failure from a crack where fluid can escape (50% failure drop height) were compared among jerrycans made of four different materials, in their original state and preconditioned with standard liquids. To analyse the impact of only elevated temperatures, the packages were preconditioned for 21 days at 40℃ without the use of chemicals. The 50% failure drop height was compared by using Young's modulus; the notched impact strength (NIS) of specimen cut from plates which were manufactured by compression moulding and the notched tensile impact strength of specimen cut-outs of the jerrycans' side walls. The NIS depends highly on the thermal preconditioning of the plates being manufactured by compression moulding. A trend can be seen that a higher Young's modulus, a higher NIS and a higher notched tensile impact strength result in a higher 50% failure drop height, but the values are spread. The influence of the wall thickness cannot be neglected. The change of the 50% failure drop height in regard to the preconditioning at 40℃ with and without nitric acid was compared in terms of their resistance to molecular degradation, density and degree of crystallinity. The conditioning at elevated temperature causes post-crystallization. It was shown that the resistance to molecular degradation determined on pressed plates correlates with the change of the 50% failure drop height after pre-storage with nitric acid.
机译:进行了引导式跌落试验,以达到确定的和可重复的桶形罐碰撞方向。比较了四种不同材料制成的五加仑油罐在原始状态下并经过标准液体预处理的情况,其中跌落高度中有50%的五加仑油罐从裂缝中漏出,液体可以从中漏出(50%的跌落高度)。为了仅分析高温的影响,在不使用化学药品的情况下,将包装在40℃预处理21天。通过使用杨氏模量比较了50%的故障降落高度。从通过压缩成型制得的板材上切下的试样的缺口冲击强度(NIS)和油罐侧壁的试样缺口的缺口拉伸冲击强度。 NIS高度依赖于通过压缩成型制造的板材的热预处理。可以看到趋势,较高的杨氏模量,较高的NIS和较高的缺口拉伸冲击强度会导致较高的50%失效降落高度,但这些值会分散。壁厚的影响不能忽略。比较了在有或没有硝酸的情况下,在40℃下使用硝酸进行预处理时50%失效降落高度的变化,它们具有抗分子降解性,密度和结晶度。高温条件下会引起后结晶。结果表明,在压制板上确定的抗分子降解能力与硝酸预存储后50%失效降落高度的变化有关。

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