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Failure Analysis of Nitrile Rubber O-Rings Static Sealing for Packaging Barrel

机译:丁腈橡胶O环静电密封包装桶的故障分析

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摘要

Nitrile rubber O-rings seals for packaging barrel was stored in China tropical marine atmosphere environments for 10 years, and then the sealing function of nitrile rubber O-ring was failed. By comparing the molecular structure, cross-link density, thermal decomposition, content of elements and chemical functional groups of the original nitrile rubber seals, the surface and interior of nitrile rubber seals storage for 10?years, a long-term natural failure mechanism was studied. The results showed that: the surface content of dibutyl phthalate and dibutyl sebacate, the surface carbonyl peak height and the surface content of oxygen element were higher than that in internal; the surface cross-link density was lower than that in internal but still higher than in original sample; and surface carbon- to-oxygen ratio were lower than that in internal and original sample. After aging for 10?years, the weight loss of plasticizer decreased, and the main chain content increased. It can be inferred that nitrile rubber mainly undergoes oxygen-absorbing cross-linking reaction to form carboxylic acids and esters, which is accompanied by the migration and enrichment of two plasticizers to the surface, causing reductions in elasticity and elasticity. The residual permanent compression set was lower than the design critical value, and the sealing function for the packaging barrel was lost, and a leak occurred.
机译:用于包装桶的丁腈橡胶O形圈密封件在中国热带海洋气氛环境中储存10年,然后丁腈橡胶O形圈的密封功能失效。通过比较原始丁腈橡胶密封件的元素和化学官能团的分子结构,交联密度,热分解,丁腈橡胶密封件的表面和内部10?多年来,长期的自然失效机制是研究过。结果表明:邻苯二甲酸二丁酯和二丁基,表面羰基峰高和氧元素表面含量高于内部的表面含量高于内部;表面交联密度低于内部但仍高于原始样品中的表面交联密度;表面碳对氧比低于内部和原始样品。老化10岁后,增塑剂的重量损失降低,主要链含量增加。可以推断,丁腈橡胶主要经历氧气吸收交联反应,形成羧酸和酯,其伴随着两种增塑剂的迁移和富集表面,导致弹性和弹性的降低。残留的永久压缩集低于设计临界值,包装筒的密封功能丢失,并且发生了泄漏。

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  • 作者单位

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

    Chongqing Engineering Research Center for Environmental Corrosion and Protection Southwest Technology and Engineering Research Institute;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

    Characterization; Compression; Failure analysis; Microstructure; Oxidation; Failure mechanism;

    机译:表征;压缩;失败分析;微观结构;氧化;失败机制;

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