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Compatibility study of common sealing elastomers with a biolubricant (Jatropha oil)

机译:普通密封弹性体与生物润滑剂(麻风树油)的相容性研究

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摘要

Vegetable oils are potential alternative lubricants for the twofold purpose of achieving good tribological properties "while protecting the environment. However, any intended use of bio-lubricants in machinery requires of a previous study of their compatibility with the involved sealing materials. In particular, Jatropha oil (JO) is inexpensive and easy to obtain, which make it a good candidate to be used as bio-lubricant in machinery. In this work, a compatibility study of four commercial sealing elastomers, namely, fluoroelastomer (FKM), silicone rubber (VMQ), neoprene/chloroprene (CR), and ethylene-propylene-diene monomer (EPDM) with JO, engine mineral oil (EMO) and a blend of EMO and JO (80-20%) (B20), for the purpose of comparison, was conducted. The analyses include the basic measurements comprised in the ASTM-D471 and ASTM-D7216 methods, namely, changes in mass, volume, tensile and tear resistance and hardness. In addition, non-standard measurements of creep compliance, surface morphology and topography, and chemical composition were performed to achieve a deeper evaluation of the interaction of JO with the elastomers. In general, good compatibility was found regarding the standard methods for the four elastomers with JO, VMQ being the most compatible sealing material. However, FKM, CR and EPDM showed changes in the creep compliance modulus and surface morphology when in contact with the three lubricants, which may considerably affect their sealing performance and decrease their useful life. Overall, pure JO generated much less physical changes on the elastomers than EMO and B20, which can be ascribed to the concentrations of free fatty acids contained in JO.
机译:植物油是潜在的替代润滑剂,用于在保护环境的同时实现良好的摩擦学特性的潜在润滑剂。然而,任何预期的生物润滑剂在机械中都需要先前的研究它们与所涉及的密封材料的兼容性。特别是,愚蠢的油(乔)便宜且易于获得,使其成为机械中生物润滑剂的良好候选者。在这项工作中,对四种商业密封弹性体的相容性研究,即含氟弹性体(FKM),硅橡胶( VMQ),氯丁橡胶/氯丁烯(Cr)和乙烯 - 丙烯 - 二烯单体(EPDM)用JU,发动机矿物油(EMO)和EMO和JO(80-20%)(B20)的混合物,以便进行了比较。分析包括ASTM-D471和ASTM-D7216方法中包含的基本测量,即质量,体积,拉伸和抗撕裂性和硬度变化。此外,蠕变顺应性的非标准测量,表面进行形态和地形,并进行化学组成,以实现更深入的评价JO与弹性体的相互作用。通常,发现良好的相容性关于与JO的四个弹性体的标准方法,VMQ是最兼容的密封材料。然而,在与三种润滑剂接触时,FKM,Cr和EPDM显示蠕变顺应性模量和表面形态的变化,这可能会显着影响其密封性能并降低其使用寿命。总体而言,纯jo在弹性体上产生的物理变化小于emo和b20,这可以归因于jo中含有的游离脂肪酸的浓度。

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