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Verification of the decomposition of perfluoropolyether fluid due to tribomicroplasma

机译:验证全氟聚醚流体由于摩擦微等离子体的分解

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摘要

Recently, tribomicroplasma has been discovered around sliding contacts. This must be the unknown high energetic state that has been sought after for many years as the source of tribochemical reaction. On the other hand, the mechanism of tribochemical decomposition of the perfluoropolyether (PFPE) fluid, Z-dol, used as a hard disk drive lubricant, is not fully explained by traditional reaction mechanisms. A mixture of volatile decomposition products evolved from lubricated sliding contacts is collected by a sampling tube packed with an adsorbent and separated by gas chromatography (GC) into individual components, the chemical structures of which are determined by a Quadra pole mass spectrometer (Q-MS). The volatile products at the sliding contact coincided completely with that of the gas-discharge plasma decomposition product. These results verify that PFPE fluid is decomposed by triboplasma. This verification opens a new mechanism of tribomicroplasma reaction in the field of tribochcmistry.
机译:近来,在滑动接触周围发现了摩擦微浆。这必须是多年来一直寻求作为摩擦化学反应源的未知高能状态。另一方面,传统的反应机理不能完全解释用作硬盘驱动润滑剂的全氟聚醚(PFPE)流体Z-dol的摩擦化学分解机理。由润滑的滑动触点产生的挥发性分解产物的混合物由装有吸附剂的采样管收集,并通过气相色谱仪(GC)分离成单个成分,其化学结构由四极杆质谱仪(Q-MS)确定)。滑动接触处的挥发性产物与气体放电等离子体分解产物的挥发性产物完全重合。这些结果证实了PFPE流体已被原浆分解。这一验证为摩擦学领域中的摩擦原质反应开辟了新的机制。

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