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Influence of temperature and ZDDP concentration on tribochemistry of surface-capped molybdenum sulfide nanoparticles studied by XANES spectroscopy

机译:XANES光谱研究温度和ZDDP浓度对表面覆盖的硫化钼纳米颗粒摩擦化学的影响

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摘要

The tribological behavior of surface-capped M0S3 nanoparticles (nano-MoS{sub}3) in hydrocarbon oils was studied in combination with ZDDP at test temperatures in the range of 100-160℃ and at ZDDP content of 0-1.0 wt% in oil. It was demonstrated that this combination of additives demonstrates high antiwear and antifriction efficiency, especially at high temperatures and low ZDDP content. X-ray Absorption Near Edge Structure (XANES) spectroscopy at the sulfur, molybdenum, and phosphorus edges was used to identify the chemical species in the tribochemical films. It was established that the tribofilms formed by combination of ZDDP and nano-MoS{sub}3 contain phosphate-based layers incorporating MoS{sub}2-type fragments. An increase in temperature and ZDDP content results in an increase in tribofilm thickness, while the relative Mo content in tribofilm decreases. Under the tested conditions, the best tribological properties are demonstrated by the composition comprising 500 ppm Mo and 0.1 wt% ZDDP in oil.
机译:结合ZDDP,在100-160℃的测试温度和0-1.0 wt%的油中ZDDP含量下,研究了表面封端的MoS3纳米颗粒(纳米MoS {sub} 3)在烃油中的摩擦学行为。 。事实证明,这种添加剂组合具有很高的抗磨和抗磨效率,尤其是在高温和低ZDDP含量的情况下。硫,钼和磷边缘的X射线吸收近边缘结构(XANES)光谱用于鉴定摩擦化学薄膜中的化学物质。已经确定,通过ZDDP和纳米MoS {sub} 3的组合形成的摩擦膜包含结合有MoS {sub} 2-型片段的磷酸盐基层。温度和ZDDP含量的增加导致摩擦膜厚度增加,而摩擦膜中的相对Mo含量降低。在测试条件下,通过在油中包含500 ppm Mo和0.1 wt%ZDDP的组合物表现出最佳的摩擦学性能。

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