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酯基功能化离子液体作为钢/钢摩擦副润滑剂的摩擦学性能研究 总被引:1,自引:0,他引:1
合成了含酯基官能团的咪唑类离子液体;研究了其物化性质及热稳定性;通过与非功能化的烷基咪唑离子液体对比,在SRV摩擦磨损试验机上研究了常温及高温条件下酯基功能化离子液体作为钢/钢摩擦副润滑剂的摩擦学性能;用SEM和XPS对磨斑表面进行了分析.结果表明:酯基功能化离子液体具有很高的热稳定性;酯基团的引入使得离子液体的黏度有所增加,导致其在较低载荷下的减摩性能降低,但引入的酯基官能团增强了离子液体对金属表面的化学吸附力,使其抗磨性能显著提高,在高载荷下离子液体分解所产生的活性元素氟与摩擦副表面的金属发生摩擦化学反应,生成以氟化亚铁和氧化铁为主体的边界润滑膜,从而降低了摩擦和磨损.同时发现含有TF2N-阴离子的功能化离子液体较含有BF-4阴离子的功能化离子液体具有更好的抗磨性能;含有较长N-烷基链的功能化离子液体的抗磨减摩性能较好. 相似文献
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采用SRV摩擦磨损试验机在室温及100 ℃下考察了两种离子液体(L-B106 和L-P106)、丙三醇、水作为Si3N4-Ti3SiC2摩擦副润滑剂的摩擦学行为,利用扫描电子显微镜(SEM)及X光电子能谱(XPS)对磨损表面进行了分析.结果表明:室温、20 N条件下,两种离子液体和丙三醇抗磨和减摩性能相当,室温、100 ℃条件下,L-P106相较于L-B106具有更好的润滑性能,且其抗磨和减摩性能均优于丙三醇,作为Si3N4-Ti3SiC2摩擦副润滑剂具有在苛刻环境条件下使用的应用前景. XPS分析结果表明:Ti3SiC2材料在摩擦过程中在摩擦热作用下生成了SiOx、TiO2,进而有效提高了Ti3SiC2摩擦副材料的抗磨损性能;此外,离子液体中的活性元素在Si3N4-Ti3SiC2摩擦副表面发生了复杂的摩擦化学反应,生成了由氟化钛、磷酸钛及硼酸钛等组成的具有减摩和抗磨性能的边界润滑膜. 相似文献
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依据摩擦学定量构效关系理论(QSTR),采用比较分子力场分析(CoMFA)和比较分子相似性指数分析(CoMSIA)这两种方法研究了含氮杂环类润滑油添加剂的抗磨损性能的摩擦学三维定量构效关系(3D-QSTR),并建立了相应的3D-QSTR模型.结果表明:仅利用静电场构建CoMFA或CoMSIA模型时,模型预测能力最好,r~2,q~2均大于0.5.根据CoMFA或CoMSIA模型等高线图分析得出:分子静电场对含氮杂环类润滑油添加剂的抗磨损性能影响最大,在特定区域的引入带负电荷或带正电荷的基团将有助于抗磨性能的提高. 相似文献
56.
合成了1种不含硫磷的新型稀土化合物,该化合物在液体石蜡中具有较好的溶解性.热重分析(TGA)表明该化合物热稳定性较好.采用四球摩擦磨损试验机考察了其作为添加剂在液体石蜡中的减摩抗磨性能,结果表明当添加剂的含量为3.0%(w/w)时,与商业化的ZDDP相比具有更好的减摩抗磨效果.当与一定量的有机配体进行复配后,其性能可得到进一步提升.采用X射线光电子能谱(XPS)对磨斑表面进行了分析,结果发现La以羧酸镧和单质镧的形成存在,表明添加剂与金属表面发生了摩擦化学反应.俄歇电子能谱(AES)对元素的深度分布情况表明La向金属基体发生了渗透.含有羧酸镧的吸附膜和含有单质镧、羧酸亚铁的反应膜共同构成了高性能的边界润滑膜. 相似文献
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Dr. Luca Scapinello Sara Grecchi Dr. Sergio Rossi Prof. Fabiana Arduini Dr. Serena Arnaboldi Prof. Andrea Penoni Dr. Roberto Cirilli Prof. Patrizia Romana Mussini Prof. Tiziana Benincori 《Chemistry (Weinheim an der Bergstrasse, Germany)》2021,27(52):13190-13202
A family of inherently chiral electroactive selectors based on the 2,2’-biindole atropisomeric scaffold, of easy synthesis and modulable functional properties, is studied in cascade in two enantioselection contexts. They are at first investigated as probes in enantioselective HPLC, studying molecular structure and temperature effects, and achieving very efficient semipreparative enantioseparation. The enantiomers thus obtained, of remarkable chiroptical features (optical rotation as well as circular dichroism), are successfully applied as selectors in chiral voltammetry in different media for discrimination of the enantiomers of chiral electroactive probes, either by conversion into enantiopure electroactive electrode surfaces by electrooligomerization on glassy carbon substrate (the two monomers with shorter alkyl chains), or as chiral additive in achiral ionic liquid (the monomer with longest alkyl chains). Discrimination is conveniently and reproducibly achieved in terms of significant potential differences for the two enantiomers, specularly inverting either probe or selector configuration. In one case successful discrimination is also observed with the two probe enantiomers concurrently present, either as racemate or with enantiomeric excesses, neatly accounted for by the peak current ratios. 相似文献
59.
Melanie Aubert Ronan C. Nicolas Weronika Pawelec Carl‐Eric Wilén Michael Roth Rudolf Pfaendner 《先进技术聚合物》2011,22(11):1529-1538
A number of symmetrical and unsymmetrical azoalkanes of the general formula R′?N = N?R and related azoxy, hydrazone as well as azine derivatives have been synthesized in order to assess their potential as novel flame retardants for polypropylene alone or in combination with commercially available flame retardants such as alumina trihydrate (ATH), decabromodiphenyl ether (DecaBDE) and tris(3‐bromo‐2,2‐bis(bromomethyl)‐propyl)phosphate (TBBPP). The experimental results show that in the series of different sized azocycloalkanes the flame retardant efficacy decreased in the following order: R = cyclohexyl > cyclopentyl > cyclobutyl > cyclooctanyl >> cyclododecanyl. Whereas in the series of aliphatic azoalkanes compounds the efficacy decreased in the following order: R = n‐alkyl > tert‐butyl > tert‐octyl. In addition, also some of the prepared azoxy, azine, and hydrazone derivatives provide flame retardancy to polypropylene films at already very low concentrations (0.25–1 wt%). Noteworthy is that in contrast to other halogen‐free radical generators, the azoalkanes are also very effective as flame retardants in polypropylene thick moldings. Interestingly, it was found that 4,4′‐bis(cyclohexylazocyclohexyl)‐methane) shows a strong synergistic effect with ATH. Thus, in the presence of 0.5 wt% of azoalkane the ATH loading could be reduced from 60 to 25 wt% and still UL94 V‐2 rating could be reached. Furthermore, the fire testing data reveal that azoalkanes show a synergistic effect with DecaBDE and when used in conjunction with very low loadings of TBBPP. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
60.
The spread of perfluoropolyether (PFPE) droplets on solid surfaces has been measured from the top-down view through a microscope system. Effects of substrates, molecular weight and end-group functionality on spreading of the PFPE droplets have been studied experimentally and the results were compared with those by molecular dynamics (MD) simulations. Silicon wafer and diamond-like carbon (DLC) substrates were used to study the effect of substrates on spreading. Two types of PFPE, Z-dol and Z-tetraol, with the same chain structure and various molecular weights (2000 and 4000 g/mol) were employed in experiments. Effect of molecular weight has been investigated through comparing the spreading of Z-dol 2000 and Z-dol 4000, and it is found that the increase of molecular weight will decrease the mobility of PFPE. Comparison between spreading of Z-dol and Z-tetraol of the same molecular weight proved that functional end group plays a significant role on the spreading of PFPE, which confirmed the MD simulation results. 相似文献