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软/硬耦合两亲聚合物纳米球用于水润滑。

Soft/Hard-Coupled Amphiphilic Polymer Nanospheres for Water Lubrication.

机构信息

State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics , Chinese Academy of Sciences , Lanzhou 730000 , China.

University of Chinese Academy of Sciences , Beijing 100049 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Mar 14;10(10):9178-9187. doi: 10.1021/acsami.8b00405. Epub 2018 Mar 2.

Abstract

Amphiphilic polymer nanospheres of poly(3-sulfopropyl methacrylate potassium salt- co-styrene) [P(SPMA- co-St)] were prepared by a simple soap-free emulsion polymerization method and used as efficient water lubrication additives to enhance the antiwear behaviors of the TiAlV alloy. The monodisperse and flexible P(SPMA- co-St) bicomponent copolymer nanospheres were synthesized with a controllable manner by adjusting the mass fraction ratio of the monomers, with the hydrophobic polystyrene (PSt) as the hard skeletal carrier component and the hydrophilic PSPMA with a hydration layer structure as the soft lubrication layer in the course of friction. The influences of the monomer concentration, the copolymer nanosphere additive content, the load, and the frequency of the friction conditions on their tribological properties were studied in detail, and a probable antiwear mechanism of the soft/hard-coupled copolymer nanospheres under water lubrication was also proposed. The results show that compared with pure PSt, the P(SPMA- co-St) polymer nanospheres exhibited better antiwear property as an additive for water lubrication, and the friction coefficient and the wear volume first decreased and then increased with the increase of the SPMA content, indicating that the hydrophilic SPMA has a significant effect on lubrication properties owing to its hydration performance. Furthermore, with the increase of polymer nanosphere concentration, the friction coefficient and wear amount also decreased to a stable and low value at a saturation concentration of 1 wt %. The flexible polymer nanospheres with a hydrophilic soft SPMA shell and a rigid PSt core exhibited good friction-reduction and antiwear performance as lubrication additives, indicating their promising and potential applications in water lubrication and biological lubrication.

摘要

聚(3-磺丙基甲基丙烯酸钾盐-共-苯乙烯)[P(SPMA-共-St)]两亲性聚合物纳米球通过简单的无皂乳液聚合方法制备,并用作高效水润滑添加剂,以提高 TiAlV 合金的抗磨损性能。通过调整单体的质量分数比,以疏水性聚苯乙烯(PSt)为硬骨架载体组分,具有水化层结构的亲水性 PSPMA 为软润滑层,以可控的方式合成了单分散、柔性的 P(SPMA-共-St)两亲性共聚物纳米球。详细研究了单体浓度、共聚物纳米球添加剂含量、载荷和摩擦条件频率对其摩擦学性能的影响,并提出了软/硬耦合共聚物纳米球在水润滑下的可能抗磨机制。结果表明,与纯 PSt 相比,作为水润滑添加剂的 P(SPMA-共-St)聚合物纳米球具有更好的抗磨性能,摩擦系数和磨损体积先减小后增大随着 SPMA 含量的增加,表明由于其水合性能,亲水性 SPMA 对润滑性能有显著影响。此外,随着聚合物纳米球浓度的增加,摩擦系数和磨损量也在达到 1wt%的饱和浓度时降低并稳定在低值。具有亲水性软 SPMA 壳和刚性 PSt 核的柔性聚合物纳米球作为润滑添加剂表现出良好的减摩和抗磨性能,表明它们在水润滑和生物润滑中有广阔的应用前景和潜力。

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