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一步法制备的双网络离子凝胶的力学和润滑性能

Mechanical and Lubrication Properties of Double Network Ion Gels Obtained by a One-Step Process.

作者信息

Arafune Hiroyuki, Watarai Yuma, Kamijo Toshio, Honma Saika, Sato Takaya

机构信息

Department of Creative Engineering, National Institute of Technology, Tsuruoka College, 104 Sawada Ino-oka, Tsuruoka 997-8511, Yamagata, Japan.

出版信息

Materials (Basel). 2022 Mar 13;15(6):2113. doi: 10.3390/ma15062113.

Abstract

Human joints support us to reduce the impact on our body and move them smoothly. As they are composed of gel-like structures, gel materials with soft and resilient properties are expected, as lubricants, to provide high efficiency and a long lifetime for mechanical parts. While double network gels including ionic liquids as swelling agents possess high mechanical strength and stable low friction under high temperature or vacuum, their fabrication process is complex and time-consuming. In this study, we applied one-pot synthesis to a double network ion gel (DNIG) to obtain a thin gel film by a simple coating method and examined its thermal, mechanical and tribological properties. The DNIG was obtained by one-pot synthesis (DNIG-1) combining polycondensation of tetraethoxysilane and radical polymerization of methyl methacrylate to form silica and poly(methyl methacrylate) as a 1st and 2nd network, respectively. Such obtained DNIG-1 was characterized and compared with DNIG obtained by a conventional two-step process (DNIG-2). Thermogravimetric analysis and the compressive stress-strain test showed high thermal stability and mechanical strength of DNIG-1. As friction at the glass/DNIG-1 interface showed high friction compared with that at glass/DNIG-2, various counterface materials were applied to examine their effect on the friction of DNIG-1. As SUS304/DNIG-1 showed much lower friction compared with glass/DNIG-1, the difference in the friction was presumably due to the different adsorption forces and compatibility between the materials.

摘要

人体关节支撑着我们,以减少对身体的冲击并使身体平稳移动。由于它们由凝胶状结构组成,因此具有柔软和弹性特性的凝胶材料有望作为润滑剂,为机械部件提供高效率和长寿命。虽然包含离子液体作为溶胀剂的双网络凝胶在高温或真空下具有高机械强度和稳定的低摩擦,但它们的制备过程复杂且耗时。在本研究中,我们将一锅法合成应用于双网络离子凝胶(DNIG),通过简单的涂覆方法获得薄凝胶膜,并研究了其热学、力学和摩擦学性能。DNIG是通过一锅法合成(DNIG-1)获得的,该方法将四乙氧基硅烷的缩聚反应和甲基丙烯酸甲酯的自由基聚合反应相结合,分别形成作为第一网络和第二网络的二氧化硅和聚甲基丙烯酸甲酯。对如此获得的DNIG-1进行了表征,并与通过传统两步法获得的DNIG(DNIG-2)进行了比较。热重分析和压缩应力-应变测试表明DNIG-1具有高热稳定性和机械强度。由于玻璃/DNIG-1界面处的摩擦与玻璃/DNIG-2界面处的摩擦相比显示出高摩擦,因此应用了各种配对材料来研究它们对DNIG-1摩擦的影响。由于SUS304/DNIG-1与玻璃/DNIG-1相比显示出低得多的摩擦,摩擦差异可能是由于材料之间不同的吸附力和相容性所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc0/8950215/89c9dae0f227/materials-15-02113-g001.jpg

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