Zhou Yulong, Meng Yuan, Cheng Yu, Guan Minghang, Liu Xiubo
School of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410000, China.
School of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410000, China; Hunan Province Key Laboratory of Materials Surface, Interface Science and Technology, Changsha 410000, China.
Carbohydr Polym. 2024 Nov 15;344:122542. doi: 10.1016/j.carbpol.2024.122542. Epub 2024 Jul 24.
To improve the limitations of water-based lubricants, a novel cellulose nanocrystal based supramolecular hydrogel (CNC/x-DG/y) was prepared by mixing cellulose nanocrystal (CNC) and diglycerol (DG) into deionized water (DW). The hydrogel was characterized to determine its material ratio and gelation mechanism. When DW was fixed at 1 mL, CNC content should be no <2.4 wt% and DG content 0.1-1.3 mL. The gelification was driven by the multiple H-bond network between CNC and DG, which immobilized water molecules. The rheological performances, the anti-rust property and the volatilization behaviour of the hydrogel were further studied. The results showed that the hydrogel had satisfactory viscoelasticity, excellent thermal stability, strong creep recovery, high anti-rust performance and low volatilization rate, which were exactly its advantages for use as lubricant. A typical representative of the hydrogel, namely CNC/2.4-DG/0.1, was selected to evaluate the tribological performances, and the resulting worn surfaces were analyzed. CNC/2.4-DG/0.1 exhibited a lower friction coefficient of 0.059 and a smaller wear volume of 0.81 × 10 mm, compared to DW(1 mL) + CNC(2.4 wt%) and DW(1 mL) + DG(0.1 mL). The outstanding tribological performances of CNC/2.4-DG/0.1 were reasonably attributed to the synergistic mending effect of CNC and DG and the dissipative effect of H-bonds between the two.
为改善水基润滑剂的局限性,通过将纤维素纳米晶体(CNC)和二甘油(DG)混入去离子水(DW)中,制备了一种新型的基于纤维素纳米晶体的超分子水凝胶(CNC/x-DG/y)。对该水凝胶进行表征以确定其材料比例和凝胶化机制。当DW固定为1 mL时,CNC含量应不低于2.4 wt%,DG含量为0.1 - 1.3 mL。凝胶化由CNC和DG之间的多重氢键网络驱动,该网络固定了水分子。进一步研究了水凝胶的流变性能、防锈性能和挥发行为。结果表明,该水凝胶具有令人满意的粘弹性、优异的热稳定性、较强的蠕变恢复能力、高防锈性能和低挥发率,这些正是其用作润滑剂的优势。选择该水凝胶的一个典型代表,即CNC/2.4-DG/0.1,来评估其摩擦学性能,并对所得磨损表面进行分析。与DW(1 mL) + CNC(2.4 wt%)和DW(1 mL) + DG(0.1 mL)相比,CNC/2.4-DG/0.1表现出较低的摩擦系数0.059和较小的磨损体积0.81×10 mm。CNC/2.4-DG/0.1出色的摩擦学性能合理地归因于CNC和DG的协同修复作用以及两者之间氢键的耗散作用。