Ren Zechun, Guo Rui, Zhou Xinyuan, Bi Hongjie, Jia Xin, Xu Min, Wang Jun, Cai Liping, Huang Zhenhua
Material Science and Engineering College, Northeast Forestry University Harbin 150040 China
Civil Engineering College, Northeast Forestry University Harbin 150040 China
RSC Adv. 2021 Jun 8;11(33):19967-19977. doi: 10.1039/d1ra02625a. eCollection 2021 Jun 3.
This study was aimed at predicting and enhancing the properties of the blend, as well as exploring the mechanism, of a polylactic acid (PLA)/amorphous cellulose composite system through molecular characterization. The static properties of the amorphous cellulose/PLA blend model and the mechanical response of the material under uniaxial tension were studied by molecular dynamics simulation to establish the structure-property relationship. PLA and cellulose showed poor miscibility, the change in the compatibility of the mixture can be attributed to the hydrogen bond interaction between the cellulose and PLA functional groups. The radius of gyration, interaction and free volume of the molecular chain in the blend were analyzed. The conformational changes under tensile deformation indicated that the load-bearing role of cellulose in the system was the main reason for increasing the strength of the material. The yield process was considered to be the infiltration of free volume caused by deformation.
本研究旨在通过分子表征预测并改善聚乳酸(PLA)/无定形纤维素复合体系共混物的性能,同时探究其机理。通过分子动力学模拟研究了无定形纤维素/PLA共混模型的静态性能以及材料在单轴拉伸下的力学响应,以建立结构-性能关系。PLA与纤维素的混溶性较差,混合物相容性的变化可归因于纤维素与PLA官能团之间的氢键相互作用。分析了共混物中分子链的回转半径、相互作用和自由体积。拉伸变形下的构象变化表明,纤维素在体系中的承载作用是材料强度增加的主要原因。屈服过程被认为是由变形引起的自由体积的渗透。