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Structure modification and crosslinking of methacrylated polylactide oligomers

机译:甲基丙烯酸化聚丙交酯低聚物的结构改性和交联

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摘要

The effect of molecular architecture on the properties of crosslinked polylactides was studied. D,L-Lactide-based telechelic oligomers with different numbers of arms were functionalized with methacrylic anhydride. Functionalized oligomers were crosslinked with thermal initiation at 90 C, and the mechanical and thermal properties, as well as the gel content, were evaluated. The crosslinking density increased with the number of arms in the oligomers, and the compressive yield strength was built up at the same time. The best mechanical properties (compressive yield strength = 120 MPa, modulus = 2800 MPa, and strain = 5.0%) were obtained with cured polymers prepared with a 100 : 8 ratio of lactide to pentaerythritol. When dimethacrylated butanediol was used as a reactive monomer in curing, polymers with high crosslinking density and mechanical strength were obtained at 37, 60, and 90degreesC. The use of the reactive monomer also enabled high conversions with photoinitiated crosslinking. Finally, hydrolytic degradation and strength retention were demonstrated. (C) 2002 Wiley Periodicals, Inc. [References: 24]
机译:研究了分子结构对交联聚丙交酯性能的影响。用甲基丙烯酸酐官能化具有不同臂数的D,L-丙交酯基远螯低聚物。官能化的低聚物在90°C下通过热引发进行交联,并评估了机械和热性能以及凝胶含量。交联密度随低聚物中臂数的增加而增加,同时建立了压缩屈服强度。用丙交酯与季戊四醇之比为100:8制备的固化聚合物可获得最佳机械性能(压缩屈服强度= 120 MPa,模量= 2800 MPa和应变= 5.0%)。当将二甲基丙烯酸化的丁二醇用作固化中的反应性单体时,在37、60和90℃下获得具有高交联密度和机械强度的聚合物。反应性单体的使用还可以通过光引发的交联实现高转化率。最后,证明了水解降解和强度保持率。 (C)2002 Wiley Periodicals,Inc. [参考:24]

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