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首页> 外文期刊>Journal of Applied Polymer Science >Blends of modified epoxy resin and carboxyl-terminated polybutadiene. I
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Blends of modified epoxy resin and carboxyl-terminated polybutadiene. I

机译:改性环氧树脂和羧基封端的聚丁二烯的混合物。一世

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摘要

Six blend samples were prepared by the physical mixing of epoxidized resole (EDR) with different weight ratios of carboxyl-terminated polybutadiene (CTPB) liquid rubber ranging from 0 to 25 wt % in intervals of 5 wt %. The formation of various reaction products during the curing of unblended EDR and CTPB-blended EDR were studied with Fourier transform infrared spectroscopy. The curing time at 100 degrees C for the blend sample containing 15 wt % CTPB was the least among all of the blend samples. This blend sample, also, showed the highest initial degradation temperature, as obtained from thermogravimetric analysis thermograms, which indicated that it was the most thermally stable matrix system. The films of coatings based on the blend of EDR with 1.5 wt % CTPB offered the highest resistance toward different concentrations of acids and alkalis compared to the films having 5, 10, 20, and 25 wt % CTPB in the EDR/CTPB blends. Solvents showed almost the same behavior as acids and alkalis for these films except for hydrocarbon solvents such as mineral turpentine oil, toluene, and xylene. The resistance toward these solvents was poor and slightly inferior to those found with EDR unblended with CTPB. The tensile, flexural, and impact strengths of the molded specimens derived from the EDR/CTPB blends initially increased up to 15 wt % CTPB addition in the blend and then decreased, whereas the elongation at break remained constant for all blend compositions. (c) 2006 Wiley Periodicals, Inc.
机译:通过将环氧化甲阶酚醛树脂(EDR)与羧基封端的聚丁二烯(CTPB)液态橡胶的不同重量比(范围为0到25 wt%,以5 wt%的间隔)进行物理混合来制备六个共混样品。用傅里叶变换红外光谱研究了未共混EDR和CTPB共混EDR固化过程中各种反应产物的形成。在所有共混样品中,含有15 wt%CTPB的共混样品在100摄氏度下的固化时间最少。该混合物样品还显示出最高的初始降解温度,这是通过热重分析热分析图获得的,这表明它是最热稳定的基质系统。与EDR / CTPB混合物中CTPB含量为5、10、20和25 wt%的薄膜相比,基于EDR和1.5 wt%CTPB混合物的涂料膜对不同浓度的酸和碱具有最高的耐受性。对于这些膜,溶剂显示出与酸和碱几乎相同的行为,除了烃类溶剂如矿物松节油,甲苯和二甲苯外。对这些溶剂的抵抗力很差,并且略逊于未与CTPB共混的EDR。源自EDR / CTPB共混物的模制样品的拉伸强度,挠曲强度和冲击强度最初会在共混物中添加至最高15 wt%的CTPB,然后降低,而对于所有共混物组合物,断裂伸长率均保持恒定。 (c)2006年Wiley Periodicals,Inc.

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