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首页> 外文期刊>Journal of Polymers and the Environment >Sustainable Use of Chloroprene Rubber Waste as Blend Component with Natural Rubber, Epoxidized Natural Rubber and Styrene Butadiene Rubber
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Sustainable Use of Chloroprene Rubber Waste as Blend Component with Natural Rubber, Epoxidized Natural Rubber and Styrene Butadiene Rubber

机译:氯丁橡胶废料与天然橡胶,环氧天然橡胶和丁苯橡胶的混合组分的可持续利用

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摘要

Recycling of rubber waste and finding the effective methods to extend its use are one of major challenges nowadays. The potential approach to reduce rubber waste is to blend it with virgin rubber, perhaps with synergistic advantages. In this study, chloroprene rubber waste (CRw) is used as blend component in binary blends with natural rubber (NR), epoxidized natural rubber with 50mol% epoxidation level (ENR50), and styrene butadiene rubber (SBR). The effects of blend ratio [95/5, 85/15, 75/25, 65/35 and 50/50 (phr/phr)] on the properties were studied. The results indicate that CRw prolongs scorch and curing times, due to the differences in unsaturation contents and cure incompatibility. The maximum torque (M-H), minimum torque (M-L), and torque difference (M-H-M-L) in all cases increased with CRw content in the blend. Because CRw has a crosslink precursor, crosslink density also increased with CRw content. This is clearly confirmed by the combination of swelling resistance, crosslink density and dynamic mechanical properties observed. SEM micrographs showed mostly rough surface and tearing areas for low CRw contents in the blends. The blends also showed less crack paths with increasing CRw content over 50 phr. Further increase in CRw content obviously enhanced the thermal stability of the blends, with elevated decomposition temperatures in TGA results.
机译:如今,回收橡胶废料并寻找有效的方法来扩展其用途是主要的挑战之一。减少橡胶浪费的潜在方法是将其与原始橡胶混合,也许具有协同优势。在这项研究中,氯丁橡胶废料(CRw)被用作与天然橡胶(NR),环氧化水平为50mol%的环氧化天然橡胶(ENR50)和丁苯橡胶(SBR)的二元共混物的共混组分。研究了混合比[95 / 5、85 / 15、75 / 25、65 / 35和50/50(phr / phr)]对性能的影响。结果表明,由于不饱和含量和固化不相容性的差异,CRw延长了焦烧和固化时间。在所有情况下,最大扭矩(M-H),最小扭矩(M-L)和扭矩差(M-H-M-L)随共混物中CRw含量的增加而增加。由于CRw具有交联前体,因此交联密度也随CRw含量的增加而增加。通过观察到的抗溶胀性,交联密度和动态机械性能的组合,可以清楚地证实这一点。扫描电镜显微照片显示,共混物中低CRw含量时,表面和撕裂区域大多很粗糙。随着CRw含量增加超过50 phr,共混物还显示出更少的裂纹路径。 CRw含量的进一步增加明显提高了共混物的热稳定性,同时提高了TGA的分解温度。

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