文章摘要
混炼工艺对丁腈橡胶性能的影响
Effect of Mixing Process on Properties of NBR
投稿时间:2019-12-24  修订日期:2019-12-26
DOI:10.12136/j.issn.1000-890X.2020.07.0534
中文关键词: 丁腈橡胶  低温混炼  工艺参数  填充因数  混炼能耗  加工性能  物理性能
英文关键词: NBR  low temperature mixing  process parameter  filling coefficient  mixing energy consumption  processability  physical property
基金项目:
作者单位E-mail
解希铭 中国石化北京化工研究院燕山分院/橡塑新型材料合成国家工程研究中心 xiexm.bjhy@sinopec.com 
郑方远* 中国石化北京化工研究院燕山分院/橡塑新型材料合成国家工程研究中心 zhengfy.bjhy@sinopec.com 
摘要点击次数: 1078
全文下载次数: 273
中文摘要:
      研究混炼工艺对丁腈橡胶性能的影响。结果表明:降低混炼初始温度,混炼能耗增大,混炼胶加工安全性提高;增大填充因数,混炼温度升高,混炼胶加工安全性降低,但生产单位质量混炼胶的能耗减小;缩短混炼时间,混炼胶门尼粘度显著增大,门尼松弛时间延长,填料分散性变差,混炼胶焦烧时间缩短,加工性能差;当填充因数为0. 7时,填料分散均匀,混炼效果较好,混炼胶门尼粘度较小;低温混炼工艺有利于提高硫化胶拉断伸长率,混炼工艺对硫化胶硬度、拉伸强度、回弹值和压缩永久变形影响不明显。
英文摘要:
      The effect of mixing process on the properties of acrylonitrile-butadiene rubber(NBR) was studied. The results showed that,if the initial mixing temperature was lowered,the mixing energy consumption increased,and the processing safety of mixing compound was improved. With the increase of the filling coefficient,the mixing temperature increased,the processing safety of mixing compound was reduced,but the energy consumption for producing unit mass mixing compound decreased. If the mixing time was shortened,the Mooney viscosity of mixing compound increased significantly,the Mooney relaxation time was prolonged,dispersion of the filler was poor,the scorch time of mixing compound was shortened,and the processing performance was poor. When the filling coefficient was 0. 7,the fillers were evenly dispersed,the mixing effect was better,and the mixing compound had a lower Mooney viscosity. Low temperature mixing process had the benefit for increase of the elongation at break of vulcanizates,and the mixing process had no obvious influence on the hardness,tensile strength,resilience and compression set of vulcanizates.
Author NameAffiliationE-mail
XIE Ximing Yanshan Branch of Beijing Research Institute of Chemical IndustrySINOPEC/National Engineer Research Center for Synthesis of Novel Rubber and Plastic Materials xiexm.bjhy@sinopec.com 
ZHENG Fangyuan Yanshan Branch of Beijing Research Institute of Chemical IndustrySINOPEC/National Engineer Research Center for Synthesis of Novel Rubber and Plastic Materials zhengfy.bjhy@sinopec.com 
查看全文   查看/发表评论  下载PDF阅读器
关闭