文章摘要
配合剂用量对丁基橡胶动态力学性能的影响
Effect of Ingredient Dosages on Dynamic Mechanical Properties of IIR
投稿时间:2021-08-31  修订日期:2021-08-31
DOI:10.12136/j.issn.1000-890X.2022.11.0841
中文关键词: 丁基橡胶  炭黑  环烷油  增粘树脂  动态力学性能
英文关键词: IIR  carbon black  naphthenic oil  tackifying resin  dynamic mechanical property
基金项目:
作者单位E-mail
孙 攀* 中国石油化工股份有限公司 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 sunpan101@126.com 
李 静 中国石油化工股份有限公司 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  
解希铭 中国石油化工股份有限公司 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  
刘 苹 中国石油化工股份有限公司 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  
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中文摘要:
      研究在硫黄硫化体系下炭黑N774、环烷油和增粘树脂用量对丁基橡胶(IIR)胶料动态力学性能的影响。结果表明:随着炭黑N774用量的增大,IIR混炼胶的剪切储能模量(G′)和损耗因子(tanδ)增大,硫化胶的损耗峰值[tanδ最大值(tanδmax)]减小,损耗峰值温度[tanδmax温度(Tp)]向高温方向移动;随着环烷油用量的增大,IIR混炼胶的G减小,tanδ增大,硫化胶的tanδmax增大,Tp向低温方向移动;随着增粘树脂用量的增大,IIR混炼胶的G′减小,tanδ增大,硫化胶的tanδ-温度曲线呈双峰形态,Tp向高温方向移动。
英文摘要:
      The effects of the carbon black N774,naphthenic oil and tackifying resin dosages on the dynamic mechanical properties of butyl rubber (IIR) compound with sulfur curing system were studied. The results showed that with the increase of carbon black N774 dosage,the shear storage modulus(G′ ) and loss factor(tanδ) of the IIR compound increased,the loss peak value(tanδmax) of the vulcanizate decreased,and the temperature of the tanδmaxTp) moved towards the high temperature direction. With the increase of naphthenic oil dosage,the G′ of the IIR compound decreased,theδ increased,the tanδmax of the vulcanizate increased,and the Tp moved towards the low temperature direction. With the increase of tackifying resin dosage,theG′ of the IIR compound decreased,the tanδ increased,the tanδ-temperature curve of the vulcanizate was bimodal,and the Tp moved towards the high temperature direction
Author NameAffiliationE-mail
SUN Pan SINOPEC Beijing Research Institute of Chemical Industry Yanshan Branch,National Engineering Research Center for Synthesis of Novel Rubber and Plastic Materials sunpan101@126.com 
LI Jing SINOPEC Beijing Research Institute of Chemical Industry Yanshan Branch,National Engineering Research Center for Synthesis of Novel Rubber and Plastic Materials  
XIE Ximing SINOPEC Beijing Research Institute of Chemical Industry Yanshan Branch,National Engineering Research Center for Synthesis of Novel Rubber and Plastic Materials  
LIU Ping SINOPEC Beijing Research Institute of Chemical Industry Yanshan Branch,National Engineering Research Center for Synthesis of Novel Rubber and Plastic Materials  
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