文章摘要
耐高温氢化丁腈橡胶/甲基丙烯酸锌改性氢化丁腈橡胶并用胶的性能研究
Study on Properties of High-Temperature Resistant HNBR/ZDMA-HNBR Blends
投稿时间:2024-05-08  修订日期:2024-05-08
DOI:10.12136/j.issn.1000-890X.2026.05.0344
中文关键词: 氢化丁腈橡胶  甲基丙烯酸锌  离子交联网络  高温力学性能  耐油性能
英文关键词: hydrogenated nitrile butadiene rubber  zinc dimethacrylate  ionic crosslinking network  high-temperature mechanical properties  oil resistance
基金项目:国家自然科学基金资助项目(22278162)
作者单位E-mail
李雪松 华南理工大学 材料科学与工程学院 msxsli@mail.scut.edu.cn 
李红强 华南理工大学 材料科学与工程学院  
赖学军 华南理工大学 材料科学与工程学院  
刘运春 华南理工大学 材料科学与工程学院  
方跃胜 华南理工大学 材料科学与工程学院  
曾幸荣* 华南理工大学 材料科学与工程学院 psxrzeng@scut.edu.cn 
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中文摘要:
      采用氢化丁腈橡胶(HNBR)和甲基丙烯酸锌(ZDMA)改性HNBR(ZDMA-HNBR)制备HNBR/ZDMA-HNBR并用胶,采用平衡溶胀法和扫描电子显微镜表征HNBR/ZDMA-HNBR并用胶的交联网络结构和形态结构,研究ZDMA-HNBR用量对HNBR/ZDMA-HNBR并用胶的硫化特性、力学性能及耐油性能的影响。结果表明:与HNBR胶料相比,HNBR/ZDMA-HNBR并用胶形成了更多离子交联网络,总交联密度增大;ZDMA-HNBR能均匀地分散在HNBR中,有效提高HNBR/ZDMA-HNBR并用胶的高温(130 ℃)力学性能和耐油性能;当ZDMA-HNBR用量为30份时,HNBR/ZDMA-HNBR并用胶的高温拉伸强度达到14.1 MPa,比HNBR胶料提高42.4%,在IRM 903油中浸泡(23 ℃×168 h)后并用胶的高温拉伸强度仍可达到13.0 MPa,比HNBR胶料提高49.4%。
英文摘要:
      Hydrogenated nitrile rubber(HNBR)and zinc dimethacrylate modified HNBR(ZDMA-HNBR) were used to prepare HNBR/ZDMA-HNBR blends.The crosslinking network structures and morphological structures of HNBR/ZDMA-HNBR blends were characterized using the equilibrium swelling method and scanning electron microscopy,and effects of ZDMA-HNBR amount on the vulcanization characteristics,mechanical properties and oil resistance of HNBR/ZDMA-HNBR blends were studied.The results showed that,compared with HNBR compound,HNBR/ZDMA-HNBR blend formed more ionic crosslinking networks,and increased total crosslinking density.ZDMA-HNBR was uniformly dispersed in HNBR,and effectively improved the high-temperature(130 ℃) mechanical properties and oil resistance of the blend.When ZDMA-HNBR amount was 30 phr,the high-temperature tensile strength of HNBR/ZDMA-HNBR blend reached 14.1 MPa,which was 42.4% higher than that of HNBR compound. After immersion in IRM 903 oil(23 ℃×168 h),the high-temperature tensile strength of HNBR/ZDMA-HNBR blend still reached 13.0 MPa,which was 49.4% higher than that of HNBR compound.
Author NameAffiliationE-mail
LI Xuesong  msxsli@mail.scut.edu.cn 
LI Hongqiang   
LAI Xuejun   
LIU Yunchun   
FANG Yuesheng   
ZENG Xingrong  psxrzeng@scut.edu.cn 
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