文章摘要
天然橡胶/杜仲胶并用胶的交联密度与结晶度的关系及其对性能的影响
Relationship between Crosslinking Density and Crystallinity of NR/EUG Blend and Their Effects on Properties
投稿时间:2021-10-06  修订日期:2021-10-06
DOI:10.12136/j.issn.1000-890X.2023.03.0163
中文关键词: 天然橡胶  杜仲胶  硫黄  交联密度  结晶度  耐磨性能  耐屈挠性能  动态力学性能
英文关键词: NR  EUG  sulfur  crosslinking density  crystallinity  wear resistance  flexural resistance  dynamic mechanical property
基金项目:国家自然科学基金资助项目(52073178);中国科学院战略性先导科技专项(A类)子课题(XDC06010206);辽宁省重点研发计划项目
作者单位E-mail
徐志宇 沈阳化工大学材料科学与工程学院 xuzhiyu1996@163.com 
康海澜 1.沈阳化工大学 材料科学与工程学院2.沈阳化工大学 辽宁省橡胶弹性体重点实验室  
李东翰 1.沈阳化工大学 材料科学与工程学院2.沈阳化工大学 辽宁省橡胶弹性体重点实验室  
李政瀛 沈阳化工大学材料科学与工程学院  
方庆红* 1.沈阳化工大学 材料科学与工程学院2.沈阳化工大学 辽宁省橡胶弹性体重点实验室 fqh80@126.com 
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中文摘要:
      通过调整硫黄用量,研究天然橡胶(NR)/杜仲胶(EUG)并用胶的交联密度与结晶度的关系及其对并用胶性能的影响。结果表明:NR/EUG并用胶的交联密度与结晶度呈负相关;随着硫黄用量的增大,NR/EUG并用胶的交联密度增大,t10略有缩短,t90变化不大,硬度、耐屈挠性能和抗湿滑性能先提高后降低,滚动阻力和生热下降,储能模量波动减小;当硫黄用量为2~2.5份时,NR/EUG并用胶的交联密度和结晶度较大,物理性能、耐磨性能和抗湿滑性能较好。
英文摘要:
      The relationship between the crosslinking density and crystallinity of natural rubber(NR)/ eucommia ulmoides rubber(EUG) blend and their influence on the properties of the blend were studied by adjusting the sulfur dosage. The results showed that the crosslinking density of NR/EUG blend was negatively correlated with the crystallinity. With the increase of sulfur dosage,the crosslinking density of NR/EUG blend was increased,thet10 was slightly shortened,the t90 changed little,the hardness,flexural resistance and wet skid resistance increased at first and then decreased,the rolling resistance and heat buildup decreased,and the fluctuation of the storage modulus decreased. When the sulfur dosage was 2~2. 5 phr, the crosslinking density and crystallinity of NR/EUG blend were larger,and the physical properties,wear resistance and wet skid resistance were better.
Author NameAffiliationE-mail
XU Zhiyu Shenyang University of Chemical Technology xuzhiyu1996@163.com 
KANG Hailan Shenyang University of Chemical Technology  
LI Donghan Shenyang University of Chemical Technology  
LI Zhengying Shenyang University of Chemical Technology  
FANG Qinghong Shenyang University of Chemical Technology fqh80@126.com 
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