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作 者:高原 王子硕 朱大志 王兆波[1] GAO Yuan;WANG Zi-shuo;ZHU Da-zhi;WANG Zhao-bo(College of Materials Science and Engineering,Qingdao University of Science and Technology,Qingdao 266042,China)
机构地区:[1]青岛科技大学材料科学与工程学院,山东青岛266042
出 处:《合成橡胶工业》2023年第2期109-113,共5页China Synthetic Rubber Industry
基 金:山东省自然科学基金资助项目(ZR 2021 ME 028)。
摘 要:采用氯化亚铜(CuCl)、乙酸铜(C4H6CuO_(4))、硫酸铜(CuSO_(4))和氯化铜(CuCl_(2))对丁腈橡胶(NBR)进行配位交联制得硫化胶,考察了不同铜盐对硫化胶的硫化特性、力学性能、交联密度及压缩模式下Mullins效应的影响。结果表明,通过配位反应在NBR中形成了以铜盐为交联点的三维网络结构。相比于CuCl/NBR、C4H6CuO_(4)/NBR、CuSO_(4)/NBR而言,CuCl_(2)/NBR硫化胶的交联密度最大。在单轴循环压缩过程中,不同铜离子配位交联NBR硫化胶均产生了明显的Mullins效应,且Mullins效应随硫化胶交联密度的增加而明显减弱。在相同应变下,硫化胶的最大压缩应力随加载-卸载次数的增加而下降,但瞬时残余应变则随应变和加载-卸载次数的增加而增大。Nitrile rubber(NBR)vulcanizates were prepared by coordination crosslinking of cuprous chloride(CuCl),copper acetate(C4H6CuO_(4)),copper sulfate(CuSO_(4)),and copper chloride(CuCl_(2)).The effects of different copper salts on the curing characteristics,mechanical properties,crosslinking density,and Mullins effect under compression mode of the vulcanizate were investigated.The results showed that a three-dimensional network structure with copper salt as the crosslinking point was formed in the coordination reaction of NBR.Compared to CuCl/NBR,C4H6CuO_(4)/NBR,and CuSO_(4)/NBR,CuCl_(2)/NBR vulcanizates had the highest crosslinking density.During the uniaxial cyclic compression,various copper ion coordination cross-linked NBR vulcanizates caused significant Mullins effects,and the Mullins effect significantly weakened with the increasing crosslinking density of the vulcanizate.At the same strain,the maximum compressive stress of the vulcanizate decreased with the increasing number of loadings and unloads,but the instantaneous residual strain increased with the increasing strain and number of loadings and unloads.
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