REINFORCEMENT EFFECT OF IN SITU DEVELOPED ITACONIC ACID BASED METAL SALT NANO-CRYSTALS IN ACRYLONITRILE-BUTADIENE COPOLYMER

被引:2
作者
Basu, Debdipta [1 ]
Kapgate, Bharat [1 ]
Bansod, Naresh [2 ,3 ]
Rajkumar, Kasilingam [1 ]
Sahoo, Suchismita [1 ]
Das, Chayan [2 ]
机构
[1] Indian Rubber Manufacturers Res Assoc, Thane W 400604, Maharashtra, India
[2] Visvesvaraya Natl Inst Technol, Dept Chem, Nagpur 440010, Maharashtra, India
[3] Mahatma Gandhi Art Sci & Late NP Commerce Coll, Dept Chem, Armori 441208, Maharashtra, India
来源
RUBBER CHEMISTRY AND TECHNOLOGY | 2021年 / 94卷 / 03期
关键词
CARBOXYLATED NITRILE RUBBER; PEROXIDE CROSS-LINKING; MAGNESIUM METHACRYLATE; PERFORMANCE; ELASTOMERS; NANOPARTICLES; MORPHOLOGY; FILLER; SILICA; XNBR;
D O I
10.5254/rct.21.79908
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Itaconic acid has been employed as a special facilitator to construct divalent metal ion based ionic crosslinking framework in the acrylonitrile butadiene rubber matrix. Readily accessible double bonds in itaconic acid could directly react with the elastomer to form effective covalent bonds. On the other hand, presence of easily dissociable protons in itaconic acid enables them to form ionic bonds that leads to an increase in crosslinking density of the vulcanizates. The synergistic effect of covalent crosslinking induced by peroxide and ionic crosslinking induced by metal carboxylate could effectively enhance the overall mechanical and dynamic mechanical properties of the rubber composites. In this study, three metal oxides, that is, zinc oxide, magnesium oxide, and calcium oxide, have been selected for this purpose. Tensile strength of nitrile rubber composites depends on the strength of ionic crosslinks, which in turn is influenced by the size of the alkaline earth metals, such as Mg, Ca, etc., and stoichiometric quantity of itaconic acid, which is at par in the formulation of this study. The novelty of this study is that the introduction of a dicarboxylic acid in combination with metal oxides enhances the crosslink density and tensile strength of nitrile rubber composites which could result from the metal organic framework.
引用
收藏
页码:462 / 475
页数:14
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