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一种耐高温型高温硫化硅橡胶及其制备方法

2021-07-15 来源:六九路网
l318 橡胶工业 2018年第65卷 [36】Lanotte L,Ausanio G,Iannotti V,et a1.Influence of Particle Pre— orientation on Elastomagnetic Effect in a Composite Material of Elastomers[J].European Journal of Mechanics,2003,22(4):497— 507. Ellipsoidal Ni Microparticles in a Silicone Matrix[J].Applied PhysicsA.2003,77【7):953—958. [47]Bustamante R.Mathematical Modelling of Boundary Conditions for Magneto-sensitive Elastomers:Variational Formulations[J].Journal ofEngineeringMathematics.2009,64(3):285—301. 【37]Lanotte L,Ausanio G,Hison c,et 1.The aPotentiality ofComposite Elastic Magnets as Novel Materials for Sensors and Actuators[J]. Sensors ndActauatorsA:Physical,2003,106(1-3):56—60 [48】Bustamante R,Rajagopal K R.Implicit Constitutive Relations for Nonlinear Magnetoelastic Bodies[J].Mathematical,Physical and Engineering Sciences,2015,417(2175):1364—5021. 【381 Ansanio G,Campana C,Hison C,et a1.Linearity of the Direct Elastomagnetie Effect:Evaluation and Limits[J].Smart Materials nd aStructures,2007,16(3):570—574. [39】Lanotte L,Ausanio G,Hison C,et a1.State of the Art and Development Trends of Novel Nanostructured Elastomagnetic [49]Stepanov G V,Abramchuk S S,Grishin D A,et a1.Effect ofa Homogeneous Magnetic Field on the Viscoelastic Behavior of Magnetic Elstaomers[J].Polmer,2007,y48(2):488—495. [50]Kankanala S V。Triantafyllidis N.On Finitely Strained Composites[J].Journal ofOptoelectronics and Advanced Materials, 2004,6(2):523—532. [40】JonyMR,Carlson JD,MunozB,eta1.AModel oftheBehaviour of Magnetorheologicalmaterials[J].Smart Materials&Structures. 1996,5(5):607—614. 【41】Jolly M R,Carlson J D,Munoz B C,et 1.The Magnetoviascoelastic Response of Elastomer Composites Consisting of Ferrous Particles Magnetorheological Elastomers[J].Journal of the Mechanics and Physics ofSolis,2004,52(12):2869—2908.d 【51】Danas K,Kankanala S V,Triantafyllidis N.Experiments and Modeling of Iron—particlefilled Magnetorheological Elastomers[J]. Journal ofthe Mechanics and Physics of Solis,2012,60(1):120一 dl38. [52]Gibson R F.Principles of Composite Material Mechanics(4ed)[M]. USA:Taylor&Francis Group.2016. Embedded in a Polymer Matirx[J].Journal of Intelligent Material Systems nd aStructures,1996.7(6):613—622. [53]LiWH,ZhouY,TinTFViascoelasticProperties ofMRElastomers under Harmonic Loading[J].Rheologica Acta,2010,49(7):733— 74o. 【42】Varga Z,Filioseip G,Zrinyi M.Magnetic Field Sensitive Functional Elastomers with Tuneable Elasitc Modulus[J].Polmer,2006,47(1):y 227—233. [54】Li W,Zhou Y,Tian T,et a1.Creep and Recovery Behaviors of Magnetorheological Elastomers[J].Frontiers of Mechanical Engineering in China,2010,5(3):341—346. [43】Vogel F,BustaraanteR,Steitmmnn On SomeMixedVariational Principles in Magneto—elstaostatics[J].Imemational Journal ofNon— linear Mechanics,2013,51(2):157—169. [44]Javili A,chatzigeorgi0u G, Steinmann P.Computational [55】Coquelle E,Bossis G.Mullins Effect in Elastomers Filled with Particles Aligned by a Magnetic Field[J].International Journal of Solis dnd aStructures,2006,43(25—26):7659—7672. Homogenization in Magnetomechanics[J].International Journal of Solids and Structures,2013,50(25—26):4197—42t6. [45]Brigadnov I A,Dorfraarm A.Mathematical Modeling of Magneto— sensitive Elastomers[J].International Journal of Solids and Structures,2003,40(18):4659-4674. [46]Dorfmann A,Ogden R W.MagnetoeIastic Modelling of [56】Coquelle E,Bossis G,Szabo D.et a1.Micromechanical Analysis of an Elastomer Filled with Particles Organized in Chain-like Structure[J].Journal ofMaterials Science,2006,41(18):5941— 5953. 收稿日期:2018-06—09 一种耐高温型高温硫化硅橡胶及 其制备方法 中图分类号:TQ333.93 文献标志码:D 剂0.5~20,结构化控制剂3~l5,填料表面 0.1~10, 处理剂1~10,耐热型表面处理剂内脱模助剂0.1~10。该高温硫化硅橡胶适合 模压、挤出、注射等多种制品成型工艺,可成型各 种形状的耐高温工器件;可以通过同步调整配方 和工艺来调整硬度,满足产品在不同环境的使用 由浙江恒业成有机硅有限公司申请的专利 (公开号CN 107141812A,公开日期2017-09— 08)“一种耐高温型高温硫化硅橡胶及其制备 方法”,涉及的高温硫化硅橡胶的配方为:硅橡胶 100,补强填料l0b 100,纳米级耐热填料 1~100,小分子耐热 要求;产品耐高温性能优异,能长时间在高温环 境中保持良好的物理性能,从而保持设备的平稳 运行。 (本刊编辑部赵敏) 1~100,微米级耐热填料

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