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Development in Air Permeability of Natural Rubber Tire Tube Compound by Adding Variable Dosage of Nanoclay

机译:通过添加纳米粘土可变剂量的天然橡胶轮胎管化合物的透气性发展

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Any material consisting of two or more components with different properties and distinct boundaries between their components can be referred to as a composite material. There are two groups of composites the first group comprises composites that are known as "filled materials", the main feature of these materials is the existence of some basic or matrix material whose properties are improved by filling it with some particles and second group composites involves so called "reinforced materials". The basic components of these materials are long and thin fibres possessing high strength and stiffness. Filler (particulate or thin fibers) is a solid material capable of changing the physical and chemical properties of materials by surface interaction or its lack thereof and by its own physical characteristics. High stiffness means thatmaterial exhibits low deformation under loading. Stiffness is an important property but it should be necessarily high. Ability of structure to have controlled deformation can be also important. Nano engineered polymeric materials are of great interest, rapidly growing new class of materials alternative to conventional filled polymers or polymer blends. Conventional clay plays the role of a loading agent or diluent without property enhancement or reinforcement and hence we have used nanoclay which imparts significant mechanical reinforcement and improved air permeability property for natural rubber based tube compound. Natural rubber/nanoclay along with other additives weremixed in a laboratorymixer for specified time and temperature, by determining rheological and curing properties rubber compounds were molded in to standard dimension sheets using a compression mold and molding machine thereafter specimens were prepared and characterized for hardness, modulus (100%, 200%), tensile strength, tension set, air permeability test and surface morphology.
机译:任何由两个或更多个具有不同性质和它们组分之间的不同边界组成的任何材料,都可以称为复合材料。第一组包含两组复合材料,包括称为“填充材料”的复合材料,这些材料的主要特征是存在一些基本或基质材料,其通过用一些颗粒填充它和第二组复合材料而改善其性质。所谓的“加强材料”。这些材料的基本组分是具有高强度和刚度的长而薄的纤维。填料(颗粒状或薄纤维)是能够通过表面相互作用或其缺乏改变材料的物理和化学性质的固体材料,并且通过其自身的物理特性。高刚度意味着在载荷下表现出低变形。僵硬是一个重要的财产,但它应该很高。结构有控制变形的结构也可能是重要的。纳米工程聚合物材料具有很大的兴趣,迅速生长新的材料类别替代常规填充聚合物或聚合物共混物。常规粘土在没有性质增强或增强的情况下起负载剂或稀释剂的作用,因此我们使用过的纳米粘土,其赋予天然橡胶基管化合物的显着机械增强和改善的透气性。天然橡胶/纳米粘土以及其他添加剂在实验室混合器中均为特定的时间和温度,通过将流变源固化性能使用压缩模具和成型机来确定流变学和固化性能,然后制备标本,并表征硬度,模量(100%,200%),拉伸强度,张力集,透气性试验和表面形态。

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