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Development of Ecofriendly Automobile BrakePad Using Different Grade Sizes of Palm KernelShell Powder

机译:使用不同等级棕榈仁壳粉的环保型汽车刹车片的开发

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Serious health repercussions/risks such as asbestosis and mesothelioma have engendered automakers to earnestly consider the use of non-asbestos organic (NAO) brake pads in contemporary manufacturing. On this account, sustainable agro waste with higher heating value compared to other lignocellulosic biomass is considered as a better alternative to asbestos. As a result, palm kernel shell (PKS) is chosen and employed as a friction lining material for the designed NAO-based brake pad. The friction material was based on a simple formulation with five ingredients; PKS as base material while phenolic resin, steel slag, iron waste and carbon black were other additives. Mixtures of these constituents were obtained at varying compositions by using PKS of grade sizes 100 μm, 200 μm and 350 μm respectively. A mild steel mould shaped like that of a Pathfinder Jeep’s brake pad was fabricated for compacting the formed composite. The produced samples were subjected to tests such as hardness, compressive strength, wear, flame resistance, porosity, density and water absorption tests. The results affirm that grain size has substantial effects on compressive strength, hardness, porosity, ash content and wear rate of the brake pad. 100 μm grain sizes of PKS produced the optimum brake pad. Thus, the results show that PKS can be efficiently used for asbestos replacement in brake pad production.
机译:石棉沉着症和间皮瘤等严重的健康影响/风险促使汽车制造商认真考虑在当代制造业中使用非石棉有机(NAO)刹车片。因此,与其他木质纤维素生物质相比具有更高热值的可持续农业废物被认为是石棉的更好替代品。因此,选择了棕榈仁壳(PKS)并将其用作设计的基于NAO的制动衬块的摩擦衬片材料。摩擦材料基于具有五种成分的简单配方。 PKS为基础材料,而酚醛树脂,钢渣,铁废料和炭黑为其他添加剂。通过分别使用100μm,200μm和350μm等级尺寸的PKS在不同的组成下获得这些成分的混合物。制造了形状类似于Pathfinder Jeep刹车片的低碳钢模具,以压实形成的复合材料。对所生产的样品进行诸如硬度,抗压强度,磨损,阻燃性,孔隙率,密度和吸水率测试的测试。结果证实,晶粒尺寸对制动衬片的抗压强度,硬度,孔隙率,灰分含量和磨损率具有实质性影响。 100μm粒径的PKS产生了最佳的制动衬块。因此,结果表明,PKS可以有效地用于刹车片生产中的石棉替代。

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