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Contribution of Lining Additives to the Performance Requirement of Friction Brakes

机译:衬里添加剂对摩擦制动器性能要求的贡献

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Ever since the introduction of friction brakes in vehicles, brake system designers have been striving to improve braking performance. To meet this growing demand for better brakes, lining manufacturers have evaluated numerous additives in their material formulations. These additives provide several different technical properties, the foremost being safety-related features such as frictional stability and resistance to fading. In more recent years, brake noise has become important with the elimination of asbestos fibers in linings, and there is now also a need for a higher frictional coefficient to offset increases in overall vehicle weight. Prolonging the service life of brake components, reducing pad wear, and minimizing rotor wear caused by DTV (Differential Thickness Variation) are other issues that face lining manufacturers. To address all these technical requirements, brake material formulations have become so considerably more complex that increased usage of additives is required. Common additives used in earlier brake lining formulations were metal powders and metal sulfides. Later it was found that synergistic mixtures of various solids actually improved the tribological properties of lining materials over those using a single solid additive. More recently, considerable work has been done in improving the frictional requirements of some additives by changing their surface properties. As a result, current frictional composites use a complex (and usually proprietary) package of additives to meet the needs of modern friction brakes. A discussion of various additives and their contribution to the development and performance of friction brake materials are presented in this paper.
机译:自从在车辆中引入摩擦制动以来,制动系统设计师一直在努力提高制动性能。为了满足这种不断增长的对更好的制动器的需求,衬里制造商在其材料配方中评估了许多添加剂。这些添加剂提供了几种不同的技术性质,最重要的是安全相关的特征,例如摩擦稳定性和抗衰落的抵抗力。更近年来,制动噪声随着在衬里中的消除石棉纤维而变得重要,并且现在还需要更高的摩擦系数来偏移的整体车辆重量增加。延长制动部件的使用寿命,减少垫磨损,最小化由DTV(差分厚度变化)引起的转子磨损是面对衬里制造商的其他问题。为了解决所有这些技术要求,制动材料配方已经变得如此复杂,即需要增加添加剂的使用量。早期制动衬衬配方中使用的常见添加剂是金属粉末和金属硫化物。稍后发现各种固体的协同混合物实际上改善了使用单一固体添加剂的衬里材料的摩擦学特性。最近,通过改变其表面特性来提高一些添加剂的摩擦要求,已经进行了相当大的作品。结果,目前的摩擦复合材料使用复合物(通常是专有的)添加剂,以满足现代摩擦制动器的需求。本文介绍了对各种添加剂的讨论及其对摩擦制动材料的开发和性能的贡献。

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