首页> 外文期刊>Rubber Chemistry and Technology >EFFECT OF FILLERS ON WET SKID RESISTANCE OF TIRES. PART II: EXPERIMENTAL OBSERVATIONS ON EFFECT OF FILLER-ELASTOMER INTERACTIONS ON WATER LUBRICATION
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EFFECT OF FILLERS ON WET SKID RESISTANCE OF TIRES. PART II: EXPERIMENTAL OBSERVATIONS ON EFFECT OF FILLER-ELASTOMER INTERACTIONS ON WATER LUBRICATION

机译:填料对轮胎湿滑阻力的影响。第二部分:填料-弹性体相互作用对水​​润滑影响的实验观察

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摘要

It was demonstrated previously that on the worn surface of vulcanizates during wet skid tests, carbon black is covered by rubber whereas silica particles are at least partly exposed. In this report, the experimental results of the effects of carbon black and silica on wet skid resistance measured by various test methods and under different conditions are explained based on the "Three Zone Concept" of the contact area of tread compounds with the track surface during sliding or rolling. The three zones are water film squeezing, transition and traction zones. In the first two zones, where hydrodynamic and micro-elastohydrodynamic lubrication mechanisms are dominant, silica is beneficial for wet friction. In the traction zone, where firiction is governed by boundary lubrication, carbon black is prefer-red. Under test conditions where the water squeezing and transition zones are more developed, such as at high speed, lower temperature, smoother track surface, lower load. higher slip angle, and ABS brake, the silica shows better performance, but otherwise where the traction zone is larger, carbon black gives higher wet skid resistance. Accordingly, a new carbon-silica dual phase filler CSDPF 4210 that is characterized by high surface coverage with silica has been developed. With this material, the wet skid resistance of a passenger tire on a car with ABS at high speed and smooth road surface is significantly improved.
机译:先前已证明,在湿滑试验期间硫化橡胶的磨损表面上,炭黑被橡胶覆盖,而二氧化硅颗粒至少部分暴露。在本报告中,根据“胎面胶与路面之间的接触面积的“三区概念”,解释了炭黑和二氧化硅对各种测试方法和在不同条件下测得的耐湿滑性的实验结果。滑动或滚动。这三个区域是水膜挤压区,过渡区和牵引区。在前两个区域,其中流体动力和微弹性流体动力润滑机制占主导地位,二氧化硅对湿摩擦有利。在牵引力受边界润滑控制的牵引区,炭黑是首选红色。在水挤压和过渡区域更加发达的测试条件下,例如在高速,低温,履带表面更平滑,负荷更低的情况下。较高的滑移角和ABS制动时,二氧化硅显示出更好的性能,但在牵引区较大的情况下,炭黑则具有较高的抗湿滑性。因此,已经开发了特征在于二氧化硅的高表面覆盖率的新型碳-二氧化硅双相填料CSDPF 4210。使用这种材料,可以显着提高带有ABS的汽车在高速和光滑路面上的乘用轮胎的抗湿滑性。

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