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Development and characterization of stainless steel fiber-based copper-free brake liner formulation: A positive solution for steel fiber replacement

机译:不锈钢纤维基磁性制动衬垫制剂的开发与鉴定:钢纤维更换阳性溶液

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This study deals with the development of drum brake liner for a multi-utility vehicle possessing a hydraulic brake system by varying 7 weight % of steel fiber and stainless steel fiber each, in friction composite formulations. The developed friction composites were tested for physical, chemical, corrosion, mechanical, thermal properties, and tribological characteristics, under near-actual conditions using an inertia dynamometer as per industrial standards. Finite element analysis software (ANSYS) analysis was performed to show the thermal stress distribution of the developed friction composites at the maximum temperature rise due to heat generated during brake stops, and an extensive evaluation method was used to rank the composites. The study concludes that the brake factor of the stainless steel fiber-based friction composite produces stable performance in all conditions with a lower liner temperature rise of 340 °C and lower thermal stress at 4.255294 MPa. However, the steel fiber-based composites produced high performance at the beginning but deteriorated after a certain period due to higher levels of corrosion and a high temperature rise of 361 °C resulting in a negative fade (?0.84%) and more thermal stress (5.619102 MPa). The primary plateau, secondary plateau, back transfer of drum wear debris, and the distribution of constituents on the worn surface of the developed composites in a resin matrix were identified and studied using a scanning electron microscope (SEM) equipped with energy-dispersive spectroscopy.
机译:该研究涉及通过改变7重量%的钢纤维和不锈钢纤维,在摩擦复合制剂中改变液压制动系统的多用途车辆的滚筒制动衬垫的发展。根据工业标准使用惯性测功机的近乎实际情况下,测试发达的摩擦复合材料的物理,化学,腐蚀,机械,热性能和摩擦学特性。进行有限元分析软件(ANSYS)分析以显示由于制动器停止期间的热量产生的最大温度上升的发达摩擦复合材料的热应力分布,并且使用了广泛的评估方法对复合材料进行排序。该研究的结论是,不锈钢纤维基摩擦复合材料的制动因子在所有条件下产生稳定的性能,衬里温度升高为340℃,较低的热应力下4.255294MPa。然而,基于钢纤维的复合材料在开始时产生高性能,但由于腐蚀水平较高的一段时间后,361°C的高温升高导致负淡化(α0.84%)和更多的热应力( 5.619102 MPA)。初级平台,二次平台,鼓磨损碎片的后转移,以及在树脂基质中磨损表面的磨损表面上的成分分布,并使用配备有能量分散光谱的扫描电子显微镜(SEM)研究。

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