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Optimizing the Design of Brake Disc Using Multi-criteria Decision-making Method AHP-TOPSIS for All-terrain Vehicle

机译:使用多标准决策方法优化制动盘设计AHP-TOPSIS适用于全地形车辆

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The need of transportation vehicle has become dominant in the recent few years. The braking system in the vehicle is concerned with the safety of the people travelling in it. Thus, to make a robust design of the brake disc serves as prime importance in the vehicle. Braking system consists of various components like brake disc, clutch sleeve, brake callipers etc out of which the study is focused on the design and selection of brake disc. There are numerous input parameters like material, loading condition, design models of brake disc are studied each at three levels. The experimental design was made by using the Taguchi's L9 orthogonal array to find the best optimum level of the process parameters so that they are least affected by noise factors for obtaining a robust design of parameters. Further, the analysis of variance was carried out to check the significance of the model. AHP and TOPSIS method are used to find the best combination of input parameters.
机译:近几年来,运输工具的需求已在占主导地位。车辆中的制动系统涉及人们在其中行驶的安全性。因此,为了使制动盘的稳健设计用作车辆的主要重要性。制动系统由制动盘,离合器套管,制动卷尺等各种部件组成,其中研究专注于制动盘的设计和选择。有许多输入参数,如材料,装载条件,制动盘的设计型号,每个三级都研究。通过使用Taguchi的L9正交阵列进行实验设计,以找到过程参数的最佳最佳水平,使得它们最不受噪声因子的影响,用于获得参数的稳健设计。此外,对方差分析进行了检查,以检查模型的重要性。 AHP和TOPSIS方法用于找到输入参数的最佳组合。

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