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The Effect of Vibration and Vehicle Body Movement of Car Suspension Systems Due to Different Damper Characteristics in Cornering Tests

机译:车辆悬架系统振动和车身运动的影响由于转弯试验中不同的阻尼特性

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摘要

This paper investigates the effect of vibration and vehicle body movements acting on the vehicle's wheel due to the different damping characteristics of suspension systems. Three different damping characteristics damper named Absorber A, Absorber B and Absorber C was installed on the suspension system of the Proton Persona which was used as a test car. This test car was equipped with accelerometers and wire potentiometer sensor on the front and rear suspensions, gyroscopic, Global Positioning System (GPS) and connect with DEWEsoft software as a data acquisition. To study the effect of three different damper characteristics on suspension system, the ride comfort analysis and car body movement analysis were used to analyze the result during experimental testing. There were 3 maneuver testing experiment were performed including steadystate cornering, single-lane change and slalom testing experiment. Based on the results, comparison between the suspension damper characteristics due to the driving maneuvers and car movement were made and their performance also were ranked. Absorber A was the hardest damper as compared to Absorber C and Absorber B according to the damping constant value. The result showed that the best performance for car movement made by Absorber A then followed by Absorber C and Absorber B, while the best performance for ride comfort analysis was made by Absorber B followed by Absorber C and A.
机译:本文通过悬架系统的不同阻尼特性研究了振动和车身运动作用在车辆车轮上的​​效果。使用作为试验车的质子人物的悬浮系统上安装了三种不同的阻尼特性阻尼器,吸收剂B和吸收器C.该测试汽车配备了前后悬架,陀螺仪,全球定位系统(GPS)的加速度计和线电位计传感器,并与Dewesoft软件连接为数据采集。为研究三种不同阻尼器特性对悬架系统的影响,使用乘坐舒适性分析和车身运动分析来分析实验测试期间的结果。进行了3种机动测试实验,包括稳定的转弯,单车道变化和臂力测试实验。基于结果,制造了由于驾驶机动和汽车运动引起的悬架阻尼特性之间的比较,并且它们的性能也排名。与阻尼恒定值相比,吸收器A是最难的阻尼器,与吸收性C和吸收器B相比。结果表明,吸收器A制造的汽车运动的最佳性能随后是吸收器C和吸收器B,而吸收器B随后是吸收剂C和A的乘坐舒适性分析的最佳性能。

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