Yonas Mitiku, Defaru Thomas, Fasica Mersha, Firew Hailu, Elias Semeredin
{"title":"Design and manufacturing of mechanical steering system for parallel parking, zero turning radius, minimum turning radius with traditional turning","authors":"Yonas Mitiku, Defaru Thomas, Fasica Mersha, Firew Hailu, Elias Semeredin","doi":"10.4314/star.v5i1.14","DOIUrl":null,"url":null,"abstract":"Many existing cities in the world were not built according to population of cars. Therefore drivers find it difficult to park their car on crowded streets and to turn in small spaces. However it is possible to design cars to suit traffic conditions of the cities. Two wheel steering system has a drawback of demanding wide area because of comparatively larger turning radius. Currently most cars are using traditional steering system, but this system is difficult comparing to parallel parking method. Zero turning radius helps the vehicle rotating about an axis passing through the centre of gravity of vehicle rather than describing a circular path as in conventional turning. The aim of this research is to develop a combined mechanism of parallel parking, zero turn radius, minimum turning and traditional turning for automobiles. All the parts of the steering system are designed so as to meet all the configuration of steering system and to be well-matched to the power train, suspension system and body of the car. The steering system is designed for the car which is designed and manufactured at Bahir Dar Institute of Technology, Bahir Dar University which has the overall dimension of 1200 X 1450mm. After manufacturing of the parts, it had been assembled and ready for testing. The testing results showed that zero turning radius will reduce the turning radius up to 70% and parallel parking also make our life easy and reduce time consumption during parking and to pullout car from traffic jam. Minimum radius turn configuration will reduce the turning radius of vehicle about 36% compare to traditional steering mechanism. Keywords : Steering System Traditional Turning Minimum Turning Radius Zero Turning Radius Parallel Parking","PeriodicalId":196424,"journal":{"name":"Science, Technology and Arts Research Journal","volume":"222 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-04-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Science, Technology and Arts Research Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4314/star.v5i1.14","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Many existing cities in the world were not built according to population of cars. Therefore drivers find it difficult to park their car on crowded streets and to turn in small spaces. However it is possible to design cars to suit traffic conditions of the cities. Two wheel steering system has a drawback of demanding wide area because of comparatively larger turning radius. Currently most cars are using traditional steering system, but this system is difficult comparing to parallel parking method. Zero turning radius helps the vehicle rotating about an axis passing through the centre of gravity of vehicle rather than describing a circular path as in conventional turning. The aim of this research is to develop a combined mechanism of parallel parking, zero turn radius, minimum turning and traditional turning for automobiles. All the parts of the steering system are designed so as to meet all the configuration of steering system and to be well-matched to the power train, suspension system and body of the car. The steering system is designed for the car which is designed and manufactured at Bahir Dar Institute of Technology, Bahir Dar University which has the overall dimension of 1200 X 1450mm. After manufacturing of the parts, it had been assembled and ready for testing. The testing results showed that zero turning radius will reduce the turning radius up to 70% and parallel parking also make our life easy and reduce time consumption during parking and to pullout car from traffic jam. Minimum radius turn configuration will reduce the turning radius of vehicle about 36% compare to traditional steering mechanism. Keywords : Steering System Traditional Turning Minimum Turning Radius Zero Turning Radius Parallel Parking
世界上许多现存的城市都不是根据汽车的数量来建造的。因此,司机很难在拥挤的街道上停车,也很难在狭小的空间里转弯。然而,设计适合城市交通状况的汽车是可能的。两轮转向系统由于转弯半径较大,因而具有面积要求大的缺点。目前大多数汽车使用的是传统的转向系统,但这种系统与平行泊车方式相比存在一定的困难。零转弯半径有助于车辆绕着穿过车辆重心的轴旋转,而不是像传统的转弯那样描述一个圆形路径。本研究的目的是开发一种汽车平行停车、零转弯半径、最小转弯和传统转弯的组合机构。转向系统各部件的设计应满足转向系统的各种配置,并与汽车的动力总成、悬架系统和车身相匹配。转向系统是为Bahir Dar大学Bahir Dar理工学院设计和制造的汽车而设计的,其整体尺寸为1200 X 1450mm。零件制造完成后,它已经组装好并准备进行测试。试验结果表明,零转弯半径可使车辆的转弯半径减少70%,平行泊车也使我们的生活更加方便,减少了停车和从拥堵中抽出车辆的时间。与传统转向机构相比,最小转弯半径配置可使车辆的转弯半径减小约36%。关键词:转向系统传统转向最小转弯半径零转弯半径平行泊车