汽车工程
杠杆
自动变速器
机制(生物学)
计算机科学
电子差速器
传动系
汽车工业
差速器(机械装置)
工程类
控制工程
扭矩
方向盘
机械工程
离合器
哲学
物理
认识论
热力学
航空航天工程
作者
Amit Suhane,R.S. Rana,Rajesh Purohit
标识
DOI:10.1016/j.matpr.2017.11.664
摘要
Four wheel drives possess an added advantage of maneuvering the driven vehicle at ease in adverse situations like slippery road, terrain, off road conditions. In present scenario of automobile transmission systems, automatic and manual changing of two wheel drive (2WD) to four wheel drive (4WD) is used. In manual operation the driver changes the lever as 2WD-4WD or as low-high gearing and the automated operation is executed by the sensors sensing the road conditions. Extensive researches on automobiles have shown that transmission and drive losses accounts for the significant proportions. Manufacturers are constantly developing methods and techniques to improve handling and performance of modern four wheel drives. The present research work evaluates the importance of torsion differential amongst the available compatible differentials in drive shifts owing to its dominant characteristics like it being a self-locked type, purely mechanical, requiring lesser maintenance, ‘no time delay’ before coming into action etc. But switching or changing from manual to automatic mode; the drive mechanism becomes complicated and costly due to large components. Therefore, need of hour is to select that drive and mechanism which suits the requirements and corresponding applications at reduced costs and components. This research signifies better prospects in terms of automatic switching of drive, reduced driver fatigue, enhanced battery life, reduced accidents etc. which is always appreciable.
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