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Design of steering system through optimization of TCD and steering effort

机译:通过TCD和转向努力优化转向系统的设计

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Lower turning circle diameter (TCD) is the mail requirement for all army vehicles, specifically for off-road hilly terrain. And steering effort is comparative to civilian vehicles required for army vehicles. Steering system is one of the key control and ride-handling parameter of vehicles. To meet these requirements, proper design of steering linkage and proper selection of wheel turning angles are crucial. Design of Steering linkage for a monologue V-hull and a Chassis base vehicle is quite different. In this work author has designed the steering system for Casper (Mine protected vehicle) within a stretched timeline and with lots of constraints related to design and processes. This work was done through optimization of TCD and Steering efforts and afterward evaluated the design through performance and other required testing by measuring TCD, Angles (LH and RH side) and Steering effort. Also, torture track testing was done to ensure effects of articulation on vehicle mainly the behavior of steering linkage. The objective of this work is to prove that a good design of steering system is possible with optimization of its performance parameters even in huge constraints.
机译:下车圈直径(TCD)是所有军用车辆的邮件要求,专门用于越野丘陵地形。和转向努力对军用车辆所需的平民车辆进行比较。转向系统是车辆的关键控制和乘坐参数之一。为满足这些要求,适当设计转向连杆和正确选择的车轮转角是至关重要的。独白V-HULL和底盘基础车辆的转向连杆设计得很大。在这项工作中,作者设计了在拉伸时间表内的Casper(矿山受保护的车辆)的转向系统,并且有许多与设计和过程相关的约束。这项工作是通过优化TCD和转向努力来完成的,然后通过测量TCD,角度(LH和RH侧)和转向努力来通过性能和其他所需的测试进行评估设计。此外,完成了酷刑轨道测试,以确保铰接对车辆的影响主要是转向连锁的行为。这项工作的目的是证明,即使在巨大的限制中,也可以通过优化其性能参数来实现良好的转向系统。

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