Study on Mutual Work of a Diesel Engine with a Hydro-Mechanical Transmission

C. Pântece, Marin Nicolau, G. Dorobantu, L. Cucu, I. Copae, Asirom Insurance
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引用次数: 0

Abstract

Digital Object Identifier 10.32754/JMT.2018.2.10 57 Abstract—The purpose of this paper is to present some aspects of hydro-mechanical transmissions and their link with combustion engine. In order to establish the static characteristics of torque converter, there are used graphical representations of turbine torque, impeller torque, efficiency and transfer ratio. Static characteristics of hydro-mechanical transmissions are presented using torque and power charts measured at secondary gear axle and also using energy efficiency and rate of power turned into-heat charts. Using external characteristic values of engine torque and engine power charts, there are presented static characteristics resulted from the correlation of combustion engine and hydromechanical transmission. Static characteristics obtained by mathematical expressions are used to study vehicle dynamics within this paper. Therefore, using Matlab and Simulink, general dynamics performances of a system are established. Other purpose of this paper is to establish specific performances of the diesel combustion engine functioning along with a hydro-mechanical transmission, such as maximum speed and maximum slope on different types of frequently used roads.
柴油机与液压机械传动的相互工作研究
摘要:本文的目的是介绍液压机械传动的一些方面及其与内燃机的联系。为了建立液力变矩器的静态特性,采用了涡轮转矩、叶轮转矩、效率和传动比的图形表示。利用在第二齿轮轴上测量的扭矩和功率图以及能量效率和功率转换成热量图来描述液压机械传动的静态特性。利用发动机扭矩的外部特征值和发动机功率图,给出了内燃机与液压机械传动相关的静态特性。本文利用数学表达式得到的静态特性来研究车辆动力学。因此,利用Matlab和Simulink建立了系统的一般动力学性能。本文的另一个目的是建立柴油内燃机与液压机械传动一起工作的具体性能,例如在不同类型的常用道路上的最大速度和最大坡度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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