机械工程

液力变矩器动态循环流量的传递函数表征法

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  • 1. 同济大学 机械与能源工程学院,上海 201804; 2. 山推工程机械股份有限公司,山东 济宁 272073
李文嘉(1989-),男,博士生,主要从事液力变矩器定制化设计理论研究和工程机械整机数字化匹配研究.

收稿日期: 2015-11-20

  修回日期: 2016-03-23

  网络出版日期: 2016-06-05

基金资助

国家重大科技成果转化资助项目(财建[2012]258 号);福建省产业支撑重大项目(201311019)

Transfer Function Representation of Dynamic Circulating Flow Rate of Torque Converter

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  • 1.School of Mechanical Engineering,Tongji University,201804,Shanghai,China; 2.Shantui Construction Machinery Co.,Ltd.,Jining 272073,Shandong,China
李文嘉(1989-),男,博士生,主要从事液力变矩器定制化设计理论研究和工程机械整机数字化匹配研究.

Received date: 2015-11-20

  Revised date: 2016-03-23

  Online published: 2016-06-05

Supported by

Supported by the National Major Scientific and Technological Achievements Transformation Project([2012]258) and the Industry Support Major Item of Fujian Province(201311019)

摘要

为快速求解液力变矩器循环流量的动态响应,提出液力变矩器动态循环流量的传递函数表征法. 该方法基于一元束流理论的推导,以确定结构形态的液力变矩器为对象,将动态循环流量视为以静态循环流量为输入的一阶线性系统的响应,通过液力变矩器常用工况范围内的简单工况 CFD(计算流体动力学)静态、动态仿真数据,构建动态循环流量系统的传递函数. 仿真结果表明:此方法对液力变矩器常用工况范围内的动态循环流量的预测拟合优度达到 0. 987,对输入、输出轴动态扭矩的预测拟合优度达到 0. 95;相对于 CFD 仿真,此方法在小幅牺牲计算精度的同时大幅提升了计算速度,是一种快速求解液力变矩器动态响应的有效方法.

本文引用格式

李文嘉 王安麟 孟庆华 李晓田 韩继斌 . 液力变矩器动态循环流量的传递函数表征法[J]. 华南理工大学学报(自然科学版), 2016 , 44(7) : 22 -28 . DOI: 10.3969/j.issn.1000-565X.2016.07.004

Abstract

In order to rapidly solve the dynamic response of circulating flow rate of torque converter,a transfer functions representation method for dynamic circulating flow rate is proposed.In this method,through the derivation on the basis of one-dimension flow theory,a torque converter with certain structure is selected as the research ob- ject,and dynamic circulating flow rate is regarded as a first-order linear system's response with the input of static circulating flow rate.Then,the transfer function of dynamic circulating flow system is constructed according to the static and dynamic CFD (Computational Fluid Dynamics) simulation data under simple working conditions in torque converter's common working range.Simulated results show that the proposed method helps achieve a fit goodness of 0.987 for dynamic circulating flow rate prediction in common working range,and a fit goodness of 0.95 for input and output shafts' dynamic torque prediction; and that,in comparison with CFD simulation,the proposed method greatly increases the calculation speed only with a slight decrease in calculation accuracy,so that it is effec- tive in rapidly solving the dynamic response of torque converter.
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