吉林大学机械学院本科毕业设计外文翻译格式.doc





《吉林大学机械学院本科毕业设计外文翻译格式.doc》由会员分享,可在线阅读,更多相关《吉林大学机械学院本科毕业设计外文翻译格式.doc(28页珍藏版)》请在淘文阁 - 分享文档赚钱的网站上搜索。
1、2022年-2023年建筑工程管理行业文档 齐鲁斌创作本科生毕业设计(论文)翻译资料中文题目: 配合新一代液力变矩器的柴油动力线的一些特性 英文题目:some properties of a diesel driveline with hydrodynamic torque converters of thelastest generation学生姓名: 学 号: 班 级: 专 业:机械工程及自动化指导教师: Some properties of a diesel drive line with hydrodynamic torque converters of the latest gene
2、rationAbstractDynamic properties of a drive line with a controlled Diesel engine, hydrodynamic transmission mechanism, additional gearing and a loading-working machine producing common monoharmonic loading are investigated. Solution of the dynamic problem is based on phenomenological experimental da
3、ta: driving torque-speed characteristic in the part of the prime mover and so-called external static characteristic in the hydrotransmission part. The non-linear task is solved by a modified harmonic balance method that was described in preceding publications by the author. Keywords: Machine drive l
4、ine; Controlled Diesel drive; Hydrodynamic torque converter; Working machine; Periodic loading; Stationary dynamic state Nomenclature and abbreviationsa, b - -Coulomb and viscous non-dimensional friction losses Ai, Bi - -coefficients in mathematical expression of torque-speed characteristic i, im -k
5、inematic transmission, supplementary gearing transmission ratio I, Iz -mean reduced moment of inertia in driving and loading part k, kK -tangent slopes of (i) and K(i) curves respectively K -moment transmission M -Diesel-engine moment MD(,z) -controlled torque-speed driving characteristic MDmax(), M
6、Dmin() -torque-speed characteristic for maximal and minimal fuel supply M1, (), M2, () -pump loading moment and turbine driving moment MT1, MT2 -friction loss moment in driving and loading part Mz, Mza -mean value and amplitude of loading moment -hydrodynamic converter characteristic radius t -time
7、T, TD-Watt regulator and Diesel-engine time constant u, z -gas lever and regulator displacement w -common dynamic variable -regulator structural parameter -regulator damping ratio -coefficient of rotation moment -loading angular velocity , -index denoting mean value and periodical component -hydraul
8、ic medium density -rotation angle 1, (), 2 -pump and turbine angular velocity DM -Diesel-engineG, GD -additional and Watt-regulator gearing HdPT -hydrodynamic power transmission IJ -InjectorLM -loading mechanism (working machine) P, R, T-pump, reactor, turbineArticle OutlineNomenclature 1. Introduct
9、ion 2. Mathematical model of the system 3. Stationary dynamic solution at monoharmonic loading4. Results evaluation and concluding remarks 1. IntroductionDynamic properties of a drive line (actuating unit) consisting of a controlled Diesel engine (DM), hydrodynamic power transmission system (HdPT),
10、additional gearing (G) and a loading mechanism (LM) or working machine are investigated. The working machine loads the prime mover and the transmissions with a prescribed moment. A simple idealised schematic layout of the complete system is given in Fig. 1. The considered Diesel engine is a standard
11、 production: ZETOR 8002.1 controlled by a mechanical (Watts) or electronic regulator RD governing fuel injector IJ. In the place of the hydrodynamic power transmission there are gradually applied hydrodynamic torque converters of the latest generation that have been projected and tested in WUSAM (Re
12、search and Projecting Institute of Machines and Mechanisms), j.s.c. Zvolen, Slovakia. These converters represent a three component assembly composed of a rotational pump (P), turbine (T) and a reactor (R) that may revolve in one direction as a free wheel. Advantage of these converters is the fact th
13、at their external dimensions and the dimensions of their individual components are identical and they may be mutually changed and arbitrarily combined in order to reach demanded properties. They differ only by internal configuration and blade geometry. According to 1 up to now more than 70 various t
14、ypes have been experimentally tested and from them the ones have been chosen that optimally fulfilled required properties. The mechanical system under consideration represents a sophisticated energy transfer chain from a sourceprime mover to working mechanism. Because every real drive is of finite p
15、ower, any periodic loading always evokes vibrations of all the dynamic variables even though we suppose all the connecting shafts and gearings rigid and backlash free. The influence of dynamic loading on the prime mover may be just controlled by a suitable choice of the torque converter. Fig. 1.Sche
16、matic layout of the Diesel drive line.In the paper influence of constant and periodic loading on time course of all the dynamic variables of the system (and particularly on the variables of the prime mover) is investigated at application of some selected types of hydrodynamic torque converters of th
17、e latest generation. For fulfilling this task it is necessary to create a suitable mathematical model of the whole combined system and then find its stationary solution corresponding to a required loading. 2. Mathematical model of the systemAt the beginning it is necessary to emphasize that mathemat
18、ical modelling of the drive line in question is based, in our approach, on knowledge of the published phenomenological data: stationary torque-speed characteristic of the prime mover and so-called external static characteristic of the applied hydrodynamic torque converter. It is a much simpler proce
19、ss than modelling based on thermodynamic equations of burning fuel mixture in the Diesel engine and on hydrodynamic equations of real streaming working medium in very complicated cavities of the torque converter. The characteristics are usually given by manufacturer of the individual system componen
20、ts. This is different and simpler approach to solution of the problem than one may find e.g. at Ishihara 2, Hrovat and Tobler 3, Kesy and Kesy 4, Laptev 5 and some others. The derived dimensional and non-dimensional mathematical models of the mechanical system are introduced in 6. The non-dimensiona
21、l, reduced, so-called single-shaft model (in the driving and loading part), was derived in the form of combined system of the following differential and algebraic equations:(1)(2)(3)(4)M2=KM1,(5)=(i),(6)K=K(i),(7)(8)(9)where the meaning of the individual symbols is explained in nomenclature. In the
22、non-dimensional model all the dynamic variables and parameters are expressed by means of properly chosen relative standard quantities so that the model of the system might be the most simple. Transformation of the original equations system to the non-dimensional form Figs. (1), (2), (3), (4), (5), (
23、6), (7), (8) and (9) is described in detail in 6. As for this cited paper, it is necessary to say that the relative standard value of loading angular frequency has been settled according to the relation , where in denominator is relative standard value of time. For this value, the time constant of t
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 吉林大学 机械学院 本科毕业 设计 外文 翻译 格式

限制150内