个人介绍
机械振动理论 Mechanical Vibration Theory

主讲教师:张丽

教师团队:共4

  • 张丽 Li ZHANG
  • 何欢 Huan HE
  • 王怀磊 Huailei WANG
  • 陈提
学校: 南京航空航天大学
开课院系: 航空宇航学院
专业大类: 力学
课程英文名称: Mechanical vibration theory
课程编号: 7D013009L
学分: 3
课时: 48
课程介绍 Course Description
Mechanical Vibration Theory serves as an introduction to the subject of vibration engineering at the graduate level. It may draw the attention of students whose research topics involve vibration engeering problems. The prerequisite knowledge of this course includes statics, dynamics, strength of materials, differentials, matrix theory and Laplace transform. The goal of this course is to develop students' abilities to apply knowledge of mathematics, science, and engineering and to identify, formulate, and solve engineering problems.
This course is organized into 6 chapters and consists of the following topics:
 Ch0 Introduction
 Ch1 Vibrations of Single DoF Systems
 Ch2 Vibrations of Multiple DoF Systems
 Ch3 Vibrations of Continuous Systems
 Ch4 Random Vibration
 Ch5 Nonlinear Vibration
教师团队 Instructors team

张丽 Li ZHANG

职称:副教授

单位:南京航空航天大学

部门:航空学院

何欢 Huan HE

职称:教授

单位:南京航空航天大学

部门:航空学院

王怀磊 Huailei WANG

职称:副教授

单位:航空学院

部门:南京航空航天大学

陈提

职称:教授

单位:南京航空航天大学

部门:航空学院

课程大纲 Course Syllabus


教材及参考资料 Textbook & References

Text book

Chen Qian-“Mechanical Vibration Theory with Applications”, NUAA lecture notes,2006

References

W. T. Thomson-“Theory of Vibration with Applications”, London,1993

S. S. Rao-“Mechanical Vibration”, Addison-Wesley Publishing Company, 2011

胡海岩-机械振动基础,北京航天航空大学出版社

胡海岩-应用非线性动力学,航空工业出版社



评分政策 Grading Policy

The grading for this course was broken down as follows:

ACTIVITIESPERCENTAGES
Homework & Class Attendence20%
Project10%
Final exam70%



课程目标 Course Objectives

The course objectives are to develop the following abilities:

  • Ability to apply knowledge of mathematics, science, and engineering:

        The subject of vibration applies knowledge of mathematics (differential equations, matrix algebra, vector methods, and complex numbers) and science (statics and dynamics) to solve engineering vibration problems.

  • Ability to identify, formulate, and solve engineering problems:

         Illustrative examples, problems for practice, and design projects help the student identify various types of practical vibration problems and develop mathematical models, analyze, solve to find the response, and interpret the results.


前修课程 Prerequisites

The prerequisite knowledge of this course includes statics, dynamics, strength of materials, differentials, matrix theory and Laplace transform

课程评价

教学资源
课程章节 | 文件类型   | 修改时间 | 大小 | 备注
1.1 Introduction
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2021-06-02 339.60MB
 
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1.2 Fundamentals of Vibration
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2021-06-02 3.21MB
 
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2.1 Free Vibrations of Undamped Systems
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2021-06-02 70.72MB
 
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2.2 Free Vibrations with Damping
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2.3 Harmonically Excited Vibration
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2.4 Vibration under General Forcing
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2021-06-02 90.94MB
 
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2021-06-02 1.86MB
 
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3.1 Equation of Motion for Multi DoF Systems
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2020-05-29 199.40MB
 
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2020-05-29 74.66MB
 
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3.2 Free vibrations of Undamped MDoF Systems
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2020-05-29 48.61MB
 
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2020-05-29 75.34MB
 
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2020-05-29 50.26MB
 
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2020-05-29 975.11KB
 
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3.3 Forced vibrations of Undamped MDoF system
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2020-05-29 78.78MB
 
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2020-05-29 836.21KB
 
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3.4 Forced vibrations of Proportional Damped Systems
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2020-05-29 61.19MB
 
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2020-05-29 128.60MB
 
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2020-05-29 1.19MB
 
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3.5 Determination of Natural Frequencies
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2020-05-29 48.25MB
 
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2020-05-29 257.35KB
 
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3.6 Homework explanation
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2020-05-29 325.24MB
4.1 Transverse Vibration of a String or Cable
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2020-05-29 103.11MB
 
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2020-05-29 848.85KB
 
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4.2 Longitudinal Vibration of a Bar or Rod
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2020-06-01 118.18MB
 
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2020-06-01 22.42MB
 
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2020-06-01 625.91KB
 
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4.3 Lateral Vibration of Beams
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2020-06-01 146.02MB
 
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2020-06-01 1.00MB
 
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4.4 Special Vibration problems of Beams
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2020-06-03 100.38MB
 
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2020-06-03 922.58KB
 
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4.5 Determination of Natural Frequencies
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2020-06-09 180.67MB
 
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2020-06-09 106.16MB
 
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2020-06-09 765.32KB
 
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5.1 Random Process
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2020-07-01 1.79MB
 
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2020-07-01 197.61MB
 
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2020-07-01 595.16KB
 
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2020-07-01 --
5.2 Power Spectrum of Vibration Signals
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2020-07-02 208.35MB
 
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2020-07-02 326.22KB
 
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5.3 Response due to Random Excitation
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2020-05-21 360.82KB
 
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6.1 Introduction and Basic Concepts
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2020-06-10 98.15MB
 
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2020-06-10 257.96KB
 
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6.2 Qualitative Analysis of Nonlinear Autonomous Systems
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2020-06-24 209.72MB
 
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2020-06-24 58.39MB
 
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6.3 Analytical Analysis of Nonlinear Autonomous Systems
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2020-06-17 132.31MB
 
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2020-06-17 62.53MB
 
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6.4 Forced Vibration of Nonlinear Nonautonomous Systems
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2020-06-22 116.36MB
 
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2020-06-22 96.07MB
 
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2020-06-22 229.79KB
 
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6.5 Nonlinear Phenomena
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2020-06-24 251.75MB
 
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2020-06-24 238.85KB
 
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7.1 Project
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2020-07-06 9.73KB
 
视频
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2020-07-06 120.47MB
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