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Motion Simulation and Mechanism Design with SOLIDWORKS Motion 2020 [Mīkstie vāki]

(SDC Publications, USA)
  • Formāts: Paperback / softback, 222 pages, height x width: 246x174 mm, weight: 522 g
  • Izdošanas datums: 31-Jul-2020
  • Izdevniecība: SDC Publications
  • ISBN-10: 1630573264
  • ISBN-13: 9781630573263
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  • Mīkstie vāki
  • Cena: 63,82 €
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  • Formāts: Paperback / softback, 222 pages, height x width: 246x174 mm, weight: 522 g
  • Izdošanas datums: 31-Jul-2020
  • Izdevniecība: SDC Publications
  • ISBN-10: 1630573264
  • ISBN-13: 9781630573263
Citas grāmatas par šo tēmu:
Preface i
About the Author iii
About the Cover Page iv
Table of Contents
v
Lesson 1 Introduction to SOLIDWORKS Motion
1.1 Overview of the Lesson
1(1)
1.2 What is SOLID WORKS Motion!
1(2)
1.3 Mechanism Design and Motion Analysis
3(2)
1.4 SOLID WORKS Motion Capabilities
5(11)
1.5 Open Lesson 1 Model
16(1)
1.6 Motion Examples
17
Lesson 2 Animations and Basic Motion--A Single Piston Engine Example
2.1 Overview of the Lesson
1(1)
2.2 The Single Piston Engine Example
1(1)
2.3 Using SOLID WORKS Motion
2(6)
Exercises
8
Lesson 3 A Ball Throwing Example
3.1 Overview of the Lesson
1(1)
3.2 The Ball Throwing Example
1(2)
3.3 Using SOLIDWORKS Motion
3(7)
3.4 Result Verifications
10(2)
Exercises
12
Lesson 4 A Simple Pendulum
4.1 Overview of the Lesson
1(1)
4.2 The Simple Pendulum Example
1(1)
4.3 Using SOLID WORKS Motion
2(3)
4.4 Result Verifications
5(4)
Exercises
9
Lesson 5 Friction of a Sliding Object
5.1 Overview of the Lesson
1(1)
5.2 The Sliding Object
1(2)
5.3 Using SOLIDWORKS Motion: Contact Friction
3(8)
5.4 Result Verifications
11(1)
5.5 Using SOLIDWORKS Motion: Joint Friction
12(7)
Exercises
19
Lesson 6 A Spring-Mass System
6.1 Overview of the Lesson
1(1)
6.2 The Spring-Mass System
1(1)
6.3 Using SOLID WORKS Motion
2(6)
6.4 Result Verifications
8(5)
Exercises
13
Lesson 7 A Slider-Crank Mechanism
7.1 Overview of the Lesson
1(1)
7.2 The Slider-Crank Example
1(3)
7.3 Using SOLIDWORKS Motion
4(8)
7.4 Result Verifications
12(4)
Exercises
16
Lesson 8 A Slider-Crank Mechanism--Event-Based Dynamic Simulation
8.1 Overview of the Lesson
1(1)
8.2 The Event-Based Motion Analysis
1(1)
8.3 The Slider-Crank Example
2(2)
8.4 Using SOLIDWORKS Motion
4(8)
Exercises
12
Lesson 9 A Rail Carriage Example
9.1 Overview of the Lesson
1(1)
9.2 The Rail Carriage Example
2(2)
9.3 Using SOLIDWORKS Motion
4(6)
Exercises
10
Lesson 10 A Compound Spur Gear Train
10.1 Overview of the Lesson
1(1)
10.2 The Spur Gear Train Example
1(4)
10.3 Using SOLIDWORKS Motion
5(4)
Exercises
9
Lesson 11 Planetary Gear Train Systems
11.1 Overview of the Lesson
1(1)
11.2 The Planetary Gear Train Examples
2(7)
11.3 Using SOLIDWORKS Motion: Single Planetary Gear Train
9(4)
11.4 Using SOLIDWORKS Motion: Multi-Planetary Gear Train
13(3)
Exercises
16
Lesson 12 Cam and Follower
12.1 Overview of the Lesson
1(1)
12.2 The Cam and Follower Example
1(4)
12.3 Using SOLID WORKS Motion
5(5)
Exercises
10
Lesson 13 Simulation of Recreational Waterslide
13.1 Overview of the Lesson
1(1)
13.2 The Analytical Calculation Method
1(3)
13.3 The Waterslide Example
4(2)
13.4 Experimental Validation
6(2)
13.5 The Motion Study Model
8(3)
13.6 Using SOLIDWORKS Motion
11
Lesson 14 Kinematic Analysis of a Racecar Suspension
14.1 Overview of the Lesson
1(1)
14.2 The Quarter Suspension
2(13)
14.3 Using SOLIDWORKS Motion
15
Appendix A Defining Joints 1(1)
Appendix B The Unit System 1(1)
Appendix C Importing Creo Parts and Assemblies 1