3) Consider a car, which can be modelled as a rigid bar with its centre of mass C.G. not coinciding with its geometric centre (m= 1000kg, ₁ = 1m; /2 = 1.5m), and supported by two springs, k=k=20kN/m, as shown in Figure Q3 (a) Describe the system in term of degree of freedoms (b) Draw the free body diagram for the system to derive the equations of the vibration motion (c) Determine the mass matrix and stiffness matrix of the system.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter6: Stresses In Beams (advanced Topics)
Section: Chapter Questions
Problem 6.4.3P: Solve the preceding problem for the following data: b = 6 in., b = 10 in, L = 110 ft, tan a = 1/3,...
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3) Consider a car, which can be modelled as a rigid bar with its centre of mass C.G. not
coinciding with its geometric centre (m= 1000kg, 1 = 1m; /2 = 1.5m), and supported by
two springs, kr = kr = 20kN/m, as shown in Figure Q3
(a) Describe the system in term of degree of freedoms
(b) Draw the free body diagram for the system to derive the equations of the vibration
motion
(c) Determine the mass matrix and stiffness matrix of the system.
(d) Determine the nature frequencies of the system
System
respon
Bounce
C.G.
Pitch
Figure Q3
Transcribed Image Text:3) Consider a car, which can be modelled as a rigid bar with its centre of mass C.G. not coinciding with its geometric centre (m= 1000kg, 1 = 1m; /2 = 1.5m), and supported by two springs, kr = kr = 20kN/m, as shown in Figure Q3 (a) Describe the system in term of degree of freedoms (b) Draw the free body diagram for the system to derive the equations of the vibration motion (c) Determine the mass matrix and stiffness matrix of the system. (d) Determine the nature frequencies of the system System respon Bounce C.G. Pitch Figure Q3
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