A vibration isolation support consists of a rod A of radius R₁ and a tube B of inner radius R₂ bonded to an 80-mm-long hollow rubber cylinder with a modulus of rigidity G=10.93 MPa. Determine the required value of the ratio R2/R₁ if a force P = 13 kN is to cause a 2-mm deformation of rod A. B R₁ 100 80 mm The required value of the ratio R2/R₁ is 1.422
A vibration isolation support consists of a rod A of radius R₁ and a tube B of inner radius R₂ bonded to an 80-mm-long hollow rubber cylinder with a modulus of rigidity G=10.93 MPa. Determine the required value of the ratio R2/R₁ if a force P = 13 kN is to cause a 2-mm deformation of rod A. B R₁ 100 80 mm The required value of the ratio R2/R₁ is 1.422
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A vibration isolation support consists of a rod A of radius R₁ and a tube B of inner radius R₂ bonded to an 80-mm-long hollow rubber
cylinder with a modulus of rigidity G = 10.93 MPa. Determine the required value of the ratio R2/R1 if a force P = 13 kN is to cause a
2-mm deformation of rod A.
B
R₁
R₂
..
80 mm
The required value of the ratio R2/R₁ is 1.422
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