The design method of the wall thickness of the inner circular sleeve of the rubber bushing of the inner offset cab stabilizer bar
A rubber bushing and stabilizer bar technology, applied in calculation, instrumentation, electrical digital data processing, etc., can solve problems such as failure to give analytical design methods, inability to realize analytical design, complex analysis and calculation, etc.
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Embodiment 1
[0063] Embodiment 1: The structure of a certain inner offset cab stabilizer bar system is symmetrical, such as figure 2 As shown, it includes: swing arm 1, suspension rubber bushing 2, torsion rubber bushing 3, torsion tube 4; wherein, the torsion tube 4 is not coaxial with the torsion rubber bushing 3, and the internal offset T of the torsion tube 4 =30mm; the distance L between the left and right swing arms 1 c =1550mm, that is, the suspension distance of the stabilizer bar; the distance between the suspension rubber bushing 2 and the torsion rubber bushing 3, that is, the length of the swing arm l 1 =380mm; distance Δl from the suspension position C of the swing arm to the outermost end A 1 =47.5mm; the length L of the twisted tube 4 w =1500mm, inner diameter d=35mm, outer diameter D=50mm, elastic modulus E=200GPa, Poisson’s ratio μ=0.3; the structure and material properties of the left and right four rubber bushes are exactly the same, as image 3 As shown, it includes...
Embodiment 2
[0111] Embodiment 2: The structural form of a certain internally biased cab stabilizer bar system is the same as that of Embodiment 1, such as figure 2 As shown, where the torsion tube 4 is not coaxial with the torsion rubber bushing 3, the internal offset of the torsion tube 4 is T=30mm; the distance L between the left and right swing arms 1 c =1400mm, that is, the suspension distance of the stabilizer bar; the distance between the suspension rubber bush 2 and the torsion rubber bush 3, that is, the length of the swing arm l 1 =350mm; distance Δl from the suspension position C of the swing arm to the outermost end A 1 =52.5mm; the length L of the torsion tube 4 w =1000mm, inner diameter d=42mm, outer diameter D=50mm, modulus of elasticity E=200GPa, Poisson’s ratio μ=0.3; the structures of the left and right four rubber bushes are exactly the same, as image 3 Shown; Among them, the inner circle diameter d of the inner circle sleeve 5 x =35mm, the wall thickness δ is the p...
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