Contact Load Matching Design Method for Non-equal Deviation Frequency Gradual Stiffness Leaf Springs with Two-stage Secondary Springs
A design method and auxiliary spring technology, applied in design optimization/simulation, calculation, instrument, etc., can solve problems such as the inability to meet the higher requirements of suspension springs, and achieve the effect of speeding up product development, improving level, and improving design requirements
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[0033] Embodiment: The width b of a certain two-stage auxiliary spring type non-equal bias frequency type gradient stiffness leaf spring is 63mm, half of the clamping distance L of the saddle bolt 0 =50mm, elastic modulus E=200GPa, rated load P N =7227N, allowable stress [σ] = 430MPa. The number of main reeds n=3 pieces, the thickness h of each main spring 1 =h 2 =h 3 =8mm, half of the active length is L 1T =525mm,L 2T =450mm, L 3T =350mm; half of the clamping length of each main spring is L 1 =L 1T -L 0 / 2=500mm, L 2 =L 2T -L 0 / 2=425mm, L 3 =L 3T -L 0 / 2=325mm. The number of sheets of the first secondary spring m 1 = 1 piece, thickness h A11 =13mm, half of the active length is L A11T =250mm, half of the clamping length is L A11 =L A11T -L 0 / 2=225mm. The number of pieces of secondary secondary spring m 2 = 1, thickness h A21 =13mm, half of the active length is L A21T =150mm, half of the clamping length is L A12 =L A21T -L 0 / 2=125mm. According to...
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