Method for checking secondary spring acting load of end contact type double-strengthened less-leaf primary/secondary springs
A reinforced, contact-type technology, applied in calculations, special data processing applications, instruments, etc., can solve complex deformation calculations, cannot meet the design requirements of the main and secondary springs with small variable cross-sections, and cannot meet the end-contact double-reinforced type Requirements for checking and calculating the active load of auxiliary springs of primary and auxiliary springs with small pieces of variable cross-section, etc.
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Embodiment 1
[0028] Embodiment one: the sheet number N=2 of a certain end and root double-reinforced few sheet variable-section main spring, wherein, the half length L=575mm of each sheet main spring, width b=60mm, modulus of elasticity E=200GPa, The thickness h of the straight section at the root 2 =11.43mm, half of the installation distance l 3 =55mm, the length of oblique line at the root Δl 2 =30mm, the length of oblique line at the end Δl 1 =30mm; the distance l from the root of the oblique line section at the root to the end point of the main spring 2 =L-l 3 =520mm, the distance l from the root of the parabola segment to the end point of the main spring 2p =L-l 3 -Δl 2 =490mm; root thickness h of parabola segment 2p =10.28mm, the thickness ratio of the oblique section at the root γ=h 2p / h 2 =0.90; end thickness h of the parabolic segment of the first main spring 11p =5.65mm, the thickness ratio β of the parabolic segment of the first main spring 1 =h 11p / h 2p =0.55; Th...
Embodiment 2
[0047] Embodiment two: the sheet number N=2 of double-reinforced type few sheet variable-section main springs of certain end and root, wherein, the half length L=600mm of each sheet main spring, width b=60mm, modulus of elasticity E=200GPa, The thickness h of the straight section at the root 2 =14.79mm, half of the installation distance l 3 =60mm, the length Δl of the oblique section at the root 2 = 30mm, length Δl of oblique section at the end 1 =30mm, the distance l from the root of the oblique line section at the root to the end point of the main spring 2 =L-l 3 =540mm, the distance from the root of the parabola segment to the end point of the main spring l 2p =L-l 3 -Δl 2 =510mm; root thickness h of parabola segment 2p =13.31mm, the thickness ratio of the oblique section at the root γ=0.90, and the end thickness h of the parabolic section of the first main spring 11p =7.32mm, the thickness ratio β of the parabolic segment of the first main spring 1 =h 11p / h 2p ...
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