Hyperboloid spiral groove bearing
A spiral groove and hyperboloid technology, applied in the field of spiral groove bearings, can solve the problems of poor heat dissipation, slow bearing surface convection, low bearing capacity, etc., and achieve the effect of improving bearing capacity, improving working life and increasing contact surface area.
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Embodiment 1
[0018] like figure 1 As shown, the hyperboloid helical groove bearing of this embodiment includes a bearing main shaft I2 , an upper bearing seat 1 and a lower bearing seat 3 . The outer surfaces of the bearing main shaft I2, the upper bearing seat 1 and the lower bearing seat 3 are designed as a rotating single-leaf hyperboloid, and a spiral groove is opened on the rotating single-leaf hyperboloid. The cross-sectional shape of the spiral groove is rectangular, the number of spiral grooves is 7, and the helix angle of the spiral groove is 8°.
[0019] Compared with the conventional tapered spiral groove bearing, the present invention can not only bear radial load but also bear axial load at both ends, which improves the bearing capacity of the bearing. In addition, the invention also increases the contact surface area of the main shaft of the bearing, improves the stability and heat dissipation of the bearing, reduces the requirement for the use of lubricants, and increases...
Embodiment 2
[0021] like figure 2 As shown, the hyperboloid helical groove bearing of this embodiment includes a bearing main shaft II 4 , an upper bearing seat 1 and a lower bearing seat 3 . The outer surface of the bearing main shaft II4, the upper bearing seat 1 and the lower bearing seat 3 is designed as a rotating single-leaf hyperboloid, and a spiral groove is opened on the rotating single-leaf hyperboloid. The cross-sectional shape of the spiral groove is triangular, the number of spiral grooves is 7, and the helix angle of the spiral groove is 8°.
[0022] Compared with the conventional tapered spiral groove bearing, the present invention can not only bear radial load but also bear axial load at both ends, which improves the bearing capacity of the bearing. In addition, the invention also increases the contact surface area of the main shaft of the bearing, improves the stability and heat dissipation of the bearing, reduces the requirement for the use of lubricants, and increase...
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