Rack-driven power steering apparatus
View Patent ↗A rack-driven power steering apparatus mitigates frictional force and noise produced due to iron powder generated by continuous frictions while balls are circulating in inner peripheral screw grooves and outer peripheral screw groove defined by a rack bar and a ball nut. The rack-driven power steering apparatus collects iron powder scattered between the rack bar and the ball nut in one place so that the iron powder can be easily removed. Therefore, the rack-driven power steering apparatus protects components, increases durability, and improves maintenance efficiency.
1. A rack-driven power steering apparatus comprising:
a rack bar having an outer peripheral screw groove spirally formed on an outer peripheral surface thereof;
a ball nut having an inner peripheral screw groove corresponding to the outer peripheral screw groove on an inner peripheral surface thereof and having a ball circulation passage axially extending between the inner peripheral surface and an outer peripheral surface thereof; and
a plurality of balls inserted into the outer peripheral screw groove and the inner peripheral screw groove to slide the rack bar while rolling,
wherein at least one magnetic ball having a magnetic force is disposed between the balls.
2. The rack-driven power steering apparatus of claim 1 , wherein a diameter of the magnetic ball is smaller than a diameter of the other balls.
3. The rack-driven power steering apparatus of claim 2 , wherein a plurality of recesses recessed concavely is formed on an outer peripheral surface of the magnetic ball.
4. The rack-driven power steering apparatus of claim 2 , wherein the magnetic ball has a resilient portion formed of a resilient material on an outer peripheral surface thereof.
5. The rack-driven power steering apparatus of claim 4 , wherein a plurality of radially formed holes are provided in the resilient portion.
6. The rack-driven power steering apparatus of claim 2 , wherein one of the plurality of balls directly adjacent to the magnetic ball is formed of a resilient material.
7. The rack-driven power steering apparatus of claim 1 , wherein a mounting groove to which a magnet is mounted is formed at one side of the outer peripheral surface of the ball nut, and a communication hole communicated with the ball circulation passage is formed on a bottom surface of the mounting groove.
8. The rack-driven power steering apparatus of claim 7 , wherein a mounting groove to which the magnet is mounted is formed at an opposite side of an outer peripheral surface of the ball nut, and a communication hole communicated with the inner peripheral screw groove is formed on a bottom surface of the mounting groove.
9. The rack-driven power steering apparatus of claim 8 , wherein a magnetic force of the magnet is stronger than a magnetic force of the magnetic ball.
10. The rack-driven power steering apparatus of claim 1 , wherein a mounting groove to which a magnet is mounted is formed at one side of the outer peripheral surface of the ball nut and a communication hole communicated with the inner peripheral screw groove is formed on a bottom surface of the mounting groove.