BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is an exploded view to show the screw bit positioning device of the present invention;
FIG. 2 is a perspective view to show the screw bit positioning device of the present invention;
FIG. 3 is a cross sectional view to show that the screw bit is to be positioned by the screw bit positioning device of the present invention, and
FIG. 4 is a cross sectional view to show that the screw bit is positioned by the screw bit positioning device of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Referring to FIGS. 1 to 3, the screw bit positioning device of the present invention comprises a tube 10 having a passage 11 defined axially therethrough and a polygonal inner periphery 12 is defined in a first end of the tube 10. The polygonal inner periphery 12 shares a common axis of the axial passage 11 and a screw 70 is engaged with the polygonal inner periphery 12. A first hole 15 and a second hole 16 are respectively defined through a wall of the tube 10. A C-shaped clamp 17 is securely engaged with a first grove 14 defined in an outer periphery of the tube 10 and located between the first and second holes 15, 16. A first bead 18 is movably engaged with the first hole 15 and a second bead 19 is movably engaged with the second hole 16.
A movable member 20 is movably received in the passage 11 and has a magnet 21 received in a first end thereof which faces the first end of the tube 10. A first spring 30 is received in the tube 10 and has a first end contacting a second end of the movable member 20. A second end of the first spring 30 contacts an end of a connection rod 40 inserted into the second end of the tube 10. The connection rod 40 can be connected with a tool which is not shown. The movable member 20 has a second groove 22 defined in an outer periphery thereof. A stop 13 extends inward from an inner periphery of the passage 11 of the tube 10 and has a through hole. The first end of the movable member 20 contacts the stop 13.
A sleeve 50 is movably mounted to the tube 10 and a flange 51 extends from an inner periphery of the sleeve 50 so as to define a first space 53 and a second space 54 between the outer periphery of the tube 10 and the sleeve 50. The first hole 15 communicates with the first space 53 and the second hole 16 communicates with the second space 54. The C-shaped clamp 17 is located in the second space 54 and a second spring 60 is mounted to the tube 109 and biased between the C-shaped clamp 17 and the flange 51. A collar 55 is securely connected to the sleeve 50 and engaged with the second space 54.
When inserting the screw bit 70 into the first end of the tube 10 as shown in FIG. 3, the sleeve 50 is pulled to compress the second spring 60, and the screw bit 70 is magnetically attracted by the magnet 21 in the movable member 20 to be initially positioned. When the sleeve 50 is pulled, the first and second beads 18, 19 are pushed outward by the screw bit 70 and the outer periphery of the movable member 20. The user then inserts the screw bit 70 continuously to compress the first spring 60. The user then releases the sleeve 50, a third groove 71 defined in the screw bit 70 is engaged with the first bead 18 which is pushed inward by the flange 51, and the movable member 20 is pushed by the screw bit 70 and the first groove 22 is engaged with the second bead 19 which is pushed inward by the collar 55 as shown in FIG. 4. Therefore, the screw bit 70 is well positioned.
When the screw bit 70 is to be released, the user pulls the sleeve 50 again and the first and second beads 18 and 19 are partially received in the first and second spaces 53, 54. The movable member 20 and the screw bit 70 are then pushed by the first spring 30, the screw bit 70 is pushed out from the tube 10 by the first spring 30.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.