Hexagonal driver
View Patent ↗A hexagonal driver bit configured to be operably coupled to a power rotary tool wherein the present invention employs a movable magnet assembly so as to facilitate removal of debris accumulated within the cavity of the driver bit. Secured to the shaft of the present invention is a body member that is cylindrical in shape having a first end and a second end. Proximate the first end is an opening providing access to the cavity wherein the cavity has an inner wall formed to mateably engage a fastener head. The body includes a void intermediate a bottom plate member and a rear wall wherein the void houses a movable magnet assembly. The magnet assembly includes a portion external to the body accessible by a user wherein the user can move the magnet assembly between a first and second position. A movement member controls the movement of the magnet assembly.
1 . A driver bit configured to be operably coupled to a rotary tool wherein the driver bit is configured to engage a fastener head and wherein the driver bit comprises:
a shaft member, said shaft member being elongated in form having a first end and a second end, said shaft member having a first end and a second end;
a body member, said body member being cylindrical in shape, said body member having a first end and a second end, said body member having an opening proximate said first end thereof providing access to a cavity, said cavity having an inner wall formed to mateably engage a fastener head, said cavity having a bottom plate member distal to said opening, said body member further having a void, said void of said body member being intermediate said bottom plate member and a rear wall proximate said second end of said body member, said rear wall further including at least two apertures bored therethrough; and
a magnet assembly, said magnet assembly movably coupled to said body member, said magnet assembly movable between a first position and a second position, said magnet assembly having a first ring member and a second ring member, said first ring member and said second ring member having at least two rod members operably coupling said first ring member and said second ring member, said first ring member being movably disposed within said void of said body member, said second ring member being located adjacent to said body member proximate said second end of said body member; and
wherein said first ring member is adjacent said bottom plate member in the first position of said magnet assembly.
2 . The bit configured to be operably coupled to the rotary tool as recited in claim 1 , wherein said first ring member further includes a center void, said center void of said first ring member having a magnet member secured therein.
3 . The bit configured to be operably coupled to the rotary tool as recited in claim 2 , and further including a movement member, said movement member being disposed within said void of said body member intermediate said rear wall and said first ring member, said movement member operable to move the magnet assembly between said first position and said second position.
4 . The bit configured to be operably coupled to the rotary tool as recited in claim 3 , wherein said first ring member is distal to said bottom plate member in said second position of said magnet assembly.
5 . The bit configured to be operably coupled to the rotary tool as recited in claim 4 , wherein said inner wall of said cavity of said body member is hexagonal in form.
6 . The bit configured to be operably coupled to the rotary tool as recited in claim 5 , wherein said second ring member further includes an outer peripheral edge wall, said outer peripheral edge wall being angular in form.
7 . The bit configured to be operably coupled to the rotary tool as recited in claim 6 , wherein said movement member is a spring.
8 . The bit configured to be operably coupled to the rotary tool as recited in claim 7 , wherein said at least two rod members are journaled through said at least two apertures of said rear wall and movable therethrough.