Multi-Grip Socket Bit
20170312897 ยท 2017-11-02
Inventors
- Robert S Doroslovac (Massilon, OH, US)
- Paul Kukucka (Brandon, FL, US)
- Thomas Stefan Kukucka (Brandon, FL, US)
Cpc classification
B25B23/108
PERFORMING OPERATIONS; TRANSPORTING
B25B23/105
PERFORMING OPERATIONS; TRANSPORTING
B25B15/004
PERFORMING OPERATIONS; TRANSPORTING
B25B23/0035
PERFORMING OPERATIONS; TRANSPORTING
B25B15/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B23/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A screw bit body which allows for efficient torque force application onto a socket fastener. The screw bit body includes a plurality of laterally-bracing sidewalls, a first base, and a second base. The laterally-bracing sidewalls are radially distributed about a rotation axis of the screw bit body with each further including a first lateral edge, a second lateral edge, a bracing surface, and an engagement cavity. The engagement cavity creates an additional gripping point to prevent slippage in between the screw bit body and the socket fastener. The engagement cavity traverses normal and into the bracing surface. Additionally, the engagement cavity traverses into the screw bit body from the first base to the second base. The engagement cavity is specifically positioned offset from the first lateral edge by a first distance and positioned offset from the second lateral edge by a second distance.
Claims
1. A multi-grip socket bit comprises: an at least one screw bit body; the screw bit body comprises a plurality of laterally-bracing sidewalls, a first base, and a second base; each of the plurality of laterally-bracing sidewalls comprises a first lateral edge, a second lateral edge, a bracing surface, and an least one engagement cavity; the plurality of laterally-bracing sidewalls being radially positioned about a rotation axis of the screw bit body; the first lateral edge and the second lateral edge being positioned opposite to each other across the bracing surface; the engagement cavity traversing normal and into the bracing surface; the engagement cavity traversing into the screw bit body from the first base towards the second base; the engagement cavity being positioned offset from the first lateral edge by a first distance; and the engagement cavity being positioned offset from the second lateral edge by a second distance.
2. The multi-grip socket bit as claimed in claim 1 comprises: an attachment body; an engagement bore; the attachment body being centrally positioned around and along the rotation axis; the attachment body being connected adjacent to the second base; and the engagement bore traversing into the attachment body along the rotation axis, opposite the screw bit body.
3. The multi-grip socket bit as claimed in claim 1 comprises: an attachment body; the attachment body being centrally positioned around and along the rotation axis; and the attachment body being connected adjacent to the second base.
4. The multi-grip socket bit as claimed in claim 1 comprises: an attachment body; the at least one screw bit body comprises a first screw bit body and a second screw bit body; the attachment body being centrally positioned around and along the rotation axis of the first screw bit body; the attachment body being connected adjacent to the second base of the first screw bit body; the second screw bit body being concentrically positioned with the first screw bit body; the second screw bit body being positioned adjacent to the attachment body, opposite the first screw bit body; the attachment body being connected adjacent to the second base of the second screw bit body; the first distance of the first screw bit body being greater than the second distance of the first screw bit body; and the second distance of the second screw bit body being greater than the first distance of the second screw bit body.
5. The multi-grip socket bit as claimed in claim 1 comprises: the screw bit body further comprises a plurality of intermittent sidewalls; the plurality of intermittent sidewalls being radially positioned about the rotation axis; and the plurality of intermittent sidewalls being interspersed amongst the plurality of laterally-bracing sidewalls.
6. The multi-grip socket bit as claimed in claim 1 comprises: the at least one engagement cavity comprises a first cavity and a second cavity; the first cavity and the second cavity being orientated parallel and offset to each other; the first cavity being positioned adjacent to the first lateral edge; and the second cavity being positioned adjacent to the second lateral edge.
7. The multi-grip socket bit as claimed in claim 1, wherein the first distance is greater than the second distance.
8. The multi-grip socket bit as claimed in claim 1, wherein the second distance is greater than the first distance.
9. The multi-grip socket bit as claimed in claim 1, wherein the proportion between the first distance, the second distance, and a width of the engagement cavity is 1:5:4.
10. The multi-grip socket bit as claimed in claim 1, wherein the engagement cavity tapers from the first base to the second base.
11. The multi-grip socket bit as claimed in claim 1, wherein a cross-section of the engagement cavity is a semi-circular profile.
12. The multi-grip socket bit as claimed in claim 1, wherein the bracing surface of each of the plurality of laterally-bracing sidewalls is a concave surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTIONS OF THE INVENTION
[0011] All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
[0012] The present invention generally related to torque tool accessories. More specifically, the present invention is a multi-grip socket bit, also known as a screw bit or driver. The present invention allows for a higher torque to be applied to a fastener than a similarly sized conventional driver bit without damaging the head of the fastener or the bit tool. This is achieved through the use of a multitude of engagement features which effectively grip the head of the fastener. The present invention is a socket bit that is compatible with a variety of torque tools including, but not limited to, traditional drills, bit-receiving screwdrivers, socket wrenches, and socket drivers.
[0013] In its simplest embodiment, referring to
[0014] Referring to
[0015] The bracing surface 5 physically presses against the socket fastener, in particular the lateral sidewall of a head portion from the socket fastener. The first lateral edge 3 and the second lateral edge 4 are positioned opposite to each other across the bracing surface 5. When viewed from either the top perspective or the bottom perspective, the first lateral edge 3 and the second lateral edge 4 from each of the plurality of laterally-bracing sidewalls 2 make up the corners of the screw bit body 1. The engagement cavity 6 traverses normal and into the bracing surface 5 and creates an additional gripping point/tooth on the bracing surface 5. This gripping point is created with the engagement cavity 6 and an adjacent edge, wherein the adjacent edge is either the first lateral edge 3 or the second lateral edge 4; in particular, the adjacent edge is the edge closest to the engagement cavity 6. Additionally, the engagement cavity 6 traverses into the screw bit body 1 from the first base 9 towards the second base 10. The engagement cavity 6 also tapers from the first base 9 to the second base 10. This ensures that the additional gripping point extends along the length of the screw bit body 1 for maximum grip engagement between the screw bit body 1 and the socket fastener. Furthermore, it is preferred that a cross-section 7 of the engagement cavity 6 is a semi-circular profile. The semi-circular profile ensures that there are little to no high stress points in the screw bit body 1, thus increasing the overall longevity of the tool. Alternative profiles may be used for the engagement cavity 6 including, but not limited to, a semi-square profile, a semi-rectangular profile, and a semi-oval profile.
[0016] In the preferred embodiment of the present invention, the engagement cavity 6 is positioned specifically for the most efficient transfer of torque. In particular, the engagement cavity 6 is positioned offset from the first lateral edge 3 by a first distance 12. Similarly, the engagement cavity 6 is positioned offset from the second lateral edge 4 by a second distance 13. The proportion between the first distance 12, the second distance 13, and a width 8 of the engagement cavity 6 is 1:5:4 for the most efficient transfer of torque.
[0017] The proportion between the first distance 12, the second distance 13, and the width 8 of the engagement cavity 6 may be switched and altered in order to achieve a clockwise and counterclockwise design. Referring to
[0018] Referring to
[0019] The present invention also incorporates an attachment feature which allows an external torque tool to attach to the screw bit body 1 and transfer torque force onto the socket fastener through the screw bit body 1. Referring to
[0020] In another embodiment, referring to
[0021] In one embodiment, referring to
[0022] For this, referring to
[0023] In another embodiment of the present invention, referring to
[0024] Referring to
[0025] Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.