IP Library Granted Patent US 10,821,522
Granted Patent B2
US 10,821,522 · App. 15/946,513 · Granted Nov 3, 2020

Drill bit adapter tool

Inventor: Brian Giffin (Lummi Island, WA)
Assignee: Giffin Tec, Inc.
B23B31/1173A45F5/021B23B31/107B25B21/007B25B23/0035A45F2200/0575B23B2231/04B25B21/02Y10T279/17786Y10T408/95
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Quick Facts
Patent No.
US 10,821,522
App. No.
15/946,513
Granted
Nov 3, 2020
Kind
B2
Abstract

An adapter tool with a drill bit is provided that selectively connects to a driver to provide added versatility to the driver. The adapter tool includes a spring with an engagement end that extends through a body to selectively engage a recess in the driver. A user can actuate the spring to quickly engage and disengage the adapter from the driver. In practice, a user can use the adapter-driver combination to drill a pilot hole using the drill bit on the adapter, selectively remove the adapter from the driver, and then put a screw into the pilot hole using the driver.

Claims (30)

1. An adapter tool for selectively engaging and releasing a second tool, comprising:

a body having a first end, an opposing second end, a longitudinal axis, and an inner surface that defines an interior volume configured to receive a second tool, wherein the body has a rounded outer surface proximate to said second end;

a countersink cutter positioned at said second end of said body;

a slot that extends from a first point at an outer surface of said body to a second point at said inner surface, wherein said slot forms an angle with said longitudinal axis;

a spring positioned about said outer surface of said body, said spring having an engagement end configured to be positioned at least partially within said slot; and

a retractable sleeve positioned about said outer surface proximate to said first end of said body and translatable along said longitudinal axis of said body between a first position and a second position, wherein, in said first position, said engagement end of said spring extends at least partially into said interior volume to engage said second tool, and wherein, in said second position, said retractable sleeve deflects said engagement end of said spring in said slot to move said engagement end away from said interior volume and to disengage said second tool.

2. The adapter tool of claim 1 , wherein at least half of a cross-sectional area of said engagement end of said spring is configured to be positioned in a recess volume of said second tool when said retractable sleeve is in said first position.

3. The adapter tool of claim 2 , wherein at least a portion of said cross-sectional area of said engagement end of said spring is configured to be positioned outside of said recess volume of said second tool when said retractable sleeve is in said first position.

4. The adapter tool of claim 1 , wherein, in said second position, said retractable sleeve deflects said engagement end of said spring into a portion of said second tool that defines said recess volume to move said engagement end away from said interior volume and to disengage said second tool.

5. The adapter tool of claim 1 , wherein said retractable sleeve has an inner surface that defines an inner cavity, and said spring is at least partially positioned in said inner cavity such that said engagement end of said spring contacts a portion of said inner surface of said retractable sleeve.

6. The adapter tool of claim 5 , further comprising a bushing positioned about said outer surface of said body, wherein said inner surface of said retractable sleeve is at least partially positioned about an outer surface of said bushing.

7. The adapter tool of claim 1 , wherein said slot forms an angle with said longitudinal axis to translate longitudinal movement of said retractable sleeve to lateral movement of said engagement end of said spring, and said angle is between approximately 25 and 35 degrees.

8. The adapter tool of claim 1 , further comprising an aperture extending into said second end of said body along said longitudinal axis to said interior volume, said aperture configured to receive a drill bit.

9. The adapter tool of claim 8 , further comprising a body screw positioned proximate to said second end of said body, wherein said body screw extends into a side aperture of said body and is configured to secure said drill bit.

10. The adapter tool of claim 1 , wherein said spring has a helical shape between a free end and said engagement end, wherein said engagement end comprises a plurality of straight segments with at least one straight segment extending across said angled aperture.

11. A combined drill and driver system, comprising:

an adapter tool having:

a body having a longitudinal axis and an aperture forming an angle with respect to said longitudinal axis, wherein said angled aperture extends from an outer surface to an inner surface of said body, and said inner surface defines a partially enclosed volume, wherein said angled aperture is positioned proximate to a first end of said body, and a countersink cutter is positioned at an opposing second end of said body;

a retractable sleeve disposed around said outer surface of said body and having an inner surface defining an inner cavity;

a spring disposed around said outer surface of said body and at least partially positioned in said inner cavity, said spring having an engagement end at least partially positioned in said angled aperture of said body;

a second tool removably interconnected and positioned in said partially enclosed volume, said second tool including a recess on a forward end,

wherein, in a first state, said engagement end of said spring is wedged between a surface that defines said angled aperture and a surface of said second tool that defines said recess such that at least a portion of a cross-sectional area of said engagement end of said spring is positioned outside of said recess; and

wherein, to transition from said first state to a second state, said retractable sleeve moves said engagement end of said spring against said surface that defines said recess such that said engagement end of said spring moves away from said longitudinal axis until said cross-sectional area of said engagement end of said spring is positioned outside of said recess in the second state.

12. The combined drill and driver system of claim 11 , wherein said angle of said aperture is between approximately 25 and 35 degrees.

13. The combined drill and driver system of claim 11 , wherein said recess of said second tool has a radiused cross-sectional shape.

14. The combined drill and driver system of claim 11 , wherein said retractable sleeve has a first inner diameter and a second inner diameter, wherein said first inner diameter is substantially the same as an outer diameter of a bushing of said adapter tool and said second inner diameter is smaller than said first inner diameter to limit longitudinal travel of said retractable sleeve relative to said bushing.

15. The combined drill and driver system of claim 11 , wherein in said first state, at least half of said cross-sectional area of said engagement end of said spring is positioned within said recess volume of said second tool.

16. The combined drill and driver system of claim 11 , further comprising a second aperture extending into said second end of said body along said longitudinal axis to said partially enclosed volume, said second aperture configured to receive a drill bit.

17. The combined drill and driver system of claim 16 , further comprising a body screw positioned proximate to said second end of said body, wherein said body screw extends into a side aperture of said body and is configured to secure said drill bit.

18. The combined drill and driver system of claim 11 , wherein said spring has a helical shape between a free end and said engagement end, wherein said engagement end comprises a plurality of straight segments with at least one straight segment extending across said angled aperture.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2020
From: GIFFIN, BRIAN
To: GIFFIN TEC, INC.
Reel/Frame 053953/0667 →
Continuity (2)
Provisional Application 62482088 · Apr 5, 2017
Related Publication 20180290214A1 · Oct 11, 2018
Cited By (2)
US 1,088,069 US 1,138,631