IP Library Granted Patent US 11,890,737
Granted Patent B2
US 11,890,737 · App. 17/117,036 · Granted Feb 6, 2024

Overhead drill and anchor press

Inventor: Peter Justin Merello (Las Vegas, NV)
B25F3/00B23B39/14B23B41/00B25D17/32B25H1/0035
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Quick Facts
Patent No.
US 11,890,737
App. No.
17/117,036
Filed
Dec 9, 2020
Granted
Feb 6, 2024
Kind
B2
Art Unit
3731
USPC
227/69
Abstract

The Overhead Drill and Anchor Press is a single mobile mechanism designed for installation of anchors into a construction surface which is overhead and out of reach of the installer. The overhead drill and anchor press may include a mast, a turret assembly, a controller, and at least one drill. The overhead drill and anchor press can execute the anchor installation sequence automatically or manually with a controller by moving the drill position to drill the hole and set the anchor. The controller may be equipped with a digital display of the turret mounted camera for monitoring the process from the ground. The entire assembly may be manually pushed between target.

Claims (53)

1. An overhead drill press, comprising:

an onboard controller;

a cart chassis;

a shaft connected to the cart chassis, the shaft being configured to selectively move vertically between a down position and one of a plurality of raised positions;

a turret attached to an upper portion of the shaft;

a first drill connected to a first portion of the turret and a second drill connected to a second portion of the turret;

a first motor connected to the shaft which when activated by the onboard controller causes the turret and the first and second drills to selectively rotate between different rotational positions;

a second motor configured to move the first drill vertically between a lowered position and a raised position;

a third motor configured to move the second drill vertically between a lowered position and a raised position;

a plurality of motorized drive wheels; and

a sensor suitable for measuring distance, an angular velocity sensor, said sensors configurable to report measurement data to the onboard controller;

wherein the onboard controller is configured to control the shaft to move the shaft to position the turret adjacent to a surface to be drilled, to control the second motor to raise the first drill to a drilling position of the surface to be drilled, to control the first drill to drill a hole in the surface, to control the second motor to lower the first drill away from the surface,

further wherein the onboard controller is configured with a pressure switch and a laser to control speed of movement of the shaft and the pressure the drill exerts onto a drilling surface.

2. The overhead drill press of claim 1 , further wherein the onboard controller is configured to control the first motor to rotate the turret to position the second drill below the drilled hole in the surface, to control the third motor to raise the second drill to the hole drilled in the surface, and to control the second drill to set an anchor in the drilled hole in the surface.

3. The overhead drill press of claim 1 , wherein the onboard controller is configured to control the speed and direction of the motorized drive wheels.

4. The overhead drill press of claim 1 , wherein the onboard controller is configured suitably with the angular velocity sensor to control the height of travel of the telescopic mast.

5. The overhead drill press of claim 1 , wherein the cart chassis further comprises a mount suitable for securely receiving a reflective prism.

6. The overhead drill press of claim 1 , wherein the onboard controller is configured suitably with the sensor suitable for measuring distance to maneuver the cart chassis to suitably control the motorized drive wheels so to avoid obstacles during movement.

7. The overhead drill press of claim 1 , wherein the onboard controller is configured to access BIM files and layout application and is suitable for point layout navigation.

8. The overhead drill press of claim 1 , further wherein a handheld controller is remotely connected to the onboard controller.

9. An overhead drill press, comprising:

an onboard controller;

a cart chassis;

a shaft connected to the cart chassis, the shaft being configured to selectively move vertically between a down position and one of a plurality of raised positions;

a turret attached to an upper portion of the shaft;

a first drill connected to a first portion of the turret and a second drill connected to a second portion of the turret;

a first motor connected to the shaft which when activated by the onboard controller causes the turret and the first and second drills to selectively rotate between different rotational positions;

a second motor configured to move the first drill vertically between a lowered position and a raised position;

a third motor configured to move the second drill vertically between a lowered position and a raised position;

a plurality of motorized drive wheels; and

a sensor suitable for measuring distance, an angular velocity sensor, said sensors configurable to report measurement data to the onboard controller;

wherein the onboard controller is configured to control the shaft to move the shaft to position the turret adjacent to a surface to be drilled, to control the second motor to raise the first drill to a drilling position of the surface to be drilled, to control the first drill to drill a hole in the surface, to control the second motor to lower the first drill away from the surface,

further wherein the onboard controller is configured with a pressure switch and a laser to control speed of movement of the shaft and the pressure the drill exerts onto a drilling surface; and

wherein a dust collection assembly is mounted on the turret assembly and configured to operate while the drill is active.

10. The overhead drill press of claim 9 , wherein the dust collection assembly further comprises a flexible shroud arranged proximate to the drill bit and a flexible tube for collection and containment of dust.

11. The overhead drill press of claim 10 , further wherein the onboard controller is configured to control the first motor to rotate the turret to position the second drill below the drilled hole in the surface, to control the third motor to raise the second drill to the hole drilled in the surface, and to control the second drill to set an anchor in the drilled hole in the surface.

12. An overhead drill press, comprising:

an onboard controller;

a cart chassis;

a shaft connected to the cart chassis, the shaft being configured to selectively move vertically between a down position and one of a plurality of raised positions;

a turret attached to an upper portion of the shaft;

a first drill connected to a first portion of the turret and a second drill connected to a second portion of the turret;

a first motor connected to the shaft which when activated by the onboard controller causes the turret and the first and second drills to selectively rotate between different rotational positions;

a second motor configured to move the first drill vertically between a lowered position and a raised position;

a third motor configured to move the second drill vertically between a lowered position and a raised position;

a plurality of motorized drive wheels; and

a sensor suitable for measuring distance, an angular velocity sensor, said sensors configurable to report measurement data to the onboard controller;

wherein the onboard controller is configured to control the shaft to move the shaft to position the turret adjacent to a surface to be drilled, to control the second motor to raise the first drill to a drilling position of the surface to be drilled, to control the first drill to drill a hole in the surface, to control the second motor to lower the first drill away from the surface,

further wherein the onboard controller is configured with a pressure switch and a laser to control speed of movement of the shaft and the pressure the drill exerts onto a drilling surface; and

further comprising an air reservoir tank assembly comprising a cylinder, a cylinder base and top, a drive screw, and a worm drive motor assembly.

13. The overhead drill of claim 12 , wherein the air reservoir tank assembly is operably configured to move air into and withdraw air out of the telescopic mast.

14. The overhead drill of claim 13 , wherein the air reservoir tank assembly further comprises an electronic air-pressure switch configured to report data to the onboard controller.

15. The overhead drill of claim 14 , further wherein the onboard controller is configured to control the first motor to rotate the turret to position the second drill below the drilled hole in the surface, to control the third motor to raise the second drill to the hole drilled in the surface, and to control the second drill to set an anchor in the drilled hole in the surface.

Continuity (3)
Continuation In Part 16285055 · Feb 25, 2019
Continuation 14884764 · Dec 28, 2015
Related Publication 20210229254A1 · Jul 29, 2021
Cited By (1)
US 12,708,971