IP Library Granted Patent US 12668462
Granted Patent B2
US 12668462 · App. 18/060,028 · Granted Jun 30, 2026

Method and apparatus for operating a crane

Inventors: Robert Kundel, Sr. (Cortland, OH); Richard A. Schley (Warren, OH); Andrew A. Pirigyi (Warren, OH)
Assignee: Kundel Industries, Inc.
B66C23/16B66C23/06B66C23/62
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Quick Facts
Patent No.
US 12668462
App. No.
18/060,028
Granted
Jun 30, 2026
Kind
B2
Abstract

A davit crane that includes a base adapted to operably engage with a ground surface. The davit crane also includes a drive assembly operably engaged with the base. The davit crane also includes an actuation assembly operably engaged with the drive assembly, wherein the actuation assembly is configured to move between a lowered position and a raised position via the drive assembly. The davit crane also includes a boom assembly operably engaged with the actuation assembly. The actuation assembly of the davit crane is operable to pivotably adjust the boom assembly between the raised position and the lowered position.

Claims (74)

1 . A davit crane, comprising:

a base adapted to operably engage with a ground surface and having a top end, a bottom end positioned opposite to the top end, and a longitudinal axis defined therebetween

a drive assembly operably engaged with the base;

a slew bearing operably engaged with the drive assembly and the base, the slew bearing having:

an inner ring operably engaged with the drive assembly;

a first outer ring operably engaged on the inner ring and operably engaged with the base; and

a second outer ring operably engaged on the inner ring opposite to the first outer ring and operably engaged with the base;

an actuation assembly operably engaged with the drive assembly, wherein the actuation assembly is configured to move between a lowered position and a raised position via the drive assembly; and

a boom assembly operably engaged with the actuation assembly;

wherein the actuation assembly is operable to pivotably adjust the boom assembly between the raised position and the lowered position;

wherein the inner ring is configured to collectively rotate the actuation assembly, the boom assembly, and the drive assembly about the longitudinal axis of the base.

2 . The davit crane of claim 1 , wherein the actuation assembly comprises:

a support column;

an actuating column operably engaged with the drive assembly and operably engaged inside of the support column; and

wherein the actuating column is vertically moveable relative to the support column to pivot the boom assembly between the lowered position and the raised position.

3 . The davit crane of claim 2 , wherein the actuation assembly further comprises:

a jack screw operably engaged with the actuating column and operably engaged with the drive assembly;

wherein the jack screw is configured to be longitudinally moveable inside of the support column and the base via the drive assembly; and

wherein the jack screw and the actuating column are collectively vertically moveable relative to the support column to pivot the boom assembly between the lowered position and the raised position.

4 . The davit crane of claim 2 , wherein the actuation assembly further comprises:

a pivot column operably engaged with the actuating column and operably engaged with the boom assembly;

wherein the pivot column enables the actuating column to pivotably adjust the boom assembly between the lowered position and the raised position.

5 . The davit crane of claim 2 , wherein the boom assembly comprises:

a boom arm configured to operably engaged with the actuation column of the actuation assembly; and

at least one support arm operably engaged with the support column of the actuating assembly and operably engaged with the boom arm;

wherein the boom arm and the at least one support arm are pivotable between the raised position and the lowered position.

6 . The davit crane of claim 5 , wherein the boom assembly further comprises:

a first height measured from a first end of the boom arm to the base when the actuation assembly is provided in the raised position; and

a second height measured from the first end the boom arm to the base when the actuation assembly is provided in the lowered position;

wherein the second height is greater than the first height.

7 . The davit crane of claim 5 , wherein the boom assembly further comprises:

an extension member operably engaged with the boom arm and operably engaged with the actuating column;

wherein the extension member positions the boom arm at a distance away from the actuating column; and

wherein the extension member is operable to enable the actuation assembly and the drive assembly to pivotably move the boom arm between the lowered position and the raised position.

8 . The davit crane of claim 3 , wherein the drive assembly comprises:

a top plate operably engaged with the support column;

a housing operably engaged with the top plate; and

a gear system positioned inside of the housing and operably engaged with a fitting pipe;

wherein the gear system is operable to longitudinally move the jack screw and the actuating column between the raised position and the lowered position.

9 . The davit crane of claim 8 , wherein the gear system of the drive assembly comprises:

an input drive shaft operably engaged with the housing; and

a worm gear operably meshed with the input drive shaft inside of the housing and threadably engaged with the jack screw inside of the housing.

10 . The davit crane of claim 9 , wherein the gear system of the drive assembly further comprises:

a first rotational force applied by the input drive shaft on the worm gear to rotate the worm gear; and

a second rotational force applied by the worm gear on the jack screw to rotate the jack screw to longitudinally move the jack screw towards and away from the base.

11 . The davit crane of claim 9 , wherein the gear system of the drive assembly further comprises:

a first tapered roller bearing operably engaged with the worm gear and positioned between the worm gear and the top plate; and

a second tapered roller bearing operably engaged with the worm gear and positioned between the worm gear and a fitting pipe of the drive assembly;

wherein the first tapered roller bearing is positioned vertically above the second tapered roller bearing inside of the housing.

12 . The davit crane of claim 1 , wherein the slew bearing further comprises:

a collar extending outwardly from the inner ring;

an upper raceway defined in the collar; and

a lower raceway defined in the collar;

wherein the upper raceway and the lower raceway oppose one another relative to the collar.

13 . The davit crane of claim 12 , wherein the slew bearing further comprises:

a first lip extending outwardly from the first outer ring; and

a first interior raceway defined in the first lip;

wherein the first interior raceway faces the upper raceway of the collar when the inner ring and the first outer ring are operably engaged with one another.

14 . The davit crane of claim 13 , wherein the slew bearing further comprises:

a second lip extending outwardly from the second outer ring; and

a second interior raceway defined in the second lip; wherein the second interior raceway faces the lower raceway of the collar when the inner ring and the second outer ring are operably engaged with one another.

15 . The davit crane of claim 14 , wherein the slew bearing further comprises:

a first set of balls operably engaged with the upper raceway of the collar and the first interior raceway of the first lip when the inner ring and the first outer ring are operably engaged with one another; and

a second set of balls operably engaged with the lower raceway of the collar and the second interior raceway of the second lip when the inner ring and the second outer ring are operably engaged with one another.

16 . A method of lifting an object with a davit crane, comprising steps of:

engaging the object with a boom arm of a boom assembly of the davit crane;

applying a first rotational force on a gear system of a drive assembly of the davit crane;

applying a second rotational force, via the gear system, on an actuation assembly of the davit crane;

vertically moving the actuation assembly from a lowered position to a raised position relative to a base of the davit crane;

pivoting a first end of the boom arm of the boom assembly, via the actuation assembly, upwardly away from the base; and

pivoting a second end of the boom arm of the boom assembly, via the actuation assembly, downwardly towards the base, wherein the second end of the boom arm opposes the first end of the boom arm.

17 . The method of claim 16 , wherein the step of vertically moving the actuation assembly from the lowered position to the raised position relative to the base of the davit crane includes longitudinally moving a jack screw of the actuation assembly downwardly into the base via the gear system.

18 . The method of claim 16 , further comprising:

rotating the boom assembly, via a slew bearing, about a longitudinal axis of the base relative to said base.