IP Library Granted Patent US 8,851,784
Granted Patent B2
US 8,851,784 · App. 12/969,799 · Granted Oct 7, 2014

System of an extension pole

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Quick Facts
Patent No.
US 8,851,784
App. No.
12/969,799
Granted
Oct 7, 2014
Kind
B2
Abstract

An extension pole. At least some of the illustrative embodiments include a first tubular member telescoped within a second tubular member. A first locking system is disposed within the internal volume of the first tubular member, and a second locking system is disposed at least partially on an outside diameter of the second tubular member.

Claims (45)

1. A system comprising:

a first tubular member that defines an internal volume;

a second tubular member telescoped within the first tubular member;

a first locking system disposed within the internal volume of the first tubular member, the first locking system has first configuration that holds the axial orientation of the second tubular member relative to the first tubular member, and a second configuration in which the first locking system allows the axial orientation of the second tubular member relative to the first tubular member to change;

a second locking system distinct from the first locking system, the second locking system disposed on an outside diameter of the second tubular member at a distal end of the first tubular member, the second locking system comprising:

a sleeve that defines an internal diameter of circular cross-section through which the second tubular member extends, an exterior surface that defines a cross-section with a major axis and a minor axis, and a first slot;

a cam that defines an internal surface of cross-section that defines a major axis and a minor axis, and an exterior surface, the cam in an operational relationship with the sleeve such that the internal surface of the cam circumscribes the exterior surface of the sleeve;

wherein the cam has a first rotational orientation relative to the sleeve where the internal surface of the cam biases the sleeve against the second tubular member; and

wherein the cam has a second rotational orientation relative to the sleeve where the sleeve is non-biased and the sleeve allows the axial orientation of the second tubular member relative to the first tubular member to change.

2. The system of claim 1 wherein the exterior surface of the sleeve is elliptical.

3. The system of claim 1 wherein the internal surface of the cam is elliptical.

4. The system of claim 1 wherein the first configuration of the first locking system is created by rotation in a first direction of the first tubular member relative the second tubular member, the rotation relative to a coaxial long axis of the first and second tubular members.

5. The system of claim 4 wherein the second configuration of the first locking system is created by rotation in a second direction, opposite the first direction, of the first tubular member relative the second tubular member, the rotation relative to the coaxial long axis.

6. The system of claim 1 wherein a long dimension of the first slot is parallel to a central axis of the first tubular member.

7. The system of claim 1 further comprising a second slot in the sleeve disposed opposite the first slot.

8. The system of claim 1 wherein the exterior surface of the cam further comprises:

a first planar region, the first planar region defines a first plane; and

a second planar region disposed opposite the first planar region, the second planar region defines a second plane parallel to the first plane;

wherein the minor axis of the interior surface is perpendicular to both the first and second planes.

9. The system of claim 1 wherein the first rotational orientation of the cam is less than 90 degrees of rotation from the second rotational orientation of the cam.

10. The system of claim 1 wherein the first rotational orientation of the cam is approximately 45 degrees of rotation from the second rotational orientation of the cam.

11. The system of claim 1 wherein the sleeve further comprises a proximal portion proximate the first tubular member, and a distal portion, and in the first rotational orientation of the cam, the distal portion of the internal diameter of the sleeve is deflected against the second tubular member.

12. The system of claim 1 wherein the first locking system further comprises:

a hub member coupled to a proximal end of the second tubular member, the hub member disposed within the internal volume of the first tubular member;

a cam member in operational relationship to the hub member, the cam member also disposed within the internal volume of the first tubular member;

wherein in the first configuration of the first locking system the cam member is biased against an inside diameter of the first tubular member, and in the second configuration of the first locking system cam member is in a non-biased configuration.

13. The system of claim 12 :

wherein the hub member defines an annular channel comprising a outwardly extending tab member;

wherein the cam member is disposed within the annular channel, and the cam member defines an interior surface in operational relationship to the tab member;

wherein in the first configuration of the first locking system the tab member biases the cam member against an inside diameter of the first tubular member.

14. The system of claim 1 further comprising a distance between the first locking system and the second system is different for different relative telescopic relationships of the first and second tubular members, the distance measured axially along a coaxial central axis of the first and second tubular members.

15. An extension pole comprising:

a first tubular member that defines an internal volume and a central axis;

a second tubular member that defines a central axis, the second tubular member telescoped within the first tubular member such that the central axis of the second tubular member is coaxial with the central axis of the first tubular member, and a telescopic relationship of the first and second tubular members defines a length of the extension pole;

a first locking system disposed within the internal volume of the first tubular member, the first locking system comprising:

a hub member disposed at a proximal end of the second tubular member, the hub member disposed within the internal volume of the first tubular member; and

a cam member in operational relationship to the hub member, the cam member also disposed within the internal volume of the first tubular member;

wherein in a first configuration of the first locking system the cam member is biased against an inside diameter of the first tubular member such that the first locking system holds the telescopic relationship of the second tubular member relative to the first tubular member, and in a second configuration of the first locking system cam member is in a non-biased configuration in which the first locking system allows the telescopic orientation of the second tubular member relative to the first tubular member to change; and

wherein the first configuration of the first locking system is created by rotation in a first direction of the first tubular member relative the second tubular member about the central axis of the first tubular member;

a second locking system distinct from the first locking system, the second locking system disposed on an outside diameter of the second tubular member at a distal end of the first tubular member, the second locking system comprising:

a sleeve that defines an internal diameter of circular cross-section through which the second tubular member extends, an exterior surface that is elliptical, and a first slot;

a cam that defines an internal surface that is elliptical, and an exterior surface, the cam in an operational relationship with the sleeve such that the internal surface of the cam circumscribes the exterior surface of the sleeve;

wherein the cam has a first rotational orientation relative to the sleeve where the internal surface of the cam biases the sleeve against the second tubular member; and

wherein the cam has a second rotational orientation relative to the sleeve where the sleeve is non-biased and the sleeve allows the axial orientation of the second tubular member relative to the first tubular member to change, the first rotational orientation of the cam is approximately 45 degrees of rotation from the second rotational orientation of the cam.

16. The system of claim 15 wherein the second configuration of the first locking system is created by rotation in a second direction, opposite the first direction, of the first tubular member relative the second tubular member, the rotation relative to the coaxial long axis.

Assignments (3)
SECURITY INTEREST Recorded Nov 18, 2024
From: BRANDED ACQUICO NO 4, LLC; BRANDED ACQUICO NO 1, LLC; BRANDED ACQUICO NO 2, LLC; BRANDED ACQUICO NO 3, LLC; BRANDED ACQUICO NO 5, LLC; BRANDED ACQUICO NO 6, LLC; BRANDED ACQUICO NO 8, LLC; BALLSY, INC.; BUCKTHORN ONLINE LIMITED; DOFIDA LLC; FULLSTAR HOUSEWARE, LLC; HEZE LLC; HYDY, INC.; KARAKA LLC; NEW CRAFTY OPERATING COMPANY LLC; NEW VIKING REVOLUTION LLC; WILLOW INTERNATIONAL LIMITED; YELLAPRO LIMITED; NUMNUM LLC; BOKA, LLC; NEW KITCHEN OPERATING COMPANY, LLC; HEYDAY TECHNOLOGIES, INC.; BELEL LLC; ZITSTICKA, INC.; IRON FLASK GROUP LLC; MOONSHINE ROD COMPANY, INC.; HOME NATIVE LTD
To: GLAS USA LLC, AS AGENT
Reel/Frame 069380/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2021
From: DOCAZOO LLC
To: DOFIDA LLC
Reel/Frame 057352/0012 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2019
From: DONOHUE, JAMES K.
To: DOCAZOO LLC
Reel/Frame 047945/0187 →