IP Library › Granted Patent US 8,859,905
Granted Patent B2
US 8,859,905 · App. 13/349,142 · Granted Oct 14, 2014

Wildlife guard assemblies and methods for using the same

Inventor: Terry Edward Frye (Cary, NC)
Assignee: Tyco Electronics Corporation
H01B17/00
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Quick Facts
Patent No.
US 8,859,905
App. No.
13/349,142
Granted
Oct 14, 2014
Kind
B2
Abstract

A wildlife guard assembly for use with an electrical insulator body includes first and second guard members and an actuator member. The first and second guard members define a seat to receive the insulator body and are connected to one another to permit relative movement between an open position. The first and second guard members define a sideward opening to laterally receive the insulator body into the seat, and a closed position, wherein the first and second guard members at least partially encircle the insulator body to capture the insulator body in the seat. The actuator member is configured to be inserted between the first and second guard members in the open position and, when forcibly displaced radially to an installed position, to force the first and second guard members to move from the open position to the closed position.

Claims (51)

1. A wildlife guard assembly for use with an electrical insulator body, the wildlife guard assembly comprising:

first and second guard members defining a seat to receive the insulator body, the first and second guard members being connected to one another to permit relative movement between an open position, wherein the first and second guard members define a sideward opening to laterally receive the insulator body into the seat, and a closed position, wherein the first and second guard members at least partially encircle the insulator body to capture the insulator body in the seat; and

an actuator member configured to be inserted between the first and second guard members in the open position, and configured to force the first and second guard members to move from the open position to the closed position when forcibly displaced radially to an installed position;

wherein:

the first and second guard members are pivotably connected to rotate relative to one another about a pivot axis between the open position and the closed position;

the actuator member is configured, when forced radially to the installed position, to force the first and second guard members to rotate about the pivot axis from the open position to the closed position; and

the actuator member has a leading engagement width proximate the pivot axis and a trailing engagement width distal from the pivot axis, and the trailing engagement width is greater than the leading engagement width.

2. The wildlife guard assembly of claim 1 wherein the actuator member and the pivot axis are located on a same side of the seat.

3. The wildlife guard assembly of claim 1 wherein the trailing engagement width is at least 700 percent greater than the leading engagement width.

4. The wildlife guard assembly of claim 1 including a retainer mechanism to secure the actuator member in the installed position.

5. The wildlife guard assembly of claim 1 wherein at least one of the first and second guard members includes a guide rail and the actuator member is slidably mounted on the guide rail.

6. The wildlife guard assembly of claim 1 including a stabilizer feature integral with the first guard member opposite the actuator member to align and/or stabilize the first and second guard members with respect to one another when the first and second guard members are in the closed position.

7. The wildlife guard assembly of claim 1 wherein the first and second guard members are each substantially planar.

8. The wildlife guard assembly of claim 1 wherein the first and second guard members each include a shell body and, when the first and second guard members are in the closed position, the shell bodies thereof collectively define an enclosure surrounding at least a portion of the insulator body.

9. A method for installing a wildlife guard assembly on an electrical insulator body, the method comprising:

providing first and second guard members defining a seat to receive the insulator body, the first and second guard members being connected to one another to permit relative movement between an open position, wherein the first and second guard members define a sideward opening to laterally receive the insulator body into the seat, and a closed position, wherein the first and second guard members at least partially encircle the insulator body to capture the insulator body in the seat;

providing an actuator member configured to be inserted between the first and second guard members in the open position;

with the first and second guard members in the open position, placing the first and second guard members on the insulator body such that the insulator body is received laterally through the sideward opening into the seat; and thereafter

with the first and second guard members mounted on the insulator body in the open position, forcing the actuator member radially between the first and second guard members to an installed position and thereby forcing the first and second guard members to move from the open position to the closed position;

wherein:

the first and second guard members are pivotably connected to rotate relative to one another about a pivot axis between the open position and the closed position;

forcing the actuator member radially to the installed position threes the first and second guard members to rotate about the pivot axis from the open position to the closed position; and

the method includes suspending and forcing the actuator member into the installed position using a hotstick engaging a handling feature forming a part of the actuator member.

10. The method of claim 9 wherein the actuator member and the pivot axis are located on a same side of the seat.

11. The method of claim 9 wherein the actuator member has a leading engagement width proximate the pivot axis and a trailing engagement width distal from the pivot axis, and the trailing engagement width is greater than the leading engagement width.

12. The method of claim 9 wherein the actuator member is secured in the installed position by at least one barb when in the installed position.

13. The method of claim 9 wherein at least one of the first and second guard members includes a guide rail and forcing the actuator member radially to the installed position includes sliding the actuator member on the guide rail.

14. The method of claim 9 wherein:

the insulator body includes a core and a plurality of skirts spaced apart along a length of the core and extending radially outwardly from the core; and

at least one of the first and second guard members includes a retention portion that is received between two adjacent skirts of the plurality of skirts when the first and second guard members are installed on the insulator body in the closed position.

15. The method of claim 9 wherein the first and second guard members are each substantially planar.

16. The method of claim 9 wherein the first and second guard members each include a shell body and, when the first and second guard members are in the closed position, the shell bodies thereof collectively define an enclosure surrounding at least a portion of the insulator body.

17. The method of claim 9 including a step of mounting the actuator member on at least one of the first and second guard members and between the first and second guard members in the open position prior to placing the first and second guard members on the insulator body.

18. A method for installing a wildlife guard assembly on an electrical insulator body, the method comprising:

providing first and second guard members defining a seat to receive the insulator body, the first and second guard members being connected to one another to permit relative movement between an open position, wherein the first and second guard members define a sideward opening to laterally receive the insulator body into the seat, and a closed position, wherein the first and second guard members at least partially encircle the insulator body to capture the insulator body in the seat;

providing an actuator member configured to be inserted between the first and second guard members in the open position;

with the first and second guard members in the open position, placing the first and second guard members on the insulator body such that the insulator body is received laterally through the sideward opening into the seat; and thereafter

with the first and second guard members mounted on the insulator body in the open position, forcing the actuator member radially between the first and second guard members to an installed position and thereby forcing the first and second guard members to move from the open position to the closed position;

wherein:

the first and second guard members are pivotably connected to rotate relative to one another about a pivot axis between the open position and the closed position;

forcing the actuator member radially to the installed position forces the first and second guard members to rotate about the pivot axis from the open position to the closed position; and

the actuator member is secured in the installed position by at least one barb when in the installed position.

19. A method for installing a wildlife guard assembly on an electrical insulator body, the method comprising:

providing first and second guard members defining a seat to receive the insulator body, the first and second guard members being connected to one another to permit relative movement between an open position, wherein the first and second guard members define a sideward opening to laterally receive the insulator body into the seat, and a closed position, wherein the first and second guard members at least partially encircle the insulator body to capture the insulator body in the seat;

providing an actuator member configured to be inserted between the first and second guard members in the open position;

with the first and second guard members in the open position, placing the first and second guard members on the insulator body such that the insulator body is received laterally through the sideward opening into the seat; and thereafter

with the first and second guard members mounted on the insulator body in the open position, forcing the actuator member radially between the first and second guard members to an installed position and thereby forcing the first and second guard members to move from the open position to the closed position;

wherein:

the first and second guard members are pivotably connected to rotate relative to one another about a pivot axis between the open position and the closed position;

forcing the actuator member radially to the installed position forces the first and second guard members to rotate about the pivot axis from the open position to the closed position; and

at least one of the first and second guard members includes a guide rail and forcing the actuator member radially to the installed position includes sliding the actuator member on the guide rail.

Assignments (4)
MERGER Recorded Apr 28, 2022
From: TE CONNECTIVITY SERVICES GMBH
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 060885/0482 →
CHANGE OF ADDRESS Recorded Jun 7, 2021
From: TE CONNECTIVITY SERVICES GMBH
To: TE CONNECTIVITY SERVICES GMBH
Reel/Frame 056514/0015 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2021
From: TE CONNECTIVITY CORPORATION
To: TE CONNECTIVITY SERVICES GMBH
Reel/Frame 056514/0048 →
CHANGE OF NAME Recorded Jan 12, 2017
From: TYCO ELECTRONICS CORPORATION
To: TE CONNECTIVITY CORPORATION
Reel/Frame 041350/0085 →
Continuity (2)
Continuation 12575335 · Oct 7, 2009
Related Publication 20120103681A1 · May 3, 2012