IP Library Granted Patent US 10,669,129
Granted Patent B2
US 10,669,129 · App. 16/174,480 · Granted Jun 2, 2020

Dynamic rollout prevention hook

Inventor: Samuel Gene Maness (Apollo Beach, FL)
Assignee: Lifesaving Systems Corporation
B66C1/36
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Quick Facts
Patent No.
US 10,669,129
App. No.
16/174,480
Granted
Jun 2, 2020
Kind
B2
Abstract

A hook gate or hoist hook having a hook gate that is designed to prevent dynamic rollout. The lockable gate includes one or more release mechanisms that allow the gate to unlock and open upon actuation of the release mechanisms. The release mechanisms reside within a circumferential guard that extends outwardly from the gate. The guards preferably extend at least as far as the release mechanism or beyond the extension of the release mechanism. The hook gate further includes anti-snagging flanges extending generally in the vertical direction from both the top and bottom portions of the guard. The circumferential guard and the anti-snagging flanges in combination make it nearly impossible for an attachment mechanism to become improperly oriented under a load and effectively eliminate the possibility of dynamic rollout.

Claims (54)

1. A hook gate that is insusceptible to dynamic rollout, the hook gate comprising:

a main body having a first lateral side, a second lateral side opposite the first lateral side, and a front facing surface;

a first release mechanism secured to the first lateral side, wherein at least a portion of the first release mechanism is actuatable by a user;

a second release mechanism secured to the second lateral side, wherein at least a portion of the second release mechanism is actuatable by the user;

a first guard extending a predetermined distance in a lateral direction from at least a portion of the first lateral side, wherein the first guard surrounds at least the actuatable portion of the first release mechanism thereby preventing accidental actuation of the first release mechanism;

a second guard extending a predetermined distance in the lateral direction from at least a portion of the second lateral side, wherein the second guard surrounds at least the actuatable portion of the second release mechanism thereby preventing accidental actuation of the second release mechanism;

the predetermined distance that the first and second guards extend in the lateral direction being greater than or equal to a distance that the actuatable portions of the first and second release mechanisms extend in the lateral direction;

whereby simultaneous actuation of the first and second release mechanisms allows the hook gate to open; and

the front facing surface further including:

a first upper tapered flange, a second upper tapered flange, a first lower tapered flange, and a second lower tapered flange;

the first upper tapered flange extending upwardly from the first guard and tapering towards an upper end of the hook gate;

the first lower tapered flange extending downwardly form the first guard and tapering towards a bottom end of the hook gate;

the second upper tapered flange extending upwardly from the second guard and tapering towards an upper end of the hook gate; and

the second lower tapered flange extending downwardly from the second guard and tapering towards a bottom end of the hook gate.

2. The hook gate of claim 1 , wherein front facing surface is convex.

3. The hook gate of claim 1 , wherein the actuatable portions of the first and second release mechanisms are laterally compressible, and each of the first and second release mechanisms requires a predetermined amount of compression to reach an actuation point at which the hook gate becomes unlocked.

4. The hook gate of claim 1 , wherein each guard includes an upper section, a front section, a bottom section, and a portion of the respective release mechanism to completely surround each actuatable portion for each release mechanism.

5. The hook gate of claim 4 , wherein the front section of the guard extends from the front facing surface of the hook gate.

6. The hook gate of claim 1 , wherein each of the actuatable portions of the release mechanisms has a visual indicator to visually distinguish each of the actuatable portions from other portions of the hook gate.

7. A hook gate that eliminates the possibility of dynamic rollout, the hook gate comprising:

a main body having a first release mechanism and a second release mechanism;

the first release mechanism having an actuatable contact accessible by a user;

the second release mechanism having an actuatable contact accessible by a user;

a first guard surrounding the actuatable contact of the first release mechanism, the first guard extending away from the main body beyond the actuatable contact of the first release mechanism;

a second guard surrounding the actuatable contact of the second release mechanism, the second guard extending away from the main body beyond the actuatable contact of the second release mechanism;

whereby the first and second guards prevent accidental actuation of the first and second release mechanisms to prevent dynamic rollout;

the main body further including a front facing surface, where the front facing surface includes:

a first upper tapered flange, a second upper tapered flange, a first lower tapered flange, and a second lower tapered flange;

the first upper tapered flange extending upwardly from the first guard and tapering towards an upper end of the hook gate;

the first lower tapered flange extending downwardly form the first guard and tapering towards a bottom end of the hook gate;

the second upper tapered flange extending upwardly from the second guard and tapering towards an upper end of the hook gate; and

the second lower tapered flange extending downwardly from the second guard and tapering towards a bottom end of the hook gate.

8. The hook gate of claim 7 , wherein the main body includes a convex front facing surface.

9. The hook gate of claim 7 , wherein the actuatable contact of the first and second release mechanisms are laterally compressible, and each of the first and second release mechanisms requires a predetermined amount of compression to reach an actuation point at which the hook gate becomes unlocked.

10. The hook gate of claim 7 , wherein each guard includes an upper section, a front section, a bottom section, and a portion of the respective release mechanism to completely surround the actuatable contact.

11. The hook gate of claim 10 , wherein the front section of the guard extends from a front facing surface of the main body.

12. The hook gate of claim 7 , wherein each of the actuatable contacts of the release mechanisms has a visual indicator to visually distinguish the each of the actuatable contacts from other portions of the hook gate.

13. A hook gate to eliminate the possibility of dynamic rollout, comprising:

a main body having a front facing surface, a first release mechanism, and a second release mechanism;

the first release mechanism having an actuatable contact accessible by a user;

the second release mechanism having an actuatable contact accessible by a user;

a first guard circumferentially surrounding the actuatable contact of the first release mechanism, the first guard extending away from the main body beyond the actuatable contact of the first release mechanism;

a second guard circumferentially surrounding the actuatable contacts of the second release mechanism, the second guard extending away from the main body beyond the actuatable contact of the second release mechanism;

the front facing surface further including:

a first upper tapered flange, a second upper tapered flange, a first lower tapered flange, and a second lower tapered flange;

the first upper tapered flange extending upwardly from the first guard and tapering towards an upper end of the hook gate;

the first lower tapered flange extending downwardly from the first guard and tapering towards a bottom end of the hook gate;

the second upper tapered flange extending upwardly from the second guard and tapering towards an upper end of the hook gate; and

the second lower tapered flange extending downwardly from the second guard and tapering towards a bottom end of the hook gate.

14. The hook gate of claim 13 , wherein the front facing surface is convex.

15. The hook gate of claim 13 , wherein the actuatable contact of the first and second release mechanisms are laterally compressible, and each of the first and second release mechanisms requires a predetermined amount of compression to reach an actuation point at which the hook gate becomes unlocked.

16. The hook gate of claim 13 , wherein each guard includes an upper section, a front section, a bottom section, and a portion of the respective release mechanism to completely surround the actuatable contact.

17. The hook gate of claim 16 , wherein the front section of the guard extends from the front facing surface of the main body.

18. The hook gate of claim 13 , wherein each of the actuatable contacts of the release mechanisms has a visual indicator to visually distinguish the each of the actuatable contacts from other portions of the hook gate.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Dec 13, 2024
From: BARINGS FINANCE LLC, AS COLLATERAL AGENT
To: LIFESAVING SYSTEMS, LLC
Reel/Frame 069580/0075 →
U.S. INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Dec 12, 2024
From: INTERNATIONAL MEZZO TECHNOLOGIES, INC.; LIFESAVING SYSTEMS, LLC; HORNET ACQUISITIONCO, LLC; HARTZELL ENGINE TECHNOLOGIES LLC; AIR COMM CORPORATION LLC; ONBOARD SYSTEMS INTERNATIONAL, LLC; ENVIRO SYSTEMS, INC.; TAILWIND TECHNOLOGIES LLC; HARTZELL PROPELLER LLC; AMERITECH INDUSTRIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 069604/0015 →
SECURITY INTEREST Recorded Apr 21, 2023
From: LIFESAVING SYSTEMS, LLC
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 063406/0124 →
ENTITY CONVERSION Recorded Mar 2, 2023
From: LIFESAVING SYSTEMS CORPORATION
To: LIFESAVING SYSTEMS, LLC
Reel/Frame 062914/0261 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2018
From: MANESS, SAMUEL GENE
To: LIFESAVING SYSTEMS CORPORATION
Reel/Frame 047844/0768 →
Continuity (2)
Provisional Application 62657254 · Apr 13, 2018
Related Publication 20190315600A1 · Oct 17, 2019