IP Library Granted Patent US 10,815,055
Granted Patent B2
US 10,815,055 · App. 15/557,550 · Granted Oct 27, 2020

Load transfer mechanism

Inventors: Paul David Overfield (Drakes Broughton, GB); Simon Mark Brown (London Lane Tardebigge, GB)
Assignee: Translift Spacemate Limited
B65G1/0435B66F9/141
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Quick Facts
Patent No.
US 10,815,055
App. No.
15/557,550
Granted
Oct 27, 2020
Kind
B2
Abstract

A mechanism for transferring loads characterized by a frame adapted to be mounted on a lift mechanism of a lift truck, having a pair of telescopic rails mounted at one end to the frame. The telescopic rails extending parallel to one another, extendable laterally of the lift mechanism of the lift truck, between retracted and extended positions by an actuator that moves the telescopic rails. A carriage is mounted on the telescopic rails for movement there along when the telescopic rails are in their extended positions and the free ends of the telescopic rails are supported. The carriage having a secondary lift mechanism mounted thereon by which a load may be raised and lowered relative to the carriage.

Claims (18)

1. A mechanism for transferring loads comprising:

a frame adapted to be mounted on a lift mechanism of a lift truck,

a pair of telescopic rails mounted at one end to the frame, the telescopic rails extending parallel to one another, the telescopic rails being extendable laterally of the lift mechanism of the lift truck, between retracted and extended positions in which the distal ends of the telescopic rails are supported,

an actuator attached to the frame and cooperating with the pair of telescopic rails to move the telescopic rails between a retracted and an extended position, and

a carriage mounted on the telescopic rails for movement there along when the telescopic rails are in the extended positions and the free ends of the telescopic rails are supported, the carriage having a secondary lift mechanism mounted thereon by which a load may be raised and lowered relative to the carriage and the rails.

2. The mechanism according to claim 1 wherein the telescopic rails, carriage and secondary lift mechanism are driven hydraulically, pneumatically, electrically and/or mechanically.

3. The mechanism according to claim 1 wherein the telescopic rails, carriage and secondary lift mechanism are driven from a power take off, of the drive systems of the lift truck.

4. The mechanism according to claim 3 wherein the telescopic rails are mounted at one end to the frame about a transverse horizontal axis by hinges; whereby the telescopic rails are free to pivot relative to the frame, between a lowered position in which the telescopic rails are tilted downwardly towards the frame from a hinged end to a free ends; and a raised position in which the telescopic rails are tilted upwardly away from the frame from the hinged ends to the free ends; whereby when the telescopic rails in their tilted down position are extended, the telescopic rails may be first brought into engagement with a support surface adjacent their ends and by lowering the mechanism may be brought into engagement with the support surface at two or more points.

5. The mechanism according to claim 1 wherein a control system is provided for sequencing the various operations of the mechanism.

6. The mechanism according to claim 5 wherein the control system includes interlock to prevent movement of the carriage from its retracted position, until the telescopic rails are in the extended position and are supported at their free ends.

7. The mechanism according to claim 6 wherein the telescopic rails are mounted at one end to the frame about a transverse horizontal axis by hinges; whereby the telescopic rails are free to pivot relative to the frame, between a lowered position in which the telescopic rails are tilted downwardly towards the frame from the hinged end to the free ends; and a raised position in which the telescopic rails are tilted upwardly away from the frame from a hinged end to a free end; whereby when the telescopic rails in their tilted down position are extended, the telescopic rails may be first brought into engagement with a support surface adjacent their ends and by lowering the mechanism may be brought into engagement with the support surface at two or more points.

8. The mechanism according to claim 1 wherein the frame is adapted to be mounted on forks of the lift mechanism of a lift truck, whereby the frame may be mounted on the forks from either side, so that the telescopic rails may be extendable to either side of the lift truck.

9. The mechanism according to claim 8 wherein the telescopic rails are mounted at one end to the frame about a transverse horizontal axis by hinges; whereby the telescopic rails are free to pivot relative to the frame, between a lowered position in which the telescopic rails are tilted downwardly towards the frame from a hinged end to a free end; and a raised position in which the telescopic rails are tilted upwardly away from the frame from the hinged ends to the free ends; whereby when the telescopic rails in their tilted down position are extended, the telescopic rails may be first brought into engagement with a support surface adjacent their ends and by lowering the mechanism may be brought into engagement with the support surface at two or more points.

10. The mechanism according to claim 1 wherein the telescopic rails are mounted to the frame so that they are pivotal about a vertical axis, whereby the telescopic rails may be pivoted to extend to either side of the lift truck.

11. The mechanism according to claim 10 wherein the telescopic rails are mounted at one end to the frame about a transverse horizontal axis by hinges; whereby the telescopic rails are free to pivot relative to the frame, between a lowered position in which the telescopic rails are tilted downwardly towards the frame from a hinged end to a free end; and a raised position in which the telescopic rails are tilted upwardly away from the frame from the hinged ends to the free ends; whereby when the telescopic rails in their tilted down position are extended, the telescopic rails may be first brought into engagement with a support surface adjacent their ends and by lowering the mechanism may be brought into engagement with the support surface at two or more points.

12. The mechanism according to claim 1 wherein the telescopic rails are mounted at one end to the frame about a transverse horizontal axis by hinges; whereby the telescopic rails are free to pivot relative to the frame, between a lowered position in which the telescopic rails are tilted downwardly towards the frame from a hinged end to a free end; and a raised position in which the telescopic rails are tilted upwardly away from the frame from the hinged ends to the free ends; whereby when the telescopic rails in their tilted down position are extended, the telescopic rails may be first brought into engagement with a support surface adjacent their ends and by lowering the mechanism may be brought into engagement with the support surface at two or more points.

13. The mechanism according to claim 12 wherein the telescopic rails can move from their tilted down to their tilted up position, while still allowing free movement of the telescopic rails upwardly from their tilted down position.

14. The mechanism according to claim 12 in which a level switch is operated by movement of the telescopic rails about the hinges, to provide an indication of when the telescopic rails are parallel to the support surface and are fully supported by the support surface.

Assignments (2)
CHANGE OF NAME Recorded Nov 27, 2023
From: TRANSLIFT SPACEMATE LTD.
To: SPACEMATE MATERIAL HANDLING LIMITED
Reel/Frame 065678/0180 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2017
From: OVERFIELD, PAUL DAVID; BROWN, SIMON MARK
To: TRANSLIFT SPACEMATE LTD
Reel/Frame 043557/0833 →
Priority Claims (1)
GB 1504172.6 · Mar 12, 2015 · national
Continuity (1)
Related Publication 20180050868A1 · Feb 22, 2018
Cited By (4)
US 12,291,396 US 12,330,870 US 12,630,360 US 12,630,368