IP Library Granted Patent US 9,359,174
Granted Patent B2
US 9,359,174 · App. 14/184,792 · Granted Jun 7, 2016

Composite lifting beam

Inventors: Douglas R. Stitt (South Beloit, IL); Thomas R. Eicher (Rockton, IL); Gregory F. Lucas (La Crescent, MN); Dan Eugene Mongan (Oregon, IL)
Assignee: The Caldwell Group, Inc.
B66C1/10
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Quick Facts
Patent No.
US 9,359,174
App. No.
14/184,792
Granted
Jun 7, 2016
Kind
B2
Abstract

A composite lifting beam and methods are provided. Such a lifting beam includes at least one beam element. A plurality of plate elements are mounted to the at least one beam element and are spaced apart along a length of the at least one beam element. The plurality of plate elements provide a first connection arrangement for connecting the beam to a lifting apparatus, and a second connection arrangement for connecting the beam to a load.

Claims (43)

1. A lifting beam, comprising:

a first and a second beam element each formed from a composite material, wherein the first and second beam elements are arranged in an opposed spaced relationship such that a clearance gap is formed therebetween;

a plurality of plate elements mounted to the first and second beam elements within the clearance gap;

wherein one or more of the plurality of plate elements provide a first connection arrangement for connecting the lifting beam to a lifting apparatus;

wherein one or more of the plurality of plate elements provide a second connection arrangement for connecting the lifting beam to a load;

wherein the plurality of plate elements are secured to the first and second beam elements by an adhesive, wherein the adhesive is applied to contact surfaces of each of the plurality of plate elements, and wherein the contact surfaces are positioned within the clearance gap;

further comprising a sensor mounted to one of the first or second beam elements;

wherein the sensor is a visual indicator configured to provide a visual indication of a stress loading of the one of the first or second beam elements; and

wherein the visual indicator comprises a sticker providing a color indication of loading.

2. The lifting beam of claim 1 , wherein the plurality of plate elements includes a pair of load plates and a bail plate positioned between the pair of load plates.

3. The lifting beam of claim 2 , wherein the first connection arrangement is provided by the bail plate, and the second connection arrangement is provided by the pair of load plates.

4. The lifting beam of claim 2 , wherein the first connection arrangement is provided by the pair of load plates and the bail plate, and the second connection arrangement is provided by the pair of load plates.

5. The lifting beam of claim 1 , wherein the plurality of plate elements includes a pair of load plates, wherein the pair of plate elements provide the first connection arrangement and the second connection arrangement.

6. A lifting beam, comprising:

a first and a second beam element each formed from a composite material;

a plurality of plate elements mounted to the first and second beam elements; and

wherein the plurality of plate elements are mounted to the first and second beam elements spaced apart from one another along a length of the first and second beam elements;

wherein the first and second beam elements are arranged in an opposed spaced relationship such that a clearance gap is formed therebetween, wherein the plurality of plate elements are secured to the first and second beam elements by an adhesive, wherein the adhesive is applied to contact surfaces of each of the plurality of plate elements, and wherein the contact surfaces are positioned within the clearance gap;

further comprising a sensor mounted to one of the first or second beam elements;

wherein the sensor is a visual indicator configured to provide a visual indication of a stress loading of the one of the first or second beam elements;

wherein the visual indicator comprises a sticker providing a color indication of loading.

7. The lifting beam of claim 6 , wherein one or more of the plurality of plate elements provide a first connection arrangement for connecting the lifting beam to a lifting apparatus, and wherein one or more of the plurality of plate elements provide a second connection arrangement for connecting the lifting beam to a load.

8. The lifting beam of claim 7 , wherein the plurality of plate elements includes a pair of load plates and a bail plate positioned between the pair of load plates.

9. The lifting beam of claim 8 , wherein the first connection arrangement is formed on the bail plate, and the second connection arrangement is formed on the pair of load plates.

10. The lifting beam of claim 8 , wherein the first connection arrangement is formed on the bail plate and the pair of load plates and the second connection arrangement is formed on the pair of load plates.

11. The lifting beam of claim 7 , wherein the plurality of plate elements includes a pair of connection plates, wherein the first connection arrangement and the second connection arrangement are formed on the pair of connection plates.

12. A lifting beam, comprising:

a first and a second beam element each formed from a composite material, wherein the first and second beam elements are arranged in an opposed spaced relationship such that a clearance gap is formed therebetween;

a plurality of plate elements mounted to the first and second beam elements within the clearance gap;

wherein one or more of the plurality of plate elements provide a first connection arrangement for connecting the lifting beam to a lifting apparatus;

wherein one or more of the plurality of plate elements provide a second connection arrangement for connecting the lifting beam to a load;

wherein the plurality of plate elements are secured to the first and second beam elements by an adhesive, wherein the adhesive is applied to contact surfaces of each of the plurality of plate elements, and wherein the contact surfaces are positioned within the clearance gap;

further comprising a sensor mounted to one of the first or second beam elements;

wherein the sensor is a visual indicator configured to provide a visual indication of a stress loading of the one of the first or second beam elements; and

wherein the visual indicator is a sticker which tears at a given stress of said one of the first or second beam elements.

13. A lifting beam, comprising:

a first and a second beam element each formed from a composite material;

a plurality of plate elements mounted to the first and second beam elements; and

wherein the plurality of plate elements are mounted to the first and second beam elements spaced apart from one another along a length of the first and second beam elements;

wherein the first and second beam elements are arranged in an opposed spaced relationship such that a clearance gap is formed therebetween, wherein the plurality of plate elements are secured to the first and second beam elements by an adhesive, wherein the adhesive is applied to contact surfaces of each of the plurality of plate elements, and wherein the contact surfaces are positioned within the clearance gap;

further comprising a sensor mounted to one of the first or second beam elements;

wherein the sensor is a visual indicator configured to provide a visual indication of a stress loading of the one of the first or second beam elements;

wherein the visual indicator is a sticker which tears at a given stress of said one of the first or second beam elements.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2014
From: STITT, DOUGLAS R.; EICHER, THOMAS R.; LUCAS, GREGORY F.; MONGAN, DAN EUGENE
To: THE CALDWELL GROUP, INC.
Reel/Frame 032252/0608 →
Continuity (1)
Related Publication 20150232303A1 · Aug 20, 2015