IP Library › Granted Patent US 10,239,439
Granted Patent B2
US 10,239,439 · App. 15/942,396 · Granted Mar 26, 2019

Tension monitoring and signaling system

Inventor: Richard Paul Cooper (Bend, OR)
B60P7/0861B65H59/384B65H59/40G01L5/10
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Quick Facts
Patent No.
US 10,239,439
App. No.
15/942,396
Granted
Mar 26, 2019
Kind
B2
Abstract

An automatic tension sensing and control system for cargo restraints comprises a load binder, a tension sensor, an actuator coupled to the load binder, and a control module. The control module receives signals from the sensor and can command the actuator to tighten or slacken the load binder. The system can also include an annunciator and an information storage and retrieval system.

Claims (45)

1. A tension control system comprising:

a load binder further comprising

a tube with first and second ends, said first and second ends each having a threaded aperture,

a first draw rod threaded complementarily to be received within said threaded aperture of said first end of said tube,

a second draw rod threaded complementarily to be received within said threaded aperture of said second end of said tube,

a driven gear comprising gear teeth, with said driven gear coaxially coupled to said tube,

a drive stud further comprising gear teeth in meshed engagement with said gear teeth of said driven gear, and

said tensioning means further comprising a motor having a shaft rotatably coupled to said drive stud, said motor also operationally connected to said control module,

so that motor shaft rotation changes an operating length between said first and second end effectors,

and at least a first end effector and a second end effector;

a tensioning means operatively connected to said load binder between said end effectors;

at least one sensor;

an actuator operatively coupled to said tensioning means; and

a control module operationally connected between said sensor and said actuator,

wherein said sensor provides a signal to said control module based on a tension in said load binder, said control module operating said tensioning means.

2. The tension control system of claim 1 , wherein at least one of said end effectors is selected from the set of end effectors consisting of

a hook, a pin, a clevis, a threaded rod, a bolt, a clamp, a buckle, a loop of wire rope, a hasp, an eye, a ball end, and a strap.

3. The tension control system of claim 1 , further comprising an annunciator, said annunciator operatively connected to said control module.

4. The tension control system of claim 1 , wherein said at least one sensor is a sensor selected from the set of tension sensors comprising:

an electrically normally closed sensor, an electrically normally open sensor, a capacitive sensor, a strain gauge, a piezoelectric sensor, and a rate-sensitive sensor.

5. The tension control system of claim 1 , wherein said sensor is connected to an information storage and retrieval system.

6. The tension control system of claim 1 , wherein said control module is connected to an annunciator.

7. The tension control system of claim 1 , wherein said tensioning means changes an operating length between said first and second end effectors.

8. A tension monitoring system comprising:

a load binder having a distal end and a proximal end,

a first end effector affixed to said distal end,

a second end effector affixed to said proximal end,

a tension sensor,

a tube with first and second ends, said first and second ends each having a threaded aperture,

a first draw rod threaded complementarily to be received within said threaded aperture of said first end of said tube,

a second draw rod threaded complementarily to be received within said threaded aperture of said second end of said tube,

a driven gear comprising gear teeth, with said driven gear coaxially coupled to said tube,

a drive stud further comprising gear teeth in meshed engagement with said gear teeth of said driven gear,

and a tensioning device comprising a motor having a shaft rotatably coupled to said drive stud, said motor also operationally connected to said control module,

so that motor shaft rotation changes an operating length between said first and second end effectors,

and a control module connected between said tension sensor and said motor,

wherein a signal from said tension sensor is compared in said control module to a reference value, and a difference value is created.

9. The tension monitoring system of claim 8 , wherein at least one of said end effectors is selected from the set of end effectors consisting of

a hook, a pin, a clevis, a threaded rod, a bolt, a clamp, a buckle, a loop of wire rope, a hasp, an eye, a ball end, and a strap.

10. The tension monitoring system of claim 8 , wherein said control module is connected to an annunciator.

11. The tension monitoring system of claim 10 , wherein a signal is sent to said annunciator if said difference value exceeds a predetermined value.

12. The tension monitoring system of claim 8 , wherein at said least one sensor is a sensor selected from the set comprising:

an electrically normally closed sensor, an electrically normally open sensor, a capacitive sensor, a strain gauge, a piezoelectric sensor, and a rate-sensitive sensor.

13. The tension monitoring system of claim 8 , further comprising an information storage and retrieval system.

14. The tension monitoring system of claim 8 , wherein said tensioning device causes a change in operating length between the two end effectors of the invention.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2018
From: COOPER, RICHARD PAUL
To: PACIFIC STATES MANUFACTURING, INC.
Reel/Frame 045510/0946 →
Continuity (2)
Provisional Application 62501035 · May 3, 2017
Related Publication 20180319312A1 · Nov 8, 2018
Cited By (2)
US 1,116,780 US 12,194,908