IP Library Granted Patent US 9,581,531
Granted Patent B2
US 9,581,531 · App. 13/362,861 · Granted Feb 28, 2017

Yarn entanglement strength tester

Inventors: Dean A. Ross (Riverside, RI); Filiz Avsar (Fall River, MA); Kendall W. Gordon (Exeter, RI); Steven Leary (Berkley, MA)
Assignee: Lawson Hemphill, Inc.
G01N3/08G01N33/365G01B11/08G01L5/04G01N2203/028
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Quick Facts
Patent No.
US 9,581,531
App. No.
13/362,861
Granted
Feb 28, 2017
Kind
B2
Abstract

A yarn entanglement strength tester includes first and second rolls that apply incrementally increasing elongation levels on a yarn in order to remove entanglements from the yarn. The yarn entanglement strength tester also includes a third roll, where the second and third rolls apply a constant tension on the yarn which enables optimum diameter measurements of the yarn by a camera. The camera captures images of diameters of the yarn after each of the incrementally increasing elongation levels is applied to the yarn. The yarn entanglement strength tester further includes a computing device that controls operation of the camera and the first, second, and third rolls, and determines an entanglement strength of the yarn based on the captured images of the diameters of the yarn after each of the incrementally increasing elongation levels is applied to the yarn.

Claims (85)

1. A method comprising:

causing, by a device, a first roll and a second roll to apply a plurality of elongation levels on a first portion of a yarn provided between the first roll and the second roll,

each elongation level, of the plurality of elongation levels, being greater than a previous elongation level;

receiving, by the device, a plurality of tension measurements associated with the first portion of the yarn, based on applying the plurality of elongation levels on the first portion of the yarn;

determining, by the device, whether the plurality of elongation levels satisfy thresholds based on the plurality of tension measurements;

adjusting, by the device, a roll speed of the first roll or the second roll when at least one of the plurality of elongation levels fails to satisfy at least one of the thresholds;

causing, by the device, the second roll and a third roll to apply a constant tensile force on a second portion of the yarn provided between the second roll and the third roll;

receiving, by the device, diameter measurement information associated with the second portion of the yarn based on applying the constant tensile force on the second portion of the yarn and based on applying the plurality of elongation levels on the first portion of the yarn;

determining, by the device, a quantity of entanglements in the yarn, associated with each elongation level, of the plurality of elongation levels, based on the diameter measurement information; and

determining, by the device, an entanglement strength of the yarn, associated with each elongation level, of the plurality of elongation levels, based on the quantity of entanglements in the yarn associated with each elongation level.

2. The method of claim 1 , further comprising:

adjusting the roll speed of the first roll for each elongation level of the plurality of elongation levels.

3. The method of claim 1 , further comprising:

receiving, during the applying of each elongation level, of the plurality of elongation levels, a tension measurement of the second portion of the yarn; and

adjusting, based on the tension measurement, a roll speed of the third roll to cause the constant tensile force to be applied on the second portion of the yarn.

4. The method of claim 3 , where adjusting the roll speed of the third roll includes:

determining, based on the tension measurement, a measured tensile force associated with the second portion of the yarn, and

adjusting the roll speed of the third roll based on the measured tensile force associated with the second portion of the yarn.

5. The method of claim 1 , where receiving the diameter measurement information associated with the second portion of the yarn includes:

receiving charged couple device (CCD) images of the second portion of the yarn, and

determining the diameter measurement information associated with the second portion of the yarn based on the CCD images.

6. The method of claim 5 , where an initial roll speed of the third roll is determined based on configuration information of a camera that captures the CCD images of the second portion of the yarn.

7. The method of claim 1 , where determining the entanglement strength of the yarn includes:

analyzing the diameter measurement information to determine an entanglement count in the second portion of the yarn for each elongation level, of the plurality of elongation levels,

comparing the entanglement count in the yarn, determined for each elongation level, of the plurality of elongation levels, with an initial entanglement count of the yarn, to calculate an entanglement strength of the yarn for each elongation level, of the plurality of elongation levels, and

determining the entanglement strength of the yarn based on the calculated entanglement strengths.

8. A device comprising:

one or more processors to:

cause a first roll and a second roll to apply a plurality of elongation levels on a first portion of a yarn provided between the first roll and the second roll,

each elongation level, of the plurality of elongation levels, being greater than a previous elongation level,

receive a plurality of tension measurements associated with the first portion of the yarn, based on applying the plurality of elongation levels on the first portion of the yarn,

determine whether the plurality of elongation levels satisfy thresholds based on the plurality of tension measurements,

adjust a roll speed of the first roll or the second roll when at least one of the plurality of elongation levels fails to satisfy at least one of the thresholds,

cause the second roll and a third roll to apply a constant tensile force on a second portion of the yarn provided between the second roll and the third roll,

receive diameter measurement information associated with the second portion of the yarn based on applying the constant tensile force on the second portion of the yarn and based on applying the plurality of elongation levels on the first portion of the yarn,

determine a quantity of entanglements in the yarn, associated with each elongation level, of the plurality of elongation levels, based on the diameter measurement information, and

determine an entanglement strength of the yarn, associated with each elongation level, of the plurality of elongation levels, based on the quantity of entanglements in the yarn associated with each elongation level.

9. The device of claim 8 , where the gone or more processors are further to:

adjust the roll speed of the first roll for each elongation level of the plurality of elongation levels.

10. The device of claim 8 , where the one or more processors are further to:

receive, during the applying of each elongation level, of the plurality of elongation levels, a tension measurement of the second portion of the yarn, and

adjust, based on the tension measurement, a roll speed of the third roll to cause the constant tensile force to be applied on the second portion of the yarn.

11. The device of claim 10 , where, when adjusting the roll speed of the third roll, the one or more processors are to:

determine, based on the tension measurement, a measured tensile force associated with the second portion of the yarn, and

adjust the roll speed of the third roll based on the measured tensile force associated with the second portion of the yarn.

12. The device of claim 8 , where, when receiving the diameter measurement information associated with the second portion of the yarn, the one or more processors are to:

receive charged couple device (CCD) images of the second portion of the yarn, and

determine the diameter measurement information associated with the second portion of the yarn based on the CCD images.

13. The device of claim 12 , where the CCD images are received from a camera positioned between the second roll and the third roll, and

where the one or more processors are further to:

determine an initial roll speed of the third roll based on configuration information of the camera.

14. The device of claim 8 , where, when determining the entanglement strength of the yarn, the one or more processors are to:

analyze the diameter measurement information to determine an entanglement count in the second portion of the yarn for each elongation level, of the plurality of elongation levels,

compare the entanglement count in the yarn, determined for each elongation level, of the plurality of elongation levels, with an initial entanglement count of the yarn, to calculate an entanglement strength of the yarn for each elongation level, of the plurality of elongation levels, and

determine the entanglement strength of the yarn based on the calculated entanglement strengths.

15. A non-transitory computer-readable medium storing instructions, the instructions comprising:

one or more instructions which, when executed by a processor of a device, cause the processor to:

cause a first roll and a second roll to apply a plurality of elongation levels on a first portion of a yarn provided between the first roll and the second roll;

receive a plurality of tension measurements associated with the first portion of the yarn, based on applying the plurality of elongation levels on the first portion of the yarn;

determine whether the plurality of elongation levels satisfy thresholds based on the plurality of tension measurements;

adjust a roll speed of the first roll or the second roll when at least one of the plurality of elongation levels fails to satisfy at least one of the thresholds;

cause the second roll and a third roll to apply a constant tensile force on a second portion of the yarn provided between the second roll and the third roll;

receive diameter measurement information associated with the second portion of the yarn based on applying the constant tensile force on the second portion of the yarn and based on applying the plurality of elongation levels on the first portion of the yarn;

determine a quantity of entanglements in the yarn, associated with each elongation level, of the plurality of elongation levels, based on the diameter measurement information; and

determine an entanglement strength of the yarn, associated with each elongation level, of the plurality of elongation levels, based on the quantity of entanglements in the yarn associated with each elongation level.

16. The computer-readable medium of claim 15 , where the instructions further comprise:

one or more instructions which, when executed by the processor, cause the processor to:

adjust the roll speed of the first roll for each elongation level of the plurality of elongation levels.

17. The computer-readable medium of claim 15 , where the instructions further comprise:

one or more instructions which, when executed by the processor, cause the processor to:

receive, during the applying of each elongation level, of the plurality of elongation levels, a tension measurement of the second portion of the yarn; and

adjust, based on the tension measurement, a roll speed of the third roll to cause the constant tensile force to be applied on the second portion of the yarn.

18. The computer-readable medium of claim 17 , where the one or more instructions that cause the processor to adjust the roll speed of the third roll include:

one or more instructions which, when executed by the processor, cause the processor to:

determine, based on the tension measurement, a measured tensile force associated with the second portion of the yarn, and

one or more instructions to adjust the roll speed of the third roll based on the measured tensile force associated with the second portion of the yarn.

19. The computer-readable medium of claim 15 , where the one or more instructions that cause the processor to receive the diameter measurement information associated with the second portion of the yarn include:

one or more instructions which, when executed by the processor, cause the processor to:

receive charged couple device (CCD) images of the second portion of the yarn, and

determine the diameter measurement information associated with the second portion of the yarn based on the CCD images.

20. The computer-readable medium of claim 15 , where the one or more instructions that cause the processor to determine the entanglement strength of the yarn include:

one or more instructions which, when executed by the processor, cause the processor to

analyze the diameter measurement information to determine an entanglement count in the second portion of the yarn for each elongation level, of the plurality of elongation levels,

compare the entanglement count in the yarn, determined for each elongation level, of the plurality of elongation levels, with an initial entanglement count of the yarn, to calculate an entanglement strength of the yarn for each elongation level, of the plurality of elongation levels, and

determine the entanglement strength of the yarn based on the calculated entanglement strengths.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2016
From: THE ZEVEN CORPORATION
To: LAWSON HEMPHILL, INC.
Reel/Frame 039461/0862 →
CHANGE OF NAME Recorded Aug 17, 2016
From: TESTING MACHINES. INC.
To: THE ZEVEN CORPORATION
Reel/Frame 039707/0398 →
Continuity (2)
Continuation 12775827 · May 7, 2010
Related Publication 20120125119A1 · May 24, 2012