IP Library Granted Patent US 7,378,147
Granted Patent B2
US 7,378,147 · App. 11/601,080 · Granted May 27, 2008

Drawn gel-spun polyethylene yarns

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Quick Facts
Patent No.
US 7,378,147
App. No.
11/601,080
Granted
May 27, 2008
Kind
B2
Abstract

Drawn multi-filament polyethylene yarns and articles thereof having unique signatures in dynamic mechanical analysis reflective of unique microstructures, and having superior ballistic resistant properties.

Claims (11)

1. A drawn polyethylene multi-filament yarn comprising:

polyethylene having an intrinsic viscosity in decalin at 135° C. of from about 5 dl/g to 45 dl/g, fewer than about two methyl groups per thousand carbon atoms, and less than about 2 wt. % of other constituents;

said multi-filament yarn having a tenacity of at least 33 g/d as measured by ASTM D2256-02, and when measured by dynamic mechanical analysis on a Rheometrics Solids Analyzer RSA II in a force proportional mode in tension with the static force held at 110% of dynamic force, the dynamic strain 0.025±0.005%, the heating rate at 2.7±0.8° C./min, and a frequency in the range of from 10 to 100 radians/sec, having a ratio of the peak value of the loss modulus in a γ-dispersion, to the loss modulus of a base line drawn through the wings of said γ-dispersion peak, at the same temperature as said peak value, less than 1.05:1.

2. The polyethylene multi-filament yarn of claim 1 , having in a temperature range of 50° C. to 125° C. and at a frequency of 10 radians/sec, no peak in the loss modulus having a full width at half height at least 10° C.

3. A drawn polyethylene multi-filament yarn comprising:

polyethylene having an intrinsic viscosity in decalin at 135° C. of from about 5 dl/g to 45 dl/g, fewer than about two methyl groups per thousand carbon atoms, and less than about 2 wt. % of other constituents;

said multi-filament yarn having a tenacity of at least 33 g/d as measured by ASTM D2256-02, and when measured by dynamic mechanical analysis on a Rheometrics Solids Analyzer RSA II in a force proportional mode in tension with the static force held at 110% of dynamic force, the dynamic strain at 0.025±0.005%, the heating rate at 2.7±0.8° C./min, and at a frequency of 10 radians/sec, having a ratio of the peak value of the loss modulus in a γ-dispersion, to the loss modulus of a base line drawn through the wings of said γ-dispersion peak, at the same temperature as said peak value, less than 1.05:1, and an integral strength of the β-dispersion of the loss modulus above a base line drawn through the wings of the β-dispersion at least 90 GPa-° C.

4. The polyethylene multi-filament yarn of claim 3 wherein the β-dispersion of the loss modulus has two components.

5. An article comprising a drawn polyethylene multi-filament yarn described in at least one of claim 1 or 3 .

6. The article of claim 5 , comprising at least one network of said drawn polyethylene multi-filament yarns.

7. The article of claim 6 , comprising a plurality of networks of said drawn polyethylene multi-filament yarns, said networks being arranged in unidirectional layers, the direction of the fibers in one layer being at an angle to the direction of fibers in adjacent layers.

Assignments (2)
SECURITY INTEREST Recorded Jan 12, 2026
From: SOLSTICE ADVANCED MATERIALS US, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 074569/0260 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2025
From: TWOMEY, CONOR J.; TAM, THOMAS Y-T.; MOORE, RONALD A.
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 070210/0910 →