IP Library Granted Patent US 9,918,559
Granted Patent B2
US 9,918,559 · App. 14/364,324 · Granted Mar 20, 2018

Three-dimensional net-like structure

Inventor: Hiroko Osaki (Kariya, JP)
Assignee: C-ENG CO., LTD.
A47C31/006A47C27/122Y10T442/10
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Quick Facts
Patent No.
US 9,918,559
App. No.
14/364,324
Granted
Mar 20, 2018
Kind
B2
Abstract

By taking into account the difficulty in smoothly bending along the shape of, for example, a care bed, there is provided a three-dimensional net-like structure made from polyethylene having a swelling ratio dependent on a shear rate such as to be 0.93 to 1.16 at a shear rate of 24.3 sec −1 and 1.15 to 1.34 at a shear rate of 608 sec −1 and having an MFR of 3 to 35 g/10 min and a density of 0.82 to 0.95 g/cm 3 and configured to have a spring structure of filaments randomly brought into contact with and tangled with one another, have a three-dimensional striped sparse-dense configuration in a lateral direction relative to an extrusion direction. The swelling ratio is shown as D 2 /D 1 against shear rate when a molten thermoplastic resin is extruded to filaments from a capillary having a tube inner diameter D 1 of 1.0 mm and a length of 10 mm and D 2 denotes a diameter of cross section of the filaments extruded and cooled down.

Claims (29)

1. A three-dimensional netted structure bendable in the direction of the extrusion direction made from a very low density polyethylene (VLPE) or a linear low-density polyethylene (LLDPE) having a swelling ratio dependent on a shear rate and configured to have a curled spring structure of filaments randomly brought into contact with and tangled with each other, have a three-dimensional striped sparse-dense configuration in a lateral direction relative to an extrusion direction, and have a filament diameter of 0.2 to 1.3 mm and a bulk density of 0.01 to 0.2 g/cm 3 ,

wherein

the swelling ratio is shown as D 2 /D 1 against shear rate when the polyethylene in molten state is extruded to the filaments from a capillary having a tube inner diameter D 1 of 1.0 mm and a length of 10 mm at a temperature of 190° C. and D 2 denotes a diameter of a cross section of the polyethylene filaments extruded and cooled down;

the swelling ratio of the polyethylene is 0.93 to 1.16 at a shear rate of 24.3 sec −1 , the swelling ratio of the polyethylene is 1.00 to 1.20 at a shear rate of 60.8 sec −1 , the swelling ratio of the polyethylene is 1.06 to 1.23 at a shear rate of 121.6 sec −1 , the swelling ratio of the polyethylene is 1.11 to 1.30 at a shear rate of 243.2 sec −1 , the swelling ratio of the polyethylene is 1.15 to 1.34 at a shear rate of 608.0 sec −1 , or the swelling ratio of the polyethylene is 1.16 to 1.38 at a shear rate of 1216 sec −1 ; and

the three-dimensional netted structure has a surface layer in the extrusion direction which has a higher bulk density than the other area.

2. A three-dimensional structure, the three-dimensional structure comprising polyethylene filaments, each of the polyethylene filaments being produced by extruding polyethylene in molten state through a capillary at a temperature of 190° C. to form an intermediate polyethylene filament and then cooling down the intermediate polyethylene filament, the polyethylene in the molten state having a shear rate;

wherein:

the polyethylene filaments have a curled spring shape and are randomly contacted and tangled with each other;

the three-dimensional structure comprises a plurality of sparse portions, a plurality of dense portions, and a surface layer;

the surface layer is in a sheet shape and has a sheet surface;

each of the plurality of sparse portions has a first density;

each of the plurality of dense portions has a second density;

the surface layer has a third density;

the first density is lower than the second density;

the second density is lower than the third density;

each of the plurality of sparse portions and each of the plurality of dense portions are disposed alternately along the sheet surface to form a sparse-dense configuration;

the polyethylene filaments have a filament diameter of 0.2 to 1.3 mm and a bulk density of 0.01 to 0.2 g/cm 3 ;

the polyethylene filaments have a swelling ratio;

the swelling ratio is defined as D 2 /D 1 , wherein D1 denotes an inner diameter of the capillary and is 1.0 mm, and the capillary has a length of 10 mm, and D 2 denotes a diameter of a cross section of the polyethylene filaments; and

the swelling ratio is 0.93 to 1.16 when the shear rate is 24.3 sec −1 , the swelling ratio is 1.00 to 1.20 when the shear rate is 60.8 sec −1 , the swelling ratio is 1.06 to 1.23 when the shear rate is 121.6 sec −1 , is 1.11 to 1.30 when the shear rate is 243.2 sec −1 , the swelling ratio is 1.15 to 1.34 when the shear rate is 608.0 sec −1 , or the swelling ratio is 1.16 to 1.38 when the shear rate is 1216 sec −1 .

3. The three-dimensional structure of claim 2 , wherein the polyethylene filaments comprise an antimicrobial agent.

4. The three-dimensional structure of claim 2 , wherein

the polyethylene is a linear low-density polyethylene (LLDPE) or a very low density polyethylene (VLPE); and

the polyethylene has a density of from 0.82 to 0.95 g/cm 3 .

5. The three-dimensional structure of claim 4 , wherein the polyethylene has a density of from 0.85 to 0.94 g/cm 3 .

6. The three-dimensional structure of claim 2 , wherein the surface layer has a thickness of from 0.3 to 3.5 mm.

7. The three-dimensional structure of claim 2 , wherein

the surface layer is a laminate material; and

the surface layer is bonded to or thermally molded with the plurality of sparse portions and the plurality of dense portions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2014
From: OSAKI, HIROKO
To: C-ENG CO., LTD.
Reel/Frame 033073/0798 →
Priority Claims (1)
KR 10-2011-0134777 · Dec 14, 2011 · national
Continuity (1)
Related Publication 20140370769A1 · Dec 18, 2014