IP Library Granted Patent US 11,970,802
Granted Patent B2
US 11,970,802 · App. 16/918,396 · Granted Apr 30, 2024

Fibrous network structure having excellent compression durability

Inventors: Teruyuki Taninaka (Otsu, JP); Shinichi Kobuchi (Osaka, JP); Hiroyuki Wakui (Otsu, JP)
Assignee: TOYOBO CO., LTD.
D04H3/009D01D5/24D04H3/03D04H3/16D01D5/253D01F6/86D10B2331/04
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,970,802
App. No.
16/918,396
Granted
Apr 30, 2024
Kind
B2
Abstract

The present invention provides a network structure having excellent repeated compression durability, the network structure having a low repeated compression residual strain and a high hardness retention after repeated compression. A network structure comprising a three-dimensional random loop bonded structure obtained by forming random loops with curling treatment of a continuous linear structure including a polyester-based thermoplastic elastomer and having a fineness of not less than 100 dtex and not more than 60000 dtex, and by making each loop mutually contact in a molten state, wherein the network structure has an apparent density of 0.005 g/cm 3 to 0.20 g/cm 3 , a 50%-constant displacement repeated compression residual strain of not more than 15%, and a 50%-compression hardness retention of not less than 85% after 50%-constant displacement repeated compression.

Claims (35)

1. A process for producing a network structure comprising:

distributing a polyester-based thermoplastic elastomer to nozzle orifices from a multi-row nozzle having a plurality of orifices,

discharging the polyester-based thermoplastic elastomer downward through the nozzle at a spinning temperature higher by not less than 20° C. and less than 120° C. than the melting point of the polyester-based thermoplastic elastomer to form continuous linear structures,

contacting the continuous linear structures each other in a molten state and thereby fusing the continuous linear structures to form a three-dimensional structure,

providing a heat-retaining region below the nozzle when the polyester-based thermoplastic elastomer is spun,

sandwiching the three-dimensional structure with a take-up conveyor net,

cooling the three-dimensional structure with cooling water in a cooling bath,

drawing out the three-dimensional structure,

draining or drying the three-dimensional structure to obtain the network structure having both surfaces or one surface smoothed, wherein

a length of the heat-retaining region is 20 mm or more,

the heat-retaining region is provided downward from a position of not more than 50 mm immediately below the nozzle,

the network structure has a 50%-constant displacement repeated compression residual strain after 80000 times of repetition of not more than 15%, and

the network structure has a 50%-compression hardness retention after 50%-constant displacement repeated compression of not less than 85%.

2. A process for producing a network structure comprising:

distributing a polyester-based thermoplastic elastomer to nozzle orifices from a multi-row nozzle having a plurality of orifices,

discharging the polyester-based thermoplastic elastomer downward through the nozzle at a spinning temperature higher by not less than 20° C. and less than 120° C. than the melting point of the polyester-based thermoplastic elastomer to form continuous linear structures,

contacting the continuous linear structures each other in a molten state and thereby fusing the continuous linear structures to form a three-dimensional structure,

sandwiching the three-dimensional structure with a take-up conveyor net disposed so as to be partially exposed over a water surface,

cooling the three-dimensional structure with cooling water in a cooling bath,

drawing out the three-dimensional structure,

draining or drying the three-dimensional structure to obtain the network structure having both surface or one surface smoothed, wherein

a net surface temperature of the take-up conveyor net over the water surface at or around a fiber-falling region is not less than 80° C., the network structure has a 50%-constant displacement repeated compression residual strain after 80000 times of repetition of not more than 15%, and

the network structure has a 50%-compression hardness retention after 50%-constant displacement repeated compression of not less than 85%.

3. A process for producing a network structure comprising:

distributing a polyester-based thermoplastic elastomer to nozzle orifices from a multi-row nozzle having a plurality of orifices,

discharging the polyester-based thermoplastic elastomer downward through the nozzle at a spinning temperature higher by not less than 20° C. and less than 120° C. than the melting point of the polyester-based thermoplastic elastomer to form continuous linear structures,

contacting the continuous linear structures each other in a molten state and thereby fusing the continuous linear structures to form a three-dimensional structure,

sandwiching the three-dimensional structure with a take-up conveyor net,

cooling the three-dimensional structure with cooling water in a cooling bath,

drawing out the three-dimensional structure,

draining or drying the three-dimensional structure to obtain the network structure having both surface or one surface smoothed, wherein

a temperature of the cooling water in the cooling bath at or around a fiber-falling region is not less than 80° C., and

a nozzle face-cooling water distance is 25 cm to 35 cm,

the network structure has a 50%-constant displacement repeated compression residual strain after 80000 times of repetition of not more than 15%, and

the network structure has a 50%-compression hardness retention after 50%-constant displacement repeated compression of not less than 85%.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2023
From: TOYOBO CO., LTD.
To: TOYOBO MC CORPORATION
Reel/Frame 064649/0628 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2020
From: TANINAKA, TERUYUKI; KOBUCHI, SHINICHI; WAKUI, HIROYUKI
To: TOYOBO CO., LTD.
Reel/Frame 053101/0199 →
Priority Claims (2)
JP 2013-037113 · Feb 27, 2013 · national
JP 2013-117715 · Jun 4, 2013 · national
Continuity (2)
Continuation 14770696
Related Publication 20200332445A1 · Oct 22, 2020