Linear substrate infusion compartment
US-9718080-B1 · Aug 1, 2017 · US
US12485448B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12485448-B2 |
| Application number | US-202217840227-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 14, 2022 |
| Priority date | May 6, 2016 |
| Publication date | Dec 2, 2025 |
| Grant date | Dec 2, 2025 |
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An apparatus and method for modifying an aspect of an exterior polymer material or polymer type material of a linear substrate with a fluid. The apparatus include a variable exposure gap within which the linear substrate is exposed to the fluid. The width of the exposure gap is varied with the speed of the linear substrate traversing the exposure gap to maintain a constant exposure time of the linear substrate with the modifying fluid.
Opening claim text (preview).
What is claimed is: 1 . A method for modifying an aspect of a linear substrate, the method comprising: providing a processing barrel comprising an outer wall having opposing ends, the processing barrel further comprising a modifying fluid comprising additives; traversing the linear substrate through the processing barrel at a given speed to infuse the additives to the linear substrate, the linear substrate being in a fluid communication with the modifying fluid, wherein traversing the linear substrate through the processing barrel further comprises increasing or decreasing the given speed; defining an exposure length of the linear substrate as a length of the linear substrate that is in the fluid communication with the modifying fluid in the processing barrel; and configuring the exposure length to greater than zero during an acceleration of the linear substrate from the given speed due to the increase or the decrease of the given speed, wherein configuring the exposure length during the acceleration further comprises: increasing the exposure length with an increase in the acceleration of the of the linear substrate from the given speed; and decreasing the exposure length with a decrease in the acceleration of the of the linear substrate from the given speed. 2 . The method of claim 1 , wherein configuring the exposure length comprises moving one of a linear substrate inlet and a linear substrate outlet to a first relative position of a plurality of relative positions, wherein in the first relative position, one of the linear substrate inlet and the linear substrate outlet is located between the opposing ends of a wall and the exposure length having a first length that is greater than zero. 3 . The method of claim 2 , wherein configuring the exposure length comprises moving one of the linear substrate inlet and the linear substrate outlet to a second relative position of the plurality of relative positions, wherein in the second relative position, one of the linear substrate inlet and linear substrate outlet is in a second relative position that is different from the first relative position, and wherein in the second relative position the exposure length has a second length that is different from the first length. 4 . The method of claim 2 , wherein configuring the exposure length comprises moving one of the linear substrate inlet and the linear substrate outlet to a second relative position of the plurality of relative positions, wherein in the second relative position the exposure length that is less than 50% of the first length. 5 . The method of claim 1 , wherein an exposure of an exterior polymer material of the linear substrate varies with a speed of the linear substrate. 6 . The method of claim 1 , wherein the processing barrel further comprises a linear substrate inlet and a linear substrate outlet, and wherein the linear substrate inlet and the linear substrate outlet comprise seals. 7 . The method of claim 1 , the processing barrel further including a fluid inlet and a fluid outlet, and wherein the fluid inlet is positioned toward one end of the processing barrel and the fluid outlet is positioned toward the other end of the processing barrel. 8 . The method of claim 1 , wherein the processing barrel further comprises an inner processing vessel and an outer processing vessel, the inner processing vessel and the outer processing vessel forming a nested arrangement along a longitudinal length of the processing barrel, the inner processing vessel being axially moveable relative the outer processing vessel. 9 . The method of claim 8 , wherein the processing barrel further comprises a linear substrate inlet and a linear substrate outlet, and wherein the linear substrate inlet includes an infeed seal having a central bore configured to allow the linear substrate to pass into the processing barrel while substantially retaining fluid within the processing barrel. 10 . A method for modifying an aspect of a linear substrate, the method comprising: providing a processing barrel comprising an outer processing vessel and an inner processing vessel, the inner processing vessel and the outer processing vessel forming a nested arrangement along a longitudinal length of the processing barrel with at least a portion of a chamber defined therebetween, the processing barrel further comprising a linear substrate inlet and a linear substrate outlet; defining an exposure gap between the linear substrate inlet and the linear substrate outlet; traversing a linear substrate across the exposure gap at a given speed to infuse additives from a modifying fluid contained in the exposure gap to the linear substrate, wherein traversing the linear substrate further comprises increasing or decreasing the given speed; and configuring a length of the exposure gap to greater than zero during an acceleration of the linear substrate from the given speed due to the increase or the decrease of the feed speed, wherein configuring the length of the exposure gap during the acceleration further comprises: increasing the length of the exposure gap with an increase in the acceleration of the of the linear substrate from the given speed; and decreasing the length of the exposure gap with a decrease in the acceleration of the of the linear substrate from the given speed. 11 . The method of claim 10 , wherein the processing barrel further comprises a liquid inlet and a liquid outlet in liquid communication with the chamber. 12 . The method of claim 10 , wherein the linear substrate inlet comprises an inlet seal, and wherein the linear substrate inlet comprises an outlet seal. 13 . The method of claim 10 , wherein the length of the exposure gap comprises a first length that is greater than zero. 14 . The method of claim 13 , wherein the length of the exposure gap comprises a second length that is less than the first length. 15 . The method of claim 10 , wherein the linear substrate inlet comprises an inlet seal that has an inner diameter configured to allow a linear substrate to pass into the processing barrel while substantially retaining infusion liquid within the processing barrel. 16 . A method for modifying an aspect of a linear substrate, the method comprising: providing a processing barrel comprising an outer processing vessel and an inner processing vessel the inner processing vessel and the outer processing vessel forming a nested arrangement along a longitudinal length of the processing barrel with at least a portion of a chamber defined therebetween, the processing barrel also having a linear substrate inlet and defining an inlet opening into the chamber and a linear substrate outlet and defining an outlet out of the chamber, defining an exposure gap between the linear substrate inlet and the linear substrate outlet; traversing a linear substrate across the exposure gap at a given speed to infuse additives from a modifying fluid contained in the exposure gap to the linear substrate, wherein traversing the linear substrate further comprises increasing or decreasing the given speed; and configuring a length of the exposure gap to greater than zero during an acceleration of the linear substrate from the given speed due to the increase or the decrease of the given speed, wherein configuring the length of the exposure gap during the acceleration further comprises: increasing the length of the exposure gap with an increase in the acceleration of the of the linear substrate from the given speed; and decreasing the length of the exposure gap with a decrease in the acceleration of the of the linear
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