The present disclosure relates to a system and apparatus for treating fabric and to a fabric construction system. In particular, though not exclusively, this system and apparatus is for application in clothing manufacture. This system and apparatus enables a certain degree and type of stretch and recovery to be imparted into, for example, a waistband or other portions of a garment.
Conventionally, an elasticized waistband interlining with the outer fabric of the waistband ruched or gathered, are used to provide a large degree of stretch. However, a ruched waistband compromises the tailored look and fit of a garment.
Alternatively, a non-stretch interlining may be used as a stiffener for the outer and inner fabric, affording some degree of reinforcement and added resilience. However, a non-stretch interlining provides little give or ease in the area of the garment that incorporates the waistband. For example, when the waist expands after meals, the fit of the garment may become uncomfortable to the wearer. In addition, a wearer falling mid-way between sizing of off-the-shelf waistbanded garments may be forced to select a garment which is either too tight or too loose during normal wear.
The present disclosure minimizes disadvantages of existing systems that are known to impart stretch and recovery.
In accordance with one aspect of the present disclosure, a system and apparatus is provided for imparting a desired stretch and recovery characteristic to woven fabric that contain yard strands. The system comprises a surface for receiving the fabric in a compacted state, the fabric having been stabilized to retain the compaction. The system also comprises an applicator for applying at least one adhesive liquid with known stretch and recovery characteristics to the fabric with the yarn strands in a compacted state. The affixed adhesive liquid thereby facilitates maintaining the desired stretch and recovery characteristic of the fabric after the stabilization has been removed from the fabric.
In one embodiment, the adhesive liquid establishes a stretch and recovery characteristic once the adhesive liquid is baked or cured.
In accordance with another aspect of the present disclosure, a system is provided for imparting a desired stretch and recovery characteristic to woven fabric that contain yard strands. The system comprises a surface for receiving the fabric to be compacted with applied heat and pressure, the fabric further being stabilized after compaction to retain the compaction. The system also comprises an applicator for applying a stretchable and recoverable adhesive ink or plastisol to the fabric with the yarn strands in a compacted state. The affixed stretchable and recoverable adhesive ink or plastisol thereby facilitates maintaining the desired stretch and recovery characteristic of the fabric after the stabilization has been removed from the fabric.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands also includes at least one elongated stabilizer affixed to the fabric with the yarn strands in a compacted state. The at least one affixed elongated stabilizer stabilizes the yard strands in the compacted state prior to affixing the at least one adhesive liquid with known stretch and recovery characteristics to the fabric.
The elongated stabilizer can be dissolvable. The elongated stabilizer can be a cord, thread, or tape.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes a trough through which the fabric is guided along, the trough having an inner bottom surface.
The trough can have a groove on the inner bottom surface. The groove is sized such that a stitched cord may protrude into the groove thereby allowing the fabric to lay flat on the inner bottom surface.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes at least one dispenser for dispensing the adhesive liquid at a desired pressure.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes at least one spreader for spreading the adhesive liquid.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes a print guide for restricting the area of affixing the adhesive liquid.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands may further include a side wall of a print guide or a dam wall for collecting excess adhesive liquid from the fabric and ensuring the maximum height of adhesive liquid allowed on the fabric.
At least one tube is included for withdrawing excess adhesive liquid collected by the print guide side wall or dam wall.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes an oven for curing the adhesive liquid affixed to the fabric.
The above-mentioned features and objects of the present disclosure will become more apparent with reference to the following description taken in conjunction with the accompanying drawings wherein like reference numerals denote like elements and in which:
The disclosure is concerned primarily with consistently achieving ease and comfort using conventional non-stretch fabrics, for example those where the inherent characteristic in the length or width of the material does not have a sufficient degree of ease or stretch to enable a stretch waistband to be produced with conventional methods. Some examples of such fabrics include woven or knitted combinations of polyester/wool, polyester/viscose, cotton etc. It is intended that the fabric so treated would be an outer fabric, but the process can also be applied to lining or interlining fabrics, inner self fabric, or one-piece waistbands.
There is a system for imparting a desired stretch and recovery characteristic to woven fabric that contain yard strands. The system has a surface for receiving the fabric in a compacted state, the fabric having been stabilized to retain the compaction. The system also has an applicator for applying at least one adhesive liquid with known stretch and recovery characteristics to the fabric with the yarn strands in a compacted state. The affixed adhesive liquid thereby facilitates maintaining the desired stretch and recovery characteristic of the fabric after the stabilization has been removed from the fabric. In one embodiment, the adhesive liquid establishes a stretch and recovery characteristic once the adhesive liquid is baked.
In another aspect there is a system for imparting a desired stretch and recovery characteristic to woven fabric that contain yard strands. The system has a surface for receiving the fabric to be compacted with applied heat and pressure, the fabric further being stabilized after compaction to retain the compaction. The system also has an applicator for applying a stretchable and recoverable adhesive ink or plastisol to the fabric with the yarn strands in a compacted state. The affixed stretchable and recoverable adhesive ink or plastisol thereby to facilitates maintaining the desired stretch and recovery characteristic of the fabric after the stabilization has been removed from the fabric.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands also includes at least one elongated stabilizer affixed to the fabric with the yarn strands in a compacted state. The affixed at least one elongated stabilizer stabilizes the yard strands in the compacted state prior to affixing the at least one adhesive liquid with known stretch and recovery characteristics to the fabric. As an example, the elongated stabilizer may be a cord, thread, or tape. In some cases, the elongated stabilizer is dissolvable by heat or water.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes a trough through which the fabric is guided along. The trough has a groove on the inner bottom surface. The groove is sized such that a stitched cord may protrude into the groove thereby allowing the fabric to lay flat on the inner bottom surface. In some cases, the inner bottom surface of the trough is at least one conveyor belt.
Also a dispenser dispenses the adhesive as a adhesive liquid. The dispenser may be attached to the trough and may also be attached to a feeding tank. The dispenser can have a broadened opening.
In another form, the dispenser is a spray. Further, at least one of an angle and a position of the dispenser relative to the fabric may be adjusted.
In another aspect, the system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes at least one spreader for spreading the adhesive liquid. The spreader may be attached to the trough. In one embodiment, at least one of an angle and a position of the spreader relative to the fabric may be adjusted.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands further includes a print guide for restricting the area of affixing the adhesive liquid. The print guide may be attached to the trough. The print guide preferably has an opening sized equal to the area to be coated and to fit at least one of the dispenser and the spreader. In one embodiment, a position of the print guide relative to the fabric may be adjusted. The print guide may have a side wall perpendicular to the walls of the trough for collecting excess adhesive liquid from the fabric.
Instead of a print guide side wall, the system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands may include a dam wall for collecting excess adhesive liquid from the fabric. The dam wall may be attached to the trough. A position of the dam wall relative to the fabric may be adjusted. A spring may be used to adjust the position of the dam wall relative to the fabric. The collection of excess adhesive liquid includes withdrawing the excess adhesive liquid collected by the print guide side wall or dam wall with at least one tube. The at least one tube preferably leads into a feed tank.
The system for imparting a desired stretch and recovery characteristic to woven fabric which contain yard strands can include an oven for curing the adhesive liquid that is affixed to the fabric in an oven. The oven is often operated at a temperature greater than 300 degrees Fahrenheit.
The fabric treated may be in full width form, but typically, as shown in
The fabric may be individual strips or it may be continuous reels. Continuous reels allow higher process efficiency and greater automation to be achieved. However, individual strips may be used based on a design standpoint.
Compaction of the fabric may be carried out by applying heat and pressure to the woven fabric, resulting in the yarn strands of the fabric to be forced closer together. This compaction of the yard strands imparts semi-permanent or permanent ease or stretch into the fabric.
An apparatus may be used to apply a pressure necessary to compact the fabric. In one embodiment, as seen in
The apparatus may also handle continuous reels of fabric. Continuous reels of fabric may be loaded onto the apparatus by an operator. For individual strips of fabric, the operator would have to locate and place the individual strips of fabric in access of the apparatus for compaction.
Preferably, the settings for the temperature and pressure of the steel roller, and the speed of the rubberized conveyor belt are pre-selected for one particular run or a series of runs. However, some or all of these settings may be varied depending on the degree of stretch required and the nature or composition of the material being processed.
The apparatus may also use steam, water mist, or other damping methods on the fabric to aid the compaction process. During the process, the yarn strands of the fabric are forced closer together. The extent of compaction is dependant upon multiple factors, including machine settings, moisture conditions, inherent thermal yarn shrinkage, and composition of the fabric. Upon exiting the apparatus, generally semi-permanent or ease or stretch will have been imparted to the fabric.
It is one aspect of the present disclosure that a fabric composite with desired stretch and recovery properties is achieved by affixing at least one adhesive liquid with known stretch and recovery characteristics onto a compacted stretchable fabric. The compacted stretchable fabric is manufactured by subjecting a non-stretch fabric, for example woven polyester/cotton, to the heat and pressure compaction process, whereby stretch is imparted to the fabric. A suitable adhesive liquid, such as an ink or plastisol with a known stretch and recovery characteristic, for example Spand-E-Sol, is then affixed to the compacted fabric. Usually, the adhesive liquid establishes its stretch and recovery characteristic once it is baked. When affixed, the adhesive liquid maintains the stretch and recovery properties of the compacted fabric imparted by the compaction process. The adhesive liquid may be any color to correspond with the color of the fabric, though a clear adhesive liquid is preferred. More than one adhesive liquid with different stretch and recovery characteristics may be used together to achieve a desired stretch and recovery characteristic for the fabric composite.
The process of manufacturing stretchable fabric composites has the advantage of avoiding extra sewing costs involved in conventional lining composite production and enables a wider range of fabrics to be utilized in the lining of trousers or skirts. Typically, the fabric would be in the form of a continuous reel for further sizing and shaping depending on its intended use.
In another aspect of the present disclosure, the compacted fabric is held in its compacted state by an elongated stabilizer. The elongated stabilizer keeps the compacted fabric from being stretched out before a adhesive liquid with a known stretch and recovery characteristic is applied on it. Examples of forces that would stretch the fabric include, the pulling of a continuous reel of fabric during its treatment process and during the spreading of the adhesive liquid onto the fabric. In one embodiment, as shown in
The stabilizing process of the compacted may be automated at a speed correlating to the speed of the fabric leaving the compactor. A sewing machine may be used to stitch a dissolvable cord onto the fabric or a tape dispenser may be used to affix tape onto the fabric. The position of the stitch is important, thus a sewing guide may be used to ensure that the fabric is fed into the sewing machine such that the cord/thread is stitched exactly where it is needed.
In another aspect of the disclosure, the compacted fabric held with an elongated stabilizer is fed through a trough during its treatment process. Fabric leaving a compaction apparatus may be fed through a sewing guide into the sewing machine and then into the trough or the fabric may be directly fed through the trough. The trough may be slightly wider than the width of the fabric, though the trough may be any size depending on the size and shape of the fabric. A trough wider than the width of the fabric may also include side blocks 80 as shown in
In a further aspect of the disclosure, a dispenser is attached to the trough. The dispenser, usually connected to a feed tank, releases the adhesive liquid onto the compacted fabric. An air pressure piston in the feed tank may be used to create pressure for dispensing the adhesive liquid. The height of the dispenser and the angle of the dispenser to the fabric may be adjusted, for example, by the adjustment bar 32 in
In another aspect of the disclosure, a spreader is attached to the trough. As shown in
In a further aspect of the disclosure, a print guide is attached to the trough. The guide allows the adhesive liquid to be released and spread in a strategically determined surface area. The print guide has an opening with a width that allows the dispenser and spreader to be placed within the opening. In one embodiment, as shown in
In another aspect of the disclosure, as shown in
In another aspect of the disclosure, as shown in
In another aspect of the disclosure, as shown in
In one embodiment of the disclosure, the roller includes rings 78 on the sides of the roller for pulling the fabric. The rings 78 allow the roller to contact the fabric only on the edges of the fabric where the rings contact the fabric and not in the middle where adhesive liquid has been applied. The number of rings on the sides of the roller, width and height of the rings may be changed as desired depending on the fabric and amount of adhesive liquid affixed.
The compacted fabric affixed with a desired amount of stretchable adhesive liquid is placed in an oven to be cured, usually at a temperature greater than 300 degree Fahrenheit. The fabric may be washed to remove a dissolvable elongated stabilizer and may also be folded in preparation for attachment to a garment. The stretchable fabric composite may be further processed, for example, be fed through an overlock machine to eventually provide for a curtain finish or be sewn to a pre-formed stretch/bias lining or lining composite.
Preferably, the settings for the angles of the various components and the speed of the movement of the fabric are pre-selected for one particular run or series of runs, but some or all of these settings can be varied depending on the amount of adhesive liquid to be affixed and the nature or composition of the material being processed.
The fabric or fabric composite produced in accordance with the present disclosure having stretch potential is primarily intended to be incorporated in a waistband around the waists of garments such as trousers or skirts, though the product could also be utilized for any other part of a garment where its benefits would be advantageous. For example, the fabric may provide ease around cuffs, pocket mouths, trouser bottoms, sleeve heads etc. It could also have wider applications to textile articles other than garments, where stiffening or reinforcing with a certain degree of stretch is required.
While the apparatus and method have been described in terms of what are presently considered to be the most practical and preferred embodiments, it is to be understood that the disclosure need not be limited to the disclosed embodiments. It is intended to cover various modifications and similar arrangements included within the spirit and scope of the claims, the scope of which should be accorded the broadest interpretation so as to encompass all such modifications and similar structures.
Many other applications are also envisaged, for example tapes produced for seam sealing in the manufacture of waterproof outer-garments. Conventionally, tapes for this purpose have to be cut on the bias in order to have sufficient stretch, whereas using a tape made from fabric treated according to the present invention has stretch or ease built in and therefore removes the need for biasing.
A conveyor belt, or multiple conveyor belts that allow a stitched dissolvable cord to protrude between them, may be used as the bottom surface of the trough, to help move the compacted fabric along the trough. Cogs before or after the oven may also be used to pull the fabric through the trough. A pre-determined pace for movement of the fabric may be used that corresponds to the speed of the fabric leaving the compaction apparatus and/or the time needed for the fabric to be adequately cured in the oven.
Other methods of affixing the adhesive liquid to the fabric are also possible. The compacted fabric may be dipped into the adhesive liquid. Rollers may be used where some rollers release adhesive liquid and spread the adhesive liquid onto the fabric and while other rollers are heated and used to bake the adhesive liquid.
Combinations of multiple elongated stabilizers, troughs, dispensers, spreaders, print guides, and dam walls may be used together on the same fabric or on multiple fabrics running simultaneously.
The present disclosure includes any and all embodiments of the following claims.
This application claims the benefit of and priority to U.S. Provisional Application Ser. No. 60/914,974, filed Apr. 30, 2007, the contents of which are incorporated by reference herein in its entirety.
Number | Date | Country | |
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60914974 | Apr 2007 | US |