CLEANING ARTICLES MADE OF RECYCLED MATERIAL AND METHODS FOR PRODUCING SUCH CLEANING ARTICLES
20210315436 · 2021-10-14
Inventors
Cpc classification
B65D83/0805
PERFORMING OPERATIONS; TRANSPORTING
B65D75/5877
PERFORMING OPERATIONS; TRANSPORTING
A47L13/44
HUMAN NECESSITIES
B65D83/0835
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
This disclosure relates generally to production of clean textiles and, more particularly, to cleaning articles, such as wipers, mops, and swabs, made of a recycled or “upcycled” material for use in a cleanroom environment, and methods for producing such cleaning articles. Such cleaning articles may comprise at least one layer of fabric. The fabric may be formed from at least 50% recycled yarn, and the remainder of the wiper, if any, may be formed from virgin yarn. The recycled yarn may be recycled polyester yarn. The edges of the at least one layer of fabric may be sealed or cut.
Claims
1. A cleaning article made from recycled material comprising: at least one layer of a fabric, wherein the fabric is formed from at least 50% recycled yarn, and the remainder of the fabric, if any, is formed from virgin yarn, and wherein the edges of the at least one layer are sealed or cut.
2. The recycled cleaning article of claim 1, wherein the fabric is formed of at least 70% recycled yarn.
3. The recycled cleaning article of claim 1, wherein the fabric is formed of 100% recycled yarn.
4. The recycled cleaning article of claim 1, wherein the recycled yarn is recycled polyester yarn.
5. The recycled cleaning article of claim 1, wherein the recycled yarn is recycled nylon yarn.
6. The recycled cleaning article of claim 1, wherein the fabric has a sorption capacity of at least 100 mL per m.sup.2.
7. The recycled cleaning article of claim 1, wherein the fabric has a basis weight of 300 g per m.sup.2 or less.
8. A package of wipers comprising a sheet material container, wherein the container contains: a strip or roll of wipers delineated from one another by lines of weakness, and an industrial cleaning liquid absorbed into the wipers, wherein the container is a dispenser bag or a canister; wherein the container comprises an outlet fixture forming a restricted outlet opening through which the wipers can be pulled with substantial resistance so as to allow a wiper extending through the outlet opening to be withdrawn and torn free from the strip when pulled out through the outlet opening, wherein the wiper comprises at least one layer of a fabric, wherein the fabric is formed from at least 50% recycled yarn, and the remainder of the fabric, if any, is formed from virgin yarn, wherein the edges of the at least one layer are sealed or cut, and wherein the industrial cleaning liquid comprises a solvent.
9. The package of wipers of claim 8, wherein the fabric is formed of at least 70% recycled yarn.
10. The package of wipers of claim 8, wherein the fabric is formed of 100% recycled yarn.
11. The package of wipers of claim 8, wherein the recycled yarn is recycled polyester yarn.
12. The package of wipers of claim 8, wherein the recycled yarn is recycled nylon yarn.
13. The package of wipers of claim 8, wherein the fabric has a sorption capacity of at least 100 mL per m.sup.2.
14. The package of wipers of claim 8, wherein the fabric has a basis weight of 300 g per m.sup.2 or less.
15. The package of wipers of claim 8, wherein the solvent is selected from the group consisting of one or more of acetone, isopropyl alcohol, methyl propyl keytone and methyl ethyl keytone, naphtha, and aromatic hydrocarbons.
16. A method for preparing a cleaning article made from recycled material comprising: weaving, knitting, or bonding recycled polyester yarn formed from recycled polyethylene terephthalate (rPET) bottles to form a cleaning article made from recycled material, wherein the cleaning article comprises at least one layer of a fabric, wherein the fabric is formed from at least 50% recycled polyester yarn, and the remainder of the fabric, if any, is formed from virgin yarn, and wherein the edges of the at least one layer are sealed or cut.
17. The method of claim 16 further comprising, before weaving, knitting, or bonding the recycled polyester yarn, forming the recycled polyester yarn from recycled polyester thread.
18. The method of claim 17 further comprising, before forming the recycled polyester yarn, melting dry shredded bottle material and extruding the melted shredded bottle material to form recycled polyester thread.
19. The method of claim 18 further comprising, before melting the dry shredded bottle material, baking sorted and shredded bottle material to dry out the bottle material.
20. The method of claim 19 further comprising, before baking the shredded bottle material, sorting the shredded bottle material.
21. The method of claim 20 further comprising, before sorting the shredded bottle material, shredding a plurality of polyethylene terephthalate (PET) bottles to form shredded bottle material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The following is a description of the examples depicted in the accompanying drawings. The figures are not necessarily to scale, and certain features and certain views of the figures may be exaggerated in scale or in schematic for clarity or conciseness.
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[0028] The foregoing summary, as well as the following detailed description, will be better understood when read in conjunction with the figures. It should be understood that the claims are not limited to the arrangements and instrumentality shown in the figures. Furthermore, the appearance shown in the figures is one of many ornamental appearances that can be employed to achieve the stated functions of the apparatus.
DETAILED DESCRIPTION
[0029] In the following detailed description, specific details may be set forth to provide a thorough understanding of the embodiments of the present disclosure. However, it will be clear to one skilled in the art when disclosed examples may be practiced without some or all of these specific details. For the sake of brevity, well-known features or processes may not be described in detail. In addition, like or identical reference numerals may be used to identify common or similar elements.
[0030] One or more specific embodiments of the present disclosure will be described below. In an effort to provide a concise description of these embodiments, all features with an actual implementation may not be described in the specification. It should be appreciated that in the development of any such actual implementation, as in any engineering or design project, numerous implementation-specific decisions must be made to achieve the developers' specific goals, such as compliance with system-related and business-related constraints, which may vary from one implementation to another. Moreover, it should be appreciated that such a development effort might be complex and time consuming, but would nevertheless be a routine undertaking of design, fabrication, and manufacture for those of ordinary skill having the benefit of this disclosure.
[0031] When introducing elements of various embodiments of the present disclosure, the articles “a,” “an,” “the,” and “said” are intended to mean that there are one or more of the elements. The terms “comprising,” “including,” and “having” are intended to be inclusive and mean that there may be additional elements other than the listed elements.
[0032] Cleanroom applications may benefit from using cleaning articles such as wipers, mops, and swabs to clean surfaces. However, such cleaning articles are not typically made from a recycled material.
[0033] Cleaning articles according to the present disclosure may be made from a fabric comprising recycled or “upcycled” polyethylene terephthalate (rPET). Upcycling, also known as creative reuse, is the process of transforming by-products, waste materials, useless, or unwanted products into new materials or products of better quality and environmental value. Here, PET bottles that might otherwise become landfill are being reused as cleaning articles such as cleanroom wipers, mops, and swabs.
[0034] One advantage of forming cleaning articles such as wipers from recycled PET (rPET) bottles is that there is an overall reduction in the energy consumption required to produce the cleaning article. In fact, the energy consumption may be reduced by as much as 45%.
[0035] Cleaning articles according to the present disclosure may be formed of a fabric comprising a yarn that is polyester, nylon, or a polyester/nylon blend. Polyester may be in the form of filament polyester yarn , spun, or staple polyester yarn. Similarly, nylon may be in the form of filament nylon yarn, spun, or staple nylon yarn. An example cleaning article according to the present disclosure may comprise at least 50% recycled yarn. For example, a cleaning article could be formed of 50% recycled yarn and 50% virgin yarn. Alternatively, an example cleaning article could be formed of fabric that comprises between 1% to 100% polyester yarn (for example 60%, 70%, 80%, or 90% recycled yarn).
[0036] Cleaning articles according to the present disclosure may be used for various applications, particularly cleanroom applications, including: wiping and cleaning surfaces, equipment, and parts; spill control; applying and removing lubricants, adhesives, residues, and other solutions including disinfectants; cleaning with solvents; cleaning gloves, notebooks, phones or any other item entering a cleanroom; and lining trays for holding, protecting, drying and storing of parts, equipment and devices.
[0037] Cleaning articles according to the present disclosure may be cleanroom laundered and packaged providing ultra-low levels of ions and non-volatile residues and designed for use on various surfaces. The cleaning articles should not easily snag or abrade releasing particles and fibers. The cleaning articles should have excellent chemical resistance for compatibility with a variety of solutions. Cleaning articles according to the present disclosure may have fabric with properties as shown in Table 1.
TABLE-US-00001 TABLE 1 Performance Properties Property Typical Value Particles and Fibers LPC: ≥0.5 μm 8.4 × 10.sup.6 particles per m.sup.2 Fibers: >100 μm 2,000 fibers per m.sup.2 Nonvolatile Residue IPA extractant 0.06 g per m.sup.2 DIW extractant 0.01 g per m.sup.2 Ions Sodium 0.15 ppm Potassium 0.03 ppm Chloride 0.10 ppm
[0038] Cleaning articles according to the present disclosure may comprise fabric that has a sorption capacity of at least 100 mL per m.sup.2 (for example, 150-200 mL per m.sup.2, or 300-400 mL per m.sup.2 or 500-600 mL per m.sup.2 or 530 mL per m.sup.2). The fabric may have a sorption rate of 0.3 seconds or less. The basis weight of the fabric may be 300 g per m.sup.2 or less (for example, 100-150 g per m.sup.2, 150-200 g per m.sup.2, or 200-250 g per m.sup.2 or 160 g per m.sup.2).
[0039] Cleaning articles, such as wipers, made with rPET and virgin PET, respectively, may have properties as shown in Table 2. The ion content may be measured by ion chromatography. For example, cleaning articles made with rPET may have a lower sorption capacity than cleaning articles made with virgin PET, while retaining sufficient sorption capacity to be useful as a cleaning article. The basis weight and sorption rate of the cleaning articles may be similar. While there may be some differences in ion values, the differences are not significant to the performance of the cleaning articles.
TABLE-US-00002 TABLE 2 Property rPET Cleaning Article Virgin PET Cleaning Article Basis Weight 125-130 g per m.sup.2 120-125 g per m.sup.2 Sorption Capacity 420-430 mL per m.sup.2 510-520 mL per m.sup.2 Sorption Rate 0.3 seconds or less 0.3 seconds or less Ions (approximate ppm) (approximate ppm) Ammonium 0.8 0.1 Bromide 0.009 0.009 Calcium 0.10 0.09 Chloride 0.07 0.03 Fluoride 0.07 0.009 Lithium 0.009 0.009 Magnesium 0.02 0.02 Nitrate 0.9 0.4 Nitrite 0.03 0.02 Phosphate 0.009 0.04 Potassium 0.1 0.06 Sulfate 0.6 0.03 Sodium 0.3 0.1
[0040]
[0041] As it is shown most clearly in
[0042] The outlet fixture 18 (
[0043] The cap base 24 has four pie-shaped flexible plastic tabs 32 which project radially inwardly on the inside of the base 24, with slots 34 separating the projections 32 from one another. Five tabs 32 forming a “star” pattern also can be used. The projections 32 form a restrictive outlet opening structure 30 which impedes the movement of wiper material, such as the wiper 28, when it is pulled outwardly through the outlet opening. The projections 32 bend and flex (as shown in
[0044] The structure 24 has internal threads and is screwed onto an outlet spout 26 (see
[0045] Opening the Bag
[0046] When the package 10 (shown in
[0047] As it is shown in
[0048] As it is shown in
[0049] As it is shown in
[0050] Outlet Fixture Structure
[0051] Referring to
[0052] The spout structure 26 includes a bottom flange 62 extending outwardly which is bonded to the edges of a circular hole cut in the material 13 of the top portion of the bag. The material of the outlet fixture 18 preferably is polyethylene. The inner surface of the bag material also is polyethylene so that the bag and outlet fixture are easily thermally bonded together.
[0053] Wiper Material
[0054] As noted above, the wiper material is formed into an elongated strip, a portion of which is shown in
[0055] The material of which the strip is made depends upon the use to which the wipers are to be put. For uses in which extremely particle-free wipers are not required, such as in cleaning automobiles, airplanes and other vehicles prior to painting, or at other times, a highly suitable material is a hydroentangled mixture of synthetic fibers and cellulose fibers such as that sold under the trademark “TechniCloth” by the Texwipe Company.
[0056] Other usable materials include those which are absorbent, do not fall apart easily when moistened, are resistant to the solvents absorbed into them and are sufficiently inexpensive for the use. The materials also should be capable of using perforations to facilitate tearing.
[0057] According to the present disclosure, the materials should be formed of a fabric comprising at least 50% recycled yarn. For example, a cleaning article could be formed of 50% recycled yarn and 50% virgin yarn. Alternatively, an example cleaning article could be formed of fabric that comprises between 1% to 100% polyester yarn (for example 60%, 70%, 80%, or 90% recycled yarn).
[0058] Cleaning Liquid
[0059] Preferably, the wipers in the roll 40 are pre-moistened when packaged at the factory. This is done by encasing the roll in the bag, and pouring a pre-measured quantity of cleaning liquid into the bag before sealing it with the seal 68. Preferably, the end 28 of the first wiper is pulled outwardly from the center core to a position where it is adjacent the outlet spout 26 so that it can be easily grasped by a user.
[0060] The cleaning liquid can be any of a wide variety of liquids used for cleaning purposes, including water, isopropyl alcohol, etc.
[0061] For many applications, such as for cleaning the surfaces of aircraft and automobiles before painting, it is preferred to use more aggressive cleaning solvents such as acetone, MPK, MEK or mixtures of those substances together with naphtha and other aromatic hydrocarbons. Such aggressive solvents often are deleterious to the materials of which typical prior art wiper tubs are made.
[0062] The quantity of cleaning liquid absorbed into the wiper material varies depending upon the use to which it is to be put. Thus, the quantity can be anywhere from enough to moisten the entire roll, which is approximately 20 to 25 percent of saturation (“wetted”), up to or exceeding absorbive capacity (“saturation”).
[0063] In some uses to which the wipers may be put, the cleaning substance will comprise or contain a biocide to be used in killing germs. Such wipers often are used in pharmaceutical manufacturing to clean and sterilize working surfaces. Therefore, the term “cleaning liquid” as used herein includes biocides or mixtures of biocides with other liquids.
[0064] Bag Material
[0065] In accordance with one aspect of the present disclosure, the material of which the bag containing the wiper roll is made, consists of a laminate including at least one layer of metal foil, preferably aluminum foil, to serve as a vapor barrier, and a plurality of plastic layers.
[0066] As it is shown in
[0067] The laminate differs from prior laminates for similar bags primarily in the addition of the inner layer 72 of polyester between the polyethylene layer and the foil layer.
[0068] Applicant has recognized that the polyethylene is brittle and tends to crack under normal handling and that such cracks also tend to cause the metal foil to tear. The polyester layer is more flexible and minimizes the tearing of the foil.
[0069] The laminate is known for use in bags for iodine solution used in hospitals, etc., but is not believed to be known for use in wiper bags.
[0070] The laminate also is strong and tough enough to resist tearing when a wiper is being pulled out of the bag.
[0071] Portability
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[0073] The pocket 80 also can represent a tool pouch or shop apron worn around a worker's waist, or a receptacle for holding the dispenser 10 at a workstation.
[0074] Although the preferred form of the bag shown in
[0075] Zip-Pack
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[0077] Rather than a circular hole into which a dispenser fixture is secured, as in the embodiment shown in
[0078] A disposable label using pressure sensitive adhesive (PSA) 94 covers the zipper structure for shipping and storage until ready for use.
[0079] As is it shown in
[0080] The wipers 102 are pre-moistened with pre-determined quantities of liquid cleaning solutions as with the wipers described above and stored in roll form.
[0081] When the user desires to remove a wiper from the bag 90 for use, the disposable label 94 is removed and discarded, and the zipper pull 96 is moved from its closed position to the opposite end, the upper edge of the top wall 12 is lifted up, as shown in dashed lines 100 in
[0082] The zipper type package shown in
[0083] The opening through which wipers can be withdrawn is much larger and easier to use. The zipper uses no adhesives which can stick to the hands and gloves of the user. In addition, it is not necessary to make certain that the surfaces onto which the prior adhesive strip is attached are smooth so as not to leave any gaps in the closure of the package. Thus, it is easier to securely close the bag.
[0084] In addition, the slider 96 can be easier to operate, especially if the user is wearing gloves, than an adhesive strip, which might require one to push his or her fingernails underneath the edge of the strip to lift it, thus requiring the removal of gloves.
[0085] Preferably, the material of which the walls of the bag 90 are made is the same as that for the bag shown in
[0086]
[0087] Wipers according to the present disclosure may come in various sizes, such as (length×width): 4″×4″, 6″×6″, 9″×9″, 9″×31″, 9″×32″, 12″×12″, and 24″×44″. The wipers may be packaged in bags or boxes containing multiple wipers (for example, 25, 50, 75, 100, 150, 200, or 300 wipers per bag). Wipers may be packaged dry or pre-wetted and in sterile dry and pre-wetted forms. Pre-wetted wipers may be wetted with a degreaser or a solvent such as isopropyl alcohol (IPA), such as a 70% IPA blend, or acetone.
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[0092] While the present disclosure has been described with reference to certain implementations, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the scope of the present method or system. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the present disclosure without departing from its scope. For example, systems, blocks, or other components of disclosed examples may be combined, divided, re-arranged, or otherwise modified. Therefore, the present disclosure is not limited to the particular implementations disclosed. Instead, the present disclosure will include all implementations falling within the scope of the appended claims, both literally and under the doctrine of equivalents.