MOISTURE DETECTOR USING WATER-SOLUBLE CONDUCTOR
20200246500 ยท 2020-08-06
Inventors
Cpc classification
A61L15/62
HUMAN NECESSITIES
A61F13/15764
HUMAN NECESSITIES
A61F13/49
HUMAN NECESSITIES
International classification
A61F13/49
HUMAN NECESSITIES
A61F13/15
HUMAN NECESSITIES
Abstract
A disposable moisture detection component manufactured from a water soluble conductive polymer film-forming and printable mixture with a resistivity of 100 ohms or less. Moisture detection component is embedded in incontinent articles such as diapers and bedpans. Conductive polymer dissolves in the presences of urine or feces and when connected to an electronic circuit, provides diaper status to a caregiver.
Claims
1. An water soluble conductive polymer film-forming and printable mixture comprising: a water-soluble polymer about 5 wt % to about 40 wt % by weight selected from the group consisting of polyethyloxyazoline, polyvinyl pyrrolidone, polyvinyl alcohol, polyacrylamide, polyglycol, and polyacrylic acid or combination thereof; electrically conducting particles in the amount of 5 wt % to 60 wt % selected from the group consisting of conductive metal particles, carbon black particles, graphite particles, graphene particles; an effective solvating amount of water to dissolve water-soluble polymer; each of said amounts being based upon the total weight of said mixture resulting in a water-soluble conductor with 20 ohms per square to 100 ohms per square resistivity.
2. The mixture of claim 1 containing from 5% wt to 15% wt parts by weight plasticizer selected from the group consisting of dimethylformamide, dimethylacetamide, ethylene glycol, propylene glycol, glycerol and water-soluble polyglycols. Preferred plasticizers are dimethylformamide, dimethylacetamide, ethylene glycol, propylene glycol and water-soluble polyglycols.
3. The mixture of claim 1 containing up to 5% with 1% wt to 3% wt preferred water soluble or water dispersible polymeric thickening agents and mixtures.
4. The mixture of claim 1 thickness from about 20 microns to 150 microns and preferably 30 microns to 90 microns deposited or attached on a fabric substrate.
5. The mixture of claim where electrical conducting particles are less than 1000 nanometers with a concentration of said conducting particles less than 100 ohms per square in a film 80 microns thick.
6. Water soluble conducting film comprising: a water-soluble polymer mixed with electrical conducting particles less than 1000 nanometers with a concentration of said conducting particles less than 100 ohms per square in a film 80 microns thick; having moisture sensors die cut from the film producing parallel stripes 3 to 10 millimeters wide, spaced 5 to 25 millimeters apart with the stripes connected with a link 103 conductor; wherein moisture sensor is centered the length of the incontinent garment with the electronic link connector located above the anus of a wearer of the incontinent garment; wherein manufactured incontinent garment incorporates the moisture sensor with the stripes available for electronic contact at the front top edge; and a portion of the moisture sensor stripes at the edge of the garment are accessible to determine change in sensor resistance when penetrated by moisture whereby the water-soluble polymer stripe or stripes dissolve and the conductive particles disperse resulting in an increase of sensor resistance of at least 2 when compared to a dry sensor.
7. A moisture sensor embedded in a diaper to measure the wetness of the diaper comprising: conductive particles suspended in a water-soluble film in a concentration producing 100 ohms per square or less; water-soluble film dissolves in contact with urine reducing the cross section area of the film increasing the resistance; water-soluble film erosion from urine is calibrated for particular urine volumes wicked past the film and the associated resulting resistance; a table of values of volume and resulting resistance is used in the electronic monitoring device to record and display or communicate degree of diaper wetness.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTION OF THE INVENTION
[0018] The invention is a solution for managing incontinence with electronic wetness monitor to provide caregivers notice of a soiled incontinent garment or pad and avoid leakage resulting in soiled clothing and/or furniture items such as chairs and beds. Invention enables caregivers to quickly remove the soiled diaper minimizing the potential for rash and eventual urinary track infection associate with prolonged periods of time in a soiled diaper.
[0019] The invention is a novel way to manufacture a moisture sensor combining water-soluble polymeric films with conductive fine particles where the water-soluble film disintegrates in water (urine and/or feces) dispersing the conductive particles. Urine and/or feces disintegrates the conductive polymeric film disrupting or eliminating conductivity in the portion of the film that lays bare to urine and/or feces and the disruption is detected by an electronic sensor connected to the film. Disruption means an increase in resistivity. The water-soluble conductive polymer film-forming and printable composition mixes polyvinyl pyrrolidone, polyvinyl alcohol and aliphatic polyethers or polyethylene glycols or a combination thereof with conductive gold, silver, carbon black, graphene, or graphite or a combination thereof manufacturing a water soluble conductive material for fabricating moisture sensors.
[0020] Flexibility of the polymeric film is improved with a plasticizer 5% wt to 15% wt such as water-soluble polyglycols. Additionally, thickening agent such as sodium carboxymethylcellulose can be used to provide a viscosity of 2 poise to about 1500 poise for casting or printing the conductive polymer.
[0021] One embodiment depicted in
[0022] WSC is designed for a resistively per square of 20 ohms to 100 ohms and preferably 25 to 50 ohms per square at a thickness of 40 microns to 80 microns. WSC must be flexible to accommodate the wearer's movement in and with the incontinent garment. Plasticizers are added to the dimethylformamide, dimethylacetamide, ethylene glycol, propylene glycol and water-soluble polyglycols. Plasticizers improve the flexibility and resistance to cracking or flexing of the mixed polymer films of this invention. Flexible means twisting and folding without changing the resistance per square of the dry WSC sensor 100.
[0023] One fabrication of sensor 100, referred to as stamped water soluble conductor (SWSC), uses POVH carbon black film with width W1 105 stamped or otherwise cutout with spacing S1 104 and length L1 106 centered on W1 105 repeating every (L1 106+W2 107) length for 5000 meters or more.
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[0025] A preferred embodiment of the invention is a liquid WSC that can be printed on liquid permeable fabric 502 using a low cost printing machine as depicted in
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[0030] Urine is wicked from the top sheet 601 by the acquisition layer 602 past sensor layer 500a into absorption layer 605. Urine passing the WSC in the sensor 100, erodes the WSC stripes increasing the resistance, but does not disperse the carbon, which would create an open circuit. In one instance, the resistance between WSC contacts 503a and 504a was measured after 50 ml of synthetic urine was poured on the diaper in the crotch area, followed by additional 50 ml volume poured on the diaper while measuring resistance during and after each application of 50 ml of urine. The WSC opened after 1000 ml to 1500 ml of synthetic urine was poured on the crotch area of the diaper 700.
[0031] WSC sensor 100 can be used to monitor the time and volume of urine and feces in diapers 700 providing wearer's incontinent garment status to a caregiver. Relationship between excreta volume and WSC sensor 100 resistances is programmed into a monitor to provide the caregiver the time for various episodes of urination or bowel movement. Caregiver will have the information regarding the patient's incontinence to make decisions for the best health of the patient. Wetness not sufficient to trigger an alarm under normal circumstances would be detrimental to the patient if the wetness were prolonged in time. The WSC sensor 100 along with an attached monitor would allow or flag the caregiver to replace the soiled incontinent garment with a clean dry garment.