AUTONOMOUS COOLING VEST
20200345087 ยท 2020-11-05
Inventors
Cpc classification
A62B17/00
HUMAN NECESSITIES
International classification
Abstract
An autonomous cooling vest to cool its user by evaporating a coolant in contact with the user's skin surface is described. Multifunctional panels attached to the vest in the parts corresponding to the human body are permeable to ambient air and contain a liquid retaining screen kept in contact with the user's skin. The cooling support system automatically controls the transfer of the coolant liquid contained in a reservoir to each screen and allows the user to adjust the operation of the system to activate and deactivate the ventilation on the liquid retained in the screens and adjust the amount of liquid dispersed over the screens as needed. The flow of air ventilated by the fans and the air that permeates through the referred multifunctional panels favor the evaporation of the liquid retained in the screens, promoting the user's cooling.
Claims
1-4. (canceled)
5. A vest integrated with a cooling support system intended for the cooling of a person, comprising at least one reservoir of liquid, a duct network, at least one liquid retaining screen, at least one fan for each liquid retaining screen, at least one propellant pump, means for automatically controlling the functioning of said cooling support system, means for maintaining each liquid retaining screen in contact with the user's skin surface and means for irrigating each liquid retaining screen with the liquid contained in at least one reservoir; the vest integrated with a cooling support system characterized by further comprising: a) at least one hydraulic device comprising means for restraining the flow of liquid which flows through itself; b) at least one pressure sensor comprising means for sensing the pressure of the liquid; c) at least one valve comprising means for opening and closing the flow of liquid; and d) means for the ventilation produced by at least one fan to effect on each liquid retaining screen.
6. The vest integrated with a cooling support system, according to claim 1, characterized by including: a) each reservoir connected to the outlet nozzle of said at least one propellant pump for pressurizing each reservoir, each air pump comprising an air electropump whose electrical contacts are connected in series to a first electric current supply circuit; b) each reservoir connected to the pressure tap of said at least one pressure sensor for sensing the pressure inside each reservoir, each pressure sensor comprising a pressure switch whose electrical contacts are connected in series to the first electric current supply circuit; c) the outlet nozzle of each reservoir connected to the inlet nozzle of said at least one valve for collecting the liquid drained of each reservoir, each valve comprising a solenoid valve whose electrical contacts are connected in series to a second electrical current supply circuit; d) the outlet nozzle of the solenoid valve connected to the inlet nozzle of the duct network; e) the outlet nozzle of each terminal branch of the duct network connected to said at least one hydraulic device for restraining the flow of liquid in the respective terminal branch of the duct network, each hydraulic device being hereinafter referred to as calibrated orifice, comprising an orifice in the tubule whereby the liquid flows, which dimensions make the amount of liquid ejected as a function of the pressure of the liquid in the terminal branch of the duct network; f) the second electric current supply circuit connected in series to at least one electrical device comprising means for repeatedly varying the state of the second electric current supply circuit between open and closed, each said electric device, hereinafter referred as timer, also comprising at least one potentiometer through which the user selects the opening state and closing state times; g) the first and second electric current supply circuits connected in series to an electric current switch; h) the first and second electric current supply circuits connected in series to at least one electric current supply; i) each fan, comprised by a fan powered by electric current, is connected in series to a third electric current supply circuit; j) the third electric current supply circuit connected in series to a second electric current switch; and k) the third electric current supply circuit connected in series to a second electric current switch.
7. The vest integrated with a cooling support system, according to claim 1, characterized by the fact that the means for maintaining each liquid retaining screen in contact with the user's skin surface, the means for irrigating each liquid retaining screen with the liquid contained in at least one reservoir and the means for that the ventilation produced by at least one fan effects on each liquid retaining screen, are supported by a panel, hereinafter referred to as multifunctional panel, which: a) is fixed to the vest in parts corresponding to the user's chest, back, abdomen, arms or legs; b) is comprised of juxtaposed layers, the outermost layer being made of predominantly rigid materials, the intermediate layer being made of predominantly elastic materials and the innermost layer comprising said at least one screen capable of retaining liquid; c) has perforations and in the outer and intermediate layers; d) contains in the intermediate layer a channel with a diameter equal to the outer diameter of the terminal branch of the duct network; e) contains in said channel a terminal branch of the duct network; f) contains in the intermediate layer a dispersion nozzle which interconnects the interstice between the inner and intermediate layers to said channel; g) contains in the intermediate layer at least one cavity with a perforation that transpasses through the entire intermediate layer; and h) contains in said cavity a fan positioned so as to ventilate towards said at least one screen.
8. The vest integrated with a cooling support system, according to claim 2, characterized by the fact that the means for maintaining each liquid retaining screen in contact with the user's skin surface, the means for irrigating each liquid retaining screen with the liquid contained in at least one reservoir and the means for that the ventilation produced by at least one fan effects on each liquid retaining screen, are supported by a panel, hereinafter referred to as multifunctional panel, which: a) is fixed to the vest in parts corresponding to the user's chest, back, abdomen, arms or legs; b) is comprised of juxtaposed layers, the outermost layer being made of predominantly rigid materials, the intermediate layer being made of predominantly elastic materials and the innermost layer comprising said at least one screen capable of retaining liquid; c) has perforations and in the outer and intermediate layers; d) contains in the intermediate layer a channel with a diameter equal to the outer diameter of the terminal branch of the duct network; e) contains in said channel a terminal branch of the duct network; f) contains in the intermediate layer a dispersion nozzle which interconnects the interstice between the inner and intermediate layers to said channel; g) contains in the intermediate layer at least one cavity with a perforation that transpasses through the entire intermediate layer; and h) contains in said cavity a fan positioned so as to ventilate towards said at least one screen.
Description
DESCRIPTION OF THE FIGURES
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
[0050]
BEST MODE FOR REPRODUCING THE INVENTION
[0051] The vest, preferably:
[0052] is made from a vest with a fabric made of leather;
[0053] has a zipper (101) sewn on the vest to connect the left and right sides of the front part of the vest that covers the abdominal and thoracic areas;
[0054] it has elastic straps (102 and 103) sewn on the edges adjacent to the front and back parts of the vest, between the armpits and waist areas, connecting the right and left front parts to the back covering the torso, the length of these straps being adjustable by a buckle; and
[0055] it has leather straps (104 and 105) of 2.0 cm wide and 2.5 mm thick sewn into the vest fabric in the form of straps surrounding the gap corresponding to the passage of the user arms, and in the form of two strips (208 and 209) that connect the two straps passing through the back below the cervical area and maintaining a distance of 30.0 cm from each other at the midpoint of the belts in form of strips; and
[0056] has cutouts of parts of the original vest fabric on the right and left sides in the chest, abdomen, dorsal and lumbar area making a number of eight cutouts, made in the shape of the outline of the respective multifunctional panel that will be superimposed on each cutout, maintaining a 1.0 cm margin from the cutout to the projection contour.
[0057] The cooling support system that is integrated into the vest preferably consists of: a reservoir, multifunctional panels, a pressure switch, an air electropump, a solenoid valve, a timer, a calibrated orifice for each multifunctional panel, a fan for each multifunctional panel, one electric current supply, three electric current supply circuits, a duct network with a terminal branch for each multifunctional panel, two electric current switches and two compartments.
[0058] The reservoir (202), preferably:
[0059] is made of flexible 1.0 mm thick rubber wrapped in an inflexible nylon fabric; with internal volume of 2.5 liters;
[0060] has a cylindrical shape with an internal diameter of 10 cm and a height of 35 cm;
[0061] has an inlet nozzle (203) at the top of the reservoir with a diameter of 4.0 cm, with a 2.5 cm long threaded rod, with a screw cap and with a nut that fixes the inlet nozzle by pressing the rubber of the reservoir against the inlet nozzle flanges;
[0062] has an outlet nozzle (205) at the bottom of the reservoir with a spike connection for in. diameter hoses, with a 1.0 cm long threaded rod and with a nut that fixes the nozzle by pressing the rubber of the reservoir against the outlet nozzle flanges;
[0063] has an air passage (204) at the top of the reservoir with a spigot connection for in. diameter hoses, with a 1.0 cm long threaded rod with a nut that secures the nozzle by pressing the rubber of the reservoir against the flanges of the air passage itself; and
[0064] it is surrounded by two straps (206 and 207) 2.0 cm wide and 2.5 mm thick, sewn to the fabric surrounding the reservoir, one 3.0 cm from the top and another 3.0 cm from the reservoir bottom, such straps being sewn to the straps in the form of strips.
[0065] Each multifunctional panel (106, 107, 108, 109, 210, 211, 212 and 213), preferably:
[0066] is made in three juxtaposed layers, the outermost layer of resin being reinforced by aramid fibers 1.0 mm thick, the intermediate layer of ethylene vinyl acetate (eva) 13.0 mm thick, and the innermost layer, which includes the liquid-retaining fabric, made of 300 g/m.sup.2 grammage cotton fuzzy fabric;
[0067] has irregular trapezoidal, pentagonal or hexagonal contours, depending on the area of the body where the respective multifunctional panel is superimposed, with circular corners of 2.5 cm radius and with the outermost layer molded according to the area of the human body that each multifunctional panel overlaps;
[0068] has holes (601 and 401) that cross the outer and intermediate layers perpendicularly to the surface of the multifunctional panel, the holes having a rectangular profile with rounded edges, equally spaced from each other, maintaining a distance of at least 1 cm from the edges of the multifunctional panel, and covering one third of the surface area of the multifunctional panel;
[0069] has in the geometric center of the intermediate layer a cavity (402) in the form of a parallelepiped with a square cross section of 40.0 mm on the side and 10.0 mm in depth from the outermost surface, where, perpendicular to the plane formed by the bottom of the cavity, a 38.0 mm diameter circular and through hole (403) is drilled from the geometric center of the square in the plane formed by the bottom of the cavity;
[0070] has a first channel (404) open on the side of the intermediate layer with a diameter of 5.0 mm, with an axis of symmetry parallel to the surfaces of the intermediate layer, starting on the side of the intermediate layer and directed to the geometric center in a straight line, with depth such that the bottom of the channel is positioned 5.0 mm away from the walls of the cavity in the form of a parallelepiped;
[0071] has a liquid dispersing nozzle formed from a second channel (405) with 2.0 mm of diameter, opened in the intermediate layer from the surface contacting the screen and directed to the bottom of the first channel, intercepting it such that communicate the first channel to the interstice between the middle layer and the screen; and
[0072] has a third channel (406 and 701) open in the intermediate layer from the contact surface with the outermost layer, perpendicular to this surface and surrounding the entire contour of the intermediate layer 5 mm away from the edge of this layer, being the rectangular cross sectional profile of the third channel 10 mm deep and 1 mm wide.
[0073] The multifunctional panels are attached to the vest, preferably:
[0074] superimposing the cutouts of the original vest fabric corresponding to each respective multifunctional panel;
[0075] sewing each screen of the multifunctional panel directly on the vest fabric, occupying the area corresponding to the respective cutout of the original vest fabric;
[0076] sewing each intermediate layer of the multifunctional panel directly onto the vest fabric, overlapping the respective screen, this sewing being made through the third channel opened in the intermediate layer; and
[0077] gluing the outermost layer of the multifunctional panel with adhesive onto the respective intermediate layer.
[0078] The pressure switch (901), preferably:
[0079] has a normally closed configuration;
[0080] has a switching pressure set to 5 psi; and
[0081] has a pressure tap with spike connection for hoses with an internal diameter of in.
[0082] The air electropump (902), preferably:
[0083] has a 12 v direct current voltage supply;
[0084] has a flow rate of 2 l/min;
[0085] has an outlet nozzle with spike connection for hoses with an internal diameter of in; and
[0086] is of the diaphragm pump type.
[0087] The solenoid valve (906), preferably:
[0088] has a 12 v direct current voltage supply;
[0089] has a normally closed type configuration; and
[0090] has inlet and outlet nozzles with spike connection for hoses with an internal diameter of in.
[0091] The pressure tap socket and the outlet nozzle of the air electropump are connected by hose segments with an internal diameter of in to a Y-shaped adapter (907) with spike couplings that is connected by another segment (908) from the same hose to the air passage nozzle (204) at the top of the reservoir.
[0092] The inlet nozzle (910) of the solenoid valve is connected to the outlet nozzle (205) of the reservoir through a hose segment with an internal diameter of in.
[0093] The duct network with a terminal branch for each multifunctional panel, preferably:
[0094] connects, through a hose segment with an internal diameter of in, the outlet nozzle 909 of the solenoid valve to a multiple tap (905) of spike couplings with outlets in an amount equivalent to the number of multifunctional panels; and
[0095] connects, through segments and hose with an internal diameter of inch and an external diameter of inch, each outlet of the multiple branch 905 to a multifunctional panel.
[0096] The calibrated holes (702), preferably:
[0097] have adapters for insertion in flexible hoses with -inch internal diameter;
[0098] are inserted at a depth of 2.0 cm from the outlet nozzle, one in each terminal branch of the duct network; and
[0099] have a caliber of 0.008 in (inches).
[0100] The outlet nozzle of each terminal branch of the duct network must be inserted in the first channel (404) of a multifunctional panel at a maximum depth of 2.0 cm and fixed in this position with adhesive as shown in
[0101] The electric current source (904), preferably:
[0102] is a battery with three li-ion cells with a charge capacity of 2150 mah (milliampere-hour) each, nominal voltage of 3.6 v (volts) each, connected in series totaling 10.8 v (volts) of nominal voltage.
[0103] The timer (903), described as a device with means for repeatedly varying between an open and a closed state of an electrical current supply circuit, the duration of the opening and closing times of the circuit being controlled by the user, preferably:
[0104] has a 12 v direct current voltage supply;
[0105] it has a selector switch to control the duration of the opening time of the electric current supply circuit connected directly to the timer body;
[0106] it has a selector switch (804) to control the duration of the closing time of the electric current supply circuit connected to the rest of the device through cables with 1 m (meter) in length; and
[0107] it is capable of varying the duration of closing and opening time of the electric current supply circuit between 0 s (second) and 60 s (seconds).
[0108] The fan (703), preferably:
[0109] has a 12 v direct current voltage supply;
[0110] has a parallelepiped shape with a square cross section with 40 mm (millimeters) on its side and 10 mm (millimeters) in thickness;
[0111] has the capacity to ventilate 4 cfm (cubic feet per minute).
[0112] The first electric current supply circuit, preferably:
[0113] connects in series the electrical contacts of the air electropump, the pressure switch, a first electric current switch (802) and the battery.
[0114] The second electrical current supply circuit, preferably:
[0115] connects in series the electrical contacts of the solenoid valve, timer, first power switch and battery.
[0116] The third electric current supply circuit, preferably:
[0117] connects in parallel the electrical contacts of all fans; and
[0118] connects in series the nodes resulting from the parallel connections of the fans to the electrical contacts of a second electrical current switch (803) and the battery.
[0119] The first compartment shown in
[0120] is made of acrylonitrile butadiene styrene plastic;
[0121] is made in the form of a parallelepiped with sides of 20.0 cm, 10.0 cm, 5.0 cm and 2.0 mm thick;
[0122] it is attached to the reservoir at the height of the midpoint of the reservoir's axis of symmetry; and
[0123] contains the air electropump, pressure switch, solenoid valve, timer, battery and multiple tap.
[0124] The second compartment shown in
[0125] is made of acrylonitrile butadiene styrene plastic;
[0126] is made in the form of a parallelepiped with sides of 6.0 cm, 3.0 cm, 1.5 cm and 2.0 mm thick;
[0127] has two strips (806 and 807) of length adjustable by a buckle on each strip, which are fixed with adhesive to the second compartment at the ends of the surface formed by the 6.0 cm and 3.0 cm sides plane, such strips being used for fixing the compartment to the user's forearm;
[0128] is connected to the first compartment by a 1 m long conduit (805); and
[0129] it contains the first and second electric current switches and the timer selector switch, whose electric current conduction cables pass through said conduit.