WO2017088707A1 - 一种洗浴护理设备 - Google Patents

一种洗浴护理设备 Download PDF

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Publication number
WO2017088707A1
WO2017088707A1 PCT/CN2016/106552 CN2016106552W WO2017088707A1 WO 2017088707 A1 WO2017088707 A1 WO 2017088707A1 CN 2016106552 W CN2016106552 W CN 2016106552W WO 2017088707 A1 WO2017088707 A1 WO 2017088707A1
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WIPO (PCT)
Prior art keywords
water
water tank
ozone
outlet
bath care
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PCT/CN2016/106552
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English (en)
French (fr)
Inventor
于华新
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于华新
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Publication date
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Publication of WO2017088707A1 publication Critical patent/WO2017088707A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/02Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2203/00Additional characteristics concerning the patient
    • A61H2203/02Additional characteristics concerning the patient immersed in liquid
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/72Treatment of water, waste water, or sewage by oxidation
    • C02F1/78Treatment of water, waste water, or sewage by oxidation with ozone

Definitions

  • the invention belongs to the technical field of daily necessities, and in particular relates to a bath care device.
  • Ozone is an allotrope of oxygen and is a broad-spectrum, high-efficiency, fast biocide. Based on this, many bathing devices using ozone water for sterilization and disinfection have appeared in the prior art.
  • the object of the present invention is to overcome the defects of the prior art and provide a bath care device which can not only effectively sterilize and disinfect, but more importantly, it can effectively reduce ozone leakage and prevent excessive ozone from being present in the air and causing damage to the human body. Damage to ensure the safety of the equipment.
  • the technical solution of the present invention is:
  • a bath care device comprising a water tank and an ozone generator in communication with the water tank, the key of which is:
  • the water tank is a closed water tank to reduce the excess water that is not soluble in water and directly overflow into the air, and the water tank is provided with an exhaust pressure release hole to connect the cavity of the water tank with the outside air to maintain The internal pressure of the water tank is uniform, and an ozone exhaust gas treatment device is disposed on the exhaust pressure relief hole to process ozone overflowing when the water tank is exhausted;
  • the bath care device is further provided with an ozone gas circulation pump to re-inject water which is not dissolved in water above the liquid level enriched in the water tank into the water for recycling, thereby reducing ozone overflow.
  • the device is further provided with a controller, and the controller is respectively connected to the ozone generator and the ozone gas circulation pump to realize integrated control.
  • the device is further provided with a temperature water level sensor, and the temperature water level sensor is connected to the controller.
  • the temperature water level sensor monitors a water level in the water tank to calculate a water storage amount of the water tank, and the temperature water level sensor further monitors a water temperature in the water tank, by the water storage amount and the water temperature Ozone generation of the ozone generator is controlled such that the ozone reaches a set dissolved concentration. In this way, the ozone generation is combined with the water temperature and the water level to control, so that the formed ozone water is more safely and effectively sterilized.
  • the set dissolution concentration is a concentration that is effectively sterilized within a set action time. This dissolved concentration ensures that ozone water sterilization is effective, and the side effects thereof are negligible.
  • the ozone generator generates ozone gas by means of high-voltage corona air.
  • the ozone generator is positioned higher than the top of the water tank, and the ozone generator is in communication with the bottom of the water tank through a first conduit.
  • the arrangement of the structure is on the one hand to prevent the liquid in the water tank from flowing back from the first pipe to protect the ozone generator from damage, and on the other hand to inject ozone from the bottom of the water tank to prolong the residence time of the ozone gas in the water. Increase the solubility of ozone in water.
  • a first air detonating device is disposed on the first outlet end of the first pipe at the bottom of the water tank to increase the contact area of the ozone gas with the water, and to promote the dissolution of the ozone gas in the water;
  • the first detonating device is a gas dispersing device with dense small holes to decompose the ozone gas into a plurality of small bubbles to increase contact with water.
  • the top of the water tank is in communication with the bottom of the water tank through a second conduit, and the ozone gas circulation pump is located on the second pipeline, and the ozone gas circulation pump is located higher than the top of the water tank.
  • the arrangement of the structure is to prevent the liquid in the water tank from flowing back from the second pipe to protect the ozone gas circulation pump from damage, and to re-inject ozone from the bottom of the water tank to extend the ozone gas in the water.
  • the residence time increases the solubility of ozone in water.
  • a second air detonating device is disposed on the second outlet end of the second pipe at the bottom of the water tank, in order to increase the contact area between the ozone gas and the water, and to promote the dissolution of the ozone gas in the water;
  • the second detonating device is a gas dispersing device with dense small holes, and is also for decomposing the ozone gas into a plurality of small bubbles to increase contact with water.
  • the ozone exhaust gas treatment device is provided with a first heating device, and the adsorbed surplus ozone is rapidly decomposed by the high temperature action of the first heating device.
  • the adsorbent material used in the ozone tail gas treatment device is activated carbon.
  • a second heating device of the bath care device is disposed at a bottom of the cavity of the water tank for heating water in the water tank; the second heating device cooperates with the temperature water level sensor to make the water level It is not heated below the preset water level to prevent dry burning, and the water temperature reaches the set temperature to stop heating to avoid excessive heating and waste resources.
  • the top of the water tank is provided with a water tank cover for water injection, such that the water tank cover is positioned higher than the water level, and the water tank cover can be openly filled with water to ensure that water does not overflow; the exhaust pressure relief hole Located on the water tank cover, tightly structured Make up.
  • the device is further provided with a bathing water outlet, the bathing water outlet is connected to the water outlet of the water tank through a third pipeline, and the water pump and the water pump air guiding and draining pipe are arranged on the third pipeline.
  • the outlet pump is connected to the controller; the position of the bath outlet is higher than the top of the tank, and the position of the outlet drain of the outlet pump is lower than the bottom of the tank.
  • the bathing water outlet is arranged to lead the liquid in the water tank to a position that is easy for the user to operate, so that the equipment is more humanized; the setting of the water pump is such that the equipment comes with pressure and water; the position of the bathing water outlet is higher than the top of the water tank.
  • the bath outlet is higher than the highest liquid level of the tank, and the ozone overflow is effectively avoided; the outlet of the water pump is lower than the bottom of the tank, so that the air in the hollow body of the water pump and the air in the third pipeline can be exhausted.
  • a first shut-off valve is disposed on the outlet pipe of the water pump.
  • the temperature water level sensor cooperates with the water pump to make the water pump stop working once the water temperature in the water tank exceeds a set temperature. Through this control, the equipment can be kept out of water at high temperatures, ensuring safe use of the equipment.
  • the set temperature is 60 °C.
  • the water pump is a 24V DC brushless water pump.
  • the water outlet of the bathing water outlet is connected with a water outlet nozzle with an adjustable switch.
  • the spout can be controlled by one hand, which is convenient and practical.
  • the water outlet of the water tank is further provided with a water outlet filter for filtering large particles of impurities in the water, so that the ozone water passing through the water outlet of the water tank is more clean.
  • a water tank sewage outlet is further disposed at a bottom of the water tank, and the water tank sewage outlet communicates with the outside of the water tank through a sewage pipe to facilitate cleaning of the cavity of the water tank, and the sewage pipe is provided with a second Shut-off valve.
  • the position of the water tank sewage outlet in the water tank is lower than the water outlet of the water tank in the water tank to reduce the effluent which is deposited at the bottom of the water tank and floats into the water tank. In the mouth, the ozone water passing through the water outlet of the water tank is made cleaner.
  • the device is further provided with an AC/DC transformer for step-down power supply, and supplies power to each low voltage circuit component in the device.
  • a device casing is disposed outside the water tank, and a power plug of the device is disposed on the device casing, and a bottom of the device casing is provided with a caster for moving the device.
  • the top of the device casing is provided with an operation control panel, which is intuitive and easy to operate, and the operation control panel is connected to the controller.
  • the operation control panel is provided with a button operation panel and a shower button
  • the shower button is a shower button for activating a shower or closing the shower.
  • an external insulation system for protecting the water in the water tank is further disposed outside the water tank.
  • the bathing care device sets the water tank into a closed structure, effectively reducing the excess ozone gas not dissolved in the water to directly overflow into the air, thereby preventing excessive ozone from being present in the air and causing the respiratory tract and other organs of the device user. hurt.
  • the present invention is further provided with an exhaust pressure release hole on the water tank, and an ozone tail gas treatment device is arranged on the exhaust pressure release hole, so that the pressure in the water tank is consistent with the external atmospheric pressure, thereby avoiding the continuous generation of ozone gas to increase. Sealing the pressure of the water tank and pressing the water in the water tank back to the ozone generator or the ozone circulation pump to damage it, and avoiding the danger of explosion of the closed water tank due to excessive pressure, and more importantly, ozone The tail gas treatment device effectively absorbs the spilled ozone, greatly reduces the leakage of the surplus ozone, effectively controls the excessive ozone to cause harm to the human body, and ensures the safe use of the equipment.
  • the present invention re-injects ozone which is not dissolved in water above the liquid level enriched in the water tank by using an ozone gas circulation pump for recycling, and also effectively reduces excess ozone overflow to the air, so that the ozone tail gas treatment device works.
  • the load is also reduced.
  • the ozone gas circulation pump provided by the invention can greatly improve the ozone utilization rate and effectively reduce the waste of resources.
  • the bath care device provided by the invention can be used for cleaning the skin of the human body surface, and has multiple functions such as sterilization, cleaning and disinfection, and whitening treatment.
  • FIG. 1 is a schematic structural view of a bath care device according to the present invention.
  • FIG. 2 is a circuit schematic diagram of a bath care device according to the present invention.
  • Sterilization efficiency (r) ozone concentration (C) ⁇ sterilization time (t)
  • T is the water temperature, the higher the temperature, the lower the ozone concentration
  • P is the air pressure, the higher the pressure, the higher the solubility of ozone, the higher the concentration
  • S is the water-gas contact surface, and the larger the contact surface, the higher the ozone concentration
  • G is the purity of ozone production, the higher the purity, the higher the ozone concentration
  • K is the mass transfer coefficient
  • the solubility of pure ozone gas in water is: when the water temperature is 0 ° C, the ozone solubility is 1.369; when the water temperature is 15 ° C, the ozone solubility is 0.976; when the water temperature is 27 ° C, the ozone The solubility is 0.578; when the water temperature is 40 ° C, the ozone solubility is 0.24; when the water temperature is 55 ° C, the ozone solubility is 0.066; when the water temperature is 60 ° C, the ozone solubility is zero.
  • the present invention provides a bath care device, as shown in FIG. 1 and FIG. 2, the key point is:
  • the water tank 101 is a closed water tank, which effectively reduces the excess ozone which is not dissolved in water and directly overflows into the air to prevent excessive ozone from being present in the air, thereby endangering the health of the human body;
  • An exhaust pressure relief hole 105 is disposed on the water tank 101 such that the cavity of the water tank 101 communicates with the atmosphere, so that the pressure in the water tank 101 and the external atmospheric pressure are consistent, not only avoiding the ozone generated continuously during the use of the equipment, but also increasing the water tank.
  • the pressure in the water tank 101 is pressed back into the ozone generator 102 or the ozone gas circulation pump 107 to cause damage, and the risk of explosion of the water tank 101 due to excessive pressure is also avoided;
  • the pressure hole 105 is provided with an ozone tail gas treatment device 106, and the ozone tail gas treatment device 106 is in communication with the exhaust pressure relief hole 105 to treat the ozone overflowing from the water tank 101, thereby effectively preventing excessive ozone from being present in the air and thereby improving human health. cause some damages;
  • the bathing care device is further provided with an ozone gas circulation pump 107, and the ozone gas circulation pump 107 can provide power to re-inject the ozone which is concentrated above the liquid level of the water tank 101 and not dissolved in water to be recycled, thereby effectively reducing the surplus. Ozone overflows into the atmosphere, and of course, the workload of the ozone tail gas treatment unit 104 is correspondingly reduced.
  • the device is further provided with a controller 132, which is respectively connected to the ozone generator 102 and the ozone gas circulation pump 107.
  • the integrated control is implemented; the device is further provided with a temperature water level sensor 109, which is also connected to the controller 132.
  • the temperature water level sensor 109 monitors the water level in the water tank 101 to calculate the water storage amount of the water tank 101, and the temperature water level sensor 109 The water temperature in the water tank 101 is also monitored, and the ozone generation of the ozone generator 102 is controlled by the water storage amount and the water temperature so that the ozone reaches a set dissolved concentration.
  • the dissolved concentration is set to a concentration that is effectively sterilized within the set action time. This dissolved concentration ensures that the ozone water is sterilized effectively and the side effects are small.
  • the ozone generator 102 generates ozone gas by means of high-voltage corona air.
  • the present invention includes, but is not limited to, the generation of ozone gas by means of high-voltage corona air, as long as it is a method that can generate ozone gas and can effectively prevent ozone overflow, and is equivalent to the scope of protection of the present invention.
  • the position of the ozone generator 102 is higher than the top of the water tank 101, and the ozone generator 102 communicates with the bottom of the water tank 101 through the first duct 103.
  • the arrangement of this structure on the one hand causes the position of the ozone generator 102 to be higher than the maximum liquid level, thereby preventing the liquid in the water tank 101 from flowing back from the first pipe 103, protecting the ozone generator 102 from damage, and on the other hand, ozone.
  • the water tank 101 is injected into the bottom of the water tank 101 to prolong the residence time of the ozone gas in the water and improve the solubility of the ozone in the water.
  • the present invention includes, but is not limited to, a manner in which the first pipe communicates with the bottom of the water tank.
  • the first pipe may be disposed to communicate with the bottom portion of the water tank side, as long as the ozone gas can be effectively injected.
  • the manner of the inside of the water tank is the equivalent protection range of the present invention.
  • the first air outlet device 110 on the first pipe 103 at the bottom of the water tank 101 is provided with a first air detoning device 111 to increase the contact area of ozone gas with water, and promote the dissolution of ozone gas in water;
  • the gas device 111 is a gas dispersing device with dense pores to decompose the ozone gas into a plurality of small bubbles to increase contact with water.
  • the present invention is provided on the first outlet end, including but not limited to a gas explosion device, as long as it is a structure that can promote the dissolution of ozone in water, and is an equivalent protection range of the present invention.
  • the top of the water tank 101 communicates with the bottom of the water tank 101 through the second duct 108, and the ozone gas circulation pump 107 is located on the second duct 108, and the position of the ozone gas circulation pump 107 is higher than the top of the water tank 101.
  • the arrangement of the structure makes the position of the ozone gas circulation pump 107 higher than the maximum liquid level on the one hand, so as to prevent the liquid in the water tank 101 from flowing back from the second pipe 108, protecting the ozone gas circulation pump 107 from damage, and the other.
  • ozone can be reinjected from the bottom of the water tank 101 to prolong the residence time of the ozone gas in the water and improve the solubility of the ozone in the water.
  • the present invention includes, but is not limited to, a manner in which the second pipe communicates with the bottom of the water tank.
  • the second pipe may be disposed to communicate with the bottom of the water tank at the bottom, as long as the ozone gas can be effectively injected into the water tank.
  • the manner of the inside is the equivalent protection scope of the present invention.
  • the second air outlet device 112 on the bottom of the water tank 101 on the second duct 108 is provided with a second air bursting device 113, which is also for increasing the contact area between the ozone gas and the water, and promoting the dissolution of the ozone gas in the water;
  • the two gas detonating device 113 is a gas dispersing device with dense small holes, and is also for decomposing the ozone gas into a plurality of small bubbles to increase contact with water.
  • the present invention is provided on the second outlet end including, but not limited to, a gas explosion device, as long as it is a structure that can promote the dissolution of ozone in water, and is an equivalent protection range of the present invention.
  • the ozone exhaust gas treatment device 106 is provided with a first heating device (neither shown in FIG. 1 and FIG. 2), so that the surplus ozone gas is adsorbed by the ozone tail gas treatment device, and then rapidly decomposed by the high temperature action of the first heating device.
  • a first heating device either shown in FIG. 1 and FIG. 2
  • the present invention includes, but is not limited to, the decomposition of ozone by the high temperature action of the heating device, as long as it is a method (or device) capable of rapidly decomposing ozone, which is an equivalent protection range of the present invention.
  • the adsorbent material used in the ozone tail gas treatment device 106 is activated carbon. It should be noted that the adsorbent material used in the present invention includes, but not limited to, activated carbon, and is an equivalent protective range of the present invention as long as it is an adsorbent material capable of adsorbing ozone gas without causing environmental pollution.
  • the second heating device 114 of the bathing care device is disposed at the bottom of the cavity of the water tank 101 for effectively heating the water in the water tank 101, and the second heating device 114 cooperates with the temperature water level sensor 109 so that the water level is lower than The preset water level is not heated, avoid dry burning, and the water temperature reaches the set temperature to stop heating, avoid excessive heating and waste energy.
  • the second heating device is not limited to the electric heater used in daily use, and any heating device that can raise the temperature of the water in the water tank 101 is an equivalent protection range of the present invention.
  • the second heating means includes, but is not limited to, the bottom of the cavity provided in the water tank, as long as the layout of the second heating means can ensure that the water in the water tank is heated, which is an equivalent protection range of the present invention.
  • the top of the water tank 101 is provided with a water tank cover 104 for water injection, so that the water tank cover 104 is positioned higher than the water level, and the water tank cover 104 can be openly filled with water to ensure that the water does not overflow, and the open structure is arranged so that the user opens
  • the water tank cover 104 can add water, the equipment can be used in the environment without running water, and the water is heated in various ways, and the hot water can be directly injected into the water to form ozone water for showering, or cold water can be injected.
  • the ozone is mixed with the ozone, and the ozone water is heated by the heating device to perform the shower; the exhaust pressure relief hole 105 is provided on the water tank cover 104 to ensure a compact structure.
  • the exhaust pressure relief hole is not limited to being disposed on the water tank cover, for example, the exhaust pressure relief hole is separately disposed at other positions on the top of the water tank, or the side of the water tank is close to the top, as long as the layout of the exhaust pressure relief hole can satisfy the water tank.
  • the need for exhaust gas pressure relief is an equivalent protection range of the present invention.
  • the device is further provided with a bathing water outlet 115, and the bathing water outlet 115 communicates with the water outlet 117 of the water tank through the third duct 116.
  • a water pump 118 and a water pump air guiding drain pipe 119 are provided on the third duct 116.
  • the water pump 118 is connected to the controller 132; the position of the bath outlet 115 is higher than the top of the tank 101, and the position of the outlet pump 119 is lower than the bottom of the tank 101.
  • the bath outlet 115 is arranged to guide the ozone bath water in the water tank 101 to the user.
  • the position of the device makes the device more humanized; by setting the water pump 118, the device realizes the function of self-contained pressure and water, and the noise is small, the water output is large, and the self-contained pressure water pump is needed only when the water pressure is not required.
  • the water can be ensured to realize the shower, and can meet the shower needs of the residents under different living conditions; in addition, the position of the bath outlet 115 is higher than the top of the tank 101, so that the bath outlet 115 is higher than the highest level in the tank 101, Conducive to reducing the surplus ozone gas overflowing into the air through the bath outlet 115; setting the outlet pump air guiding drain 119 lower than the bottom of the water tank 101, in order to ensure that its position is lower than the water level of each stage, so that the outlet pump 118 is empty
  • the air in the cavity and the third conduit 116 can be completely emptied. It is particularly noted that the outlet pump 118 does not operate at the lowest water level, keeping the water tank 101 and the third conduit 116 in a "U" shaped tube communication state.
  • the outlet pump air guiding drain pipe 119 is provided with a first shutoff valve 120 for controlling the flow of gas or liquid.
  • a shut-off valve 120 for controlling the flow of gas or liquid.
  • the present invention is not limited to the use of a shut-off valve, and is an equivalent protection range of the present invention as long as it can control the flow of gas or liquid in the outlet pipe of the water pump.
  • the temperature water level sensor 109 cooperates with the water pump 118 such that once the water temperature in the water tank 101 exceeds the set temperature by 60 ° C, the water pump 118 will stop working. Through this control, the equipment does not emit water at high temperature, and the equipment is safe to use. Moreover, since the solubility of ozone in water is zero at 60 ° C, the equipment has lost the sterilization effect, and the water can also serve as a reminder to the user. .
  • the set temperature of the present invention is not limited to 60 ° C, and is an equivalent protection range of the present invention as long as it is a temperature setting that can ensure that the device does not emit water at a high temperature.
  • the water pump 118 is selected as a 24V DC brushless water pump, and the voltage is low, safe and reliable.
  • the present invention includes, but is not limited to, a 24V DC brushless water pump, as long as it is a device that can power ozone water to be pumped to the bath outlet, which is an equivalent protection range of the present invention.
  • the shower outlet 115 is movably connected with a water discharge nozzle 122 with an adjustable switch.
  • the water outlet 122 can be controlled by one hand, which is convenient and practical. It is set as the active connection for the convenience of the user to replace the parts of the water outlet.
  • the water outlet 117 of the water tank is further provided with a water outlet filter 121 for filtering large particle impurities in the water, so that the ozone water passing through the water outlet 117 of the water tank is more clean.
  • the water tank sewage outlet 123 communicates with the outside of the water tank 101 through the sewage pipe 124.
  • the water tank sewage outlet 123 is used to remove the sewage or other impurities in the water tank 101, and the sewage pipe 124 is disposed in the sewage pipe 124.
  • a second shutoff valve 125 is provided thereon for controlling the flow of sewage in the sewage pipe 124. It should be noted that the present invention is not limited to the use of a shut-off valve as long as it is a device that can control the flow of liquid in the drain pipe, and is an equivalent protection range of the present invention.
  • the position of the water tank sewage outlet 123 in the water tank 101 is lower than the position of the water outlet 117 of the water tank in the water tank 101, so that the arrangement can effectively reduce the dirt deposited on the bottom of the water tank 101 to float into the water outlet 117 of the water tank, thereby The workload of the outlet filter 121 is reduced so that the ozone water passing through the water outlet 117 of the water tank is cleaner.
  • the device is also provided with an AC/DC transformer 126 for step-down power supply.
  • an AC/DC transformer 126 for step-down power supply.
  • the water tank 101 is externally provided with a device casing 127, and the power plug 128 of the device is disposed on the device casing 127; the bottom of the device casing 127 is provided with casters 129 for equipment movement, for example, four casters are installed at four corners of the bottom of the device. Therefore, the person who moves horizontally or has insufficient strength when loading water can easily move the device horizontally.
  • the number of casters is not limited to four, and the set points of the casters are not limited to the four corners at the bottom, and the set points are reasonable. Under the premise, it can also be 3 or more.
  • the upper high-rise elevator-free building can be provided with a handle at the top of the equipment casing or at the top of the side wall (ie, above the center of gravity of the equipment) to provide the force point required for handling.
  • the operation control panel 130 is provided with an operation control panel 130, which is intuitive and easy to operate, and is more user-friendly.
  • the operation control panel 130 is connected to the controller 132.
  • the operation control panel 130 is provided with a button operation panel and a shower button (Fig. 1, not shown in Figure 2), the shower button has a function of activating the shower or closing the shower.
  • the water tank 101 is further provided with an insulation system for protecting the water in the water tank 101 (not shown in FIGS. 1 and 2), and the heat preservation system can effectively reduce the heat loss in the water tank 101.
  • the circuit operation principle of the device will be described.
  • the strong electric power source that is, 220V alternating current
  • the hot line and the neutral line are connected to the automatic reset thermostat 131, and then respectively connected to the input stage of the AC/DC transformer 126 and the input stage of the relay 133, wherein the first heating device
  • the second heating device 114 operates with 220V alternating current
  • the AC/DC transformer 126 steps down the high voltage to a 24V safe DC voltage
  • the controller 132 converts 24V DC of some circuits into 5V DC, which are the water pump 118 and the ozone, respectively.
  • the generator 102, the ozone gas circulation pump 107, the temperature water level sensor 109 and the operation control panel 130 provide a control weak voltage 24V or 5V; the operation control panel 130 presses a button on the button operation panel thereof (such as a power on key, an ozone solubility setting button)
  • the input condition of the device is fed back to the button operation panel chip, and the controller 132 monitors the temperature of the water in the water tank 101 through the temperature water level sensor 109, and determines the water level of the water tank 101, and then feeds back to the controller chip, the controller chip and the button operation panel.
  • the chip is determined based on the actual temperature of the water in the water tank 101, the water level of the water tank 101, and the input condition of the button.
  • the heating function of the second heating device 114 is closed, and the ozone generator 102 and the ozone gas circulation pump 107 are adjusted and controlled accordingly, thereby completing the ozone generation and circulation function control of the entire bath care device; and the controller 132 passes the temperature water level sensor.
  • the 109 monitor the temperature of the water in the water tank 101, and determine the water level of the water tank 101, and feed back to the controller 132 chip, operate the control panel 130 to press the keys on the button operation panel (such as power switch key, temperature adjustment button, etc.) and the shower button
  • the input condition is fed back to the button operation panel chip, and the controller chip and the button operation panel chip are comprehensively determined according to the actual temperature of the water in the water tank 101, the water level of the water tank 101, and the input condition of the button, and it is determined that the water pump 107 is started, and the switch is turned off.
  • Second heating device 114 The heating function is to realize the shower function, or to turn on the relay 133 to supply the heating function of the second heating device 114 after supplying the strong electric power to the heating plate 1141, and to close the water pump 107, or to close due to the water level being too low or the water temperature being too high.
  • the heating function of the second heating device 114, and the water pump 107 is turned off, thereby completing the temperature and water level function control of the entire bath care device for showering.
  • the device 109 monitors the water temperature and the water level during which the ozone tail gas treatment device 106 adsorbs the surplus ozone gas overflowing from the exhaust pressure relief hole 105, and the first heating device heats to perform high temperature action on the adsorbed surplus ozone to make it Decomposition rapidly; when the ozone gas reaches the set dissolved concentration, the ozone generator 102 and the ozone gas circulation pump 107 stop working.
  • the first shutoff valve 120 is first opened, and the outlet pump is passed through the outlet pump air outlet drain pipe 119.
  • the air in the 118 and the third pipe 116 is evacuated, and after the air is exhausted, the first shutoff valve 120 is closed, and then the shower is taken.
  • the bathing key is placed in the bathing state and the strong electric power for the second heating device 114 is automatically disconnected, and the bathing hot water containing ozone is pumped into the bathing water outlet 115 through the water pump 118 to the water outlet nozzle 122, so that the equipment is in a bathing state.
  • the strong electric power for the second heating device 114 is automatically disconnected, and the bathing hot water containing ozone is pumped into the bathing water outlet 115 through the water pump 118 to the water outlet nozzle 122, so that the equipment is in a bathing state.
  • the bathing care device provided by the invention has three levels in bathing use:
  • Clean and sterile washing This is the first level, that is, the water in the water tank is disinfected by ozone and stored in 30 minutes, containing traces of ozone, suitable for infants and young children.
  • Health detoxification This is the second level, that is, on the basis of the first level, the ozone is added for 2 minutes before use, and the ozone is turned off during use. It is used for washing the body after washing, cleaning the skin, and decomposing the chemical residue of the toiletries. And inhibit the growth of bacteria;
  • Sterilization Skin Care This is the third level. It is suitable for patients with skin diseases. It can be used at the same time to turn on ozone, and the ozone concentration is high. It can kill bacteria and mites on the skin surface.
  • the bath care device can provide ozone water to carry out health care, medical sterilization and whitening treatment on the skin of the body surface, and brings a more advanced bathing experience to the user, and more importantly, the device Greatly reduce the excess water that is not soluble in water and leak it into the air, thus effectively controlling the excessive ozone to be present in the air and causing harm to human health, and setting the dissolved concentration of ozone is also very reasonable, which is a kind of use. Safe and sterilizing ozone bath care equipment with high market value.

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Abstract

一种洗浴设备,包括一封闭式水箱(101)和与其连通的臭氧发生器(102),水箱上设置有排气泄压孔(105),排气泄压孔上设置有臭氧尾气处理装置(106);还设有臭氧气体循环泵(107),以将富集于水箱的液位上方且未溶解的臭氧重新注入水中加以循环利用;还设有温度水位传感器(109),用以监测水位以计算出水箱的蓄水量,并监测水温,从而通过蓄水量和水温来控制臭氧生成,使臭氧达到设定溶解浓度;还设有控制器(132),其分别与臭氧发生器、臭氧气体循环泵和温度水位传感器连接。本设备能减小外溢至大气的臭氧量。

Description

一种洗浴护理设备 技术领域
本发明属于日常生活用品技术领域,具体来说,涉及一种洗浴护理设备。
背景技术
现今社会,随着人们的生活水平逐渐提高,对生活质量的要求也随之提高,而洗浴质量就是生活质量的其中一方面的体现,即人们已经不满足于普通的日常洗浴,带有保健护理性质的更高级的洗浴成为更多人的迫切需求。
臭氧是氧气的同素异形体,是一种广谱、高效、快速杀菌剂。基于此,现有技术中出现了不少使用臭氧水进行杀菌消毒的洗浴设备。然而,目前出现的各种臭氧水洗浴设备,均存在一定的弊端,即:臭氧与水进行溶解的区域空间为敞开式,设备在使用过程中,臭氧发生器会持续生成臭氧气体,而臭氧完全溶解于水中需要一定时间,且臭氧在水中溶解至一定量后将趋于饱和,这样,会容易导致大量富余臭氧气体直接外溢至空气,而过量的臭氧存在于空气中将会对人体健康造成严重危害。
发明内容
本发明的目的是为了克服现有技术缺陷,提供一种洗浴护理设备,该设备不仅可以有效杀菌消毒,更重要的是其可以有效减少臭氧外泄,避免过量臭氧存在于空气中而对人体造成伤害,保证设备使用安全。
为解决上述技术问题,本发明的技术方案为:
一种洗浴护理设备,包括有一水箱和与所述水箱连通的臭氧发生器,其关键在于:
所述水箱为封闭式水箱,以减少未溶于水的富余臭氧直接外溢至空气中,在所述水箱上设置有排气泄压孔,以使所述水箱的空腔与外界空气连通,保持所述水箱内外部压力一致,在所述排气泄压孔上设置有臭氧尾气处理装置,以处理所述水箱排气泄压时溢出的臭氧;
在该洗浴护理设备还设置有臭氧气体循环泵,以将富集于所述水箱的液位上方未溶于水的臭氧重新注入水中加以循环利用,减少臭氧外溢。
进一步的,所述设备还设有控制器,所述控制器分别与所述臭氧发生器、所述臭氧气体循环泵连接,实现集成控制。
进一步的,所述设备还设有温度水位感应器,所述温度水位感应器与所述控制器连接, 所述温度水位感应器监测所述水箱中的水位以计算出所述水箱的蓄水量,所述温度水位感应器还监测所述水箱中的水温,通过所述蓄水量和所述水温来控制所述臭氧发生器的臭氧生成,使得臭氧达到设定溶解浓度。通过此方式将臭氧生成与水温、水位结合控制,使得形成的臭氧水更安全、有效地进行杀菌消毒。
进一步的,所述设定溶解浓度为在设定作用时间内有效杀菌的浓度。此溶解浓度保证臭氧水杀菌有效,其产生的副作用又可以忽略。
进一步的,所述臭氧发生器采用高压电晕空气的方式生成臭氧气体。
进一步的,所述臭氧发生器的位置高于所述水箱的顶部,所述臭氧发生器通过第一管道与所述水箱的底部连通。此结构的布置一方面是为了避免水箱中的液体从第一管道回流,以保护臭氧发生器不受损伤,另一方面可将臭氧从水箱底部注入水箱,以延长臭氧气体在水中的滞留时间,提高臭氧在水中的溶解度。
进一步的,所述第一管道上的位于所述水箱底部的第一出口端上设置有第一爆气装置,以增大臭氧气体与水的接触面积,促进臭氧气体在水中的溶解;所述第一爆气装置为带有密集小孔的气体分散装置,以将臭氧气体分解为众多小气泡,加大与水的接触。
进一步的,所述水箱的顶部通过第二管道与所述水箱的底部连通,所述臭氧气体循环泵位于所述第二管道上,所述臭氧气体循环泵的位置高于所述水箱的顶部。同理,此结构的布置一方面是为了避免水箱中的液体从第二管道回流,以保护臭氧气体循环泵不受损伤,另一方面可将臭氧重新从水箱底部注入,以延长臭氧气体在水中的滞留时间,提高臭氧在水中的溶解度。
进一步的,所述第二管道上的位于所述水箱底部的第二出口端上设置有第二爆气装置,同样是为了增大臭氧气体与水的接触面积,促进臭氧气体在水中的溶解;所述第二爆气装置为带有密集小孔的气体分散装置,同样是为了将臭氧气体分解为众多小气泡,加大与水的接触。
进一步的,所述臭氧尾气处理装置内设置有第一加热装置,被吸附的富余臭氧经所述第一加热装置的高温作用迅速分解。
进一步的,所述臭氧尾气处理装置使用的吸附材料为活性炭。
进一步的,该洗浴护理设备的第二加热装置设置于所述水箱的空腔底部,用于加热所述水箱中的水;所述第二加热装置与所述温度水位感应器配合作用,使得水位低于预设水位不加热,以防干烧,水温达到设定温度停止加热,以避免过度加热,浪费资源。
进一步的,所述水箱的顶部设置有用于注水的水箱盖,使得所述水箱盖的位置高于水位,且所述水箱盖可敞开式注水,以确保水不溢出;所述排气泄压孔位于所述水箱盖上,结构紧 凑。
进一步的,所述设备还设有洗浴出水口,所述洗浴出水口通过第三管道与所述水箱的出水口连通,在所述第三管道上设有出水泵和出水泵导气排水管,所述出水泵和所述控制器连接;所述洗浴出水口的位置高于所述水箱顶部,所述出水泵导气排水管的位置低于所述水箱底部。洗浴出水口的设置以将水箱中的液体引至使用者易操作的位置,使得设备更人性化;出水泵的设置实现设备自带压力出水;洗浴出水口的位置高于所述水箱的顶部,使得洗浴出水口高于水箱最高液位,有效避免臭氧外溢;出水泵导气排水管设置低于所述水箱的底部,使得出水泵的空腔体和第三管道内的空气可以排尽。
进一步的,所述出水泵导气排水管上设有第一截止阀。
进一步的,所述温度水位感应器与所述出水泵配合作用,使得所述水箱中的水温一旦超过设定温度,所述出水泵将停止工作。通过此控制,可使得设备高温不出水,保证设备使用安全。
进一步的,所述设定温度为60℃。
进一步的,所述出水泵为24V直流无刷水泵。
进一步的,所述洗浴出水口上活动连接有带开关可调节的出水喷头。出水喷头可单手控制,方便实用。
进一步的,所述水箱的出水口上还设有出水口过滤器,用于过滤水中的大颗粒杂质,使得通过水箱的出水口的臭氧水更洁净。
进一步的,在所述水箱底部还设有水箱排污口,所述水箱排污口通过排污管与所述水箱的外部连通,便于所述水箱的空腔的清洁,所述排污管上设有第二截止阀。
进一步的,所述水箱排污口在所述水箱内的位置低于所述水箱的出水口在所述水箱内的位置,以减少沉淀于所述水箱底部处的污渣漂浮进入所述水箱的出水口中,使得通过所述水箱的出水口的臭氧水更洁净。
进一步的,所述设备还设有用于降压供电的交直流变压器,为设备中各低压电路配件供电。
进一步的,所述水箱外部设有设备外壳,所述设备的电源插头设置于所述设备外壳上,所述设备外壳的底部设有用于所述设备移动的脚轮。
进一步的,所述设备外壳的顶部设置有操作控制面板,直观且易于操作,所述操作控制面板与所述控制器连接。
进一步的,所述操作控制面板设置有按键操作板和淋浴键,所述淋浴键为一键启动淋浴或关闭淋浴的淋浴键。
进一步的,所述水箱外部还设有用于保温水箱中的水的保温系统。
相对现有技术,本发明的有益效果在于:
本发明提供的洗浴护理设备,将水箱设置为密闭式结构,有效减少未溶解于水的富余臭氧气体直接外溢至空气中,从而避免过量臭氧存在于空气中而对设备使用者的呼吸道等器官造成伤害。
而且,本发明在水箱上还设置有排气泄压孔,排气泄压孔上设置有臭氧尾气处理装置,使得水箱内的压力和外界大气压力保持一致,避免了持续生成的臭氧气体加大密闭水箱的压力而将水箱中的水压回至臭氧发生器或者臭氧循环泵中以使其遭受损伤,也避免了密闭水箱因承压过大而产生爆炸的危险,更重要的是,通过臭氧尾气处理装置对外溢的臭氧进行有效吸附处理,极大减少富余臭氧的外泄量,有效控制过量臭氧对人体造成伤害,保证设备使用安全。
再者,本发明通过设置臭氧气体循环泵,将富集于水箱的液位上方未溶于水的臭氧重新注入水中加以循环利用,亦有效减少富余臭氧外溢至空气,使臭氧尾气处理装置的工作负荷也得以减轻。此外,本发明设置的臭氧气体循环泵还可以将臭氧利用率大幅度提高,有效减少资源的浪费。
本发明提供的洗浴护理设备,可用于人体表面皮肤的清洗,具有广普杀菌、清洁消毒、美白处理等多重功效。
附图说明
附图用来提供对本申请的进一步理解,与本申请的实施例一起用于解释本申请,并不构成对本申请的限制,在附图中:
图1是本发明所述的一种洗浴护理设备的结构示意图;
图2是本发明所述的一种洗浴护理设备的电路原理图。
图中:
101-水箱;102-臭氧发生器;103-第一管道;104-水箱盖;105-排气泄压孔;106-臭氧尾气处理装置;107-臭氧气体循环泵;108-第二管道;109-温度水位感应器;110-第一出口端;111-第一爆气装置;112-第二出口端;113-第二爆气装置;114-第二加热装置;1141-发热盘;115-洗浴出水口;116-第三管道;117-水箱的出水口;118-出水泵;119-出水泵导气排水管;120-第一截止阀;121-出水口过滤器;122-出水喷头;123-水箱排污口;124-排污管;125-第二截止阀;126-交直流变压器;127-设备外壳;128-电源插头;129-脚轮;130-操作控制面板;131-自动复位温控器;132-控制器;133-继电器;134-五芯信号线;135-六芯信号线。
具体实施方式
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是本发明能够以很多不同于此描述的其他方式来实施,本领域技术人员可以在不违背本发明内涵的情况下做类似推广,因此本发明不受下面公开的具体实施方式的限制。
为了更好地理解本发明,首先对臭氧杀菌效率的各影响因素进行解释和说明,如下:
杀菌效率(r)=臭氧浓度(C)×杀菌时间(t)
而,水中臭氧浓度(C)=f(T,P,G,K)
其中:T为水温,温度越高,臭氧浓度越低;
P为气压,压力越高,臭氧溶解度越高,浓度越高;
S为水气接触面,接触面越大,臭氧浓度越高;
G为臭氧产量纯度,纯度越高,臭氧浓度越高;
K为传质系数。
因此,在标准大气压下,纯臭氧气体在水中的溶解度(mg/L)为:水温为0℃时,臭氧溶解度为1.369;水温为15℃时,臭氧溶解度为0.976;水温为27℃时,臭氧溶解度为0.578;水温为40℃时,臭氧溶解度为0.24;水温为55℃时,臭氧溶解度为0.066;水温为60℃时,臭氧溶解度为零。
为了解决现有技术的问题,本发明提供了一种洗浴护理设备,如图1、图2所示,特别关键在于:
水箱101为封闭式水箱,有效减少未溶于水的富余臭氧直接外溢至空气中以避免过量的臭氧存在于空气中,从而危害人体的健康;
在水箱101上设置有排气泄压孔105,使得水箱101的空腔与大气连通,从而使得水箱101内的压力和外界大气压力保持一致,不仅避免设备使用过程中持续生成的臭氧加大水箱101的压力而将水箱101中的水压回至臭氧发生器102或者臭氧气体循环泵107中使其遭受损伤,而且还避免了水箱101因承压过大而产生爆炸的危险;在排气泄压孔105上设置有臭氧尾气处理装置106,臭氧尾气处理装置106与排气泄压孔105连通,以处理水箱101排气泄压溢出的臭氧,有效避免过量臭氧存在于空气中从而对人体健康造成伤害;
在该洗浴护理设备还设置有臭氧气体循环泵107,臭氧气体循环泵107可提供动力,将富集于水箱101的液位上方且未溶于水的臭氧重新注入水中加以循环利用,有效减少富余臭氧外溢至大气中,当然,臭氧尾气处理装置104的工作负荷也得以相应地减小。
其中,该设备还设有控制器132,其分别与臭氧发生器102、臭氧气体循环泵107连接, 实现集成控制;该设备还设有温度水位感应器109,其亦与控制器132连接,温度水位感应器109监测水箱101中的水位以计算出水箱101的蓄水量,且温度水位感应器109还监测水箱101中的水温,通过蓄水量和水温来控制臭氧发生器102的臭氧生成,使得臭氧达到设定的溶解浓度。通过此方式,有效避免了洗浴水中含有过量臭氧而对设备使用者的呼吸道等重要器官造成伤害,使臭氧水更安全、有效地杀菌消毒,同时也避免了生成过量臭氧而造成资源的浪费。
其中,设定溶解浓度为在设定作用时间内有效杀菌的浓度。此溶解浓度既能保证臭氧水杀菌有效,产生的副作用又很小。
其中,臭氧发生器102采用高压电晕空气的方式生成臭氧气体。需要说明的是,本发明包括但不限于采用高压电晕空气这种方式生成臭氧气体,只要是可以生成臭氧气体且可有效避免臭氧外溢的方式,都是本发明的等效保护范围。
其中,臭氧发生器102的位置高于水箱101的顶部,臭氧发生器102通过第一管道103与水箱101的底部连通。此结构的布置一方面使得臭氧发生器102的位置高于最大液面高度,从而避免水箱101中的液体从第一管道103回流,保护臭氧发生器102不受损伤,另一方面可将臭氧从水箱101底部注入水箱101,以延长臭氧气体在水中的滞留时间,提高臭氧在水中的溶解度。需要说明的是,本发明包括但不限于第一管道与水箱的底部连通的方式,如还可以将第一管道设置为与水箱侧面上靠底部的位置连通等,只要是可以将臭氧气体有效注入水箱内的方式,都是本发明的等效保护范围。
其中,第一管道103上的位于水箱101底部的第一出口端110上设置有第一爆气装置111,以增大臭氧气体与水的接触面积,促进臭氧气体在水中的溶解;第一爆气装置111为带有密集小孔的气体分散装置,以将臭氧气体分解为众多小气泡,加大与水的接触。需要说明的是,本发明设置于第一出口端上包括但不限于爆气装置,只要是可以促进臭氧在水中溶解的结构,都是本发明的等效保护范围。
其中,水箱101的顶部通过第二管道108与水箱101的底部连通,臭氧气体循环泵107位于第二管道108上,臭氧气体循环泵107的位置高于水箱101的顶部。同理,此结构的布置一方面使得臭氧气体循环泵107的位置高于最大液面高度,以避免水箱101中的液体从第二管道108回流,保护臭氧气体循环泵107不受损伤,另一方面可将臭氧重新从水箱101底部注入,以延长臭氧气体在水中的滞留时间,提高臭氧在水中的溶解度。需要说明的是,本发明包括但不限于第二管道与水箱底部连通的方式,如还可以将第二管道设置为与水箱侧面上靠底部的位置连通等,只要是可以将臭氧气体有效注入水箱内的方式,都是本发明的等效保护范围。
其中,第二管道108上的位于水箱101底部的第二出口端112上设置有第二爆气装置113,同样是为了增大臭氧气体与水的接触面积,促进臭氧气体在水中的溶解;第二爆气装置113为带有密集小孔的气体分散装置,同样是为了将臭氧气体分解为众多小气泡,加大与水的接触。需要说明的是,本发明设置于第二出口端上包括但不限于爆气装置,只要是可以促进臭氧在水中溶解的结构,都是本发明的等效保护范围。
其中,臭氧尾气处理装置106内设置有第一加热装置(图1、图2均未示出),使得富余臭氧气体被臭氧尾气处理装置吸附后,再通过第一加热装置的高温作用得以迅速分解。需要说明的是,本发明包括但不限于使用加热装置的高温作用对臭氧进行分解,只要是可以迅速分解臭氧的方式(或装置),都是本发明的等效保护范围。
其中,臭氧尾气处理装置106使用的吸附材料为活性炭。需要说明的是,本发明使用的吸附材料包括但不限于活性炭,只要是可以吸附臭氧气体且不会造成环境污染的吸附材料,都是本发明的等效保护范围。
其中,该洗浴护理设备的第二加热装置114设置于水箱101的空腔底部,用于有效加热水箱101中的水,而且第二加热装置114与温度水位感应器109配合作用,使得水位低于预设水位不加热,避免干烧,水温达到设定温度停止加热,避免过度加热,浪费能源。需要说明的是,第二加热装置不仅限于日常使用的电发热器,只要是可以使水箱101中的水温升高的加热装置,都是本发明的等效保护范围。此外,第二加热装置包括但不限于设置于水箱的空腔底部,只要第二加热装置的布局设置可以保证水箱中的水得以加热,均是本发明的等效保护范围。
其中,水箱101的顶部设有用于注水的水箱盖104,使得水箱盖104的位置高于水位,且水箱盖104可敞开式注水,以确保水不溢出,敞开式结构的设置,使得使用者打开水箱盖104便可以将水加入,设备可以在无自来水的环境下使用,而水的加热方式多样,既可直接自行注入热水,使之与臭氧混合形成臭氧水来进行淋浴,也可以注入冷水与臭氧混合,再利用自带的加热装置加热臭氧水来进行淋浴;排气泄压孔105设于水箱盖104上,保证结构紧凑。当然,排气泄压孔不限于设在水箱盖上,如排气泄压孔单独设置于水箱顶部其它位置、或者水箱侧面靠近顶部的位置等,只要排气泄压孔的布局设置能够满足水箱的排气泄压需要,均是本发明的等效保护范围。
其中,该设备还设有洗浴出水口115,洗浴出水口115通过第三管道116与水箱的出水口117连通,在第三管道116上设有出水泵118和出水泵导气排水管119,出水泵118与控制器132连接;洗浴出水口115的位置高于水箱101顶部,出水泵导气排水管119的位置低于水箱101底部。洗浴出水口115如此设置,是为了将水箱101中的臭氧洗浴水引至使用者易操 作的位置,使得设备更加人性化;通过设置出水泵118,设备实现自带压力出水功能,而且噪音小,出水量大,在不需要自来水压的情况下,只需依靠自带压力出水泵即可保证出水以实现淋浴,可以满足不同生活条件下的居民的淋浴需要;此外,洗浴出水口115的位置高于水箱101的顶部,使得洗浴出水口115高于水箱101中的最高液位,有利于减少富余的臭氧气体通过洗浴出水口115外溢至空气中;将出水泵导气排水管119设置低于水箱101的底部,是为了保证其位置低于各阶段的水位,使得出水泵118的空腔体和第三管道116内的空气可以完全排空。特别注意的是,出水泵118在最低水位时不工作,保持水箱101和第三管道116呈“U”形管连通状态。
其中,出水泵导气排水管119上设有第一截止阀120,用于控制气体或液体的流动。需要说明的是,本发明不仅限于使用截止阀,只要是可以控制出水泵导气排水管中的气体或液体流动的装置,都是本发明的等效保护范围。
其中,温度水位感应器109与出水泵118配合作用,使得水箱101中的水温一旦超过设定温度60℃,出水泵118将停止工作。通过此控制,使得设备高温不出水,保证设备使用安全;而且,由于60℃时臭氧在水中的溶解度为零,该设备已失去杀菌消毒作用,此时不出水还可以起到提醒使用者的作用。当然,需要说明的是,本发明设定温度不限为60℃,只要是可以保证设备高温不出水的温度设定,都是本发明的等效保护范围。
其中,从低噪声、低功耗、高安全性、高可靠性等方面考虑,所述出水泵118选择为24V直流无刷水泵,其电压低、安全可靠。需要说明的是,本发明包括但不限于24V直流无刷水泵,只要是可以为臭氧水提供动力以使其被抽至洗浴出水口的装置,都是本发明的等效保护范围。
其中,洗浴出水口115上活动连接有带开关可调节的出水喷头122。出水喷头122可单手控制,方便实用。设置为活动连接是为了方便用户后续对出水喷头进行零部件更换。
其中,水箱的出水口117上还设有出水口过滤器121,用于过滤水中的大颗粒杂质,使得通过水箱的出水口117的臭氧水更洁净。
其中,在水箱101底部还设有水箱排污口123,水箱排污口123通过排污管124与水箱101的外部连通,水箱排污口123用于排除水箱101内的清理污水或者其它杂质,在排污管124上设有第二截止阀125,用于控制污水在排污管124中流动。需要说明的是,本发明不仅限于使用截止阀,只要是可以控制排污管中液体的流动的装置,都是本发明的等效保护范围。
其中,水箱排污口123在水箱101内的位置低于水箱的出水口117在水箱101内的位置,如此设置可以有效减少沉淀于水箱101底部处的污渣漂浮进入水箱的出水口117中,从而减少出水口过滤器121的工作负荷,使得通过水箱的出水口117的臭氧水更洁净。
其中,该设备还设置有用于降压供电的交直流变压器126,通过交直流变压器126的设置,可以实现为不同的低压电路配件降压供电。
其中,水箱101外部设有设备外壳127,该设备的电源插头128设置于设备外壳127上;设备外壳127的底部设有用于设备移动的脚轮129,例如在设备底部的四个角安装4个脚轮,以便装水时进行设备整体水平移动或力量不够的人也能轻松水平移动该设备,当然,脚轮数量不仅限于设置为4个,脚轮设置点也不仅限于在底部四个角,在设置点合理的前提下,还可以是3个或者更多,因此,任何保证设备可以平稳移动的脚轮数量和脚轮位置设置方式,均是本发明的等效保护范围,此外,为便于搬运该淋浴护理设备,例如上高层无电梯楼房,可以在设备外壳的顶部或者侧壁靠顶部的位置(即设备重心以上的位置)设置手柄,以提供搬运时所需的受力点。
其中,设备外壳127的顶部设置有操作控制面板130,直观且易于操作,更显人性化,操作控制面板130与控制器132连接,而且,操作控制面板130设置有按键操作板和淋浴键(图1、图2均未示出),淋浴键具有一键启动淋浴或关闭淋浴的功能。
其中,水箱101外部还设有用于保温水箱101中的水的保温系统(图1、图2均未示出),保温系统可以有效减少水箱101中的热量散失。
为了更进一步理解本发明提供的洗浴护理设备,对该设备的电路工作原理进行说明。如图2所示,强电电源,即220V交流电,火线、零线接入自动复位温控器131后,再分别与交直流变压器126输入级及继电器133输入级连接,其中,第一加热装置、第二加热装置114使用220V交流电进行工作,交直流变压器126把强电电压降压为24V安全直流电压,控制器132再将部分电路的24V直流电转换为5V直流电,分别为出水泵118、臭氧发生器102、臭氧气体循环泵107、温度水位感应器109及操作控制面板130提供控制弱电压24V或5V;操作控制面板130将其按键操作板上的按键(如电源开关键、臭氧溶解度设置键等)的输入情况反馈给按键操作板芯片,控制器132通过温度水位感应器109监测水箱101内水的温度,并判断水箱101的水位,然后反馈给控制器芯片,控制器芯片及按键操作板芯片根据水箱101内水的实际温度、水箱101的水位情况及按键的输入情况综合判定后,决定启动或关闭第二加热装置114的加热功能,并对臭氧发生器102、臭氧气体循环泵107进行相应调节和控制,进而完成整个洗浴护理设备的臭氧生成、循环功能控制;控制器132通过温度水位感应器109监测水箱101内水的温度,及判断水箱101的水位,并反馈给控制器132芯片,操作控制面板130将其按键操作板上的按键(如电源开关键、温度调节键等)及淋浴键的输入情况反馈给按键操作板芯片,控制器芯片及按键操作板芯片根据水箱101内水的实际温度、水箱101的水位情况及按键的输入情况综合判定后,决定是启动出水泵107、关闭第二加热装置114 的加热功能,以实现淋浴功能,还是接通继电器133给发热盘1141供应强电后启动第二加热装置114的加热功能,同时关闭出水泵107,抑或是因水位过低或者水温过高而关闭第二加热装置114的加热功能,并关闭出水泵107,进而完成整个洗浴护理设备用于淋浴时的温度、水位功能控制。
对本发明所提供的洗浴护理设备的其中一种工作过程进行阐述,如下:
打开水箱盖104将冷水加入水箱101内,将电源插头128插在插座上给设备通电,点按按键操作板设定好臭氧溶解浓度并启动开关键,使设备置于加热状态,第二加热装置114的发热盘1141开始给水加热,且臭氧发生器102开始生成臭氧气体并持续溶解至水中,臭氧气体循环泵107也开始工作以将未溶解于水的臭氧循环注入水箱101底部,同时温度水位感应器109对水温和水位进行监控,在此期间,臭氧尾气处理装置106吸附从排气泄压孔105中溢出的富余臭氧气体,第一加热装置加热以对吸附的富余臭氧进行高温作用,使其迅速分解;臭氧气体达到设定溶解浓度时,臭氧发生器102和臭氧气体循环泵107停止工作,当达到洗浴水温时,先打开第一截止阀120,通过出水泵导气排水管119对出水泵118以及第三管道116中的空气进行排空,空气排尽后关闭第一截止阀120,然后拍一下淋浴键置于洗浴状态而第二加热装置114用的强电自动断开,通过出水泵118将含有臭氧的洗浴热水抽入洗浴出水口115再到出水喷头122,使设备处于可供洗浴状态,从而实现臭氧水洗浴护理。
本发明所提供的洗浴护理设备,在洗浴使用上有三种级别:
洁净无菌洗:此为第一级别,即水箱内的水经臭氧消毒处理并经过30分钟储存后,含有微量的臭氧,适合婴幼儿使用。
保健除毒洗:此为第二级别,即在第一级别的基础上,使用前加注臭氧2分钟,使用时关闭臭氧,用于成年人洗浴后冲洗身体、洁净皮肤、分解洗浴用品化学残留物,并抑制细菌滋生作用;
杀菌护肤洗:此为第三级别,适用于皮肤病患者,使用时同时开启臭氧,臭氧浓度较高,能够强力杀灭皮肤表面的细菌螨虫等。
本发明所提供的洗浴护理设备,可提供臭氧水以对身体表面的皮肤进行保健护理、医疗杀菌以及美白处理等,给使用者带来一种更高级的洗浴体验,更重要的是,该设备极大减少未溶于水的富余臭氧外泄至空气中,从而有效控制了过量的臭氧存在于空气中而对人体健康造成伤害,并且设定的臭氧溶解浓度也非常合理,是一种使用更安全、杀菌更有效的臭氧洗浴护理设备,具有很高的市场价值。
本发明并不局限于上述实施方式,如果对本发明的各种改动或变型不脱离本发明的实施范围。凡依本发明申请范围所作的均等变化与改进等,均应属于本发明的专利涵盖范围之内。

Claims (27)

  1. 一种洗浴护理设备,包括有一水箱和与所述水箱连通的臭氧发生器,其特征在于:
    所述水箱为封闭式水箱,在所述水箱上设置有排气泄压孔,在所述排气泄压孔上设置有臭氧尾气处理装置;
    在该洗浴护理设备还设置有臭氧气体循环泵,以将富集于所述水箱的液位上方未溶于水的臭氧重新注入水中加以循环利用。
  2. 根据权利要求1所述的洗浴护理设备,其特征在于:所述设备还设有控制器,所述控制器分别与所述臭氧发生器、所述臭氧气体循环泵连接。
  3. 根据权利要求2所述的洗浴护理设备,其特征在于:所述设备还设有温度水位感应器,所述温度水位感应器与所述控制器连接,所述温度水位感应器监测所述水箱中的水位以计算出所述水箱的蓄水量,所述温度水位感应器还监测所述水箱中的水温,通过所述蓄水量和所述水温来控制所述臭氧发生器的臭氧生成,使得臭氧达到设定溶解浓度。
  4. 根据权利要求3所述的洗浴护理设备,其特征在于:所述设定溶解浓度为在设定作用时间内有效杀菌的浓度。
  5. 根据权利要求1所述的洗浴护理设备,其特征在于:所述臭氧发生器采用高压电晕空气的方式生成臭氧气体。
  6. 根据权利要求1所述的洗浴护理设备,其特征在于:所述臭氧发生器的位置高于所述水箱的顶部,所述臭氧发生器通过第一管道与所述水箱的底部连通。
  7. 根据权利要求6所述的洗浴护理设备,其特征在于:所述第一管道上的位于所述水箱底部的第一出口端上设置有第一爆气装置,所述第一爆气装置为带有密集小孔的气体分散装置。
  8. 根据权利要求1所述的洗浴护理设备,其特征在于:所述水箱的顶部通过第二管道与所述水箱的底部连通,所述臭氧气体循环泵位于所述第二管道上,所述臭氧气体循环泵的位置高于所述水箱的顶部。
  9. 根据权利要求8所述的洗浴护理设备,其特征在于:所述第二管道上的位于所述水箱底部的第二出口端上设置有第二爆气装置,所述第二爆气装置为带有密集小孔的气体分散装置。
  10. 根据权利要求1所述的洗浴护理设备,其特征在于:所述臭氧尾气处理装置内设置有第一加热装置,被吸附的富余臭氧经所述第一加热装置的高温作用迅速分解。
  11. 根据权利要求1所述的洗浴护理设备,其特征在于:所述臭氧尾气处理装置使用的吸附 材料为活性炭。
  12. 根据权利要求1所述的洗浴护理设备,其特征在于:该洗浴护理设备的第二加热装置设置于所述水箱的空腔底部,对所述水箱中的水进行加热;所述第二加热装置与所述温度水位感应器配合作用,使得水位低于预设水位不加热,水温达到设定温度停止加热。
  13. 根据权利要求1所述的洗浴护理设备,其特征在于:所述水箱的顶部设置有用于注水的水箱盖,所述排气泄压孔位于所述水箱盖上。
  14. 根据权利要求2所述的洗浴护理设备,其特征在于:所述设备还设有洗浴出水口,所述洗浴出水口通过第三管道与所述水箱的出水口连通,在所述第三管道上设有出水泵和出水泵导气排水管,所述出水泵和所述控制器连接;所述洗浴出水口的位置高于所述水箱顶部,所述出水泵导气排水管的位置低于所述水箱底部。
  15. 根据权利要求14所述的洗浴护理设备,其特征在于:所述出水泵导气排水管上设有第一截止阀。
  16. 根据权利要求14所述的洗浴护理设备,其特征在于:所述温度水位感应器与所述出水泵配合作用,使得所述水箱中的水温一旦超过设定温度,所述出水泵将停止工作。
  17. 根据权利要求16所述的洗浴护理设备,其特征在于:所述设定温度为60℃。
  18. 根据权利要求14所述的洗浴护理设备,其特征在于:所述出水泵为24V直流无刷水泵。
  19. 根据权利要求14所述的洗浴护理设备,其特征在于:所述洗浴出水口上活动连接有带开关可调节的出水喷头。
  20. 根据权利要求1所述的洗浴护理设备,其特征在于:所述水箱的出水口上还设有出水口过滤器。
  21. 根据权利要求1所述的洗浴护理设备,其特征在于:在所述水箱底部还设有水箱排污口,所述水箱排污口通过排污管与所述水箱的外部连通,所述排污管上设有第二截止阀。
  22. 根据权利要求21所述的洗浴护理设备,其特征在于:所述水箱排污口在所述水箱内的位置低于所述水箱的出水口在所述水箱内的位置。
  23. 根据权利要求1所述的洗浴护理设备,其特征在于:所述设备还设有用于降压供电的交直流变压器。
  24. 根据权利要求1所述的洗浴护理设备,其特征在于:所述水箱外部设有设备外壳,所述设备的电源插头设置于所述设备外壳上,所述设备外壳的底部设有用于所述设备移动的脚轮。
  25. 根据权利要求2所述的洗浴护理设备,其特征在于:所述设备外壳的顶部设置有操作控制面板,所述操作控制面板与所述控制器连接。
  26. 根据权利要求25所述的洗浴护理设备,其特征在于:所述操作控制面板设置有按键操作板和淋浴键,所述淋浴键为一键启动淋浴或关闭淋浴的淋浴键。
  27. 根据权利要求1所述的洗浴护理设备,其特征在于:所述水箱外部还设有用于保温水箱中的水的保温系统。
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