The present invention relates to a bathing device, in particular to a body massaging and washing apparatus that can provide cleaning, physiological measurement and fragrance.
At present, most of the examples of automatic bathing devices in foreign countries are traditional bathing machines, most of which still require manual operation, and few of them can provide functions of sterilization, physiological detection and pressure relief. In response to the life style of co-existing with the epidemic in the post-epidemic era and the increase in nursing labor costs, there is an urgent need to have an automatic bathing device for a humanized care, cleaning and epidemic prevention strategy, especially for automatic monitoring and high-risk environments, to implement body cleaning care that takes care of the needs and care process. The automatic bathing device of the present invention not only has the function of reducing both epidemic prevention and nursing labor costs and risks to meet the needs of scientific and technological precision cleaning and nursing, but also integrates cleaning and epidemic prevention, physiological detection, stress relief and relaxation experience and personalization physiological physique detection and deployment of fragrance technology provides users with humanized anti-epidemic care, and allows caregivers and doctors to identify users' physiological conditions.
Regarding the bathing device of the published patent antecedents, those having functions related to the present invention are listed as follows:
In view of the above, the present invention is objected to provide an automatic bathing apparatus, which has the following functions: active oxygen cleans and epidemics prevents, with the harmonious type intelligent active oxygen manufacturing machine (low concentration ozone) in response to the regulation and concentration control of the target to be used with the system; carry out physiological detection before and after use to carry out non-wearable physiological detection for users, which includes heart rate autonomic nerve balance and thermal images to display the body's balance state, deploy and experience fragrance according to personal physiological physique detection, and match with non-contact Schumann wave resonance strengthens deep cleaning and body relaxation. It not only can automatically bathe most parts of the human body with the least amount of water and manpower at one time, but also has multiple functions of showering, bathing, sterilization, bath conditions detection and stress relief.
A preferably embodiment of the body massaging and washing apparatus of the present invention includes a hollow chamber, which is provided with mechanisms such as water spray devices and seat, physiological detection and Schumann resonance pressure relief, and the shape of hollow channel can be rectangular, square, cylindrical, ellipse, etc.
According to said embodiment of the present invention, said hollow chamber has a seat, and a slide rail is arranged on the seat bracket to be connected with the hollow cabin. The seat slide rail allows the user to move the seat to a position which is easier to move into, and then slides into the chamber of the apparatus with the seat rail.)
According to said embodiment of the present invention, a physiological detection part is arranged in the waterproof area of the outer edge of the hollow cabin, with an elastic pad above it to withstand the back of the hand, and a detection metal electrode below, which can facilitate the user to place the palm of the hand onto a non-wearable way to detect physiological signals such as heart rate/ECG/autonomic nerves.
According to said embodiment of the present invention, a thermal image detection device part is arranged in the waterproof area of the outer edge of the hollow chamber, which can conveniently detect the temperature zone on the body image (relative temperature distribution and inflammation portion of limb).
According to said embodiment of the present invention, a Schumann resonance device is arranged on the base of the hollow chamber, which can facilitate users to detect physiological signal of heart rate/ECG/multiple autonomic nerves with non-wearable waterproof electrodes and sensors.
While a preferred second embodiment of the body massaging and washing apparatus of the present invention includes a hollow chamber, an electronically controlled automatic device, which can possess the function of active oxygen sterilization, and utilizes an ozone water generating device to measure and regulate the ozone concentration, which can provide low ozone concentration controller: human body oxygen sterilization and cleaning in human mode (ozone concentration is 0.05 ppm˜0.1 ppm) and hollow chamber cleaning in unmanned mode (ozone concentration<0.12 ppm).
According to said embodiment of the present invention, it also includes an electronically controlled automatic device, which can be matched with a spray atomization nozzle to produce a variety of fragrance bubbles of ultra-nano active oxygen, and the warm water mixed with low-concentration ozone can be borrowed together, so as to clean the human body by spraying into the chamber.
According to said embodiment of the present invention, the said electronically controlled automatic device can provide drying for the body (occupied mode) and chamber (chamber cleaning mode).
According to another embodiment of the present invention, the electronically controlled automatic device can detect object perception and voice warning for spraying and sterilizing when someone is/is not in the chamber.
According to said embodiment of the present invention, the electronically controlled automatic device can detect the temperature and/or humidity in the chamber.
According to another preferred embodiment of the present invention, the electronically controlled automatic device can be automatically set according to the process and display the status on the computer display.
The said electronic control system of the above manned mode and unmanned mode include the steps of:
According to a further embodiment of the present invention, the electronically controlled automatic device can be connected to a host computer and a control system to integrate user interface functions, including ozone concentration measurement and control to manufacture low-concentration ozone and automatically spray according to set parameters sterilization, physiological signal detection, bathing process and control, data transmission and recording can use by touch to set parameters and control.
According to said embodiment of the present invention, the electronically controlled automatic device can be connected to the physiological detection induction, Schumann wave resonance feedback and aroma matching control module, and display physiological parameters on the panel to perform physiological data calculation program calculation and display the results, or automatically accumulate and archive the system data and upload it to the area network data collection and subsequent processing applications.
The above and other objects, features and advantages of the present invention can be fully understood according to the following detailed description based on the accompanying drawings.
Remarks: In the drawings, components or devices or systems with the same name, which are represented by different symbols/numbers in different drawings, can be the same object.
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The above-mentioned bath chamber 10 is a cavity for covering the human body, which can be in various shapes, and the chamber part has a waterproof door 101 that can be opened, and the bather's head is exposed. A seat 102 is arranged inside the chamber, and a liquid pipeline system 103 and a warm air pipeline system 104 are arranged around the chamber, and a drainage hole 105 is arranged at the bottom, forming a closed space by tempered glass or other plastic materials. In the waterproof space, there is a waterproof base 106 next to the seat 102 for detecting physiological signals, and a Schumann resonance pressure relief device 107 is provided at the bottom of the entire chamber.
The electric control system 12 can be used to control the circuit control and induction detection of various bathing modes, and it includes an ozone water generation part 121, an ozone concentration measurement system part 122 and an ozone concentration control system part 123, to provide Low ozone concentration control, and to provide manned mode (ozone concentration is 0.05 ppm˜0.1 ppm) for human body oxygen sterilization and cleaning and unmanned mode for cleaning the chamber (ozone concentration is less than 0.12 ppm); ozone water can also be suitable for other kinds sanitation water.
The electronic control system 12 can be matched with the bath liquid sprayer 14 to generate a variety of fragrance bubbles of ultra-micron nano active oxygen. The electric control system 12 can also provide a warm air control unit 15 to dry the body (manned mode 15A) and chamber (unmanned mode 15B).
The electronic control system 12 may also include an manned/unmanned warning device part 16 for detecting object perception and voice warning for spraying and sterilizing when the chamber is manned or unmanned.
The electronic control system 2 may further include a temperature and humidity detection unit 17 to automatically detect the temperature and humidity in the chamber 10. And the physiological detection system part 18, which is connected to the host computer 11.
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The bath chamber 20 is a cavity for covering the human body, which can be in various shapes, and the chamber has a waterproof door 201 that can be opened and exposes the bather's head. A seat 202 is provided inside the chamber, a liquid pipeline system 203 and a warm air pipeline system 204 are provided around the chamber, and a drainage hole 205 is provided at the bottom, and a waterproof base 206 for detecting physiological signals, a Schumann resonance pressure relief device 207 is provided at the bottom of the entire chamber, which is sealed into a waterproof space by tempered glass or other materials. The electric control system is connected with a manned/unmanned warning device part 26, a temperature and humidity detection system part 27, a bathing machine start button 27A, and a bathing machine stop button 27B.
The bath chamber 20 is provided with a seat 202 inside, and is connected to the bath chamber 20 by means of a slide rail 202A installed on the seat bracket. The seat slide rail 202A allows the user to move to Easier to move into the seat position, and then slide into the bath chamber 20 with the seat slide rail 202A.
The pipeline system 203 of the bath chamber 20 includes a bath liquid spraying device part 24, a warm air control system part 25 and a drain hole 205 at the bottom. Where in, the bath liquid spraying device part 24 includes the prepared low-concentration ozone water and aroma foam and injects it with warm water and cold water; the warm air control system part 25 can introduce warm air for drying the human body and the chamber; the cleaned sewage Then it is discharged from the drain hole 205.
The bath chamber 20 has a physiological detection system part 28 installed in the waterproof area of the outer edge of the chamber. There is an elastic pad 28A above the outer edge of the chamber to withstand the back of the bather's hand, and the bottom is for detection. The metal electrode 28B is convenient for users to put their palms in to detect physiological signals such as heart rate/ECG/autonomic nerves in a non-wearable manner.
The electric control system 22 of the bath chamber 20 also includes a presence/absence warning device part 26, a temperature and humidity detection system part 27 that can detect the temperature and humidity of the chamber, and a bath machine start button 27A, a bathing machine stop button 27B to test the remote start or stop the automatic flow of the automatic bathing device, wherein the presence/absence warning device part 26 can also detect object perception and voice warning voice warning of spraying sterilization when there is manned/unmanned in the chamber.
In the bath chamber 20, a part of a thermal image detection device 28C is installed in the waterproof area of the chamber outer edge, which can easily detect the temperature zone on the body image (relative temperature distribution and inflammation of the limb circulation).
In the bath chamber 20, a Schumann resonance pressure relief device 207 is installed in the chamber base 208, which can facilitate the user to detect physiological conditions such as heart rate/ECG/multiple autonomic nerves in a non-wearable and waterproof manner. Signal and guide Schumann resonance to relieve stress.
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The electric control system 32 of the automatic bathing device 300, wherein the ozone water generation system part 303 and the ozone water detection and control system part 304 can possess the low-concentration ozone water of active oxygen sterilization function, which can provide human body active oxygen sterilization Manned mode for cleaning (ozone concentration is 0.05 ppm˜0.1 ppm) and unmanned mode for cleaning the chamber (ozone concentration is less than 0.12 ppm).
The electronic control system 32 of the body massaging and washing apparatus includes a cold water system part 301 and a warm water generation temperature control system part 302, wherein the bath liquid spraying device 34 is matched with a variety of fragrance bubbles of ultra-micronano active oxygen, which can be mixed The warm water of low-concentration ozone water goes into the chamber together to clean the human body.
In the electric control system 32 of the body massaging and washing apparatus, the warm air control system part 35 can provide drying of the body (manned mode) and chamber (unmanned mode).
In the electronic control system 32 of the body massaging and washing apparatus, the manned/unmanned warning system part 36 can detect object perception and voice warnings for spraying and sterilizing when there are manned/unmanned in the chamber.
In the electronic control system 32 of the body massaging and washing apparatus, the temperature and humidity detection system part 37 can detect the temperature and humidity in the bath chamber 21.
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The above-mentioned host computer system 41 includes a physiological measurement detection system part 48 which is connected to a Schumann resonance relief device 407 and the bath fluid spray comparison device 408 to generate the best mode and display physiological parameters perform physiological data calculation program calculations on the panel, and display the test results. The system data is automatically accumulated and archived, and uploaded to the local area network for data collection and subsequent processing applications.
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S65 (at least 10 minutes).
Although the preferred embodiments of the present invention have been described above in conjunction with the accompanying drawings, the present invention is not limited to the specific embodiments described above. The above-mentioned specific embodiments are only illustrative, not limiting, and can be specified in many forms without departing from the purpose of the present invention and the scope of protection of the claims.