Portable halogenator, air purifier suitable for use in salt rooms, salt cabins and at home.
Patent Information
- Application Number
- TR202609840U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-06-18
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2036-06-18
Smart Images

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Abstract
Description
1 TARIFF SUITABLE FOR USE IN SALT ROOMS, SALT CABINETS, AND AT HOME. PORTABLE HALOGENERATOR, AIR PURIFIER Technical Area The invention is intended for the protection and improvement of health, the maintenance of respiratory hygiene, and ambient air quality. Improving the quality of life, most respiratory diseases, skin diseases, one in the treatment and rehabilitation of this part, many diseases, especially respiratory tract infections 10 for protection against disease, as well as for health in healthy individuals and physical fitness in athletes. Halotherapy (halos = Greek, salt, Therapy = treatment) is used for the purpose of improving performance. Within the scope of the given application; atmospheric conditions naturally found in salt caves (microclimate) creating a simulated environment in salt therapy rooms, salt cabins, and any room. by means of containing sufficient density and fineness of respirable salt particles (haloaerosol) 15 with a halogenator, a healthy and useful product developed for dispersing into the ambient air It is related to. Apart from its use for health and therapeutic purposes, the invention has an ambient air purifying feature. has. State of the Art 20 Today, shortness of breath and difficulty breathing are common symptoms of respiratory illnesses such as asthma, allergies, and bronchitis. During this process, oxygen-containing atmospheric air is inhaled through respiration, and then, in structures called alveoli... the conducting airway, also called the tracheobronchial tree, which transports air to the air spaces. narrowing of the airways, blockage with mucus, etc., and resulting difficulties in airflow. It is the event of causing something to happen. 25 In the treatment of respiratory diseases, spray-type medications are now widely used throughout the world. It is used as a respiratory form. In addition, it is administered via inhalation in pill, syrup, or injection form. Applications are also seen. Used in spray form and administered orally or by injection. The medications given are not intended to be distributed throughout the entire body and therefore effective everywhere. Systemic side effects can also be seen in organs (heart, kidneys, etc.). Moreover, the spray, 30 It takes hours to observe the effects of medications given orally or by injection. Also, in the treatment of these diseases, the liquid medicine can be vaporized and used in a mask or With the help of a mouthpiece, the medication is delivered to the respiratory tract while the patient breathes normally. Nebulizers, which are small electrical devices that allow these medications to reach the target, are also used. The effects last a maximum of 24 hours, depending on the type of medication, and a repeat dose is required after 35 days. It is necessary. 2 In the treatment of respiratory diseases, halotherapy in general, and speleotherapy (speleon) in particular, are used. = Greek. Cave, therapy = treatment; breathing in the natural microclimate environment of a salt cave. caving therapy (by means of caving) and haloaerosol therapy (by halogenerator in a salt chamber) The resulting salt aerooles, of suitable fineness and density, release breathable salt into the environment. (by breathing in an artificial microclimate environment created by the scattering of particles), breath 5 these two conditions that cause narrowing (widespread narrowing of the bronchial tree and dark adhesive) It partially and permanently eliminates the formation of mucus plugs. Purpose of the Invention In halotherapy (salt therapy), which involves using a halogenerator with rock salt; 10 gradually eliminate the basic mechanisms described above that cause shortness of breath by removing it, the disease is treated (effectively for up to 24 hours) for a much longer period, not just temporarily. It enables the regression and noticeable improvement of symptoms. It is a non-drug, supportive treatment. Halotherapy, as an alternative treatment option, should be accessible to patients and individuals in need. In parallel with the increasing habit of utilizing salt caves in our country, 15 Making it known and feasible to continue the application with halogenators is an innovation. It brings and provides advantages to the relevant sector. An alternative to classical medical treatments. However, salt cave therapy or salt therapy with a halogenerator can help patients It improves the quality of their daily lives, increases their exercise capacity, and reduces shortness of breath. It reduces dependence on oxygen support, hospitalization, emergency room visits, and the number of inhalers used. By reducing the need for medication, the disadvantages associated with drug treatment and care are eliminated. It removes. The device (halogenerator) that is the subject of the utility model application is portable and This product is designed for home use. There is no such product in our country. They are not manufactured. If there are devices suitable for home use with water-based systems and ultrasonic methods... However, there is no device (halogenerator) that produces dry salt aerosol. There are portable 25 that produce aqueous salt aerosol. Other devices are generally not preferred, except for certain diseases such as cystic fibrosis. The devices that produce dry salt aerosol are the ones that are effective in treatment. Explanation of the figures Brief descriptions of the forms in the application are given below. 30 Figure 1: Unassembled assembly of the device (halogenerator). Figure 2: Top cover Figure 3: Fuselage (front) Figure 4: Fuselage (rear view) 3 Figure 5: Body bottom panel – A Figure 6: Body bottom panel – B Figure 7: Body top panel Figure 8: Bottom cover Figure 9: Assembled view of the device (halogenerator) 5 Figure 10: Technical drawing of the top cover. Figure 11: Fuselage technical drawing Figure 12: Technical drawing of the bottom cover. Explanation of references in figures 10 The elements shown in the figures, such as parts, process steps, and features (circled), are labeled 1, 2, 3, 4, ... are indicated by numbers. Brief descriptions are listed below. 1- Blower tube that expels the salt aerosol-air mixture. 2- Channel geometry directing the salt aerosol-air mixture to the outlet pipe 15 3- Speed control circuit button 4- Time relay trigger button 5- Power / electrical socket input 6- Power / electricity on / off button 7- Speed control circuit 20 8- Engine 9- Time relay circuit 10- Reservoir 11- Crusher (or crushing wheel) 12- Fan outlet (blower) 25 13- Fan Description of the invention The device (halogenerator) consists of three main parts: the housing, the top cover, and the bottom cover. The bottom cover (Figure-8) keeps the device upright on the ground while also creating a raised surface of 30°. thanks to the fan (13) that will be placed inside, the air from the air gaps, top cover (Figure-2) It allows pressure to be applied to the gap between the interior and the top panel of the body (Figure-7). The lower panel of the housing (Figures 5 and 6) houses the electronic components inside the device. It creates volume for placement. It also connects the top cover (Figure-2) and the bottom cover (Figure-8). 4 Located between them, the fan (13) working on the bottom cover; through the fan outlet (blower) (12), to the top The body is designed to inject air into the space between the inside of the cover (Figure-2) and the upper panel of the body (Figure-7). It passes through the gap in the lower panel. Speed control circuit (7) located on the fuselage lower panel – A (Figure–5), fuselage front It is controlled by the speed adjustment circuit button (3) located on (Figure-3). 5 It adjusts the speed of the motor (8). The shaft of the motor (8) is connected to the breaker (or) on the top panel (Figure-7). The crushing wheel (11) gives a rotational movement inside the chamber (10). This crushing movement (20 milliliters) of table salt-fine rock salt, microns, was placed into the reservoir (10) with the effect of the effect. It breaks down into aerosols at a certain level. As the added salt turns into aerosols, the large, unbroken particles remain. The fragmented salts remain in the reservoir. These aerosols, as stated in the invention description, are activated by fan 10. The aerosol produced in the reservoir (10) by the air pushed through the outlet (blower) (12) is placed in the top cover-body. It mixes in the space between them, and the pressure is equalized in this area. The reservoir (10), needs It is designed to be easily disassembled and reassembled when needed. The salt aerosol-air mixture is discharged into the outlet pipe located inside the top cover (Figure-2). The channel geometry (2) directs the salt particles out of this channel at high speed 15 will emerge and prevent most of the large salt particles from passing through, creating a micron-fine dry layer. conveys salt aerosols, salt aerosol-air mixture, to the blower tube (1) that discharges them outwards. It is designed in such a way as to. As a result, the fan outlet is with the contribution of the blower (12). Thanks to the positive pressure created, the appropriate quantity and properties of salt aerosol are released into the air. The mixture, when inhaled by the individual who will benefit from it in a smooth and fluid manner, and applied to the skin, 20 The air is released to the outside for contact or dispersal into the air environment. The air is pushed by the fan (13) The quantity is calibrated during the production process. The body is located at the rear (Figure–4), and the 12V motor (8) is connected via the power / electrical socket input (5). and power is supplied for the fan (13) to operate. Power / electricity on / off switch By activating the timer with (6), the device (halogenerator) becomes operational. 25 The time relay circuit (9) placed on the lower panel of the housing – B (Figure–6) is adjustable. It is characterized by the time relay trigger button (4) on the body (front) (Figure-3). This activates the dry salt aerosol-air mixture for a set period (e.g., 20 minutes). The mixture is added, the process stops at the end of the time period, to allow for the possibility of contact with an undesirable density. Security measures have been taken. 30 The electronic components must be wired to perform the functions described in the product. The connection is being made. The user does not have direct contact with the electrical circuit. The device (halogenator) in its assembled state without assembly (Figure-1) and the device (halogenator) in its assembled state. The complete image (Figure 9) is located in the pictures section. The design and process for the halogenator to perform its function are described above. It has been explained that the 12V adapter required to provide power / electricity is supplied separately from the device. It is a part. Depending on the request and use (sitting, lying down, etc.), the fan outlet blower (12) Its size is designed to be wide enough to accommodate a hose set. The device is suitable for individual use. To summarize its usage, Device 5 It is started. The crusher (11) and the fan (13) operate simultaneously. The speed of the motor (8) is adjusted by the speed control circuit. The blower that releases the salt aerosol-air mixture is adjusted by means of the button (3). The fineness and density of the salt aerosol-air mixture released into the external environment from the pipe (1) It is adjusted. With the help of the time relay circuit (9), the device stops after 20 minutes of operation. Physician If the suggestion is to implement the application for a period longer than this, then time relay trigger 10 The device is restarted by pressing the button (4). Power on / off button (6) The application can be terminated at the desired time. When the session is complete, the device should be turned upside down. The salt in the container (10) is poured out and the inside of the container is cleaned with a dry brush. Moisture and waiting If salt gets stuck to the edge of the hopper, the hopper is removed, the inside of the hopper and the crusher (or crusher wheel) (11) The surrounding area is cleaned again with a dry brush, and the container is put back in place. This way, the device is ready for the next 15... It is made ready for use. To give an approximate measurement for the device, see Figures 10, 11 and... As shown in image 12, the dimensions are as follows: width 10 cm, length 20 cm, height 20 cm. Also salt. Since the blower tube (1) that discharges the aerosol-air mixture has a diameter of 22 mm, The breathing circuit hose set is suitable for attachment and can be used in various positions (sitting, lying down, etc.) as needed. Depending on the usage, it provides convenience to the individual in personal use. 20 How the invention can be applied to industry. The invention's housing can be manufactured by molding or 3D printing. It includes electronic circuits and components, a fan, etc. The motor is supplied from the market. The hopper (10) and crusher (or crusher wheel) (11) are mechanical. It is manufactured from stainless steel and aluminum. Suitable for manufacturing and assembly: 25 It is a model; it becomes usable after the necessary checks are carried out. The invention relates to health, respiratory rehabilitation, respiratory hygiene, care services, athlete conditioning, ambient air By being transformed into ready-made products that can be used in improving quality, in the "Technical field" It will be made available to the target audience described in the section.
Claims
6 REQUESTS 1. The invention describes a small, portable device that can be used in salt rooms, salt cabins, and at home. The halogenator is an air purifier whose feature is; -a container into which salt is placed (10), 5 -a motor(8) and a motor-driven rotating crusher (11), -Air is pumped into the gap between the inside of the top cover and the top panel of the body, and is calibrated during the production process. a fan (13), - rock salt aerosol-air by injecting air into the gap between the inside of the top cover and the top panel of the body. Fan outlet (blower)(12) which enables the mixing to be obtained, 10 -Salt aerosol by regulating pressure and creating positive pressure in the aforementioned space- duct geometry that directs the air mixture to the outlet pipe and accelerates the flow of the mixture (2), -respirable, micron-level salt aerosol-air via the mentioned channel geometry (2) blower tube (1) that discharges the mixture, 15 -speed control circuit(7) which adjusts the motor speed to adjust the fineness of the salt. the speed control circuit button (3) that enables this to work, -Time relay circuit (9) where the duration of the operation is set. -time relay trigger button(4) and electrical switch which control the circuits in question- It includes a power button. 20 2. It is a halogenerator according to claim 1, and its characteristic is that it discharges a salt aerosol-air mixture into the outlet pipe. channel geometry (2) directing the breathable, micron-level small salt aerosol It must be structured and designed in a way that allows it to be blown into.
3. It is a halogenerator according to claim 1, and its characteristic is that it releases a salt aerosol-air mixture. The blower pipe (1) must be of a suitable size for fitting the hose set. 25