Intelligent breast treatment device

By using wearable design and adjustment components in intelligent breast treatment devices, the problems of patient exposure and moisture buildup caused by traditional Chinese medicine fumigation devices are solved, thus improving treatment comfort and effectiveness.

CN122440461APending Publication Date: 2026-07-24GUANGZHOU FOUNDERY IND CO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGZHOU FOUNDERY IND CO
Filing Date
2024-01-18
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing Chinese herbal fumigation equipment is large and cannot be worn, leaving patients' bodies exposed and affecting their treatment experience. This is especially true in winter when patients are prone to catching colds, and the accumulation of moisture also affects the treatment effect.

Method used

A smart breast treatment device was designed, including a vest, a limiting block, a pull rope, an air shield, and a jet assembly. The wearable design enables the fumigation of traditional Chinese medicine, and the combination of airbags and drainage components regulates the space and removes water vapor, ensuring treatment effectiveness and patient comfort.

Benefits of technology

It improves the patient's treatment space and comfort, avoids colds in winter, enhances the therapeutic effect of traditional Chinese medicine fumigation, and effectively manages water vapor and water droplets, thus improving the treatment experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of medical apparatus and instruments, in particular to an intelligent breast treatment device. The technical problem is that the existing fumigation equipment is large, which causes the patient to be unable to wear clothes for treatment, causes most of the patient's body to be exposed and unable to be shielded, and affects the patient's treatment experience, and if the treatment is performed in winter, the patient is easily caused to catch a cold. The technical scheme is that the intelligent breast treatment device comprises a waistcoat, a limiting block one and a pull rope one. The upper part and the lower part of the waistcoat are each annularly distributed with a plurality of limiting blocks one. All the limiting blocks one in the upper part are jointly and slidably connected with a pull rope one, and all the limiting blocks one in the lower part are jointly and slidably connected with another pull rope one. The wearable treatment mode can greatly improve the activity space of the patient during treatment, the patient can wear clothes for shielding during treatment, and a cotton-padded jacket can be worn in winter to keep warm and avoid catching a cold.
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Description

Technical Field

[0001] This invention relates to the field of medical device technology, and in particular to an intelligent breast treatment device. Background Technology

[0002] Acute mastitis is an acute suppurative infection of the mammary gland, which is an inflammation of the mammary ducts and surrounding connective tissue. Traditional Chinese medicine fumigation is an important method for treating mastitis. Traditional Chinese medicine fumigation therapy is a treatment method that uses the steam of traditional Chinese medicine fumigants to fumigate the affected area. Currently, in the process of traditional Chinese medicine fumigation therapy, clothing needs to be removed in order to achieve the best therapeutic effect. However, due to the large size of the existing fumigation equipment, patients cannot wear clothes for treatment, resulting in most of their bodies being exposed without any cover, which affects the patient's treatment experience. Furthermore, if the treatment is carried out in winter, it is easy for patients to catch a cold. The moisture generated during treatment will adhere to the equipment. When there is too much moisture, it will form water droplets and eventually fall into the equipment, forming puddles. If the water is not drained, the patient's area will be soaked in water. However, cleaning the water requires detaching the equipment from the patient, which will affect the progress of the treatment. Summary of the Invention

[0003] To overcome the shortcomings of existing fumigation equipment, which is too large, making it impossible for patients to wear clothes during treatment and leaving most of their bodies exposed, thus affecting the patient's treatment experience, and which can easily lead to patients catching a cold if treatment is performed in winter, this invention provides an intelligent breast treatment device.

[0004] The technical solution is as follows: An intelligent breast treatment device includes a vest, a limiting block, and a pull rope; several limiting blocks are arranged in a ring on the upper and lower parts of the vest; all the upper limiting blocks are slidably connected to a pull rope, and all the lower limiting blocks are slidably connected to another pull rope; it also includes connecting discs, air shields, silicone gaskets, an air inlet pipe, and a rotating disc; a connecting disc is fixed to each of the two sides of the front of the vest; each connecting disc is rotatably connected to an air shield; a silicone gasket is fixed to the rear of each air shield, and the silicone gasket is located inside the vest; an air inlet pipe is fixed to the front of the vest; the air inlet pipe communicates with all the air shields; and a rotating disc is fixed to the rear of each air shield.

[0005] Furthermore, each rotating disc has a groove on each side.

[0006] Furthermore, it also includes an adjustment component, with the air deflector connected to an adjustment component for adjusting the size of the internal space of the air deflector; the adjustment component includes a support plate, an airbag, a circular air deflector plate, and a circular silicone plate; a support plate is fixedly connected inside each air deflector; an airbag is fixedly connected to the inner side of each air deflector; a circular air deflector plate is fixedly connected to each airbag, and the circular air deflector plate is slidably connected to the support plate; a circular silicone plate is fixedly connected to each circular air deflector plate.

[0007] Furthermore, it also includes a jet assembly. The vest, air deflector, and air intake pipe are all connected to a jet assembly for rapidly expelling gas from the air deflector. The jet assembly includes an air supply pipe, a second airbag, a fixing block, a tension spring, a one-way valve, a slide rail, a slider, a rotating rod, a torsion spring, a second pull rope, a pull ring, a second limit block, a pushing block, a drainage assembly, and a baffle assembly. An air supply pipe is fixedly connected to the front of the vest, and the air supply pipe communicates with the air deflector. An airbag is fixedly connected to the lower part of the air supply pipe, and the air supply pipe communicates with the second airbag. A fixing block is fixedly connected to the lower part of the second airbag, and a tension spring is fixed between the fixing block and the air intake pipe. The air supply pipe and the fixing block... Each block is fixedly connected to a one-way valve; a slide rail is fixedly connected to the front of the air inlet pipe, and a slider is slidably connected to the slide rail; a rotating rod is rotatably connected inside the slider; a torsion spring is connected to both sides of the rotating rod and the slider; a pull rope is fixedly connected to the rotating rod, and a pull ring is fixedly connected to the pull rope; a limit block is fixedly connected to the upper part of the vest, the air supply pipe, and the fixing block, and the pull rope passes through all the limit blocks; a push block is fixedly connected to the pull rope; the air inlet pipe and the slider are connected together to a baffle assembly for guiding the exhaust gas; the baffle cover, the air inlet pipe, and the baffle cloth are connected together to a drainage assembly for draining the generated water.

[0008] Furthermore, the baffle assembly includes a sliding plate, a pull rope three, a compression spring one, and an air-blocking cloth; the sliding plate is slidably connected to the connection part of the air intake pipe; the pull rope three is fixedly connected to the sliding plate; the pull rope three is connected to the slider; at least two compression springs one are connected between the right side of the sliding plate and the air intake pipe; and an air-blocking cloth is connected between the left side of the sliding plate and the air intake pipe.

[0009] Furthermore, it also includes a sponge, and the air inlet pipe is provided with an air outlet, with the sponge fixedly connected to the air outlet of the air inlet pipe.

[0010] Furthermore, it also includes guide plates; each air deflector has a guide plate fixed inside.

[0011] Furthermore, the guide plate appears curved when viewed from above.

[0012] Furthermore, it also includes magnets; a magnet is fixed to each of the upper sides of the air intake pipe; and a magnet is fixed to each of the rear sides of the slider.

[0013] Furthermore, the drainage assembly includes a drain pipe, a hollow cylinder, a second compression spring, a second sponge, and a collection box; a drain pipe is fixedly connected to each side of the air inlet pipe, and each drain pipe is connected to the bottom of an air baffle; the air inlet pipe is slidably connected to the hollow cylinder; the upper part of the hollow cylinder is provided with a protrusion; a second compression spring is connected between the hollow cylinder and the air inlet pipe; a second sponge is fixedly connected to the upper part of the air baffle; a collection box is snapped into the left side of the air inlet pipe connection, and a water outlet is opened on each side of the left side of the air inlet pipe, and the water outlet is connected to the collection box.

[0014] The beneficial effects of this invention are: Put the vest on your body, place the area to be treated under the air shield, and then tighten the first drawstring to make the vest fit snugly against your body. Then tie the first drawstring to prevent it from loosening. Then the external air delivery device delivers water vapor for Chinese medicine fumigation into the air shield through the air inlet pipe, thereby realizing Chinese medicine fumigation treatment for the breast. The wearable treatment method can greatly improve the patient's room of movement during treatment, and clothing can be worn to cover the area. In winter, a cotton-padded coat can be worn to keep warm and avoid catching a cold.

[0015] The inflated airbag pushes the circular air baffle and the circular silicone plate backward. The backward movement of the circular air baffle and the circular silicone plate will gradually reduce the space inside the air baffle, thereby adjusting according to the size of the patient, avoiding the waste of water vapor, and thus enhancing the therapeutic effect of traditional Chinese medicine fumigation.

[0016] Although some water can be drained through the drain pipe, water in areas far from the drain pipe cannot be drained, leading to excessive water accumulation. This water then comes into contact with the treatment area, affecting the patient's treatment experience. Therefore, when too much water accumulates, the airbag is controlled to repeatedly expand and contract, causing a large amount of gas to be injected into the air shield. The gas then moves backward along the inner wall of the air shield, thus pushing the water flow into the drain pipe and preventing excessive water accumulation inside the air shield. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the intelligent breast treatment device of the present invention; Figure 2 This is a partial structural schematic diagram of the intelligent breast treatment device of the present invention; Figure 3 This is a partial structural cross-sectional view of the intelligent breast treatment device of the present invention; Figure 4 This is a schematic diagram of the jet assembly of the intelligent breast treatment device of the present invention; Figure 5 This is a partial structural cross-sectional view of the jet assembly disclosed in the intelligent breast treatment device of the present invention; Figure 6This is a schematic cross-sectional view of the second partial structure of the jet assembly disclosed in the intelligent breast treatment device of the present invention. Figure 7 This is a partial structural cross-sectional view of the hole-blocking assembly disclosed in the intelligent breast treatment device of the present invention; Figure 8 This is a partial structural cross-sectional view of the drainage component disclosed in the intelligent breast treatment device of the present invention.

[0018] Reference numerals: 1-Vest, 2-Limiting block one, 3-Pull rope one, 4-Connecting disc, 5-Air baffle, 6-Silicone gasket, 7-Intake pipe, 8-Rotating disc, 101-Support plate, 102-Airbag one, 103-Circular air baffle, 104-Circular silicone plate, 201-Air supply pipe, 202-Airbag two, 203-Fixing block, 204-Tension spring, 205-One-way valve, 206-Slide rail, 207-Slider, 208-Rotating rod, 209-Torsion spring, 2010-Pull... Rope 2, 2011-Pull ring, 2012-Limiting block 2, 2013-Pushing block, 211-Sliding plate, 212-Pull rope 3, 213-Compression spring 1, 214-Air baffle cloth, 215-Guide plate, 216-Magnet, 221-Sponge 1, 301-Drain pipe, 302-Hollow cylinder, 303-Compression spring 2, 304-Sponge 2, 305-Collection box, 7a-Connecting part, 7b-Air outlet, 7c-Water outlet, 8a-Groove, 302a-Protrusion. Detailed Implementation

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Example 1 A smart breast treatment device, such as Figures 1-3 As shown, it includes a vest 1, a limiting block 2, and a pull rope 3; several limiting blocks 2 are distributed in a ring on the upper and lower parts of the vest 1; all the upper limiting blocks 2 are slidably connected to a pull rope 3, and all the lower limiting blocks 2 are slidably connected to another pull rope 3. It also includes connecting discs 4, air shields 5, silicone gaskets 6, air inlet pipes 7, and rotating discs 8; a connecting disc 4 is fixedly attached to the left front and right front of the vest 1; each connecting disc 4 is rotatably connected to an air shield 5; a silicone gasket 6 is fixedly attached to the rear of each air shield 5, and the silicone gasket 6 is located inside the vest 1. By squeezing the air shield 5, the silicone gasket 6 is made to fit the body better, thereby preventing gas leakage; an air inlet pipe 7 is fixedly attached to the lower front of the vest 1; the air inlet pipe 7 is connected to all the air shields 5, and steam is delivered into the air shields 5 through the air inlet pipe 7; a rotating disc 8 is fixedly attached to the rear outer side of each air shield 5.

[0021] Each rotating disc 8 has a groove 8a on its upper and lower sides, so that the pull rope 3 can be locked into the groove 8a after being tightened, thereby limiting the pull rope 3 and preventing the air baffle 5 from rotating.

[0022] It also includes an adjustment assembly, and the air deflector 5 is connected to the adjustment assembly; the adjustment assembly includes a support plate 101, an airbag 102, a circular air deflector 103 and a circular silicone plate 104; a support plate 101 is fixedly connected to the lower inner side of each air deflector 5; an airbag 102 is fixedly connected to the front inner side of each air deflector 5; a circular air deflector 103 is fixedly connected to each airbag 102, and the circular air deflector 103 is slidably connected to the support plate 101; a circular silicone plate 104 is fixedly connected to the rear side of each circular air deflector 103.

[0023] The specific work steps are as follows: When patients with acute mastitis need to use traditional Chinese medicine fumigation, first put on the vest 1, place the area to be treated on the air shield 5, then tighten the pull rope 3 to make the vest 1 fit snugly against the body, then tie the pull rope 3 to prevent loosening, then connect the external air supply device to the air inlet pipe 7, and then the external air supply device delivers the water vapor of traditional Chinese medicine fumigation into the air shield 5 through the air inlet pipe 7, thereby realizing the traditional Chinese medicine fumigation treatment of the breast. The wearable treatment method can greatly improve the patient's space of movement during treatment, and can wear clothes to cover up during treatment, and can also wear a cotton-padded coat to keep warm in winter and avoid catching a cold; When the pull rope 3 is tightened, the rotating disc 8 protrudes from the vest 1 and is closer to the pull rope 3. Therefore, the pull rope 3 will first drive the rotating disc 8 to move backward. The rotating disc 8 will then drive the air shield 5 and the silicone gasket 6 to move backward together. This makes the silicone gasket 6 move a greater distance than the vest 1, thus fitting the body more closely. This prevents the moisture generated by the Chinese medicine from leaking out of the silicone gasket 6 in the air shield 5, which would cause moisture to adhere to other parts of the patient's body. This would result in a poor treatment experience for the patient, incomplete fumigation, and poor treatment effect. Since each patient's size is different, and size represents the area of ​​water vapor contact during fumigation, if small and large patients use the same air shield 5, some water vapor will adhere to the inner wall of the air shield 5 during fumigation, resulting in incomplete fumigation treatment. Therefore, after putting on the vest, gas is delivered to the airbag 102 through an external air delivery device, causing the airbag 102 to inflate. The inflated airbag 102 then pushes the circular air shield 103 and the circular silicone plate 104 backward. The backward movement of the circular air shield 103 and the circular silicone plate 104 will gradually reduce the space inside the air shield 5. It should be noted that the circular air shield 103 and the circular silicone plate 104 should be moved in front of the area where the patient needs treatment. Then the external air delivery device is removed, and water vapor is delivered to the air shield 5. This can be adjusted according to the size of the patient to avoid wasting water vapor and enhance the therapeutic effect of traditional Chinese medicine fumigation. Sometimes, a patient may experience acute mastitis in only one breast. Therefore, before wearing the mask, rotate the air shield 5 on the area not requiring treatment clockwise from a front-to-back perspective. After rotation, the air shield 5 is no longer connected to the air inlet pipe 7, thus preventing moisture from being delivered to the air shield 5 during treatment, avoiding waste. The air shield 5 will also rotate the rotating plate 8, causing the upper and lower parts of the rotating plate 8 to move away from the pull cord 3. This prevents the rotating plate 8 from moving when the pull cord 3 is tightened, thus preventing the area not requiring treatment from being squeezed by the silicone gasket 6, thereby avoiding unnecessary pressure on the patient. It should be noted that when the pull cord 3 is tightened, it will engage in the groove 8a, thus preventing the patient from experiencing pressure during treatment. During the process, the rotation of the air shield 5 causes the air inlet pipe 7 to be unable to deliver water vapor normally. During the fumigation of traditional Chinese medicine, some of the water vapor will adhere to the inner wall of the air shield 5. As the amount of water vapor increases, water droplets will form. As the number of water droplets increases, the water droplets will flow downward along the inner wall of the air shield 5 and concentrate on the lower inner side of the air shield 5. If the breast is in contact with the air shield 5 at this time, the downward flowing water will surround the breast, affecting the patient's treatment experience. At the same time, the area where the breast is in contact with the air shield 5 will not be able to be fumigated, thus affecting the treatment effect. At this time, the support plate 101 supports the breast that needs to be treated, thereby maintaining space between the breast and the air shield 5 to prevent water from contacting the breast. At the same time, the lower part of the breast can also come into contact with water vapor.

[0024] Example 2 Based on Example 1, such as Figures 3-8As shown, it also includes a jet assembly. The vest 1, the air deflector 5, and the air intake pipe 7 are all connected to the jet assembly. The jet assembly includes an air supply pipe 201, an airbag 202, a fixing block 203, a tension spring 204, a one-way valve 205, a slide rail 206, a slider 207, a rotating rod 208, a torsion spring 209, a pull rope 2010, a pull ring 2011, a limiting block 2012, a pushing block 2013, a drainage assembly, and a baffle assembly. The air supply pipe 201 is fixedly connected to the upper front side of the vest 1, and the air supply pipe 201 communicates with the air deflector 5. The airbag 202 is fixedly connected to the lower part of the air supply pipe 201, and the air supply pipe 201 communicates with the airbag 202. The fixing block 203 is fixedly connected to the lower part of the airbag 202, and a tension spring 204 is fixedly connected between the fixing block 203 and the air intake pipe 7. The air supply pipe 201 and the airbag 202 are connected to the air intake pipe 7. Each of the fixed blocks 203 is fixedly connected to a one-way valve 205; the front of the air inlet pipe 7 is fixedly connected to a slide rail 206, and the slide rail 206 is slidably connected to a slider 207; a rotating rod 208 is rotatably connected inside the slider 207; a torsion spring 209 is connected to the left and right sides of the rotating rod 208 and the slider 207; a pull rope 2010 is fixedly connected to the rotating rod 208, and a pull ring 2011 is fixedly connected to the pull rope 2010; a limiting block 2012 is fixedly connected to the upper left side of the vest 1, the air inlet pipe 201, and the fixed block 203, and the pull rope 2010 passes through all the limiting blocks 2012; a push block 2013 is fixedly connected to the pull rope 2010; the air inlet pipe 7 and the slider 207 are connected to a baffle assembly; the air baffle 5, the air inlet pipe 7, and the air baffle cloth 214 are connected to a drainage assembly.

[0025] The baffle assembly includes a sliding plate 211, a pull rope 212, a compression spring 213, and an air baffle cloth 214; the sliding plate 211 is slidably connected to the connecting part 7a of the air intake pipe 7; the pull rope 212 is fixedly connected to the sliding plate 211; the pull rope 212 is connected to the slider 207; two compression springs 213 are connected between the right side of the sliding plate 211 and the air intake pipe 7; and an air baffle cloth 214 is connected between the left side of the sliding plate 211 and the air intake pipe 7.

[0026] It also includes a sponge 221, and the air inlet pipe 7 is provided with an air outlet 7b. The sponge 221 is fixedly connected to the air outlet 7b of the air inlet pipe 7.

[0027] It also includes a guide plate 215; each air deflector 5 has a guide plate 215 fixedly attached to the upper side inside, which guides the blown water droplets and prevents the water droplets from blowing directly onto people.

[0028] The guide plate 215 is arc-shaped when viewed from above, which allows water droplets to flow downwards along the guide plate 215.

[0029] It also includes magnets 216; one magnet 216 is fixedly attached to the upper left and upper right sides of the air intake pipe 7; one magnet 216 is fixedly attached to the rear left and rear right sides of the slider 207. When the slider 207 rises, the magnets 216 on the air intake pipe 7 and the magnets 216 on the slider 207 are attracted together, so that the slider 207 remains stationary and can repeatedly spray air.

[0030] The specific work steps are as follows: Before starting work, connect the external exhaust pipe to the air outlet 7b and then begin working; During the steam fumigation treatment, a portion of water vapor is first introduced into the air shield 5. Once the water vapor in the air shield 5 is absorbed, another portion is introduced. Because the water vapor is relatively hot, continuous introduction of water vapor would cause the temperature inside the air shield 5 to rise rapidly, which is unbearable for the human body to experience prolonged high-temperature fumigation. Therefore, during the treatment, it is necessary to ensure that the temperature inside the air shield 5 does not become too high. When new water vapor enters the air shield 5, it mixes with the old water vapor, which has already been absorbed, reducing the therapeutic effect of the old water vapor. At this point, the new water vapor mixes with the old water vapor... Mixing will reduce the therapeutic effect of the new water vapor. Therefore, before adding new water vapor, the patient holds the pull ring 2011 and pulls the second pull rope 2010, causing the second pull rope 2010 to move upward. This causes the second pull rope 2010 to drive the rotating rod 208, slider 207, push block 2013, and pull rope 212 upward, so that the push block 2013 contacts the lower part of the limiting block 2012 connected to the fixed block 203. This causes the second pull rope 2010 to drive the fixed block 203 upward, stretching the tension spring 204. Moving upwards 03 will compress airbag 202, causing the gas inside airbag 202 to be injected into the air deflector 5 through the air supply pipe 201. As the gas from airbag 202 is injected into the air deflector 5, the old moisture inside the air deflector 5 will enter the air intake pipe 7 through the drainage component, thereby expelling the gas inside the air deflector 5. When the pull rope 3 212 is moved upwards, it will cause the sliding plate 211 to move to the right and compress the compression spring 1 213, thereby causing the air deflector cloth 214 to unfold, so that when the gas is discharged into the air intake pipe 7, it will not enter the air supply pipe. Instead of being discharged from the device, the old gas is discharged through the outlet 7b to the external exhaust pipe, thus completing the discharge of the old gas. If it is cold during treatment, the outlet 7b will not be connected to the external exhaust pipe, so that the old gas is discharged directly from the outlet 7b. This allows the discharged gas to be placed between the human body and the down jacket, thereby warming the human body. When the gas is discharged, the sponge 221 will intercept the moisture in the old water vapor, preventing the discharged gas from containing too much moisture, which would cause a lot of moisture to adhere to the down jacket, making the down jacket wet and easily causing the patient to catch a cold. If the second pull rope 2010 moves upwards and pulls the third pull rope 212 together, the movement will be synchronous, causing the gas ejection from the second airbag 202 and the deployment of the air barrier 214 to occur simultaneously. Since the air barrier 214 is not fully deployed, some of the old gas entering the air intake pipe 7 will be discharged into the air delivery device. Therefore, when the second pull rope 2010 moves upwards, part of the second pull rope 2010 will be wound onto the rotating rod 208. When the second pull rope 2010 drives the third pull rope 212 upwards, due to the torsion of the torsion spring 209... The force is greater than that of the compression spring 213, causing the pull rope 212 to first drive the sliding plate 211 to move, thus compressing the compression spring 213 and causing the air-blocking cloth 214 to unfold first. When the pull rope 2010 pulls the slider 207 to move upward to the highest point, continuing to pull the pull rope 2010 will drive the rotating rod 208 to rotate, causing the torsion spring 209 to compress, thereby pulling the rolled-up pull rope 2010 open. Only then can the pull rope 2010 pull the fixing block 203 to squeeze the airbag 202, causing it to spray out the gas. It should be noted that when the gas in the second airbag 202 is exhausted, the second pull rope 2010 is released back. At this time, the stretched spring 204 will rebound, thereby driving the compressed second airbag 202 to unfold. This allows the second airbag 202 to draw in external gas through the one-way valve 205 on the fixed block 203. The one-way valve 205 on the air supply pipe 201 can only allow the gas in the second airbag 202 to be discharged into the air baffle 5, preventing the second airbag 202 from sucking away the gas in the air baffle 5. When the second pull rope 2010 is released back, the compressed torsion spring 209 rebounds, driving the rotating rod 208 to rotate, causing the rotating rod 208 to rewind part of the second pull rope 2010 again. After the second rope 2010 moves the slider 207 upward, the magnet 216 connected to the slider 207 will be attracted to the magnet 216 connected to the air inlet pipe 7, so that the compression spring 1 213 cannot rebound to pull the third rope 212, thus keeping the slider 207 stationary. Then, the second rope 2010 is pulled, so that the airbag 202 filled with air is squeezed again, and gas can be repeatedly sprayed into the air shield 5. When the temperature inside the air shield 5 is high and makes the patient uncomfortable, the hot air can be quickly discharged, and the colder air can be quickly discharged into the air shield 5, thus causing the temperature inside the air shield 5 to drop rapidly. It should be noted that when there is no need to discharge the gas inside the baffle 5, the external air supply device starts to supply water vapor. However, because the baffle cloth 214 blocks the channel, the gas cannot be discharged into the baffle 5. When too much gas is concentrated in the baffle cloth 214, the gas will push the baffle cloth 214 upward, causing it to deform and arch upward. At this time, the baffle cloth 214 will pull the pull rope 3 212 downward, which in turn will pull the sliding plate 211 downward, causing the magnet 216 on the sliding plate 211 to separate from the magnet 216 on the air inlet pipe 7. At this time, the compressed compression spring 1 213 will rebound, and the pull rope 3 212 will pull the sliding plate 211 downward back to its original position. At the same time, the pull rope 3 212 will pull the slider 207 downward back to its original position. When the gas inside the second airbag 202 is injected into the air shield 5, it is injected into the space between the air shield 5 and the circular air shield 103. As the amount of gas between the air shield 5 and the circular air shield 103 increases, the gas will compress the circular silicone plate 104 and deform it, so that the gas is discharged into the treatment space along the inner wall of the air shield 5. Then, the gas in the treatment space is discharged through the drainage component. When the gas is injected into the treatment space, since it enters along the inner wall of the air shield 5, the injected gas pushes the water droplets formed by the water vapor attached to the inner wall of the air shield 5 to move backward. The backward-moving water droplets will move downward along the guide plate 215, so that the water droplets flow along the inner wall of the air shield 5 and the guide plate 215 to the lower part of the inner wall of the air shield 5. This avoids the accumulation of too many water droplets on the upper part of the inner wall of the air shield 5, which would drip into the human body and cause discomfort to the patient.

[0031] Example 3 Based on Example 2, such as Figure 4 and Figures 6-8 As shown, the drainage assembly includes a drain pipe 301, a hollow cylinder 302, a compression spring 303, a sponge 304, and a collection box 305; a drain pipe 301 is fixedly connected to the left and right sides of the air inlet pipe 7, and each drain pipe 301 is connected to the bottom of an air baffle 5; the air inlet pipe 7 is slidably connected to the hollow cylinder 302; the upper part of the hollow cylinder 302 is provided with a protrusion 302a; a compression spring 303 is connected between the hollow cylinder 302 and the air inlet pipe 7; a sponge 304 is fixedly connected to the upper part of the air baffle 214; the collection box 305 is snapped into the left side of the connecting part 7a of the air inlet pipe 7, and a water outlet 7c is opened on the front side and the rear side of the left side of the air inlet pipe 7, and the water outlet 7c is connected to the collection box 305.

[0032] The specific working steps of the above drainage components are as follows: When the slider 207 rises, it contacts the protrusion 302a, which in turn drives the hollow cylinder 302 to move upward, causing the compression spring 303 to be in a compressed state. This causes the upper part of the hollow cylinder 302 to block the connection area between the upper part of the air inlet pipe 7 and the air baffle 5. At the same time, after the hollow cylinder 302 rises, the lower part of the hollow cylinder 302 no longer blocks the connection area between the drain pipe 301 and the air inlet pipe 7, thus allowing the drain pipe 301 to be connected to the air inlet pipe 7. This allows the gas in the air baffle 5 to be discharged from the drain pipe 301 into the air inlet pipe 7. Since the connection point between the drain pipe 301 and the air baffle 5 is located at the lower part of the air baffle 5, some water droplets will flow into the drain pipe 302. In step 1, some water droplets are discharged into the air inlet pipe 7, thus avoiding excessive water droplets accumulating in the air baffle 5. When water droplets flow through the air inlet pipe 7 to the air baffle cloth 214, they are absorbed by the sponge 2 304. When the compression spring 1 213 rebounds and drives the sliding plate 211 to move to the left, the sliding plate 211 pushes the air baffle cloth 214 to move to the left and contract. The sliding plate 211 will squeeze the water absorbed on the sponge 2 304, so that the water enters the collection box 305 through the water outlet 7c. This avoids excessive water on the sponge 2 304, which would result in poor absorption. It also avoids directly using the air baffle cloth 214 to block water, causing water to leak out from both sides of the air baffle cloth 214 when it contracts. It should be noted that when the slider 207 descends, the compression spring 303 in the compressed state will rebound, thereby pushing the hollow cylinder 302 back to its original position, so that the drain pipe 301 and the air inlet pipe 7 are in a closed state. It should be noted that although some water can be discharged through the drain pipe 301, water in areas far from the drain pipe 301 will not be able to be discharged, resulting in excessive water accumulation. This water will then come into contact with the treatment area, affecting the patient's treatment experience. Therefore, when too much water accumulates, the airbag 202 is controlled to repeatedly expand and contract, thereby injecting a large amount of gas into the air shield 5. The gas will then move backward along the inner wall of the air shield 5, thus pushing the water flow into the drain pipe 301, thereby preventing excessive water accumulation in the air shield 5.

[0033] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. An intelligent breast treatment device, comprising a vest (1), limiting blocks (2), and pull ropes (3); the vest (1) has several limiting blocks (2) arranged in a ring on its upper and lower parts; all the upper limiting blocks (2) are slidably connected to a pull rope (3), and all the lower limiting blocks (2) are slidably connected to another pull rope (3); characterized in that, It also includes connecting discs (4), air shields (5), silicone gaskets (6), air inlet pipes (7) and rotating discs (8); a connecting disc (4) is fixed to each side of the front of the vest (1); each connecting disc (4) is rotatably connected to an air shield (5); a silicone gasket (6) is fixed to the rear of each air shield (5), and the silicone gasket (6) is located inside the vest (1); an air inlet pipe (7) is fixed to the front of the vest (1); the air inlet pipe (7) is connected to all the air shields (5); a rotating disc (8) is fixed to the rear of each air shield (5).

2. The intelligent breast treatment device according to claim 1, characterized in that, Each rotating disc (8) has a groove (8a) on each side.

3. The intelligent breast treatment device according to claim 1, characterized in that, It also includes an adjustment component, and the air deflector (5) is connected to an adjustment component for adjusting the size of the internal space of the air deflector (5); the adjustment component includes a support plate (101), an airbag (102), a circular air deflector (103) and a circular silicone plate (104); a support plate (101) is fixedly connected inside each air deflector (5); an airbag (102) is fixedly connected to the inside of each air deflector (5); a circular air deflector (103) is fixedly connected to each airbag (102), and the circular air deflector (103) is slidably connected to the support plate (101); a circular silicone plate (104) is fixedly connected to each circular air deflector (103).

4. The intelligent breast treatment device according to claim 3, characterized in that, It also includes a jet assembly. The vest (1), air shield (5), and air intake pipe (7) are connected to a jet assembly for rapidly expelling gas from the air shield (5). The jet assembly includes an air supply pipe (201), airbag two (202), fixing block (203), tension spring (204), one-way valve (205), slide rail (206), slider (207), rotating rod (208), torsion spring (209), pull rope two (2010), pull ring (2011), and limit block two (202). 012), push block (2013), drainage component and baffle component; the front of the vest (1) is fixed with an air supply pipe (201), which is connected to the air baffle (5); the lower part of the air supply pipe (201) is fixed with an airbag two (202), which is connected to the airbag two (202); the lower part of the airbag two (202) is fixed with a fixing block (203), and a tension spring (204) is fixed between the fixing block (203) and the air inlet pipe (7); the air supply pipe (201) and the fixed block (202) are connected to the airbag two (202) and the air inlet pipe (7); Each of the fixed blocks (203) is fixed with a one-way valve (205); the front of the air intake pipe (7) is fixed with a slide rail (206), and the slide rail (206) is slidably connected to a slider (207); a rotating rod (208) is rotatably connected inside the slider (207); a torsion spring (209) is connected between the two sides of the rotating rod (208) and the slider (207); a pull rope (2010) is fixed to the rotating rod (208), and a pull ring (2011) is fixed to the pull rope (2010); a vest ( 1) Each of the upper part, the gas supply pipe (201) and the fixing block (203) is fixed with a limiting block two (2012), and the pull rope two (2010) passes through all the limiting blocks two (2012); the pull rope two (2010) is fixed with a push block (2013); the air inlet pipe (7) and the slider (207) are connected together to a baffle assembly for guiding the exhaust gas; the baffle cover (5), the air inlet pipe (7) and the baffle cloth (214) are connected together to a drainage assembly for draining the generated water.

5. The intelligent breast treatment device according to claim 4, characterized in that, The baffle assembly includes a sliding plate (211), a pull rope three (212), a compression spring one (213), and an air baffle cloth (214); the connecting part (7a) of the air inlet pipe (7) is slidably connected to the sliding plate (211); the sliding plate (211) is fixedly connected to the pull rope three (212); the pull rope three (212) is connected to the slider (207); at least two compression springs one (213) are connected between the right side of the sliding plate (211) and the air inlet pipe (7); the air baffle cloth (214) is connected between the left side of the sliding plate (211) and the air inlet pipe (7).

6. The intelligent breast treatment device according to claim 5, characterized in that, It also includes a sponge (221), and the air inlet pipe (7) is provided with an air outlet (7b). The sponge (221) is fixedly connected to the air outlet (7b) of the air inlet pipe (7).

7. The intelligent breast treatment device according to claim 6, characterized in that, It also includes guide plates (215); each air deflector (5) has a guide plate (215) fixed inside.

8. The intelligent breast treatment device according to claim 7, characterized in that, The guide plate (215) is arc-shaped when viewed from above.

9. An intelligent breast treatment device according to any one of claims 4-5, characterized in that, It also includes a magnet (216); a magnet (216) is fixed to each side of the upper part of the air intake pipe (7); and a magnet (216) is fixed to each side of the rear part of the slider (207).

10. The intelligent breast treatment device according to claim 9, characterized in that, The drainage assembly includes a drain pipe (301), a hollow cylinder (302), a second compression spring (303), a second sponge (304), and a collection box (305); a drain pipe (301) is fixedly connected to each side of the air inlet pipe (7), and each drain pipe (301) is connected to the bottom of an air baffle (5); the air inlet pipe (7) is slidably connected to the hollow cylinder (302); a protrusion (302a) is provided on the upper part of the hollow cylinder (302); a second compression spring (303) is connected between the hollow cylinder (302) and the air inlet pipe (7); a second sponge (304) is fixedly connected to the upper part of the air baffle cloth (214); a collection box (305) is snapped into the left side of the connecting part (7a) of the air inlet pipe (7), and a water outlet (7c) is opened on each side of the left side of the air inlet pipe (7), and the water outlet (7c) is connected to the collection box (305).