Internal medicine atomization treatment equipment for respiratory diseases
By adopting pressure control and synchronous transmission design in internal medical atomization treatment equipment, the problem of difficult drug droplets depositing in the throat is solved, achieving more efficient treatment effects and lower patient discomfort rates.
Patent Information
- Application Number
- CN202510350917.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When using a mask atomizer for treatment of acute laryngitis, drug droplets are difficult to effectively deposit in the throat, resulting in reduced treatment effect, and excessive head tilt angle may cause discomfort and choking of the patient.
A medical atomization treatment device is designed to ensure that the drug droplets can impact the throat with more force during the upward tilt process, and automatically reduce the delivery pressure of the droplets during the upward tilt process to prevent the drug from entering the nasal cavity or the back of the oral cavity.
It effectively increases the amount of drug deposited in the throat, enhances the treatment effect, and reduces the chance of discomfort in the treatment process.
Smart Images

Figure CN120094044A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices for inputting media into the human body, and specifically to an internal medicine atomization treatment device for respiratory diseases. Background Art
[0002] Internal medicine nebulizer therapy equipment mainly converts liquid drugs into tiny droplets in a specific way to assist users in drug inhalation. For example, an ultrasonic nebulizer uses the high-frequency vibration of ultrasound to generate tension waves on the surface of the drug solution. When the tension wave reaches a certain level, the liquid will be torn into tiny droplets. The compressed air nebulizer uses the high-speed airflow generated by the compressor to impact the drug solution into a mist. The size of these droplets is usually around a few microns, which can be suspended in the air and easily enter the respiratory tract with the patient's breathing.
[0003] For the internal medicine nebulizer treatment equipment used for respiratory diseases, such as acute laryngitis, in terms of nebulization method, it is necessary to choose nebulizer treatment equipment that can better deposit the drug in the throat, for example, use a mask nebulizer, and let the patient slightly tilt his head back so that the nebulized drug can act more concentratedly on the throat. For patients with acute laryngitis, when using a mask nebulizer treatment device for drug nebulization inhalation treatment, in order to facilitate the smooth delivery of the nebulized drug to the throat, the initial delivery pressure of the drug is relatively large, so that the drug droplets can rush to the throat with more power, increasing the amount of drug deposition in the throat. In the process of drug delivery, as the patient's head tilt angle increases, the nebulized drug More drugs enter the nasal cavity or the back of the mouth, and cannot be effectively deposited in the throat, which will reduce the amount of drugs actually received by the throat and reduce the treatment effect. For example, after the drug enters the nasal cavity, it may flow out along the nasal mucosa, or form droplets in the nasal cavity, and cannot play a due therapeutic role in laryngeal inflammation. In addition, an excessive head tilt angle accompanied by the delivery of drugs at a greater pressure may also make the patient feel uncomfortable and easily cause choking. When the drug enters the nasal cavity or the back of the mouth, it may stimulate the sensitive nerves of the nasal mucosa and pharynx, causing the patient to have a choking reflex and aggravate laryngeal spasm and pain. For this reason, we propose an internal medicine atomization treatment device for respiratory diseases. Summary of the invention
[0004] The purpose of the present invention is to provide a medical atomization treatment device for respiratory diseases to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solution: an internal medicine atomization treatment device for respiratory diseases, comprising a main unit for atomization delivery and a mask for assisting atomization inhalation, wherein a connecting pipe is fixedly connected to the mask, and a hose for atomization liquid delivery is connected to the main unit, and further comprising:
[0006] A mounting tube fixedly connected to the end of the hose away from the main unit, a control tube is arranged between the mounting tube and the connecting tube, connecting tubes are respectively fixed at both ends of the control tube, and two groups of connecting tubes are detachably mounted on the ends of the mounting tube and the connecting tube respectively by means of threads, and a control assembly for pressure control during atomization inhalation is arranged inside the control tube;
[0007] The control component includes an annular plate fixed inside the control cylinder, and a plurality of groups of arc plates are arranged in an annular array on the front side of the annular plate, and two adjacent groups of the arc plates are telescopically connected by rubber blocks, and each group of arc plates and the rubber blocks are arranged in a conical cylindrical shape. A connecting component for assisting the flexible connection of each group of arc plates is arranged on the annular plate, and a transmission component for transmitting each group of arc plates and a moving component for moving the transmission component are arranged inside the control cylinder, and an identification component for identifying the upward tilt angle during the use of the mask is arranged on the control cylinder.
[0008] Preferably, the connecting assembly comprises an annular groove opened on one side of the annular plate, an annular rubber pad is arranged inside the annular groove, and the ends of the arc plate and the rubber block are connected and fixed to the annular rubber pad.
[0009] Preferably, the transmission assembly includes a transmission ring arranged on the inner side of the control cylinder, each group of the arc plates is located on the inner side of the transmission ring, a transmission plate is fixed on the inner side of the transmission ring, an oblique groove is opened on the transmission plate, a mounting block is fixed on the outer side of each group of the arc plates, each group of the mounting blocks is respectively arranged corresponding to each group of the transmission plates, a transmission pin is slidably connected to the mounting block, and the transmission pin is slidably connected to the oblique groove.
[0010] Preferably, the moving assembly includes a mounting cylinder which is connected and fixed to the control cylinder, the mounting cylinder is located at the bottom of the control cylinder, a gravity rod is rotatably connected to the mounting cylinder through a rotating assembly, one end of the gravity rod is located outside the mounting cylinder and is fixed with a gravity ball, the other end of the gravity rod is located inside the control cylinder and is fixedly connected with an operating cylinder, a telescopic rod is fixed to the outside of the transmission ring, the telescopic rod is slidably connected to the operating cylinder, a guide assembly for guiding the transmission ring during movement is provided between the annular plate and the transmission ring, and a flexible sealing belt for sealing and assisting the gravity rod to deflect is fixed between the gravity rod and the inner side of the mounting cylinder.
[0011] Preferably, the guide assembly includes multiple groups of sleeves fixed on the annular plate, each group of the sleeves is arranged in a circular array on the annular plate, and a sliding rod is slidably connected to the sleeve, and one end of the sliding rod is fixed to one side of the transmission ring.
[0012] Preferably, the rotating assembly comprises a support block which is sleeved and fixed on the outer side of the gravity rod, a rotating rod is fixed on the support block, and two groups of the rotating rods are rotatably connected to the mounting cylinder in a symmetrical state.
[0013] Preferably, the identification component includes a liquid storage cylinder arranged above the control cylinder, the upper end of the liquid storage cylinder is connected to an identification tube, the interior of the liquid storage cylinder and the identification tube are filled with liquid, the outer side of the identification tube is provided with scale lines for identifying the rising liquid level, and the control cylinder is provided with a liquid supply component for supplying liquid.
[0014] Preferably, two groups of the liquid supply components are symmetrically arranged on the outside of the control cylinder.
[0015] Preferably, the liquid supply assembly includes a mounting seat fixed to the outside of the control cylinder, a connecting tube is fixed on the mounting seat, one end of the connecting tube is connected to the bottom of the liquid storage cylinder, the interior of the connecting tube is filled with the same liquid as the interior of the liquid storage cylinder, and an extrusion assembly for squeezing the liquid inside the connecting tube is provided between the connecting tube and the rotating rod.
[0016] Preferably, the extrusion assembly includes a piston plate slidably connected to the inside of a connecting tube, the end of the connecting tube is slidably connected to a push rod, one end of the push rod is fixed to the piston plate, one end of the rotating rod is fixed to a cam for pressing the end of the push rod, the outer side of the push rod is sleeved with a spring, the two ends of the spring are respectively connected to the piston plate and the inner wall of the connecting tube.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] During the process of drug inhalation treatment for patients with respiratory diseases using the medical mask atomization treatment device, the present invention enables the drug droplets to impact the throat area more forcefully through the pressure effect and the upward tilt of the patient's head and the mask, thereby ensuring that the throat is adequately covered by the drug. In the upward tilt process, through transmission, as the patient's head tilt angle increases, the delivery pressure on the droplets on the delivery pipeline is automatically reduced, thereby preventing the patient from tilting his head too much during the atomization inhalation treatment, and the drug is delivered at a higher pressure, causing more atomized drug to enter the nasal cavity or the back of the mouth, thereby ensuring the treatment effect while reducing the probability of discomfort of the patient during the treatment. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall appearance structure of the present invention;
[0020] Figure 2 It is a schematic diagram of the structure of the extrusion assembly of the present invention;
[0021] Figure 3It is a schematic diagram of the internal state of the control tube of the present invention after being connected with the mounting tube and the connecting tube;
[0022] Figure 4 It is a schematic diagram of the structure of the liquid supply component of the present invention;
[0023] Figure 5 It is a schematic diagram of the structure of the rotating assembly and the extrusion assembly of the present invention;
[0024] Figure 6 It is a schematic diagram of the structure of the mobile component of the present invention;
[0025] Figure 7 It is a schematic diagram of the state before the transmission ring of the present invention moves;
[0026] Figure 8 It is a schematic diagram of the state after the transmission ring moves when the head is tilted upward;
[0027] Fig. 9 It is a schematic diagram of the structure of the transmission assembly and the guide assembly of the present invention;
[0028] Fig.10 It is a schematic diagram of the control component and the connection component structure of the present invention;
[0029] Fig.11 This is a schematic diagram of the face mask of the present invention when it is not in the tilted position for use;
[0030] Fig.12 It is a schematic diagram of the face mask of the present invention when it is used with its head tilted upward.
[0031] In the figure: 101, main unit; 102, mask; 103, connecting pipe; 104, hose; 2, mounting pipe; 3, control tube; 4, connecting tube; 501, annular plate; 502, arc plate; 503, rubber block; 601, annular groove; 602, annular rubber pad; 701, transmission ring; 702, transmission plate; 703, inclined groove; 704, mounting block; 705, transmission pin; 801, sleeve; 802, slide rod; 901, mounting cylinder; 902, gravity rod; 903, gravity ball; 904, operating cylinder; 905, telescopic rod; 906, flexible sealing belt; 1001, supporting block; 1002, rotating rod; 1101, liquid storage cylinder; 1102, identification tube; 1103, scale line; 1201, mounting seat; 1202, connecting tube; 1301, piston plate; 1302, push rod; 1303, cam; 1304, spring. DETAILED DESCRIPTION
[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0033] Example 1
[0034] See also Figure 1-Figure 12 , a medical atomization treatment device for respiratory diseases shown in the figure, including a main unit 101 for atomization delivery and a mask 102 for assisting atomization inhalation, a connecting pipe 103 is fixedly connected to the mask 102, and a hose 104 for atomization liquid delivery is connected to the main unit 101;
[0035] It should be noted that: the host 101 is internally provided with a vibration component for vibrating and atomizing the liquid medicine and a conveying component for conveying the formed tiny droplets, wherein the vibration component and the conveying component are conventional technical means in the field of atomization therapy, and their working principles and operation connection methods are not further described in this application;
[0036] Also includes:
[0037] A mounting tube 2 is fixedly connected to the end of the hose 104 away from the main unit 101, a control tube 3 is arranged between the mounting tube 2 and the connecting tube 103, connecting tubes 4 are respectively fixed at both ends of the control tube 3, and the two groups of connecting tubes 4 are detachably mounted on the ends of the mounting tube 2 and the connecting tube 103 respectively by means of threads, and a control component for pressure control during atomization inhalation is arranged inside the control tube 3;
[0038] The control component includes an annular plate 501 fixed inside the control cylinder 3, and a plurality of groups of arc plates 502 are arranged in an annular array on the front side of the annular plate 501, and two adjacent groups of arc plates 502 are telescopically connected by rubber blocks 503, and each group of arc plates 502 and the rubber blocks 503 are arranged in a conical cylindrical shape, and a connecting component for assisting the flexible connection of each group of arc plates 502 is arranged on the annular plate 501, and a transmission component for transmitting each group of arc plates 502 and a moving component for moving the transmission component are arranged inside the control cylinder 3, and an identification component for identifying the upward tilt angle of the mask 102 during use is arranged on the control cylinder 3;
[0039] It should be noted here that: during the process of drug inhalation treatment for patients with respiratory diseases using internal medicine mask nebulizer treatment equipment, through the pressure effect and the upward effect of the patient's head and the mask 102, the drug droplets can impact the throat area more forcefully, thereby ensuring that the throat is adequately covered by the drug. In the upward process, through transmission, as the patient's head tilt angle increases, the delivery pressure on the droplets in the delivery pipeline is automatically reduced, avoiding the patient's upward tilt angle too large during nebulizer inhalation treatment, accompanied by the drug being delivered at a higher pressure, causing more nebulized drugs to enter the nasal cavity or the back of the mouth, ensuring the treatment effect while reducing the chance of patient discomfort during treatment.
[0040] Preferably, the connecting assembly includes an annular groove 601 opened on one side of the annular plate 501, an annular rubber pad 602 is arranged inside the annular groove 601, and the ends of the arc plate 502 and the rubber block 503 are connected and fixed to the annular rubber pad 602;
[0041] It should be noted that the annular rubber pad 602 in the annular groove 601 facilitates the flexible connection of the ends of the arc plate 502 and the rubber block 503 .
[0042] Preferably, the transmission assembly includes a transmission ring 701 arranged on the inner side of the control cylinder 3, each group of arc-shaped plates 502 is located on the inner side of the transmission ring 701, a transmission plate 702 is fixed on the inner side of the transmission ring 701, an oblique groove 703 is opened on the transmission plate 702, a mounting block 704 is fixed on the outer side of each group of arc-shaped plates 502, each group of mounting blocks 704 is respectively arranged in one-to-one correspondence with each group of transmission plates 702, a transmission pin 705 is slidably connected to the mounting block 704, and the transmission pin 705 is slidably connected to the oblique groove 703;
[0043] It should be noted here that: during the movement of the transmission ring 701, each group of transmission plates 702 is driven to move. During the movement of the transmission plates 702, through the interaction between each group of inclined grooves 703 and each group of transmission pins 705 and the connection between each group of mounting blocks 704, each group of arc plates 502 is forced to move away from each other. Through the movement of each group of arc plates 502 away from each other, the aperture formed between each group of arc plates 502 and the rubber block 503 is increased.
[0044] Preferably, the moving assembly includes a mounting cylinder 901 which is connected and fixed to the control cylinder 3, the mounting cylinder 901 is at the bottom of the control cylinder 3, a gravity rod 902 is rotatably connected to the mounting cylinder 901 through a rotating assembly, one end of the gravity rod 902 is located outside the mounting cylinder 901 and is fixed with a gravity ball 903, the other end of the gravity rod 902 is located inside the control cylinder 3 and is fixedly connected with an operating cylinder 904, a telescopic rod 905 is fixed to the outside of the transmission ring 701, the telescopic rod 905 is slidably connected to the operating cylinder 904, a guide assembly for guiding the transmission ring 701 during movement is provided between the annular plate 501 and the transmission ring 701, and a flexible sealing belt 906 for sealing and assisting the gravity rod 902 to deflect is fixed between the gravity rod 902 and the inner side of the mounting cylinder 901;
[0045] It should be noted that: during the process of the patient's head and the mask 102 being tilted upward, the connecting tube 103, the control tube 3 and the mounting tube 2 are synchronously tilted upward. Because the gravity rod 902 and the gravity ball 903 are kept in a vertical state under the action of gravity, the control tube 3 is in the process of tilting upward. Through the telescopic connection between the operating tube 904 and the telescopic rod 905 and the guiding effect of the guide assembly on the transmission ring 701 after the force is applied, the transmission ring 701 moves toward the annular plate 501 inside the control tube 3 during the process of the patient's head being tilted upward.
[0046] It is worth noting here that the flexible sealing belt 906 can assist the sealing connection and the rotatable connection of the gravity rod 902 at the same time, and the flexible sealing belt 906 is made of a light and flexible material and does not generate a large resistance to the movement of the gravity rod 902.
[0047] Preferably, the guide assembly includes a plurality of sets of sleeves 801 fixed on the annular plate 501, each set of sleeves 801 is arranged in an annular array on the annular plate 501, a slide bar 802 is slidably connected to the sleeve 801, and one end of the slide bar 802 is fixed to one side of the transmission ring 701;
[0048] It should be noted here that: through multiple sets of sleeves 801 and slide rods 802, it is convenient to guide the transmission ring 701 after being subjected to force.
[0049] Preferably, the rotating assembly includes a support block 1001 sleeved and fixed on the outside of the gravity rod 902, and a rotating rod 1002 is fixed on the support block 1001. Two sets of rotating rods 1002 are symmetrically rotated and connected to the installation cylinder 901;
[0050] It should be noted here that the support block 1001 and the rotating rod 1002 facilitate the rotatable connection of the rotating rod 1002 .
[0051] Preferably, the identification component includes a liquid storage cylinder 1101 disposed above the control cylinder 3, the upper end of the liquid storage cylinder 1101 is connected to an identification tube 1102, the liquid storage cylinder 1101 and the identification tube 1102 are filled with liquid, and the outer side of the identification tube 1102 is provided with a scale line 1103 for liquid level rise identification, and the control cylinder 3 is provided with a liquid supply component for supplying liquid;
[0052] It should be noted here that: through transmission, the liquid level inside the identification tube 1102 rises synchronously when the patient leans back, and with the scale line 1103 on the outside of the identification tube 1102, the patient can judge whether the degree of tilting the head upward meets the use requirements, which is more convenient for the treatment of internal medicine nebulizer treatment equipment.
[0053] Preferably, two groups of liquid supply components are symmetrically arranged on the outside of the control cylinder 3;
[0054] It should be noted here that: the effect and efficiency of liquid supply are guaranteed by two sets of liquid supply components.
[0055] Preferably, the liquid supply assembly includes a mounting seat 1201 fixed to the outside of the control cylinder 3, a connecting tube 1202 is fixed on the mounting seat 1201, one end of the connecting tube 1202 is connected to the bottom of the liquid storage cylinder 1101, the interior of the connecting tube 1202 is filled with the same liquid as the interior of the liquid storage cylinder 1101, and an extrusion assembly for extruding the liquid inside the connecting tube 1202 is provided between the connecting tube 1202 and the rotating rod 1002; the extrusion assembly includes a piston plate 1301 slidably connected to the interior of the connecting tube 1202, a push rod 1302 is slidably connected to the end of the connecting tube 1202, one end of the push rod 1302 is fixed to the piston plate 1301, a cam 1303 for pressing against the end of the push rod 1302 is fixed to one end of the rotating rod 1002, and a spring 1304 is sleeved on the outer side of the push rod 1302, and the two ends of the spring 1304 are respectively connected to the piston plate 1301 and the inner wall of the connecting tube 1202;
[0056] It should be noted here that: in the process of the patient's head and the mask 102 being tilted upward to drive the connecting tube 103, the control tube 3 and the mounting tube 2 to synchronously tilt upward, because the gravity rod 902 and the gravity ball 903 remain in a vertical state under the action of gravity, the rotating rod 1002 is rotated on the mounting tube 901 through the connection of the support block 1001. During the rotation, one end of the push rod 1302 is abutted against the cam 1303, so that the push rod 1302 is forced to shrink toward the inside of the connecting tube 1202. During the movement of the push rod 1302, the piston plate 1301 is driven to move upward inside the connecting tube 1202. During the upward movement of the piston plate 1301, part of the liquid inside the connecting tube 1202 is squeezed and transported to the inside of the liquid storage cylinder 1101 and the identification tube 1102, so as to supply liquid to the inside of the liquid storage cylinder 1101.
[0057] It is worth noting here that the spring 1304 facilitates the reset of the piston plate 1301 and the push rod 1302 after movement.
[0058] In this scheme: a medical atomization treatment device for respiratory diseases, comprising the following steps:
[0059] During the process of drug inhalation treatment for patients with respiratory diseases using the medical mask atomization treatment device, the mask 102 is worn on the patient's face. After the mask 102 is worn, the driving action inside the host 101 causes the liquid drug to be converted into tiny droplets in a specific way and transported through the hose 104, the mounting tube 2, the control tube 3, the connecting tube 103 and the mask 102, thereby assisting the patient in drug inhalation.
[0060] During the treatment, the main unit 101 has a relatively high delivery pressure on the atomized droplets and is accompanied by a slight upward tilt of the patient wearing the mask 102. Through the pressure effect and the upward tilt of the patient's head and the mask 102, the drug droplets can impact the throat area with greater force, thereby ensuring that the throat is adequately covered by the drug, ensuring that the drug can act on the inflamed part of the throat, and relieving throat edema and inflammation. During the upward tilt of the patient's head and the mask 102, the connecting tube 103, the control tube 3 and the mounting tube 2 are synchronously tilted upward. Because the gravity rod 902 and the gravity ball 903 remain in a vertical state under the action of gravity, the control tube 3 is in the upward tilt process. Through the telescopic connection between the operating tube 904 and the telescopic rod 905 and the guiding effect of the guide component on the transmission ring 701 after the force is applied, the transmission ring 701 moves toward the annular plate 501 inside the control tube 3 during the upward tilt of the patient's head. During the movement of the transmission ring 701 During the process, each group of transmission plates 702 are driven to move. During the movement of the transmission plates 702, each group of arc plates 502 is forced to move away from each other through the interaction between each group of inclined grooves 703 and each group of transmission pins 705 and the connection between each group of mounting blocks 704. Through the movement of each group of arc plates 502 away from each other, the aperture formed between each group of arc plates 502 and the rubber block 503 is increased. During the atomization inhalation treatment, as the angle of the patient's head tilting increases, the aperture formed between each group of arc plates 502 and the rubber block 503 increases synchronously. The increase in the aperture reduces the delivery pressure of the droplets on the delivery pipeline of the hose 104, the mounting tube 2, the control tube 3, the connecting tube 103 and the mask 102, thereby preventing the patient from tilting up too much during the atomization inhalation treatment, and the atomized drug is delivered at a greater pressure, resulting in more atomized drugs entering the nasal cavity or the back of the mouth, thereby ensuring the treatment effect and reducing the probability of discomfort of the patient during the treatment.
[0061] In the process of the patient's head and mask 102 being tilted upward to drive the connecting tube 103, the control tube 3 and the mounting tube 2 to synchronously tilt upward, the gravity rod 902 and the gravity ball 903 remain in a vertical state under the action of gravity. Through the connection of the support block 1001, the rotating rod 1002 is rotated on the mounting tube 901. During the rotation, one end of the push rod 1302 is abutted against the cam 1303, so that the push rod 1302 is forced to retract toward the inside of the connecting tube 1202. , driving the piston plate 1301 to move upward inside the connecting tube 1202. During the upward movement of the piston plate 1301, part of the liquid inside the connecting tube 1202 is squeezed and transported to the inside of the liquid storage cylinder 1101 and the identification tube 1102, so that the liquid level inside the identification tube 1102 rises synchronously while the patient is leaning back. In conjunction with the scale line 1103 on the outside of the identification tube 1102, the patient can judge whether the amplitude of the head tilting upward meets the use requirements, which is more convenient for the treatment of internal medicine nebulizer treatment equipment.
[0062] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0063] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A medical atomization treatment device for respiratory diseases, comprising: A main unit (101) for atomization delivery and a mask (102) for assisting atomization inhalation, wherein a connecting tube (103) is fixedly connected to the mask (102), and a hose (104) for atomization liquid delivery is connected to the main unit (101); It is characterized by further comprising: A mounting tube (2) is fixedly connected to an end of a hose (104) away from the main unit (101); a control tube (3) is arranged between the mounting tube (2) and the connecting tube (103); connecting tubes (4) are respectively fixed to both ends of the control tube (3); two groups of connecting tubes (4) are detachably mounted on the ends of the mounting tube (2) and the connecting tube (103) by means of threads; and a control component for controlling pressure during atomization inhalation is arranged inside the control tube (3); The control component comprises an annular plate (501) fixed inside a control cylinder (3); a plurality of groups of arc plates (502) are arranged in an annular array on the front side of the annular plate (501); two adjacent groups of the arc plates (502) are telescopically connected via rubber blocks (503); and each group of arc plates (502) and the rubber blocks (503) are arranged in a conical cylindrical shape; a connecting component for assisting the flexible connection of each group of arc plates (502) is arranged on the annular plate (501); a transmission component for transmitting each group of arc plates (502) and a moving component for moving the transmission component are arranged inside the control cylinder (3); and an identification component for identifying the upward tilt angle of the mask (102) during use is arranged on the control cylinder (3).
2. The medical atomization treatment device for respiratory diseases according to claim 1, characterized in that: The connection assembly comprises an annular groove (601) formed on one side of the annular plate (501), an annular rubber pad (602) is arranged inside the annular groove (601), and the ends of the arc plate (502) and the rubber block (503) are connected and fixed to the annular rubber pad (602).
3. The medical atomization treatment device for respiratory diseases according to claim 2, characterized in that: The transmission assembly comprises a transmission ring (701) arranged on the inner side of the control cylinder (3), each group of the arc-shaped plates (502) is located on the inner side of the transmission ring (701), a transmission plate (702) is fixed on the inner side of the transmission ring (701), an inclined groove (703) is provided on the transmission plate (702), a mounting block (704) is fixed on the outer side of each group of the arc-shaped plates (502), each group of the mounting blocks (704) is respectively arranged in one-to-one correspondence with each group of the transmission plates (702), a transmission pin (705) is slidably connected to the mounting block (704), and the transmission pin (705) is slidably connected to the inclined groove (703).
4. The medical atomization treatment device for respiratory diseases according to claim 3, characterized in that: The moving assembly comprises a mounting cylinder (901) which is fixed to the control cylinder (3); the mounting cylinder (901) is located at the bottom of the control cylinder (3); a gravity rod (902) is rotatably connected to the mounting cylinder (901) via a rotating assembly; one end of the gravity rod (902) is located outside the mounting cylinder (901) and is fixed with a gravity ball (903); the other end of the gravity rod (902) is located inside the control cylinder (3) and is fixedly connected with an operating cylinder ( 904), a telescopic rod (905) is fixed on the outer side of the transmission ring (701), and the telescopic rod (905) is slidably connected to the operating cylinder (904), a guide component for guiding the transmission ring (701) during movement is arranged between the annular plate (501) and the transmission ring (701), and a flexible sealing belt (906) for sealing and assisting the gravity rod (902) to deflect is fixed between the gravity rod (902) and the inner side of the mounting cylinder (901).
5. The medical atomization treatment device for respiratory diseases according to claim 4, characterized in that: The guide assembly comprises a plurality of groups of sleeves (801) fixed on the annular plate (501), each group of the sleeves (801) being arranged in an annular array on the annular plate (501), a sliding rod (802) being slidably connected to the sleeves (801), and one end of the sliding rod (802) being fixed to one side of the transmission ring (701).
6. The medical atomization treatment device for respiratory diseases according to claim 4, characterized in that: The rotating assembly comprises a support block (1001) sleeved and fixed on the outside of the gravity rod (902), a rotating rod (1002) is fixed on the support block (1001), and two groups of rotating rods (1002) are symmetrically connected to the mounting cylinder (901) in a rotational manner.
7. The medical atomization treatment device for respiratory diseases according to claim 4, characterized in that: The identification component comprises a liquid storage cylinder (1101) arranged above the control cylinder (3); the upper end of the liquid storage cylinder (1101) is connected to an identification tube (1102); the interiors of the liquid storage cylinder (1101) and the identification tube (1102) are filled with liquid; the outer side of the identification tube (1102) is provided with a scale line (1103) for identifying the rise of the liquid level; and the control cylinder (3) is provided with a liquid supply component for supplying liquid.
8. The medical atomization treatment device for respiratory diseases according to claim 7, characterized in that: Two groups of the liquid supply components are symmetrically arranged on the outside of the control cylinder (3).
9. The medical atomization treatment device for respiratory diseases according to claim 8, characterized in that: The liquid supply assembly comprises a mounting seat (1201) fixed to the outside of the control cylinder (3); a connecting tube (1202) is fixed on the mounting seat (1201); one end of the connecting tube (1202) is connected to the bottom of the liquid storage cylinder (1101); the interior of the connecting tube (1202) is filled with the same liquid as the interior of the liquid storage cylinder (1101); and an extrusion assembly for extruding the liquid inside the connecting tube (1202) is provided between the connecting tube (1202) and the rotating rod (1002).
10. The medical atomization treatment device for respiratory diseases according to claim 9, characterized in that: The extrusion assembly includes a piston plate (1301) slidably connected to the inside of a connecting tube (1202); a push rod (1302) is slidably connected to the end of the connecting tube (1202); one end of the push rod (1302) is fixed to the piston plate (1301); one end of the rotating rod (1002) is fixed with a cam (1303) for pressing the end of the push rod (1302); a spring (1304) is sleeved on the outer side of the push rod (1302); two ends of the spring (1304) are respectively connected to the piston plate (1301) and the inner wall of the connecting tube (1202).