A rock salt aerosol generator

By designing internal and external feeding mechanisms and a blower for drying, combined with the screening of crushing blades and discharge devices, the problems of feed blockage and particle size control in rock salt aerosol generators have been solved, achieving continuous supply of rock salt particles and an effect suitable for human inhalation.

CN111054482BActive Publication Date: 2025-12-09SICHUAN RONGRANWEI MEDICAL EQUIP MFG CO LTD
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Patent Information

Application Number
CN201911153192.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-11-22
Publication Date
2025-12-09
Estimated Expiration
2039-11-22

AI Technical Summary

Technical Problem

Existing rock salt aerosol generators are prone to clogging during the feeding process. Large rock salt particles are easily affected by moisture, and it is difficult to effectively break down large rock salt particles into small particles suitable for human respiration. Furthermore, it is not effective in screening out unsuitable particles.

Method used

A rock salt aerosol generator was designed, which uses an internal and external feeding mechanism in conjunction with a blower for drying and agitation by agitating blades. The amount of large rock salt particles entering is controlled by the coordination of the internal and external feeding through-holes, and unqualified particles are screened through the discharge device to ensure that the particle size meets the requirements.

Benefits of technology

This effectively avoids clogging of the feeding device, ensures that large rock salt particles are dried and continuously crushed into smaller particles, realizes continuous supply and screening of rock salt particles, ensures that the particle size is suitable for human inhalation, and improves the reliability of the equipment and the therapeutic effect.

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Abstract

The invention discloses a rock salt aerosol generator, which is characterized in that the rock salt aerosol generator comprises a crushing device, a feeding device is arranged on one side of the upper end surface of the crushing device, a discharging device is further arranged on the other side of the upper end surface of the crushing device, the feeding device comprises an outer feeding mechanism and an inner feeding mechanism, the inner feeding mechanism is nested in the inner part of the outer feeding mechanism, the axis of the outer feeding mechanism coincides with the axis of the inner feeding mechanism, a through hole for the rock salt to pass through is arranged at the connection part of the outer feeding mechanism and the inner feeding mechanism, a channel for the rock salt to pass through is arranged in the inner part of the inner feeding mechanism, a blower is arranged above the inner part channel of the inner feeding mechanism, the inner part channel of the inner feeding mechanism is communicated with the crushing device, a crushing shaft is arranged in the crushing device, a plurality of crushing blades are arranged on the crushing shaft, a channel for the rock salt to pass through is arranged in the inner part of the discharging device, one end of the discharging device is communicated with the crushing device, and the other end of the discharging device is connected with a treatment chamber, so that the problem that it is difficult to make large-particle rock salt into small-particle rock salt for human respiration is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to a device, in particular to a rock salt aerosol generator. BACKGROUND

[0002] With the progress of industry, the environment is damaged to a certain extent, a large amount of waste gas is produced in industrial and agricultural production, which causes human body to easily suffer from respiratory diseases, many people are prone to suffer from rhinitis, and small particles of rock salt have good therapeutic effect on rhinitis and respiratory diseases of human body, and how to produce large particles of rock salt into small particles of rock salt for human body to breathe is a technical problem, and the present application designs a rock salt aerosol generator, which adds large particles of rock salt through a feeding device, and transports the large particles of rock salt to a crushing device through the feeding device, and the large particles of rock salt are crushed into small particles of rock salt for human body to breathe through the crushing device.

[0003] The existing rock salt aerosol generator, the feeding device is easy to be blocked during feeding, the large particles of rock salt are easy to be damp after being stored in the feeding device for a period of time, the amount of the large particles of rock salt entering the feeding device cannot be controlled, the large particles of rock salt are difficult to be crushed in the crushing device, and the small particles of rock salt which are not suitable for human body to breathe cannot be screened after the large particles of rock salt are crushed, and the present application sets a rock salt aerosol generator to solve the above problems. SUMMARY

[0004] The technical problem to be solved by the present application is how to make large particles of rock salt into small particles of rock salt for human body to breathe, and the purpose is to provide a rock salt aerosol generator, which solves the problem that it is difficult to make large particles of rock salt into small particles of rock salt for human body to breathe.

[0005] The present application is realized by the following technical scheme:

[0006] A rock salt aerosol generator, characterized in that a feeding device is arranged on one side of the upper end surface of a crushing device, and a discharging device is further arranged on the other side of the upper end surface of the crushing device, the feeding device comprises an outer feeding mechanism and an inner feeding mechanism, the inner feeding mechanism is nested in the inner part of the outer feeding mechanism, the axis of the outer feeding mechanism coincides with the axis of the inner feeding mechanism, a through hole for rock salt to pass through is arranged at the connection part of the outer feeding mechanism and the inner feeding mechanism, a channel for rock salt to pass through is arranged in the inner part of the inner feeding mechanism, an air blower is arranged above the channel in the inner part of the inner feeding mechanism, the channel in the inner part of the inner feeding mechanism is communicated with the crushing device, a crushing shaft is arranged in the crushing device, a plurality of crushing blades are arranged on the crushing shaft, a channel for rock salt to pass through is arranged in the inner part of the discharging device, one end of the discharging device is communicated with the crushing device, and the other end of the discharging device is connected with a treatment chamber.

[0007] The working principle of the present application is that the outer feeding mechanism is provided with a shell for accommodating large halite particles, the large halite particles are added into the shell in the outer feeding mechanism, the axis of the outer feeding mechanism coincides with the axis of the inner feeding mechanism, the outer feeding mechanism and the inner feeding mechanism are vertically arranged, the connection part of the outer feeding mechanism and the inner feeding mechanism is provided with a through hole for the large halite particles to pass through, the large halite particles enter the inner part of the inner feeding mechanism through the through hole at the connection part of the outer feeding mechanism and the inner feeding mechanism, the inner channel of the inner feeding mechanism is communicated with the crushing device, the large halite particles enter the crushing device through the channel in the feeding mechanism, the inner part of the crushing device is provided with a crushing shaft, a plurality of crushing blades are arranged on the crushing shaft, the large halite particles are continuously crushed by the crushing blades to become small halite particles, an air blower is arranged above the inner channel of the inner feeding mechanism, the air blower preferably blows hot air, the hot air blown by the air blower facilitates the drying treatment of the large halite particles during storage in the outer feeding mechanism, when the large halite particles enter the crushing device through the channel at the connection part of the outer feeding mechanism and the inner feeding mechanism, the hot air blown by the air blower further facilitates the drying treatment, which avoids the large halite particles from contacting the moisture in the air during storage in the outer feeding mechanism, causing the large halite particles to be damp, resulting in the large halite particles to be accumulated together, making it difficult for the large halite particles to pass through the channel at the connection part of the outer feeding mechanism and the inner feeding mechanism, resulting in no continuous large halite particles entering the crushing device, causing the crushing device to be unable to continuously provide the treatment room with small halite particles for the patient to breathe, the large halite particles are crushed multiple times by the crushing blades in the crushing device to become small halite particles for the patient to breathe, which enter the treatment room through the channel communicated with the discharging device, the air blower passes through the crushing device and finally enters the channel of the discharging device through the inner feeding mechanism, the air blower facilitates the drying of the halite particles when passing through the feeding device, the crushing device and the discharging device, and further drives the air flow in the feeding device, the crushing device and the discharging device, the air flow driven by the air blower carries the crushed small halite particles to the treatment room, enabling the treatment room to continuously input the small halite particles to provide the patient with the small halite particles for treatment.

[0008] Further, the outer feeding mechanism is provided with an outer feeding ring at the bottom, the outer feeding ring is provided with a plurality of outer feeding through holes, the outer feeding mechanism is externally provided with an outer shell for storing large rock salt particles, which facilitates the storage of large rock salt particles while avoiding the uninterrupted addition of large rock salt particle raw materials, and the stored large rock salt particles continuously provide large rock salt particle raw materials for the stirring and crushing device. The outer feeding ring at the bottom of the outer feeding mechanism facilitates cooperation with the inner feeding mechanism, the outer feeding through holes provided on the outer feeding ring facilitate the passage of large rock salt particles into the inner feeding mechanism through the outer feeding mechanism, which facilitates the control of the amount of large rock salt particles entering the inner feeding mechanism, avoids the entry of too much large rock salt particles into the inner feeding mechanism, avoids the entry of too much large rock salt particles into the inner feeding mechanism, causes the blockage of the inner feeding mechanism, further causes too much large rock salt particles to enter the stirring and crushing device, and the excessive large rock salt particles make it difficult for the stirring and crushing device to stir and crush the large rock salt particles into small particles required by the patient. The axis of the outer feeding through hole is parallel to the outer feeding mechanism, which facilitates the passage of large rock salt particles into the inner feeding mechanism through the outer feeding through hole. The inner feeding mechanism is connected with the outer feeding ring, which facilitates the fixation of the inner feeding mechanism. The inner feeding mechanism is provided with a plurality of inner feeding through holes at the bottom, the inner feeding through holes are parallel to the outer feeding through holes, and the inner feeding through holes and the outer feeding through holes have overlapping positions. When the inner feeding through holes and the outer feeding through holes overlap, large rock salt particles enter the inner feeding mechanism through the overlapping through holes. The inner feeding mechanism is connected with the outer feeding ring, which facilitates the rotation of the inner feeding mechanism. The rotation of the inner feeding mechanism drives the inner feeding through holes to rotate together. When the rotating inner feeding through holes partially overlap or completely overlap with the outer feeding through holes, the rotation of the inner feeding mechanism controls the amount of large rock salt particles entering the inner feeding mechanism.

[0009] Further, the outer feeding mechanism is provided with a fixing frame above the outer feeding mechanism for fixing the inner feeding mechanism, which facilitates the fixation of the inner feeding mechanism by the outer feeding mechanism and makes the inner feeding mechanism and the outer feeding mechanism both in the vertical direction, facilitates the passage of large rock salt particles into the inner feeding mechanism through the outer feeding through hole of the outer feeding mechanism, facilitates the entry of large rock salt particles into the stirring and crushing device through the gravitational action of the large rock salt particles, and facilitates the rotation of the inner feeding mechanism by the connection of the connection frame above the inner feeding mechanism with the first motor. The rotation of the connection frame above the inner feeding mechanism drives the rotation of the inner feeding mechanism. The rotation of the first motor drives the rotation of the connection frame by a certain angle, which makes large rock salt particles enter the inner feeding mechanism through the outer feeding through hole and the inner feeding through hole. The first motor rotates by a certain angle again, which makes the outer feeding through hole and the inner feeding through hole staggered, so that large rock salt particles cannot enter the inner feeding mechanism. The rotation of the motor drives the rotation of the connection frame, which drives the rotation of the inner feeding mechanism, thereby controlling the amount of large rock salt particles entering the inner feeding mechanism.

[0010] Further, the first pipeline is communicated between the discharging device and the stirring device, the second pipeline is communicated between the discharging device and the treatment room, the small rock salt particles formed by the stirring device enter the first pipeline through the joint between the discharging device and the stirring device, the small rock salt particles enter the second pipeline through the first pipeline under the action of the air blower, the first pipeline and the second pipeline are communicated, so that the small rock salt particles are conveniently conveyed, the first pipeline and the second pipeline are vertically arranged, the large rock salt particles pass through the stirring device, so that the large rock salt particles become small rock salt particles, but some of the small rock salt particles do not meet the requirements of the small particles for the patient to breathe, the small rock salt particles that do not meet the requirements are vertically arranged in the first pipeline and the second pipeline, the gravity of the small rock salt particles exceeds the power provided by the air blower, so that the small rock salt particles return to the stirring device through the first pipeline, the small rock salt particles are stirred again through the stirring device, so that the small rock salt particles meet the required size and enter the treatment room through the first pipeline and the second pipeline again, the diameter of the second pipeline is larger than that of the first pipeline, so that the small rock salt particles are conveniently screened in the second pipeline, the diameter of the second pipeline is larger, so that the small rock salt particles are conveniently settled in the second pipeline, so that some of the small rock salt particles that do not meet the requirements return to the first pipeline, more small rock salt particles are gathered in the second pipeline, so that the gravity of the gathered small rock salt particles meets the requirement of returning to the stirring device, the stirring device is conveniently stirred again, so that the small rock salt particles conveyed to the treatment room meet the range of human body absorption.

[0011] Further, the stirring shaft is provided with a bearing, so that the stirring shaft is conveniently rotated in the stirring device, the stirring device is externally provided with a sleeve, the stirring shaft passes through the inside of the sleeve, the stirring shaft is connected with the sleeve through the bearing, so that the sleeve fixes the stirring shaft through the bearing, the stirring shaft is fixed through the sleeve, and the rotation of the stirring shaft is facilitated, one end of the stirring shaft is provided with a second motor, the rotation of the second motor drives the rotation of the stirring shaft, the rotation of the stirring shaft drives the rotation of the stirring blade, the rotation of the stirring blade changes the large rock salt particles into small rock salt particles, and the rock salt particles are continuously stirred through the stirring blade, so that the rock salt particles meet the required size of the small rock salt particles.

[0012] Further, the connection between the stirring shaft and the stirring device is provided with a sealing mechanism, so that the small rock salt particles are prevented from entering the sleeve with the stirring shaft, too many rock salt particles are prevented from entering the bearing, the rock salt particles are prevented from blocking the connection between the stirring shaft and the stirring device, the rock salt particles are prevented from blocking the bearing, and further, the rock salt particles are prevented from corroding the bearing, so that the bearing and the sleeve can normally work.

[0013] Compared with the prior art, the present application has the following advantages and beneficial effects:

[0014] 1. The rock salt aerosol generator of the present application is provided with an inner feeding mechanism and an outer feeding mechanism at the feeding device, the amount of large rock salt particles entering the inner feeding mechanism is controlled by the cooperation of the inner feeding through hole on the inner feeding mechanism and the outer feeding through hole on the outer feeding ring;

[0015] 2. The rock salt aerosol generator of the present application is provided with a blower above the inner feeding mechanism, the blower preferably blows hot air, which facilitates the drying of the large rock salt particles stored in the outer feeding mechanism shell, and further drives the rock salt particles to move in the inner feeding mechanism, the stirring device and the discharging device;

[0016] 3. The rock salt aerosol generator of the present application is provided with a first pipe at the connection between the discharging device and the stirring device, and a second pipe at the connection between the discharging device and the treatment chamber, the pipe diameter of the second pipe is larger than that of the first pipe, which facilitates the screening and sedimentation of unqualified small rock salt particles generated in the stirring device in the second pipe, and facilitates the stirring of the small rock salt particles in the stirring device again, so that the small rock salt particles reach the size suitable for patient breathing, and facilitate the treatment of the patient's disease. BRIEF DESCRIPTION OF DRAWINGS

[0017] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present application and constitute a part of the application, illustrate embodiments of the present application and are used to explain the principle of the present application, but do not limit the present application. In the drawings:

[0018] Figure 1 The present application is a structural schematic diagram.

[0019] The marks in the drawings and the corresponding names of the parts are as follows:

[0020] 1- stirring device, 2- feeding device, 3- discharging device, 4- outer feeding mechanism, 5- inner feeding mechanism, 6- blower, 7- stirring shaft, 8- stirring blade, 9- treatment chamber, 10- outer feeding ring, 11- outer feeding through hole, 12- inner feeding through hole, 13- fixing frame, 14- connecting frame, 15- first motor, 16- first pipe, 17- second pipe, 18- bearing, 19- sleeve, 20- second motor. DETAILED DESCRIPTION

[0021] In order to make the purpose, technical scheme and advantages of the present application more clear and explicit, the present application is further described in detail below in combination with examples and drawings, the illustrative embodiments of the present application and the description thereof are used to explain the present application, but do not limit the present application.

[0022] Example 1

[0023] As Figure 1As shown, the rock salt aerosol generator of the present application comprises a crushing device 1, the upper end surface of the crushing device 1 is provided with a feeding device 2 on one side, and the upper end surface of the crushing device 1 is also provided with a discharging device 3 on the other side, the feeding device 2 comprises an outer feeding mechanism 4 and an inner feeding mechanism 5, the inner feeding mechanism 5 is nested in the inner part of the outer feeding mechanism 4, the axis of the outer feeding mechanism 4 coincides with the axis of the inner feeding mechanism 5, the connecting part of the outer feeding mechanism 4 and the inner feeding mechanism 5 is provided with a through hole for the rock salt to pass through, the inner part of the inner feeding mechanism 5 is provided with a channel for the rock salt to pass through, the upper part of the inner channel of the inner feeding mechanism 5 is provided with a blower 6, the inner channel of the inner feeding mechanism 5 is communicated with the crushing device 1, the inner part of the crushing device 1 is provided with a crushing shaft 7, a plurality of crushing blades 8 are arranged on the crushing shaft 7, the inner part of the discharging device 3 is provided with a channel for the rock salt to pass through, one end of the discharging device 3 is communicated with the crushing device 1, and the other end of the discharging device 3 is connected with a treatment chamber 9.

[0024] The specific implementation of the present application is that the outer feeding mechanism is provided with an outer shell for accommodating large rock salt particles, the large rock salt particles are added into the outer shell in the outer feeding mechanism, the axis of the outer feeding mechanism coincides with the axis of the inner feeding mechanism, the outer feeding mechanism and the inner feeding mechanism are vertically arranged, the connecting part of the outer feeding mechanism and the inner feeding mechanism is provided with a through hole for the large rock salt particles to pass through, the large rock salt particles enter the inner part of the inner feeding mechanism through the through hole at the connecting part of the outer feeding mechanism and the inner feeding mechanism, the inner channel of the inner feeding mechanism is communicated with the crushing device, the large rock salt particles enter the crushing device through the channel in the feeding mechanism, the inner part of the crushing device is provided with a crushing shaft, a plurality of crushing blades are arranged on the crushing shaft, the large rock salt particles are continuously crushed by the crushing blades, the large rock salt particles are crushed into small rock salt particles, the upper part of the inner channel of the inner feeding mechanism is provided with a blower, the blower preferably blows hot air, the hot air blown by the blower facilitates the drying treatment of the large rock salt particles during storage in the outer feeding mechanism, when the large rock salt particles enter the crushing device through the channel at the connecting part of the outer feeding mechanism and the inner feeding mechanism, the hot air blown by the blower further facilitates the drying treatment, which avoids the large rock salt particles from being contacted with moisture in the air during storage in the outer feeding mechanism, causing the large rock salt particles to be damp, resulting in the large rock salt particles to be accumulated together, making it difficult for the large rock salt particles to pass through the channel at the connecting part of the outer feeding mechanism and the inner feeding mechanism, causing no continuous large rock salt particles to enter the crushing device, resulting in no continuous small rock salt particles for the patient to breathe being provided for the treatment chamber, the large rock salt particles are crushed multiple times by the crushing blades in the crushing device, and the large rock salt particles become small rock salt particles for the patient to breathe, which enter the treatment chamber through the channel communicated with the discharging device, the blower enters the channel of the discharging device through the inner feeding mechanism and the crushing device, and the blower facilitates the drying of the rock salt particles when passing through the feeding device, the crushing device and the discharging device, and further drives the air flow in the feeding device, the crushing device and the discharging device, the air flow driven by the blower carries the crushed small rock salt particles to the treatment chamber, enabling the treatment chamber to continuously input the small rock salt particles.

[0025] Example 2

[0026] Based on Example 1, such as Figure 1 As shown, the present invention discloses a rock salt aerosol generator. The outer feeding mechanism 4 has an outer feeding ring 10 at its bottom, and the outer feeding ring 10 has a plurality of outer feeding through holes 11. The axis of the outer feeding through holes 11 is parallel to the outer feeding mechanism 4. The inner feeding mechanism 5 is connected to the outer feeding ring 10. The bottom of the inner feeding mechanism 5 has a plurality of inner feeding through holes 12, and the inner feeding through holes 12 are parallel to the outer feeding through holes 11. The outer feeding mechanism 4 is provided with a fixing frame 13 for fixing the inner feeding mechanism 5. The inner feeding mechanism 5 is provided with a connecting frame 14 above it. The connecting frame 14 is connected to the first motor 15.

[0027] The specific implementation of this invention is as follows: An external feeding ring is provided at the bottom of the external feeding mechanism, and several external feeding through holes are provided on the external feeding ring. An outer shell for storing large rock salt particles is provided outside the external feeding mechanism, facilitating the storage of large rock salt particles while avoiding the continuous addition of large rock salt particles as raw material. The stored large rock salt particles continuously provide raw material to the crushing device. The external feeding ring at the bottom of the external feeding mechanism facilitates cooperation with the internal feeding mechanism. The external feeding through holes on the external feeding ring allow large rock salt particles to enter the internal feeding mechanism through the external feeding mechanism, facilitating control of the amount of large rock salt particles entering the internal feeding mechanism. This prevents excessive large rock salt particles from entering the internal feeding mechanism, thus avoiding blockage and further preventing excessive large rock salt particles from entering the crushing device. In this process, excessive large rock salt particles make it difficult for the crushing device to crush them into the small rock salt particles needed by the patient. The axis of the external feed through-hole is parallel to the external feed mechanism, which facilitates the entry of large rock salt particles into the internal feed mechanism. The internal feed mechanism is connected to the external feed ring, which facilitates the fixation of the internal feed mechanism. Several internal feed through-holes are provided at the bottom of the internal feed mechanism. The internal feed through-holes are parallel to the external feed through-holes. When the internal feed through-holes and the external feed through-holes overlap, the large rock salt particles enter the internal feed mechanism through the through-holes that overlap with the external feed through-holes. The connection between the internal feed mechanism and the external feed ring facilitates the rotation of the internal feed mechanism. The rotation of the internal feed mechanism drives the internal feed through-holes to rotate together. When the rotating internal feed through-holes partially overlap or completely overlap with the external feed through-holes, the amount of large rock salt particles entering the internal feed mechanism is controlled by rotating the internal feed mechanism.

[0028] The fixed frame provided with the inner feeding mechanism above the outer feeding mechanism is used for fixing the inner feeding mechanism to the outer feeding mechanism, and makes the inner feeding mechanism and the outer feeding mechanism both in the vertical direction, so that the large rock salt particles can enter the inner feeding mechanism through the outer feeding hole of the outer feeding mechanism, and the large rock salt particles can enter the crushing device through the gravity of the large rock salt particles; the connecting frame provided above the inner feeding mechanism is connected with the first motor, the connecting frame above the inner feeding mechanism rotates to drive the inner feeding mechanism to rotate, the first motor drives the connecting frame to rotate by a certain angle, so that the large rock salt particles can enter the inner feeding mechanism through the outer feeding hole and the inner feeding hole, the first motor rotates by a certain angle again, the outer feeding hole and the inner feeding hole are staggered, so that the large rock salt particles cannot enter the inner feeding mechanism, the connecting frame is driven to rotate by the motor, so that the inner feeding mechanism is driven to rotate, and the amount of the large rock salt particles entering the inner feeding mechanism is controlled.

[0029] Example 3

[0030] Based on the above examples, as Figure 1 shown, the rock salt aerosol generator of the present application, the first pipe 16 is communicated with the crushing device 1, the second pipe 17 is communicated with the treatment chamber 9, the first pipe 16 and the second pipe 17 are communicated, the first pipe 16 and the second pipe 17 are vertically arranged, and the pipe diameter of the second pipe 17 is greater than that of the first pipe 16.

[0031] The specific implementation of this invention is as follows: a first pipe connects the discharge device and the crushing device, and a second pipe connects the discharge device and the treatment chamber. Small rock salt particles crushed by the crushing device enter the first pipe through the connection between the discharge device and the crushing device. Under the action of a blower, the small rock salt particles enter the second pipe along with the first pipe. The small rock salt particles then enter the treatment chamber through the second pipe. The connection between the first and second pipes facilitates the transport of the small rock salt particles. With the first and second pipes vertically arranged, large rock salt particles are crushed into smaller particles by the crushing device. However, some of these smaller particles do not meet the requirements for respiratory particles in patients. These smaller rock salt particles are then transported through the vertically arranged first and second pipes. The rock salt particles, due to their own weight exceeding the power provided by the blower, return to the crushing device through the first pipe. The crushing device further crushes the rock salt particles to the required size, allowing them to re-enter the treatment chamber through the first and second pipes. The second pipe has a larger diameter than the first, facilitating the screening of the rock salt particles. The larger diameter also allows the particles to settle, causing some that do not meet the requirements to return to the first pipe. As more rock salt particles aggregate in the second pipe, their weight allows them to return to the crushing device for further crushing, ensuring that the rock salt powder delivered to the treatment chamber is within the range for human absorption.

[0032] Example 4

[0033] Based on the above embodiments, such as Figure 1 As shown, the present invention provides a rock salt aerosol generator, wherein a bearing 18 is provided on the crushing shaft 7, a support sleeve 19 is provided outside the crushing device 1, the crushing shaft 7 passes through the inside of the support sleeve 19, the crushing shaft 7 is connected to the support sleeve 19 through the bearing 18, a second motor 20 is provided at one end of the crushing shaft 7, and a sealing mechanism is provided at the connection between the crushing shaft 7 and the crushing device 1.

[0034] The specific implementation of the present application is that the stirring shaft is provided with a bearing, facilitating the rotation of the stirring shaft in the stirring device, the stirring device is externally provided with a sleeve, the stirring shaft passes through the inside of the sleeve, the stirring shaft is connected with the sleeve through the bearing, facilitating the fixation of the stirring shaft by the sleeve through the bearing, the fixation of the stirring shaft by the sleeve facilitates the rotation of the stirring shaft, one end of the stirring shaft is provided with a second motor, the rotation of the second motor drives the rotation of the stirring shaft, the rotation of the stirring shaft drives the rotation of the stirring blade, the rotation of the stirring blade changes the large rock salt particles into small rock salt particles, through the continuous stirring of the stirring blade, the rock salt particles reach the size of the required small rock salt particles, the connection part of the stirring shaft and the stirring device is provided with a sealing mechanism, which avoids the small rock salt particles entering the sleeve along with the stirring shaft, avoids too many rock salt particles entering the bearing, causes the rock salt particles to block the connection part of the stirring shaft and the stirring device, causes the rock salt particles to block the bearing, and further causes the rock salt particles to corrode the bearing, so that the bearing and the sleeve cannot work normally.

[0035] The above specific implementation further specifically describes the purpose, technical scheme and beneficial effects of the present application, and it should be understood that the above description is only a specific implementation of the present application and is not used to limit the protection scope of the present application, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A rock salt aerosol generator characterized by, The application relates to a rock salt crushing device, which comprises a crushing device (1), a feeding device (2) arranged on one side of the upper end surface of the crushing device (1), and a discharging device (3) arranged on the other side of the upper end surface of the crushing device (1). The feeding device (2) comprises an outer feeding mechanism (4) and an inner feeding mechanism (5), the inner feeding mechanism (5) is nested in the inner part of the outer feeding mechanism (4), the axis of the outer feeding mechanism (4) is coincident with the axis of the inner feeding mechanism (5), a through hole for the rock salt to pass through is arranged at the joint of the outer feeding mechanism (4) and the inner feeding mechanism (5), a channel for the rock salt to pass through is arranged in the inner part of the inner feeding mechanism (5), a blower (6) is arranged above the channel in the inner part of the inner feeding mechanism (5), the channel in the inner part of the inner feeding mechanism (5) is communicated with the crushing device (1), a crushing shaft (7) is arranged in the crushing device (1), a plurality of crushing blades (8) are arranged on the crushing shaft (7), a channel for the rock salt to pass through is arranged in the discharging device (3), one end of the discharging device (3) is communicated with the crushing device (1), and the other end of the discharging device (3) is connected with a treatment chamber (9). The blower blows hot air, and the hot air blown by the blower can dry the large rock salt particles when the large rock salt particles are stored in the outer feeding mechanism; when the large rock salt particles pass through the channel at the joint of the outer feeding mechanism and the inner feeding mechanism and enter the crushing device, the hot air blown by the blower can further dry the large rock salt particles. The first pipeline (16) is communicated with the second pipeline (17), and the first pipeline (16) and the second pipeline (17) are vertically arranged; the pipe diameter of the second pipeline (17) is larger than that of the first pipeline (16). The bottom of the outer feeding mechanism (4) is provided with an outer feeding ring (10), a plurality of outer feeding through holes (11) are arranged on the outer feeding ring (10), and the axes of the outer feeding through holes (11) are parallel to the outer feeding mechanism (4); the inner feeding mechanism (5) is connected with the outer feeding ring (10), and the bottom of the inner feeding mechanism (5) is provided with a plurality of inner feeding through holes (12) which are parallel to the outer feeding through holes (11). A fixing frame (13) for fixing the inner feeding mechanism (5) is arranged above the outer feeding mechanism (4), and a connecting frame (14) is arranged above the inner feeding mechanism (5) and connected with a first motor (15). A bearing (18) is arranged on the crushing shaft (7), a bearing sleeve (19) is arranged outside the crushing device (1), the crushing shaft (7) passes through the inside of the bearing sleeve (19), the crushing shaft (7) is connected with the bearing sleeve (19) through the bearing (18), and a second motor (20) is arranged at one end of the crushing shaft (7). A sealing mechanism is arranged at the joint of the crushing shaft (7) and the crushing device (1).

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