A mixing device for an oral mucosal gargle

Through the dual movement mechanism and vibration disturbance design, the problem of uneven mixing of oral mucosal gargle in the prior art is solved, and efficient liquid mixing effect is achieved and product quality is improved.

CN119838477BActive Publication Date: 2025-07-22徐州市口腔医院
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Patent Information

Application Number
CN202510316675.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-07-22
Estimated Expiration
2045-03-18

AI Technical Summary

Technical Problem

The existing oral mucosal liquid gargle mixing device adopts one-way stirring, which leads to uneven liquid mixing, especially during a long-term stirring process, which reduces relative movement between the liquid and the stirring blade, affecting the mixing efficiency and product quality.

Method used

The dual-motion mechanism design is adopted, including the composite motion of the transmission frame and the rotation rod, combined with the vibration mechanism and the disturbance mechanism, realize the rotation and rotation compound motion of the agitating system, and enhance the turbulence effect and mixing effect through the adjustable multi-dimensional motion of the vibration blade and the stirring blade.

Benefits of technology

It significantly improves the uniformity and efficiency of liquid mixing, prevents the liquid from rotating simultaneously with the stirring blades, and ensures the stability of the mixing process and product quality.

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Abstract

The present invention provides a mixing device for an oral mucosal gargle, which relates to the technical field of gargle mixing. It includes revolution rods installed at both ends of the transmission frame. An intermediate disc is fixedly installed on each revolution rod. Both ends of the intermediate disc are respectively sleeved with a bi-directional spring. Both ends of the bi-directional spring are respectively connected to two double-headed sleeves, and the two double-headed sleeves are respectively rotatably connected to the revolution rod. A vibration blade is installed on each double-headed sleeve. Two adjusting discs are installed on both sides of the bi-directional spring respectively, and the two adjusting discs are respectively rotatably connected to the revolution rod. No less than two embedding sleeves are installed on each adjusting disc. Through the overall rotation of the transmission frame and the independent rotation of the self-rotation rod, the compound movement of revolution and self-rotation of the stirring system is realized. This multi-dimensional movement mode breaks the limitation of traditional single-direction stirring, enhances the turbulent effect of the liquid, and effectively prevents the phenomenon that the liquid rotates synchronously with the stirring blades.
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Description

Technical Field

[0001] The present invention relates to the technical field of mouthwash mixing, and more specifically, it relates to a mixing device for oral mucosal mouthwash. Background Art

[0002] In the field of oral medical supplies production, during the preparation process of oral mucosal mouthwash, the mixing link is a key process to ensure product quality. Currently, the mixing devices on the market generally adopt the traditional one-way stirring method, that is, the stirring blades always maintain a single-direction rotational movement. This simple stirring method has limitations. Especially during long-term stirring, when the liquid forms a stable rotational flow state under the action of centrifugal force, the rotational speed of the liquid will gradually approach the rotational speed of the stirring blades, resulting in a significant reduction in the relative movement between the liquid and the stirring blades.

[0003] This reduction in stirring efficiency directly affects the mixing uniformity of the raw materials. Especially when it is necessary to fully mix multiple liquid raw materials with different viscosities, the problem is more prominent. Due to the lack of effective shear force and turbulent flow, some components are unevenly distributed, and even stratification occurs. This not only prolongs the production cycle and increases energy consumption, but more importantly, it may affect the quality stability of the final product and cannot meet the strict requirements for uniformity of oral mucosal mouthwash. Summary of the Invention

[0004] (I) Technical Problems to be Solved

[0005] In view of the problems existing in the prior art, the present invention provides a mixing device for oral mucosal mouthwash to solve the technical problems mentioned in the background art.

[0006] (II) Technical Solutions

[0007] To achieve the above object, the present invention provides the following technical solution: A mixing device for oral mucosal mouthwash, including a stirring barrel and a transmission frame coaxially arranged with the stirring barrel, and the stirring barrel is connected to external equipment;

[0008] A vibration mechanism, including a revolution rod installed at both ends of the transmission frame, an intermediate disk is respectively and fixedly installed on each revolution rod, both ends of the intermediate disk are respectively sleeved with a bidirectional spring, both ends of the bidirectional spring are respectively connected to two double-headed sleeves, and the two double-headed sleeves are respectively rotatably connected to the revolution rod. A vibration blade is respectively installed on each double-headed sleeve. Two adjusting disks are respectively installed on both sides of the bidirectional spring, and the two adjusting disks are respectively rotatably connected to the revolution rod. Each adjusting disk is provided with no less than two embedding sleeves, and an insertion rod is respectively slidably connected in each embedding sleeve. The intermediate disk is symmetrically installed with no less than twelve groups of opening sleeves, and the insertion rod is inserted into the opening sleeve; and

[0009] The disturbing mechanism includes an external wheel fixedly installed in the mixing barrel. Two self-rotating rods are rotatably installed on both sides of the transmission frame. The two self-rotating rods and the two revolving rods are vertically arranged. An internal wheel is installed on each self-rotating rod, and the internal wheel meshes with the external wheel. A fillet is provided on the internal wheel.

[0010] Preferably, the vibration mechanism further includes a limiting ring installed on the two double-headed sleeves, and an embedded groove is respectively provided on the two vibration blades. The limiting ring is slidably connected in the embedded groove. This design realizes the limit of the swing of the vibration blade through the sliding fit of the limiting ring and the embedded groove, prevents the possible deflection during the vibration, and at the same time ensures the smoothness and reliability of the vibration.

[0011] Preferably, a telescopic rod is coaxially installed on the insertion rod. The telescopic rod is slidably connected in the embedded sleeve, and no less than ten groups of elastic pieces are installed on the inner wall of the embedded sleeve. A plurality of transverse grooves are equidistantly arranged on the side wall of the telescopic rod, and the elastic pieces are stuck in the transverse grooves. Through the sliding fit of the telescopic rod and the embedded sleeve, combined with the clamping design of multiple groups of elastic pieces and transverse grooves, multi-level adjustment of the position is realized, and at the same time, the stability after adjustment is ensured. The setting of multiple groups of elastic pieces provides a reliable fixing force.

[0012] Preferably, a plurality of limiting grooves are equidistantly arranged on the side wall of the telescopic rod. An expansion ring is slidably connected in the limiting grooves, and the expansion ring fits on the side wall of the telescopic rod. An annular groove is annularly arranged on the outer wall of the expansion ring. When the connection between the elastic piece and the transverse groove is released, the elastic piece abuts in the annular groove. This design realizes the control of the elastic piece through the cooperation of the expansion ring and the limiting groove, and ensures the controllability of the adjustment process.

[0013] Preferably, a top rod is coaxially and fixedly installed on the expansion ring. The top rod is slidably connected in the insertion rod. The design of the top rod provides a convenient operation method. The position of the expansion ring is controlled through the sliding connection, and at the same time, the smoothness of the adjustment action is ensured.

[0014] Preferably, a stop disk is installed on the outer wall of the embedded sleeve, and the stop disk fits on the middle disk. A push disk is coaxially installed on the telescopic rod. A plurality of push springs are installed on the stop disk, and the plurality of push springs respectively abut on the push disk. This structural design limits the moving range of the embedded sleeve through the stop disk, and the push springs provide the necessary return force to ensure that the elastic pieces are stably stuck in the transverse grooves.

[0015] Preferably, the perturbation mechanism further includes an elbow pipe installed on the rotating rod. Stirring blades are respectively installed on each elbow pipe. The design of the elbow pipe changes the acting angle of the stirring blades, and combined with the rotation movement, a more complex liquid perturbation effect is generated, improving the mixing efficiency.

[0016] Preferably, a sealing cover is coaxially installed on the mixing barrel. The sealing cover is connected to the lifting frame in a cooperative manner. The lifting frame is slidably connected to the fixed frame, and the fixed frame is installed on an external device. This design realizes the positioning of the sealing cover through the sliding mechanism of the lifting frame, and the fixed frame provides stable support, ensuring the reliability of the entire sealing system.

[0017] Preferably, a speed reducer is fixedly installed on the lifting frame. The extending end of the speed reducer passes through the sealing cover and is connected to the transmission frame. A motor is installed on the speed reducer. Through the setting of the speed reducer, the transmission of fixed force is realized, and the motor provides stable power output, while ensuring the smooth operation of the transmission system.

[0018] Preferably, two hydraulic cylinders are installed on the fixed frame. The extending ends of the two hydraulic cylinders are respectively connected to the lifting frame.

[0019] (III) Beneficial Effects

[0020] Compared with the prior art, the present invention provides a mixing device for oral mucosal gargle, having the following beneficial effects:

[0021] This device adopts a dual-movement mechanism design. Through the overall rotation of the transmission frame and the independent rotation of the rotating rod, the compound movement of the revolution and rotation of the stirring system is realized. This multi-dimensional movement mode breaks the limitation of traditional single-direction stirring, significantly enhances the turbulent effect of the liquid, effectively prevents the phenomenon that the liquid rotates synchronously with the stirring blades, and thus ensures a continuous and effective mixing effect.

[0022] Through the adjustable vibration mechanism and the precise cooperation of the bi-directional spring and the double-headed sleeve, the reciprocating swing of the vibration blade is realized. Especially the 90-degree angle design between the vibration blade and the stirring blade can effectively interrupt the flow state of the liquid, generate a turbulent effect, and at the same time, the adjustable vibration amplitude enables the device to optimize the stirring parameters according to the characteristics of raw materials with different viscosities to achieve the best mixing effect.

[0023] In terms of the adjustment mechanism, the device is designed with a multiple positioning and locking system. Through the cooperation of the adjustment disk and the intermediate disk, combined with the locking mechanism of the insertion rod and the opening sleeve, the initial angle adjustment of the vibration blade is realized. Especially the combined design of the elastic sheet and the transverse groove ensures the stability of the position after adjustment, while maintaining the necessary flexibility, and the stirring intensity can be adjusted at any time according to actual needs. Description of the Drawings

[0024] Figure 1 It is a schematic diagram of the overall structure of a mixing device for an oral mucosal gargle in the present invention;

[0025] Figure 2 It is a schematic cross-sectional view of the sealing cover pressing on the external wheel in the present invention;

[0026] Figure 3 It is a schematic diagram of the structure of the transmission frame in the present invention;

[0027] Figure 4 It is a schematic diagram of the structure of the intermediate disc and the bi-directional spring in the present invention;

[0028] Figure 5 It is a schematic diagram of the structure of the double-headed sleeve and the vibrating blade in the present invention;

[0029] Figure 6 It is a schematic diagram of the structure of the adjusting disc and the insertion sleeve in the present invention;

[0030] Figure 7 It is a schematic diagram of the structure of the insertion sleeve and the insertion rod in the present invention;

[0031] Figure 8 It is a schematic cross-sectional view of the insertion sleeve in the present invention;

[0032] Figure 9 It is a schematic cross-sectional view of the insertion rod in the present invention;

[0033] Figure 10 It is a schematic diagram of the structure of the top rod in the present invention;

[0034] Figure 11 It is a schematic diagram of the structure of the insertion rod and the telescopic rod in the present invention.

[0035] In the figure: 11, stirring barrel; 12, transmission frame; 21, revolution rod; 22, intermediate disc; 23, bi-directional spring; 24, double-headed sleeve; 25, vibrating blade; 26, adjusting disc; 27, insertion sleeve; 28, insertion rod; 29, opening sleeve; 31, external wheel; 32, rotation rod; 33, internal wheel; 34, fillet; 35, elbow pipe; 36, stirring blade; 41, sealing cover; 42, lifting frame; 43, fixing frame; 44, reducer; 45, motor; 46, hydraulic cylinder; 210, limiting ring; 211, inner embedding groove; 212, telescopic rod; 213, elastic sheet; 214, transverse groove; 215, limiting groove; 216, expansion ring; 217, annular groove; 218, top rod; 219, stop disc; 220, push disc; 221, push spring. Detailed implementation manners

[0036] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The present invention will be described in detail below with reference to the drawings and in conjunction with the embodiments.

[0037] It should be pointed out that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as those commonly understood by those of ordinary skill in the technical field to which this application belongs.

[0038] In the present invention, unless otherwise stated, the orientations such as "upper, lower" are generally in the directions shown in the drawings, or in the vertical, perpendicular or gravitational directions; similarly, for ease of understanding and description, "left, right" are generally the left and right shown in the drawings; "inner, outer" refer to the inner and outer of the contours of the respective components themselves, but the above orientation terms are not used to limit the present invention.

[0039] Please refer to Figures 1 to 11, A mixing device for an oral mucosal gargle, comprising a stirring barrel 11 and a transmission frame 12 arranged coaxially with the stirring barrel 11. The stirring barrel 11 is connected to an external device. A sealing cover 41 is coaxially installed on the stirring barrel 11. The sealing cover 41 is connected to a lifting frame 42 in a matching manner. The lifting frame 42 is slidably connected to a fixing frame 43. The fixing frame 43 is installed on an external device. A speed reducer 44 is fixedly installed on the lifting frame 42. The extending end of the speed reducer 44 passes through the sealing cover 41 and is connected to the transmission frame 12. A motor 45 is installed on the speed reducer 44. Two hydraulic cylinders 46 are installed on the fixing frame 43. The extending ends of the two hydraulic cylinders 46 are respectively connected to the lifting frame 42. The vibration mechanism includes revolution rods 21 installed at both ends of the transmission frame 12. An intermediate disk 22 is fixedly installed on each revolution rod 21. Two-way springs 23 are respectively sleeved at both ends of the intermediate disk 22. The two ends of each two-way spring 23 are respectively connected to two double-headed sleeves 24. And the two double-headed sleeves 24 are respectively rotatably connected to the revolution rod 21. A vibration blade 25 is installed on each double-headed sleeve 24. Two adjusting disks 26 are respectively installed on both sides of the two-way spring 23. The two adjusting disks 26 are respectively rotatably connected to the revolution rod 21. Each adjusting disk 26 is provided with no less than two insertion sleeves 27. An insertion rod 28 is slidably connected in each insertion sleeve 27. The intermediate disk 22 is symmetrically installed with no less than twelve groups of opening sleeves 29. The insertion rod 28 is inserted into the opening sleeve 29. The vibration mechanism further includes a limiting ring 210 installed on the two double-headed sleeves 24. And an inner embedding groove 211 is respectively opened on the two vibration blades 25. The limiting ring 210 is slidably connected in the inner embedding groove 211. A telescopic rod 212 is coaxially installed on the insertion rod 28. The telescopic rod 212 is slidably connected in the insertion sleeve 27. And no less than ten groups of elastic pieces 213 are installed on the inner wall of the insertion sleeve 27. A plurality of transverse grooves 214 are equidistantly opened on the side wall of the telescopic rod 212. The elastic piece 213 is stuck in the transverse groove 214. A plurality of limiting grooves 215 are equidistantly opened on the side wall of the telescopic rod 212. An expansion ring 216 is slidably connected in the limiting groove 215. And the expansion ring 216 is attached to the side wall of the telescopic rod 212. An annular groove 217 is annularly opened on the outer wall of the expansion ring 216. When the connection between the elastic piece 213 and the transverse groove 214 is released, the elastic piece 213 abuts against the annular groove 217. A top rod 218 is coaxially fixedly installed on the expansion ring 216. The top rod 218 is slidably connected in the insertion rod 28. A stop disk 219 is installed on the outer wall of the insertion sleeve 27. And the stop disk 219 is attached to the intermediate disk 22. A push disk 220 is coaxially installed on the telescopic rod 212. A plurality of push springs 221 are installed on the stop disk 219. The plurality of push springs 221 respectively abut against the push disk 220.

[0040] When mixing the raw materials of the oral mucosal gargle, first, the corresponding various raw materials are respectively introduced into the stirring barrel 11. Please refer to Figure 1, then start the hydraulic cylinder 46 to move the lifting frame 42 and the sealing cover 41 downward, and then insert the sealing cover 41 into the mixing barrel 11 and the sealing cover 41 presses on the outer wheel 31. Please refer to Figure 2 , since there is a fillet 34 on the inner wheel 33, the inner wheel 33 will be engaged in the outer wheel 31 synchronously as the sealing cover 41 presses on the outer wheel 31. At this time, multiple stirring blades 36 and vibrating blades 25 are respectively inserted into the raw materials. Start the motor 45 and then drive the transmission frame 12 to rotate. At this time, the self-rotating rod 32 will rotate with the rotation of the transmission frame 12, and since the inner wheel 33 is engaged on the outer wheel 31, the self-rotating rod 32 not only revolves but also rotates. At this time, the raw materials rotate along the axis and also generate self-rotation, which will increase the degree of mixing inside. Since the vibrating blades 25 and the stirring blades 36 form a 90-degree angle, when the raw materials generate self-rotation, they will immediately impact on the two vibrating blades 25, and then the two vibrating blades 25 will be compressed. Please refer to Figure 4 , since the middle disk 22 is fixedly installed on the revolving rod 21, the middle position is fixed, and only the double-headed sleeves 24 at both ends can rotate along the revolving rod 21. When the self-rotating raw materials impact on the vibrating blades 25, the bi-directional spring 23 will be compressed, and then the elastic force of the bi-directional spring 23 will be released to drive the vibrating blades 25 to rotate in the reverse direction. Therefore, repeated vibrations will occur, and the amplitudes are also different. Through the two symmetrical vibrating blades 25, the degree of chaos of the solution will be increased again, thereby improving the stirring effect.

[0041] When it is necessary to change the initial angle of the vibrating blade 25, please refer to Figure 6 , first rotate the adjusting disk 26, and then the bi-directional spring 23 between the adjusting disk 26 and the middle disk 22 will be compressed. Therefore, the initial position of the vibrating blade 25 will be changed. Then slide the insertion rod 28 downward so that the insertion rod 28 is inserted into the corresponding opening sleeve 29. At this time, the process of angle adjustment is completed. By changing the angle, the influence degree of the vibrating blade 25 on the solution can be changed, thereby changing the stirring effect. If a large swing is required, disconnect the connection between the insertion rod 28 and the opening sleeve 29. At this time, the bi-directional spring 23 between the adjusting disk 26 and the middle disk 22 will also participate in the deformation process. Since the number of turns increases, the spring constant decreases, and a larger displacement will be generated under the action of the same pressure. Therefore, a larger swing amplitude will be generated.

[0042] When it is necessary to change the fixed position of the insertion rod 28, please refer to Figure 7 and Figure 8 , first press the push disk 220 downward, then the push spring 221 will be compressed, and the transverse groove 214 will move downward. Then the elastic piece 213 will disconnect from the transverse groove 214, and then insert the insertion rod 28 into the opening sleeve 29 and stop. At this time, under the action of the push spring 221, the insertion rod 28 moves upward, and then the elastic piece 213 will be stuck in the closest transverse groove 214, thus completing the insertion process.

[0043] When it is necessary to disconnect the connection between the elastic piece 213 and the transverse groove 214, please refer to Figure 8 and Figure 9 , first press down the top rod 218, then the top rod 218 will drive the expansion ring 216 to move downward. The expansion ring 216 will abut against a plurality of elastic pieces 213, and then the connection with the transverse groove 214 will be disconnected, causing the elastic pieces 213 to fit against the side wall of the annular groove 217. At this time, the connection between the elastic piece 213 and the transverse groove 214 is disconnected, and then the insertion rod 28 can be pulled upward to disconnect the connection with the opening sleeve 29 for the next adjustment, thus meeting the corresponding requirements.

[0044] Please refer to Figures 1 to 3 , the disturbing mechanism includes an outer wheel 31 fixedly installed in the stirring barrel 11. Two self-rotating rods 32 are rotatably installed on both sides of the transmission frame 12. The two self-rotating rods 32 and the two revolving rods 21 are vertically arranged. An inner wheel 33 is installed on each self-rotating rod 32. The inner wheel 33 meshes with the outer wheel 31. A rounded corner 34 is provided on the inner wheel 33. The disturbing mechanism further includes an elbow pipe 35 installed on the self-rotating rod 32. A stirring blade 36 is installed on each elbow pipe 35.

[0045] As the transmission frame 12 rotates, please refer to Figure 2 , it will drive the revolving rod 21 to rotate along the axis, and then the inner wheel 33 will be forced to mesh and rotate with the outer wheel 31. Therefore, the self-rotating rod 32 will not only revolve but also rotate. And the elbow pipe 35 is installed on the self-rotating rod 32, which will also drive the stirring blade 36 to rotate along the self-rotating rod 32, thus ensuring the disorderliness of the solution stirring.

[0046] In all the above-mentioned solutions, for the connection between two components, welding, the cooperation connection of bolts and nuts, bolt or screw connection, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated one by one here. For those mentioned above that involve fixed connection, welding is preferably considered. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mixing device for an oral mucosal gargle, comprising a stirring barrel (11) and a transmission frame (12) coaxially arranged with the stirring barrel (11), and the stirring barrel (11) is connected to an external device; Vibration mechanism, characterized in that: It includes revolution rods (21) installed at both ends of the transmission frame (12). An intermediate disk (22) is fixedly installed on each revolution rod (21). Both ends of the intermediate disk (22) are respectively sleeved with a bi-directional spring (23). Both ends of the bi-directional spring (23) are respectively connected to two double-headed sleeves (24), and the two double-headed sleeves (24) are respectively rotatably connected to the revolution rod (21). A vibration blade (25) is installed on each double-headed sleeve (24). Two adjusting disks (26) are installed on both sides of the bi-directional spring (23), and the two adjusting disks (26) are respectively rotatably connected to the revolution rod (21). Each adjusting disk (26) is provided with no less than two embedding sleeves (27). An insertion rod (28) is slidably connected in each embedding sleeve (27). The intermediate disk (22) is symmetrically installed with no less than twelve groups of opening sleeves (29). The insertion rod (28) is inserted into the opening sleeve (29). The vibration mechanism further includes a limiting ring (210) installed on the two double-headed sleeves (24), and an inner embedding groove (211) is respectively opened on the two vibration blades (25). The limiting ring (210) is slidably connected in the inner embedding groove (211). A telescopic rod (212) is coaxially installed on the insertion rod (28). The telescopic rod (212) is slidably connected in the embedding sleeve (27), and no less than ten groups of elastic pieces (213) are installed on the inner wall of the embedding sleeve (27). A plurality of transverse grooves (214) are equidistantly opened on the side wall of the telescopic rod (212). The elastic piece (213) is stuck in the transverse groove (214). A plurality of limiting grooves (215) are equidistantly opened on the side wall of the telescopic rod (212). An expansion ring (216) is slidably connected in the limiting groove (215), and the expansion ring (216) is attached to the side wall of the telescopic rod (212). An annular groove (217) is annularly opened on the outer wall of the expansion ring (216). When the elastic piece (213) is disengaged from the transverse groove (214), the elastic piece (213) abuts against the annular groove (217). A top rod (218) is coaxially fixedly installed on the expansion ring (216). The top rod (218) is slidably connected in the insertion rod (28). A stop disk (219) is installed on the outer wall of the embedding sleeve (27), and the stop disk (219) is attached to the intermediate disk (22). A push disk (220) is coaxially installed on the telescopic rod (212). A plurality of push springs (221) are installed on the stop disk (219), and the plurality of push springs (221) respectively abut against the push disk (220); and The disturbing mechanism includes an external wheel (31) fixedly installed inside the mixing barrel (11). Two self-rotating rods (32) are rotatably installed on both sides of the transmission frame (12). The two self-rotating rods (32) and the two revolving rods (21) are vertically arranged. An internal wheel (33) is installed on each self-rotating rod (32). The internal wheel (33) meshes with the external wheel (31). A rounded corner (34) is provided on the internal wheel (33). The disturbing mechanism further includes an elbow pipe (35) installed on the self-rotating rod (32). A mixing blade (36) is installed on each elbow pipe (35).

2. The mixing device of an oral mucosal gargle according to claim 1, characterized in that: A sealing cover (41) is coaxially installed on the mixing barrel (11). The sealing cover (41) is connected to the lifting frame (42) in a mating manner. The lifting frame (42) is slidably connected to the fixed frame (43). The fixed frame (43) is installed on an external device.

3. The mixing device of an oral mucosal gargle according to claim 2, characterized in that: A speed reducer (44) is fixedly installed on the lifting frame (42). The extending end of the speed reducer (44) passes through the sealing cover (41) and is connected to the transmission frame (12). A motor (45) is installed on the speed reducer (44).

4. The mixing device of an oral mucosal gargle according to claim 3, characterized in that: Two hydraulic cylinders (46) are installed on the fixed frame (43). The extending ends of the two hydraulic cylinders (46) are respectively connected to the lifting frame (42).

Citation Information

Patent Citations

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