Active enzyme adding and processing device for honey processing

By using ultrasonic bubble removal components and constant temperature mechanisms in honey processing equipment, the problem of insufficient bubble removal and temperature uniformity in traditional equipment is solved, the purity and quality of honey are improved, and the production efficiency is improved.

CN120052562AInactive Publication Date: 2025-05-30JIANGXI JURONG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510220573.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional honey processing equipment adopts a single stirring or heating method, which makes it difficult to completely remove bubbles, affecting the transparency and taste of honey. At the same time, uneven heating will destroy the active ingredients and reduce nutritional value.

Method used

An active enzyme addition processing device for honey processing is designed, using ultrasonic bubble removal assembly and constant temperature mechanism to work together, destroy the bubble structure through high-frequency vibration and adjust the temperature through the water circulation system to ensure that the honey is not affected by temperature fluctuations during the processing process.

Benefits of technology

Effectively remove bubbles in honey, keep the temperature constant during processing, improve the purity and quality of honey, reduce manual intervention, and improve production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of honey processing, in particular to an active enzyme adding and processing device for honey processing, which comprises a processing barrel, a cover frame mounted on the upper side of the processing barrel, a first driving motor mounted in the middle of the top of the cover frame, and a stirring frame mounted on an output shaft of the first driving motor. The guide limiting ring is installed at the top of the cover frame, the cover plate is arranged on the guide limiting ring in a sliding mode, the bubble removing mechanism is arranged on the processing barrel in a lifting mode, and the constant temperature mechanism is arranged on the outer side of the processing barrel in a lifting mode. Through cooperative work of the ultrasonic bubble removing assembly and the constant-temperature mechanism, bubbles in honey can be efficiently removed, the temperature in the processing process is kept constant, the ultrasonic bubble removing assembly destroys the bubble structure through high-frequency vibration, and the constant-temperature mechanism adjusts the temperature through a water circulation system; it is ensured that the honey is not affected by temperature fluctuation in the processing process, and the purity and quality of the honey are improved.
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Description

Technical Field

[0001] The present invention relates to the field of honey processing, and in particular to an active enzyme adding and processing device for honey processing. Background Art

[0002] In the field of honey processing, traditional processing equipment usually adopts simple stirring and heating methods, which are difficult to meet the production requirements of high-quality honey. Bubbles are easily generated during the processing of honey, affecting its purity and taste. In the prior art, honey processing equipment usually adopts a single stirring or heating method. During the stirring process, it is difficult to completely remove the bubbles, affecting the transparency and taste of honey. At the same time, uneven heating will cause local overheating, destroying the active ingredients in honey and reducing its nutritional value.

[0003] Therefore, in view of the above problems, an active enzyme adding and processing device for honey processing is now developed. Summary of the Invention

[0004] In order to overcome the shortcomings that the existing devices usually adopt a single stirring or heating method, during the stirring process, it is difficult to completely remove the bubbles, affecting the transparency and taste of honey, and at the same time, uneven heating will cause local overheating, destroying the active ingredients in honey and reducing its nutritional value, the present invention provides an active enzyme adding and processing device for honey processing.

[0005] The technical solution of the present invention is: an active enzyme adding and processing device for honey processing, comprising:

[0006] A processing barrel;

[0007] A cover frame, which is installed on the upper side of the processing barrel;

[0008] A first driving motor, which is installed at the middle position on the top of the cover frame, and the output shaft of the first driving motor is downward;

[0009] A stirring frame, which is installed on the output shaft of the first driving motor;

[0010] A guiding and limiting ring, which is installed on the top of the cover frame;

[0011] A cover plate, which is slidably arranged on the guiding and limiting ring;

[0012] A defoaming mechanism, which is arranged on the processing barrel in a lifting manner, and the defoaming mechanism is used to process the bubbles generated during the honey processing;

[0013] A constant temperature mechanism, which is arranged outside the processing barrel in a lifting manner, and the constant temperature mechanism is used in cooperation with the defoaming mechanism.

[0014] In addition, it is particularly preferred that the defoaming mechanism includes:

[0015] A mounting frame, which is mounted on the outside of the processing barrel;

[0016] A pressure liquid level sensor, which is mounted on the corresponding mounting frame, and the pressure liquid level sensor is used to monitor the honey liquid level height inside the processing barrel in real time;

[0017] A second driving motor, which is mounted on the corresponding mounting frame, and the output shafts of the second driving motor are all downward;

[0018] A lead screw, which is mounted on the output shaft of the corresponding second driving motor, and the lead screw is rotatably connected to the adjacent mounting frame;

[0019] An ultrasonic defoaming assembly, which is slidably arranged on the corresponding mounting frame.

[0020] In addition, it is particularly preferred that the constant temperature mechanism includes:

[0021] A water storage frame, which is mounted on the left and right sides of the processing barrel, and the water flow in the water storage frame is used to provide constant temperature protection for the processing barrel;

[0022] A water pipe, which is mounted between the water storage frames, and the two water storage frames are connected through the water pipe;

[0023] There are two fixing frames in total, which are mounted on the outside of the left water storage frame;

[0024] There are two gears in total, which are rotatably mounted inside the corresponding fixing frames;

[0025] There are four rack frames in total, which are all slidably connected to the adjacent fixing frames, and the lower rack frame is connected to the adjacent ultrasonic defoaming assembly;

[0026] A pressing frame, which is mounted between the upper rack frames, and the pressing frame is used to synchronize the ultrasonic defoaming assembly to synchronously control the liquid level height in the water storage frame.

[0027] In addition, it is particularly preferred that a cleaning mechanism is further included. The cleaning mechanism includes a scraping frame, which is slidably connected inside the processing barrel, and the scraping frame is slidably connected to the cover plate. A first fixing rod is mounted on the connecting rod, and a clamping plate is rotatably arranged at the top of the first fixing rod. The clamping plate and the top of the first fixing rod cooperate to stably clamp the scraping frame.

[0028] In addition, it is particularly preferred that a filtering mechanism is further included. The filtering mechanism includes a filtering frame which is placed on the cover frame. There are two second fixing rods which are installed on the lower side of the left part of the cover plate. The lifting plate is slidably installed on the adjacent second fixing rods. Springs are installed between the adjacent lifting plate and the second fixing rods. An inclined plate is installed on the right side of the filtering frame, and the inclined plate can be squeezed by the cover plate.

[0029] In addition, it is particularly preferred that a clamping mechanism is further included. The clamping mechanism includes a sliding seat which is slidably installed on the clamping plate. A rotating lock is rotatably connected to the sliding seat, and the rotating lock cooperates with the sliding seat to limit and fix the clamping plate.

[0030] In addition, it is particularly preferred that an anti-overflow mechanism is further included. The anti-overflow mechanism includes a first anti-overflow frame which is installed on the left water storage frame, and a second anti-overflow frame which is installed on the right water storage frame.

[0031] In addition, it is particularly preferred that the stirring frame is of a spiral structure.

[0032] In addition, it is particularly preferred that the second drive motor is electrically connected to the pressure liquid level sensor.

[0033] In addition, it is particularly preferred that a connecting rod is installed between the ultrasonic defoaming components.

[0034] By adopting the above technical solutions, the beneficial effects of the present invention are as follows:

[0035] 1. Through the collaborative work of the ultrasonic defoaming component and the constant temperature mechanism of the present device, the bubbles in honey can be efficiently removed and the temperature can be kept constant during the processing. The ultrasonic defoaming component destroys the bubble structure through high-frequency vibration, and the constant temperature mechanism adjusts the temperature through the water circulation system to ensure that honey is not affected by temperature fluctuations during processing, improving the purity and quality of honey.

[0036] 2. By adopting structures such as a pressure liquid level sensor, gear transmission, and rack, the present invention realizes the automatic control of liquid level height, defoaming component position, and constant temperature adjustment. Through precise mechanical transmission and sensor feedback, the efficiency and stability of the honey processing process are ensured, manual intervention is reduced, and production efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.

[0038] Figure 2 It is a partial sectional three-dimensional structural schematic diagram of the present invention.

[0039] Figure 3 This is a partial cross-sectional three-dimensional structure diagram of the defoaming mechanism of the present invention.

[0040] Figure 4 This is the first partial cross-sectional three-dimensional structure diagram of the constant temperature mechanism of the present invention.

[0041] Figure 5 This is the second partial cross-sectional three-dimensional structure diagram of the constant temperature mechanism of the present invention.

[0042] Figure 6 This is a partial cross-sectional three-dimensional structure diagram of the cleaning mechanism of the present invention.

[0043] Figure 7 This is a partial three-dimensional structure diagram of the cleaning mechanism of the present invention.

[0044] Figure 8 This is a partial cross-sectional three-dimensional structure diagram of the filtering mechanism of the present invention.

[0045] Figure 9 This is a partial cross-sectional three-dimensional structure diagram of the clamping mechanism of the present invention.

[0046] Figure 10 This is a three-dimensional structure diagram of the anti-overflow mechanism of the present invention.

[0047] In the figure: 1. Processing barrel, 2. First driving motor, 3. Stirring frame, 4. Cover plate, 5. Guide limiting ring, 6. Cover frame, 7. Defoaming mechanism, 71. Mounting frame, 72. Pressure liquid level sensor, 73. Second driving motor, 74. Lead screw, 75. Ultrasonic defoaming assembly, 76. Connecting rod, 8. Constant temperature mechanism, 81. Water storage frame, 82. Water pipe, 83. Fixed frame, 84. Gear, 85. Rack frame, 86. Pressing frame, 9. Cleaning mechanism, 91. Scraping frame, 92. First fixing rod, 93. Clamping plate, 10. Filtering mechanism, 101. Filtering frame, 102. Second fixing rod, 103. Spring, 104. Lifting plate, 105. Inclined plate, 11. Clamping mechanism, 111. Sliding seat, 112. Rotating lock, 12. Anti-overflow mechanism, 121. First anti-overflow frame, 122. Second anti-overflow frame. Detailed implementation manners

[0048] To make the objectives, technical solutions, and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in conjunction with specific implementation manners and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present invention. In addition, in the following descriptions, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention.

[0049] Example 1

[0050] An active enzyme addition processing device for honey processing, as Figures 1 - 10 shown, which includes a processing barrel 1, a cover frame 6 is installed on the upper side of the processing barrel 1, a first driving motor 2 is installed at the middle position on the top of the cover frame 6, the output shaft of the first driving motor 2 is arranged downward, a stirring frame 3 is installed on the output shaft of the first driving motor 2, the stirring frame 3 is of a spiral structure, a guiding and limiting ring 5 is installed on the top of the cover frame 6, a cover plate 4 is slidably arranged on the guiding and limiting ring 5, a defoaming mechanism 7 is arranged on the processing barrel 1 in a lifting manner, and the defoaming mechanism 7 is used for treating the bubbles generated during the honey processing process. A constant temperature mechanism 8 is arranged on the outside of the processing barrel 1 in a lifting manner, and the constant temperature mechanism 8 is used in cooperation with the defoaming mechanism 7.

[0051] It should be noted that when processing honey, this device can be used for operation assistance. First, put the honey and active enzyme into the processing barrel 1. After putting them in, close the cover plate 4 under the guidance of the guiding and limiting ring 5 to prevent dust and impurities from entering the processing barrel 1. Then start the first driving motor 2, and the motor output shaft drives the spiral stirring frame 3 to rotate. The spiral structure of the stirring frame 3 can effectively stir the honey in the processing barrel 1 evenly, ensuring that the texture and components of the honey are fully mixed. During the stirring process, bubbles may be generated in the honey. The defoaming mechanism 7 can adjust its position according to the liquid level height of the honey through lifting movement to treat the bubbles on the surface or inside of the honey. The constant temperature mechanism 8 is used in cooperation with the defoaming mechanism 7 to ensure that the temperature of the honey remains constant during the defoaming process and avoid affecting the quality of the honey due to temperature fluctuations.

[0052] The defoaming mechanism 7 includes an installation frame 71, the installation frame 71 is installed on the outside of the processing barrel 1, a pressure liquid level sensor 72 is installed on the corresponding installation frame 71, and the pressure liquid level sensor 72 is used for real-time monitoring of the honey liquid level height inside the processing barrel 1. A second driving motor 73 is installed on the corresponding installation frame 71, the output shafts of the second driving motor 73 are all arranged downward, the second driving motor 73 is electrically connected to the pressure liquid level sensor 72, lead screws 74 are all installed on the output shafts of the corresponding second driving motor 73, and the lead screws 74 are all rotatably connected to the adjacent installation frame 71. Ultrasonic defoaming components 75 are all slidably arranged on the corresponding installation frame 71, and a connecting rod 76 is installed between the ultrasonic defoaming components 75.

[0053] It should be noted that the pressure liquid level sensor 72 is installed on the mounting bracket 71 outside the processing barrel 1 to monitor the change in the liquid level height of honey in real time. The pressure liquid level sensor 72 feeds back the collected liquid level data to the control system, providing accurate liquid level position information for the operation of the defoaming mechanism 7, ensuring that the defoaming assembly can be adaptively adjusted according to the actual height of the honey liquid level, thereby controlling the operation of the second drive motor 73. After the second drive motor 73 is started, its output shaft drives the lead screw 74 to rotate. The lead screw 74 is rotatably connected to the mounting bracket 71, and the rotational motion is converted into a linear motion through screw thread transmission, thereby driving the ultrasonic defoaming assembly 75 to move up and down along the mounting bracket 71. By controlling the forward and reverse rotation and speed of the second drive motor 73, the height of the ultrasonic defoaming assembly 75 can be accurately adjusted to always maintain the best distance from the honey liquid level, ensuring that the ultrasonic wave can effectively act on the area where bubbles gather.

[0054] The constant temperature mechanism 8 includes a water storage frame 81. The water storage frame 81 is installed on both the left and right sides of the processing barrel 1. The water flow in the water storage frame 81 is used to provide constant temperature protection for the processing barrel 1. The water pipe 82 is installed between the water storage frames 81, and the two water storage frames 81 are connected through the water pipe 82. There are two fixing frames 83 in total. The fixing frames 83 are installed on the outside of the left water storage frame 81. There are two gears 84 in total. The gears 84 are rotatably installed inside the corresponding fixing frames 83. There are four rack frames 85 in total. The rack frames 85 are all slidably connected to the adjacent fixing frames 83. The lower rack frame 85 is connected to the adjacent ultrasonic defoaming assembly 75. The pressing frame 86 is installed between the upper rack frames 85. The pressing frame 86 is used to synchronize the ultrasonic defoaming assembly 75 and synchronously control the liquid level height in the water storage frame 81.

[0055] It should be noted that during the lifting process of the ultrasonic defoaming assembly 75, the lower rack frame 85 is driven to move synchronously through mechanical connection. The rack frame 85 meshes with the gear 84. When the ultrasonic defoaming assembly 75 rises or falls, the linear motion of the rack frame 85 is converted into the rotational motion of the gear 84. When the gear 84 rotates, it drives the upper rack frame 85 to move. Through the meshing transmission between the gear 84 and the rack, the position of the pressing frame 86 is accurately controlled. The rotation angle of the gear 84 is proportional to the displacement of the rack frame 85, ensuring the smooth and synchronous movement of the pressing frame 86. At the same time, the pressing frame 86 is connected to the rack frame 85, and its height is adjusted through the rotation of the gear 84 to maintain the best distance from the ultrasonic defoaming assembly 75, ensuring that the water level height can effectively act on the honey liquid level and maintaining the constant temperature treatment effect on the processing barrel 1.

[0056] Embodiment 2

[0057] It also includes a cleaning mechanism 9. The cleaning mechanism 9 includes a scraping frame 91. The scraping frame 91 is slidably connected inside the processing barrel 1 and is slidably connected to the cover plate 4. The first fixing rod 92 is installed on the connecting rod 76. The clamping plate 93 is rotatably arranged on the top of the first fixing rod 92. The clamping plate 93 and the top of the first fixing rod 92 cooperate to stably clamp the scraping frame 91.

[0058] It should be noted that the scraping frame 91 is slidably connected inside the processing barrel 1. Through the mechanical connection between the first fixing rod 92 and the connecting rod 76, the up and down movement is realized. When the ultrasonic defoaming assembly 75 works, it drives the connecting rod 76 to move, thereby pushing the scraping frame 91 to lift along the inner wall of the processing barrel 1, ensuring that the scraping frame 91 can perform corresponding cleaning treatment on the inside of the processing barrel 1 and avoiding honey residue on the inner wall of the processing barrel 1. When the scraping frame 91 needs to be cleaned, the clamping plate 93 can be rotated to release the locking of the scraping frame 91, and then the scraping frame 91 can be taken out.

[0059] It also includes a filtering mechanism 10. The filtering mechanism 10 includes a filtering frame 101. The filtering frame 101 is placed on the cover frame 6. There are two second fixing rods 102 in total. The second fixing rods 102 are installed on the lower left side of the cover plate 4. The lifting plate 104 is slidably installed on the adjacent second fixing rods 102. The spring 103 is installed between the adjacent lifting plate 104 and the second fixing rods 102. The inclined plate 105 is installed on the right side of the filtering frame 101, and the inclined plate 105 can be squeezed by the cover plate 4.

[0060] It should be noted that when pouring honey into the processing barrel 1, the honey is filtered by the filtering frame 101. During the filtering process, the cover plate 4 is turned over and closed, and the cover plate 4 is used to squeeze the inclined plate 105, so that the filter plate frame moves downward. At this time, the filtering frame 101 will squeeze the lifting plate 104, and the spring 103 will be stretched by force. After the feeding is completed, the cover plate 4 is opened, and the spring 103 is used to push the filtering frame 101 upward, which is convenient for the operator to directly take it.

[0061] It also includes a clamping mechanism 11. The clamping mechanism 11 includes a sliding seat 111. The sliding seat 111 is slidably installed on the clamping plate 93. The rotating lock 112 is rotatably connected to the sliding seat 111. The rotating lock 112 and the sliding seat 111 cooperate to limit and fix the clamping plate 93.

[0062] It also includes an anti-overflow mechanism 12. The anti-overflow mechanism 12 includes a first anti-overflow frame 121. The first anti-overflow frame 121 is installed on the left water storage frame 81. The second anti-overflow frame 122 is installed on the right water storage frame 81.

[0063] The above are only examples of the implementation of the present invention and are not intended to limit the present invention. Any equivalent replacement made within the principle of the present invention shall be included within the protection scope of the present invention. The content not elaborated in detail in the present invention belongs to the prior art well-known to those skilled in the relevant technical field.

Claims

1. An active enzyme adding processing device for honey processing, Its characteristics include: Processing barrel (1); A cover frame (6), the cover frame (6) being mounted on the upper side of the processing barrel (1); A first drive motor (2), the first drive motor (2) being mounted at a middle position on the top of the cover frame (6), and the output shaft of the first drive motor (2) being arranged to face downward; A stirring frame (3), wherein the stirring frame (3) is mounted on an output shaft of the first driving motor (2); A guide and limiting ring (5), wherein the guide and limiting ring (5) is installed on the top of the cover frame (6); A cover plate (4), wherein the cover plate (4) is slidably arranged on the guide limiting ring (5); A defoaming mechanism (7), the defoaming mechanism (7) being arranged in a lifting manner on the processing barrel (1), and the defoaming mechanism (7) being used to process bubbles generated during the honey processing; A constant temperature mechanism (8), wherein the constant temperature mechanism (8) is arranged in a lifting manner on the outside of the processing barrel (1), and the constant temperature mechanism (8) is used in conjunction with the defoaming mechanism (7).

2. The active enzyme adding processing device for honey processing as claimed in claim 1, characterized in that: The defoaming mechanism (7) comprises: A mounting frame (71), the mounting frame (71) being mounted on the outside of the processing barrel (1); A pressure liquid level sensor (72), the pressure liquid level sensor (72) being mounted on the corresponding mounting frame (71), the pressure liquid level sensor (72) being used to monitor the honey liquid level inside the processing barrel (1) in real time; A second drive motor (73), wherein the second drive motor (73) is mounted on the corresponding mounting frame (71), and the output shaft of the second drive motor (73) is arranged to face downward; Screw rods (74), each of the screw rods (74) is mounted on an output shaft of the corresponding second drive motor (73), and each of the screw rods (74) is rotatably connected to an adjacent mounting frame (71); Ultrasonic debubble components (75), each of which is slidably arranged on the corresponding mounting frame (71).

3. The active enzyme adding processing device for honey processing as claimed in claim 2, characterized in that: The constant temperature mechanism (8) comprises: A water storage frame (81), the water storage frame (81) being installed on the left and right sides of the processing barrel (1), and the water flow in the water storage frame (81) is used to provide constant temperature protection for the processing barrel (1); A water pipe (82), the water pipe (82) being installed between the water storage frames (81), and the two water storage frames (81) are connected by means of the water pipe (82); A fixing frame (83), wherein there are two fixing frames (83) in total, and the fixing frames (83) are installed outside the water storage frame (81) on the left side; Gears (84), there are two gears (84), and the gears (84) are rotatably mounted inside the corresponding fixing frames (83); Rack racks (85), there are four rack racks (85), each of which is slidably connected to an adjacent fixed rack (83), and the rack rack (85) on the lower side is connected to an adjacent ultrasonic debubbling assembly (75); A pressing down frame (86), the pressing down frame (86) is installed between the rack frames (85) on the upper side, and the pressing down frame (86) is used to synchronize the ultrasonic debubble assembly (75) and synchronously control the liquid level height in the water storage frame (81).

4. The active enzyme adding processing device for honey processing as claimed in claim 3, characterized in that: It also includes a cleaning mechanism (9), the cleaning mechanism (9) includes a scraper frame (91), the scraper frame (91) is slidably connected to the inside of the processing barrel (1), the scraper frame (91) is slidably connected to the cover plate (4), a first fixed rod (92) is installed on the connecting rod (76), a clamping plate (93) is rotatably set on the top of the first fixed rod (92), and the clamping plate (93) cooperates with the top of the first fixed rod (92) to clamp and stabilize the scraper frame (91).

5. The active enzyme adding processing device for honey processing as claimed in claim 4, characterized in that: The invention also comprises a filtering mechanism (10), wherein the filtering mechanism (10) comprises a filtering frame (101), wherein the filtering frame (101) is placed on the cover frame (6), wherein there are two second fixing rods (102), wherein the second fixing rods (102) are mounted on the lower left side of the cover plate (4), wherein a lifting plate (104) is slidably mounted on an adjacent second fixing rod (102), wherein a spring (103) is mounted between the adjacent lifting plate (104) and the second fixing rod (102), and wherein an inclined plate (105) is mounted on the right side of the filtering frame (101), wherein the inclined plate (105) can be squeezed by the cover plate (4).

6. The active enzyme adding processing device for honey processing as claimed in claim 5, characterized in that: The invention also comprises a clamping mechanism (11), wherein the clamping mechanism (11) comprises a sliding seat (111), wherein the sliding seat (111) is slidably mounted on the clamping plate (93), and a rotating lock buckle (112) is rotatably connected to the sliding seat (111), and the rotating lock buckle (112) cooperates with the sliding seat (111) to limit and fix the clamping plate (93).

7. The active enzyme adding processing device for honey processing as claimed in claim 6, characterized in that: It also includes an overflow prevention mechanism (12), the overflow prevention mechanism (12) including a first overflow prevention frame (121), the first overflow prevention frame (121) being installed on the water storage frame (81) on the left, and a second overflow prevention frame (122) being installed on the water storage frame (81) on the right.

8. The active enzyme adding processing device for honey processing as claimed in claim 1, characterized in that: The stirring frame (3) is a spiral structure.

9. The active enzyme adding processing device for honey processing as claimed in claim 2, characterized in that: The second drive motor (73) is electrically connected to the pressure liquid level sensor (72).

10. The active enzyme adding processing device for honey processing as claimed in claim 2, characterized in that: A connecting rod (76) is installed between the ultrasonic debubbling components (75).