Green mustard bottled sealing detection device
By using a combination method of negative pressure and electrode probes in the sealing detection device for green mustard bottles, the problems of destructiveness, contamination and precision of existing detection technologies are solved, and efficient and accurate sealing detection is achieved.
Patent Information
- Application Number
- CN202510592109.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing sealing detection technology for green mustard bottles has problems such as destructiveness, high pollution, and it is difficult to accurately judge the sealing inadequate in automated testing.
Using a combination of negative pressure effect and electrode probe measurement, a vacuum pump forms a negative pressure in the detection tank, extracts leaked mustard products, and uses the electrode probe to detect resistance changes to complete sealing detection.
It improves the efficiency of seal detection, simplifies the processing process after leakage, reduces the need for manual cleaning, and improves the accuracy of detection.
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Figure CN120102028A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fluid sealing test, in particular to a wasabi bottle sealing detection device. Background Art
[0002] Wasabi, also known as green mustard, is a condiment made from the root of the wasabi plant. It has a variety of health benefits, and the main ingredients of wasabi are the spicy components of the wasabi root, specifically allyl isothiocyanate. This compound gives wasabi its unique spicy flavor and a variety of health benefits.
[0003] Wasabi is usually bottled. After production, it is necessary to ensure that the bottle structure remains completely sealed. Therefore, for large-scale production and processing, it is necessary to regularly test the sealing of each batch of products to ensure that the sealing of the bottles produced by the batch meets the requirements. In the prior art, sealing testing can be achieved by immersion or squeezing, but the above-mentioned testing schemes are destructive tests, which will directly cause damage to the internal raw materials or the bottle body, and will also cause large-scale pollution to the testing equipment itself, thereby increasing the difficulty of subsequent cleaning. In addition, for the automated testing process, there is also a lack of effective and accurate judgment of insufficient sealing problems. Summary of the invention
[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a device for detecting the sealing of wasabi bottles to solve the problems raised in the above-mentioned background technology. The present invention can extract the internal product of the wasabi bottle with a leakage problem by means of the negative pressure effect, and can achieve the detection purpose by measuring the resistance with the electrode probe, and the detection efficiency is higher. Similarly, with the help of the vacuum equipment at the bottom, after the leakage is detected and the leakage problem is recorded, the leaked wasabi product can be directly discharged. No manual cleaning is required, and the cleaning can be completed quickly and the subsequent testing process can be carried out immediately, which simplifies the processing flow after the leakage occurs.
[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical scheme: a sealing detection device for green mustard bottle, comprising a sealing detection device body, the sealing detection device body comprising a detection tank, a lifting mechanism, a sealing assembly and a leakage detection mechanism, bottom plates are welded on both sides of the bottom of the detection tank, a vacuum pump is screwed on the surface of one of the bottom plates, one end of the vacuum pump is connected to an exhaust pipe, a sealing assembly is installed on the inner top end of the detection tank, the bottle mouth of the green mustard bottle to be tested passes through the middle of the sealing assembly in a vertical downward form, a leakage detection mechanism is installed on the inner bottom end of the detection tank, the exhaust pipe is connected to the inside of the leakage detection mechanism, the lifting mechanism is screwed on the surface of the other bottom plate, a clamp is installed on the top of the lifting mechanism, the clamp is provided with two adsorption sleeves, the adsorption sleeve is used to adsorb and support the bottom area of the bottle of the green mustard bottle, the top of the detection tank is in an open state, and an electrode probe is installed inside the leakage detection mechanism.
[0006] Furthermore, the lifting mechanism includes a guide column, an electric lifting rod, a support plate and a clamping frame. The end of the exhaust pipe is connected to an extension pipe, the bottom of the guide column is welded to the surface of one of the base plates, the top of the electric lifting rod is screwed with a support plate, one end of the support plate is integrally formed with a clamping frame, and a support hole is opened at the end of the clamping frame.
[0007] Furthermore, a docking hose is connected to the top of the guide column, the bottom end of the electric lifting rod is screwed to the surface of the base plate, and the guide column passes upward from the surface of the support plate. The interior of the guide column is a hollow structure, and an extension pipe is connected to the docking hose part at the top through the interior of the guide column.
[0008] Furthermore, the clamp includes a motor, a drive shaft and an adsorption sleeve. The motor is screwed to the outside of the clamping frame. There are two adsorption sleeves. A center column is connected between the two adsorption sleeves. The drive shaft passes through the inside of the center column. A receiving interface is provided at the end of the drive shaft.
[0009] Furthermore, the end of the docking hose is inserted into the interior of the receiving interface, and an adsorption hole is opened in the middle of the adsorption sleeve. The interior of the docking hose is connected to the adsorption hole part after passing through the driving shaft and the interior of the center column in sequence, and the driving shaft passes through the interior of the support hole.
[0010] Furthermore, the sealing assembly includes a lifting plate, a sealing sleeve and a fixing ring. An elastic membrane is attached to the top edge of the lifting plate. The sealing sleeve is provided with a top conical sleeve, a vertical sleeve and a bottom conical sleeve from top to bottom. A sealing strip is integrally formed on the inner wall of the sealing sleeve.
[0011] Furthermore, the inner ring portion of the lifting plate is used to lean against the side of the sealing sleeve, the bottom of the bottom conical sleeve is embedded with a ball, the surface of the fixing ring is provided with an exhaust hole and a groove, the top and bottom of the exhaust hole are in a through state, the ball is used to be embedded in the inside of the groove, and the bottom of the bottom conical sleeve is pressed against the surface of the fixing ring.
[0012] Furthermore, the leakage detection mechanism includes a discharge pipe, a collection shield and an electrode probe. The discharge pipe is installed at the bottom of the detection tank, and the interior of the discharge pipe is connected to the interior of the exhaust pipe. A vacuum air hole is opened at the top of the exhaust pipe.
[0013] Furthermore, the collection shield is integrally formed at the top of the discharge pipe, an electromagnet is installed on the surface of the discharge pipe, a convex column is inserted at the top of the collection shield, a top block is integrally formed at the top of the convex column, and the electrode probe is embedded in the surface of the convex column.
[0014] Furthermore, a connecting hole is provided on the surface of the collection mask, the top block is in a conical structure as a whole, and the top block is used to lean against the bottom of the bottle cap of the wasabi bottle to be tested, and a gap is provided between the two electrode probes.
[0015] Beneficial effects of the present invention: 1. The wasabi bottle sealing detection device forms a negative pressure state inside the detection tank through the vacuum pump at the bottom, and inserts the wasabi bottle to be tested into the detection tank upside down. With the help of the negative pressure effect, the product inside the wasabi bottle with leakage problem can be extracted. The detection purpose can be achieved by measuring the resistance with the electrode probe, and the detection efficiency is higher. With the sealing component, the clamping and sealing of the wasabi bottle to be tested and the extraction process of the wasabi bottle can be achieved at the same time.
[0016] 2. The wasabi bottle sealing detection device detects the wasabi bottle with leakage problems through the leakage detection mechanism at the bottom of the detection tank, and also uses the vacuum equipment at the bottom to directly discharge the leaked wasabi product after the leakage is detected and the leakage problem is recorded. It does not require manual cleaning and can quickly complete the cleaning and immediately carry out the subsequent testing process, which simplifies the handling process after the leakage occurs.
[0017] 3. The wasabi bottle sealing detection device uses a lifting mechanism on the outside to cooperate with two sets of clamps to install and test the wasabi bottle to be tested, and can quickly install subsequent wasabi bottles to be tested during the test, and does not need to use a locking structure to fix the wasabi bottle to be tested, but can perform periodic flipping and replacement. This process can still be achieved by the internal vacuum pipeline structure, thereby improving the utilization rate of the vacuum equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A schematic diagram of the structure of a device for detecting the sealing of green wasabi bottles according to the present invention; Figure 2 A cross-sectional view of the interior of the detection tank of the present invention; Figure 3 for Figure 2 A magnified image of area A; Figure 4 The figure is a disassembled view of the sealing component part of the present invention; Figure 5 for Figure 2 Enlarged view of area B; Figure 6 It is a structural schematic diagram of the lifting mechanism part of the present invention; Figure 7 is a cross-sectional view of the clamp portion of the present invention; In the figure: 1. detection tank; 2. bottom plate; 3. vacuum pump; 4. lifting mechanism; 5. fixture; 6. sealing assembly; 7. leakage detection mechanism; 8. exhaust pipe; 9. lifting plate; 10. elastic membrane; 11. sealing sleeve; 12. top tapered sleeve; 13. vertical sleeve; 14. bottom tapered sleeve; 15. fixing ring; 16. exhaust hole; 17. groove; 18. ball bearing; 19. sealing strip; 20. collection mask; 21. Connecting hole; 22. convex column; 23. top block; 24. electrode probe; 25. discharge pipe; 26. solenoid valve; 27. vacuum hole; 28. extension pipe; 29. guide column; 30. electric lifting rod; 31. support plate; 32. clamping frame; 33. support hole; 34. docking hose; 35. motor; 36. drive shaft; 37. adsorption sleeve; 38. center column; 39. socket; 40. adsorption hole. DETAILED DESCRIPTION
[0019] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.
[0020] See also Figures 1 to 7The present invention provides the following technical solutions: a sealing detection device for green mustard bottle, comprising a sealing detection device body, the sealing detection device body comprising a detection tank 1, a lifting mechanism 4, a sealing component 6 and a leakage detection mechanism 7, bottom plates 2 are welded on both sides of the bottom of the detection tank 1, a vacuum pump 3 is screwed on the surface of one of the bottom plates 2, one end of the vacuum pump 3 is connected to an exhaust pipe 8, a sealing component 6 is installed on the inner top of the detection tank 1, the bottle mouth of the green mustard bottle to be tested passes through the middle of the sealing component 6 in a vertical downward form, a leakage detection mechanism 7 is installed on the inner bottom of the detection tank 1, the exhaust pipe 8 is connected to the inside of the leakage detection mechanism 7, a lifting mechanism 4 is screwed on the surface of the other bottom plate 2, a clamp 5 is installed on the top of the lifting mechanism 4, the clamp 5 is provided with two adsorption sleeves 37, the adsorption sleeve 37 is used to adsorb and support the bottom area of the green mustard bottle, the top of the detection tank 1 is in an open state, and an electrode probe 24 is installed inside the leakage detection mechanism 7. The sealing detection device is used to detect whether there is leakage in the green mustard bottle product to be tested after production.
[0021] When the present invention is used, after placing the wasabi bottle to be tested on one of the clamps 5, the wasabi bottle to be tested is turned over and moved downward by means of the lifting mechanism 4. When the adsorption effect decreases, the wasabi bottle to be tested is in a vertical downward state, and then moves downward to be embedded in the interior of the detection mechanism, and passes through the inner sealing component 6. The side of the wasabi bottle to be tested is sealed by the sealing component 6, and then the bottle mouth part of the wasabi bottle to be tested is sucked by means of the internal negative pressure state. After a certain period of time, by detecting whether the internal product of the wasabi bottle to be tested leaks during the suction process, it is determined whether the sealing of the wasabi bottle to be tested meets the requirements. When leakage occurs, the electrode probe 24 in the leakage detection mechanism 7 generates an electrical signal change, so that the leakage detection process can be completed. After the leakage, the wasabi bottle to be tested is taken out, and the internal electromagnetic valve 26 is controlled to open to discharge the leaked wasabi product, so as to quickly carry out the subsequent test process.
[0022] In this embodiment, the lifting mechanism 4 includes a guide column 29, an electric lifting rod 30, a support plate 31 and a clamping frame 32. The end of the exhaust pipe 8 is connected to an extension pipe 28. The bottom of the guide column 29 is welded to the surface of one of the bottom plates 2. The top of the electric lifting rod 30 is screwed with a support plate 31. One end of the support plate 31 is integrally formed with a clamping frame 32. A support hole 33 is provided at the end of the clamping frame 32. The top of the guide column 29 is connected to a docking hose 34. The bottom end of the electric lifting rod 30 is screwed to the surface of the bottom plate 2. The guide column 29 passes upward from the surface of the support plate 31. The interior of the guide column 29 is a hollow structure, and the extension pipe 28 is partially connected to the docking hose 34 at the top through the interior of the guide column 29. The clamp 5 includes a motor 35, a drive shaft 36 and an adsorption sleeve 37. The motor 35 is screwed on the outside of the clamping frame 32. There are two adsorption sleeves 37. A central column 38 is connected between the two adsorption sleeves 37. The drive shaft 36 passes through the inside of the central column 38. A socket 39 is provided at the end of the drive shaft 36. The end of the docking hose 34 is inserted into the inside of the socket 39. An adsorption hole 40 is provided in the middle of the adsorption sleeve 37. The inside of the docking hose 34 passes through the drive shaft 36 and the inside of the central column 38 in sequence and then partially communicates with the adsorption hole 40. The drive shaft 36 passes through the inside of the support hole 33. The wasabi bottle to be tested is installed and tested on the outside by the lifting mechanism 4 in cooperation with the two sets of clamps 5. During the test, the subsequent wasabi bottle to be tested can be quickly installed, and the wasabi bottle to be tested can be periodically flipped and replaced without using a locking structure to fix the wasabi bottle to be tested. This process can still be achieved by the internal vacuum pipeline structure, thereby improving the utilization rate of the vacuum equipment.
[0023] Specifically, the lifting mechanism 4 is used to provide lifting and lowering motion processing for the clamp 5 part. In this process, by starting the telescopic motion of the electric lifting rod 30 on one side, the top support plate 31 and the clamping frame 32 can be driven to lift synchronously, so that the clamp 5 part inside the clamping frame 32 can also be lifted and lowered. The clamp 5 part is placed and supported by the adsorption sleeves 37 at the top and bottom of the clamp 5. After starting the vacuum pump 3, the vacuum pump 3 uses the suction pipe 8, the extension pipe 28, the guide column 29 and the docking hose 34 at the top to place the adsorption sleeve 37 on the green mustard bottle to be tested. The wasabi bottle to be tested placed inside 37 is adsorbed and fixed, and then the motor 35 on the side is started, and the driving shaft 36 is driven to rotate by the motor 35, and finally the adsorption sleeves 37 at both ends are driven to rotate with the help of the central column 38, so that the positions of the wasabi bottles to be tested at the top and the bottom can be exchanged, so that the tested wasabi bottle can be directly taken out by rotating to the top, and the wasabi bottle to be tested that has not been tested is rotated to vertically downward, and then with the help of the contraction movement of the electric lifting rod 30, the wasabi bottle to be tested can be downwardly embedded into the interior of the detection tank 1.
[0024] In this embodiment, the sealing assembly 6 includes a lifting plate 9, a sealing sleeve 11 and a fixing ring 15. An elastic film 10 is attached to the top edge of the lifting plate 9. The sealing sleeve 11 is provided with a top tapered sleeve 12, a vertical sleeve 13 and a bottom tapered sleeve 14 from top to bottom. A sealing strip 19 is integrally formed on the inner wall of the sealing sleeve 11. The inner ring of the lifting plate 9 is used to lean against the side of the sealing sleeve 11. The bottom of the bottom tapered sleeve 14 is embedded with a ball 18. The surface of the fixing ring 15 is provided with an air extraction hole 16 and a groove 17. The top and bottom of the air extraction hole 16 are in a through state. The ball 18 is used to be embedded in the inside of the groove 17. The bottom of the bottom tapered sleeve 14 is pressed against the surface of the fixing ring 15. A negative pressure state is formed inside the detection tank 1 through the vacuum pump 3 at the bottom, and the wasabi bottle to be tested is inserted upside down into the detection tank 1. With the help of the negative pressure effect, the product inside the wasabi bottle with a leakage problem can be extracted. The resistance measurement of the electrode probe 24 can achieve the detection purpose, and the detection efficiency is higher. In conjunction with the sealing component 6, the clamping and sealing of the wasabi bottle to be tested and the extraction process of the wasabi bottle can be achieved simultaneously.
[0025] Specifically, after the wasabi bottle to be tested is vertically embedded into the interior of the test tank 1 by the lifting mechanism 4 and the clamp 5, the bottle cap portion will be directly pressed vertically downward to the top of the top block 23, and the bottle body portion of the wasabi bottle to be tested will pass through the rubber sealing sleeve 11, so that the multiple sealing strips 19 on the inner side of the sealing sleeve 11 can be squeezed on the surface of the wasabi bottle to be tested. When the vacuum pump 3 is subsequently started to evacuate the interior of the test tank 1, the lifting plate 9 on the top will be sucked downward through the exhaust hole 16, and then the inner circle portion of the lifting plate 9 will be transformed from leaning against the outer side of the vertical sleeve 13 to leaning against the outer side of the bottom conical sleeve 14. With the help of the squeezing effect of the lifting plate 9, the pressure on the sealing strip 19 pressing on the surface of the wasabi bottle to be tested can be increased from the outside, ensuring that the bottle cap area at the bottom of the wasabi bottle to be tested can be completely in a sealed state.
[0026] In this embodiment, the leakage detection mechanism 7 includes a discharge pipe 25, a collection shield 20 and an electrode probe 24. The discharge pipe 25 is installed at the bottom of the detection tank 1, and the interior of the discharge pipe 25 is connected to the interior of the exhaust pipe 8. The top of the exhaust pipe 8 is provided with a vacuum vent 27. The collection shield 20 is integrally formed at the top of the discharge pipe 25, and an electromagnet is installed on the surface of the discharge pipe 25. A convex column 22 is inserted at the top of the collection shield 20, and a top block 23 is integrally formed at the top of the convex column 22. The electrode probe 24 is embedded on the surface of the convex column 22. A connecting hole 21 is provided on the surface of the collection shield 20, and the top block 23 is in a conical structure as a whole. The top block 23 is used to lean against the bottom of the bottle cap of the green mustard bottle to be tested, and a gap is provided between the two electrode probes 24. The leakage detection mechanism 7 is used at the bottom of the detection tank 1 to detect the wasabi bottle with a leakage problem. With the help of the vacuum equipment at the bottom, after the leakage is detected, the leaked wasabi product can be directly discharged after the leakage problem is recorded. No manual cleaning is required, and the cleaning can be completed quickly and the subsequent testing process can be carried out immediately, which simplifies the processing flow after the leakage occurs.
[0027] Specifically, after the wasabi bottle to be tested is embedded in the interior of the detection tank 1 in an inverted form, the vacuum pump 3 is started to extract the air from the bottom cavity of the detection tank 1 to form a negative pressure state. At this time, if the wasabi bottle to be tested is not sealed enough, the product inside the wasabi bottle to be tested will seep out due to the suction effect. The seeped wasabi will fall onto the collection mask and concentrate on the inner side of the electrode probe 24. At this time, the resistance signal change can be monitored by the electrode probe 24 to realize the detection process of the leakage phenomenon. After the detection is completed, the solenoid valve 26 is opened. Similarly, with the help of the vacuum pump 3 and the exhaust pipe 8, the product extracted from the top of the discharge pipe 25 can be sucked downwards to facilitate the subsequent detection process. Among them, the electrode probe 24 part is an existing mature technology and does not belong to the protection scope of the present invention. Therefore, its working principle and related technical parameters are not described here.
[0028] The basic principles and main features of the present invention and the advantages of the present invention are shown and described above. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention.
[0029] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A sealing detection device for wasabi bottle packaging, comprising a sealing detection device body, characterized in that: The sealing detection device body comprises a detection tank (1), a lifting mechanism (4), a sealing assembly (6) and a leakage detection mechanism (7). Bottom plates (2) are welded to both sides of the bottom of the detection tank (1). A vacuum pump (3) is screwed to the surface of one of the bottom plates (2). One end of the vacuum pump (3) is connected to an exhaust pipe (8). A sealing assembly (6) is installed at the top inner side of the detection tank (1). The mouth of the wasabi bottle to be tested passes through the middle of the sealing assembly (6) in a vertical downward manner. A leakage detection mechanism (7) is installed at the inner bottom end, the exhaust pipe (8) is connected to the inside of the leakage detection mechanism (7), a lifting mechanism (4) is screwed to the surface of the other bottom plate (2), a clamp (5) is installed at the top of the lifting mechanism (4), the clamp (5) is provided with two adsorption sleeves (37), the adsorption sleeve (37) is used to adsorb and support the bottom area of the green mustard bottle, the top of the detection tank (1) is in an open state, and an electrode probe (24) is installed inside the leakage detection mechanism (7).
2. The device for detecting the sealing of wasabi bottles according to claim 1, characterized in that: The lifting mechanism (4) comprises a guide column (29), an electric lifting rod (30), a support plate (31) and a clamping frame (32); the end of the exhaust pipe (8) is connected to an extension pipe (28); the bottom of the guide column (29) is welded to the surface of one of the bottom plates (2); the top of the electric lifting rod (30) is screwed with a support plate (31); one end of the support plate (31) is integrally formed with a clamping frame (32); and a support hole (33) is provided at the end of the clamping frame (32).
3. The device for detecting the sealing of wasabi bottles according to claim 2, characterized in that: The top end of the guide column (29) is connected to a docking hose (34), the bottom end of the electric lifting rod (30) is screwed to the surface of the bottom plate (2), and the guide column (29) passes upward from the surface of the support plate (31), the interior of the guide column (29) is a hollow structure, and the extension pipe (28) is connected to the docking hose (34) at the top end through the interior of the guide column (29).
4. The device for detecting the sealing of wasabi bottles according to claim 3, characterized in that: The clamp (5) comprises a motor (35), a drive shaft (36) and an adsorption sleeve (37); the motor (35) is screwed onto the outside of the clamping frame (32); there are two adsorption sleeves (37); a center column (38) is connected between the two adsorption sleeves (37); the drive shaft (36) passes through the inside of the center column (38); and a receiving interface (39) is provided at the end of the drive shaft (36).
5. The wasabi bottle sealing detection device according to claim 4, characterized in that: The end of the docking hose (34) is inserted into the interior of the receiving port (39), and an adsorption hole (40) is provided in the middle of the adsorption sleeve (37). The interior of the docking hose (34) passes through the interior of the drive shaft (36) and the center column (38) in sequence and is then partially connected to the adsorption hole (40). The drive shaft (36) passes through the interior of the support hole (33).
6. The wasabi bottle sealing detection device according to claim 2, characterized in that: The sealing assembly (6) comprises a lifting plate (9), a sealing sleeve (11) and a fixing ring (15); an elastic membrane (10) is attached to the top edge of the lifting plate (9); the sealing sleeve (11) is provided with a top conical sleeve (12), a vertical sleeve (13) and a bottom conical sleeve (14) from top to bottom; and a sealing strip (19) is integrally formed on the inner wall of the sealing sleeve (11).
7. The wasabi bottle sealing detection device according to claim 6, characterized in that: The inner ring portion of the lifting plate (9) is used to lean against the side of the sealing sleeve (11), the bottom of the bottom tapered sleeve (14) is embedded with a ball (18), the surface of the fixing ring (15) is provided with an exhaust hole (16) and a groove (17), the top and bottom of the exhaust hole (16) are in a through state, the ball (18) is used to be embedded in the inside of the groove (17), and the bottom of the bottom tapered sleeve (14) is pressed against the surface of the fixing ring (15).
8. The wasabi bottle sealing detection device according to claim 6, characterized in that: The leakage detection mechanism (7) comprises a discharge pipe (25), a collection shield (20) and an electrode probe (24); the discharge pipe (25) is installed at the bottom of the detection tank (1), and the interior of the discharge pipe (25) is connected to the interior of the exhaust pipe (8); and a vacuum vent (27) is provided at the top of the exhaust pipe (8).
9. The wasabi bottle sealing detection device according to claim 8, characterized in that: The collection shield (20) is integrally formed at the top end of the discharge pipe (25), an electromagnet is installed on the surface of the discharge pipe (25), a convex column (22) is inserted at the top end of the collection shield (20), a top block (23) is integrally formed at the top end of the convex column (22), and the electrode probe (24) is embedded in the surface of the convex column (22).
10. The wasabi bottle sealing detection device according to claim 9, characterized in that: A communicating hole (21) is provided on the surface of the collection shield (20); the top block (23) is of a conical structure as a whole, and the top block (23) is used to lean against the bottom of the bottle cap of the wasabi bottle to be tested; and a gap is provided between the two electrode probes (24).
Citation Information
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