Nano-crystal magnetic core dispensing equipment

The glue solidification is accelerated by rotating the transposition mechanism and auxiliary solidification mechanism, and combined with the waste gas absorption mechanism to purify the waste gas, the problems of slow glue solidification speed and waste gas pollution in the nanocrystalline magnetic core dispensing equipment are solved, and the effects of rapid solidification and waste gas purification are achieved.

CN223145163UActive Publication Date: 2025-07-25上海平祥电子有限公司
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Patent Information

Application Number
CN202422128609.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-31
Publication Date
2025-07-25
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

The existing nanocrystalline magnetic core dispensing equipment has a slow solidification speed and cannot effectively purify the harmful waste gases generated during solidification, resulting in air pollution.

Method used

The rotary transposition mechanism, auxiliary solidification mechanism and exhaust gas absorption mechanism are adopted to accelerate the solidification of glue through the heater, and harmful substances in the waste gas are absorbed by a pump and activated carbon purification box.

Benefits of technology

It realizes rapid solidification of glue and effective purification of waste gas, reduces air pollution, improves production efficiency and environmental protection effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nanocrystalline magnetic core production, and discloses nanocrystalline magnetic core dispensing equipment which comprises a workbench, a rotary transposition mechanism, a plurality of storage boxes, a glue storage barrel, a gluing mechanism, an auxiliary solidification mechanism and a waste gas absorption mechanism. A gluing mechanism connected with the glue storage barrel is installed on the workbench, and an auxiliary solidification mechanism and a waste gas absorption mechanism are installed on the workbench. The gluing device is convenient to glue; the glue solidification speed is high, waste gas generated during glue solidification is convenient to purify, and air pollution is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of nanocrystalline magnetic core production, in particular to a dispensing device for nanocrystalline magnetic cores. Background Art

[0002] When producing nanocrystalline magnetic cores, glue is required to bond and fix the nanocrystalline magnetic cores and the outer shells together. The existing dispensing devices allow the glue to solidify naturally after dispensing, which takes a long time. In addition, the existing dispensing devices cannot purify the harmful waste gas generated during the solidification of the glue, which will pollute the air. Therefore, in view of the above situation, there is an urgent need to develop a dispensing device for nanocrystalline magnetic cores that can quickly solidify the glue, facilitate the purification of the waste gas generated during the solidification of the glue, and reduce air pollution, so as to overcome the deficiencies in current practical applications and meet the current needs. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a dispensing device for nanocrystalline magnetic cores to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the utility model adopts the following technical solutions:

[0005] A dispensing device for nanocrystalline magnetic cores includes a workbench, a rotary displacement mechanism, a storage box, a glue storage barrel, a glue coating mechanism, an auxiliary solidification mechanism, and a waste gas absorption mechanism. The rotary displacement mechanism is installed on the workbench, and a plurality of storage boxes are installed on the rotary displacement mechanism. The glue coating mechanism connected to the glue storage barrel is installed on the workbench, and the auxiliary solidification mechanism and the waste gas absorption mechanism are installed on the workbench;

[0006] The auxiliary solidification mechanism includes: a second electric telescopic rod, a mounting plate, and a heater. The second electric telescopic rod is fixed on the workbench, the telescopic end of the second electric telescopic rod is fixed to the mounting plate, and the heater is installed on the mounting plate;

[0007] The waste gas absorption mechanism includes: an air extraction pump, an air suction nozzle, an exhaust pipe, a purification box, an air outlet nozzle, and an end cover. The air extraction pump and the purification box are both installed on the workbench. The air suction nozzle is connected to the upper side of the air extraction pump, the exhaust pipe inserted into the purification box is installed on the right side of the air extraction pump, activated carbon is filled in the purification box, the air outlet nozzle is arranged on the right side of the purification box, and the end cover is detachably installed on the top of the purification box.

[0008] Preferably, the rotation and displacement mechanism includes: a first motor, a first gear, a second gear, a support shaft and a support plate. The first motor is fixed on the workbench. A first gear is installed on the output shaft of the first motor. A second gear meshing with the first gear is installed on one side of the first gear. The second gear is installed on the support shaft. The bottom of the support shaft is rotatably connected to the workbench. The top of the support shaft is fixed to the support plate. The storage box is fixed on the support plate.

[0009] Preferably, the glue application mechanism includes: a first electric telescopic rod, a lifting plate, a second motor, a connecting plate, a glue application nozzle, a transfer pump, a hose and a conduit. The first electric telescopic rod is fixed on the workbench. The telescopic end of the first electric telescopic rod is fixed to the lifting plate. A second motor is installed on the lower side of the lifting plate. A connecting plate is installed on the output shaft of the second motor. A glue application nozzle is fixed on the lower side of the connecting plate. The transfer pump is installed on the workbench. The feed port of the transfer pump is connected to the glue storage barrel through a conduit. The discharge port of the transfer pump is connected to the glue application nozzle through a hose.

[0010] Preferably, the storage box is made of copper.

[0011] Preferably, a plug is detachably installed on the glue storage barrel. The plug can be removed to replenish glue into the glue storage barrel.

[0012] The beneficial effects of the present utility model are as follows: For this nano-crystalline magnetic core dispensing device, first place the nano-crystalline magnetic core housing and the nano-crystalline magnetic core into the storage box. Then, drive the storage box to rotate through the rotation and displacement mechanism, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box rotate to the lower part of the glue application mechanism for dispensing. After the dispensing is completed, drive the storage box to rotate again through the rotation and displacement mechanism, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box rotate to the auxiliary solidification mechanism and the waste gas absorption mechanism. Drive the mounting plate and the heater to move upward through the second electric telescopic rod, so that the heater is attached to the storage box. Heat the nano-crystalline magnetic core in the storage box to 30 - 40 °C through the heater to accelerate the solidification of the glue. At the same time, extract the waste gas through the air extraction pump and transport it to the purification box. Adsorb the harmful substances in the waste gas through the activated carbon, and the purified air is discharged from the air outlet nozzle to reduce the pollution to the air. In summary, the present utility model is convenient for glue application; has a fast solidification speed for the glue, is convenient for purifying the waste gas generated during the solidification of the glue, and reduces the pollution to the air. Description of the Drawings

[0013] Figure 1 is a schematic three-dimensional structure of the present utility model Figure 1 .

[0014] Figure 2 is a schematic three-dimensional structure of the present utility model Figure 2 .

[0015] Figure 3 It is a partial structure diagram of the utility model Figure 1 .

[0016] Figure 4 It is a partial structure diagram of the utility model Figure 2 .

[0017] Figure 5 It is a partial structure diagram of the utility model Figure 3 .

[0018] Legend:

[0019] 1. Workbench; 2. Rotary transposition mechanism; 201. First motor; 202. First gear; 203. Second gear; 204. Support shaft; 205. Support plate; 3. Material storage box; 4. Glue storage barrel; 401. Plug; 5. Gluing mechanism; 501. First electric telescopic rod; 502. Lifting plate; 503. Second motor; 504. Connecting plate; 505. Gluing nozzle; 506. Delivery pump; 507. Hose; 508. Catheter; 6. Auxiliary solidification mechanism; 601. Second electric telescopic rod; 602. Mounting plate; 603. Heater; 7. Waste gas absorption mechanism; 701. Vacuum pump; 702. Suction nozzle; 703. Exhaust pipe; 704. Purification box; 705. Exhaust nozzle; 706. End cover. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0021] Specific examples are given below.

[0022] See also Figures 1 to 5, in the embodiment of the present utility model, a nano-crystalline magnetic core dispensing device includes a workbench 1, a rotation and displacement mechanism 2, a storage box 3, a glue storage barrel 4, a glue coating mechanism 5, an auxiliary solidification mechanism 6 and an exhaust gas absorption mechanism 7. A rotation and displacement mechanism 2 is installed on the workbench 1, and a plurality of storage boxes 3 are installed on the rotation and displacement mechanism 2. The storage boxes 3 are made of copper, making them have good thermal conductivity. The storage boxes 3 are used to place the nano-crystalline magnetic core housing and the nano-crystalline magnetic core. The glue storage barrel 4 is placed on the ground, and a plug 401 is detachably installed on the glue storage barrel 4. Removing the plug 401 can replenish glue into the glue storage barrel 4. A glue coating mechanism 5 connected to the glue storage barrel 4 is installed on the workbench 1, and an auxiliary solidification mechanism 6 and an exhaust gas absorption mechanism 7 are installed on the workbench 1. During use, first place the nano-crystalline magnetic core housing and the nano-crystalline magnetic core into the storage box 3, and then drive the storage box 3 to rotate through the rotation and displacement mechanism 2, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box 3 rotate to the lower part of the glue coating mechanism 5 for dispensing. After the dispensing is completed, drive the storage box 3 to rotate again through the rotation and displacement mechanism 2, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box 3 rotate to the auxiliary solidification mechanism 6 and the exhaust gas absorption mechanism 7. Heat the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box 3 through the auxiliary solidification mechanism 6 to accelerate the solidification of the glue. At the same time, absorb and purify the harmful exhaust gas discharged when the glue solidifies through the exhaust gas absorption mechanism 7, thereby reducing air pollution.

[0023] The rotation and displacement mechanism 2 includes: a first motor 201, a first gear 202, a second gear 203, a support shaft 204 and a support plate 205. The first motor 201 is fixed on the workbench 1, a first gear 202 is installed on the output shaft of the first motor 201, a second gear 203 meshing with it is installed on one side of the first gear 202. The second gear 203 is installed on the support shaft 204, the bottom of the support shaft 204 is rotatably connected to the workbench 1, the top of the support shaft 204 is fixed to the support plate 205, and the storage box 3 is fixed to the support plate 205. During use, drive the first gear 202, the second gear 203, the support shaft 204 and the support plate 205 to rotate through the first motor 201, and drive the storage box 3 to rotate through the support plate 205.

[0024] The glue - applying mechanism 5 includes: a first electric telescopic rod 501, a lifting plate 502, a second motor 503, a connecting plate 504, a glue - applying nozzle 505, a transfer pump 506, a hose 507 and a conduit 508. The first electric telescopic rod 501 is fixed on the workbench 1, and the telescopic end of the first electric telescopic rod 501 is fixed to the lifting plate 502. A second motor 503 is installed on the lower side of the lifting plate 502, a connecting plate 504 is installed on the output shaft of the second motor 503, and a glue - applying nozzle 505 is fixed on the lower side of the connecting plate 504. The transfer pump 506 is installed on the workbench 1. The feed port of the transfer pump 506 is connected to the glue storage barrel 4 through the conduit 508, and the discharge port of the transfer pump 506 is connected to the glue - applying nozzle 505 through the hose 507. During use, first, the first electric telescopic rod 501 drives the lifting plate 502, the second motor 503, the connecting plate 504, and the glue - applying nozzle 505 to move downward, so that the glue - applying nozzle 505 moves to the nanocrystalline magnetic core. Then, the transfer pump 506 transports the glue into the glue - applying nozzle 505, and the glue is applied to the nanocrystalline magnetic core through the glue - applying nozzle 505. At the same time, the second motor 503 drives the connecting plate 504 and the glue - applying nozzle 505 to rotate one circle, making the glue - applying of the glue - applying nozzle 505 more sufficient.

[0025] The auxiliary solidification mechanism 6 includes: a second electric telescopic rod 601, a mounting plate 602 and a heater 603. The second electric telescopic rod 601 is fixed on the workbench 1, and the telescopic end of the second electric telescopic rod 601 is fixed to the mounting plate 602. A heater 603 is installed on the mounting plate 602. During use, the second electric telescopic rod 601 drives the mounting plate 602 and the heater 603 to move upward, so that the heater 603 fits with the storage box 3, and the nanocrystalline magnetic core in the storage box 3 is heated to 30 - 40 °C by the heater 603 to accelerate the solidification of the glue.

[0026] The waste gas absorption mechanism 7 includes: an air extraction pump 701, an air suction nozzle 702, an exhaust pipe 703, a purification box 704, an air outlet nozzle 705 and an end cover 706. Both the air extraction pump 701 and the purification box 704 are installed on the workbench 1. The upper side of the air extraction pump 701 is connected to the air suction nozzle 702, and the right side of the air extraction pump 701 is installed with an exhaust pipe 703 inserted into the purification box 704. The purification box 704 is filled with activated carbon. The right side of the purification box 704 is provided with an air outlet nozzle 705, and the top of the purification box 704 is detachably installed with an end cover 706. The activated carbon in the purification box 704 can be replaced by removing the end cover 706. During use, the air extraction pump 701 extracts the waste gas and transports it into the purification box 704, and the harmful substances in the waste gas are adsorbed by the activated carbon. The purified air is discharged from the air outlet nozzle 705 to reduce the pollution of the air.

[0027] Working principle: For this nano-crystalline magnetic core dispensing device, first place the nano-crystalline magnetic core housing and the nano-crystalline magnetic core into the storage box 3. Then, drive the storage box 3 to rotate through the rotation and displacement mechanism 2, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box 3 rotate to the lower part of the dispensing mechanism 5 for dispensing. After the dispensing is completed, drive the storage box 3 to rotate again through the rotation and displacement mechanism 2, so that the nano-crystalline magnetic core housing and the nano-crystalline magnetic core in the storage box 3 rotate to the auxiliary solidification mechanism 6 and the waste gas absorption mechanism 7. Drive the mounting plate 602 and the heater 603 to move upward through the second electric telescopic rod 601, so that the heater 603 is attached to the storage box 3. Heat the nano-crystalline magnetic core in the storage box 3 to 30 - 40 °C through the heater 603 to accelerate the solidification of the glue. At the same time, extract the waste gas through the air extraction pump 701 and transport it to the purification box 704. Adsorb the harmful substances in the waste gas through the activated carbon, and the purified air is discharged from the air outlet nozzle 705 to reduce the pollution to the air.

[0028] The above is only the preferred specific implementation mode of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present utility model.

Claims

1. A nano-crystalline magnetic core dispensing device, characterized in that It includes a workbench (1), a rotary indexing mechanism (2), a storage box (3), a glue storage barrel (4), a glue application mechanism (5), an auxiliary solidification mechanism (6) and an exhaust gas absorption mechanism (7). The rotary indexing mechanism (2) is installed on the workbench (1), multiple storage boxes (3) are installed on the rotary indexing mechanism (2), the glue application mechanism (5) connected to the glue storage barrel (4) is installed on the workbench (1), and the auxiliary solidification mechanism (6) and the exhaust gas absorption mechanism (7) are installed on the workbench (1). The auxiliary solidification mechanism (6) includes: a second electric telescopic rod (601), a mounting plate (602) and a heater (603). The second electric telescopic rod (601) is fixed on the workbench (1), the telescopic end of the second electric telescopic rod (601) is fixed to the mounting plate (602), and the heater (603) is installed on the mounting plate (602). The exhaust gas absorption mechanism (7) includes: an air extraction pump (701), an air suction nozzle (702), an exhaust pipe (703), a purification box (704), an air outlet nozzle (705) and an end cover (706). The air extraction pump (701) and the purification box (704) are both installed on the workbench (1). The air suction nozzle (702) is connected to the upper side of the air extraction pump (701), the exhaust pipe (703) inserted into the purification box (704) is installed on the right side of the air extraction pump (701). The purification box (704) is filled with activated carbon. The air outlet nozzle (705) is arranged on the right side of the purification box (704), and the end cover (706) is detachably installed on the top of the purification box (704).

2. The nano-crystalline magnetic core dispensing device according to claim 1, wherein, The rotary indexing mechanism (2) includes: a first motor (201), a first gear (202), a second gear (203), a support shaft (204) and a support plate (205). The first motor (201) is fixed on the workbench (1), the first gear (202) is installed on the output shaft of the first motor (201), the second gear (203) engaged with the first gear (202) is installed on one side of the first gear (202), the second gear (203) is installed on the support shaft (204), the bottom of the support shaft (204) is rotatably connected to the workbench (1), the top of the support shaft (204) is fixed to the support plate (205), and the storage box (3) is fixed to the support plate (205).

3. The nanocrystalline magnetic core dispensing device according to claim 1, characterized in that The glue application mechanism (5) includes: a first electric telescopic rod (501), a lifting plate (502), a second motor (503), a connecting plate (504), a glue nozzle (505), a delivery pump (506), a hose (507) and a conduit (508). The first electric telescopic rod (501) is fixed on the workbench (1), and the telescopic end of the first electric telescopic rod (501) is fixed to the lifting plate (502). A second motor (503) is installed on the lower side of the lifting plate (502), a connecting plate (504) is installed on the output shaft of the second motor (503), and a glue nozzle (505) is fixed on the lower side of the connecting plate (504). The delivery pump (506) is installed on the workbench (1), the feed port of the delivery pump (506) is connected to the glue storage barrel (4) through the conduit (508), and the discharge port of the delivery pump (506) is connected to the glue nozzle (505) through the hose (507).

4. The nano-crystalline magnetic core dispensing device according to claim 1, characterized in that The storage box (3) is made of copper.

5. The nano-crystalline magnetic core dispensing device according to any one of claims 1-4, characterized in that A plug (401) is detachably installed on the glue storage barrel (4). The glue in the glue storage barrel (4) can be replenished by removing the plug (401).