Epoxy resin bubble removing device
By designing an epoxy resin bubble removal device that includes a fixed structure with wedge blocks and wedge slots and a motor to adjust the angle of the tilting plate, the problems of difficult removal and angle adjustment of the defoaming device are solved, thus improving defoaming efficiency and adaptability.
Patent Information
- Application Number
- CN202423102172.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing epoxy resin bubble removal devices are inconvenient to remove the defoaming cylinder after defoaming, difficult to clean, and difficult to adjust the tilt angle to adapt to different resin properties, which limits the adaptability of the equipment.
A device was designed that includes an installation cylinder, a vibrating cylinder, a centrifuge cylinder, and an adjustment mechanism. The device achieves rapid fixing and removal of the discharge cylinder by using a wedge block and a wedge groove. The angle of the inclined plate is adjusted by a motor, and defoaming is performed by combining a vibrating motor and a centrifuge, thereby enhancing the adaptability and efficiency of the equipment.
It enables convenient removal and angle adjustment of the discharge cylinder, improves defoaming efficiency, adapts to different material properties, and enhances the applicability and defoaming effect of the equipment.
Smart Images

Figure CN223602059U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to resin bubble removing technical field, concretely is a kind of epoxy resin bubble removing device. BACKGROUND
[0002] Epoxy resin is a kind of high molecular material generated by the reaction of epoxy group and polyol or amine compound, with excellent mechanical properties, chemical corrosion resistance and adhesion, in the process of using epoxy resin, in order to ensure its structural strength and surface finish after curing, often need to use epoxy resin bubble removing device, ensure that epoxy resin forms uniform, defect-free solid after curing.
[0003] Such as the patent announcement No.CN210728753U patent described in a kind of low VOC water-based epoxy resin bubble removing device, through the fixed disc on electric telescopic rod and the round hole on fixed disc and stirring rod, utilize electric telescopic rod can push and pull fixed disc, make the round hole on fixed disc repeatedly suck resin, defoaming to resin, simultaneously utilize motor rotation defoaming cylinder, can carry out centrifugal defoaming to resin, not only this and the stirring rod on fixed disc cooperate, can increase the effect of defoaming, it is favorable for more practical use a kind of low VOC water-based epoxy resin bubble removing device.
[0004] The above-mentioned technology is inconvenient to take out the defoaming cylinder, inconvenient to pour out the colloid after defoaming, and inconvenient to clean the inside of the defoaming cylinder, and the defoaming cylinder is difficult to adjust the inclination angle, and it is difficult to optimize the application of centrifugal force by adjusting the inclination angle to process different resin characteristics, limiting the adaptability of the equipment. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of epoxy resin bubble removing device to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] A kind of epoxy resin bubble removing device, comprising:
[0008] Mounting cylinder;
[0009] Vibration cylinder, the vibration cylinder is set to the inside of mounting cylinder
[0010] Centrifugal cylinder, the centrifugal cylinder is installed in the inside of vibration cylinder;
[0011] Also include the discharge cylinder and for adjusting the discharge cylinder angle adjusting mechanism, the adjusting mechanism includes rotating ear, the rotating ear is installed to the two sides of the centrifugal cylinder inner bottom wall, the inside of the rotating ear is rotatably connected with the inclined plate, the two sides of the centrifugal cylinder inner bottom wall are also installed with fixed seat, one side of the fixed seat is installed with first motor, the output end of the first motor is installed with threaded rod, the threaded rod is rotatably connected with the fixed seat, the outer wall of the threaded rod is threadedly connected with sliding block, the inside of the sliding block is installed with rotating column, the both ends of the rotating column are rotatably connected with connecting rod, one end of the connecting rod is rotatably connected with the inclined plate, the both sides of the fixed seat are provided with recess for the rotating column sliding, the inclined plate is provided with fixing assembly for fixing the discharge cylinder.
[0012] On the basis of the above technical scheme, the utility model further provides the following optional technical scheme:
[0013] In an optional scheme: the fixing assembly includes fixed disc, the fixed disc is installed to the top of inclined plate, the inside of fixed disc is slidably connected with two L-shaped plates, the top of L-shaped plate is installed with two wedge-shaped blocks, the first spring is installed between two L-shaped plates, the bottom of discharge cylinder is movably abutted to fixed disc, the bottom of discharge cylinder is provided with wedge-shaped clamping groove matched with wedge-shaped block, the sliding column is installed between two L-shaped plates, the inside of fixed disc and the bottom of discharge cylinder are all provided with sliding groove matched with wedge-shaped block, the both sides of sliding column are installed with limit disc.
[0014] In an optional scheme: the inside of installation cylinder is provided with vibration assembly for vibrating vibration cylinder.
[0015] In an optional scheme: the vibration assembly includes vibration disc, the vibration disc is installed to the bottom of vibration cylinder, the bottom of vibration disc is installed with vibration motor, the periphery of vibration disc bottom is also installed with second spring, the periphery of vibration cylinder top is installed with fixed ear, the guide rod is slidably connected between fixed ear and vibration disc.
[0016] In an optional scheme: the both ends of guide rod are installed with limit block.
[0017] In an optional scheme: the inside of vibration cylinder is installed with second motor, the output end of second motor is installed to centrifugal cylinder.
[0018] In an optional scheme: the top of two discharge cylinders is provided with breathable cover.
[0019] In an optional scheme: the side of two wedge-shaped blocks close to each other is provided with fixed column.
[0020] In an optional scheme: the sliding groove is L-shaped.
[0021] Compared with the prior art, the utility model has the advantages that:
[0022] 1、 the utility model discloses a wedge-shaped block and wedge-shaped slot cooperation, and under the assistance of first spring, makes the discharge cylinder can be quickly fixed on the inclined plate, when needing to take the discharge cylinder, can also take out the discharge cylinder easily.
[0023] 2、 the utility model discloses a first motor is driven screw rod and adjusts the inclination angle of inclined plate to adapt to the demand of different material characteristics.
[0024] 3、 the utility model discloses the joint action of vibration motor and vibration disc, passes through second spring transmission vibration force, and makes vibration cylinder slide on the guide rod. This vibration mode makes the bubble can rise and break more quickly, accelerates defoaming process. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is the structure schematic diagram of the utility model.
[0026] Figure 2 It is the sectional structure schematic diagram of the utility model.
[0027] Figure 3 It is the sectional structure schematic diagram of the utility model Figure 2 A of the utility model.
[0028] Figure 4 It is the sectional structure schematic diagram of the utility model fixed assembly.
[0029] Among them: 100, install the cylinder;200, vibration cylinder;300, centrifugal cylinder;401, discharge cylinder;402, rotating ear;403, inclined plate;404, fixed seat;405, first motor;406, screw rod;407, sliding block;408, rotating column;409, connecting rod;501, fixed disc;502, wedge-shaped block;503, first spring;504, wedge-shaped slot;505, sliding column;506, sliding groove;507, L-shaped plate;601, vibration disc;602, vibration motor;603, second spring;604, fixed ear;605, guide rod;701, second motor. DETAILED DESCRIPTION
[0030] In order to make the utility model's purpose, technical scheme and advantage more clearly, the following is combined with the embodiment, and the utility model is further detailed.
[0031] In one embodiment, as Figures 1-4As shown, an epoxy bubble removing device, comprising: a mounting cylinder 100, a vibration cylinder 200, a centrifugal cylinder 300, a discharging cylinder 401 and an adjusting mechanism for adjusting the angle of the discharging cylinder 401, the vibration cylinder 200 is arranged in the interior of the mounting cylinder 100, the centrifugal cylinder 300 is installed in the interior of the vibration cylinder 200, the adjusting mechanism comprises rotating ears 402 installed on both sides of the inner bottom wall of the centrifugal cylinder 300, the interior of the rotating ear 402 is rotatably connected with an inclined plate 403, both sides of the inner bottom wall of the centrifugal cylinder 300 are also installed with fixed seats 404, one side of the fixed seat 404 is installed with a first motor 405, the output end of the first motor 405 is installed with a threaded rod 406, the threaded rod 406 is rotatably connected with the fixed seat 404, the outer wall of the threaded rod 406 is screw-connected with a sliding block 407, the interior of the sliding block 407 is installed with a rotating column 408, both ends of the rotating column 408 are rotatably connected with connecting rods 409, one end of the connecting rod 409 is rotatably connected with the inclined plate 403, recesses are arranged on both sides of the fixed seat 404, which can be slid by the rotating column 408, a fixing assembly for fixing the discharging cylinder 401 is arranged on the inclined plate 403; by starting the first motor 405, the threaded rod 406 is driven to rotate, so that the sliding block 407 slides in the interior of the fixed seat 404, and drives the rotating column 408 to move, thereby driving the connecting rod 409 to move, at the same time, the connecting rod 409 drives the inclined plate 403 to make an inclined movement, so that the inclined plate 403 can adjust the inclination angle thereof.
[0032] In one embodiment, as Figure 4As shown, the fixing assembly comprises a fixing disc 501 mounted on the top of the inclined plate 403, two L-shaped plates 507 slidingly connected inside the fixing disc 501, two wedge-shaped blocks 502 mounted on the top of the L-shaped plates 507, a first spring 503 mounted between the two L-shaped plates 507, the bottom of the feeding cylinder 401 movably abutting against the fixing disc 501, the bottom of the feeding cylinder 401 being provided with wedge-shaped clamping grooves 504 matched with the wedge-shaped blocks 502, a sliding column 505 mounted between the two L-shaped plates 507, and the inside of the fixing disc 501 and the bottom of the feeding cylinder 401 are both provided with sliding grooves 506 matched with the wedge-shaped blocks 502. By aligning the wedge-shaped clamping grooves 504 on the feeding cylinder 401 with the positions of the two wedge-shaped blocks 502, and then pressing down the feeding cylinder 401, the wedge-shaped clamping grooves 504 are pressed against the two wedge-shaped blocks 502, at this moment, the wedge-shaped blocks 502 slide inside the wedge-shaped clamping grooves 504 and synchronously drive the L-shaped plates 507 to move synchronously, the L-shaped plates 507 press the first spring 503, when the wedge-shaped blocks 502 move to the appropriate positions, the wedge-shaped blocks 502 are reset under the action of the first spring 503 and clamped into the inside of the wedge-shaped clamping grooves 504, thereby fixing the feeding cylinder 401, when the feeding cylinder 401 needs to be taken out, the two L-shaped plates 507 can be pressed at the same time, the L-shaped plates 507 drive the two wedge-shaped blocks 502 to move towards each other and synchronously press the first spring 503, so that the first spring 503 is compressed, at this moment, the wedge-shaped blocks 502 move and are separated from the wedge-shaped clamping grooves 504, so that the feeding cylinder 401 is unlocked.
[0033] In one embodiment, as shown in Figure 2 The vibration assembly comprises a vibrating disc 601 mounted on the bottom of the vibrating cylinder 200, a vibrating motor 602 mounted on the bottom of the vibrating disc 601, second springs 603 mounted around the bottom of the vibrating disc 601, fixing ears 604 mounted around the top of the vibrating cylinder 200, and guide rods 605 slidingly connected between the fixing ears 604 and the vibrating disc 601. By starting the vibrating motor 602, the vibrating disc 601 is driven to vibrate and the second springs 603 are driven to vibrate, so that the vibrating cylinder 200 slides on the guide rods 605, the vibrating cylinder 200 is vibrated, the movement of the bubbles inside the colloid during centrifugation is accelerated, and the bubbles rise to the liquid surface and break more quickly.
[0034] In one embodiment, as shown in Figure 1 and Figure 2 The two ends of the guide rods 605 are both provided with limiting blocks; the limiting blocks limit the up-and-down vibration positions of the vibrating cylinder 200 during vibration.
[0035] In one embodiment, as shown in Figure 2As shown, the inside of the vibration cylinder 200 is provided with a second motor 701, and the output end of the second motor 701 is installed on the centrifugal cylinder 300; the centrifugal cylinder 300 is driven to rotate by the second motor 701.
[0036] In one embodiment, as shown in the drawings, Figure 1 As shown, the top of each of the two feeding cylinders 401 is provided with a breathable cover; it is ensured that the gel does not leak out while the feeding cylinder 401 is rotated and centrifuged.
[0037] In one embodiment, as shown in the drawings, Figure 4 As shown, the side of each of the two wedge-shaped blocks 502 close to each other is provided with a fixing column; it is avoided that the two wedge-shaped blocks 502 are excessively close.
[0038] In one embodiment, as shown in the drawings, Figure 4 As shown, the sliding groove 506 is L-shaped; it is convenient for the L-shaped plate 507 to move.
[0039] The above embodiment discloses an epoxy resin bubble removal device, wherein first, the feeding cylinder 401 containing the gel is fixed on the inclined plate 403, the wedge-shaped clamping groove 504 on the feeding cylinder 401 is aligned with the positions of the two wedge-shaped blocks 502, and the feeding cylinder 401 is pressed down, so that the wedge-shaped clamping groove 504 extrudes the two wedge-shaped blocks 502, at this time, the wedge-shaped blocks 502 slide in the wedge-shaped clamping groove 504 and drive the L-shaped plate 507 to move synchronously, the L-shaped plate 507 extrudes the first spring 503 after moving, when the wedge-shaped blocks 502 move to the appropriate position, the wedge-shaped blocks 502 reset under the action of the first spring 503 and are clamped into the inside of the wedge-shaped clamping groove 504, so as to realize the fixation of the feeding cylinder 401, then the inclination angle of the inclined plate 403 can be adjusted according to the different viscosity, density and bubble characteristics of different materials to meet different defoaming requirements, at this time, the first motor 405 can be started to drive the threaded rod 406 to rotate, so that the sliding block 407 slides in the fixed seat 404, the sliding block 407 drives the rotating column 408 to move, so as to drive the connecting rod 409 to move, at the same time, the connecting rod 409 drives the inclined plate 403 to make an inclined movement, so that the inclined plate 403 can adjust its inclination angle, then the second motor 701 is started to drive the centrifugal cylinder 300 to rotate, the feeding cylinder 401 and the gel inside are centrifuged to eliminate bubbles, and the vibration motor 602 can be started synchronously to drive the vibration disc 601 to vibrate and drive the second spring 603 to vibrate, so that the vibration cylinder 200 slides on the guide rod 605 to realize the vibration of the vibration cylinder 200, accelerate the movement of the bubbles in the gel during centrifugation, and make the bubbles rise to the liquid surface and break faster.
[0040] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. An epoxy bubble removing device, comprising: a mounting cylinder (100); a vibrating cylinder (200) arranged inside the mounting cylinder (100) a centrifugal cylinder (300) mounted inside the vibrating cylinder (200); characterized in that it further comprises a discharging cylinder (401) and an adjusting mechanism for adjusting the angle of the discharging cylinder (401), the adjusting mechanism comprising rotating ears (402) mounted on both sides of the inner bottom wall of the centrifugal cylinder (300), the inside of the rotating ears (402) being rotatably connected with an inclined plate (403), both sides of the inner bottom wall of the centrifugal cylinder (300) further being provided with fixed seats (404), one side of the fixed seats (404) being provided with a first motor (405), the output end of the first motor (405) being provided with a threaded rod (406), the threaded rod (406) being rotatably connected with the fixed seat (404), the outer wall of the threaded rod (406) being threadedly connected with a sliding block (407), the inside of the sliding block (407) being provided with a rotating column (408), both ends of the rotating column (408) being rotatably connected with a connecting rod (409), one end of the connecting rod (409) being rotatably connected with the inclined plate (403), both sides of the fixed seat (404) being provided with grooves for the sliding of the rotating column (408), the inclined plate (403) being provided with a fixing assembly for fixing the discharging cylinder (401).
2. The epoxy bubble removal apparatus of claim 1, wherein, The fixing assembly comprises a fixing disc (501) mounted on the top of the inclined plate (403), the inside of the fixing disc (501) being slidably connected with two L-shaped plates (507), the top of the L-shaped plates (507) being provided with wedge-shaped blocks (502), the first spring (503) being mounted between the two L-shaped plates (507), the bottom of the discharging cylinder (401) being movably abutted against the fixing disc (501), the bottom of the discharging cylinder (401) being provided with wedge-shaped clamping grooves (504) matched with the wedge-shaped blocks (502), a sliding column (505) being mounted between the two L-shaped plates (507), the inside of the fixing disc (501) and the bottom of the discharging cylinder (401) being provided with sliding grooves (506) matched with the L-shaped plates (507).
3. The epoxy bubble removal apparatus of claim 1, wherein, The inside of the mounting cylinder (100) is provided with a vibrating assembly for vibrating the vibrating cylinder (200).
4. An epoxy bubble removal apparatus according to claim 3, wherein The vibrating assembly comprises a vibrating disc (601) mounted on the bottom of the vibrating cylinder (200), the bottom of the vibrating disc (601) being provided with a vibrating motor (602), the periphery of the bottom of the vibrating disc (601) further being provided with a second spring (603), the periphery of the top of the vibrating cylinder (200) being provided with a fixed ear (604), the vibrating disc (601) and the fixed ear (604) being slidably connected with a guide rod (605).
5. An epoxy bubble removal apparatus as claimed in claim 4, wherein, Both ends of the guide rod (605) are provided with limit blocks.
6. The epoxy bubble removal apparatus of claim 1, wherein, The inside of the vibration cylinder (200) is internally provided with a second motor (701), and the output end of the second motor (701) is installed on the centrifugal cylinder (300).
7. The epoxy bubble removal apparatus of claim 1, wherein The top of each of the two feeding cylinders (401) is provided with a breathable cover.
8. The epoxy bubble removal apparatus of claim 2, wherein, The side, where the two wedge blocks (502) are close to each other, is provided with a fixing column.
9. The epoxy bubble removal apparatus of claim 2, wherein, The sliding groove (506) is in L shape.
Citation Information
Patent Citations
Low-VOC (Volatile Organic Compound) waterborne epoxy resin bubble removing device
CN210728753U