Aerosol can boxing equipment
By introducing a production line frame, aerosol can clamping structure, and auxiliary packing structure into the aerosol can packing equipment, and by using electric slide rails and servo motors to open the sealing hinges, the impact of the sealing hinges on packing efficiency has been solved, achieving more efficient aerosol can packing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-27
AI Technical Summary
Existing aerosol can packing equipment is prone to accidentally touching the sealing hinges at the top of the packaging box during the packing process, which affects packing efficiency.
It adopts an assembly line frame, a gas cylinder clamping structure and an auxiliary packing structure. The rotating shaft and baffle are driven by a second electric slide rail and a servo motor to open the sealing hinge and prevent the gas cylinder from being blocked by the sealing hinge when clamping.
It improves the packing efficiency of aerosol cans, avoids interference from sealing hinges in the packing process, and achieves more efficient packing operations.
Smart Images

Figure CN224045576U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of aerosol canning box equipment, and especially relates to aerosol canning box equipment. BACKGROUND
[0002] In the production process of cosmetics, most of the cosmetics are in the form of bottles and cans, especially perfume cosmetics, which are basically in the form of bottles and cans for containing perfume. In the processing of aerosol perfume, special aerosol filling box equipment is usually used to quickly pack the processed aerosol perfume cans.
[0003] Chinese utility model patent publication number: CN220996971U discloses an automatic aerosol canning equipment, which comprises a bottom plate and a box body, the box body is located at the rear end of the bottom plate, the upper end of the bottom plate is fixedly connected with a fixing frame, the front end of the fixing frame is fixedly connected with a motor, the inside of the fixing frame is fixedly connected with a first guide rod, the circumference of the threaded rod is threadedly connected with a first support plate, the upper end of the first support plate is fixedly connected with a hydraulic telescopic rod, a second support plate is located at the lower end of the first support plate, the lower end of the second support plate is slidably connected with a first clamping plate through a driving assembly, the lower end of the second support plate is connected with a second clamping plate through bolts, the second clamping plate is located at the right end of the first clamping plate; the utility model can clamp multiple aerosol cans at a time, so that the box body can be quickly filled, thereby speeding up the aerosol canning speed and improving the aerosol canning efficiency.
[0004] However, the above-mentioned equipment can clamp multiple aerosol cans at the same time during work, but when the equipment is working, it usually needs to put a row of aerosol cans into the box one by one, especially when putting a row of aerosol cans near the wall of the packaging box, it is easy to touch the sealing hinge above the packaging box, which affects the actual canning efficiency. UTILITY MODEL CONTENTS
[0005] Therefore, the utility model provides an aerosol canning equipment, which mainly solves the problem that in the prior art, the sealing hinge at the upper end of the packaging box is easily touched during the aerosol canning process, affecting the actual canning efficiency of the equipment.
[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a kind of aerosol canning equipment, including assembly line frame, gas tank clamping structure and auxiliary packing structure, the gas tank clamping structure is installed in the inside of assembly line frame, the auxiliary packing structure is installed in the inside of assembly line frame, the auxiliary packing structure includes second electric slide rail, second electric slide and fixed frame, the second electric slide rail is installed in the right upper inner wall of assembly line frame, the second electric slide rail is provided with four, four the outer wall of second electric slide rail is equipped with second electric slide, the outer wall of second electric slide is fixedly connected with fixed frame, the lower surface of fixed frame is fixedly connected with mounting bracket, the mounting bracket is provided with four, four The lower surface four sides of fixed frame are fixedly connected respectively in four mounting brackets, rotating shaft is rotatably connected in the inside of four mounting brackets, the outer wall of four rotating shafts is fixedly connected with baffle, one side outer wall of four mounting brackets is equipped with servo motor, the output end of four servo motors and the outer wall one side of rotating shaft are fixedly connected.
[0007] By adopting the above technical scheme, the assembly line frame is divided into upper left frame, upper right frame and lower support frame, the gas tank clamping structure is slidably arranged on the inner wall of the upper left frame and the upper right frame, which can quickly clamp and move multiple aerosol cans produced and coded to the upper right frame for rapid packing operation. The auxiliary packing structure slides up and down in the inner wall of the upper right frame of the assembly line frame. The second electric slide rail arranged in the inner wall of the upper right frame drives the second electric slide to adjust the position up and down, thereby driving the fixed frame to adjust the position up and down. At the same time, when assisting packing, the servo motor can drive the rotating shaft and the baffle to rotate, and the sealing hinge of the packaging box below the auxiliary packing structure can be opened. The gas tank clamping structure can avoid the situation that the edge of the gas tank is blocked by the sealing hinge during packing operation, effectively improving the packing efficiency of the gas tank.
[0008] As a further description of the above technical solution: the gas tank clamping structure comprises a mounting plate, a first electric sliding rail, a first electric sliding seat, a first fixed plate, a second fixed plate and a third fixed plate, the mounting plate is installed on the inner wall of the assembly line frame, the mounting plate is provided in two, the two mounting plates are symmetrically installed on the two sides of the inner wall of the assembly line frame, the first electric sliding rail is installed on the outer wall of the mounting plate, the first electric sliding seat is installed on the outer wall of the first electric sliding rail, the first fixed plate is fixedly connected to the outer wall of the first electric sliding seat, the second fixed plate is arranged below the first fixed plate, a first cylinder is installed on the upper surface of the first fixed plate, the first cylinder is provided in two, the telescopic end of the two first cylinders is fixedly connected to the upper surface of the second fixed plate, the third fixed plate is arranged below the second fixed plate, a second cylinder is installed on the upper surface of the second fixed plate, the second cylinder is provided in two, the telescopic end of the two second cylinders is fixedly connected to the upper surface of the third fixed plate, a plurality of clamping jaws are rotatably connected inside the third fixed plate.
[0009] By adopting the above technical scheme, the mounting plate facilitates the installation of the first electric sliding rail on the assembly line frame, the first electric sliding rail facilitates the left and right side position adjustment of the first electric sliding seat, the first electric sliding seat facilitates the installation and fixation of the first fixed plate, the first fixed plate facilitates the installation of the first cylinder, the first cylinder facilitates the up and down position adjustment of the second fixed plate, the second fixed plate facilitates the installation of the second cylinder, and simultaneously facilitates the up and down position adjustment of the third fixed plate, and the clamping jaws facilitate the simultaneous clamping of multiple aerosol cans for position movement.
[0010] As a further description of the above technical solution: the lower surface of the second fixed plate is fixedly connected with a plurality of fixed rods, the plurality of fixed rods are slidingly connected inside the third fixed plate, the lower surface of the plurality of fixed rods is fixedly connected with a plurality of protrusions, the plurality of protrusions are respectively slidingly connected to the inner walls of the plurality of clamping jaws, and the lower inner walls of the plurality of clamping jaws are fixedly connected with anti-skid pads.
[0011] By adopting the above technical scheme, the fixed rods arranged below the second fixed plate can drive the protrusions at the ends of the fixed plates to move up and down in the inner walls of the clamping jaws when the second fixed plate moves up and down, when the protrusions are driven to move up, the clamping jaws are opened due to the fact that the outer diameter of the protrusions is greater than the inner diameter of the upper side of the clamping jaws, and when the protrusions are driven to move down, the clamping jaws are automatically closed under the action of gravity due to the fact that the outer diameter of the protrusions is smaller than the inner diameter of the lower side of the clamping jaws, and the anti-skid pads arranged in the inner walls of the clamping jaws can prevent the aerosol cans from slipping off when the clamping jaws clamp the aerosol cans.
[0012] Further as a further description of the above technical solution: the upper surface of the third fixed plate is fixedly connected with a second limiting rod at each corner, the outer wall of the upper end of the multiple pairs of second limiting rods is slidably connected with the inside of the second fixed plate, the upper surface of the second fixed plate is fixedly connected with a first limiting rod at each corner, and the multiple first limiting rods are slidably connected inside the first fixed plate.
[0013] By adopting the above technical solution, the second limiting rod can limit the sliding of the third fixed plate inside the second fixed plate when the third fixed plate moves up and down, and the first limiting rod can limit the sliding of the second fixed plate inside the first fixed plate when the second fixed plate moves up and down.
[0014] Further as a further description of the above technical solution: the inside of the first fixed plate is provided with a through groove, and the second cylinder and the second limiting rod both penetrate through the through groove.
[0015] By adopting the above technical solution, the through groove provided on the first fixed plate can accommodate the second cylinder and the second limiting rod on the second fixed plate when the second fixed plate moves up.
[0016] Further as a further description of the above technical solution: the left side outer wall of the assembly line frame is provided with a control panel, and the lower end surface of the assembly line frame is fixedly connected with multiple supporting feet.
[0017] By adopting the above technical solution, the control panel is provided to facilitate the operator to issue control instructions through the control panel to control the first cylinder to drive the gas tank clamping structure to move downward, and the control panel can also be used to issue control instructions to control the second cylinder to drive the clamping jaw to clamp or open, the control panel can also be used to issue control instructions to control the first electric sliding seat to drive the gas tank clamping structure to adjust the left and right positions, the control panel can also be used to issue control instructions to control the second electric sliding seat to drive the auxiliary boxing structure to adjust the up and down positions, and the control panel can also be used to issue control instructions to control the servo motor to drive the rotating shaft and the baffle to rotate. The supporting feet play a supporting role for the whole device.
[0018] Further as a further description of the above technical solution: the inside of the assembly line frame is fixedly connected with a first supporting plate, the inside of the assembly line frame is fixedly connected with a second supporting plate, the second supporting plate is located below the auxiliary boxing structure, and the first supporting plate is located to the left of the second supporting plate.
[0019] Through adoption of the above technical scheme, the first support plate is arranged, and the aerosol can is conveyed onto the first support plate by the corresponding conveying equipment after production of the aerosol can is completed, so that the aerosol can is clamped by the aerosol can clamping structure conveniently; the second support plate is arranged, and the packaging box of the aerosol can is conveyed onto the second support plate by the corresponding conveying equipment, so that the sealing hinge of the packaging box is opened by the auxiliary boxing structure conveniently, and the aerosol can is clamped by the aerosol can clamping structure and placed into the packaging box.
[0020] Through the above technical scheme, the aerosol can boxing equipment has at least the following beneficial effects:
[0021] Compared with the prior art, the aerosol can boxing equipment is provided with the corresponding auxiliary boxing structure and the aerosol can clamping structure, and before the aerosol can is boxed, the sealing hinge at the upper end of the packaging box is opened by the auxiliary boxing structure, so that when the aerosol can clamping structure clamps and boxes the dozen aerosol cans, the aerosol cans on the outer side are not blocked by the sealing hinge at the upper end of the packaging box, and the actual boxing efficiency is not affected. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 The utility model provides a kind of aerosol can boxing equipment's overall axonometric view;
[0023] Figure 2 The utility model provides a kind of aerosol can boxing equipment's auxiliary boxing structure bottom view axonometric view;
[0024] Figure 3 The utility model provides a kind of aerosol can boxing equipment's aerosol can clamping structure axonometric view;
[0025] Figure 4 The utility model provides a kind of aerosol can boxing equipment's aerosol can clamping structure bottom view axonometric view;
[0026] Figure 5 For Figure 4 Enlarged schematic view of place A.
[0027] LEGEND:
[0028] 1, pipeline frame; 2, first support plate; 3, control panel; 4, support foot; 5, gas tank clamping structure; 501, mounting plate; 502, first electric sliding rail; 503, first electric sliding seat; 504, first air cylinder; 505, first limiting rod; 506, through groove; 507, first fixed plate; 508, second air cylinder; 509, second limiting rod; 510, second fixed plate; 511, third fixed plate; 512, fixed rod; 513, clamping jaw; 514, protrusion; 515, non-slip pad; 6, auxiliary boxing structure; 61, second electric sliding rail; 62, second electric sliding seat; 63, fixed frame; 64, servo motor; 65, rotating shaft; 66, baffle; 67, mounting bracket; 7, second support plate. DETAILED DESCRIPTION
[0029] REFERENCE Figures 1-5 The utility model provides a kind of aerosol tank packing equipment provided by the utility model: including pipeline frame 1, gas tank clamping structure 5 and auxiliary boxing structure 6, gas tank clamping structure 5 is installed in the inside of pipeline frame 1, auxiliary boxing structure 6 is installed in the inside of pipeline frame 1, auxiliary boxing structure 6 includes second electric sliding rail 61, second electric sliding seat 62 and fixed frame 63, second electric sliding rail 61 is installed in the right upper inner wall of pipeline frame 1, second electric sliding rail 61 is set to four, four second electric sliding rails 61 are provided with second electric sliding seat 62 on outer wall, the outer wall of second electric sliding seat 62 is fixedly connected with fixed frame 63, the lower surface of fixed frame 63 is fixedly connected with mounting bracket 67, mounting bracket 67 is set to four, four mounting brackets 67 are fixedly connected on the lower surface four sides of fixed frame 63 respectively, rotating shaft 65 is rotatably connected in the inside of four mounting brackets 67, the outer wall of four rotating shafts 65 is fixedly connected with baffle 66, one side outer wall of four mounting brackets 67 is equipped with servo motor 64, the output end of four servo motors 64 and the outer wall one side of rotating shaft 65 are fixedly connected. Pipeline frame 1 is divided into left upper frame, right upper frame and lower support frame, gas tank clamping structure 5 is slidably arranged on the inner wall of left upper frame and right upper frame, can be quickly clamped and moved to right upper frame with multiple aerosol tanks that are produced and coded, and rapid boxing operation is carried out, auxiliary boxing structure 6 is slidably arranged on the inner wall of the right upper frame of pipeline frame 1, is driven second electric sliding seat 62 to carry out up-down position adjustment by being arranged in the second electric sliding rail 61 of right upper frame inner wall, and then fixed frame 63 is driven to carry out up-down position adjustment, and simultaneously, when auxiliary boxing, servo motor 64 is controlled to drive rotating shaft 65 and baffle 66 to rotate, the closing hinge of packing box under auxiliary boxing structure 6 is opened, the situation that the aerosol tank at edge is blocked by closing hinge in the boxing operation of gas tank clamping structure 5 can be avoided, and the boxing efficiency of aerosol tank is effectively improved.
[0030] The gas tank clamping structure 5 comprises a mounting plate 501, a first electric sliding rail 502, a first electric sliding seat 503, a first fixed plate 507, a second fixed plate 510 and a third fixed plate 511, the mounting plate 501 is mounted on the inner wall of the assembly line frame 1, the mounting plate 501 is provided in two, the two mounting plates 501 are symmetrically mounted on the two sides of the inner wall of the assembly line frame 1, the first electric sliding rail 502 is mounted on the outer wall of the mounting plate 501, the first electric sliding seat 503 is mounted on the outer wall of the first electric sliding rail 502, the first fixed plate 507 is fixedly connected to the outer wall of the first electric sliding seat 503, the second fixed plate 510 is arranged below the first fixed plate 507, the upper surface of the first fixed plate 507 is provided with a first cylinder 504, the first cylinder 504 is provided in two, the telescopic ends of the two first cylinders 504 are fixedly connected to the upper surface of the second fixed plate 510, the third fixed plate 511 is arranged below the second fixed plate 510, the upper surface of the second fixed plate 510 is provided with a second cylinder 508, the second cylinder 508 is provided in two, the telescopic ends of the two second cylinders 508 are fixedly connected to the upper surface of the third fixed plate 511, a plurality of pairs of clamping jaws 513 are rotatably connected in the third fixed plate 511. The mounting plate 501 facilitates the installation of the first electric sliding rail 502 on the assembly line frame 1, the first electric sliding rail 502 facilitates the left and right side position adjustment of the first electric sliding seat 503, the first electric sliding seat 503 facilitates the installation and fixation of the first fixed plate 507, the first fixed plate 507 facilitates the installation of the first cylinder 504, the first cylinder 504 facilitates the up and down position adjustment of the second fixed plate 510, the second fixed plate 510 facilitates the installation of the second cylinder 508, and simultaneously facilitates the up and down position adjustment of the third fixed plate 511, and the clamping jaws 513 facilitate the simultaneous clamping of a plurality of aerosol cans for position movement.
[0031] A plurality of fixed rods 512 are fixedly connected to the lower surface of the second fixed plate 510, the plurality of fixed rods 512 are slidably connected in the third fixed plate 511, a plurality of protrusions 514 are fixedly connected to the lower surface of the plurality of fixed rods 512, the plurality of protrusions 514 are slidably connected in the inner wall of the plurality of pairs of clamping jaws 513, and anti-skid pads 515 are fixedly connected to the lower inner wall of the plurality of pairs of clamping jaws 513. The fixed rods 512 arranged below the second fixed plate 510 can drive the protrusions 514 at the end of the fixed plate to move up and down in the inner wall of the clamping jaws 513 when the second fixed plate 510 moves up and down, when the protrusions 514 move up, the outer diameter of the protrusions 514 is greater than the inner diameter of the upper side of the clamping jaws 513, so that the clamping jaws 513 complete the opening action, when the protrusions 514 move down, the outer diameter of the protrusions 514 is smaller than the inner diameter of the lower side of the clamping jaws 513, so that the clamping jaws 513 automatically close under the action of gravity, and the anti-skid pads 515 arranged in the inner wall of the clamping jaws 513 can prevent the aerosol cans from slipping off when the clamping jaws 513 clamp the aerosol cans.
[0032] The upper surface of the third fixed plate 511 is fixedly connected with a second limiting rod 509 at each corner, the outer wall of the upper end of each pair of second limiting rods 509 is slidably connected with the second fixed plate 510, the upper surface of the second fixed plate 510 is fixedly connected with a first limiting rod 505 at each corner, and the first limiting rod 505 is slidably connected in the first fixed plate 507. The second limiting rod 509 can limit sliding in the second fixed plate 510 when the third fixed plate 511 moves up and down, and the first limiting rod 505 can limit sliding in the first fixed plate 507 when the second fixed plate 510 moves up and down.
[0033] The first fixed plate 507 is provided with a through groove 506, and the second cylinder 508 and the second limiting rod 509 penetrate through the through groove 506. The through groove 506 in the first fixed plate 507 can accommodate the second cylinder 508 and the second limiting rod 509 on the second fixed plate 510 when the second fixed plate 510 is adjusted upward.
[0034] A control panel 3 is installed on one side of the outer wall of the left side of the assembly line frame 1, and a plurality of supporting legs 4 are fixedly connected to the lower end surface of the assembly line frame 1. The control panel 3 is arranged to facilitate the operator to issue control instructions through the control panel 3 to control the first cylinder 504 to drive the gas tank clamping structure 5 to move downward, and to control the second cylinder 508 to drive the clamping jaw 513 to clamp or open through the control panel 3, and to control the first electric sliding seat 503 to drive the gas tank clamping structure 5 to adjust the left and right positions through the control panel 3, to control the second electric sliding seat 62 to drive the auxiliary boxing structure 6 to adjust the up and down positions through the control panel 3, to control the servo motor 64 to drive the shaft 65 and the baffle 66 to rotate through the control panel 3, and the supporting legs 4 are arranged to support the entire device.
[0035] A first supporting plate 2 is fixedly connected in the assembly line frame 1, a second supporting plate 7 is fixedly connected in the assembly line frame 1, the second supporting plate 7 is located below the auxiliary boxing structure 6, and the first supporting plate 2 is located on the left side of the second supporting plate 7. The first supporting plate 2 is arranged to facilitate the gas tank clamping structure 5 to clamp the aerosol tank after the aerosol tank is produced and conveyed to the first supporting plate 2 through a corresponding conveying device, the second supporting plate 7 is arranged to facilitate the packaging box of the aerosol tank to be conveyed to the second supporting plate 7 through a corresponding conveying device, and the aerosol tank is conveniently assisted to open the box hinge by the auxiliary boxing structure 6, and the aerosol tank is conveniently clamped into the packaging box by the gas tank clamping structure 5.
[0036] Working principle: When the current equipment is working, after the aerosol can is produced and conveyed to the first support plate 2 by the conveying equipment, and after the packaging box is conveyed to the second support plate 7 by the conveying equipment, the operator controls the second electric slide 62 through the control panel 3 to drive the auxiliary packing structure 6 to move down. Then, the operator controls the servo motor 64 through the control panel 3 to drive the rotating shaft 65 and the baffle 66 to rotate downward, so that the four baffles 66 open the sealing hinge at the top of the packaging box.
[0037] Next, the operator controls the first cylinder 504 to push out via the control panel 3, causing the height of the canister clamping structure 5 to decrease until the gripper 513 is at the height of the aerosol can. Then, the operator controls the second cylinder 508 via the control panel 3 to work, causing the third fixing plate 511 to rise. Since the protrusion 514 is fixedly connected to the second fixing plate 510 via the fixing rod 512, the protrusion 514 moves downward relative to the gripper 513, causing the gripper 513 to automatically close under gravity, clamping the aerosol can. After the clamping operation of the aerosol can is completed, the operator controls the first cylinder 504 via the control panel 3 to raise the height of the canister clamping structure 5, so that the height of the lower end of the aerosol can is higher than the height of the current auxiliary packing structure 6.
[0038] Next, the operator controls the first electric slide 503 via the control panel 3 to move the gas can clamping structure 5 to directly above the auxiliary packing structure 6. Then, the operator controls the first cylinder 504 via the control panel 3 to push out, so that the height of the gas can clamping structure 5 drops until the bottom of the aerosol can contacts the bottom of the packaging box. Then, the operator controls the second cylinder 508 via the control panel 3 to push out, so that the height of the third fixing plate 511 drops, so that the protrusion 514 on the inner wall of the gripper 513 rises relative to the gripper 513, opening the gripper 513 and releasing the aerosol can, thus completing the packing of the aerosol can.
[0039] Next, the first cylinder 504 is controlled by the control panel 3 to raise the height of the gas cylinder clamping structure 5. Then, the first electric slide 503 is controlled by the control panel 3 to reset the gas cylinder clamping structure 5. After the gas cylinder clamping structure 5 is reset, the operator controls the servo motor 64 to drive the rotating shaft 65 and the baffle 66 to rotate upward through the control panel 3. The second electric slide 62 is controlled by the control panel 3 to move the auxiliary packing structure 6 upward, thus completing the reset of the auxiliary packing structure 6.
[0040] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. An aerosol canning apparatus comprising a flow line frame (1), a can gripper arrangement (5) and an auxiliary canning arrangement (6), characterised in that: The gas tank clamping structure (5) is installed inside the flow line frame (1), and the auxiliary boxing structure (6) is installed inside the flow line frame (1); The auxiliary boxing structure (6) comprises a second electric sliding rail (61), a second electric sliding seat (62) and a fixed frame (63), the second electric sliding rail (61) is installed on the upper right inner wall of the flow line frame (1), the second electric sliding rail (61) is provided with four, the outer wall of the four second electric sliding rails (61) is provided with the second electric sliding seat (62), the outer wall of the second electric sliding seat (62) is fixedly connected with the fixed frame (63), the lower surface of the fixed frame (63) is fixedly connected with the mounting bracket (67), the mounting bracket (67) is provided with four, the four mounting brackets (67) are fixedly connected on the lower surface of the fixed frame (63) respectively, the inner part of the four mounting brackets (67) is rotatably connected with the rotating shaft (65), the outer wall of the four rotating shafts (65) is fixedly connected with the baffle (66), one side of the outer wall of the four mounting brackets (67) is provided with the servo motor (64), and the output end of the four servo motors (64) is fixedly connected with one side of the outer wall of the rotating shaft (65).
2. An aerosol container packaging apparatus according to claim 1, wherein: The gas tank clamping structure (5) comprises a mounting plate (501), a first electric sliding rail (502), a first electric sliding seat (503), a first fixed plate (507), a second fixed plate (510) and a third fixed plate (511), the mounting plate (501) is installed on the inner wall of the flow line frame (1), the mounting plate (501) is provided with two, the two mounting plates (501) are symmetrically installed on the inner wall of the flow line frame (1), the first electric sliding rail (502) is installed on the outer wall of the mounting plate (501), the first electric sliding seat (503) is installed on the outer wall of the first electric sliding rail (502), the first fixed plate (507) is fixedly connected on the outer wall of the first electric sliding seat (503), the second fixed plate (510) is arranged below the first fixed plate (507), the upper surface of the first fixed plate (507) is provided with the first cylinder (504), the first cylinder (504) is provided with two, the telescopic end of the two first cylinders (504) is fixedly connected with the upper surface of the second fixed plate (510), the third fixed plate (511) is arranged below the second fixed plate (510), the upper surface of the second fixed plate (510) is provided with the second cylinder (508), the second cylinder (508) is provided with two, the telescopic end of the two second cylinders (508) is fixedly connected with the upper surface of the third fixed plate (511), and a plurality of pairs of clamping jaws (513) are rotatably connected in the third fixed plate (511).
3. An aerosol container packaging apparatus according to claim 2, wherein: The lower surface of the second fixed plate (510) is fixedly connected with a plurality of fixed rods (512), the plurality of fixed rods (512) are slidingly connected in the third fixed plate (511), the lower surface of the plurality of fixed rods (512) is fixedly connected with a plurality of protrusions (514), the plurality of protrusions (514) are slidingly connected in the inner walls of a plurality of clamping jaws (513) respectively, and the inner walls of the lower sides of the plurality of clamping jaws (513) are fixedly connected with anti-skid pads (515).
4. An aerosol container packaging apparatus according to claim 3, wherein: The upper surface of the third fixed plate (511) is fixedly connected with second limiting rods (509) at four corners, the upper ends of the second limiting rods (509) are slidingly connected with the inner part of the second fixed plate (510), the upper surface of the second fixed plate (510) is fixedly connected with first limiting rods (505) at four corners, and the first limiting rods (505) are slidingly connected in the inner part of the first fixed plate (507).
5. An aerosol container packaging apparatus according to claim 4, wherein: The inner part of the first fixed plate (507) is provided with a through groove (506), and the second cylinder (508) and the second limiting rod (509) penetrate through the through groove (506).
6. An aerosol package apparatus according to claim 1, wherein: A control panel (3) is mounted on one side of the outer wall of the left side of the flow line frame (1), and a plurality of supporting legs (4) are fixedly connected to the lower end surface of the flow line frame (1).
7. An aerosol package apparatus as defined in claim 1, wherein: A first supporting plate (2) is fixedly connected in the inner part of the flow line frame (1), a second supporting plate (7) is fixedly connected in the inner part of the flow line frame (1), the second supporting plate (7) is located below the auxiliary boxing structure (6), and the first supporting plate (2) is located on the left side of the second supporting plate (7).
Citation Information
Patent Citations
Automatic packing equipment for aerosol cans
CN220996971U