Power supply shell shaping and filling device

By designing an elastic feeding and vibration dropping structure for the power supply housing molding and filling device, the problem of inconvenient material cleaning in injection molding equipment was solved, automated feeding was achieved, and production efficiency and product quality were improved.

CN223657493UActive Publication Date: 2025-12-12SHANPU TECH (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202520257884.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-12
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing injection molding equipment is inconvenient to unload after the injection molding process and requires manual cleaning of residual material, which affects production efficiency and product quality.

Method used

A power supply shell molding and filling device was designed, which adopts an elastic feeding structure and a vibration dropping structure. The rotating ring is driven by a rotary motor to vibrate and drop the excess material, and the automatic feeding is achieved by a hydraulic cylinder and a feeding rod.

Benefits of technology

The automated waste material removal process improves production efficiency, reduces manual labor intensity, and ensures product quality stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223657493U_ABST
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Abstract

The utility model relates to the field of injection molding devices, in particular to a power supply shell shaping and filling device, which comprises an injection molding block, and further comprises fixed discs and a blanking component, a first fixed ring is arranged below the injection molding block, a rotating motor is fixedly connected to the center of the first fixed ring, and the fixed discs which are uniformly distributed in a circular shape are fixedly connected to the upper end of an output shaft of the rotating motor. After the rotating motor is started, the rotating ring is driven to rotate through sliding elastic connection of the first fixing block and the second fixing block, the rotating ring shakes through rotation of the protruding block on the first fixing ring in the groove in the second fixing ring, and remaining materials on an injection molding object shake and fall off from the position between the first check blocks; in the operation process, stable connection is provided for a hollow connecting frame above through a plurality of first fixing blocks and second fixing blocks, a limiting rod slides in a sleeve and is matched with the second fixing blocks, and it can be ensured that a rotating ring can shake up and down in a small range in the rotating process of the device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to injection molding device field especially relates to power shell plastic filling device, including injection molding block. BACKGROUND

[0002] Injection molding device, also known as injection molding machine or injection molding machine, is an important plastic processing equipment, it is mainly used to melt the melt of thermoplastic or thermosetting plastic into the cavity of mould, and under the closed state of mould, after cooling and solidification, finally get the plastic product consistent with the shape of mould cavity.

[0003] The current injection molding device relies on a mechanical arm to pick up the molded product after completing the injection molding process. This step requires the mechanical arm to have a large enough operating space to perform the material picking action. This not only limits the flexibility of the production environment layout, but also may reduce the overall production efficiency due to the movement and waiting time of the mechanical arm. Moreover, the surface of the injection molded product often has excess material (i.e. excess material) that needs to be manually cleaned by workers. This not only increases the intensity of manual labor, but also may result in incomplete cleaning or product damage due to human factors, further affecting production efficiency and product quality.

[0004] Therefore, the power shell plastic filling device is proposed, which has a flexible discharging structure and a vibration dropping structure, solving the problems of inconvenient discharging and manual removal of excess injection material of existing injection molding devices. SUMMARY

[0005] In order to overcome the problems of inconvenient discharging and manual removal of excess injection material of existing injection molding devices, the power shell plastic filling device is proposed.

[0006] The technical solution of the utility model is as follows: the power shell plastic filling device includes an injection molding block, a fixed disc and a discharging assembly. A first fixed ring is arranged below the injection molding block. A rotating motor is fixedly connected at the center of the first fixed ring. A fixed disc is fixedly connected to the upper end of the output shaft of the rotating motor and is uniformly distributed in a circular shape. A first fixed block is fixedly connected to the upper end of the fixed disc. A limiting rod is fixedly connected to the upper end of the first fixed block. A sleeve is sleeved on the outer wall of the limiting rod. The outer wall of the limiting rod is not attached to the inner wall of the sleeve. A second fixed block is fixedly connected to the upper end of the sleeve. A second spring is fixedly connected to the end of the second fixed block and the first fixed block. A hollow connecting frame is fixedly connected to the upper end of the uniformly distributed second fixed blocks. A rotating ring is fixedly connected to the outer wall of the hollow connecting frame. A second fixed ring is fixedly connected to the lower end of the rotating ring. A plurality of grooves are arranged on the lower end of the second fixed ring. A plurality of protrusions are fixedly connected to the upper end of the first fixed ring. A first stop block is fixedly connected to the center of the upper end of the rotating ring. The table surface gradually rises at the end of the rotating ring away from the axis of the rotating ring. A plurality of second stop blocks are fixedly connected to the upper end of the rotating ring.

[0007] Preferably, the first connecting rods are fixed at the four corners of the left end of the injection molding block, the outer walls of the four first connecting rods are fixed with a first fixing plate, the rear ends of the four first connecting rods are fixed with a hydraulic cylinder, the telescopic rod of the hydraulic cylinder is fixed with a second fixing plate at the right end, the right end of the second fixing plate is fixed with a second connecting rod, and the second connecting rod is fixed with a third fixing plate through the first fixing plate.

[0008] Preferably, the right end of the third fixing plate is fixed with four third connecting rods, the right ends of the four third connecting rods are fixed with a fourth fixing plate, and the right end of the fourth fixing plate is fixed with an injection molding positive mold.

[0009] Preferably, the left end of the injection molding block is provided with an injection molding negative mold groove, the injection molding negative mold groove is matched with the injection molding positive mold, the front and rear ends of the injection molding block are throughly provided with a first cooling groove, the front and rear ends of the injection molding block are fixed with a first conveying end, the first conveying end and the first cooling groove are through each other, the front and rear ends of the integrated structure formed by the injection molding positive mold and the fourth fixing plate are throughly provided with a second cooling groove, the front and rear ends of the fourth fixing plate are fixed with a second conveying end, and the second conveying end and the second cooling groove are through each other.

[0010] Preferably, the right end of the third fixing plate is fixed with four third connecting rods, the right ends of the four third connecting rods are fixed with a fourth fixing plate, and the right end of the fourth fixing plate is fixed with an injection molding positive mold.

[0011] Preferably, the right end of the injection molding block is provided with an injection port.

[0012] Preferably, the upper end of the fixed disc is fixed with a fixed column, and the fixed column extends through the center of the hollow connecting frame to the upper end of the hollow connecting frame.

[0013] The utility model discloses a beneficial effect: after starting the rotary motor, through the sliding elastic connection of first fixed block and second fixed block, thereby drive rotating ring to rotate, through the convex block on the first fixed ring rotates in the recess of second fixed ring, thereby make rotating ring produce dither, and the excess material on the injection molding article is shaken and falls off between the first stopper, and in the operation process, through a plurality of first fixed block and second fixed block provide the stable connection of upper hollow connecting frame, when the rotating ring produces the vibration, through the sliding of limiting rod in the sleeve, and the collocation second fixed block can ensure that the device in the process of rotating, make rotating ring can carry out small -range up and down dither. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 The utility model discloses a beneficial effect: after starting the rotary motor, through the sliding elastic connection of first fixed block and second fixed block, thereby drive rotating ring to rotate, through the convex block on the first fixed ring rotates in the recess of second fixed ring, thereby make rotating ring produce dither, and the excess material on the injection molding article is shaken and falls off between the first stopper, and in the operation process, through a plurality of first fixed block and second fixed block provide the stable connection of upper hollow connecting frame, when the rotating ring produces the vibration, through the sliding of limiting rod in the sleeve, and the collocation second fixed block can ensure that the device in the process of rotating, make rotating ring can carry out small -range up and down dither.

[0015] Figure 2 The utility model discloses a power shell plastic filling device's section solid structure schematic diagram is shown.

[0016] Figure 3 The utility model discloses a power shell plastic filling device's reset spring and injection positive mould's solid structure schematic diagram is shown.

[0017] Figure 4 The utility model discloses a power shell plastic filling device's vibration blanking assembly's solid split structure schematic diagram is shown.

[0018] Figure 5 The utility model discloses a power shell plastic filling device's fixed disc's solid structure schematic diagram is shown.

[0019] The signs in the drawing are: 1, injection block;101, rotary motor;102, fixed disc;103, first fixed block;104, second fixed block;105, limit rod;106, sleeve;107, second spring;2, first connecting rod;3, first fixed plate;4, second fixed plate;5, second connecting rod;6, third fixed plate;7, third connecting rod;8, fourth fixed plate;9, injection positive mould;10, fifth fixed plate;11, reset spring;12, blanking rod;13, first cooling tank;14, first conveying end;15, injection port;16, second cooling tank;17, second conveying end;18, push rod;19, injection negative mould tank;20, first fixed ring;21, protruding block;22, rotating ring;23, first stopper;24, hollow connecting frame;25, second stopper;26, fixed column;27, second fixed ring;28, recess;29, hydraulic cylinder. Specific implementation

[0020] The utility model will be further explained below in connection with the drawings and examples.

[0021] Please refer to Figures 1-5The utility model provides a kind of embodiment: power shell plastic filling device, including injection block 1, still including fixed disc 102 and blanking assembly, the lower of injection block 1 is provided with first fixed ring 20, the center of first fixed ring 20 is fixedly connected with rotating electrical machine 101, the output shaft upper end of rotating electrical machine 101 is fixedly connected with the fixed disc 102 that is circularly and evenly distributed, the upper end of fixed disc 102 is fixedly connected with first fixed block 103, the upper end of first fixed block 103 is fixedly connected with limit rod 105, the outer wall of limit rod 105 is equipped with sleeve 106, the outer wall of limit rod 105 does not fit with the inner wall of sleeve 106, the upper end of sleeve 106 is fixedly connected with second fixed block 104, second fixed block 104 and first fixed block 103 mutually close one end is fixedly connected with second spring 107, the upper end of evenly distributed second fixed block 104 is commonly fixedly connected with hollow connecting frame 24, the outer wall of hollow connecting frame 24 is fixedly connected with rotating ring 22, the lower end of rotating ring 22 is fixedly connected with second fixed ring 27, the lower end of second fixed ring 27 is equipped with evenly distributed recess 28, the upper end of first fixed ring 20 is fixedly connected with evenly distributed boss 21, the upper end center of rotating ring 22 is fixedly connected with first stop block 23, the end mesa of rotating ring 22 away from rotating ring 22 axle center gradually rises, the upper end of rotating ring 22 is fixedly connected with evenly distributed second stop block 25, after opening rotating electrical machine 101, by the sliding elastic connection of first fixed block 103 and second fixed block 104, to drive rotating ring 22 to rotate, by the boss 21 on first fixed ring 20 in the recess 28 on second fixed ring 27 rotates, to make rotating ring 22 produce jitters, the excess material on injection molding is vibrated and dropped from between first stop block 23, in the process of operation, by the stable connection of multiple first fixed block 103 and second fixed block 104 to hollow connecting frame 24 above, when rotating ring 22 produces vibration, by the sliding of limit rod 105 in sleeve 106, collocation second fixed block 104, can ensure that the device in the process of rotation, so that rotating ring 22 can be small range of up and down jitters.

[0022] Please refer to Figure 1 and Figure 3In this embodiment, the left end of the injection molding block 1 is fixed with four first connecting rods 2, the outer walls of the four first connecting rods 2 are collectively fixed with a first fixed plate 3, the rear ends of the four first connecting rods 2 are fixed with a hydraulic cylinder 29, the telescopic rod of the hydraulic cylinder 29 is fixed with a second fixed plate 4 at the right end, the right end of the second fixed plate 4 is fixed with a second connecting rod 5, the second connecting rod 5 is fixed with a third fixed plate 6 through the first fixed plate 3, the right end of the third fixed plate 6 is fixed with four third connecting rods 7, the right ends of the four third connecting rods 7 are collectively fixed with a fourth fixed plate 8, the right end of the fourth fixed plate 8 is fixed with an injection positive mold 9, the right end of the third fixed plate 6 is abutted with a fifth fixed plate 10, the ends of the fifth fixed plate 10 and the fourth fixed plate 8 close to each other are connected with a return spring 11, the right end of the return spring 11 is fixed with a blanking rod 12, the blanking rod 12 is slidingly limited on the fourth fixed plate 8, the left end of the fourth fixed plate 8 is fixed with a push rod 18, when the third fixed plate 6 displaces to the left, it will drive the components on the right of the third fixed plate 6 to move to the left as a whole, when the left end of the push rod 18 contacts the first fixed plate 3, the push rod 18 moves to the right, thereby pushing the injection molding material at the right end of the fourth fixed plate 8 through the blanking rod 12.

[0023] Please refer to Figure 2 In this embodiment, the left end of the injection molding block 1 is provided with an injection negative mold groove 19, the injection negative mold groove 19 is matched with the injection positive mold 9, the front and rear ends of the injection molding block 1 are throughly provided with a first cooling groove 13, the front and rear ends of the injection molding block 1 are fixed with a first conveying end 14, the first conveying end 14 and the first cooling groove 13 are mutually through, the front and rear ends of the integrated structure formed by the injection positive mold 9 and the fourth fixed plate 8 are throughly provided with a second cooling groove 16, the front and rear ends of the fourth fixed plate 8 are fixed with a second conveying end 17, the second conveying end 17 and the second cooling groove 16 are mutually through, the cooling liquid is respectively injected into the first cooling groove 13 and the second cooling groove 16 through the first conveying end 14 and the second conveying end 17, thereby cooling the injection molding material at the injection positive mold 9 and the injection negative mold groove 19, thereby accelerating the molding of the injection molding material, the right end of the injection molding block 1 is throughly provided with an injection port 15.

[0024] Please refer to Figure 4 The upper end of the fixed disc 102 is fixed with a fixed column 26, the fixed column 26 extends through the center of the hollow connecting frame 24 to the upper end of the hollow connecting frame 24, preventing the limit rod 105 from being broken during work, and limiting the hollow connecting frame 24 after damage through the fixed column 26.

[0025] Through the raw material is injected into the injection port 15, the power shell is injection molded between the injection negative mold groove 19 and the injection positive mold 9, then through the first delivery end 14 and the second delivery end 17 respectively into the first cooling groove 13 and the second cooling groove 16, so that the injection positive mold 9 and the injection negative mold groove 19 of the injection material are cooled, then through the opening of the hydraulic cylinder 29 telescopic rod drive the second fixed plate 4 to the left end moves, then drive the second connecting rod 5 on the first fixed plate 3 to the left sliding, so that the left end of the fourth fixed plate 8 to the right end of the first fixed plate 3 extrusion, so that the blanking rod 12 to the fourth fixed plate 8 on the injection material push out the work, then make the injection material falls on the rotating ring 22, then through the opening of the rotating motor 101, the output shaft of the rotating motor 101 drive fixed disc 102 rotation, so that the first fixed block 103 and the second fixed block 104 sliding elastic connection, so as to drive the rotating ring 22 rotation, through the first fixed ring 20 on the convex block 21 in the second fixed ring 27 on the groove 28 rotation, so that the rotating ring 22 produces vibration, the excess material on the injection material from the first block 23 between vibration drop, in the process of running through a plurality of first fixed block 103 and the second fixed block 104 to provide stable connection for the hollow connecting frame 24 above, when the rotating ring 22 vibration, through the limiting rod 105 in the sleeve 106 sliding, with the second fixed block 104, can ensure that the device in the process of rotation, the rotating ring 22 can be small range of up and down vibration.

[0026] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the purpose of the utility model.

Claims

1. A power supply housing molding and filling device, comprising an injection molding block (1), characterized in that: It also includes a fixed plate (102) and a feeding assembly. A first fixing ring (20) is provided below the injection block (1). A rotary motor (101) is fixedly connected to the center of the first fixing ring (20). A fixed plate (102) with a circular and uniform distribution is fixedly connected to the upper end of the output shaft of the rotary motor (101). A first fixing block (103) is fixedly connected to the upper end of the fixed plate (102). A limit rod (105) is fixedly connected to the upper end of the first fixing block (103). A sleeve (106) is sleeved on the outer wall of the limit rod (105). The outer wall of the limit rod (105) does not fit with the inner wall of the sleeve (106). A second fixing block (104) is fixedly connected to the upper end of the sleeve (106). The second fixing block (104) and the first fixing block (105) are connected to each other. A second spring (107) is fixed to one end of the blocks (103) that are close to each other. A hollow connecting frame (24) is fixed to the upper end of the evenly distributed second fixed blocks (104). A rotating ring (22) is fixed to the outer wall of the hollow connecting frame (24). A second fixed ring (27) is fixed to the lower end of the rotating ring (22). A groove (28) is evenly distributed at the lower end of the second fixed ring (27). A protrusion (21) is evenly distributed at the upper end of the first fixed ring (20). A first stop block (23) is fixed to the center of the upper end of the rotating ring (22). The platform of the rotating ring (22) gradually rises at one end away from the axis of the rotating ring (22). A second stop block (25) is evenly distributed at the upper end of the rotating ring (22).

2. The power supply housing molding and filling device according to claim 1, characterized in that: The four corners of the left end of the injection block (1) are fixed with first connecting rods (2), the outer walls of the four first connecting rods (2) are fixed with a first fixing plate (3), the rear ends of the four first connecting rods (2) are fixed with hydraulic cylinders (29), the right end of the telescopic rod of the hydraulic cylinder (29) is fixed with a second fixing plate (4), the right end of the second fixing plate (4) is fixed with a second connecting rod (5), and the second connecting rod (5) passes through the first fixing plate (3) and is fixed with a third fixing plate (6).

3. The power supply housing molding and filling device according to claim 2, characterized in that: The right end of the third fixing plate (6) is fixed with four third connecting rods (7), the right ends of the four third connecting rods (7) are jointly fixed with a fourth fixing plate (8), and the right end of the fourth fixing plate (8) is fixed with an injection mold (9).

4. The power supply casing molding and filling device according to claim 1, characterized in that: The left end of the injection block (1) is provided with an injection negative mold groove (19), which is compatible with the injection positive mold (9). The front and rear ends of the injection block (1) are provided with a first cooling groove (13). The front and rear ends of the injection block (1) are fixedly connected with a first conveying end (14). The first conveying end (14) and the first cooling groove (13) are interconnected. The front and rear ends of the integral structure formed by the injection positive mold (9) and the fourth fixing plate (8) are provided with a second cooling groove (16). The front and rear ends of the fourth fixing plate (8) are fixedly connected with a second conveying end (17). The second conveying end (17) and the second cooling groove (16) are interconnected.

5. The power supply housing molding and filling device according to claim 2, characterized in that: The right end of the third fixing plate (6) is fitted with a fifth fixing plate (10). The fifth fixing plate (10) and the fourth fixing plate (8) are connected to a return spring (11) at their respective ends. The right end of the return spring (11) is fixed with a feeding rod (12). The feeding rod (12) slides on the fourth fixing plate (8) and is limited. The left end of the fourth fixing plate (8) is fixed with a push rod (18).

6. The power supply housing molding and filling device according to claim 1, characterized in that: An injection port (15) is provided through the right end of the injection block (1).

7. The power supply housing molding and filling device according to claim 1, characterized in that: A fixing post (26) is fixed to the upper end of the fixing plate (102), and the fixing post (26) extends through the center of the hollow connecting frame (24) to the upper end of the hollow connecting frame (24).