Automatic injection molding piece shearing and feeding equipment
By designing an automated injection molding part cutting and feeding device, the automated feeding, clamping, cutting, and unloading of injection molding parts are achieved, solving the problem of connecting injection molding part sprue material with the product, improving production efficiency and reducing labor costs.
Patent Information
- Application Number
- CN202423270056.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing injection molded parts are prone to having sprue material attached to the product after injection molding, resulting in high labor intensity for workers, high production safety hazards, low production efficiency, and increased human resource costs.
An automatic injection molding part cutting and feeding device was designed, including a worktable, a screw feed seat, a clamping frame, a sprue cutter, and a picking robot, etc., to realize automatic feeding, clamping, cutting and picking of injection molding parts. The stability and accuracy are improved by using components such as a rotary motor and a magnetic limit seat.
It achieves full automation of the injection molding process, improves production efficiency, reduces manual operation, reduces human error, reduces material waste through precise cutting, lowers production costs, reduces the labor intensity of workers, and improves the stability of workpiece storage.
Smart Images

Figure CN223720073U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to automatic injection molding piece shearing loading equipment. BACKGROUND
[0002] In recent years, with the rapid development of plastic industry and the continuous improvement of general and engineering plastics in strength and precision, the application range of plastic mold is also expanding, and most of the precise parts in the automobile production field are cast by plastic.
[0003] But the existing injection molding piece is easy to produce water gap material and product connection after injection molding, so the user needs to use tools to cut, it is difficult to realize the automatic shearing of the mold water gap material, so as to make the labor intensity of workers large, the probability of occupational disease and the production safety hidden danger are large, the production efficiency is not high, and the enterprise human resource cost is increased. SUMMARY
[0004] In view of the deficiency in the prior art, the utility model aims at providing automatic injection molding piece shearing loading equipment.
[0005] The utility model solves technical scheme that the utility model employs is as follows:
[0006] Automatic injection molding piece shearing loading equipment, including work table, fixed installation in the work table on the screw rod feed seat, place the injection molding piece on the screw rod feed seat, fixed installation in the work table on the first clamping frame of the side of the screw rod feed seat, fixed installation in the work table on the second clamping frame of the side of the first clamping frame and setting, fixed installation in the work table on the two screw rod feed seat in front of the screw rod feed seat, fixed installation in the work table on the water gap cutting frame of the cooperation of the two screw rod feed seat, fixed installation in the work table on the workpiece clamping frame in front of the water gap cutting frame, fixed installation in the work table on the material taking manipulator of the outside of the workpiece clamping frame and place the metal storage tray on the work table.
[0007] Preferably, the work table is fixedly installed with a L-shaped limiting seat with a magnet corresponding to the part of placing the metal storage tray.
[0008] Preferably, the screw rod feed seat is installed with a support column with a built-in rotary motor, and a cross embedding head is fixedly installed above the support column and connected with the output end of the rotary motor.
[0009] Preferably, the first clamping frame includes a horizontal moving seat, a vertical moving seat installed on the horizontal moving seat, and a feeding clamp fixedly installed on the vertical moving seat.
[0010] Preferably, the structure of the second clamping frame is consistent with that of the first clamping frame.
[0011] Preferably, the structure of the screw rod feed seat is consistent with that of the screw rod feed seat.
[0012] Preferably, the water gap cutting frame comprises an F-shaped support frame, a fixed cutter integrally formed on the support frame, and a cylinder with a movable cutter fixedly installed on the support frame.
[0013] Preferably, the workpiece clamping frame comprises a screw rod adjusting seat fixedly installed on the workbench, and a workpiece clamping jaw installed on the screw rod adjusting seat.
[0014] Preferably, the end of the material taking manipulator is provided with a material suction gun.
[0015] The utility model discloses the beneficial effect that:
[0016] 1. High automation, improve production efficiency: the equipment realizes the automatic feeding, clamping, cutting and taking of injection molding parts and the whole process automation, does not need manual intervention, and the automation degree is high, can effectively reduce manual operation, reduces human error, improves production efficiency, and the whole process can be automatically completed from the feeding of injection molding parts to the final workpiece storage, reduces the downtime and manual waiting time in production, thereby improving the operation efficiency of the whole production line.
[0017] 2. Accurate clamping and stable feeding: through the screw rod feeding seat and the cross embedding head, the injection molding part can be accurately clamped, especially the water gap section of the injection molding part, so that the injection molding part maintains a stable posture and ensures smooth feeding, and the built-in rotary motor adjustment function can adjust the angle of the injection molding part during feeding, thereby avoiding the problems of difficult clamping or poor feeding caused by improper angle, and improving the clamping accuracy and working stability.
[0018] 3. Precise cutting, reducing material waste: the water gap cutting frame is combined with the fixed cutter and the cylinder with the movable cutter, can accurately remove the water gap of the injection molding part, ensures the cutting effect is flat and consistent, avoids the waste of waste caused by uneven or inaccurate cutting; Precise cutting not only helps to improve the quality of products, but also maximizes the reduction of raw material waste and reduces production cost.
[0019] 4. Automatic material taking and accurate discharging: the material taking manipulator is provided with a material suction gun, which can automatically suck the workpiece and accurately place it on the metal storage tray. This not only improves the workpiece carrying efficiency, but also ensures that the workpieces are arranged in order, which is convenient for subsequent processing or assembly. The automatic material taking function of the manipulator greatly reduces the demand for manual carrying and reduces the labor intensity of workers, while avoiding the damage of workpieces during manual carrying.
[0020] 5. Improve workpiece storage and stability: the L-shaped limiting seat with a magnet provides stable positioning function for the metal storage tray, and through magnetic adsorption, ensures that the storage tray will not be displaced or tilted during work, prevents the problem of uneven workpiece stacking or timely processing caused by unstable storage tray.
[0021] 6. Saves labor and reduces labor costs: Due to the high degree of automation, every step from feeding to unloading can be completed automatically by machinery, greatly reducing reliance on manual labor. For large-scale production, this can effectively reduce labor costs and avoid errors and inconsistencies that occur during manual operation. Attached Figure Description
[0022] Figure 1 This is a structural diagram of the automatic injection molding part cutting and feeding equipment of this utility model. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention. Example
[0024] like Figure 1 As shown, the automatic injection molding part cutting and feeding equipment includes a worktable 1, a screw feed seat 2 fixedly installed on the worktable 1, an injection molded part 3 placed on the screw feed seat 2, a first clamping frame 4 fixedly installed on the worktable 1 and located on the side of the screw feed seat 2, a second clamping frame 5 fixedly installed on the worktable 1 and arranged side by side with the first clamping frame 4, two screw feed seats 6 fixedly installed on the worktable 1 and located in front of the screw feed seat 2, a sprue cutter 7 fixedly installed on the worktable 1 and cooperating with the two screw feed seats 6, a workpiece clamping frame 8 fixedly installed on the worktable 1 and located in front of the sprue cutter 7, a picking robot 9 fixedly installed on the worktable 1 and located outside the workpiece clamping frame 8, and a metal storage tray 10 placed on the worktable 1.
[0025] An L-shaped limiting seat 11 with a magnet is fixedly installed on the workbench 1 at the part where the metal storage tray 10 is placed. Specifically, it can limit the placement of the metal storage tray 10 and hold the metal storage tray 10 tightly with the magnet.
[0026] The lead screw feeder 2 is equipped with a support column 21 with a built-in rotary motor. A cross-shaped insert head 22 is located above the support column 21 and is fixedly installed with the output end of the rotary motor. Specifically, the cross-shaped insert head 22 is used to clamp the injection molded part 3. The sprue section of the injection molded part 3 can be clamped on the cross-shaped insert head 22 to facilitate stable feeding of the injection molded part 3. At the same time, the rotary motor built into the support column 21 can adjust the angle of the injection molded part 3 to reduce the situation where it cannot be clamped during the conveying process.
[0027] The first clamping frame 4 includes a transverse moving seat 41, a longitudinal moving seat 42 mounted on the transverse moving seat 41, and a feed clamp 43 fixedly mounted on the longitudinal moving seat 42.
[0028] The structure of the second material clamping frame 5 is consistent with that of the first material clamping frame 4. Specifically, after the injection molded part 3 is sent by the screw feeding seat 2, the first material clamping frame 4 clamps the injection molded part to the screw feeding seat close to the first material clamping frame 4, and the second material clamping frame 5 clamps the injection molded part to the screw feeding seat close to the second material clamping frame 5.
[0029] The structure of the screw feeding seat 6 is consistent with that of the screw feeding seat 2. Specifically, the screw feeding seat 6 can move the injection molded part 3 close to the water gap cutting frame 7 for cutting processing, and the angle of the injection molded part can be adjusted by using the rotary motor built in the supporting column, so that the next workpiece can be conveniently cut.
[0030] The water gap cutting frame 7 comprises a support frame 71 in F-shaped arrangement, a fixed cutter 72 integrally formed on the support frame 71, and a cylinder 73 with a movable cutter fixedly installed on the support frame 71.
[0031] The workpiece clamping frame 8 comprises a screw adjusting seat 81 fixedly installed on the workbench 1, and a workpiece clamping jaw 82 installed on the screw adjusting seat 81. Specifically, the screw adjusting seat 81 can adjust the position according to the size of the injection molded part 3, and then clamp the workpiece cut by the water gap cutting frame 7.
[0032] The end of the material taking manipulator 9 is provided with a material suction gun 91. Specifically, the material suction gun 91 can suck the workpiece on the workpiece clamping jaw 82, and after the workpiece clamping jaw 82 is loosened, the workpiece is transferred to the metal storage tray 10 for sequential discharge.
[0033] The above embodiments of the utility model are not a limitation on the protection scope of the utility model. The implementation manner of the utility model is not limited to this. According to the above content of the utility model, according to the ordinary technical knowledge and conventional means in the art, other various forms of modification, replacement or change of the above structure of the utility model are made without departing from the above basic technical idea of the utility model, and all should fall within the protection scope of the utility model.
Claims
1. An automatic injection molded part piece shearing and loading equipment, characterized in that, The utility model provides a kind of injection molding product automatic production line, including workbench, fixedly installed on the workbench screw rod feed seat, places on the screw rod feed seat injection part, fixedly installed on the workbench, first clamping frame is located in the side of screw rod feed seat, fixedly installed on the workbench, second clamping frame is arranged side by side with first clamping frame, fixedly installed on the workbench, two screw rod feed seats are located in front of screw rod feed seat, fixedly installed on the workbench, nozzle cutting frame is cooperated with two screw rod feed seats, fixedly installed on the workbench, workpiece clamping frame is located in front of nozzle cutting frame, fixedly installed on the workbench, material taking manipulator is located in the outside of workpiece clamping frame, and metal storage tray is placed on the workbench.
2. The automated trim piece clipping and loading apparatus of claim 1, wherein, The part corresponding to the metal storage tray of the workbench is fixedly installed with L-shaped limiting seat with magnet.
3. The automated trim piece clipping and loading apparatus of claim 1, wherein, Screw rod feed seat is installed with the support column of built-in rotary motor, cross-embedded head is located above support column and is fixedly installed with the output end of rotary motor.
4. The automated trim piece clipping and loading apparatus of claim 1, wherein, First clamping frame includes transverse moving seat, longitudinal moving seat is installed on transverse moving seat, and feeding clamp is fixedly installed on longitudinal moving seat.
5. The automated trim piece clipping and loading apparatus of claim 1, wherein, The structure of second clamping frame is consistent with the structure of first clamping frame.
6. The automated trim piece clipping and loading apparatus of claim 1, wherein, The structure of screw rod feed seat is consistent with the structure of screw rod feed seat.
7. The automated trim piece clipping and loading apparatus of claim 1, wherein, Nozzle cutting frame includes F-shaped support frame, fixed cutter is integrally formed on support frame, cylinder with movable cutter is fixedly installed on support frame.
8. The automated injection molded part piece trimming and loading apparatus of claim 1, wherein, Workpiece clamping frame includes screw rod adjusting seat fixedly installed with workbench, workpiece clamping jaw is installed on screw rod adjusting seat.
9. The automated injection molded part piece trimming and loading apparatus of claim 1, wherein, The end of material taking manipulator is installed with suction gun.