Full-automatic die cutting and hole separating equipment

By designing a fully automatic gate punching and sprue dividing device, the problem of low automation in injection molding production was solved, achieving efficient automated operation and improved production efficiency.

CN224374764UActive Publication Date: 2026-06-19BROADWAY PRECISION TECH LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BROADWAY PRECISION TECH LTD
Filing Date
2025-05-14
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

In existing technologies, the processes of punching out sprues and dividing holes in injection molding products are not highly automated, resulting in low production efficiency.

Method used

A fully automatic punching and sprue-dividing device was designed, including a frame assembly, a punching and positioning assembly, a fixture plate assembly, a robotic arm assembly, a punching assembly, a punching branch storage assembly, and a sprue-dividing storage assembly, to realize the automated flow and operation of products.

Benefits of technology

It improves automation and production efficiency, enabling the processing of 32 products at a time, thus increasing production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a full -automatic die -cutting water gap and equipment of separating the hole, include: frame component, die -cutting positioning subassembly, fixture plate subassembly, manipulator subassembly, die -cutting subassembly, water gap branch storage subassembly and separating the hole storage subassembly, die -cutting positioning subassembly sets up first station of frame component, is used for when die -cutting to the fixed product, fixture plate subassembly sets up second station of frame component, is used for driving product circulation between first station and second station, die -cutting subassembly sets up fixture plate subassembly, is used for when product is located second station to the die -cutting product, water gap branch storage subassembly sets up second station of frame component, is used for the water gap branch of falling down. The utility model can realize automatic die -cutting water gap and separating the hole and place etc. operation to product, supports handling 32 products one time, has promoted the automation degree and production efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of automation equipment technology, and in particular to a fully automatic flushing and cutting device for water inlets and a cavity. Background Technology

[0002] Existing technologies suffer from low automation and low production efficiency in processes such as sprue cutting and product placement in injection molding, which affect the overall production results.

[0003] Therefore, existing technologies have shortcomings and need to be improved. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a fully automatic flushing and cutting device for water inlets and a cavity.

[0005] The technical solution of this utility model is as follows: This utility model provides a fully automatic punching and sprue-dividing device, including: a frame assembly, a punching and positioning assembly, a fixture plate assembly, a robotic arm assembly, a punching assembly, a sprue branch storage assembly, and a sprue-dividing storage assembly;

[0006] The punching positioning component is disposed at the first station of the frame assembly and is used to fix the product during punching.

[0007] The fixture plate assembly is located at the second station of the frame assembly and is used to drive the product to move between the first station and the second station.

[0008] The punching component is mounted on the fixture plate assembly and is used to punch the product when the product is located at the second station.

[0009] The sprue branch receiving assembly is located at the second station of the frame assembly and is used to catch the fallen sprue branches.

[0010] The robotic arm assembly is used to load the product onto the fixture plate assembly located at the second work station, and to absorb the sprue branch located on the fixture plate at the second work station and place it into the sprue branch storage assembly.

[0011] The cavity-dividing and storage component is located on the third station of the frame assembly. The cavity-dividing and storage component is used to transport the product located at the second station after punching to the third station for cavity-dividing and storage.

[0012] Furthermore, the fixture plate assembly includes a fixture plate body and a fixture moving mechanism. The fixture plate body is disposed on the fixture moving mechanism. The fixture plate body is used to accommodate the product, and the fixture moving mechanism is used to drive the fixture plate body to move between a first station and a second station.

[0013] Furthermore, the punching assembly includes a punching blade and a punching drive mechanism for driving the punching blade, the punching drive mechanism being disposed on the fixture plate.

[0014] Furthermore, the punching positioning assembly includes: a punching positioning plate and a positioning drive mechanism for driving the punching positioning plate.

[0015] Furthermore, the water outlet branch storage assembly includes a collection port located at the first work station and a storage component connected to the collection port.

[0016] Furthermore, the cavity storage component includes: a product gripping mechanism, a cavity driving mechanism, and a cavity placement mechanism. The product gripping mechanism is disposed on the cavity driving mechanism and is used to drive the product gripping mechanism to move between the second station and the third station. The cavity placement mechanism includes a plurality of product inlet pipes and a product placement tray connected to the corresponding product inlet pipes.

[0017] The beneficial effects of this utility model by adopting the above solution are: it can automatically cut the sprue and place the product in the cavity, and supports processing 32 products at one time, thereby improving the degree of automation and production efficiency. Attached Figure Description

[0018] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model.

[0019] Figure 2 This is a schematic diagram of the structure of the jig plate assembly and the cavity storage assembly according to an embodiment of the present invention.

[0020] Figure 3 This is a schematic diagram of the structure of a punching component according to an embodiment of the present invention. Detailed Implementation

[0021] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0022] Please refer to the following: Figures 1 to 3 In this embodiment, the present invention provides a fully automatic punching and sprue-dividing device, including: a frame assembly 1, a punching and positioning assembly 3, a fixture plate assembly 2, a robotic arm assembly (not shown), a punching assembly 7, a sprue branch storage assembly 4, and a sprue-dividing storage assembly 5.

[0023] The frame assembly 1 is used to support the punching positioning assembly 3, the fixture plate assembly 2, the punching assembly 7, the sprue branch storage assembly 4, the hole-dividing storage assembly 5, and the corresponding screen, control module, electrical components, etc. The frame assembly 1 has a first station, a second station, and a third station for the product to undergo different processes.

[0024] The fixture plate assembly 2 is disposed on the second station of the frame assembly 1 and is used to drive the product to move between the first station and the second station. Specifically, the fixture plate assembly 2 includes a fixture plate body 21 and a fixture moving mechanism 22. The fixture plate body 21 is disposed on the fixture moving mechanism 22. The fixture plate body 21 is used to accommodate the product, and the fixture moving mechanism 22 is used to drive the fixture plate body 21 to move between the first station and the second station.

[0025] The punching assembly 7 is disposed on the fixture plate assembly 2 and is used to punch the product when the product is located at the second station. Specifically, the punching assembly 7 includes a punching blade and a punching drive mechanism for driving the punching blade. The punching drive mechanism is disposed on the back of the fixture plate 21. The punching blade extends from the clearance of the fixture plate 21 and, driven by the punching drive mechanism, punches the sprue of the product disposed thereon.

[0026] The punching positioning component 3 is disposed on the first station of the frame assembly 1 and is used to fix the product during punching. The punching positioning component 3 includes: a punching positioning plate 31 and a positioning drive mechanism 32 for driving the punching positioning plate 31. During operation, the positioning drive mechanism 32 presses the punching positioning plate 31 down on the product to achieve positioning and fixation of the product, so as to facilitate the punching component 7 to punch the product.

[0027] The sprue branch collection component 4 is installed on the second station of the frame assembly 1 to catch the fallen sprue branches. The sprue branch collection component 4 includes a collection port 41 installed at the first station and a collection component connected to the collection port 41. After the sprue branch falls from above the collection port 41, it falls into the collection component below through the collection port 41, thereby collecting the sprue branch.

[0028] The robotic arm assembly is used to load the product onto the fixture plate assembly 2 located at the second work station, and to adsorb the sprue branch located on the fixture plate, then transfer it to the top of the collection port 41 at the first work station, and then release the sprue branch so that it falls into the sprue branch collection assembly 4.

[0029] The aperture collection component 5 is disposed on the third station of the frame assembly 1. The aperture collection component 5 is used to transport the punched products located at the second station to the third station for aperture collection. Specifically, the aperture collection component 5 includes: a product gripping mechanism 51, an aperture driving mechanism 52, and an aperture placement mechanism. The product gripping mechanism 51 is disposed on the aperture driving mechanism 52, which drives the product gripping mechanism 51 to move between the second and third stations. The aperture placement mechanism includes several product inlet pipes 53 and product placement trays connected to the corresponding product inlet pipes 53. During operation, at the second station, the product gripping mechanism 51 descends to grip the product 6 and then rises. The product gripping mechanism 51 can grip 32 products 6 at a time. The aperture driving mechanism 52 then transports the products to the third station, where they are placed down so that they enter the corresponding apertures through the corresponding pipes.

[0030] Please continue to refer to the following: Figures 1 to 3 During operation, the robotic arm assembly feeds the product onto the fixture plate at the second workstation. The product is then transferred to the first workstation for sprue cutting. The sprue branch slides down and is stored in the sprue branch storage assembly 4. Subsequently, the product is stored in the divided cavity storage assembly 5.

[0031] In summary, the beneficial effects of this solution are: it can automatically perform operations such as sprue cutting and cavity placement for products, supports processing 32 products at a time, and improves the level of automation and production efficiency.

[0032] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A full-automatic cutting and separating device for water gap and hole, characterized in that, include: Frame assembly, punching positioning assembly, jig plate assembly, robot arm assembly, punching assembly, sprue branch storage assembly, and sprue storage assembly; The punching positioning component is disposed at the first station of the frame assembly and is used to fix the product during punching. The fixture plate assembly is located at the second station of the frame assembly and is used to drive the product to move between the first station and the second station. The punching component is mounted on the fixture plate assembly and is used to punch the product when the product is located at the second station. The sprue branch receiving assembly is located at the second station of the frame assembly and is used to catch the fallen sprue branches. The robotic arm assembly is used to load the product onto the fixture plate assembly located at the second work station, and to absorb the sprue branch located on the fixture plate at the second work station and place it into the sprue branch storage assembly. The cavity-dividing and storage component is located on the third station of the frame assembly. The cavity-dividing and storage component is used to transport the product located at the second station after punching to the third station for cavity-dividing and storage.

2. The fully automatic sprue cutting and aisle dividing device according to claim 1, characterized in that, The fixture plate assembly includes a fixture plate body and a fixture moving mechanism. The fixture plate body is disposed on the fixture moving mechanism. The fixture plate body is used to accommodate products. The fixture moving mechanism is used to drive the fixture plate body to move between a first station and a second station.

3. The fully automatic sprue cutting and aisle dividing device according to claim 2, characterized in that, The punching assembly includes a punching blade and a punching drive mechanism for driving the punching blade, the punching drive mechanism being disposed on the fixture plate.

4. The fully automatic sprue cutting and aisle dividing device according to claim 3, characterized in that, The punching positioning assembly includes a punching positioning plate and a positioning drive mechanism for driving the punching positioning plate.

5. The fully automatic sprue-cutting and cavity-dividing device according to any one of claims 1 to 4, characterized in that, The water outlet branch storage assembly includes a collection port located at the first work station and a storage component connected to the collection port.

6. The fully automatic sprue-cutting and cavity-dividing device according to any one of claims 1 to 4, characterized in that, The aperture storage component includes: a product gripping mechanism, an aperture driving mechanism, and an aperture placement mechanism. The product gripping mechanism is mounted on the aperture driving mechanism and is used to drive the product gripping mechanism to move between a second station and a third station. The aperture placement mechanism includes several product inlet pipes and a product placement tray connected to the corresponding product inlet pipes.