A mold with cooling assisted demolding
An automated cleaning system for molds with cooling-assisted demolding solves the problems of low cleaning efficiency and debris splashing in traditional molds, achieving efficient cleaning and stable equipment operation, and extending mold life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KUNSHAN HUIZAWA XING MOLD TECHNOLOGY CO LTD
- Filing Date
- 2025-09-15
- Publication Date
- 2026-07-21
AI Technical Summary
Traditional mold cleaning is inefficient and difficult to completely remove residue from the inner wall, affecting the molding accuracy of parts and the life of the mold. In addition, the flying debris during the cleaning process causes environmental mess and equipment wear.
Design a mold with cooling-assisted demolding, equipped with storage components, lifting components, and drive components. It achieves automated cleaning through a water pump and cleaning nozzles, combined with a guide plate to buffer and collect debris, and uses a gear rack and worm gear transmission structure to precisely control the movement of the cleaning nozzles.
It improves cleaning efficiency, thoroughly removes residue from the inner wall of the mold, extends the service life of the mold, keeps the working environment clean, reduces equipment failures, and improves production efficiency.
Smart Images

Figure CN224525445U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mold processing technology, specifically a mold with cooling-assisted demolding. Background Technology
[0002] Molds are various shapes and tools used in industrial production to obtain desired products through methods such as injection molding, blow molding, extrusion, die casting, forging, smelting, and stamping. In short, a mold is a tool used to create shaped objects. This tool is composed of various parts, and different molds are composed of different parts. It mainly achieves the processing of the object's shape by changing the physical state of the material being molded, and is often referred to as the "mother of industry."
[0003] Currently, traditional parts processing molds mostly rely on manual cleaning, which is not only inefficient but also difficult to completely remove residues from complex structural parts on the inner wall of the mold. Residual residues can affect the subsequent use of the mold, leading to a decrease in the fit between the mold and the formed parts, which in turn affects the forming accuracy of the parts and may even cause scratches, wear and other quality problems on the surface of the parts. At the same time, it will also shorten the service life of the mold and increase production costs. In addition, the debris generated during the mold cleaning process usually lacks effective buffering and collection measures. The debris will fly everywhere during the rinsing process, which not only makes the working environment dirty and increases the cleaning workload, but the flying debris may also enter the critical parts of the mold or processing equipment, causing wear, jamming and other malfunctions, affecting the normal operation and service life of the equipment. Utility Model Content
[0004] The purpose of this invention is to provide a mold with cooling-assisted demolding to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a mold with cooling-assisted demolding, comprising a mold, a storage component fixed to one side of the top of the mold, a support drive plate fixed to the top of the mold, a through hole formed inside one end of the support drive plate, a lifting component sliding inside the through hole, a spray support plate fixed to the bottom end of the lifting component, multiple cleaning nozzles fixed to both sides of the spray support plate, a driving component fixed to the top of the other side of the top of the mold, and a guide plate fixed to the bottom of the mold.
[0006] Preferably, the storage component includes a storage cleaning box, which is fixed to one side of the top of the mold, and a water pump is fixed to one side of the storage cleaning box, with a water pipe fixed to one end of the water pump.
[0007] Preferably, the outer wall of the water delivery pipe is provided with a corrugated thread, which enables the water delivery pipe to be extended and retracted.
[0008] Preferably, the top of the guide plate is provided with multiple buffer blocks, which can buffer and collect the debris washed down.
[0009] Preferably, the lifting component includes a drive turbine, and the top side of the support plate has a drive turbine that rotates, and the drive turbine has a driven screw in its internal thread.
[0010] Preferably, the driven screw has a cavity inside, which can accommodate the water delivery pipe and thus connect to the support spray plate.
[0011] Preferably, the driving component includes a driving rack, a driving rack is fixed to the top of one side of the mold, a driven gear is engaged at the bottom of the driving rack, and the driven gear rotates on one side of the top of the drive plate. A driving rod is fixed to one side of the driven gear, and a driving worm is fixed to the outer wall of one side of the driving rod, and the driving worm meshes with the driving turbine.
[0012] Compared with the prior art, the beneficial effects of this utility model are: The mold is equipped with storage, lifting, and driving components that work together. The water pump delivers the cleaning fluid from the storage tank to the cleaning nozzle through the water pipe. At the same time, the driving component moves the cleaning nozzle up and down to thoroughly clean the inside of the mold. This automated cleaning method eliminates the need for manual cleaning, which not only improves cleaning efficiency but also effectively removes residues from the inner wall of the mold, preventing residues from adversely affecting subsequent mold use and component processing, and extending the mold's service life. The corrugated threads on the outer wall of the water delivery pipe enable it to retract and extend. When not in use, the water pipe can be retracted to save space and avoid interference with other parts of the mold. When in use, it can be flexibly extended to ensure smooth delivery of cleaning fluid. The cavity design inside the driven screw can accommodate the water delivery pipe and connect it to the support spray plate, making the structure more compact and reasonable, optimizing the overall layout of the mold, and facilitating installation, maintenance, and operation. Multiple buffer blocks are installed at the top of the guide plate at the bottom of the mold. During the cleaning process, these blocks can buffer the debris washed down, preventing it from flying everywhere due to high-speed impact. At the same time, they can effectively collect the debris. This design keeps the working environment clean, reduces the workload of debris cleaning, and avoids debris residue causing wear or other damage to the mold and processing equipment, which is conducive to maintaining the normal operation of the mold and equipment. The drive unit adopts a gear and rack, worm gear and worm transmission structure, which has a stable transmission ratio and can accurately control the lifting and lowering of the driven screw, thereby achieving precise positioning and stable movement of the cleaning nozzle. The meshing between the various transmission components is tight, the transmission efficiency is high, and the power transmission is stable, which ensures the continuity and reliability of the mold cleaning process, reduces equipment downtime caused by transmission failure, and improves production efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 for Figure 1 A side view diagram of the connection structure; Figure 3 for Figure 1 A top view of the connection structure; Figure 4 for Figure 2 Enlarged connection structure diagram at point A; Figure 5 for Figure 3 A magnified schematic diagram of the connection structure at point B.
[0014] Attached diagram descriptions: 1. Mold, 2. Storage and cleaning box, 3. Water pump, 4. Water pipe, 5. Support plate, 6. Drive turbine, 7. Driven screw, 8. Spray plate, 9. Cleaning nozzle, 10. Guide plate, 11. Drive rack, 12. Driven gear, 13. Drive rod, 14. Drive worm gear. Detailed Implementation
[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0016] Please see Figure 1-5 This utility model provides a technical solution: a mold with cooling-assisted demolding, including a mold 1, a storage component fixed on one side of the top of the mold 1, a drive plate 5 fixed on the top of the mold 1, the drive plate 5 can support the drive turbine 6, a through hole is formed inside one end of the drive plate 5, a lifting component slides in the through hole, a spray plate 8 is fixed at the bottom of the lifting component, the spray plate 8 can drive the cleaning nozzle 9 to move up and down by the driven screw 7, multiple cleaning nozzles 9 are fixed on both sides of the spray plate 8, the cleaning nozzles 9 spray the cleaning liquid in the storage cleaning tank 2 into the inside of the mold 1 by the water pump 3, a drive component is fixed at the top of the other side of the top of the mold 1, and a guide plate 10 is fixed at the bottom of the mold 1, the guide plate 10 can buffer the cooled mold, and at the same time, the buffer block at the top buffers and collects the debris washed down.
[0017] The storage component includes a cleaning storage tank 2, which is fixed to one side of the top of the mold 1. The cleaning storage tank 2 can store cleaning liquid. A water pump 3 is fixed to one side of the cleaning storage tank 2. The water pump 3 can transport the cleaning liquid inside the cleaning storage tank 2 to the water delivery pipe 4. One end of the water pump 3 is fixed to the water delivery pipe 4, which can transport the cleaning liquid. The outer wall of the water delivery pipe 4 is provided with a corrugated thread, which can make the water delivery pipe 4 retract and extend. The top of the guide plate 10 is provided with multiple buffer blocks, which can buffer and collect the debris washed down.
[0018] The lifting component includes a drive turbine 6. The drive turbine 6 is rotated on one side of the top of the support and drive plate 5. The drive turbine 6 can drive the driven screw 7 to move up and down through the drive worm gear 14. The driven screw 7 is threaded inside the drive turbine 6. The driven screw 7 moves through the drive of the drive turbine 6. A cavity is formed inside the driven screw 7 to accommodate the water delivery pipe 4 and thus connect to the support and spray plate 8.
[0019] The driving component includes a driving rack 11. The driving rack 11 is fixed to the top of one side of the mold 1. The driving rack 11 can drive the driven gear 12 to rotate through the driving of the mold 1 on one side. The driven gear 12 is meshed at the bottom of the driving rack 11. The driven gear 12 rotates on the top side of the support drive plate 5. The driven gear 12 can drive the driving rod 13 to rotate through the driving rack 11. The driving rod 13 is fixed to one side of the driven gear 12. The driving rod 13 can drive the driving turbine 14 to rotate. The driving worm 14 is fixed to the outer wall of one side of the driving rod 13. The driving worm 14 meshes with the driving turbine 6. The driving worm 14 drives the driven screw 7 to move up and down through the driving turbine 6 it meshes with.
[0020] Its detailed connection method is a well-known technology in this field. The following mainly introduces the working principle and process, and the specific work is as follows.
[0021] After the mold 1 is used, the water pump 3 is connected to the external control unit. The water pump 3 starts and delivers the cleaning fluid inside the storage cleaning tank 2 to the water delivery pipe 4. When the mold 1 moves forward, the drive rack 11 fixed at its top also moves. The drive rack 11 moves forward and drives the driven gear 12 to rotate. The driven gear 12 drives the drive rod 13 to rotate. The drive rod 13 drives the drive worm gear 14 to rotate. The drive worm gear 14 rotates and drives the driven screw 7 to move downward through the internal thread. The driven screw 7 drives the support spray plate 8 to move downward. The support spray plate 8 drives the cleaning nozzle 9 to move downward. The cleaning fluid is delivered to the cleaning nozzle 9 through the water delivery pipe 4. The cleaning nozzle 9 moves downward to clean the residue remaining on the inner wall of the mold 1. The residue falls into the top of the guide plate 10 by its own gravity. The guide plate 10 buffers the residue through the buffer block at the top and collects and cleans it.
[0022] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mold with cooling-assisted demolding, comprising a mold (1), characterized in that, A storage component is fixed on one side of the top of the mold (1), a support drive plate (5) is fixed on the top of the mold (1), a through hole is formed inside one end of the support drive plate (5), a lifting component slides in the through hole, a spray support plate (8) is fixed at the bottom of the lifting component, a plurality of cleaning nozzles (9) are fixed on both sides of the spray support plate (8), a drive component is fixed on the top of the other side of the top of the mold (1), and a guide plate (10) is fixed at the bottom of the mold (1).
2. The mold with cooling-assisted demolding according to claim 1, characterized in that, The storage component includes a storage cleaning box (2), the storage cleaning box (2) is fixed to one side of the top of the mold (1), a water pump (3) is fixed to one side of the storage cleaning box (2), and a water pipe (4) is fixed to one end of the water pump (3).
3. A mold with cooling-assisted demolding according to claim 2, characterized in that, The outer wall of the water delivery pipe (4) is provided with a corrugated thread, which enables the water delivery pipe (4) to be extended and retracted.
4. A mold with cooling-assisted demolding according to claim 1, characterized in that, The top of the guide plate (10) is provided with multiple buffer blocks, which can buffer and collect the debris washed down.
5. A mold with cooling-assisted demolding according to claim 1, characterized in that, The lifting component includes a drive turbine (6), and the top side of the support plate (5) has a drive turbine (6) that rotates, and the drive turbine (6) has a driven screw (7) in its internal thread.
6. A mold with cooling-assisted demolding according to claim 5, characterized in that, The driven screw (7) has a cavity inside, which can accommodate the water delivery pipe (4) and connect to the spray support plate (8).
7. A mold with cooling-assisted demolding according to claim 6, characterized in that, The driving component includes a driving rack (11), the top of one side of the mold (1) is fixed with the driving rack (11), the bottom end of the driving rack (11) is meshed with a driven gear (12), and the driven gear (12) rotates on one side of the top of the drive plate (5). A driving rod (13) is fixed on one side of the driven gear (12), and a driving worm (14) is fixed on one side of the outer wall of the driving rod (13), and the driving worm (14) meshes with the driving turbine (6).