Cooling device for novel corner fitting casting mold

By designing a lifting and cooling device for casting molds, combining gear and rack lifting and hot air drying, the problem of mold cooling devices being easily affected by impurities was solved, achieving efficient dustproof cooling and drying, and improving production efficiency and mold life.

CN223862843UActive Publication Date: 2026-02-03DEQING WEISHENG FOUNDRY CO LTD
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Patent Information

Application Number
CN202520417042.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-03
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Existing casting mold cooling devices are susceptible to impurities when cooled in air, resulting in poor cooling performance. Furthermore, additional drying is required after cooling, which is time-consuming and labor-intensive.

Method used

A cooling device was designed, comprising an operating box, a lifting assembly, a drying assembly, and a filtering assembly. The device uses gear and rack meshing to drive the mold to lift and cool, and combines hot air drying and filtering to achieve dustproof cooling and drying of the mold.

Benefits of technology

It achieves efficient dustproof cooling and drying of molds, prevents impurities from damaging cooling components, shortens production cycles, extends mold life, and improves production efficiency and precision.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling device for a novel corner fitting casting mold, and relates to the technical field of mold cooling. The cooling device for the novel corner fitting casting mold comprises an operation box, the operation box comprises a box body, a through hole is formed in the front face of the box body, a box door is hinged to the front face of the box body through a hinge, a transparent observation window is fixedly installed in the box door, and a supporting plate is fixedly connected between the inner walls of the upper portion of the box body; according to the cooling device for the novel corner fitting casting mold, a double-shaft motor is started to enable the output end of the double-shaft motor to drive a left gear and a right gear to rotate, meshing between the gears and a rack drives the rack and a baffle to move up and down, then the casting mold located above a first filter plate is driven to move up and down, and the casting mold is soaked and cooled; the vertical moving distance of the U-shaped support is limited through the first limiting strip and the second limiting strip, and dustproof treatment of the whole cooling process is achieved while the casting mold is cooled and soaked.
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Description

Technical Field

[0001] This utility model relates to the field of mold cooling technology, specifically a cooling device for a new type of corner piece casting mold. Background Technology

[0002] In modern logistics and transportation, container transport is widely used due to its high efficiency and effectiveness. Container corner fittings are key components of containers, playing a crucial role in lifting, handling, securing, stacking, and fastening operations. With the continuous development of container transport, the demand for container corner fittings is increasing, requiring corner fitting casting molds to improve production efficiency and quality to meet market demands. During the corner fitting casting mold production process, proper cooling can accelerate the solidification speed of the casting, shorten the molding cycle of a single casting, and thus improve overall production efficiency. This allows the mold to proceed with the next casting operation more quickly, while also preventing material performance degradation due to prolonged exposure to high temperatures, extending the mold's service life, and improving molding accuracy to ensure the stability of subsequent production.

[0003] The patent publication number "CN222344179U" discloses a "multi-stage cooling device for an aluminum alloy pressure casting mold". This design includes a water tank, a cooler fixedly connected to the lower front side of the water tank, a support frame fixedly connected to the top of the water tank, a transmission box fixedly connected to the top of the support frame, a lifting frame inside the support frame, a control console fixedly connected to the right side of the support frame, a lifting mechanism inside the transmission box, and a pushing mechanism inside the lifting frame. This design improves the convenience and stability of the device by realizing the lifting and pushing of the mold. However, the entire process of cooling the casting mold is exposed to the air. During long-term operation, impurities are prone to appear during cooling, affecting the cooling effect. In addition, after cooling, the casting mold needs to be dried, which is time-consuming and labor-intensive.

[0004] Therefore, this utility model provides a cooling device for a novel corner piece casting mold to solve the above-mentioned problems. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a cooling device for a novel corner piece casting mold, thus solving the aforementioned problems.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a cooling device for a novel corner piece casting mold, comprising an operating box, the operating box including a box body, the front of the box body having a through hole and a door hinged thereto, a transparent observation window fixedly installed inside the door, a support plate fixedly connected between the upper inner walls of the box body, a first limiting strip and a second limiting strip fixedly connected to the left and right inner walls of the box body, the left and right first limiting strips being located above the left and right second limiting strips, slots being provided on the left and right inner walls of the box body, and a lifting assembly being provided inside the box body. The lifting assembly includes a U-shaped bracket, which is slidably connected to the inner wall of the housing and located between the first and second limiting strips. The U-shaped bracket has a U-shaped groove inside, and a slider and a limiting plate are slidably connected inside the U-shaped groove. The limiting plate is fixedly connected to one end of the left and right sliders. A first filter plate is fixedly connected between the left and right sliders and the limiting plate. A handle is fixedly connected to the bottom of the first filter plate. A baffle and a rack are fixedly connected to the top of the U-shaped bracket. The left and right baffles and racks pass through the support plate and are slidably connected inside the slot. The left and right baffles are located outside the left and right racks.

[0007] Furthermore, the meshing between the gear and the rack drives the rack and the baffle to move up and down, thereby driving the casting mold located above the first filter plate to move up and down, so as to immerse and cool the casting mold. The first limit bar and the second limit bar limit the up and down movement distance of the U-shaped support.

[0008] Using the above technical solution, gears are rotatably connected to the left and right inner walls of the box. The left and right gears are located above the support plate and mesh with the left and right racks. Rotating shafts are fixedly connected to the inner sides of the left and right gears. A dual-axis motor is fixedly installed on the top of the support plate. The output ends of the dual-axis motor are fixedly connected to the inner ends of the left and right rotating shafts.

[0009] Furthermore, by activating the dual-axis motor, its output end drives the two gears on the left and right to rotate, thereby providing power for the up-and-down movement of the U-shaped bracket.

[0010] Using the above technical solution, a support plate is fixedly connected to the outer wall of the box, and a drying assembly and a filter assembly are provided on the outer wall of the box. The drying assembly includes a hot air blower and an air pump. The hot air blower and the air pump are both fixedly installed on the top of the support plate. An air supply pipe is fixedly connected between the hot air blower and the air pump. An air outlet main pipe is fixedly connected between the air pump and the box. The air outlet main pipe passes through the outer wall of the box and is fixedly connected to an air outlet branch pipe. A drying head is fixedly installed at the bottom of the support plate, and the air outlet branch pipe passes through the support plate and is fixedly connected to the top of the drying head.

[0011] Furthermore, by starting the hot air blower and air pump, hot air is delivered to the drying head to dry the casting mold that has risen to the first limit bar.

[0012] Using the above technical solution, the bottom of the inner wall of the box is provided with a water inlet, the filter assembly includes a filter box, the filter box is fixedly connected to the bottom of the outer wall of the box, the back of the filter box is provided with a through hole corresponding to the water inlet, the top of the filter box is hinged with a cabinet door, and the inside of the filter box is provided with a groove and a precision filter plate is slidably connected thereto.

[0013] Furthermore, by conveying the liquid inside the control box from the inlet to the filter box, and then filtering it through the precision filter screen inside the filter box before conveying it to the cooling components, it is possible to prevent impurities in the liquid from damaging the cooling components during transportation after prolonged use.

[0014] Using the above technical solution, a cooling assembly is also provided on the outer wall of the box. The cooling assembly includes a cooling box, which is fixedly installed on the outer wall of the box. Ventilation openings are provided on both the left and right sides of the cooling box. A through hole is provided on the front of the cooling box and a fan is fixedly installed thereon. A cooling pipe is fixedly installed inside the cooling box. A circulation pump is fixedly installed on the top of the cooling box. One end of the cooling pipe passes through the outer wall of the cooling box and the filter box and is fixedly connected to the inside of the filter box. A water inlet pipe is fixedly connected between the cooling box and the circulation pump. One end of the cooling pipe passes through the top wall of the cooling box and is fixedly connected to the water inlet pipe. A water outlet pipe is fixedly connected between the circulation pump and the box.

[0015] Furthermore, by activating the circulation pump and fan, the liquid inside the control box is evacuated and circulated while being cooled, providing a suitable temperature for cooling the casting mold.

[0016] Using the above technical solution, a drain pipe is fixedly connected to the right side of the box, and a valve is fixedly installed on the outside of the drain pipe.

[0017] Furthermore, the liquid inside the control box is replenished by controlling the discharge of liquid through valves.

[0018] Beneficial effects

[0019] This invention provides a cooling device for a novel corner piece casting mold. Compared with the prior art, it has the following advantages:

[0020] 1. This cooling device for a new type of corner piece casting mold, by starting a dual-shaft motor, drives two gears on the left and right to rotate. The meshing between the gears and the rack causes the rack and the baffle to move up and down, thereby moving the casting mold located above the first filter plate up and down to immerse and cool the casting mold. The first limit bar and the second limit bar limit the up and down movement distance of the U-shaped support. While satisfying the cooling and immersion of the casting mold, the device also achieves dust prevention treatment for the entire cooling process.

[0021] 2. This cooling device for a new type of corner piece casting mold, by starting a hot air blower and an air pump, delivers hot air to the drying head to dry the casting mold that has risen to the first limit bar, thus achieving the drying treatment of the casting mold. In addition, by delivering the liquid inside the operating box from the water inlet to the filter box, and after being filtered by the precision filter screen inside the filter box, it is delivered to the cooling component, preventing impurities in the liquid after long-term use from damaging the cooling component during delivery. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0023] Figure 1 This is a perspective view of the external front structure of this utility model;

[0024] Figure 2 This is a perspective view of the external rear structure of this utility model;

[0025] Figure 3 This is a functional diagram of the external front structure of this utility model;

[0026] Figure 4 This is a diagram showing the internal structure of the lifting component of this utility model;

[0027] Figure 5 This is a diagram showing the internal structure of the control box of this utility model.

[0028] In the diagram: 1. Control box; 11. Box body; 12. Box door; 13. Transparent observation window; 14. Drain pipe; 15. Valve; 16. Support plate; 17. Support plate; 18. First limit bar; 19. Second limit bar; 110. Slot; 111. Water inlet; 2. Lifting assembly; 21. U-shaped bracket; 22. U-shaped slide; 23. Sliding block; 24. Limiting plate; 25. First filter plate; 26. Handle; 27. Baffle; 28. Rack; 29. 1. Gears; 210. Shaft; 211. Dual-shaft motor; 3. Drying assembly; 31. Hot air blower; 32. Air pump; 33. Air supply pipe; 34. Main air outlet pipe; 35. Branch air outlet pipe; 36. Drying head; 4. Filter assembly; 41. Filter box; 42. Cabinet door; 43. Precision filter plate; 5. Cooling assembly; 51. Cooling box; 52. Ventilation outlet; 53. Fan; 54. Cooling pipe; 55. Circulation pump; 56. Water inlet pipe; 57. Water outlet pipe. Detailed Implementation

[0029] It should be noted that in the description of the embodiments of this application, the terms "front," "rear," "left," "right," "up," "down," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. The terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two elements. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0030] The present application will be further described in detail below with reference to the accompanying drawings and embodiments.

[0031] Reference Figures 1 to 5This application provides a cooling device for a novel corner piece casting mold, including an operation box 1. The operation box 1 includes a box body 11. The front of the box body 11 has a through hole and a door 12 is hinged to it. A transparent observation window 13 is fixedly installed inside the door 12. A support plate 17 is fixedly connected between the upper inner walls of the box body 11. A first limiting strip 18 and a second limiting strip 19 are fixedly connected to the left and right inner walls of the box body 11. The left and right first limiting strips 18 are both located above the left and right second limiting strips 19. A slot 110 is opened on the left and right inner walls of the box body 11. The interior of the box body 11... A lifting assembly 2 is provided, which includes a U-shaped bracket 21. The U-shaped bracket 21 is slidably connected to the inner wall of the housing 11 and located between the first limiting strip 18 and the second limiting strip 19. A U-shaped groove 22 is provided inside the U-shaped bracket 21. A slider 23 and a limiting plate 24 are slidably connected inside the U-shaped groove 22. The limiting plate 24 is fixedly connected to one end of the left and right sliders 23. A first filter plate 25 is fixedly connected between the left and right sliders 23 and the limiting plate 24. A handle 26 is fixedly connected to the bottom of the first filter plate 25. A baffle 27 is fixedly connected to the top of the U-shaped bracket 21. The rack 28, left and right baffles 27, and left and right racks 28 all pass through the support plate 17 and are slidably connected inside the slot 110. The left and right baffles 27 are all located outside the left and right racks 28. Gears 29 are rotatably connected to the left and right inner walls of the housing 11. The left and right gears 29 are all located above the support plate 17 and mesh with the left and right racks 28. The inner sides of the left and right gears 29 are fixedly connected to the rotating shafts 210. A dual-axis motor 211 is fixedly installed on the top of the support plate 17. The output ends of the dual-axis motor 211 are fixedly connected to the inner ends of the left and right rotating shafts 210. The outer wall of the housing 11 is fixedly connected to the shafts 210. A support plate 16 is fixedly connected. A drying assembly 3 and a filter assembly 4 are provided on the outer wall of the housing 11. The drying assembly 3 includes a hot air blower 31 and an air pump 32. The hot air blower 31 and the air pump 32 are both fixedly installed on the top of the support plate 16. An air supply pipe 33 is fixedly connected between the hot air blower 31 and the air pump 32. An air outlet main pipe 34 is fixedly connected between the air pump 32 and the housing 11. The air outlet main pipe 34 passes through the outer wall of the housing 11 and is fixedly connected to an air outlet branch pipe 35. A drying head 36 is fixedly installed at the bottom of the support plate 17. The air outlet branch pipe 35 passes through the support plate 17 and is fixedly connected to the top of the drying head 36.

[0032] In this embodiment, when cooling of the casting mold is required: first, open the box door 12, pull out the first filter plate 25, and pull it out of the operating box 1. Then, place the casting mold to be cooled on the first filter plate 25, push the first filter plate 25 back so that it is completely inserted into the U-shaped bracket 21, close the box door 12, and observe the inside of the operating box 1 through the transparent observation window 13 installed on the box door 12. Then, start the dual-axis motor 211 so that its output end drives the rotating shaft 210 to rotate. The rotation of the rotating shaft 210 drives the left and right gears 29 to rotate. Since the gears 29 and the rack 28 mesh with each other, when the gears 29 rotate, they drive the rack 28 and the baffle 27 to move down together. During the downward movement of the rack 28 and the baffle 27, the rack 28 slides inside the slot 110. The baffle 27 is located outside the rack 28 to prevent liquid from contacting the rack 28 and reduce wear. The rack 28 and the baffle 27 drive the U-shaped bracket 21 to rotate. The support 21 and its internal first filter plate 25 move downwards until the bottom of the U-shaped support 21 abuts against the second limiting strip 19, at which point the movement stops. At this time, the casting mold located above the first filter plate 25 is completely immersed in the coolant. After immersion, the dual-shaft motor 211 is started, causing its output shaft to rotate and drive the gear 29 to rotate. This causes the rack 28 meshing with the gear to move the U-shaped support 21 upwards, which in turn moves the first filter plate 25 upwards until the top surface of the U-shaped support 21 abuts against the first limiting strip 18. At this time, the casting mold is carried away from the coolant at the bottom by the first filter plate 25 and the liquid is drained. When it is necessary to dry the casting mold on the first filter plate 25, the hot air blower 31 and the air pump 32 are started first to deliver hot air to the drying head 36 to dry the casting mold on the first filter plate 25. The box door 12 is opened, and the handle 26 is pulled to pull the first filter plate 25 to remove the dried casting mold.

[0033] Reference Figures 1 to 5In one aspect of this embodiment, a water inlet 111 is provided at the bottom of the inner wall of the housing 11. The filter assembly 4 includes a filter box 41, which is fixedly connected to the bottom of the outer wall of the housing 11. A through hole is provided on the back of the filter box 41, corresponding to the water inlet 111. A cabinet door 42 is hinged to the top of the filter box 41. A groove is provided inside the filter box 41, and a precision filter plate 43 is slidably connected thereto. A cooling assembly 5 is also provided on the outer wall of the housing 11. The cooling assembly 5 includes a cooling box 51, which is fixedly installed on the outer wall of the housing 11. Ventilation openings 52 are provided on both the left and right sides of the cooling box 51. A through hole is provided on the front of the cooling box 51 and a fan 53 is fixedly installed thereon. A cooling pipe 54 is fixedly installed inside the cooling box 51. A circulation pump 55 is fixedly installed on the top of the cooling box 51. One end of the cooling pipe 54 passes through the outer wall of the cooling box 51 and the filter box 41 and is fixedly connected inside the filter box 41. A water inlet pipe 56 is fixedly connected between the cooling box 51 and the circulation pump 55. One end of the cooling pipe 54 passes through the top wall of the cooling box 51 and is fixedly connected to the water inlet pipe 56. A water outlet pipe 57 is fixedly connected between the circulation pump 55 and the box body 11. A drain pipe 14 is fixedly connected to the right side of the box body 11. A valve 15 is fixedly installed on the outside of the drain pipe 14.

[0034] In this embodiment, to maintain the low temperature of the cooling liquid inside the operating box 1, the liquid inside the operating box 1 needs to be circulated for heat dissipation: First, the circulation pump 55 is started so that the liquid inside the operating box 1 enters the filter assembly 4 from the inlet pipe 56 and is transported to the cooling box 51. It is then transported to the circulation pump 55 by the cooling pipe 54 and discharged into the operating box 1 from the outlet pipe 57. Heat dissipation is achieved through the fan 53 installed on the front of the cooling box 51 and the ventilation vents 52 opened on both sides to ensure the circulation and heat dissipation of the liquid inside the operating box 1. To prevent impurities in the liquid inside the operating box 1 from damaging the cooling assembly 5 after use, the extracted liquid needs to be filtered by the filter assembly 4 before being transported to the cooling assembly 5. After entering the filter box 41, the liquid is filtered for impurities by the precision filter plate 43 and continues to be transported. The precision filter plate 43 is pulled out by opening the cabinet door 42 to clean it. When it is necessary to replace the liquid inside the operating box 1, the liquid inside the operating box 1 is discharged from the drain pipe 14 by controlling the valve 15.

[0035] Working principle: When cooling of the casting mold is required: First, open the box door 12, pull out the first filter plate 25, and pull it out of the operating box 1. Then, place the casting mold to be cooled on the first filter plate 25, push the first filter plate 25 back, and let it be completely inserted into the U-shaped bracket 21. Close the box door 12 and observe the inside of the operating box 1 through the transparent observation window 13 installed on the box door 12. Then, start the dual-shaft motor 211 so that its output end drives the rotating shaft 210 to rotate. The rotation of the rotating shaft 210 drives the left and right gears 29 to rotate. Since the gears 29 and the rack 28 are meshed with each other, when the gears 29 rotate, they drive the rack 28 and the baffle 27 to move down together. As the rack 28 and the baffle 27 move down... During the process, the rack 28 slides inside the slot 110, and the baffle 27 is located outside the rack 28 to prevent liquid from contacting the rack 28 and reduce wear. The rack 28 and the baffle 27 drive the U-shaped bracket 21 and the first filter plate 25 inside it to move downwards until the bottom of the U-shaped bracket 21 abuts against the second limit bar 19 and stops moving. At this time, the casting mold located above the first filter plate 25 is completely immersed in the coolant. After immersion, the dual-shaft motor 211 is started to make its output shaft rotate, which drives the gear 29 to rotate, thereby causing the rack 28 meshing with it to drive the U-shaped bracket 21 to move upwards, and then drive the first filter plate 25 to move upwards until the top surface of the U-shaped bracket 21 abuts against the first limit bar 18. At this time, the casting mold is carried away from the bottom of the coolant by the first filter plate 25 and the liquid is drained. When it is necessary to dry the casting mold on the first filter plate 25, first start the hot air blower 31 and air pump 32 to deliver hot air to the drying head 36 to dry the casting mold on the first filter plate 25. Open the box door 12, pull the handle 26 to pull the first filter plate 25 and take out the dried casting mold. In order to maintain the low temperature of the coolant in the operating box 1, the liquid inside the operating box 1 needs to be circulated for heat dissipation: first start the circulation pump 55 so that the liquid in the operating box 1 enters the filter assembly 4 from the inlet pipe 56 until it is delivered to the cooling box 51, and is delivered to the circulation pump 55 by the cooling pipe 54, and from the outlet Water is discharged from pipe 57 into control box 1. Heat dissipation is achieved through fan 53 mounted on the front of cooling box 51 and ventilation openings 52 on both sides to ensure the circulation and heat dissipation of the liquid inside control box 1. To prevent impurities in the liquid inside control box 1 from damaging the cooling component 5 after use, the extracted liquid needs to be filtered by filter component 4 before being transported to cooling component 5. After entering filter box 41, the liquid is filtered by precision filter plate 43 to remove impurities and continues to be transported. The precision filter plate 43 is pulled out by opening cabinet door 42 to clean it. When it is necessary to replace the liquid inside control box 1, the liquid inside control box 1 is discharged from drain pipe 14 by control valve 15.

[0036] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0037] Although embodiments of this application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A cooling device for a novel corner casting mold, comprising an operating box (1), characterized in that: The operating box (1) includes a box body (11). The front of the box body (11) has a through hole and a door (12) is hinged to it. A transparent observation window (13) is fixedly installed inside the door (12). A support plate (17) is fixedly connected between the upper inner walls of the box body (11). A first limiting strip (18) and a second limiting strip (19) are fixedly connected to the left and right inner walls of the box body (11). The left and right first limiting strips (18) are both located above the left and right second limiting strips (19). A slot (110) is opened on the left and right inner walls of the box body (11). A lifting assembly (2) is provided inside the box body (11). The lifting assembly (2) includes a U-shaped bracket (21). The U-shaped bracket (21) is slidably connected to the inner wall of the box body (11) and located inside the box body (11). Between the first limiting strip (18) and the second limiting strip (19), a U-shaped groove (22) is provided inside the U-shaped bracket (21). A slider (23) and a limiting plate (24) are slidably connected inside the U-shaped groove (22). The limiting plate (24) is fixedly connected to one end of the left and right sliders (23). A first filter plate (25) is fixedly connected between the left and right sliders (23) and the limiting plate (24). A handle (26) is fixedly connected to the bottom of the first filter plate (25). A baffle (27) and a rack (28) are fixedly connected to the top of the U-shaped bracket (21). The left and right baffles (27) and the left and right racks (28) pass through the support plate (17) and are slidably connected inside the slot (110). The left and right baffles (27) are located outside the left and right racks (28).

2. The cooling device for a novel corner piece casting mold according to claim 1, characterized in that: Gears (29) are rotatably connected to the left and right inner walls of the housing (11). The left and right gears (29) are located above the support plate (17) and mesh with the left and right racks (28). The inner sides of the left and right gears (29) are fixedly connected to the rotating shafts (210). A dual-axis motor (211) is fixedly installed on the top of the support plate (17). The output ends of the dual-axis motor (211) are fixedly connected to the inner ends of the left and right rotating shafts (210).

3. The cooling device for a novel corner piece casting mold according to claim 1, characterized in that: A support plate (16) is fixedly connected to the outer wall of the box (11). A drying assembly (3) and a filter assembly (4) are provided on the outer wall of the box (11). The drying assembly (3) includes a hot air blower (31) and an air pump (32). The hot air blower (31) and the air pump (32) are both fixedly installed on the top of the support plate (16). An air supply pipe (33) is fixedly connected between the hot air blower (31) and the air pump (32). An air outlet main pipe (34) is fixedly connected between the air pump (32) and the box (11). The air outlet main pipe (34) penetrates the outer wall of the box (11) and is fixedly connected to an air outlet branch pipe (35). A drying head (36) is fixedly installed at the bottom of the support plate (17). The air outlet branch pipe (35) penetrates the support plate (17) and is fixedly connected to the top of the drying head (36).

4. A cooling device for a novel corner piece casting mold according to claim 3, characterized in that: The inner wall of the housing (11) has an inlet (111) at the bottom. The filter assembly (4) includes a filter box (41). The filter box (41) is fixedly connected to the bottom of the outer wall of the housing (11). The back of the filter box (41) has a through hole that corresponds to the inlet (111). The top of the filter box (41) is hinged with a cabinet door (42). The inside of the filter box (41) has a groove and a precision filter plate (43) is slidably connected to it.

5. A cooling device for a novel corner piece casting mold according to claim 1, characterized in that: A cooling assembly (5) is also provided on the outer wall of the housing (11). The cooling assembly (5) includes a cooling box (51). The cooling box (51) is fixedly installed on the outer wall of the housing (11). Ventilation openings (52) are provided on both the left and right sides of the cooling box (51). A through hole is provided on the front of the cooling box (51) and a fan (53) is fixedly installed thereon. Cooling pipes (54) are fixedly installed inside the cooling box (51). The top of the cooling box (51) is fixedly installed. A circulating pump (55) is fixedly installed. One end of the cooling pipe (54) passes through the outer wall of the cooling box (51) and the filter box (41) and is fixedly connected to the inside of the filter box (41). A water inlet pipe (56) is fixedly connected between the cooling box (51) and the circulating pump (55). One end of the cooling pipe (54) passes through the top wall of the cooling box (51) and is fixedly connected to the water inlet pipe (56). A water outlet pipe (57) is fixedly connected between the circulating pump (55) and the box body (11).

6. A cooling device for a novel corner piece casting mold according to claim 1, characterized in that: A drain pipe (14) is fixedly connected to the right side of the box (11), and a valve (15) is fixedly installed on the outside of the drain pipe (14).

Citation Information

Patent Citations

  • Multi-section cooling device of aluminum alloy pressure casting mold

    CN222344179U