Tool supporting and cooling equipment

By designing cooling conveying components and cooling fans in the tooling support cooling equipment, and utilizing the airflow path and circulation chamber, the problem of uneven workpiece temperature was solved, achieving uniform cooling and quality improvement of the workpiece.

CN223755678UActive Publication Date: 2026-01-02克模塑胶(上海)有限公司
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Patent Information

Application Number
CN202520096365.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-02
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

The workpieces are not heated evenly during transport due to changes in the contact area with the air source, which affects heat dissipation efficiency and workpiece quality.

Method used

A tooling support cooling device was designed, including a machine tool, a cooling conveying assembly, and a cooling fan. An airflow path is formed through the gap between the cooling conveying assembly and the machine tool. The cooling fan delivers air to cool the workpiece evenly, maintaining the workpiece's shape and structure. A circulation chamber is formed through a partition connecting plate to circulate the air source.

Benefits of technology

This method achieves uniform temperature reduction of the workpiece during transportation, maintains the workpiece's strength and shape, and improves cooling efficiency and workpiece quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses tool supporting and cooling equipment, and particularly relates to the technical field of tool cooling, the tool supporting and cooling equipment comprises a machine tool and a cooling and conveying assembly, a feeding area is reserved on the side edge of the machine tool, a conveying crawler belt is arranged in the center of the top of the machine tool, and the cooling and conveying assembly is arranged above the conveying crawler belt. Cooling fans are arranged on the two sides of the cooling conveying assembly in a staggered mode, a feeding assembly is arranged above the feeding area through bolts, and a collecting box is arranged on the side, away from the feeding assembly, of the cooling conveying assembly. The cooling and conveying assembly is used for maintaining the structure of the overall shape of the workpiece, the circulating cavity is formed through the partition connecting plate in the cooling and conveying assembly, and the air source circulates in the partition connecting plate, so that the air source uniformly peels off the residual temperature of the workpiece, workpiece accumulation is reduced, and the workpiece quality is improved. And the temperature residue of the workpiece is influenced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tooling cooling technical field more specifically, the utility model relates to tooling support cooling equipment. BACKGROUND

[0002] Tooling cooling device is a kind of equipment specially designed for cooling tooling, it plays an important role in industrial production, especially in those manufacturing processes that need accurate temperature control. For example, after welding, injection molding or other heat treatment processes, tooling will remain temperature, at this time, cooling device needs to be used to quickly reduce the temperature of tooling to protect the integrity of tooling structure, reduce thermal stress and ensure that tooling can be safely reused or subsequent processing steps are carried out;

[0003] Through the retrieval, the existing application number: CN202410635535.X, a kind of cooling device for workpiece, including shell, air extraction piece and multiple air supply parts, shell defines workpiece conveying channel, workpiece conveying channel is used to convey workpiece, shell forms workpiece import and workpiece export, workpiece conveying channel is communicated workpiece import and workpiece export, multiple air supply parts are all set in shell and are used to send air to workpiece conveying channel, air extraction piece is used to extract the gas in workpiece conveying channel from workpiece conveying channel, multiple air supply parts are arranged along the conveying direction of workpiece, along the conveying direction of workpiece, the air supply temperature of multiple air supply parts gradually reduces. By setting multiple air supply parts, the cooling efficiency of cooling device to workpiece can be improved, which is beneficial to enhance the cooling effect of cooling device to workpiece and ensure the quality of workpiece. The inventor found that the prior art has the following problems in the process of realizing the utility model:

[0004] The existing conveying device, in the process of conveying, the workpiece with residual temperature is often placed in conveying equipment, and the workpiece is cooled by fan, and since the workpiece is scattered in the interior of conveying equipment, the area of workpiece in contact with air source will change, thereby affecting the heat dissipation efficiency of air source to workpiece heat source, and further causing the temperature difference between workpieces;

[0005] Therefore, tooling support cooling equipment is proposed for the above problems. UTILITY MODEL CONTENT

[0006] In order to overcome the above-mentioned defects of the prior art, the utility model provides tooling support cooling equipment to solve the problems raised in the above background art.

[0007] To achieve the above object, the utility model provides the following technical scheme: tooling support cooling equipment, including lathe and cooling delivery assembly, the side of lathe reserves the feeding area, and the top center of lathe is provided with the delivery caterpillar belt, and the cooling delivery assembly is set up the top of delivery caterpillar belt, and the both sides of cooling delivery assembly staggeredly are provided with cooling fan, and the top of feeding area is provided with feeding assembly through bolt, and the side of cooling delivery assembly away from feeding assembly is provided with collection box.

[0008] Preferably, the cooling delivery assembly comprises a partition connecting plate, a first rotating shaft, a second rotating shaft, a first rotating ring, a second rotating ring and a conveyor belt, and the center of the two groups of partition connecting plates is connected with the first rotating shaft, the side of the first rotating shaft away from the feeding assembly is provided with the second rotating shaft, the outer diameter surface of the first rotating shaft and the second rotating shaft is provided with the first rotating ring, the side of the first rotating ring away from the cooling fan is provided with the second rotating ring, and the outer diameter surface of the first rotating ring and the second rotating ring is provided with the conveyor belt.

[0009] Preferably, the feeding assembly comprises a limiting base, a conveying groove, a lifting support, a quantitative conveying ring and a placing groove, the center of the two groups of limiting bases is provided with the conveying groove, the center of the two groups of limiting bases is fixedly provided with the lifting support, the side of the lifting support is provided with the quantitative conveying ring, and the side of the quantitative conveying ring away from the lifting support is provided with the placing groove.

[0010] Preferably, the side of the partition connecting plate away from the first rotating shaft is provided with a speed reducer, the lower side of the speed reducer is provided with a driving motor, the first rotating shaft, the second rotating shaft and the partition connecting plate are movably connected through a bearing, when the driving motor drives the speed reducer, the speed reducer drives the first rotating shaft, and the first rotating ring and the second rotating ring on the outer diameter surface of the first rotating shaft drive the conveyor belt connected with the outer diameter surface of the first rotating ring and the second rotating ring to move horizontally.

[0011] Preferably, the first rotating shaft of the cooling delivery assembly, the arc-shaped end of the first rotating ring and the second rotating ring provided with the first rotating shaft is located in the placing groove of the feeding assembly, when the workpiece is conveyed forward through the quantitative conveying ring of the feeding assembly, the workpiece falls in the center of the two groups of conveyor belts.

[0012] Preferably, the two sides of the collection box are fixedly provided with a collection plate, the bottom of the lathe is provided with a motor chamber through a bolt, and the two sides of the motor chamber are provided with a supporting base.

[0013] The utility model discloses the technical effect and advantage:

[0014] 1. Compared with the prior art, the tooling supporting cooling device lowers the temperature of the workpiece before collection to restore the strength of the workpiece due to the structure of the workpiece itself when the workpiece is produced and transported, the produced workpiece is transported by the feeding assembly on the feeding area, the workpiece is transported to the upper side of the cooling conveying assembly by the feeding assembly, the driving motor drives the cooling conveying assembly to continuously transport the workpiece forward, and the cooling fan transports air through the gap between the cooling conveying assembly and the machine tool when the cooling fan operates, so that the strength of the workpiece is restored by the air during transportation, and the workpiece is transported to the inside of the collection box by the cooling conveying assembly.

[0015] 2. Compared with the prior art, the tooling supporting cooling device maintains the overall shape of the workpiece by the cooling conveying assembly, and forms a circulating cavity by the partition connecting plate in the cooling conveying assembly, so that the air source circulates in the partition connecting plate, so that the air source uniformly strips the residual temperature of the workpiece, thereby reducing the accumulation of the workpiece and affecting the residual temperature of the workpiece. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole three-dimensional structure diagram of the utility model.

[0017] Figure 2 It is a structure diagram of the machine tool of the utility model.

[0018] Figure 3 It is a structure diagram of the cooling conveying assembly of the utility model.

[0019] Figure 4 It is a structure diagram of the feeding assembly of the utility model.

[0020] The figure mark is: 1, machine tool; 101, feeding area; 2, conveying belt; 3, cooling conveying assembly; 4, cooling fan; 5, feeding assembly; 6, driving motor; 601, speed reducer; 7, motor chamber; 8, supporting base; 9, collection box; 10, partition connecting plate; 11, first rotating shaft; 1101, second rotating shaft; 12, first rotating ring; 13, second rotating ring; 14, conveying belt; 15, limiting base; 16, conveying groove; 17, lifting support; 18, quantitative conveying ring; 19, placing groove; 20, collection plate. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0022] Embodiment 1

[0023] As shown in the drawings Figures 1 to 4 The tool supports the cooling equipment, including machine tool 1 and cooling conveying assembly 3, the side of machine tool 1 is reserved with feeding area 101, and the top center of machine tool 1 is provided with conveying belt 2, and cooling conveying assembly 3 is arranged above conveying belt 2, and cooling fan 4 is arranged staggered on both sides of cooling conveying assembly 3, and feeding area 101 is provided with feeding assembly 5 through bolts, and the side of cooling conveying assembly 3 away from feeding assembly 5 is provided with collecting box 9.

[0024] Wherein: when the workpiece is produced and conveyed, because of the structure of the workpiece itself, the temperature of the workpiece needs to be reduced before collection, so that the strength of the workpiece is restored, at this time the produced workpiece is conveyed through the feeding assembly 5 on the feeding area 101, at this time the workpiece is conveyed to the upper side of the cooling conveying assembly 3 through the feeding assembly 5, at this time the driving motor 6 drives the cooling conveying assembly 3 to make the cooling conveying assembly 3 continuously convey the workpiece to move forward, because there is a gap between the machine tool 1 and the cooling conveying assembly 3, when the cooling fan 4 operates, the wind conveyed by the cooling fan 4 flows through the gap between the cooling conveying assembly 3 and the machine tool 1, so that the strength of the workpiece is restored by the wind during the conveying process, so that the workpiece is conveyed to the inside of the collecting box 9 through the cooling conveying assembly 3.

[0025] Embodiment 2

[0026] On the basis of embodiment 1, the scheme in embodiment 1 is further refined and introduced in combination with the specific working mode as shown in the drawings Figures 1 to 4 , see the following description in detail:

[0027] As a preferred implementation, the feeding assembly 5 comprises a limiting base 15, a conveying groove 16, a lifting support 17, a quantitative conveying ring 18 and a placing groove 19, and the center of the two sets of limiting bases 15 is provided with the conveying groove 16, and the center of the two sets of limiting bases 15 is fixedly provided with the lifting support 17, and the side of the lifting support 17 is provided with the quantitative conveying ring 18, and the side away from the lifting support 17 of the quantitative conveying ring 18 is provided with the placing groove 19, wherein the workpiece is placed in the conveying groove 16 at the center of the limiting base 15, at this time the workpiece slides through the conveying groove 16, and the workpiece slides through the conveying groove 16 to the inside of the lifting support 17, and the rod body of the workpiece is lifted up, at this time the lifted workpiece moves forward, at this time the two quantitative conveying rings 18 rotate and clamp the rod body of the workpiece, so as to limit the workpiece while the quantitative conveying ring 18 is separated, and the workpiece is conveyed into the inside of the cooling conveying assembly 3.

[0028] As a preferred implementation, the dividing connecting plate 10 is provided with a speed reducer 601 away from the first rotating shaft 11, and the lower side of the speed reducer 601 is provided with a driving motor 6, and the first rotating shaft 11, the second rotating shaft 1101 and the dividing connecting plate 10 are movably connected through bearings, when the driving motor 6 drives the speed reducer 601, and the speed reducer 601 drives the first rotating shaft 11, and makes the first rotating shaft 11 rotate along the axial direction, and the first rotating ring 12 and the second rotating ring 13 on the outer diameter surface of the first rotating shaft 11 drive the horizontal movement of the conveying belt 14 connected to the outer diameter surfaces of the first rotating ring 12 and the second rotating ring 13, then when the driving motor 6 operates, the driving motor 6 drives the speed reducer 601, and makes the speed reducer 601 drive the first rotating shaft 11 to rotate, so that the first rotating shaft 11 rotates, and drives the first rotating ring 12 and the second rotating ring 13 to rotate, then the conveying belt 14 is respectively sleeved on the first rotating ring 12 on the first rotating shaft 11 and the first rotating ring 12 on the second rotating shaft 1101, and above the first rotating ring 12 and the second rotating ring 13 on the second rotating shaft 1101, then when the driving motor 6 drives the first rotating shaft 11 to rotate, and then drives the second rotating shaft 1101 to rotate through the conveying belt 14, so that when the workpiece falls at the center of the two sets of conveying belts 14, the workpiece is conveyed through the conveying belt 14.

[0029] As a preferred embodiment, the first rotating shaft 11 of the cooling and conveying assembly 3 is arranged with the first rotating ring 12 and the arc-shaped end of the second rotating ring 13 in the placement groove 19 of the feeding assembly 5, when the workpiece is conveyed forward by the quantitative conveying ring 18 of the feeding assembly 5, the workpiece falls at the center of the two sets of conveying belts 14, and then the first rotating ring 12 and the second rotating ring 13 on the first rotating shaft 11 are inside the placement groove 19 of the feeding assembly 5, so as to close the gap between the cooling and conveying assembly 3 and the feeding assembly 5, thereby facilitating the conveying of the workpiece.

[0030] As a preferred embodiment, the two sides of the collecting box 9 are fixedly provided with collecting plates 20, and the bottom of the machine tool 1 is provided with a motor chamber 7 through bolts, and the two sides of the motor chamber 7 are provided with supporting bases 8, and when the workpiece falls inside the cooling and conveying assembly 3, the conveying crawler 2 above the machine tool 1 is driven by the motor in the motor chamber 7, so that the conveying crawler 2 drives the fallen workpiece to move again, and the workpiece is limited by the collecting plates 20, thereby completing the collection of the workpiece.

[0031] The working process of the utility model is as follows: among them the workpiece is placed in the conveying groove 16 at the center of the limiting base 15, at this time the workpiece slides through the conveying groove 16, and the workpiece is slid through the conveying groove 16 to the inside of the lifting support 17, and the rod body of the workpiece is lifted upwards, at this time the workpiece lifted is moved forward, at this time two groups of quantitative conveying rings 18 rotate, and the rod body of the workpiece is clamped, thereby limiting the workpiece, and after the quantitative conveying ring 18 is separated, the workpiece is conveyed into the inside of the cooling conveying assembly 3, then when the driving motor 6 operates, the driving motor 6 drives the speed reducer 601, and the speed reducer 601 drives the first rotating shaft 11 to rotate, thereby making the first rotating shaft 11 rotate, and making the first rotating shaft 11 drive the first rotating ring 12 and the second rotating ring 13 to rotate, then the conveying belt 14 is respectively sleeved on the first rotating ring 12 on the first rotating shaft 11 and the first rotating ring 12 on the second rotating shaft 1101, and the first rotating ring 12 and the second rotating ring 13 on the second rotating shaft 1101, then when the driving motor 6 drives the first rotating shaft 11 to rotate, then the second rotating shaft 1101 is driven to rotate through the conveying belt 14, so that when the workpiece falls at the center of the two groups of conveying belts 14, at this time the workpiece is conveyed through the conveying belt 14, then at this time the first rotating ring 12 and the second rotating ring 13 on the first rotating shaft 11 are in the inside of the placing groove 19 of the feeding assembly 5, for closing the gap between the cooling conveying assembly 3 and the feeding assembly 5, thereby facilitating the conveying of the workpiece, and when the workpiece falls in the inside of the cooling conveying assembly 3, at this time the conveying crawler belt 2 above the machine tool 1 is driven through the motor in the motor chamber 7, thereby driving the conveying crawler belt 2, and the fallen workpiece is moved again through the conveying crawler belt 2, and after the workpiece is limited through the collecting plate 20, thereby completing the collection of the workpiece, the above is the working principle of the tooling support cooling equipment.

Claims

1. Tool support cooling apparatus comprising a machine tool (1) and a cooling delivery assembly (3), characterised in that: The side of the machine tool (1) is reserved with a feeding area (101), the top center of the machine tool (1) is provided with a conveying belt (2), the cooling conveying assembly (3) is arranged above the conveying belt (2), the two sides of the cooling conveying assembly (3) are staggered with cooling fans (4), the upper side of the feeding area (101) is provided with a feeding assembly (5) through bolts, and the side of the cooling conveying assembly (3) away from the feeding assembly (5) is provided with a collecting box (9).

2. The tooling support cooling apparatus of claim 1, wherein: The cooling conveying assembly (3) comprises a partition connecting plate (10), a first rotating shaft (11), a second rotating shaft (1101), a first rotating ring (12), a second rotating ring (13) and a conveying belt (14), the center of the two groups of partition connecting plates (10) is connected with the first rotating shaft (11), the side of the first rotating shaft (11) away from the feeding assembly (5) is provided with the second rotating shaft (1101), the outer diameter surface of the first rotating shaft (11) and the second rotating shaft (1101) is provided with the first rotating ring (12), the side of the first rotating ring (12) away from the cooling fan (4) is provided with the second rotating ring (13), and the outer diameter surface of the first rotating ring (12) and the second rotating ring (13) is provided with the conveying belt (14).

3. The tooling support cooling apparatus of claim 1, wherein: The feeding assembly (5) comprises a limiting base (15), a conveying groove (16), a lifting support (17), a quantitative conveying ring (18) and a placing groove (19), the center of the two groups of limiting bases (15) is reserved with the conveying groove (16), the center of the two groups of limiting bases (15) is fixedly provided with the lifting support (17), the side of the lifting support (17) is provided with the quantitative conveying ring (18), and the side of the quantitative conveying ring (18) away from the lifting support (17) is provided with the placing groove (19).

4. The tooling support cooling apparatus of claim 2, wherein: The side of the partition connecting plate (10) away from the first rotating shaft (11) is provided with a speed reducer (601), the lower side of the speed reducer (601) is mounted with a driving motor (6), the first rotating shaft (11), the second rotating shaft (1101) and the partition connecting plate (10) are movably connected through bearings, when the driving motor (6) drives the speed reducer (601), the speed reducer (601) drives the first rotating shaft (11), and the first rotating shaft (11) rotates in the axial direction, the first rotating ring (12) and the second rotating ring (13) on the outer diameter surface of the first rotating shaft (11) drive the conveying belt (14) connected with the outer diameter surface of the first rotating ring (12) and the second rotating ring (13) to move horizontally.

5. The tooling support cooling apparatus of claim 1, wherein: The first rotating shaft (11) of the cooling conveying assembly (3), the arc-shaped end of the first rotating ring (12) and the second rotating ring (13) arranged on the first rotating shaft (11) is located in the placing groove (19) of the feeding assembly (5), when the workpiece is conveyed forward through the quantitative conveying ring (18) of the feeding assembly (5), the workpiece falls in the center of the two groups of conveying belts (14).

6. The tooling support cooling apparatus of claim 1, wherein: Two sides of the collecting box (9) are fixedly provided with collecting plates (20), and the bottom of the machine tool (1) is provided with a motor chamber (7) through bolts, and both sides of the motor chamber (7) are provided with supporting bases (8).

Citation Information

Patent Citations

  • Cooling device for workpieces

    CN118729683A