Cooling mechanism and high-temperature dyeing machine thereof
By designing auxiliary and ventilation mechanisms in the high-temperature dyeing machine, and using fans and connecting pipes to blow air and dissipate heat inside the dyeing machine, the problem of long cooling time in the existing technology is solved, and a highly efficient internal cooling effect is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-03
AI Technical Summary
The existing high-temperature dyeing machine's cooling mechanism only cools the outside of the dyeing machine, resulting in a long cooling time and affecting cooling efficiency.
A cooling mechanism was designed, including an auxiliary mechanism and a ventilation mechanism. The auxiliary mechanism blows air to dissipate heat inside the dyeing machine through components such as a support frame, a fixed column, and a fan. The ventilation mechanism exhausts hot air through connecting pipes and threaded columns to achieve internal cooling.
It improves the heat dissipation of the dyeing machine, shortens the cooling time, and enhances cooling efficiency.
Smart Images

Figure CN224077732U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of high-temperature dyeing machines, and in particular to a cooling mechanism and a high-temperature dyeing machine thereof. Background Technology
[0002] A high-temperature dyeing machine is a machine that uses high temperature, high pressure, and high speed flow of dye liquor to dye fabrics. It is one of the commonly used pieces of equipment in the modern textile dyeing industry. High-temperature dyeing machines are usually equipped with a cooling mechanism to cool the dyeing machine and the fabric after the dyeing machine has dyed the fabric.
[0003] Application No. 202320027731.X discloses a rapid cooling mechanism for a high-temperature and high-pressure dyeing machine, including an outer shell fitted over the main body of the dyeing machine. The inner circumference of the outer shell and the outer circumference of the main body of the dyeing machine maintain a distance and form a sandwich. The sandwich is provided with a partition and multiple perforated plates. The partition and the array of perforated plates divide the sandwich into multiple cavities between the main body of the dyeing machine and the outer shell. The two cavities between the partition and the perforated plates located on both sides of the partition are the water inlet cavity and the water outlet cavity, respectively. The outer shell is also provided with a water inlet interface and a water outlet interface at the positions corresponding to the water inlet cavity and the water outlet cavity.
[0004] The system utilizes the outer shell, partitions, perforated plates, and the main body of the dyeing machine to form a cooling cavity. Circulating cooling water is introduced into the cooling cavity through inlet and outlet water interfaces to dissipate heat from the dyeing machine and the dyed fabric inside. However, the inside of the dyeing machine will have a high temperature. Therefore, relying solely on external cooling of the dyeing machine will result in a long cooling time and affect cooling efficiency. Thus, it is necessary for the dyeing machine cooling mechanism to cool the inside of the dyeing machine. Utility Model Content
[0005] The purpose of this invention is to provide a cooling mechanism and a high-temperature dyeing machine thereof to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a cooling mechanism, comprising:
[0007] The outer casing has an internal cooling cavity;
[0008] An auxiliary mechanism is located on the side of the outer casing, and the auxiliary mechanism is used to blow air to dissipate heat from the inside of the dyeing machine;
[0009] A ventilation mechanism is located on the other side of the housing. The ventilation mechanism is used in conjunction with the auxiliary mechanism to exhaust the hot air inside the dyeing machine.
[0010] Preferably, the auxiliary mechanism includes:
[0011] A support frame, which is fixedly inserted into the side of the outer shell;
[0012] A fixed column is fixedly embedded inside the support frame, and the fixed column has a ventilation cavity inside;
[0013] A fan, wherein the fan is disposed on the side of the fixed column;
[0014] An assembly is mounted on a support frame and is used to install and fix the fan.
[0015] A shielding element, which is located inside the support frame.
[0016] Preferably, the auxiliary mechanism further includes:
[0017] A fixed tube is fixedly connected to the side of a fixed column, and the inner cavity of the fixed tube is in communication with the inner cavity of the ventilation cavity.
[0018] A fixing cover is fixedly sleeved onto the other end of a fixing tube and is positioned over the side of the fan.
[0019] Preferably, the assembly includes:
[0020] A fixing frame, which is fixedly connected to the side of the support frame;
[0021] An assembly frame is fixedly connected to the top of the inner wall of the fixing frame, and the fan is slidably inserted inside the assembly frame;
[0022] The positioning post is threadedly connected to the side of the assembly frame, and one end of the positioning post is in contact with the fan.
[0023] Preferably, the shielding member includes:
[0024] A sealing column, wherein the sealing column is slidably inserted into the inner cavity of the support frame;
[0025] A locking post, which is threadedly inserted into the bottom of the support frame;
[0026] An operating frame is fixedly connected to the side of a sealing column, and a fixed seat is fixedly connected to the top of the inner wall of the operating frame. The end of the locking column is threadedly connected to the inner cavity of the fixed seat.
[0027] Preferably, the ventilation mechanism includes:
[0028] A connecting pipe, which is fixedly inserted through the other side of the outer casing;
[0029] A threaded post, wherein the threaded post is threadedly inserted into the interior of the connecting pipe.
[0030] Another objective of this invention is to provide a high-temperature dyeing machine, which includes the aforementioned cooling mechanism.
[0031] The technical effects and advantages of this utility model are as follows:
[0032] This invention utilizes the cooperation of a support frame, a fixed column, a ventilation cavity, a sealing column, a fan, a fixed pipe, and a threaded column. The inner cavity of the support frame is connected to the inside of the dyeing machine. The sliding of the sealing column connects the inner cavity of the ventilation cavity to the inside of the support frame. The fan blows air into the ventilation cavity, and cooling air enters the inside of the dyeing machine from the inside of the support frame. This causes the threaded column to separate from the fixed pipe, allowing the hot air inside the dyeing machine to be discharged from the inside of the fixed pipe. This facilitates airflow and heat dissipation inside the dyeing machine, thereby improving the heat dissipation effect of the dyeing machine. Attached Figure Description
[0033] Figure 1 This is a front cross-sectional view of the present invention.
[0034] Figure 2 This is a front cross-sectional view of the connecting pipe of this utility model.
[0035] Figure 3 This is a top-view sectional structural diagram of the present invention.
[0036] Figure 4 This is a front cross-sectional view of the support frame of this utility model.
[0037] Figure 5 This is a front sectional view of the threaded column of this utility model.
[0038] Figure 6 This is a schematic diagram of the sealing column structure of this utility model.
[0039] In the diagram: 1. Outer shell; 2. Cooling cavity; 3. Auxiliary mechanism; 31. Support frame; 32. Fixing column; 33. Ventilation cavity; 34. Sealing column; 35. Fixing pipe; 36. Fixing cover; 37. Fan; 38. Fixing bracket; 39. Assembly frame; 310. Positioning column; 311. Locking column; 312. Fixing seat; 313. Operating frame; 4. Connecting pipe; 5. Threaded column. Detailed Implementation
[0040] 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.
[0041] This utility model provides, for example Figure 1-6 The cooling mechanism shown includes a housing 1 with a cooling cavity 2 inside, the housing 1 being connected to a dyeing machine, and the cooling cavity 2 being located between the housing 1 and the dyeing machine; an auxiliary mechanism 3 being disposed on the side of the housing 1, the auxiliary mechanism 3 being used to blow air to dissipate heat from the inside of the dyeing machine; and a ventilation mechanism being disposed on the other side of the housing 1, the ventilation mechanism being used in conjunction with the auxiliary mechanism 3 to exhaust the hot air inside the dyeing machine.
[0042] Furthermore, the auxiliary mechanism 3 includes a support frame 31, a fixing column 32, a fan 37, an assembly, and a shield. The support frame 31 supports the fixing column 32 and facilitates communication between the interior of the support frame 31 and the interior of the dyeing machine. The fixing column 32 seals the interior of the support frame 31 and supports the ventilation cavity 33. The fan 37 blows air into the ventilation cavity 33, thereby blowing air into the interior of the dyeing machine for heat dissipation. The fan 37 is electrically connected to an external power supply via an external switch. The support frame 31 is fixedly inserted into the side of the outer casing 1. The fixing column 32 is fixedly embedded inside the support frame 31. The fixing column 32 has a ventilation cavity 33 inside, which is L-shaped to facilitate the entry of cooling air into the interior of the dyeing machine. The fan 37 is located on the side of the fixing column 32. The assembly is located on the support frame 31 and is used to install and fix the fan 37. The shield is located inside the support frame 31.
[0043] Furthermore, the auxiliary mechanism 3 also includes a fixed tube 35 and a fixed cover 36. The fixed tube 35 and the fixed cover 36 are conducive to communicating with the interior of the ventilation cavity 33 to blow air into the interior of the dyeing machine. The fixed tube 35 is fixedly connected to the side of the fixed column 32, and the inner cavity of the fixed tube 35 is interconnected with the inner cavity of the ventilation cavity 33. The fixed cover 36 is fixedly sleeved on the other end of the fixed tube 35 and covers the side of the fan 37.
[0044] Specifically, the assembly includes a fixing bracket 38, an assembly frame 39, and a positioning post 310. The fixing bracket 38 is Z-shaped and supports the assembly frame 39. The assembly frame 39 is U-shaped and supports the fan 37. The positioning post 310 limits the relative position of the assembly frame 39 and the fan 37, thus facilitating the installation and removal of the fan 37. The fixing bracket 38 is fixedly connected to the side of the support frame 31, and the assembly frame 39 is fixedly connected to the top of the inner wall of the fixing bracket 38. The fan 37 slides inside the assembly frame 39. The positioning post 310 is threadedly connected to the side of the assembly frame 39, and one end of the positioning post 310 is in contact with the fan 37.
[0045] Specifically, the shielding components include a sealing column 34, a locking column 311, and an operating frame 313. The sealing column 34 is beneficial for sealing the interior of the support frame 31 and the interior of the ventilation cavity 33, thereby sealing the interior of the dyeing machine and enabling its normal operation. The sealing column 34, the support frame 31, and the fixing column 32 are all made of high-temperature resistant materials. The locking column 311 is beneficial for cooperating with the fixing seat 312, thereby facilitating the locking and fixing of the sealing column 34. The operating frame 313 is L-shaped, which is beneficial for pulling the sealing column 34 for traction operation. The sealing column 34 is slidably inserted into the inner cavity of the support frame 31. The locking column 311 is threadedly inserted into the bottom of the support frame 31. The operating frame 313 is fixedly connected to the side of the sealing column 34. The top of the inner wall of the operating frame 313 is fixedly connected to the fixing seat 312. The end of the locking column 311 is threadedly inserted into the inner cavity of the fixing seat 312.
[0046] Specifically, the ventilation mechanism includes a connecting pipe 4 and a threaded post 5. The connecting pipe 4 is connected to the dyeing machine. The interior of the connecting pipe 4 facilitates the exhaust of hot air from the dyeing machine, so as to facilitate the convection of cooling air and thus facilitate the blowing and cooling of the interior of the dyeing machine, thereby improving the heat dissipation effect of the dyeing machine. The connecting pipe 4 is fixedly inserted into the other side of the outer shell 1, and the threaded post 5 is threadedly inserted into the interior of the connecting pipe 4.
[0047] This embodiment provides a high-temperature dyeing machine, which includes the cooling mechanism described above.
[0048] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., 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 cooling mechanism characterized by, The utility model relates to a high temperature dyeing machine, including: A shell (1) is internally equipped with a cooling cavity (2); An auxiliary mechanism (3) is arranged on the side of the shell (1), and the auxiliary mechanism (3) is used for blowing and heat dissipation to the inside of the dyeing machine; A ventilation mechanism is arranged on the other side of the shell (1), and the ventilation mechanism is used for cooperating with the auxiliary mechanism (3) to discharge the hot air in the inside of the dyeing machine.
2. A cooling mechanism according to claim 1, wherein The auxiliary mechanism (3) includes: A support frame (31) is fixedly inserted into the side of the shell (1); A fixed column (32) is fixedly embedded in the inside of the support frame (31), and the inside of the fixed column (32) is equipped with a ventilation cavity (33); A fan (37) is arranged on the side of the fixed column (32); An assembly part is arranged on the support frame (31), and the assembly part is used for mounting and fixing the fan (37); A shielding part is located in the inside of the support frame (31).
3. A cooling mechanism according to claim 2, wherein The auxiliary mechanism (3) further includes: A fixed pipe (35) is fixedly connected to the side of the fixed column (32), and the inner cavity of the fixed pipe (35) is in communication with the inner cavity of the ventilation cavity (33); A fixed cover (36) is fixedly sleeved on the other end of the fixed pipe (35), and the fixed cover (36) covers the side of the fan (37).
4. The cooling mechanism according to claim 2, wherein The assembly part includes: A fixed rack (38) is fixedly connected to the side of the support frame (31); An assembly frame (39) is fixedly connected to the top end of the inner wall of the fixed rack (38), and the fan (37) is slidably inserted into the inside of the assembly frame (39); A positioning column (310) is threadedly inserted into the side of the assembly frame (39), and one end of the positioning column (310) is in contact with the fan (37).
5. The cooling mechanism of claim 2, wherein The shielding part includes: A sealing column (34) is slidably inserted into the inner cavity of the support frame (31); A locking column (311) is threadedly inserted into the bottom of the support frame (31); An operation rack (313) is fixedly connected to the side of the sealing column (34), and the top end of the inner wall of the operation rack (313) is fixedly connected with a fixed seat (312), and the end of the locking column (311) is threadedly inserted into the inner cavity of the fixed seat (312).
6. The cooling mechanism of claim 1, wherein The ventilation mechanism includes: A connecting pipe (4) is fixedly inserted into the other side of the shell (1); A threaded column (5) is threadedly inserted into the inside of the connecting pipe (4).
7. A high temperature dyeing machine characterized in that, The high temperature dyeing machine includes the cooling mechanism of any one of claims 1-6.
Citation Information
Patent Citations
Rapid cooling mechanism of high-temperature and high-pressure dyeing machine
CN219240022U