Uniform shunting cooling device of mold temperature controller cooling system
The uniform flow cooling device of the mold temperature controller cooling system solves the problem that the mold temperature controller cannot adjust the heat dissipation efficiency according to the mold, realizes the uniform flow of coolant and internal cleaning, and improves the heat dissipation efficiency and the stability of mold forming quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-04-03
AI Technical Summary
The existing mold temperature controller's split cooling device cannot adjust the heat dissipation efficiency according to different molds, resulting in inconsistent cooling speeds and easily causing fluctuations in the molding quality of parts inside the mold.
A uniform flow cooling device for a mold temperature controller cooling system is designed, comprising a heat-conducting plate, a flow-dividing component, an adjustment component, and a cleaning component. The flow-dividing component achieves uniform flow of coolant, the adjustment component adjusts the internal space of the heat-conducting plate, and the cleaning component cleans impurities inside the heat-conducting plate to ensure stable heat dissipation efficiency.
It achieves uniform distribution of coolant, improves cooling speed, adapts to the heat dissipation requirements of different molds, avoids the impact of impurities inside the heat-conducting plate on heat dissipation efficiency, and ensures the stability of mold forming quality.
Smart Images

Figure CN224074928U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mold temperature controller technology, specifically a uniform flow cooling device for a mold temperature controller cooling system. Background Technology
[0002] Mold temperature controllers, also known as mold temperature control machines, were initially used in the temperature control industry of injection molds. Later, with the development of the machinery industry, their applications became more and more widespread. Now, mold temperature controllers are generally divided into water temperature controllers and oil temperature controllers, which have high temperature control accuracy.
[0003] In existing technologies, most mold temperature controllers have their distribution cooling devices fixedly installed within the mold temperature controller's cooling system. When the mold temperature controller dissipates heat to different molds, the cooling speed of the distribution device is consistent, making it inconvenient to adjust the heat dissipation efficiency according to different molds. This can also easily lead to excessive fluctuations in mold cooling, affecting the molding quality of parts inside the mold. Utility Model Content
[0004] To overcome the shortcomings of the existing technologies, a uniform flow cooling device for a mold temperature controller cooling system is proposed.
[0005] The technical solution adopted by this utility model to solve its technical problem is: a uniform flow cooling device for a mold temperature controller cooling system, comprising:
[0006] Heat-conducting plate;
[0007] The flow distribution assembly is installed on the left side of the heat-conducting plate and is used to distribute the coolant entering the heat-conducting plate.
[0008] The splitter component includes:
[0009] A cover plate is snapped onto the left side of the heat-conducting plate. A rubber gasket is adhered to the right side of the cover plate. Mounting blocks are fixedly installed at the front and rear ends of the cover plate. Connecting blocks are fixedly installed at the front and rear ends of the heat-conducting plate. A threaded post is fixedly installed on the right side of the mounting block. A flow divider plate is fixedly installed on the left side of the cover plate. A flow divider pipe is fixedly installed on the right side of the flow divider plate. An inlet pipe is fixedly installed on the left side of the flow divider plate.
[0010] Preferred options also include:
[0011] An adjustment component is installed inside the heat-conducting plate and is used to adjust the size of the internal space of the heat-conducting plate.
[0012] Preferably, the adjustment component includes:
[0013] An adjusting plate is slidably connected to the lower end of the heat-conducting plate. An adjusting nut is rotatably connected to the middle of the lower end of the adjusting plate. The adjusting nut is threadedly connected to the lower end of the heat-conducting plate. Slide rods are fixedly installed on the left and right sides of the lower end of the adjusting plate. A rubber ring is sleeved on the outer side of the adjusting plate.
[0014] Preferred options also include:
[0015] A cleaning component is installed inside the heat-conducting plate and is used to clean the inside of the heat-conducting plate.
[0016] Preferably, the cleaning component includes:
[0017] A sliding column is fixedly installed inside the heat-conducting plate at the front and rear ends. A slider is slidably connected to the outside of the sliding column. A scraper is fixedly installed between the sliders. A baffle is fixedly installed inside the heat-conducting plate on the side of the sliding column near the central axis.
[0018] Preferably, a pull plate is slidably connected inside the baffle, a push plate is fixedly installed on the left side of the pull plate, and the right side of the pull plate is welded to the scraper.
[0019] The beneficial effects of this utility model are:
[0020] This invention features a flow-diverting component that uses a flow-diverting plate to ensure the coolant flows evenly into the heat-conducting plate, thereby increasing the cooling speed of the heat-conducting plate. The flow-diverting component is detachable, allowing for easy adjustment of the flow rate according to different cooling efficiency requirements. Different diameter flow-diverting components can be replaced. Simultaneously, the adjusting component, by rotating a threaded column, drives an adjusting plate to slide, thereby adjusting the internal space of the heat-conducting plate. This facilitates contact between the coolant and the upper part of the heat-conducting plate, improving heat dissipation. A sliding rod ensures the stability of the adjusting plate during sliding.
[0021] The cleaning component of this invention cleans the heat-conducting plate by pulling the push plate, which causes the slider to slide on the slide column, thereby causing the scraper to slide inside the heat-conducting plate. The scraper cleans the inside of the heat-conducting plate by sliding inside the heat-conducting plate, preventing excessive impurities from adhering to the inner wall of the heat-conducting plate and affecting the heat dissipation efficiency of the heat-conducting plate. Attached Figure Description
[0022] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0023] Figure 1 This is a perspective view of the present invention;
[0024] Figure 2 This is a front cross-sectional view of the heat-conducting plate in this utility model;
[0025] Figure 3 This is a cross-sectional view of the cover plate in this utility model;
[0026] Figure 4 This is a cross-sectional view of the heat-conducting plate in this utility model.
[0027] Legend:
[0028] 1. Heat-conducting plate;
[0029] 2. Diverter assembly; 201. Cover plate; 202. Rubber gasket; 203. Mounting block; 204. Connecting block; 205. Threaded post; 206. Diverter plate; 207. Diverter pipe; 208. Inlet pipe;
[0030] 3. Adjustment components; 301. Adjustment plate; 302. Adjustment nut; 303. Slide rod; 304. Rubber ring;
[0031] 4. Cleaning components; 401. Sliding column; 402. Sliding block; 403. Scraper; 404. Baffle; 405. Pull plate; 406. Push plate. Detailed Implementation
[0032] 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 skilled in the art without creative effort are within the protection scope of the present utility model.
[0033] Specific implementation examples are given below.
[0034] Example 1:
[0035] Please see Figures 1 to 4 This utility model provides a uniform flow cooling device for a mold temperature controller cooling system, comprising: a heat-conducting plate 1, a flow-diverting component 2, an adjusting component 3, and a cleaning component 4.
[0036] In this embodiment, the upper end of the heat-conducting plate 1 contacts the mold. The coolant is evenly introduced into the heat-conducting plate 1 through the flow-diverting component 2, thereby improving the heat dissipation efficiency of the heat-conducting plate 1. At the same time, the flow-diverting component 2 is a detachable structure, which makes it easy to replace the flow-diverting component 2 with a suitable flow rate according to different heat dissipation requirements of the mold, so as to ensure that the heat dissipation effect of the mold is within a controllable range. Meanwhile, the adjustment component 3 makes it easy to adjust the internal space of the heat-conducting plate 1 to adapt to the flow-diverting component 2 with different flow rates. The cleaning component 4 makes it easy to clean the inside of the heat-conducting plate, so as to avoid impurities adhering to the inside of the heat-conducting plate 1 and affecting the heat dissipation capacity of the heat-conducting plate 1.
[0037] Example 2:
[0038] Based on Embodiment 1, a flow-diverting component 2 and an adjusting component 3 are further disclosed. The flow-diverting component 2 is installed on the left side of the heat-conducting plate 1 and is used to divert the coolant entering the heat-conducting plate 1. The adjusting component 3 is installed inside the heat-conducting plate 1 and is used to adjust the size of the internal space of the heat-conducting plate 1.
[0039] like Figure 1 , Figure 2 and Figure 3 As shown, the diversion assembly 2 includes: a cover plate 201 snapped onto the left side of the heat-conducting plate 1; a rubber pad 202 adhered to the right side of the cover plate 201; mounting blocks 203 fixedly installed at the front and rear ends of the cover plate 201; docking blocks 204 fixedly installed at the front and rear ends of the heat-conducting plate 1; a threaded post 205 fixedly installed on the right side of the mounting block 203; a diversion plate 206 fixedly installed on the left side of the cover plate 201; a diversion pipe 207 fixedly installed on the right side of the diversion plate 206; and an inlet pipe 208 fixedly installed on the left side of the diversion plate 206. The adjustment assembly 3 includes: an adjustment plate 301 slidably connected to the lower end of the heat-conducting plate 1; an adjustment nut 302 rotatably connected to the middle of the lower end of the adjustment plate 301; a threaded connection between the adjustment nut 302 and the lower end of the heat-conducting plate 1; sliding rods 303 fixedly installed on the left and right sides of the lower end of the adjustment plate 301; and a rubber ring 304 sleeved on the outer side of the adjustment plate 301.
[0040] In this embodiment, when cooling the mold, the upper end of the heat-conducting plate 1 is placed against the mold, and coolant is introduced through the inlet pipe 208 on the distributor plate 206. The cavity inside the distributor plate 206 is connected to the distributor pipe 207, which is inserted into the distributor plate 1. The coolant is diverted into the distributor pipe 207 and then into the heat-conducting plate 1, so that the coolant flows evenly into the heat-conducting plate 1, improving the cooling speed of the heat-conducting plate 1. When the distributor assembly 2 needs to be replaced, the nut on the threaded post 205 is unscrewed, and then the cover plate 201 is slid to the left to disengage it from the heat-conducting plate 1. Then, the right side of the replaced cover plate 201 is placed against the heat-conducting plate 1, and the threaded post 205 is inserted into the mating block 204. Finally, the nut on the nut post 205 is tightened. This pushes the mounting block 203 to slide to the right, and the cover plate 201 slides to the right simultaneously, while squeezing the rubber pad 202 to improve the tightness of the fit between the flow distribution component 2 and the guide plate 1. It also facilitates the disassembly of the flow distribution component 2, making it easy to adjust the flow rate according to different heat dissipation requirements and replace the appropriate flow distribution component 2. At the same time, rotating the adjusting nut 302 causes the adjusting plate 301 to slide inside the heat conduction plate 1, thereby adjusting the internal space of the heat conduction plate 1, making it easier for the coolant to contact the upper end of the heat conduction plate 1 and improve the heat dissipation effect. The slide bar 303 ensures the stability of the adjusting plate 301 when sliding, while the rubber ring 304 ensures the tightness of the contact between the adjusting plate 301 and the heat conduction plate 1, preventing the coolant at the upper end from flowing into the lower end through the gap between the adjusting plate 301 and the guide plate 1.
[0041] Example 3:
[0042] Based on Embodiment 1, a cleaning component 4 is further disclosed. The cleaning component 4 is installed inside the heat-conducting plate 1 and is used to clean the inside of the heat-conducting plate 1.
[0043] like Figure 1 and Figure 4As shown, the cleaning component 4 includes: a sliding column 401 fixedly installed inside the front and rear ends of the heat-conducting plate 1; a slider 402 slidably connected to the outside of the sliding column 401; a scraper 403 fixedly installed between the sliders 402; a baffle 404 fixedly installed inside the heat-conducting plate 1 on the side of the sliding column 401 near the central axis; a pull plate 405 slidably connected inside the baffle 404; a push plate 406 fixedly installed on the left side of the pull plate 405; and the right side of the pull plate 405 welded to the scraper 403.
[0044] In this embodiment, when the inside of the guide plate 1 needs to be cleaned, the diversion component 2 is disassembled, and the push plate 406 is pulled. The push plate 406 drives the pull plate 405 to slide. The pull plate 405 slides in the baffle 404 at the same time, which drives the slider 402 to slide on the sliding column 401, thereby driving the scraper 403 to slide in the heat conduction plate 1. The scraper 403 slides in the heat conduction plate 1 to clean the inside of the heat conduction plate 1, so as to avoid too many impurities adhering to the inner wall of the heat conduction plate 1 and affecting the heat dissipation efficiency of the heat conduction plate 1.
[0045] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.
Claims
1. A uniform distribution cooling device of a mold temperature controller cooling system, characterized in that, The utility model relates to a heat conduction plate, and more particularly to a heat conduction plate with cleaning and adjusting functions. It comprises the following parts: A heat conduction plate (1); A shunt assembly (2) is installed on the left side of the heat conduction plate (1) to shunt the cooling liquid entering the heat conduction plate (1); The shunt assembly (2) comprises the following parts:
2. The uniform distribution cooling device of a mold temperature controller cooling system according to claim 1, wherein, A cover plate (201) is clamped on the left side of the heat conduction plate (1), and a rubber pad (202) is bonded on the right side of the cover plate (201); mounting blocks (203) are fixedly installed on the front and rear ends of the cover plate (201); butt blocks (204) are fixedly installed on the front and rear ends of the heat conduction plate (1); threaded columns (205) are fixedly installed on the right side of the mounting blocks (203); a shunt plate (206) is fixedly installed on the left side of the cover plate (201); a shunt pipe (207) is fixedly installed on the right side of the shunt plate (206); and a liquid inlet pipe (208) is fixedly installed on the left side of the shunt plate (206). It further comprises:
3. The uniform distribution cooling device of a mold temperature controller cooling system according to claim 2, wherein An adjusting assembly (3) is installed inside the heat conduction plate (1) to adjust the size of the internal space of the heat conduction plate (1). The adjusting assembly (3) comprises the following parts:
4. The uniform distribution cooling device of a mold temperature controller cooling system according to claim 1, wherein, An adjusting plate (301) is slidingly connected to the lower end inside the heat conduction plate (1); an adjusting nut (302) is rotatably connected to the lower end of the adjusting plate (301); the adjusting nut (302) is screwed to the lower end of the heat conduction plate (1); slide rods (303) are fixedly installed on the left and right sides of the lower end of the adjusting plate (301); and rubber rings (304) are sleeved on the outer side of the adjusting plate (301). It further comprises:
5. The uniform distribution cooling device of a mold temperature controller cooling system according to claim 4, wherein, A cleaning assembly (4) is installed inside the heat conduction plate (1) to clean the inside of the heat conduction plate (1). The cleaning assembly (4) comprises the following parts:
6. The uniform distribution cooling device of a mold temperature controller cooling system according to claim 5, wherein: Slide columns (401) are fixedly installed on the front and rear ends inside the heat conduction plate (1); slide blocks (402) are slidingly connected to the outer side of the slide columns (401); scraper plates (403) are fixedly installed between the slide blocks (402); and baffle plates (404) are fixedly installed on the side of the heat conduction plate (1) close to the central axis of the slide columns (401). Pull plates (405) are slidingly connected inside the baffle plates (404); push plates (406) are fixedly installed on the left side of the pull plates (405); and the pull plates (405) are welded to the right side of the scraper plates (403).