Energy-saving cooling shaping device
By introducing a cooling mechanism with support and water cooling circulation into the plastic pipe cooling device, the problem of pipe deformation was solved, efficient cooling and water resource recycling were achieved, the cooling effect was improved and water resources were saved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN BAITONG PIPE IND CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-04-10
AI Technical Summary
Existing plastic pipe cooling devices lack support structures, which may cause the freshly melted pipes to deform, affecting the cooling effect.
A cooling mechanism, including a support pipe and a cooling cylinder, is installed between the extruder body and the cooling box. The water cooling circulation mechanism is used for initial cooling and support, the cooling ring pipe is used for spray cooling, and the water resources are recycled through a recycling mechanism.
It effectively prevents pipe deformation, improves cooling effect, and realizes the recycling of water resources, achieving the goal of energy and water conservation.
Smart Images

Figure CN224103499U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of pipe production, and specifically is an energy-saving cooling and shaping device. BACKGROUND
[0002] Plastic pipe is a tubular product made of plastic, used for transporting liquid, gas and solid materials. Plastic pipe has the characteristics of light weight, corrosion resistance, high breaking strength, easy processing, etc., and is widely used in various fields. For example, a PE pipe shaping and cooling device is disclosed in the patent with the authorization announcement number CN221717797U. Water in the water storage tank is transported to the water spray pipe through the connecting pipe by starting the pump body one, and is uniformly sprayed from the spray head to the pipe, thereby cooling and shaping the pipe. The water after use falls into the water collecting tank through the water collecting channel, thereby facilitating the collection of cooling water. The stirring rod is driven to rotate by starting the motor, and the stirring paddle is driven to rotate by the stirring rod to stir the collected cooling water, thereby rapidly cooling the cooling water. Then, the cooling water after cooling is filtered by the filter screen, and is transported to the water storage tank through the reflux pipe one and the reflux pipe two, thereby recycling the cooling water and avoiding waste of water resources, and being more energy-saving and environmentally friendly.
[0003] However, the above-mentioned device still has the following disadvantages. The pipe formed by hot melting may deform itself due to the lack of a supporting mechanism, affecting the cooling effect.
[0004] Therefore, the energy-saving cooling and shaping device is provided to eliminate the disadvantages of the existing device. UTILITY MODEL CONTENTS
[0005] The utility model aims to provide an energy-saving cooling and shaping device to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] The energy-saving cooling and shaping device comprises a base and an extruder body. The base is fixedly provided with a cooling box. The cooling box is provided with a cooling mechanism. The cooling mechanism is communicated with a water cooling circulation mechanism through a water delivery pipe. The bottom of the cooling box is provided with a recovery mechanism. The recovery mechanism is communicated with the water cooling circulation mechanism through a water pumping pipe. A cooling mechanism is arranged between the extruder body and the cooling box. The cooling mechanism is communicated with the water cooling circulation mechanism through a water inlet pipe. A water pump is arranged on the water delivery pipe, the water pumping pipe and the water inlet pipe.
[0008] On the basis of the above-mentioned technical scheme, the utility model also provides the following optional technical scheme:
[0009] In an alternative: the cooling mechanism comprises a support pipe, a cooling cylinder and a refrigeration pipe, the cooling cylinder is wrapped outside the support pipe, the refrigeration pipe is annularly distributed in the cooling cylinder, the water inlet end of the refrigeration pipe is connected with the water inlet pipe, the water outlet end of the refrigeration pipe is connected with the water outlet pipe, and the water outlet pipe is communicated with the cooling box.
[0010] In an alternative: the cooling mechanism comprises a cooling ring pipe, the inner wall of the cooling ring pipe is provided with a plurality of spray heads, and the top end of the cooling ring pipe is connected with a shunt pipe extending to the outside of the cooling box and connected with the water supply pipe.
[0011] In an alternative: the water cooling circulation mechanism comprises a cooling device, the cooling device is provided with a semiconductor refrigeration module, and the top of the cooling device is provided with a water injection port.
[0012] In an alternative: the recovery mechanism comprises a water collecting tank arranged at the bottom of the cooling box, and the top of the water collecting tank is provided with a filter plate.
[0013] In an alternative: the cooling box is provided with a drying mechanism at the end away from the cooling mechanism.
[0014] In an alternative: the drying mechanism comprises a drying box, the two sides of the drying box are provided with through holes allowing the pipeline to pass through, the inner wall of the drying box is provided with a hot air fan at the top, and the position, where the drying box is provided with the hot air fan, is provided with a filter screen.
[0015] In an alternative: the drying box is provided with an elastic scraper in the through hole close to the cooling mechanism, and the elastic scraper is made of silica gel.
[0016] Compared with the prior art, the utility model has the advantages that:
[0017] The utility model discloses a cooling mechanism and a recovery mechanism arranged between the extruder body and the cooling box, which can support and preliminarily cool the pipe material just formed by hot melting, avoid the deformation of the pipe material due to its own weight, and affect the cooling effect. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall structure schematic diagram of the utility model.
[0019] Figure 2 It is the overall back structure schematic diagram of the utility model.
[0020] Figure 3 It is the cooling mechanism sectional view schematic diagram of the utility model.
[0021] Figure 4 It is overall structure section view schematic diagram of the utility model.
[0022] Mark annotation: 1, base; 2, extruder body; 3, cooling mechanism; 301, support tube; 302, cooling cylinder; 303, refrigeration pipe; 4, cooling box; 5, water collecting tank; 6, filter plate; 7, water outlet pipe; 8, water inlet pipe; 9, cooling ring pipe; 10, spray head; 11, water delivery pipe; 12, drying box; 13, elastic scraper; 14, hot air blower; 15, water suction pipe; 16, cooling device; 17, water inlet; 18, filter screen. DETAILED DESCRIPTION
[0023] In order to make the utility model purposes, technical scheme and advantages more clearly, following combining with the drawing and example, the utility model is further detailed.
[0024] In one embodiment, as shown in Figures 1-4 Energy-saving cooling and shaping device, including base 1 and extruder body 2, the base 1 is fixedly provided with cooling box 4, the cooling box 4 is provided with cooling mechanism, the cooling mechanism is communicated with water cooling circulation mechanism by water delivery pipe 11, the bottom of cooling box 4 is provided with recovery mechanism, the recovery mechanism is communicated with water cooling circulation mechanism by water suction pipe 15, the extruder body 2 is provided with cooling mechanism 3 between cooling box 4, the cooling mechanism 3 is communicated with water cooling circulation mechanism by water inlet pipe 8, water delivery pipe 11, water suction pipe 15 and water inlet pipe 8 are all provided with water pump;
[0025] In the embodiment, a cooling mechanism 3 is arranged between the extruder body 2 and the cooling box 4, which supports and preliminarily cools the pipe material just formed by hot melting, avoids the deformation of the pipe material due to its own weight, and affects the cooling effect, and the cooling mechanism 3 and the cooling mechanism share a water cooling circulation mechanism, and the recovery mechanism can collect and reuse the used water, thereby saving energy and water.
[0026] In one embodiment, as shown in Figure 3 The cooling mechanism 3 includes a support tube 301, a cooling cylinder 302 and a refrigeration pipe 303, the cooling cylinder 302 is wrapped outside the support tube 301, the refrigeration pipe 303 is annularly distributed in the cooling cylinder 302, the water inlet end of the refrigeration pipe 303 is connected with the water inlet pipe 8, the water outlet end of the refrigeration pipe 303 is connected with the water outlet pipe 7, the water outlet pipe 7 is communicated with the cooling box 4, the pipe material just formed by hot melting is extruded through the support tube 301, which plays a certain supporting role, the support tube 301 is wrapped with the hollow cooling cylinder 302, when the cooling water passes through the refrigeration pipe 303, the pipe material in the support tube 301 can be preliminarily cooled and formed, and the deformation of the pipe material due to its own weight is avoided.
[0027] In one embodiment, as shown in Figure 1 and Figure 4 The cooling mechanism includes a cooling ring tube 9, the inner wall of the cooling ring tube 9 is provided with a plurality of spray heads 10, the top end of the cooling ring tube 9 is connected with a shunt pipe, the shunt pipe extends to the outside of the cooling box 4 and is connected with a water pipe 11, after the pipe material enters the cooling box 4, the spray head 10 sprays cold water to cool the passing pipe material;
[0028] In one embodiment, as shown in Figure 2 The water cooling circulation mechanism includes a cooling device 16, the cooling device 16 is provided with a semiconductor refrigeration module, the top of the cooling device 16 is provided with a water inlet 17, after the cooling device 16 cools the water, the cooled water is pumped into the cooling mechanism and the cooling mechanism 3 through the suction pump;
[0029] In one embodiment, as shown in Figure 4 The recovery mechanism includes a water collecting tank 5 arranged at the bottom of the cooling box 4, the top of the water collecting tank 5 is provided with a filter plate 6, the used water is filtered through the filter plate 6 and collected in the water collecting tank 5, the water is pumped into the cooling device 16 through the water suction pipe 15 for cooling and using again, achieving the effect of energy saving and water saving;
[0030] In one embodiment, as shown in Figure 4 The cooling box 4 is provided with a drying mechanism at the end away from the cooling mechanism, the drying mechanism is used for drying the pipe after being sprayed and cooled;
[0031] In one embodiment, as shown in Figure 4 The drying mechanism includes a drying box 12, the two sides of the drying box 12 are provided with through holes through which the pipe passes, the inner wall of the drying box 12 is provided with a hot air fan 14 at the top, the position of the drying box 12 provided with the hot air fan 14 is provided with a filter screen 18, the hot air fan 14 can dry the moisture on the surface of the pipe when working, and the filter screen 18 can prevent dust from being sucked in;
[0032] In one embodiment, as shown in Figure 4 The through hole of the drying box 12 close to the cooling mechanism is provided with an elastic scraper 13, the elastic scraper 13 is made of silica gel, the elastic scraper 13 is used for scraping off the moisture on the surface of the pipe before the pipe enters the drying mechanism, improving the drying effect.
[0033] The above embodiment discloses an energy-saving cooling and shaping device, wherein a cooling mechanism 3 is arranged between the extruder body 2 and the cooling box 4, the hot melt formed pipe material is extruded through the supporting pipe 301, the supporting pipe 301 is wrapped with the cooling cylinder 302 with a hollow inside, when the cooling water passes through the refrigeration pipe 303, the pipe material in the supporting pipe 301 can be preliminarily cooled and shaped to avoid the deformation of the pipe material due to its own weight, the pipe material enters the cooling box 4, the spray head 10 sprays the cold water to cool the passing pipe material, the cooling mechanism 3 and the cooling mechanism share a water cooling circulation mechanism, the cooling device 16 cools the water, the cooling water is pumped into the cooling mechanism and the cooling mechanism 3 through the pumping pump, at the same time, the used water is filtered through the filter plate 6 and collected in the water collecting tank 5, the water is pumped into the cooling device 16 through the water pumping pipe 15 to be cooled again, which achieves the effect of energy saving and water saving.
[0034] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. Energy saving cooling and setting device comprising a base (1) and an extruder body (2), characterized in that, The base (1) is fixedly provided with a cooling box (4), the cooling box (4) is provided with a cooling mechanism, the cooling mechanism is communicated with a water cooling circulation mechanism through a water pipe (11), the bottom of the cooling box (4) is provided with a recycling mechanism, the recycling mechanism is communicated with the water cooling circulation mechanism through a water pump (15), the extruder body (2) and the cooling box (4) are provided with a cooling mechanism (3), the cooling mechanism (3) is communicated with the water cooling circulation mechanism through a water inlet pipe (8), the water pipe (11), the water pump (15) and the water inlet pipe (8) are provided with a water pump.
2. The energy saving cooling and setting device according to claim 1, wherein The cooling mechanism (3) comprises a supporting pipe (301), a cooling cylinder (302) and a refrigeration pipe (303), the cooling cylinder (302) is wrapped outside the supporting pipe (301), the cooling cylinder (302) is annularly distributed with the refrigeration pipe (303), the water inlet end of the refrigeration pipe (303) is connected with the water inlet pipe (8), the water outlet end of the refrigeration pipe (303) is connected with a water outlet pipe (7), and the water outlet pipe (7) is communicated with the cooling box (4).
3. The energy saving cooling and setting device according to claim 1, wherein The cooling mechanism comprises a cooling ring pipe (9), the inner wall of the cooling ring pipe (9) is provided with a plurality of spray heads (10), the top end of the cooling ring pipe (9) is connected with a shunt pipe, and the shunt pipe extends out of the cooling box (4) and is connected with the water pipe (11).
4. The energy saving cooling and setting device according to claim 2, wherein The water cooling circulation mechanism comprises a cooling device (16), the cooling device (16) is provided with a semiconductor refrigeration module, and the top of the cooling device (16) is provided with a water inlet (17).
5. The energy saving cooling and setting device according to claim 4, wherein The recycling mechanism comprises a water collecting tank (5) arranged at the bottom of the cooling box (4), and the top of the water collecting tank (5) is provided with a filter plate (6).
6. The energy efficient cooling and setting device as claimed in claim 1, wherein, The cooling box (4) is provided with a drying mechanism at the end away from the cooling mechanism.
7. The energy saving cooling and setting device according to claim 6, wherein The drying mechanism comprises a drying box (12), the two sides of the drying box (12) are provided with through holes through which pipes can pass, the inner wall top of the drying box (12) is provided with a hot air fan (14), and the position, at which the drying box (12) is provided with the hot air fan (14), is provided with a filter screen (18).
8. The energy saving cooling and setting device according to claim 7, wherein The through hole, which is close to the cooling mechanism, of the drying box (12) is provided with an elastic scraper (13), and the elastic scraper (13) is made of silica gel.
Citation Information
Patent Citations
PE pipe shaping and cooling device
CN221717797U