Krah pipe cooling device
By combining circulating water cooling and air cooling systems, the Krah tube cooling device achieves water resource recycling and uniform cooling, solving the problems of water waste and low cooling efficiency, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202423164071.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-21
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2034-12-21
AI Technical Summary
Existing kraft tube cooling devices suffer from water waste and low cooling efficiency, resulting in high production costs and poor efficiency.
The system combines a circulating water cooling system with an air cooling system. Through multi-layer filtration and atomizing nozzles, water mist is sprayed, and combined with the rotating cooling of the corrugated tube, water recycling and uniform cooling are achieved.
It effectively reduces water consumption, improves cooling efficiency, ensures uniform cooling of all parts of the corrugated tube, shortens cooling time, and reduces production costs.
Smart Images

Figure CN223948317U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of clara pipe production, more specifically, the utility model relates to clara pipe cooling device. BACKGROUND
[0002] Clara pipe is made of high-density polyethylene resin as a kind of pipe, and the outer surface of the pipe is corrugated, which has strong bearing capacity, and the cooling link in the production process directly affects the performance and quality of the pipe, which can meet the requirements of plastic processing industry on clara pipe production efficiency, product quality and dimensional stability, improve the continuity and stability of production, and reduce production cost.
[0003] However, the temperature of the pipe itself is high when the clara pipe is finished, and it takes too long to cool naturally, and using artificial water cooling not only wastes manpower, but also is not too ideal in effect, and the production efficiency cannot be improved.
[0004] According to the search, the Chinese patent with the authorization announcement number CN210910816U discloses a kind of clara pipe cooling device, the structure is cooled by cooling fan, cold air is blown to connecting plate by second pipe and third pipe, and cold air is evenly blown to clara pipe by the through hole being set on connecting plate, while water in water storage tank is sprayed to the clara pipe placed in upper position by atomizing nozzle, so that clara pipe reaches the effect of double cooling, in addition, by the rotation of motor rotating shaft, the rotation of clara pipe is further realized, and by the ball being set on the surface of support column, the friction between clara pipe and support column is reduced when clara pipe rotates, not only the effect of water spray cooling is realized, but also cooling rate is improved, and working efficiency is further improved, and automatic operation is realized.
[0005] However, the structure is used in actual use, and water in water storage tank is sprayed to the clara pipe placed in upper position by atomizing nozzle, and the clara pipe is cooled, but the residual cold water sprayed by atomizing nozzle is directly deposited in the bottom of box, so that water resource is wasted, and production cost is increased. UTILITY MODEL CONTENT
[0006] In order to overcome the above-mentioned defects of prior art, the utility model provides clara pipe cooling device to solve the problems in the above background art.
[0007] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0008] Clara pipe cooling device, including cooling box, the side of cooling box is set open, the inside of cooling box is fixedly provided with water storage box, the inside of water storage box is fixedly provided with inclined filter screen, one side of water storage box is provided with circulating mechanism.
[0009] The circulating mechanism comprises a conveying pipe penetrating through one side of the water storage box, one end of the conveying pipe penetrating through the cooling box and extending to the outside of the cooling box, a support plate penetratingly arranged at one end of the conveying pipe, a filter cabinet fixedly arranged at the top of the support plate, one end of the conveying pipe penetratingly connected with the filter cabinet, two filter frames fixedly arranged in the filter cabinet, a filter layer slidingly connected in each of the two filter frames, a connecting pipe penetratingly arranged at the top of the filter cabinet, a circulating water pump penetratingly arranged at one side of the connecting pipe, a fixed pipe fixedly arranged at the output end of the circulating water pump, the fixed pipe penetrating through the cooling box and extending to the inside of the cooling box, a distribution frame penetratingly arranged at one end of the fixed pipe, a plurality of atomizing nozzles penetratingly arranged at the bottom of the distribution frame, the distribution frame fixedly connected with the inner wall of the cooling box, the support plate fixedly connected with the surface of the cooling box, a sealing cabinet door hingedly arranged at one side of the filter cabinet, a connecting strip fixedly arranged at one side of the sealing cabinet door, a connecting frame fixedly arranged at one side of the filter cabinet, the connecting strip and the connecting frame inserted, and threaded holes formed in the surfaces of the connecting strip and the connecting frame and in which bolts are fixedly arranged.
[0010] By adopting the above technical scheme: through multi-layer filtration, the circulating water can be finely filtered, the water quality is improved, the nozzle is prevented from being blocked, the atomizing cooling effect is ensured to be good and long-lasting, and the filter layer in the filter cabinet can be conveniently replaced and maintained, thereby facilitating long-term and efficient use of the device.
[0011] As a further description of the above technical scheme: the inside of the cooling box is provided with an auxiliary mechanism, the auxiliary mechanism comprises a wind box fixedly arranged at the top of the cooling box, a fan fixedly installed in the inside of the wind box, a wind conveying pipe fixedly arranged at the output end of the fan, one end of the wind conveying pipe penetrating through the cooling box and extending to the inside of the cooling box, a branch pipe frame fixedly arranged at one end of the wind conveying pipe, a plurality of air outlets penetratingly arranged at one side of the branch pipe frame, a stabilizing plate fixedly arranged at one side of the cooling box, an electric motor installed at the top of the stabilizing plate, a rotating shaft fixedly arranged at the output end of the electric motor, one end of the rotating shaft penetrating through the cooling box and extending to the inside of the cooling box, a rubber layer fixedly arranged on the surface of the rotating shaft, a plurality of stabilizing frames fixedly arranged at the top of the water storage box, an installation groove formed in the inside of each of the plurality of stabilizing frames, and a plurality of rollers rotatably arranged in the installation groove.
[0012] By adopting the above technical scheme: the air cooling and the atomizing water cooling are cooperatively used to accelerate heat dissipation of the kala tube, improve the cooling efficiency, shorten the cooling time, drive the kala tube to rotate, and ensure that each part of the kala tube uniformly contacts the cooling medium, thereby ensuring the cooling uniformity and improving the product quality.
[0013] As a further description of the above technical solutions: one side of the water storage box is provided with a water inlet pipe, one end of the water inlet pipe penetrates the cooling box and extends outside the cooling box, one side of the water inlet pipe is fixedly provided with a water stop valve, the surface of the water storage box is provided with a discharge port, one side of the cooling box is fixedly provided with a fixed frame, the inside of the fixed frame is slidably connected with a collection box, one side of the collection box is rotatably provided with a clamping strip, one side of the clamping strip is clamped with a clamping block, and the clamping block is connected with the fixed frame.
[0014] By adopting the above technical scheme: the water inlet pipe cooperates with the water stop valve to facilitate the replenishment of new water to the water storage box, the water quantity can be flexibly adjusted, the cooling circulating water is ensured to be sufficient, the stable cooling operation is maintained, the impurities generated in the cooling process can be conveniently collected and cleaned, and the maintenance efficiency of the whole cooling device is improved.
[0015] The technical effects and advantages of the utility model are as follows:
[0016] 1. By setting the circulating mechanism, compared with the prior art, the water is uniformly sprayed in the form of atomization to the inside space of the cooling box through multiple atomizing nozzles, so that the water can be in contact with the surface of the krah pipe in all directions and uniformly, and the filter layer finely filters the circulating water in the filter cabinet, which can effectively remove various impurities in the water, greatly improve the cleanliness of the circulating water, realize the recycling of the water in the water storage box, and only a small amount of water loss due to evaporation needs to be supplemented during the whole krah pipe cooling process, compared with the direct discharge mode after using fresh water once, the consumption of water resources is greatly reduced, and the water cost in production is reduced.
[0017] 2. By setting the auxiliary mechanism, compared with the prior art, the water cooling directly takes away a large amount of heat on the surface of the krah pipe through the principle of water evaporation and heat absorption; and the air cooling accelerates the flow speed of the air on the surface of the krah pipe on this basis, promotes the heat to be dissipated to the surrounding environment at a faster rate, the two complement each other, greatly enhances the overall cooling effect, so that the heat can be quickly conducted from the inside of the pipe to the surface, and quickly dissipated, thereby effectively shortening the time required for the krah pipe to reach a suitable cooling temperature, and the krah pipe is in a rotating state during cooling, combined with the uniformly dispersed atomized water spraying and the air cooling airflow blowing, so that each part of the whole krah pipe can uniformly contact the cooling medium, effectively avoiding the occurrence of local overheating or insufficient cooling. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is an overall structure schematic view of the utility model.
[0019] Figure 2 It is an overall rear view structure schematic view of the utility model.
[0020] Figure 3The utility model discloses a circulating mechanism structure schematic drawing.
[0021] Figure 4 The utility model discloses an auxiliary mechanism structure schematic drawing.
[0022] Figure 5 The utility model discloses an overall side view cross section structure schematic drawing.
[0023] Figure 6 The utility model discloses a collection box detail structure schematic drawing.
[0024] The drawing mark is: 1, cooling box, 2, water storage box, 3, inclined filter screen, 4, conveying pipe, 5, support plate, 6, filter cabinet, 7, filter frame, 8, filter layer, 9, connecting pipe, 10, circulating water pump, 11, fixed pipe, 12, distribution frame, 13, atomizing nozzle, 14, sealing cabinet door, 15, connecting strip, 16, connecting frame, 17, bolt, 18, wind box, 19, air conveying pipe, 20, branch pipe frame, 21, air outlet, 22, motor, 23, rotating shaft, 24, stabilizing frame, 25, roller, 26, water inlet pipe, 27, discharge port, 28, fixed frame, 29, collection box, 30, clamping strip, 31, clamping block. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative work are within the protection scope of the utility model.
[0026] The application embodiment discloses a clara tube cooling device as shown in Figures 1-6 The utility model discloses a cooling box 1 one side sets the opening, and the inside fixed setting of cooling box 1 has water storage box 2, and the inside fixed setting of water storage box 2 has inclined filter screen 3, and water storage box 2 one side is provided with circulating mechanism;
[0027] The circulating mechanism comprises a conveying pipe 4 penetratingly arranged on one side of the water storage box 2, one end of the conveying pipe 4 penetratingly extending to the outside of the cooling box 1, the top of a supporting plate 5 fixedly arranged on one end of the conveying pipe 4, a filter cabinet 6 fixedly arranged on the top of the supporting plate 5, one end of the conveying pipe 4 penetratingly connected with the filter cabinet 6, two filter frames 7 fixedly arranged in the filter cabinet 6, a filter layer 8 slidingly connected in each of the filter frames 7, a connecting pipe 9 penetratingly arranged on the top of the filter cabinet 6, a circulating water pump 10 penetratingly arranged on one side of the connecting pipe 9, a fixed pipe 11 fixedly arranged at the output end of the circulating water pump 10, one end of the fixed pipe 11 penetratingly extending to the inside of the cooling box 1, a distribution frame 12 penetratingly arranged on one end of the fixed pipe 11, a plurality of atomizing nozzles 13 penetratingly arranged on the bottom of the distribution frame 12, the distribution frame 12 fixedly connected with the inner wall of the cooling box 1, the supporting plate 5 fixedly connected with the surface of the cooling box 1, a sealing cabinet door 14 hingedly arranged on one side of the filter cabinet 6, a connecting strip 15 fixedly arranged on one side of the sealing cabinet door 14, a connecting frame 16 fixedly arranged on one side of the filter cabinet 6, the connecting strip 15 and the connecting frame 16 insertedly connected, threaded holes formed in the surfaces of the connecting strip 15 and the connecting frame 16, and bolts 17 fixedly arranged in the threaded holes.
[0028] Reference Figures 2-4As shown, the inside of the cooling box 1 is provided with an auxiliary mechanism, which includes a wind box 18 fixedly arranged at the top of the cooling box 1, a fan fixedly installed inside the wind box 18, an output end of the fan fixedly provided with a wind pipe 19, one end of the wind pipe 19 penetrating through the cooling box 1 and extending into the inside of the cooling box 1, the wind pipe 19 fixedly provided with a branch pipe frame 20 at one end, a plurality of air outlets 21 penetratingly arranged on one side of the branch pipe frame 20, a stabilizing plate fixedly arranged on one side of the cooling box 1, a motor 22 installed on the top of the stabilizing plate, an output end of the motor 22 fixedly provided with a rotating shaft 23, one end of the rotating shaft 23 penetrating through the cooling box 1 and extending into the inside of the cooling box 1, a rubber layer fixedly arranged on the surface of the rotating shaft 23, a plurality of stabilizing frames 24 fixedly arranged on the top of the water storage box 2, an installation groove arranged in the inside of each of the stabilizing frames 24, and a plurality of rollers 25 rotatably arranged in the installation groove. The staff member sends the processed krah pipe from the opening on one side of the cooling box 1 into the inside of the cooling box 1, at the same time, the krah pipe is sleeved on the rotating shaft 23 and placed on the rollers 25 in the stabilizing frames 24. At this time, the inner wall of the krah pipe is attached to the rubber layer on the outer surface of the rotating shaft 23. The rubber layer can increase the friction between the krah pipe and the rotating shaft 23 on one hand, and avoid damaging the surface of the krah pipe on the other hand. Then, the motor 22 installed on the stabilizing plate is started. The motor 22 drives the rotating shaft 23 to rotate, and in turn drives the krah pipe to rotate on the rollers 25. The rollers 25 can reduce the friction when the krah pipe rotates, facilitate the slow rotation of the krah pipe with the rotating shaft 23, and facilitate subsequent cooling. The fan installed in the wind box 18 is started. The external air is sucked into the wind box 18, and then is transported to the inside of the branch pipe frame 20 through the wind pipe 19, and is uniformly dispersed to the surface of the krah pipe through the plurality of air outlets 21. The air cooling and the above-mentioned water cooling process cooperate with each other. The water cooling takes away the heat of the krah pipe, the air cooling accelerates the flow speed of the air on the surface of the krah pipe, promotes the heat to be emitted to the surrounding environment more quickly, further enhances the cooling effect, improves the cooling efficiency, makes the krah pipe reach the appropriate cooling temperature in a shorter time, and ensures that the krah pipe rotates, in turn, to guarantee that each part of the krah pipe can be uniformly contacted with the atomized water and the air cooling flow, so that the cooling effect is more uniform on the whole krah pipe, and the situation of local overheating or insufficient cooling is avoided.
[0029] Reference Figures 5-6As shown, a water inlet pipe 26 is installed through one side of the water storage box 2. One end of the water inlet pipe 26 passes through the cooling box 1 and extends to the outside of the cooling box 1. A stop valve is fixedly installed on one side of the water inlet pipe 26. A discharge port 27 is opened on the surface of the water storage box 2. A fixing frame 28 is fixedly installed on one side of the cooling box 1. A collection box 29 is slidably connected inside the fixing frame 28. A locking strip 30 is rotatably installed on one side of the collection box 29. A locking block 31 is locked on one side of the locking strip 30. The locking block 31 is connected to the fixing frame 28. Cooling water is then replenished to the water storage box 2 through the water inlet pipe 26. The stop valve on the water inlet pipe 26 can control the water flow as needed. The system allows for flexible water replenishment based on the inflow situation. The inclined filter screen 3 inside the water storage box 2 can perform preliminary filtration of the water entering it, intercepting larger particles of impurities in the water and preventing these impurities from entering the subsequent circulation pipeline, thus ensuring the normal operation of the circulation system. Since the inclined filter screen 3 is set in an inclined position, it can drive large particles of impurities through the discharge port 27 into the collection box 29 located in the fixed frame 28 on one side of the cooling box 1. When it is necessary to clean the collection box 29, simply rotate the locking strip 30 to disengage it from the locking block 31, and the collection box 29 can be pulled out from the fixed frame 28 for easy cleaning of the collected impurities.
[0030] Working principle of this utility model:
[0031] This utility model is a kraft tube cooling device. When using the device, the operator sends the processed kraft tube into the cooling box 1 through an opening on one side of the cooling box 1. At the same time, the kraft tube is sleeved on the rotating shaft 23 and placed on the roller 25 inside the stabilizing frame 24. At this time, the inner wall of the kraft tube is in contact with the rubber layer on the outer surface of the rotating shaft 23. This rubber layer can increase the friction between the kraft tube and the roller 23, and avoid damage to the surface of the kraft tube. Then, the motor 22 installed on the stabilizing plate is started. When the motor 22 is working, it drives the rotating shaft 23 to rotate, which in turn drives the kraft tube to rotate on multiple rollers 25. The rollers 25 can reduce the friction when the kraft tube rotates, so that the kraft tube can rotate slowly with the rotating shaft 23, which is convenient for subsequent cooling.
[0032] Next, cooling water is added to the water storage box 2 through the water inlet pipe 26. The water stop valve on the water inlet pipe 26 can control the water inflow as needed, realizing flexible water replenishment operation. The inclined filter screen 3 inside the water storage box 2 can perform preliminary filtration on the water entering it, intercepting larger particles of impurities in the water, preventing these impurities from entering the subsequent circulation pipeline, and ensuring the normal operation of the circulation system. Since the inclined filter screen 3 is set in an inclined position, it drives large particles of impurities to fall through the discharge port 27 into the collection box 29 located in the fixed frame 28 on one side of the cooling box 1. When it is necessary to clean the collection box 29, simply rotate the locking strip 30 to disengage it from the locking block 31, and the collection box 29 can be pulled out from the fixed frame 28 for easy cleaning of the collected impurities.
[0033] Then start circulating water pump 10, the water in the storage box 2 is extracted through the delivery pipe 4, the water enters the filter cabinet 6, and then passes through the filter layer 8 in the two filter frames 7 in turn for fine filtering, one of which is quartz sand, which has the advantages of high hardness, stable chemical properties, wear resistance and not easy to break, and its surface has certain porosity, which can effectively intercept the suspended impurities in the water, and the other is fiber filter cloth material, which has the characteristics of good flexibility, high filtering precision and strong pollution capacity, and its surface forms a fine mesh structure, which can accurately intercept the tiny particles, colloids and part of bacterial impurities in the water, thereby improving the filtering effect. The water filtered through the filter cabinet 6 is sent to the fixed pipe 11 through the connecting pipe 9 at the top, and then sent into the distribution frame 12 through the fixed pipe 11, and then uniformly sprayed into the cooling box 1 through the multiple atomizing nozzles 13. When the atomized water contacts the kral pipe, the heat on the surface of the kral pipe is quickly taken away by using the principle of water evaporation, so as to realize the cooling of the kral pipe and ensure the production quality and performance of the kral pipe.
[0034] At the same time, start the fan installed in the air box 18, the external air is sucked into the air box 18, and then sent to the branch pipe frame 20 through the air supply pipe 19, and then uniformly dispersed to the surface of the kral pipe through the multiple air outlets 21. The air cooling cooperates with the above-mentioned water cooling process, the water cooling takes away the heat of the kral pipe, and the air cooling accelerates the flow speed of the air on the surface of the kral pipe, so as to make the heat dissipate to the surrounding environment more quickly, further enhance the cooling effect, improve the cooling efficiency, and make the kral pipe reach the appropriate cooling temperature in a shorter time. Moreover, the kral pipe is rotating, so as to ensure that each part of the kral pipe can uniformly contact the atomized water and the air flow, so that the cooling effect is more uniform on the whole kral pipe, and the situation of local overheating or insufficient cooling is avoided.
[0035] With the increase of use time, the filter layer 8 needs to be cleaned and replaced. Reverse the rotating bolt 17, drive the bolt 17 out of the inside of the connecting strip 15 and the connecting frame 16, then pull the sealing cabinet door 14 outward, drive the connecting strip 15 out of the inside of the connecting frame 16, then pull the filter layer 8 in the filter cabinet 6 outward, and then drive the filter layer 8 out of the inside of the filter frame 7, and then clean and replace the filter layer 8, so as to ensure that the filter cabinet 6 can continuously and stably play the filtering role.
[0036] The above are the preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.
Claims
1. Cooling device for Krauss tubes, comprising a cooling box (1), characterized in that: One side of the cooling box (1) is provided with an opening, the inside of the cooling box (1) is fixedly provided with a water storage box (2), the inside of the water storage box (2) is fixedly provided with an inclined filter screen (3), one side of the water storage box (2) is provided with a circulating mechanism; The circulating mechanism comprises a conveying pipe (4) penetratingly arranged on one side of the water storage box (2), one end of the conveying pipe (4) penetrates through the cooling box (1) and extends to the outside of the cooling box (1), one end of the conveying pipe (4) is penetratingly provided with a supporting plate (5), the top of the supporting plate (5) is fixedly provided with a filter cabinet (6), one end of the conveying pipe (4) is penetratingly connected with the filter cabinet (6), the inside of the filter cabinet (6) is fixedly provided with two filter frames (7), the inside of each of the two filter frames (7) is slidingly connected with a filter layer (8), the top of the filter cabinet (6) is penetratingly provided with a connecting pipe (9), one side of the connecting pipe (9) is penetratingly provided with a circulating water pump (10), the output end of the circulating water pump (10) is fixedly provided with a fixed pipe (11), one end of the fixed pipe (11) penetrates through the cooling box (1) and extends to the inside of the cooling box (1), one end of the fixed pipe (11) is penetratingly provided with a distribution frame (12), the bottom of the distribution frame (12) is penetratingly provided with a plurality of atomizing nozzles (13).
2. The clara cell cooling device of claim 1, wherein: The distribution frame (12) is fixedly connected with the inner wall of the cooling box (1), one side of the supporting plate (5) is fixedly connected with the surface of the cooling box (1), one side of the filter cabinet (6) is hingedly provided with a sealing cabinet door (14), one side of the sealing cabinet door (14) is fixedly provided with a connecting strip (15), one side of the filter cabinet (6) is fixedly provided with a connecting frame (16), the connecting strip (15) is inserted into the connecting frame (16), screw holes are formed in the surfaces of the connecting strip (15) and the connecting frame (16), and bolts (17) are fixedly arranged in the screw holes.
3. The clamping tube cooling device of claim 1, wherein: The inside of the cooling box (1) is provided with an auxiliary mechanism, the auxiliary mechanism comprises a wind box (18) fixedly arranged on the top of the cooling box (1), a fan is fixedly installed in the inside of the wind box (18), the output end of the fan is fixedly provided with a wind conveying pipe (19), one end of the wind conveying pipe (19) penetrates through the cooling box (1) and extends to the inside of the cooling box (1), one end of the wind conveying pipe (19) is fixedly provided with a branch pipe frame (20), and a plurality of air outlets (21) are penetratingly arranged on one side of the branch pipe frame (20).
4. The clamping tube cooling device of claim 1, wherein: One side of the cooling box (1) is fixedly provided with a stabilizing plate, a motor (22) is installed on the top of the stabilizing plate, the output end of the motor (22) is fixedly provided with a rotating shaft (23), one end of the rotating shaft (23) penetrates through the cooling box (1) and extends to the inside of the cooling box (1), and a rubber layer is fixedly arranged on the surface of the rotating shaft (23).
5. The clamping tube cooling device of claim 1, wherein: A plurality of stabilizing frames (24) are fixedly arranged on the top of the water storage box (2), and mounting grooves are formed in the insides of the stabilizing frames (24), a plurality of rollers (25) are rotatably arranged in the mounting grooves.
6. The clara tube cooling device of claim 1, wherein: One side of the water storage box (2) is provided with a water inlet pipe (26), one end of the water inlet pipe (26) penetrates the cooling box (1) and extends to the outside of the cooling box (1), and one side of the water inlet pipe (26) is fixedly provided with a water stop valve.
7. The clamping tube cooling device of claim 1, wherein: The surface of the water storage box (2) is provided with a discharge port (27), one side of the cooling box (1) is fixedly provided with a fixed frame (28), the inside of the fixed frame (28) is slidably connected with a collecting box (29), one side of the collecting box (29) is rotatably provided with a clamping strip (30), one side of the clamping strip (30) is clamped with a clamping block (31), and the clamping block (31) is connected with the fixed frame (28).
Citation Information
Patent Citations
Krah pipe cooling device
CN210910816U