CN219244316U - Cooling device for circulating water system - Google Patents

Cooling device for circulating water system Download PDF

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Publication number
CN219244316U
CN219244316U CN202320079251.8U CN202320079251U CN219244316U CN 219244316 U CN219244316 U CN 219244316U CN 202320079251 U CN202320079251 U CN 202320079251U CN 219244316 U CN219244316 U CN 219244316U
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main part
shell main
heat dissipation
seted
groove
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CN202320079251.8U
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Chinese (zh)
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宋云南
孙斐
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Shandong Jinling Chemistry Co ltd
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Shandong Jinling Chemistry Co ltd
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Abstract

The utility model belongs to the technical field of cooling devices and discloses a circulating water system cooling device which comprises a shell main body, wherein a groove is formed in the shell main body, a pressurizing water pump is arranged in the groove, the output end and the input end of the pressurizing water pump are both connected with water inlet pipes, the water inlet pipes at the input end of the pressurizing water pump penetrate through the shell main body and extend to the outside of the shell main body.

Description

Cooling device for circulating water system
Technical Field
The utility model belongs to the technical field of cooling devices, and particularly relates to a circulating water system cooling device.
Background
In modern production, because the heat generated by the efficient operation of production equipment is rapidly increased, the production efficiency of the production equipment is influenced by the excessively high temperature environment, and the service life of the production equipment is directly reduced, so that a circulating water system cooling device is arranged in most production workshops, the production equipment is cooled by using cooling water, the cooling cost is reduced by using circulating cooling water, the temperature of the production equipment is reduced, and the production efficiency is improved.
When the existing circulating water system cooling device is used for cooling, the heat in the cooling water is taken away by the used evaporative cooling, and meanwhile, water molecules overflow due to the fact that the cooling water is evaporated to form gas, so that the overall quality of the cooling water is gradually reduced, the loss of the cooling water is accelerated, and the circulating water system cooling device is unfavorable for recycling.
Disclosure of Invention
The utility model aims to provide a circulating water system cooling device, which is used for solving the problem that the evaporative cooling proposed in the background art can accelerate the loss of cooling water while taking away the heat in the cooling water.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a circulating water system cooling device, includes the shell main part, the inside of shell main part is seted up flutedly, the internally mounted of recess has the pressurized water pump, the output and the input of pressurized water pump all are connected with into the water pipe, the water pipe that goes into of pressurized water pump input runs through the shell main part and extends to the outside of shell main part, the water pipe that goes into of pressurized water pump output runs through the shell main part and extends to the cooling chamber inside, and the equidistant shower nozzle of installing on the water pipe that goes into of pressurized water pump output, the delivery port has been seted up to the bottom symmetry of shell main part, ventilative recess has been seted up to the bottom central authorities of shell main part, the exhaust hole has been seted up to the symmetry in the shell main part, the radiating main part is installed to the inside of ventilative recess's internally mounted has the fan, the equidistant louvre of having been seted up at the inner wall top of ventilative recess, and the board is installed at the top of ventilative recess, the equidistant symmetry of bottom of shell main part installs the support column, and the controller is installed to the front end face of shell main part.
Preferably, the inside of shell main part just is located the output top of fan and is installed and filter the bag, the fixed slot has been seted up for the position of filter bag to the heat dissipation main part, filter the inside of bag embedding to the fixed slot, and all install the fixed screw on the both ends fixed plate of filter bag symmetrically, the fixed screw runs through the fixed plate and imbeds to the inside of heat dissipation main part, be provided with the filter screen between filter bag and the fan, the filter screen is also installed in the inside of exhaust hole respectively.
Preferably, the mounting groove has been seted up for the position of radiating main part to ventilative recess, radiating main part imbeds to the inside of mounting groove, the restriction groove has all been seted up at radiating main part's bottom both ends, the restriction screw is all installed to the inside in restriction groove, the restriction screw all runs through the inside in restriction groove and imbeds to the inside of shell main part.
Preferably, the heat dissipation holes are all inclined outwards, the water blocking plate is conical and is positioned right below the water inlet pipe, and the diameter of the water blocking plate is larger than that of the ventilation groove.
Preferably, the distance between the exhaust hole and the support column is greater than the distance between the spray head and the support column.
Preferably, the front end face of the shell main body and two sides of the controller are symmetrically provided with the scales.
Compared with the prior art, the utility model has the beneficial effects that:
(1) The utility model is provided with the water inlet pipe, the spray head, the fan and the like, when cooling water, the water in the water pipe is pumped into the water inlet pipe by the pressurized water pump and pressurized, the water is sprayed into the cooling chamber by the spray head, the fan drives external air to enter the cooling chamber through the radiating holes in an accelerating way, the air is contacted with the sprayed cooling water, heat in the cooling water is taken away, the cooling chamber is discharged through the exhaust hole, cooling is completed, the evaporation cooling water is not needed, and the problem that the loss of the cooling water can be accelerated when the heat in the cooling water is taken away by the evaporation cooling is solved.
(2) According to the utility model, the filter bag, the filter screen, the exhaust holes and the like are arranged, when cooling is performed, the fan drives external air to enter the inside of the ventilation groove after passing through the heat dissipation main body, the filter screen is used for primarily filtering the air, and then the filter bag is used for further filtering, so that the problem that dust in the air and cooling water are mixed to generate slime to block a pipeline is solved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is an external view of the present utility model;
fig. 3 is an enlarged view at a in fig. 1;
FIG. 4 is an enlarged view at B in FIG. 1;
in the figure: 1. a water inlet pipe; 2. a spray head; 3. a pressurized water pump; 4. an exhaust hole; 5. a heat radiation hole; 6. a water outlet; 7. a support column; 8. a heat dissipating body; 9. a filter bag; 10. a ventilation groove; 11. a water blocking plate; 12. a housing main body; 13. a filter screen; 14. a ruler; 15. a set screw; 16. a mounting groove; 17. a fixing groove; 18. a limiting screw; 19. a limiting groove; 20. a blower.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present utility model provides the following technical solutions: the utility model provides a circulating water system cooling device, shell main part 12 is fluted, the internally mounted of shell main part 12 has pressurized water pump 3, pressurized water pump 3's output and input all are connected with into water pipe 1, pressurized water pump 3's water pipe 1 of input runs through shell main part 12 and extends to the outside of shell main part 12, pressurized water pump 3's water pipe 1 of output runs through shell main part 12 and extends to the cooling chamber inside, and equidistant shower nozzle 2 of installing on pressurized water pump 3's water pipe 1, the delivery port 6 has been seted up to the bottom symmetry of shell main part 12, ventilation groove 10 has been seted up at the bottom central authorities of shell main part 12, exhaust hole 4 has been seted up to the symmetry on the shell main part 12, heat dissipation main part 8 is installed to ventilation groove 10's inside bottom, fan 20 is installed to the internally mounted of heat dissipation main part 8, ventilation groove 10's inner wall top equidistant heat dissipation hole 5 has been seted up, and ventilation groove 10's top has installed water blocking plate 11, support column 7 is installed to the equidistant symmetry of the bottom of shell main part 12, and the front end face of shell main part 12 installs the controller, and the front end face of shell main part 12 just be located the both sides of controller symmetry and install scale 14.
Through the technical scheme: when cooling water, the inside water of the water pipe connected with the water inlet pipe 1 is pumped into the inside of the water inlet pipe 1 and pressurized by the pressurized water pump 3, the water is uniformly sprayed into the cooling chamber through the spray head 2, the fan 20 is started by the controller, the fan 20 rotates to drive the outside air to accelerate to enter the inside of the cooling chamber through the heat dissipation holes 5, the outside air contacts with the sprayed cooling water, the contact area of the cooling water and the air is enlarged, the air accelerates to take away the heat in the cooling water, the cooled air is discharged out of the inside of the cooling chamber through the air exhaust holes 4, cooling is completed, the evaporating cooling water is not needed, the problem that the evaporating cooling can accelerate the loss of the cooling water while taking away the heat in the cooling water is solved, the cooled cooling water is discharged out of the outer shell main body 12 through the water outlet 6, in addition, the fan 20 drives the air to accelerate to enter the inside of the cooling chamber through the ventilation grooves 10, the inner wall temperature of the ventilation grooves 10 is far lower than the temperature inside the cooling chamber, the sprayed cooling water is guided into the inside the ventilation grooves 10 through the outer shell main body 12 to serve as a heat conductor, the remaining heat is further increased, the cooling efficiency is further increased, the cooling water can be directly added into the cooling staff through the cooling staff, and the cooling staff is convenient to observe the cooling water, and the cooling staff is convenient to add through the cooling staff is reduced, and the cooling staff is convenient to be added.
Further, the heat dissipation holes 5 are all inclined outwards, the water blocking plate 11 is conical and is located right below the water inlet pipe 1, the diameter of the water blocking plate 11 is larger than that of the ventilation groove 10, and the distance between the air exhaust holes 4 and the support columns 7 is larger than that between the spray head 2 and the support columns 7.
Specifically, the cooling water sprayed through the inclined heat dissipation holes 5 cannot enter the heat dissipation holes 5, and then cannot be separated from the inside of the cooling chamber through the heat dissipation holes 5, the conical water blocking plate 11 facilitates the cooling water to slide on the water blocking plate 11, the distance between the air exhaust holes 4 and the support columns 7 is greater than the distance between the spray heads 2 and the support columns 7, and the cooling water is prevented from being discharged out of the main body shell through the air exhaust holes 4.
Referring to fig. 1 and 3-4, a filter bag 9 is installed inside a casing main body 12 and above an output end of a fan 20, a fixing groove 17 is formed at a position of a heat dissipation main body 8 corresponding to the filter bag 9, the filter bag 9 is embedded into the fixing groove 17, fixing screws 15 are symmetrically installed on fixing plates at two ends of the filter bag 9, the fixing screws 15 penetrate through the fixing plates and are embedded into the heat dissipation main body 8, a filter screen 13 is arranged between the filter bag 9 and the fan 20, the filter screen 13 is also respectively installed inside an exhaust hole 4, an installation groove 16 is formed at a position of a ventilation groove 10 corresponding to the heat dissipation main body 8, the heat dissipation main body 8 is embedded into the installation groove 16, limiting grooves 19 are formed at two ends of the bottom of the heat dissipation main body 8, limiting screws 18 are installed inside the limiting grooves 19, and the limiting screws 18 penetrate through the inside of the limiting grooves 19 and are embedded into the casing main body 12.
Through the technical scheme: the fan 20 drives outside air and gets into ventilative recess 10's inside behind the heat dissipation main part 8 when the cooling, filter the back through setting up filter screen 13 in heat dissipation main part 8 is initially to the air, the air after the filtration is further filtered by filter bag 9 again, the dust and the cooling water mix in the air produce the slime and then block up the problem of pipeline, in addition after using for a long time, make heat dissipation main part 8 and shell main part 12 to remove the connection through rotatory restriction screw 18, and take out the inside of shell main part 12 with heat dissipation main part 8 through mounting groove 16, rotatory fixed screw 15 that pulls out, will filter bag 9 and heat dissipation main part 8 are removed and are connected, and then change filter bag 9, in order to improve the filter effect, reduce the possibility that dust and cooling water mix, the filter screen 13 that the inside setting of exhaust hole 4 reduces the dust and gets into the inside possibility of cooling chamber through exhaust hole 4, further guarantee the clean degree of cooling chamber inside.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A circulating water system cooling device, characterized in that: including shell main part (12), the inside of shell main part (12) is seted up flutedly, internally mounted of recess has pressurized water pump (3), output and the input of pressurized water pump (3) all are connected with into water pipe (1), the outside that goes into water pipe (1) of pressurized water pump (3) input runs through shell main part (12) and extends to shell main part (12), the water pipe (1) of pressurized water pump (3) output runs through shell main part (12) and extends to the cooling chamber inside, and equidistant shower nozzle (2) are installed on water pipe (1) of pressurized water pump (3) output, delivery port (6) have been seted up to the bottom symmetry of shell main part (12), ventilation groove (10) have been seted up at the bottom central authorities of shell main part (12), vent hole (4) have been seted up to the symmetry on shell main part (12), heat dissipation main part (8) are installed to the inside bottom of ventilation groove (10), fan (20) are installed to the internally mounted of main part (8), equidistant top of the inner wall of ventilation groove (10) is equidistant on top is installed in water pipe (1) shower nozzle (2), and equidistant top (11) are installed in ventilation groove (10) are installed on the bottom symmetry, and a controller is mounted on the front end face of the housing main body (12).
2. A circulating water system cooling apparatus as claimed in claim 1, wherein: the inside of shell main part (12) and be located the output top of fan (20) and install filter bag (9), fixed slot (17) have been seted up for the position of filter bag (9) in radiating main part (8), filter bag (9) imbeds to the inside of fixed slot (17), and all install dead screw (15) on the both ends fixed plate of filter bag (9) symmetry, dead screw (15) run through the fixed plate and imbed the inside of radiating main part (8), be provided with filter screen (13) between filter bag (9) and fan (20), filter screen (13) also install respectively in the inside of exhaust hole (4).
3. A circulating water system cooling apparatus as claimed in claim 2, wherein: the utility model discloses a heat dissipation device, including ventilation recess (10), heat dissipation main part (8), mounting groove (16) have been seted up for the position of heat dissipation main part (8), the inside of mounting groove (16) has been inlayed to heat dissipation main part (8), restriction groove (19) have all been seted up at the bottom both ends of heat dissipation main part (8), restriction screw (18) are all installed to the inside of restriction groove (19), restriction screw (18) all run through the inside of restriction groove (19) and imbed to the inside of shell main part (12).
4. A circulating water system cooling apparatus as claimed in claim 3, wherein: the heat dissipation holes (5) are all arranged in an outward inclined mode, the water blocking plate (11) is conical and is located right below the water inlet pipe (1), and the diameter of the water blocking plate (11) is larger than that of the ventilation groove (10).
5. The circulating water system cooling apparatus of claim 4, wherein: the distance between the exhaust hole (4) and the support column (7) is larger than the distance between the spray head (2) and the support column (7).
6. The circulating water system cooling apparatus of claim 5, wherein: the front end face of the shell main body (12) and two sides of the controller are symmetrically provided with the scales (14).
CN202320079251.8U 2023-01-09 2023-01-09 Cooling device for circulating water system Active CN219244316U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320079251.8U CN219244316U (en) 2023-01-09 2023-01-09 Cooling device for circulating water system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320079251.8U CN219244316U (en) 2023-01-09 2023-01-09 Cooling device for circulating water system

Publications (1)

Publication Number Publication Date
CN219244316U true CN219244316U (en) 2023-06-23

Family

ID=86846348

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320079251.8U Active CN219244316U (en) 2023-01-09 2023-01-09 Cooling device for circulating water system

Country Status (1)

Country Link
CN (1) CN219244316U (en)

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