CN210559802U - Circulating water system for precursor workshop - Google Patents

Circulating water system for precursor workshop Download PDF

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Publication number
CN210559802U
CN210559802U CN201921299286.2U CN201921299286U CN210559802U CN 210559802 U CN210559802 U CN 210559802U CN 201921299286 U CN201921299286 U CN 201921299286U CN 210559802 U CN210559802 U CN 210559802U
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water
circulating
pipe
storage tank
circulating water
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CN201921299286.2U
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张伟
陈俊
卢泽峰
王日东
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Shanxi Ecic Basalt Development Co ltd
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Shanxi Ecic Basalt Development Co ltd
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Abstract

The utility model relates to a precursor workshop circulating water system, including storage water tank, cooling tower, circulating water tank and sodium ion exchanger, the storage water tank includes cold water inlet, hot water outlet, return water mouth, send mouth of a river and moisturizing mouth, the moisturizing mouth of storage water tank is connected with sodium ion exchanger, send the mouth of a river to connect the water knockout drum through sending the water pump, a plurality of exports of the water knockout drum all are connected with the cooler, wherein are provided with the drain pipe on two coolers; the cooler is connected with a circulating water tank, and the circulating water tank is connected with a water return port of the water storage tank; a cold water inlet and a hot water outlet of the water storage tank are both connected with a cooling tower to form a circulating system; the water separator comprises a main water separating pipe and a plurality of water separating outlets arranged on the main water separating pipe, and a filtering device is arranged at an inlet of the main water separating pipe. Not only improves the purity of water quality, but also avoids the occurrence of pipe blockage accidents, and has good effect through practical operation.

Description

Circulating water system for precursor workshop
Technical Field
The utility model relates to a precursor workshop circulating water system belongs to basalt apparatus for producing technical field.
Background
The circulating water system is one of the necessary conditions for stable and smooth production in a protofilament workshop, and the basalt raw material is melted into rock liquid at the temperature of 1480-1520 ℃ after entering a smelting furnace, and flows out of a platinum-rhodium bushing at the temperature of 1100-1300 ℃ for molding through the traction of a machine head. In the whole production process, the running water is required to be circularly cooled after being completely softened and qualified, and the product performance is improved, so that the water quality, the water temperature, the water pressure and the water level have great influence on normal production and product quality. Any one of the links has a problem, which may cause the occurrence of production stop accidents.
In summer, the weather is hot, the temperature of a workshop is high, the water temperature of circulating water can reach 49 ℃ at most (the normal water temperature is below 30 ℃), the cooling effect on filament roots, bushing plates, transformers and copper clamps is low, the equipment runs in an overload mode, and potential safety hazards exist; meanwhile, the silk root cooling effect can not reach the standard completely, and the breaking strength of the protofilament is reduced.
With the increase of water consumption, the circulating water quantity of a cooling tower is increased, but a workshop circulating water cooling tower, a circulating water tank and a circulating water bucket are basically in a semi-open type, impurities and flocks which are insoluble in water are doped in the process of large circulation inevitably, once the impurities enter a filament root cooling water pipe or a leakage plate cooling water pipe, the occurrence of pipe blockage accidents can be caused (the inner diameter of the filament root cooling water pipe is 1.8mm, and the inner diameter of the leakage plate cooling water pipe is 8 mm), the production is interrupted in a short time if the impurities are light, and the production is stopped if the leakage plate is replaced if the impurities are heavy.
SUMMERY OF THE UTILITY MODEL
The utility model overcomes prior art exists not enough, and the technical problem that solve provides a precursor workshop circulating water system, can reach the purpose that reduces the circulation temperature
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is:
a protofilament workshop circulating water system, which comprises a water storage tank, a cooling tower, a circulating water tank and a sodium ion exchanger,
the water storage tank comprises a cold water inlet, a hot water outlet, a water return port, a water feeding port and a water replenishing port, the water replenishing port of the water storage tank is connected with a sodium ion exchanger, and the sodium ion exchanger is connected with a tap water source; a water delivery port of the water storage tank is connected with a water separator through a water delivery pump, a plurality of outlets of the water separator are connected with coolers, and drain pipes are arranged on the two coolers; the outlets of the coolers are connected with a circulating water tank, and the outlet of the circulating water tank is connected with a water return port of the water storage tank; a cold water inlet and a hot water outlet of the water storage tank are both connected with a cooling tower to form a circulating system;
the water separator comprises a main water dividing pipe and a plurality of water dividing outlets arranged on the main water dividing pipe, a filtering device is arranged at the inlet of the main water dividing pipe, the filtering device comprises a filtering pipe connected with the main water dividing pipe, a plurality of layers of filtering nets are arranged in the filtering pipe, a cleaning hole is arranged at the top of one side of the outlet of the filtering pipe, a sewage discharging hole is arranged at the bottom of one side of the inlet, and the cleaning hole and the sewage discharging hole are both in threaded connection with a detachable sealing cover;
the two sodium ion exchangers are arranged in parallel on a pipeline for connecting a tap water source with the water storage tank.
Preferably, the hot water outlet of the water storage tank is provided with two parallel circulating water outlet pipelines, and the circulating water outlet pipelines are provided with circulating water pumps;
preferably, the cold water inlet of the water storage tank is provided with two parallel circulating water inlet pipelines, and the circulating water inlet pipelines are connected with the cooling tower.
Preferably, the water feeding port of the water storage tank is provided with two water feeding pipes connected in parallel, and the water feeding pipes are provided with water feeding pumps.
Preferably, the number of the circulating water tanks is two.
Preferably, a water delivery pipe of the water delivery port of the water storage tank is also provided with a thermometer.
Preferably, the cooling tower is internally connected with an air-cooled radiator and a cooling copper pipe, the air-cooled radiator comprises an air-cooled coil pipe and a cooling fan, a water inlet and a water outlet of the air-cooled coil pipe are both connected with the cooling tower, and the cooling fan is arranged on one side of the air-cooled coil pipe; and a copper pipe used for cooling water is arranged in the cooling tower and is connected with a cooling compressor.
Preferably, the bottom of the cooler is also provided with a filter screen.
Compared with the prior art, the utility model following beneficial effect has.
The drain pipe is drawn forth to the cooler, and is rationally arranged outward according to the overtemperature condition, and the suction pump in time carries out the running water moisturizing according to the water level decline simultaneously, reaches the purpose that reduces the circulation temperature, realizes that the temperature is controllable and satisfies the production needs.
Through the cooling of arranging outward, the workshop water consumption increases, and running water moisturizing quantity also increases thereupon, and in order to guarantee that circulating water quality of water is qualified, two sodium ion exchangers are started simultaneously, and the salt level is redefined again, and the backwash time is prolonged to a half an hour by an hour before, and the backwash in turn of staggered time. Therefore, the salt level is divided again to be more favorable for fully softening the tap water in the water replenishing process, the backwashing time is prolonged to be more favorable for ensuring the qualified water quality, the two sodium ion exchangers are backwashed alternately at different times, the purpose of one backwashing and one normal water replenishing can be achieved, the normal water level of the circulating water tank is ensured, and the water cut-off accident is avoided.
The filter screen is additionally arranged at the bottom of the cooler and is cleaned regularly, so that the purity of water quality is improved, the occurrence of pipe blockage accidents is avoided, and the effect is good through actual operation.
Drawings
Fig. 1 is a schematic structural diagram of embodiment 1 of the present invention.
Fig. 2 is a schematic structural diagram of embodiment 2 of the present invention.
Fig. 3 is a schematic structural view of a water separator in embodiment 1 of the present invention.
In the figure: the device comprises a water storage tank 1, a cooling tower 2, a circulating water tank 3, a sodium ion exchanger 4, a tap water source 5, a water separator 7, a drain pipe 8, a cooler 9, a cold water inlet 11, a hot water outlet 12, a water return port 13, a water supply port 14, a water replenishing port 15, a water supply pump 16, a circulating water pump 17, a water suction pump 18, a thermometer 19, an air cooling coil 21, a cooling fan 22, a cooling copper pipe 23, a cooling compressor 24, a water separation main pipe 71, a water separation outlet 72, a filter pipe 74, a filter screen 75, a cleaning hole 76, a sewage discharge hole 77, a sealing cover 78, a circulating water inlet pipeline 111, a circulating water outlet pipeline 121 and a water.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
Example 1
A protofilament workshop circulating water system comprises a water storage tank 1, a cooling tower 2, a circulating water tank 3 and a sodium ion exchanger 4;
the water storage tank 1 comprises a cold water inlet 11, a hot water outlet 12, a water return port 13, a water feeding port 14 and a water replenishing port 15, the water replenishing port 15 of the water storage tank 1 is connected with a sodium ion exchanger 4, the sodium ion exchanger is connected with a tap water source 5, and a water suction pump 18 is arranged on the tap water source; a water feeding port 14 of the water storage tank 1 is connected with a water separator 7 through a water feeding pump 16, a plurality of outlets of the water separator 7 are connected with coolers 9, and a water discharging pipe 8 is arranged on each of the two coolers; outlets of the coolers 9 are connected with a circulating water tank 3, and an outlet of the circulating water tank 3 is connected with a water return port 13 of the water storage tank 1; a cold water inlet 11 and a hot water outlet 12 of the water storage tank are both connected with the cooling tower 2 to form a circulating system;
the bottom of the cooler is also provided with a filter screen.
The water separator 7 comprises a main water dividing pipe 71 and a plurality of water dividing outlets 72 arranged on the main water dividing pipe 71, a filtering device is arranged at an inlet of the main water dividing pipe 71 and comprises a filtering pipe 74 connected with the main water dividing pipe, a plurality of layers of filtering nets 75 are arranged in the filtering pipe, a cleaning hole 76 is arranged at the top of one side of an outlet of the filtering pipe 74, a sewage discharge hole 77 is arranged at the bottom of one side of an inlet of the filtering pipe, and the cleaning hole 76 and the sewage discharge hole 77 are both in threaded connection with a detachable sealing cover 78;
in actual use, when the filtering device needs to be cleaned, the sealing covers at the cleaning holes and the sewage discharge holes are opened, the high-pressure water is sprayed into the high-pressure water from the cleaning holes by the high-pressure water spray heads, the filter screen is cleaned, the flushed impurities flow out from the sewage discharge holes, and the sealing covers are covered after the cleaning is finished, so that the filtering device can be used.
The two sodium ion exchangers 4 are arranged in series on a pipeline for connecting a tap water source with the water storage tank.
The hot water outlet 12 of the water storage tank is provided with two parallel circulating water outlet pipelines 121, and the circulating water outlet pipelines are provided with circulating water pumps 17;
the cold water inlet 11 of the water storage tank is provided with two parallel circulating water inlet pipelines 111 which are connected with the cooling tower 2.
The water supply port 14 of the water storage tank is provided with two water supply pipes 141 which are connected in parallel, and the water supply pipes are provided with water supply pumps 16.
The number of the circulating water tanks 3 is two.
A water supply pipe 141 of the water supply port of the water storage tank is also provided with a thermometer 19.
The cooling tower 2 is internally connected with an air-cooled radiator and a cooling copper pipe, the air-cooled radiator comprises an air-cooled coil 21 and a cooling fan 22, a water inlet and a water outlet of the air-cooled coil 21 are both connected with the cooling tower, and the cooling fan 22 is arranged on one side of the air-cooled coil 21; and a cooling copper pipe 23 for cooling water is arranged in the cooling tower, and the cooling copper pipe 23 is connected with a cooling compressor 24.
The water storage tank is also provided with a water level meter.
Example 2
In the circulating water system described in embodiment 1, the two sodium ion exchangers 4 are connected in parallel and disposed on a pipeline connecting a tap water source and a water storage tank.
In actual use, circulating water in the water storage tank is cooled through the cooling tower and then enters the water separator and the cooler from the water feeding port for precursor production and use, the circulating water discharged from the cooler enters the circulating water tank, and the water in the circulating water tank is pumped back to the water storage tank through the pump to be cooled. When the water temperature in the water supply pipe is too high, the water discharge pipe led out by the cooler is used for reasonably discharging hot water according to the overtemperature condition, and meanwhile, the water suction pump timely supplies water to tap water according to the water level reduction, so that the purpose of reducing the circulating water temperature is achieved, the water temperature is controllable, and the production requirement is met.
Through the cooling of arranging outward, the workshop water consumption increases, and running water moisturizing quantity also increases thereupon, and in order to guarantee that circulating water quality of water is qualified, two sodium ion exchangers are started simultaneously, and the salt level is redefined again, and the backwash time is prolonged to a half an hour by an hour before, and the backwash in turn of staggered time. Therefore, the salt level is divided again to be more favorable for fully softening the tap water in the water replenishing process, the backwashing time is prolonged to be more favorable for ensuring the qualified water quality, the two sodium ion exchangers are backwashed alternately at different times, the purpose of one backwashing and one normal water replenishing can be achieved, the normal water level of the circulating water tank is ensured, and the water cut-off accident is avoided.
The water separator is provided with the filtering device, the filter screen is additionally arranged at the bottom of the cooler, and the filtering device and the filter screen are regularly cleaned, so that the purity of water quality is improved, the occurrence of pipe blockage accidents is avoided, and the effect is good through actual operation.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.

Claims (8)

1. A protofilament workshop circulating water system is characterized by comprising a water storage tank, a cooling tower, a circulating water tank and a sodium ion exchanger,
the water storage tank comprises a cold water inlet, a hot water outlet, a water return port, a water feeding port and a water replenishing port, the water replenishing port of the water storage tank is connected with a sodium ion exchanger, and the sodium ion exchanger is connected with a tap water source; a water delivery port of the water storage tank is connected with a water separator through a water delivery pump, a plurality of outlets of the water separator are connected with coolers, and drain pipes are arranged on the two coolers; the outlets of the coolers are connected with a circulating water tank, and the outlet of the circulating water tank is connected with a water return port of the water storage tank; a cold water inlet and a hot water outlet of the water storage tank are both connected with a cooling tower to form a circulating system;
the water separator comprises a main water dividing pipe and a plurality of water dividing outlets arranged on the main water dividing pipe, a filtering device is arranged at the inlet of the main water dividing pipe, the filtering device comprises a filtering pipe connected with the main water dividing pipe, a plurality of layers of filtering nets are arranged in the filtering pipe, a cleaning hole is arranged at the top of one side of the outlet of the filtering pipe, a sewage discharging hole is arranged at the bottom of one side of the inlet, and the cleaning hole and the sewage discharging hole are both in threaded connection with a detachable sealing cover;
the two sodium ion exchangers are arranged in parallel on a pipeline for connecting a tap water source with the water storage tank.
2. A strand mill circulating water system according to claim 1, wherein the hot water outlet of the water storage tank is provided with two parallel circulating water outlet lines, and the circulating water outlet lines are provided with circulating water pumps.
3. A strand mill circulating water system according to claim 1, characterised in that the cold water inlet of the storage tank is provided with two parallel circulating water inlet lines, both of which are connected to a cooling tower.
4. A strand mill circulating water system according to claim 1, wherein the water supply opening of the water storage tank is provided with two water supply pipes connected in parallel, and each water supply pipe is provided with a water supply pump.
5. A strand mill circulating water system according to claim 1, wherein the number of circulating water tanks is two.
6. A strand mill circulating water system according to claim 1, wherein a thermometer is further provided on the water supply pipe of the water supply opening of the water storage tank.
7. The strand workshop circulating water system as claimed in claim 1, wherein an air-cooled radiator and a cooling copper pipe are connected in the cooling tower, the air-cooled radiator comprises an air-cooled coil pipe and a cooling fan, a water inlet and a water outlet of the air-cooled coil pipe are both connected with the cooling tower, and the cooling fan is arranged on one side of the air-cooled coil pipe; and a copper pipe used for cooling water is arranged in the cooling tower and is connected with a cooling compressor.
8. A strand mill circulating water system according to claim 1, wherein a screen is further provided at the bottom of the cooler.
CN201921299286.2U 2019-08-12 2019-08-12 Circulating water system for precursor workshop Active CN210559802U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921299286.2U CN210559802U (en) 2019-08-12 2019-08-12 Circulating water system for precursor workshop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921299286.2U CN210559802U (en) 2019-08-12 2019-08-12 Circulating water system for precursor workshop

Publications (1)

Publication Number Publication Date
CN210559802U true CN210559802U (en) 2020-05-19

Family

ID=70634559

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921299286.2U Active CN210559802U (en) 2019-08-12 2019-08-12 Circulating water system for precursor workshop

Country Status (1)

Country Link
CN (1) CN210559802U (en)

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