CN211261855U - Novel cooling water tank - Google Patents

Novel cooling water tank Download PDF

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Publication number
CN211261855U
CN211261855U CN201921747319.5U CN201921747319U CN211261855U CN 211261855 U CN211261855 U CN 211261855U CN 201921747319 U CN201921747319 U CN 201921747319U CN 211261855 U CN211261855 U CN 211261855U
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cooling water
cooling chamber
water tank
cooling
temperature
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CN201921747319.5U
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吴桂发
李龙
谭玉凤
龚玺
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Laoken Medical Technology Co Ltd
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Laoken Medical Technology Co Ltd
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Abstract

The utility model relates to an exhaust steam, waste water treatment equipment technical field, concretely relates to novel cooling water tank, the power distribution box comprises a box body, set gradually one-level cooling chamber, second grade cooling chamber and tertiary cooling chamber from the dextrad left in the box, be provided with the entry on the lateral wall of one-level cooling chamber, one-level cooling chamber top is provided with condenser tube, first baffle bottom is provided with first delivery port, second baffle top is provided with the second delivery port, be provided with export and drain on the lateral wall of tertiary cooling chamber respectively. The utility model discloses can effectively get rid of sterilizer drain exhaust waste steam, avoid it to discharge in the atmosphere, can also cool down sterilizer drain exhaust high temperature waste water below the setting value simultaneously, on the mixed liquid temperature that guarantees tertiary cooling chamber keeps the basis of predetermined temperature value constantly, the quantity of saving cooling water improves resource utilization.

Description

Novel cooling water tank
Technical Field
The utility model relates to the technical field of waste steam and waste water treatment equipment, in particular to a cooling water tank for waste steam treatment of a pulsating vacuum pressure steam sterilizer.
Background
The pulsating vacuum pressure steam sterilizer is a medical apparatus for sterilizing high-temperature resistant moisture-proof articles by alternately vacuumizing and filling steam into a sterilization chamber for many times (saturated steam is filled into the sterilization chamber after the sterilization chamber reaches a certain vacuum degree) and finally reaching a set pressure and temperature. Is used for the moist heat sterilization of medical instruments and surgical instruments and the drying treatment after the sterilization. It can be divided into a large-sized pulsation vacuum sterilizer and a small-sized pulsation vacuum sterilizer according to the volume. The pulse vacuum sterilizer uses saturated water vapor as a sterilization medium, adopts an air removal mode of mechanical forced pulse vacuum, and forcibly evacuates air in an inner chamber through the alternate action of vacuumizing and injecting steam for 3-4 times, so that the air removal amount reaches more than 99 percent, the cold spot in the sterilization chamber is thoroughly eliminated, the temperature dead angle is completely removed, and microbial protein is denatured, solidified and inactivated under the action of high temperature and high pressure, thereby achieving the purpose of sterilization. Vacuum dehumidification and high-temperature drying at 132-134 ℃ by a sterilizer jacket ensure that sterilized articles are dry and clean, and the articles are not wet and scalded when taken out.
The medical instrument can be effectively sterilized by the pulsating vacuum pressure steam sterilizer, and the conventional pulsating vacuum pressure steam sterilizer equipment, such as the pulsating vacuum pressure steam sterilizer disclosed by Chinese patent publication No. CN205612766U, comprises a shell, wherein a sterilizing device, a steam generating device and a vacuumizing device are arranged in the shell, the sterilizing device comprises a sterilizing chamber and a sterilizing chamber door body hinged on the sterilizing chamber, the sterilizing chamber comprises an inner chamber and a jacket sleeved outside the inner chamber, a jacket cavity is formed between the outer wall of the inner chamber and the inside of the jacket, the steam generating device is communicated with the jacket cavity of the sterilizing chamber, the vacuumizing device is communicated with the inner chamber of the sterilizing chamber, the jacket cavity is communicated with the inner chamber through an air inlet pipeline, a pneumatic valve is arranged on the air inlet pipeline, and a steam generating device for controlling the steam generating device is arranged on the shell, The PLC control system of evacuating device and pneumatic valve, this pulsation vacuum steam sterilizer's inner chamber pressure obtains effectual control to effectual effect and the safe in utilization that has improved this pulsation vacuum steam sterilizer sterilization, but this pulsation vacuum steam sterilizer lacks waste liquid cooling arrangement, and pulsation vacuum pressure steam sterilizer can produce the mixed waste liquid of steam and water in the sterilization process, if direct discharge, has potential threat.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art not enough, provide a simple structure, it is convenient to use, can cooperate the pulsation vacuum pressure steam sterilizer to carry out the novel coolant tank of effective processing to the mixed waste liquid of steam and water. This novel cooling water tank can effectively get rid of sterilizer drain exhaust steam, avoids it to discharge in the atmosphere, can also cool down below the setting value sterilizer drain exhaust high temperature waste water simultaneously to through temperature detecting element real-time detection temperature, through the valve aperture of control chip control cooling water valve, on the mixed liquid temperature that guarantees tertiary cooling chamber keeps the basis of predetermined temperature value constantly, the quantity of saving cooling water improves resource utilization.
The purpose of the utility model is realized through the following technical scheme:
the utility model provides a novel cooling water tank, the power distribution box comprises a box body, first baffle and second baffle have set gradually from the right side left in the box, first baffle, second baffle separate the box for from the right side left in proper order set up side by side one-level cooling chamber, second grade cooling chamber and tertiary cooling chamber, be provided with the entry on the lateral wall of one-level cooling chamber, one-level cooling chamber top is provided with condenser tube, first baffle bottom is provided with first delivery port, second baffle top is provided with the second delivery port, be provided with export and drain on the lateral wall of tertiary cooling chamber respectively.
Furthermore, the primary cooling chamber is of a closed structure and is communicated with the secondary cooling chamber through a first water outlet. In the actual use process, for the high-temperature wastewater containing water vapor, the high-temperature wastewater containing water vapor is introduced into the inlet and enters the primary cooling chamber through the inlet, because the primary cooling chamber is of a closed structure, and the first water outlet is positioned at the bottom of the first partition plate, the water vapor and the high-temperature wastewater are mixed, meanwhile, in order to achieve the effect of rapid cooling, the cooling water pipe can be opened, cooling water is introduced into the primary cooling chamber, the water vapor and the high-temperature wastewater are mixed and cooled by the cooling water, the effects of removing water vapor and cooling are achieved, the mixed liquid flows into the secondary cooling chamber from the first water outlet, because the second water outlet is positioned at the top of the second partition plate, the flow stroke of the mixed liquid is increased, the mixing time of the cooling water and the high-temperature wastewater is prolonged, the cooling effect is improved, and in addition, the height of the second water outlet, make the mixed liquid that is detained in the second grade cooling chamber can submerge first delivery port completely to guarantee that steam can't flow from first delivery port alone, let steam must mix the back with cooling water, high temperature waste water and discharge, realize getting rid of completely of steam.
Furthermore, a cooling water valve is arranged on the cooling water pipe.
Furthermore, a temperature detection unit is arranged in the three-stage cooling chamber and is linked with the cooling water valve. The temperature detection unit is used for detecting the temperature of the mixed liquid in the three-stage cooling chamber, when the temperature of the mixed liquid in the three-stage cooling chamber is detected to be higher than a preset value, the opening degree of a cooling water valve can be increased, and the amount of cooling water injected into the first-stage cooling chamber is increased, so that the cooling effect is improved, and the temperature of the mixed liquid reaching the three-stage cooling chamber reaches the preset value; when the temperature detection unit detects that the temperature of the mixed liquid in the three-stage cooling chamber is lower than the preset value, the opening degree of the cooling water valve can be reduced or the cooling water valve can be closed, and the injection of cooling water is reduced or stopped, so that the cooling effect is reduced, the temperature of the mixed liquid reaching the three-stage cooling chamber is kept at the preset temperature value, the consumption of the cooling water is saved, and the resource utilization rate is improved.
Further, the temperature detection unit is a temperature sensor.
Furthermore, the cooling water tank also comprises a control chip, and the control chip is respectively connected with the temperature detection unit and the cooling water valve. Detect the temperature of the mixed liquid in the tertiary cooling chamber through temperature detecting element to transmit temperature data to control chip, control chip controls the valve aperture of regulation cooling water valve according to the user demand, thereby control the injection volume that cooling water lets in the one-level cooling chamber, real-time detection guarantees that discharged mixed liquid temperature can not exceed the setting value.
Furthermore, the cooling water tank also comprises an alarm module, and the alarm module is connected with the control chip. Utilize the temperature detecting element to detect the temperature of the interior mixed liquid of tertiary cooling chamber, when the temperature that detects is not in the predetermined value within range, alarm module sends corresponding alarm information, the suggestion user increases or reduces the inflow flow of cooling water.
Further, the alarm module is an alarm.
Further, the cooling water tank also comprises a power supply, and the power supply is connected with the control chip.
Furthermore, control valves are respectively arranged on the inlet, the outlet and the sewage draining exit, and the control valves are respectively connected with the control chip.
Furthermore, the cooling water tank also comprises a human-computer interaction module, and the human-computer interaction module is connected with the control chip.
Furthermore, the human-computer interaction module is a touch display screen.
The utility model has the advantages that: the utility model discloses a cooling water tank can effectively get rid of sterilizer drain exhaust steam, avoids it to discharge in the atmosphere, can also lower the temperature of sterilizer drain exhaust high temperature waste water below the setting value simultaneously to through temperature detecting element real-time detection temperature, through the valve aperture of control chip control cooling water valve, on the mixed liquid temperature that guarantees tertiary cooling chamber keeps the basis of predetermined temperature value constantly, the quantity of saving cooling water improves resource utilization.
Drawings
FIG. 1 is a schematic structural view of a cooling water tank of the present invention;
FIG. 2 is a sectional view of the cooling water tank of the present invention;
FIG. 3 is a schematic diagram of module connection of the control chip of the present invention;
in the figure, 1-a box body, 2-a first partition plate, 3-a second partition plate, 4-a primary cooling chamber, 5-a secondary cooling chamber, 6-a tertiary cooling chamber, 7-an inlet, 8-a cooling water pipe, 9-a first water outlet, 10-a second water outlet, 11-an outlet, 12-a sewage discharge outlet, 13-a cooling water valve, 14-a temperature detection unit and 15-a man-machine interaction module.
Detailed Description
The technical solution of the present invention is described in further detail below with reference to the accompanying drawings, but the scope of the present invention is not limited to the following description.
As shown in figures 1-3, a novel cooling water tank, comprises a tank body 1, first baffle 2 and second baffle 3 have set gradually from the right side left in the box body 1, first baffle 2, second baffle 3 separate box 1 for from the right side left in proper order set up one-level cooling chamber 4, second grade cooling chamber 5 and tertiary cooling chamber 6 side by side, be provided with entry 7 on the lateral wall of one-level cooling chamber 4, one-level cooling chamber 4 top is provided with cooling water pipe 8, 2 bottoms of first baffle are provided with first delivery port 9, 3 tops of second baffle are provided with second delivery port 10, be provided with export 11 and drain 12 on the lateral wall of tertiary cooling chamber 6 respectively.
Specifically, the primary cooling chamber 4 is of a closed structure, and the primary cooling chamber 4 is communicated with the secondary cooling chamber 5 through a first water outlet 9. In the actual use process, for the high-temperature wastewater containing water vapor, the high-temperature wastewater containing water vapor is introduced into the inlet 7 and enters the primary cooling chamber 4 through the inlet 7, because the primary cooling chamber 4 is of a closed structure, and the first water outlet 9 is positioned at the bottom of the first partition plate 2, so that the water vapor must be mixed with the high-temperature wastewater, meanwhile, in order to achieve the effect of thorough and rapid cooling, the cooling water pipe 8 can be opened, cooling water is introduced into the primary cooling chamber 4, the water vapor and the high-temperature wastewater are mixed and cooled by the cooling water, the effects of removing the water vapor and reducing the temperature are achieved, the mixed liquid flows into the secondary cooling chamber 5 from the first water outlet 9, because the second water outlet 10 is positioned at the top of the second partition plate 3, the flow stroke of the mixed liquid is increased, the mixing time of the cooling water and the high-temperature wastewater is prolonged, the height of second delivery port 10 is higher than first delivery port 9 for the mixed liquid that is detained in second grade cooling chamber 5 can submerge first delivery port 9 completely, thereby guarantees that steam can't flow out from first delivery port 9 alone, lets steam discharge after must mixing with cooling water, high temperature waste water, realizes getting rid of completely of steam.
Specifically, a cooling water valve 13 is arranged on the cooling water pipe 8.
Specifically, a temperature detection unit 14 is arranged in the third-stage cooling chamber 6, and the temperature detection unit 14 is linked with the cooling water valve 13. The temperature detection unit 14 is used for detecting the temperature of the mixed liquid in the three-stage cooling chamber 6, when the temperature of the mixed liquid in the three-stage cooling chamber 6 is detected to be higher than a preset value, the opening degree of the cooling water valve 13 can be increased, and the amount of cooling water injected into the first-stage cooling chamber 4 is increased, so that the cooling effect is improved, and the temperature of the mixed liquid reaching the three-stage cooling chamber 6 reaches the preset value; when the temperature detection unit 14 detects that the temperature of the mixed liquid in the three-stage cooling chamber 6 is lower than the preset value, the opening degree of the cooling water valve 13 can be reduced or the cooling water valve 13 is closed, and the injection of cooling water is reduced or stopped, so that the cooling effect is reduced, the temperature of the mixed liquid in the three-stage cooling chamber 6 is kept at the preset temperature value, the consumption of the cooling water is saved, and the resource utilization rate is improved.
Specifically, the temperature detection unit 14 is a temperature sensor.
Specifically, the cooling water tank further comprises a control chip, and the control chip is respectively connected with the temperature detection unit 14 and the cooling water valve 13. The temperature of the mixed liquid in the three-stage cooling chamber 6 is detected through the temperature detection unit 14, the temperature data is transmitted to the control chip, and the control chip controls and adjusts the valve opening of the cooling water valve 13 according to the use requirement, so that the injection amount of the cooling water introduced into the one-stage cooling chamber 4 is controlled, real-time detection is carried out, and the temperature of the discharged mixed liquid is guaranteed not to exceed a set value.
Specifically, the cooling water tank further comprises an alarm module, and the alarm module is connected with the control chip. The temperature of the mixed liquid in the tertiary cooling chamber 6 is detected by the temperature detection unit 14, and when the detected temperature is not within the preset value range, the alarm module sends out corresponding alarm information to prompt a user to increase or reduce the inflow of the cooling water.
Specifically, the alarm module is an alarm. Preferably, the cooling water tank further comprises a flow monitoring module, and the flow monitoring module is connected with the control chip and used for detecting the flow of liquid in the tank body; when the flow monitoring module detects that the flow of liquid in the box body is too large or water in the box body is short, the alarm module sends out corresponding alarm information.
Specifically, the cooling water tank further comprises a power supply, and the power supply is connected with the control chip.
Specifically, the inlet 7, the outlet 11 and the sewage draining exit 12 are respectively provided with a control valve, and the control valves are respectively connected with the control chip.
Specifically, the cooling water tank further comprises a human-computer interaction module 15, and the human-computer interaction module 15 is connected with the control chip.
Specifically, the human-computer interaction module 15 is a touch display screen.
When in use, the cooling water tank of the utility model can be used for the steam removal and cooling treatment of the mixed waste water of steam and water generated by the work of the pulsating vacuum pressure steam sterilizer, in particular to introduce the high temperature waste water containing the steam generated by the pulsating vacuum pressure steam sterilizer into the inlet 7 and enter the primary cooling chamber 4 through the inlet 7, because the primary cooling chamber 4 is of a closed structure, and the first water outlet 9 is positioned at the bottom of the first clapboard 2, the steam is mixed with the high temperature waste gas, simultaneously, in order to achieve the purpose of improving the cooling effect, the cooling water pipe 8 can be opened, the cooling water is introduced into the primary cooling chamber 4, the steam and the high temperature waste water are mixed and cooled together by the cooling water, the effect of removing the steam and cooling is achieved, the mixed liquid after mixing flows into the secondary cooling chamber 5 from the first water outlet 9, because the second water outlet 10 is positioned at the top of the second clapboard 3, in addition, the height of the second water outlet 10 is higher than that of the first water outlet 9, so that the mixed liquid retained in the secondary cooling chamber 5 can completely submerge the first water outlet 9, the water vapor cannot flow out from the first water outlet 9 alone, the water vapor is discharged after being mixed with the cooling water and the high-temperature wastewater, and the water vapor is completely removed; after the mixed liquid reaches the third-stage cooling chamber 6, the temperature of the mixed liquid in the third-stage cooling chamber 6 is detected by using the temperature detection unit 14, and when the temperature of the mixed liquid in the third-stage cooling chamber 6 is detected to be higher than a preset value, the opening degree of the cooling water valve 13 can be increased, and the amount of cooling water injected into the first-stage cooling chamber is increased, so that the cooling effect is improved, and the temperature of the mixed liquid reaching the third-stage cooling chamber 6 reaches the preset value; when the temperature detection unit 14 detects that the temperature of the mixed liquid in the three-stage cooling chamber 6 is lower than the preset value, the opening degree of the cooling water valve 13 can be reduced or the cooling water valve 13 is closed, and the injection of cooling water is reduced or stopped, so that the cooling effect is reduced, the temperature of the mixed liquid in the three-stage cooling chamber 6 is kept at the preset temperature value at any time, the consumption of the cooling water is saved, and the resource utilization rate is improved; the mixed liquid after steam removal and cooling can be discharged through the outlet 11 or the sewage discharge outlet 12, so that the steam removal and cooling treatment of the mixed wastewater of the steam and the water at the water outlet of the pulsating vacuum pressure steam sterilizer is realized.
The foregoing is illustrative of the preferred embodiments of the present invention, and it is to be understood that the invention is not limited to the precise forms disclosed herein, and that various other combinations, modifications, and environments may be resorted to, falling within the scope of the invention as defined by the appended claims. But that modifications and variations may be effected by those skilled in the art without departing from the spirit and scope of the invention, which is to be limited only by the claims appended hereto.

Claims (10)

1. The utility model provides a novel cooling water tank, a serial communication port, the power distribution box comprises a box body, first baffle and second baffle have set gradually in the box from the right side left, first baffle, second baffle separate the box for from the right side left side set gradually one-level cooling chamber, second grade cooling chamber and tertiary cooling chamber side by side, be provided with the entry on the lateral wall of one-level cooling chamber, one-level cooling chamber top is provided with condenser tube, first baffle bottom is provided with first delivery port, second baffle top is provided with the second delivery port, be provided with export and drain on the lateral wall of tertiary cooling chamber respectively.
2. The novel cooling water tank is characterized in that the primary cooling chamber is of a closed structure, and the primary cooling chamber is communicated with the secondary cooling chamber through the first water outlet.
3. The novel cooling water tank as claimed in claim 1, wherein a cooling water valve is arranged on the cooling water pipe.
4. The novel cooling water tank as claimed in claim 3, wherein a temperature detection unit is arranged in the tertiary cooling chamber, and the temperature detection unit is linked with the cooling water valve.
5. The novel cooling water tank as claimed in claim 4, wherein the cooling water tank further comprises a control chip, and the control chip is respectively connected with the temperature detection unit and the cooling water valve.
6. The novel cooling water tank is characterized by further comprising an alarm module, wherein the alarm module is connected with the control chip.
7. The novel cooling water tank is characterized by further comprising a power supply, and the power supply is connected with the control chip.
8. The novel cooling water tank as claimed in claim 5, wherein the inlet, the outlet and the sewage draining outlet are respectively provided with a control valve, and the control valves are respectively connected with the control chip.
9. The novel cooling water tank is characterized in that the cooling water tank further comprises a human-computer interaction module, and the human-computer interaction module is connected with the control chip.
10. The novel cooling water tank as claimed in claim 9, wherein the human-computer interaction module is a touch display screen.
CN201921747319.5U 2019-10-17 2019-10-17 Novel cooling water tank Active CN211261855U (en)

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CN201921747319.5U CN211261855U (en) 2019-10-17 2019-10-17 Novel cooling water tank

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Application Number Priority Date Filing Date Title
CN201921747319.5U CN211261855U (en) 2019-10-17 2019-10-17 Novel cooling water tank

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CN211261855U true CN211261855U (en) 2020-08-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115607698A (en) * 2022-10-20 2023-01-17 张家港市环宇制药设备有限公司 Steam-water separation and discharge device for sterilization cabinet

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115607698A (en) * 2022-10-20 2023-01-17 张家港市环宇制药设备有限公司 Steam-water separation and discharge device for sterilization cabinet
CN115607698B (en) * 2022-10-20 2024-04-19 张家港市环宇制药设备有限公司 Steam-water separation and discharge device for sterilizing cabinet

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