CN205895580U - Glass microsphere cooling device - Google Patents
Glass microsphere cooling device Download PDFInfo
- Publication number
- CN205895580U CN205895580U CN201620867753.7U CN201620867753U CN205895580U CN 205895580 U CN205895580 U CN 205895580U CN 201620867753 U CN201620867753 U CN 201620867753U CN 205895580 U CN205895580 U CN 205895580U
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- cold rinse
- rinse bank
- level sensor
- peristaltic pump
- pole
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Abstract
Glass microsphere cooling device including the cold water groove, is equipped with a level sensor and the 2nd level sensor on the cold gutter sides, and a level sensor lies in the 2nd level sensor's top, seted up water inlet and outlet on the cold water groove, the water inlet in cold water groove communicates with each other through the delivery port of working shaft with the cistern, and the outlet in cold water groove communicates with each other through the water inlet of control valve with the cistern, be equipped with the peristaltic pump in cold water groove top, the pump head of peristaltic pump lies in the cold water inslot, is provided with temperature sensor on the pump head of peristaltic pump, and a level sensor, the 2nd level sensor, temperature sensor, control valve and working shaft all link to each other with main control unit, water temperature sensor and temperature sensor have been installed at the cold water inslot to under the effect of main control unit and working shaft, realize the control to cold water inslot water level and temperature, make the utility model discloses can last and cool down to the peristaltic pump pump head, guarantee the peristaltic pump and can work for a long time, improve work efficiency.
Description
Technical field
The utility model belongs to Emulsion Explosive Production field and in particular to glass microsphere cooling device.
Background technology
Use hollow glass micro-ball sensitised emulsion explosive, improve explosive effect, improve the stability of emulsion, durability,
Improve storage time, blast working task can be completed under compared with deep water, can effectively reduce pressure desensitization, improve demolition effect.
Due to much more contour than perlite, CBA (cream) of hollow glass micro-ball price, domestic emulsion explosive production line is still at present
Not using high-volume hollow glass micro-ball desensibilization emulsion, and all in experimental stage.
Using the perlite feeding device conveying hollow glass micro-ball on domestic production line, in production line batch sensitised emulsion
There is problems in that conveying hollow glass micro-ball is uneven during explosive, live hollow glass micro-ball disperses the dust easily causing, empty
Bin blanking that heart glass microsphere self compacting ability causes is uneven etc., and therefore domestic existing emulsion explosive production line perlite is defeated
The continuous conveying that device can not meet hollow glass micro-ball is sent to produce.External emulsion explosive production line hollow glass micro-ball conveying
Device, is mainly made up of vacuum equipment, delivery pump, meter etc., and equipment cost puts into height, and maintenance difficulty is big.
At present, the conveying equipment of the more domestic test with hollow glass micro-ball sensitised emulsion explosive has, 1. spiral transferring
Send plus metering device, shortcoming is that conveying is uneven, and live dust is big, operating difficulties;2. fed it is impossible to overcome sky using peristaltic pump
The self compacting ability of heart glass microsphere, easily causes fracture, and hollow glass micro-ball feed bin vibrator is produced in enormous quantities it is impossible to meet,
On-site noise is larger;3. the radiating larger with peristaltic tube (silica gel material) frictional heat of peristaltic pump rotor roller is difficult, and causing can not
Long-time use, fragile sebific duct and temperature too high damage motor.
Utility model content
The problem that the utility model solves is to provide the glass microsphere cooling device for reducing Peristaltic pump head temperature.
Concrete technical scheme is as follows: glass microsphere cooling device, and it is critical only that: glass microsphere cooling device, its feature
It is: include cold rinse bank (10), described cold rinse bank (10) side wall is provided with the first level sensor and the second level sensor, institute
State the top that the first level sensor is located at described second level sensor;Described cold rinse bank (10) offers water inlet and
Discharge outlet, the water inlet of described cold rinse bank (10) is communicated with the delivery port of cistern (16) through supply-water pump (15), described cold rinse bank
(10) discharge outlet is communicated with the water inlet of cistern (16) through control valve (17);
It is provided with peristaltic pump (8) above described cold rinse bank (10), the pump head (8-2) of described peristaltic pump (8) is positioned at described cold
In tank (10), the pump head (8-2) of described peristaltic pump (8) is provided with temperature sensor, described first level sensor, the
Two level sensors, temperature sensor, control valve (17) are all connected with master controller with supply-water pump (15).
The principle of this technical scheme: under the control of master controller, by detecting water level and water temperature in cold rinse bank, make cold
Tank can be continuously the pump head cooling of peristaltic pump;Wherein when the temperature that temperature sensor detects exceedes setting value, will open
Dynamic supply-water pump and control valve, are opened the hot water that control valve is discharged in cold rinse bank, are added by supply-water pump cool simultaneously into cold rinse bank
Water, thus lowering the temperature to the pump head of peristaltic pump, wherein, the displacement of draining valve is more than the output of supply-water pump, when the second water
During level sensor action, close draining valve, water level rises, when the first level sensor action, close supply-water pump, complete to change
Water in cold rinse bank, realizes the pump head continued down to peristaltic pump.
For preferably realizing the utility model, may further be: described cold rinse bank (10) is square, in described cold rinse bank
(10) it is provided with first support (11) below, this first support (11) includes the first pole, on four angles of described cold rinse bank (10)
It is supported by described first pole respectively, between described first pole adjacent two-by-two, be provided with the first cross bar, every described first
Cross bar two ends are fixedly connected with the middle part of adjacent described first pole respectively, and so, structure is simple, easy to maintenance;
It is placed with second support (9), described peristaltic pump (8) is fixed on this second support (9) in described cold rinse bank (10)
Middle part;The upper end of described second support (9) is provided with pedestal (9-3), has at least three second in described pedestal (9-3) supported underneath
Pole, described second pole one end is fixedly connected with described pedestal (9-3), and the other end is supported on the bottom surface of described cold rinse bank (10)
On, be provided with the second cross bar between described second pole adjacent two-by-two, every described second cross bar two ends respectively with adjacent institute
State and be fixedly connected in the middle part of the second pole;It is provided with fixed plate (9-2), described fixed plate wherein between two the second adjacent poles
(9-2) it is vertically arranged and is fixedly connected with described second cross bar, bar shaped installing hole (9- is offered on described fixed plate (9-2)
1), this bar shaped installing hole (9-1) is vertically arranged, and the mounting seat of described peristaltic pump (8) is fixedly mounted on described bar shaped installing hole (9-
1), on, as such, it is possible to the depth in cold rinse bank water by the pump head of bar shaped installing hole regulation peristaltic pump, reach optimal cooling effect
Really, and second support structure is simple, low cost, easy to maintenance;
Described master controller is connected with manipulation screen, and described main controller and manipulation screen are arranged on power distribution cabinet, by touch-control
Screen operation master controller, is easily understood.
The beneficial effects of the utility model are: be equiped with cooling-water temperature sensor and temperature sensor in cold rinse bank, and leading
In the presence of controller and supply-water pump, realize the control to water level in cold rinse bank and water temperature, enable the utility model persistently to compacted
Dynamic pump pump head is lowered the temperature it is ensured that peristaltic pump can work long hours, and improves operating efficiency;Peristaltic pump head is in water, when
When there is fracture in the second conveying pipeline in pump head, it is to avoid the hollow glass micro-ball occurring spilling produces dust;First of setting
Frame and second support structure are simple, easy to maintenance, low cost.
Brief description
Fig. 1 is the structural representation of first support and second support in the utility model;
Fig. 2 is structural representation of the present utility model.
Specific embodiment
Below in conjunction with the accompanying drawings preferred embodiment of the present utility model is described in detail, so that advantage of the present utility model
Can be easier to be readily appreciated by one skilled in the art with feature, thus make apparent clear and definite to protection domain of the present utility model
Define.
As depicted in figs. 1 and 2, glass microsphere cooling device, including cold rinse bank 10, cold rinse bank 10 side wall is provided with the first water
Level sensor and the second level sensor, the first level sensor is located at the top of the second level sensor;On cold rinse bank 10
Offer water inlet and discharge outlet, the water inlet of cold rinse bank 10 is communicated with the delivery port of cistern 16 through supply-water pump 15, cold rinse bank
10 discharge outlet is communicated with the water inlet of cistern 13 through control valve 17;It is provided with peristaltic pump 8, peristaltic pump 8 above cold rinse bank 10
Pump head 8-2 be located at cold rinse bank 10 in, the pump head 8-2 of peristaltic pump 8 is provided with temperature sensor, the first level sensor,
Second level sensor, temperature sensor, control valve 17 are all connected with master controller with supply-water pump 15;
Cold rinse bank 10 is square, is provided with first support 11, first support 11 includes the first pole, cold below cold rinse bank 10
It is supported by the first pole respectively on four angles of tank 10, between the first adjacent two-by-two pole, be provided with the first cross bar, every
First cross bar two ends are fixedly connected with the middle part of the first adjacent pole respectively;It is placed with second support 9, peristaltic pump in cold rinse bank 10
8 middle parts being fixed on second support 9;The upper end of second support 9 is provided with pedestal 9-3, has four second in pedestal 9-3 supported underneath
Pole, second pole one end is fixedly connected with pedestal 9-3, and the other end is supported on the bottom surface of cold rinse bank 10, and adjacent two-by-two
It is provided with the second cross bar, every second cross bar two ends are fixedly connected with the middle part of the second adjacent pole respectively between two poles;At it
In be provided with fixed plate 9-2 between two the second adjacent poles, fixed plate 9-2 is vertically arranged and is fixedly connected with the second cross bar,
Bar shaped installing hole 9-1 is offered on fixed plate 9-2, bar shaped installing hole 9-1 is vertically arranged, the fixing peace of mounting seat of peristaltic pump 8
It is contained on bar shaped installing hole 9-1;Master controller is connected with manipulation screen, and main controller and manipulation screen are arranged on power distribution cabinet.
Claims (4)
1. a kind of glass microsphere cooling device it is characterised in that: include cold rinse bank (10), described cold rinse bank (10) side wall is provided with
First level sensor and the second level sensor, described first level sensor is located at the upper of described second level sensor
Side;Water inlet and discharge outlet are offered on described cold rinse bank (10), the water inlet of described cold rinse bank (10) is through supply-water pump (15)
Communicate with the delivery port of cistern (16), the water inlet through control valve (17) and cistern (16) of the discharge outlet of described cold rinse bank (10)
Mouth communicates;
It is provided with peristaltic pump (8) above described cold rinse bank (10), the pump head (8-2) of described peristaltic pump (8) is located at described cold rinse bank
(10), in, the pump head (8-2) of described peristaltic pump (8) is provided with temperature sensor, described first level sensor, the second water
Level sensor, temperature sensor, control valve (17) are all connected with master controller with supply-water pump (15).
2. according to claim 1 glass microsphere cooling device it is characterised in that: described cold rinse bank (10) be square, in institute
State and below cold rinse bank (10), be provided with first support (11), this first support (11) includes the first pole, described cold rinse bank (10)
Described first pole is supported by respectively on four angles, between described first pole adjacent two-by-two, is provided with the first cross bar, every
Described first cross bar two ends are fixedly connected with the middle part of adjacent described first pole respectively.
3. according to claim 1 glass microsphere cooling device it is characterised in that: be placed with second in described cold rinse bank (10)
Support (9), described peristaltic pump (8) is fixed on the middle part of this second support (9);The upper end of described second support (9) is provided with pedestal
(9-3), there are at least three second poles, described second pole one end and described pedestal (9- in described pedestal (9-3) supported underneath
3) it is fixedly connected, the other end is supported on the bottom surface of described cold rinse bank (10), be provided between described second pole adjacent two-by-two
Second cross bar, every described second cross bar two ends are fixedly connected with the middle part of adjacent described second pole respectively;
Be provided with fixed plate (9-2) wherein between two the second adjacent poles, described fixed plate (9-2) be vertically arranged and with institute
State the second cross bar to be fixedly connected, bar shaped installing hole (9-1) is offered on described fixed plate (9-2), this bar shaped installing hole (9-1)
It is vertically arranged, the mounting seat of described peristaltic pump (8) is fixedly mounted on described bar shaped installing hole (9-1).
4. according to claim 1 glass microsphere cooling device it is characterised in that: described master controller be connected with manipulation screen,
Described main controller and manipulation screen are arranged on power distribution cabinet.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620867753.7U CN205895580U (en) | 2016-08-11 | 2016-08-11 | Glass microsphere cooling device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620867753.7U CN205895580U (en) | 2016-08-11 | 2016-08-11 | Glass microsphere cooling device |
Publications (1)
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CN205895580U true CN205895580U (en) | 2017-01-18 |
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CN201620867753.7U Active CN205895580U (en) | 2016-08-11 | 2016-08-11 | Glass microsphere cooling device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110958815A (en) * | 2019-12-09 | 2020-04-03 | 华南理工大学 | Water bath heat dissipation system suitable for data center and control method |
-
2016
- 2016-08-11 CN CN201620867753.7U patent/CN205895580U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110958815A (en) * | 2019-12-09 | 2020-04-03 | 华南理工大学 | Water bath heat dissipation system suitable for data center and control method |
CN110958815B (en) * | 2019-12-09 | 2024-03-22 | 华南理工大学 | Water bath heat dissipation system suitable for data center and control method |
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