CN205085093U - Sight glass cleaning system - Google Patents

Sight glass cleaning system Download PDF

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Publication number
CN205085093U
CN205085093U CN201520539811.9U CN201520539811U CN205085093U CN 205085093 U CN205085093 U CN 205085093U CN 201520539811 U CN201520539811 U CN 201520539811U CN 205085093 U CN205085093 U CN 205085093U
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China
Prior art keywords
pipeline
visor
cleaning agent
stoste
cleaning
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CN201520539811.9U
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Inventor
刘长波
朱天兵
苗成才
冯晓晶
张寿忠
马会强
韩永华
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Liming Research Institute of Chemical Industry Co Ltd
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Liming Research Institute of Chemical Industry Co Ltd
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Abstract

The utility model discloses a sight glass rinse -system, merging the back and being connected with wash line (6) including gas piping (1), cleaner pipeline (2), wash line 6, gas piping (1) and cleaner pipeline (2), be provided with gas control valve (12) on gas piping (1), be provided with cleaner control valve (13) on cleaner pipeline (2), sight glass upper cover plate (7) and sight glass base (9), the terminal optional position of aiming at sight glass (8) are passed in wash line (6). This cleaning system saves the cleaner resource, the cleaning performance is good, is a gas -liquid mixture type sight glass cleaning system.

Description

A kind of visor purging system
Technical field
The utility model relates to unit visor purging system.
Background technology
In the industrial production, be effective method very directly perceived by the situation in visor facilities for observation, but, once it is dirty to observe visor, can observing effect be affected, hinder and normally produce, until the trimming that stops production.
The dirty reason of visor has a lot.When the visor contact of material discord (being common in various consersion unit and storage tank), be generally because liquid flux (such as water) evaporates into mirror surface, be condensed into drips and observe; Or the moisture of condensation again volatilize after the dirty visor of the nonvolatile matter that left behind.The situation (being common in the still for observing two-phase interface, tank and two-phase extraction washing equipment) that material contacts with visor, now dirty many cause due to the particulate contamination in material itself.
In order to clean visor, " pharmaceutical engineering design " magazine the 6th phase in 1992,15-17 page, in " band lamp, band cleaning visor " literary composition, discloses a kind of visor with water jet; Patent CN202837647U " visor of band cleaning device " discloses a kind of visor with water injector; Patent CN202953817U " a kind of hydrogen chloride synthetic furnace visor cleaning device " discloses a kind of visor with clean-out opening.Patent CN203304250 " a kind of glass visor cleaning device " discloses a kind of visor cleaning device with heat exchange buffer, solves the visor explosion problem that the temperature difference that may exist causes.
Above-mentioned public technology solves the explosion problem that the cleaning problem of visor and visor cause because of the temperature difference, but cleaning agent (the being generally water) consumption used is relatively large, and can stoste liquid volume in increase equipment, has some limitations.In addition, cleaning agent (water) itself also may condense in mirror surface, causes observation difficulty.
Summary of the invention
First technical problem to be solved in the utility model is to provide a kind of visor purging system.This purging system saves cleaning agent (such as water) resource, cleaning performance is good, is a kind of gas-liquid mixed type visor purging system.
Second technical problem to be solved in the utility model is to provide the using method of this purging system.
The gas-liquid mixed type visor purging system of the utility model design, comprise gas piping 1, cleaning agent pipeline 2, detergent line 6, gas piping 1 is 2-in-1 with cleaning agent pipeline and be connected with detergent line 6 afterwards, gas piping 1 is provided with gas control valve 12, cleaning agent pipeline 2 is provided with cleaning agent control valve 13, detergent line 6 is through visor upper cover plate 7 and visor base 9, and end aims at the medium position of visor 8.
As the further improvement of such scheme, side by side cleaning additive pipeline 4 can be set cleaning agent pipeline 2, cleaning additive pipeline 4 be provided with cleaning additive control valve 14.
As the further improvement of such scheme, can arrange stoste pipeline 5 by cleaning agent pipeline 2 side by side, stoste pipeline 5 be provided with stoste control valve 15, stoste pipeline 5 inserts in stoste 11 through after visor upper cover plate 7 and visor base 9.
As the further improvement of such scheme, detergent line 6 is provided with siphon valve 3, siphon valve 3 import is connected with the merging pipeline of cleaning agent pipeline 2 with gas piping 1, the outlet of siphon valve 3 is connected with detergent line 6, and the side vacuum port of siphon valve 3 is connected with cleaning additive pipeline 4 or/and stoste pipeline 5.
As the further improvement of such scheme, the siphon valve 3 in detergent line 6 can replace with ejector pump.
As the further improvement of such scheme, check valve can be set in the valve incoming road direction of gas piping 1, cleaning agent pipeline 2, cleaning additive pipeline 4 and stoste pipeline 5, avoid material crossfire between pipeline.
When visor is comparatively large, or when having polylith visor to there is (visor observing interface as extraction tower is generally upper and lower two pieces), a scavenge pipe can not complete cleaning object very well simultaneously.As the further improvement of such scheme, detergent line end can become caliber arrangement arm from big to small according to " balanced ventilation " principle design in heating and ventilation project, solve that detergent line end clean range is little, weak effect, multiple same footpaths end cleans uneven problem.Also multiple tip designs of detergent line can be become " shower nozzle " formula layout of bathing.
As the further improvement of such scheme, for ensureing larger to go out Liu Jiao, using the vertical visor of flow path direction, can multiple ends of detergent line be all designed to incoming road direction in 90 °.
The gas-liquid mixed type visor purging system using method of the utility model design is: when the stoste in unit does not contact with visor, if visor pollutes for no other reason than that liquid flux (as water) Drop Condensation causes, purge as long as gas piping is opened in working stage timing; If have nonvolatile matter in condensing droplet, the stoste in introducing cleaning agent that can be in good time or equipment is cleaned, or after each workshop section terminates, of short duration in water cleaning, then dries up with gas; When material contacts with visor, control cleaning agent pipeline and gas piping carry out pulsed cleaning and purging, and effectively the particulate contamination of visor is stain in cleaning.
The cleaning agent that the design uses should select the solvent not polluting stoste, solvent contained in stoste in general selection unit equipment.If stoste is that aqueous solution available water makes cleaning agent, if stoste is that organic solution can select identical organic solvent to make cleaning agent.The gas that the gas of gas piping can be compressed air, nitrogen or other any technique allow.
As the further improvement of the inventive method, in time introduce cleaning additive by cleaning additive pipeline, can cleaning performance be increased.Such as when mirror surface has alkali dirt, a small amount of weak acid solution introducing technique permission by cleaning additive pipeline cleans.
As the further improvement of the inventive method, in visor cleaning process, in time introduced the stoste in unit by siphon valve or ejector pump, the object of saving cleaning agent can be reached.
As the further improvement of the inventive method, the relative discharge of stoste and cleaning agent in control unit equipment can be passed through, reach the object regulating detergent line fluid temperature, thus ensure that visor can not burst because of temperature shock.
Accompanying drawing explanation
Fig. 1 is the utility model gas-liquid mixed visor purging system schematic diagram.
Wherein: 1. gas piping 2. cleaning agent pipeline 6. detergent line 7. visor upper cover plate 8. visor 9. visor base 10. unit 11. stoste 12. gas control valve 13. cleaning agent control valve
Fig. 2 is the gas-liquid mixed visor purging system schematic diagram of band siphon valve.
Wherein: 1. gas piping 2. cleaning agent pipeline 3. siphon valve or ejector pump 4. cleaning additive pipeline 5. stoste pipeline 6. detergent line 7. visor upper cover plate 8. visor 9. visor base 10. unit 11. stoste 12. gas control valve 13. cleaning agent control valve 14. cleaning additive control valve 15. stoste control valve
Fig. 3 is the gas-liquid mixed visor purging system schematic diagram of the band time relay.
Wherein: 1. gas piping 2. cleaning agent pipeline 3. siphon valve or ejector pump 4. cleaning additive pipeline 5. stoste pipeline 6. detergent line 7. visor upper cover plate 8. visor 9. visor base 10. use the unit 11. stoste 12. gas motor-driven valve 13. cleaning agent motor-driven valve 14. cleaning additive control valve 15. stoste control valve 16. gas time relay 17. cleaning agent time relay of visor
Fig. 4 is the gas-liquid mixed visor purging system schematic diagram being with even water pipe.
Wherein: 1. gas piping 2. cleaning agent pipeline 3. siphon valve or the detergent line of ejector pump 4. cleaning additive pipeline 5. stoste pipeline 6. detergent line 7. visor upper cover plate 8. visor 9. visor base 10. unit 11. stoste 12. gas control valve 13. pure water control valve 14. cleaning agent control valve 15. stoste control valve 18. Large-Area-Uniform
Detailed description of the invention
Below in conjunction with embodiment, the utility model is elaborated.
Embodiment 1
As shown in Figure 1, this gas-liquid mixed visor purging system, forms primarily of gas piping 1, cleaning agent pipeline 2, detergent line 6 and gas control valve 12, cleaning agent control valve 13.
For ensureing cleaning performance, detergent line 6 is adjusted to the optional position in the face of visor by elbow.
When visor 8 is just because the liquid cooling drop that congeals into causes observation obstacle, gas piping 1 can be opened separately and purge; If unit 10 requires inert gas shielding, do not allow to contact with air, nitrogen can be changed in pipeline 1 and purge; If other gases of technological requirement, other gases can be introduced in gas piping 1 and purge.
When obvious dirt appears in visor 8, can pass into cleaning agent at cleaning agent pipeline 2, in detergent line 6, create spray water carries out high-pressure wash simultaneously with gas piping 1.By the valve opening of the gas control valve 12 on control gas piping 1, cleaning agent pipeline 2, cleaning agent control valve 13, the relative discharge of gas and cleaning agent can be controlled, to obtain better cleaning performance.
The utility model stoste pipeline 5 and detergent line 6, through the position of visor upper cover plate 7 and visor base 9, according to the concrete condition such as stirring in unit, can be arranged on the optional position of the annulus of cover plate and base.
Embodiment 2
As shown in Figure 2, improve the embodiment described in embodiment 1, cleaning agent pipeline 2 arranged side by side arranges cleaning additive pipeline 4, cleaning additive pipeline 4 is provided with cleaning additive control valve 14; Cleaning agent pipeline 2 arranged side by side arranges stoste pipeline 5, stoste pipeline 5 is provided with stoste control valve 15, and stoste pipeline 5 inserts in stoste 11 through after visor upper cover plate 7 and visor base 9.
Add suitable cleaning additive (as alkali dirt can add the suitable weak acid of technique permission) by cleaning additive pipeline 4, carry out mixing cleaning.By the valve opening of cleaning additive control valve 14, the relative discharge of cleaning additive can be regulated, control the additional proportion of cleaning additive; In order to save cleaning agent, or in high-temperature service, avoid the too low visor that causes of fluid temperature in detergent line 6 to burst, the stoste introduced in unit by stoste pipeline 5 is cleaned.By the valve opening of adjustments of gas control valve 12, cleaning agent control valve 13, stoste control valve 15, can the relative discharge of adjustments of gas, cleaning agent and stoste, thus change the temperature of detergent line 6 cleaning liquid inside.
As the further improvement of such scheme, detergent line 6 is provided with siphon valve 3, siphon valve 3 import is connected with the merging pipeline of cleaning agent pipeline 2 with gas piping 1, the outlet of siphon valve 3 is connected with detergent line 6, and the side vacuum port of siphon valve 3 is connected with cleaning additive pipeline 4 or/and stoste pipeline 5.
As the further improvement of such scheme, the siphon valve 3 in detergent line 6 can replace with ejector pump.
Embodiment 3
As shown in Figure 3, embodiment described in embodiment 1 is improved, valve wherein on gas piping and cleaning agent pipeline can be arranged to self controllable gas motor-driven valve 12 and cleaning agent motor-driven valve 13, they respectively with gas time relay 16 and the cleaning agent time relay 17 chain, two relays control the relative opening time of two motor-driven valves respectively, thus can relative discharge automatically on adjustments of gas pipeline 1 and cleaning agent pipeline 2.
As the further improvement of such scheme, gas time relay 16 and the cleaning agent time relay 17 can be replaced with commercially available shaped article " refrigerator energy-saving device ", by controlling the start-stop time of gas motor-driven valve 12 and cleaning agent motor-driven valve 13, the object of the relative discharge controlled on gas piping 1 and cleaning agent pipeline 2 can be realized equally.
As the further improvement of such scheme, the stoste control valve 15 on stoste pipeline 5 can be arranged to self controllable motor-driven valve equally, and with the time relay or refrigerator energy-saving device chain, realize the object of flow automatic regulation.
As the further improvement of such scheme, the control signal of said electric valve introducing PLC or DCS system can also be programmed, realize remote auto and control.
Embodiment 4
As shown in Figure 4, embodiment described in embodiment 1 is improved, the tip designs of detergent line 6 becomes to be used for the even detergent line 18 of large area visor, and the end of Large-Area-Uniform detergent line 18 is caliber arrangement arm from big to small, to adapt to the demand of large visor and polylith visor.
As the further improvement of such scheme, can multiple ends of Large-Area-Uniform detergent line 18 be all designed to incoming road direction in 90 °.
As the further improvement of such scheme, the end of Large-Area-Uniform detergent line 18 can be designed to " shower nozzle " formula layout of bathing.

Claims (9)

1. a visor rinse-system, comprise gas piping (1), cleaning agent pipeline (2), detergent line (6), gas piping (1) is connected with detergent line (6) after merging with cleaning agent pipeline (2), gas piping (1) is provided with gas control valve (12), cleaning agent pipeline (2) is provided with cleaning agent control valve (13), detergent line (6) is through visor upper cover plate (7) and visor base (9), and end aims at the optional position of visor (8).
2. visor rinse-system according to claim 1, is characterized in that cleaning agent pipeline (2) arranged side by side arranges cleaning additive pipeline (4), cleaning additive pipeline (4) is provided with cleaning additive control valve (14).
3. visor rinse-system according to claim 1, it is characterized in that cleaning agent pipeline (2) arranged side by side arranges stoste pipeline (5), stoste pipeline (5) is provided with stoste control valve (15), stoste pipeline (5) inserts in stoste (11) afterwards through visor upper cover plate (7) and visor base (9).
4. visor rinse-system according to claim 1, it is characterized in that being provided with cleaning additive pipeline (4) and stoste pipeline (5), detergent line (6) is provided with siphon valve (3), siphon valve (3) import is connected with the merging pipeline of gas piping (1) with cleaning agent pipeline (2), the outlet of siphon valve (3) is connected with detergent line (6), and the side vacuum port of siphon valve (3) is connected with cleaning additive pipeline (4) or/and stoste pipeline (5).
5. visor rinse-system according to claim 4, is characterized in that siphon valve replaces with ejector pump.
6. visor rinse-system according to claim 4, is characterized in that arranging check valve respectively on gas piping, cleaning agent pipeline, cleaning additive pipeline and stoste pipeline.
7. visor rinse-system according to claim 1, it is characterized in that detergent line according to " balanced ventilation " principle design in heating and ventilation project become by for water end (W.E.) to end arrangement arm from big to small, or the tip designs of detergent line becomes " shower nozzle " formula layout of bathing.
8. visor rinse-system according to claim 7, is characterized in that multiple ends of detergent line are all designed to incoming road direction in 90 °.
9. visor rinse-system according to claim 1, is characterized in that gas control valve and cleaning agent control valve are self controllable motor-driven valve.
CN201520539811.9U 2015-07-24 2015-07-24 Sight glass cleaning system Active CN205085093U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520539811.9U CN205085093U (en) 2015-07-24 2015-07-24 Sight glass cleaning system

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Application Number Priority Date Filing Date Title
CN201520539811.9U CN205085093U (en) 2015-07-24 2015-07-24 Sight glass cleaning system

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105149298A (en) * 2015-07-24 2015-12-16 黎明化工研究设计院有限责任公司 Sight glass cleaning system and use method thereof
CN109499976A (en) * 2018-12-28 2019-03-22 东莞市沃德精密机械有限公司 Battery cleaning device
CN113508061A (en) * 2019-03-07 2021-10-15 株式会社电装 Cleaning system for vehicle and cleaning method thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105149298A (en) * 2015-07-24 2015-12-16 黎明化工研究设计院有限责任公司 Sight glass cleaning system and use method thereof
CN105149298B (en) * 2015-07-24 2019-03-19 黎明化工研究设计院有限责任公司 A kind of visor cleaning system and its application method
CN109499976A (en) * 2018-12-28 2019-03-22 东莞市沃德精密机械有限公司 Battery cleaning device
CN113508061A (en) * 2019-03-07 2021-10-15 株式会社电装 Cleaning system for vehicle and cleaning method thereof

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