CN202303461U - Tool for detecting failure of diffusing tower ignition device - Google Patents

Tool for detecting failure of diffusing tower ignition device Download PDF

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Publication number
CN202303461U
CN202303461U CN2011203893679U CN201120389367U CN202303461U CN 202303461 U CN202303461 U CN 202303461U CN 2011203893679 U CN2011203893679 U CN 2011203893679U CN 201120389367 U CN201120389367 U CN 201120389367U CN 202303461 U CN202303461 U CN 202303461U
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CN
China
Prior art keywords
tower
failure
diffusing
detect
ignition device
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Expired - Lifetime
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CN2011203893679U
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Chinese (zh)
Inventor
张志勇
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Jilin Jianlong Iron and Steel Co Ltd
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Jilin Jianlong Iron and Steel Co Ltd
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Priority to CN2011203893679U priority Critical patent/CN202303461U/en
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Publication of CN202303461U publication Critical patent/CN202303461U/en
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Abstract

The utility model provides a tool for detecting the failure of a diffusing tower ignition device. The tool comprises a detection high-voltage cable (4) and a detection ignition nozzle (5), wherein two ends of the detection high-voltage cable (4) are respectively and electrically connected with the detection ignition nozzle (5) and a high-energy ignition box (3) of the ignition device through terminal ends. The tool for detecting the failure of the diffusing tower ignition device provided by the utility model can be used for detecting the failure of the diffusing tower ignition device nearby the ground, the detection by climbing to the diffusing tower top is not needed, the workload is reduced, and the time is saved. Compared with the prior art, the tool for detecting the failure of the diffusing tower ignition device obviously has the advantages that the workload for detecting the failure of the diffusing tower ignition device is reduced, further, the failure of the diffusing tower ignition device can be fast detected, and simultaneously, the danger of the work for detecting the failure of the diffusing tower ignition device is also reduced.

Description

A kind ofly be used to detect the instrument that diffuses the tower ignitor failure
Technical field
The utility model relates to the tower ignitor failure detection technique field of diffusing, and more particularly, relates to a kind of instrument that diffuses the tower ignitor failure that is used to detect.
Background technology
Gas chamber is a steel vessel of storing industry and domestic gas; When the coal gas amount in the gas chamber surpasses cabinet appearance (the maximum storage amount of gas chamber); Need be with the part of the coal gas diffusion in the gas chamber; Directly diffuse in the atmosphere for fear of coal gas, and then avoid environment is polluted, the coal gas in the emission coal gas cabinet is mainly realized through diffusing tower at present.
Diffuse tower and comprise tower body and igniter, wherein, igniter comprises high-energy ignition case 3, diffuses high-tension cable 2, diffuses conducting rod, diffuses ignition tip 1 and master controller.Generally diffuse tower and be provided with three high-energy ignition casees 3 in the lower end of tower body, cat head be provided with respectively with three high-energy ignition casees 3 through diffusing high-tension cable 2, diffusing three that conducting rod links to each other and diffuse ignition tip 1.High-energy ignition case 3 generally is installed on the tower body and apart from ground 1.5 meters, diffuses the top that ignition tip 1 is positioned at tower body, diffuses high-tension cable 2 one ends through diffusing conducting rod and terminals and diffusing ignition tip 1 and link to each other, and the other end links to each other with high-energy ignition case 3 through terminals.Because diffuse the place that the igniter of tower is installed in the high heat of high temperature, so igniter very easily breaks down.When igniter broke down, igniter can not be lighted a fire, and promptly diffused tower and can not realize the igniting of coal gas is diffused, and then needed the testing staff that igniter is carried out fault judgement and maintenance.
Certainly; It possibly be ground installation that igniter breaks down; For example high-energy ignition case 3, master controller; Possibly be lead to cat head diffuse high-tension cable 2, diffuse conducting rod or be positioned at cat head diffuse ignition tip 1, also possibly be that ground installation and the facility that leads to cat head and be positioned at cat head all break down.In actual use, ordinary circumstance is that the ground installation of igniter breaks down, and having only few cases is to diffuse high-tension cable 2, diffuse conducting rod or diffuse ignition tip 1 and break down.
The detection method of present ignitor failure is that the testing staff need arrive the cat head that diffuses tower and carries out fault judgement and maintenance; Press the button ignition switch of high-energy ignition case by the ground handling personnel; The testing staff who is positioned at cat head observes the discharge scenario of diffusing ignition tip 1: do not have the electrion spark if diffuse the exit of ignition tip 1, show that then ground installations such as high-energy ignition case 3 or master controller have fault; If diffuse the outlet of ignition tip 1 strong high-tension electricity discharge spark is arranged; Show that then high-energy ignition case 3 and main operation controller are intact; Do not have fault, lead to diffusing high-tension cable 2, diffusing conducting rod or diffuse ignition tip 1 fault is arranged of cat head, promptly accomplish fault detect.
Before detection failure, need two staff the coal gas in the exhaust stack to be purged displacement, and then keep nitrogen-sealed with nitrogen, guarantee maintenance personal's safety.But the process that purges displacement with nitrogen probably needs 1 hour.According to existing actual detection process, to calculate for 10 times by annual detection, an expense of diffusing tower use nitrogen is 2000 yuans.This has obviously prolonged and has detected the time of diffusing the tower ignitor failure, has increased the use amount of nitrogen simultaneously, has improved to detect and has diffused the cost of tower ignitor failure.
The height that diffuses tower is 81 meters (height that diffuses tower is generally about 80 meters); This carries out fault judgement with regard to needing the testing staff to climb 81 meters high cats head; Conventional detection generally needs the staff to purge displacement 1 hour with nitrogen, and the testing staff worked 5 hours; Detection failure needs 6 hours altogether, and detection time is longer.And; When judging that ground installation breaks down; Testing staff's climbing to 81 in vain meter high cat head; This obviously makes that to detect the workload of diffusing the tower ignitor failure bigger, causes finally detecting that to diffuse the required time of tower ignitor failure longer, can not detect the fault of diffusing the tower igniter apace; Simultaneously, also make to detect the dangerous higher of the work of diffusing the tower ignitor failure.
In sum; How a kind of instrument that diffuses the tower ignitor failure that is used to detect is provided; Detecting the workload of diffusing the tower ignitor failure to reduce, and then detect the fault of diffusing the tower igniter quickly, is present those skilled in the art's problem demanding prompt solution.
The utility model content
In view of this, the utility model provides a kind of instrument that diffuses the tower ignitor failure that is used to detect, and has reduced to detect and has diffused the workload of tower ignitor failure, and then detected the fault of diffusing the tower igniter quickly.
In order to achieve the above object, the utility model provides following technical scheme:
A kind ofly be used to detect the instrument that diffuses the tower ignitor failure, comprise and detect high-tension cable and test point nozzles;
The two ends of said detection high-tension cable are electrically connected with the high-energy ignition case of said test point nozzles and said igniter respectively through terminals.
Preferably, above-mentioned instrument also comprises insulation board, and when said instrument diffused the tower ignitor failure in detection, said test point nozzles were positioned on the said insulation board.
Preferably, in the above-mentioned instrument, said insulation board is a rubber slab.
Preferably, in the above-mentioned instrument, the length of said detection high-tension cable is 0.5 meter.
The use step that is used to detect the instrument that diffuses the tower ignitor failure that the utility model provides is following:
When the igniter of diffusing tower breaks down; The terminals that diffuse the end that high-tension cable links to each other with the high-energy ignition case are pulled down; Being about to diffuse the fractionation of high-tension cable and high-energy ignition case comes; One end that will detect high-tension cable then links to each other with the high-energy ignition case through terminals, and the other end that detects high-tension cable is linked to each other i.e. this instrument installation through terminals with the test point nozzles.
Because the high-energy ignition case is positioned on the tower body that diffuses tower and its apart from ground 1.5 meters, then this instrument uses near ground, and its testing process is following:
Press the button ignition switch of high-energy ignition case, observe the discharge scenario of test point nozzles:, show that then ground installations such as high-energy ignition case or master controller have fault if the exit of test point nozzles does not have the high-tension electricity discharge spark; If the outlet of test point nozzles has strong high-tension electricity discharge spark, show that then high-energy ignition case and main operation controller are intact, do not have fault, lead to cat head diffuse high-tension cable, perhaps diffusing ignition tip has fault to diffuse conducting rod, promptly accomplishes fault detect.
The utility model provides is used to detect the instrument that diffuses the tower ignitor failure, near ground, can detect the fault of diffusing the tower igniter, need not to climb to diffuse column overhead and detect again, and has reduced workload, has saved the time.Compared with prior art, obviously, above-mentionedly be used to detect the instrument that diffuses the tower ignitor failure, reduced to detect and diffused the workload of tower ignitor failure, and then detected the fault of diffusing the tower igniter quickly; Also reduced simultaneously the danger that detects the work of diffusing the tower ignitor failure.
Description of drawings
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art; To do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below; Obviously, the accompanying drawing in describing below only is some embodiment of the utility model, for those of ordinary skills; Under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
The structural representation that is used to detect the instrument that diffuses the tower ignitor failure that Fig. 1 provides for the utility model embodiment.
Among last Fig. 1:
Diffuse ignition tip 1, diffuse high-tension cable 2, high-energy ignition case 3, detect high-tension cable 4, test point nozzles 5, insulation board 6.
The specific embodiment
The utility model provides a kind of instrument that diffuses the tower ignitor failure that is used to detect, and has reduced to detect and has diffused the workload of tower ignitor failure, and then detected the fault of diffusing the tower igniter quickly.
To combine the accompanying drawing among the utility model embodiment below, the technical scheme among the utility model embodiment is carried out clear, intactly description, obviously, described embodiment only is the utility model part embodiment, rather than whole embodiment.Based on the embodiment in the utility model, those of ordinary skills are not making the every other embodiment that is obtained under the creative work prerequisite, all belong to the scope of the utility model protection.
Please refer to accompanying drawing 1, the structural representation that is used to detect the instrument that diffuses the tower ignitor failure that Fig. 1 provides for the utility model embodiment.
The utility model embodiment provides a kind of instrument that diffuses the tower ignitor failure that is used to detect, and comprises detecting high-tension cable 4 and test point nozzles 5; The two ends of detecting high-tension cable 4 are electrically connected with the high-energy ignition case 3 of test point nozzles 5 and igniter respectively through terminals.
The use step that is used to detect the instrument that diffuses the tower ignitor failure that the foregoing description provides is following:
When the igniter of diffusing tower breaks down; The terminals that diffuse the end that high-tension cable 2 links to each other with high-energy ignition case 3 are pulled down; Being about to diffuse high-tension cable 2 comes with 3 fractionations of high-energy ignition case; One end that will detect high-tension cable 4 then links to each other with high-energy ignition case 3 through terminals, and the other end that detects high-tension cable 4 is linked to each other i.e. this instrument installation through terminals with test point nozzles 5.
Because the high-energy ignition case is positioned on the tower body that diffuses tower and its apart from ground 1.5 meters, then this instrument uses near ground, and its testing process is following:
Press the button ignition switch of high-energy ignition case, observe the discharge scenario of test point nozzles 5:, show that then ground installations such as high-energy ignition case 3 or master controller have fault if the exit of test point nozzles 5 does not have the high-tension electricity discharge spark; If the outlet of test point nozzles 5 has strong high-tension electricity discharge spark; Show that then high-energy ignition case 3 and main operation controller are intact; Do not have fault, lead to diffusing high-tension cable 2, diffusing conducting rod or diffuse ignition tip 1 fault is arranged of cat head, promptly accomplish fault detect.
The utility model provides is used to detect the instrument that diffuses the tower ignitor failure, near ground, can detect the fault of diffusing the tower igniter, need not to climb to diffuse column overhead and detect again, and has reduced workload, has saved the time.Compared with prior art, obviously, above-mentionedly be used to detect the instrument that diffuses the tower ignitor failure, reduced to detect and diffused the workload of tower ignitor failure, and then detected the fault of diffusing the tower igniter quickly; Simultaneously, above-mentioned instrument has been avoided the danger in coal gas zone work high above the ground, and then has reduced the danger that detects the work of diffusing the tower ignitor failure.
Above-mentioned instrument; When detecting, use and detect high-tension cable 4; Do not re-use and diffuse high-tension cable 2,, need not with nitrogen the coal gas in the exhaust stack to be purged displacement by two staff again so above-mentioned instrument before use; Further saved the time, and then above-mentioned instrument can detect the fault of diffusing the tower igniter quickly; Simultaneously also reduced the manpower financial capacity, reduced to detect and diffused the cost of tower ignitor failure.
Above-mentioned instrument can detect the fault of diffusing the tower igniter quickly, has avoided gas cabinet cabinet to hold when too high, diffuses urgent cold the diffusing of tower, and then has avoided cold pollution of diffusing environment.
In order further to optimize technique scheme, the foregoing description provides is used to detect the instrument that diffuses the tower ignitor failure, also comprises insulation board 6, and when this instrument diffused the tower ignitor failure in detection, test point nozzles 5 were positioned on the insulation board 6.Test point nozzles 5 are positioned on the insulation board 6, have further improved the security when this instrument uses.
Preferably, the foregoing description provides is used for detecting the instrument that diffuses the tower ignitor failure, and insulation board 6 is a rubber slab, is convenient to draw materials, and has saved the use cost of this instrument.
The utility model embodiment provides is used for detecting the instrument that diffuses the tower ignitor failure, and the length that detects high-tension cable 4 is preferably 0.5 meter, makes above-mentioned instrument be convenient to install and carry.Certainly, the utility model is not done concrete qualification to the length that detects high-tension cable 4, can make above-mentioned tool implementation fast detecting diffuse the fault of tower igniter as long as detect high-tension cable 4.
To the above-mentioned explanation of the disclosed embodiments, make this area professional and technical personnel can realize or use the utility model.Multiple modification to these embodiment will be conspicuous concerning those skilled in the art, and defined General Principle can realize under the situation of spirit that does not break away from the utility model or scope in other embodiments among this paper.Therefore, the utility model will can not be restricted to these embodiment shown in this paper, but will meet and principle disclosed herein and features of novelty the wideest corresponding to scope.

Claims (4)

1. one kind is used to detect the instrument that diffuses the tower ignitor failure, it is characterized in that, comprises detecting high-tension cable (4) and test point nozzles (5);
The two ends of said detection high-tension cable (4) are electrically connected with the high-energy ignition case (3) of said test point nozzles (5) and said igniter respectively through terminals.
2. instrument according to claim 1 is characterized in that, also comprises insulation board (6), and when said instrument diffused the tower ignitor failure in detection, said test point nozzles (5) were positioned on the said insulation board (6).
3. instrument according to claim 2 is characterized in that, said insulation board (6) is a rubber slab.
4. instrument according to claim 1 is characterized in that, the length of said detection high-tension cable (4) is 0.5 meter.
CN2011203893679U 2011-10-13 2011-10-13 Tool for detecting failure of diffusing tower ignition device Expired - Lifetime CN202303461U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011203893679U CN202303461U (en) 2011-10-13 2011-10-13 Tool for detecting failure of diffusing tower ignition device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011203893679U CN202303461U (en) 2011-10-13 2011-10-13 Tool for detecting failure of diffusing tower ignition device

Publications (1)

Publication Number Publication Date
CN202303461U true CN202303461U (en) 2012-07-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011203893679U Expired - Lifetime CN202303461U (en) 2011-10-13 2011-10-13 Tool for detecting failure of diffusing tower ignition device

Country Status (1)

Country Link
CN (1) CN202303461U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108872734A (en) * 2018-04-26 2018-11-23 首钢京唐钢铁联合有限责任公司 Blast-furnace gas diffusing tower detecting method, device and equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108872734A (en) * 2018-04-26 2018-11-23 首钢京唐钢铁联合有限责任公司 Blast-furnace gas diffusing tower detecting method, device and equipment

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Granted publication date: 20120704