CN202881302U - Wireless camera monitor for blast-furnace tuyere - Google Patents

Wireless camera monitor for blast-furnace tuyere Download PDF

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Publication number
CN202881302U
CN202881302U CN201220552116.2U CN201220552116U CN202881302U CN 202881302 U CN202881302 U CN 202881302U CN 201220552116 U CN201220552116 U CN 201220552116U CN 202881302 U CN202881302 U CN 202881302U
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China
Prior art keywords
wireless
blast
furnace
furnace tuyere
power
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Expired - Fee Related
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CN201220552116.2U
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Chinese (zh)
Inventor
邵小欧
汪保平
陶玲
胡彤
杭桂生
徐德滨
苏德奎
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Individual
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Individual
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Priority to CN201220552116.2U priority Critical patent/CN202881302U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a wireless camera monitor for a blast-furnace tuyere, which is characterized by comprising a thermoelectric conversion module (1), a power management system (2), a camera sensor (3), a wireless transmitter (4), a wireless receiver (5), a mounting bracket and an image information processor (7), wherein the thermoelectric conversion module (1) is welded on a furnace shell beside the blast-furnace tuyere (6); and the power management system (2) and the wireless transmitter (4) are arranged on the mounting bracket. By utilizing a thermal power transformation technology, the wireless camera monitor for the blast-furnace tuyere solves the problem of wired power supply of the camera sensor and the wireless transmitter; a wireless system solves the problem of wire transmission of signals of the camera sensor, so that the function of wireless tuyere camera shooting can be realized at the blast-furnace tuyere; and the problems of inconvenience for operation at the blast-furnace tuyere, and the circuit damage and the like which are possibly caused by the wire transmission of the camera sensor at the tuyere can be effectively solved.

Description

Blast-furnace tuyere wireless camera monitor
Technical field
The utility model relates to a kind of industrial camera monitoring field, and specifically a kind of blast-furnace tuyere wireless camera monitor is a kind of device of wireless monitor blast-furnace tuyere.
Background technology
In blast furnace is produced, the camera monitoring of blast-furnace tuyere is just being become a kind of technique means of important monitoring operation of blast furnace.It is by the camera monitoring to each air port of blast furnace, each signal is transferred to Central Control Room, and operator can be observed coke operation conditions in the air port, the process of smelting, understand the work homogeneity of blast-furnace tuyere face and the thermal conditions of high outlet of still, in time find to smelt unusual and Tuyere Damage etc.But, present equipment major defect is, because the temperature at place, air port is higher, peripheral space is little, and equipment is more, and the operation that air port place need often carry out tuyere replacement etc., so, transmission with there being line method to shooting power supply and signal is easy to line is blown and physical damage, also affects the operations such as tuyere replacement.
Summary of the invention
In order to solve the prior art defective, the utility model provides a kind of blast-furnace tuyere wireless camera monitor.
For the air port locate furnace wall temperature up to 250 ℃, the utility model utilizes the technology of thermal change electricity, solves the powerup issue of shooting and transmission over radio, utilizes Radio Transmission Technology that shooting is transferred to Central Control Room.
The technical solution of the utility model is as follows:
A kind of blast-furnace tuyere wireless camera monitor, comprise thermo-electric conversion module 1, power-supply management system 2, image sensor 3, wireless launcher 4, wireless receiver 5, mounting bracket, visual information processor 7, described thermo-electric conversion module 1 is welded on the furnace shell on 6 limits, air port of blast furnace, described power-supply management system 2 is installed on the mounting bracket mounting bracket and air port 6 mechanical connections with, wireless launcher 4; Described image sensor 3 is fixed on the air port; Described wireless receiver 5 is installed in the sole; Thermo-electric conversion module 1 is connected with power-supply management system 2 electric wires, power-supply management system 2 is powered to image sensor 3 by 2 power supply root lines, power to wireless launcher 4 by other 2 supply leads, the signal output part of image sensor 3 is connected to the signal input part of wireless launcher 4; Wireless receiver 5 connects power-supply management system 2 by the power supply electric wire, and the output terminal of wireless receiver 5 is connected to visual information processor 7.
Because blast-furnace tuyere has tens need to detect simultaneously, so, but wireless receiving and emission can be adopted one-to-many and transmission mode, and namely described wireless receiver 5 is received the signal of a plurality of wireless launchers 4.
Described consideration blast furnace stops wireless signal, but 4 above wireless receivers 5 are evenly installed in 6 soles, air port of blast furnace.
It is indoor that described visual information processor 7 is installed in center-control.
Described image sensor 3 is pick up camera or industrial camera.
Described wireless launcher 5 passes through wired connection with visual information processor 7, perhaps by wireless connections.
During work, by thermo-electric conversion module 1 generating, after power-supply management system 2 is processed, supply is transferred to image sensor 3 and wireless launcher 4, image sensor 3 is sent to wireless launcher 4 with the picture signal that photographs, wireless launcher sends signal to wireless receiver 5, and wireless receiver 5 is delivered to visual information processor 7 with signal, and visual information processor 7 carries out signal processing, storage and demonstration.
The beneficial effects of the utility model are:
The utility model utilizes the thermal change power technology, solved wired powerup issue of image sensor and wireless launcher, wireless system has solved the wire transmission of image sensor signal, go out to have realized wireless air port camera function at blast-furnace tuyere, it can effectively solve the problems such as flushing and casting inconvenience that air port image sensor wire transmission may bring and circuit damage.
Description of drawings
Fig. 1 is of the present utility model for the electric connection structure schematic diagram.
Fig. 2 is the 2000M blast furnace 32 air port blast-furnace tuyere wireless camera monitor device distribution structural representations of embodiment of the present utility model.
Among the figure: 1 is that thermo-electric conversion module, 2 is that power-supply management system, 3 is that image sensor, 4 is that wireless launcher, 5 is that wireless receiver, 6 is that air port, 7 is visual information processor.
Specific implementation method
Further specify of the present utility model below in conjunction with accompanying drawing.
A kind of blast-furnace tuyere wireless camera monitor, comprise thermo-electric conversion module 1, power-supply management system 2, image sensor 3, wireless launcher 4, wireless receiver 5, mounting bracket, visual information processor 7, described thermo-electric conversion module 1 is welded on the furnace shell on 6 limits, air port of blast furnace, described power-supply management system 2 is installed on the mounting bracket mounting bracket and air port 6 mechanical connections with, wireless launcher 4; Described image sensor 3 is fixed on the air port; Described wireless receiver 5 is installed in the sole; Thermo-electric conversion module 1 is connected with power-supply management system 2 electric wires, power-supply management system 2 is powered to image sensor 3 by 2 power supply root lines, power to wireless launcher 4 by other 2 supply leads, the signal output part of image sensor 3 is connected to the signal input part of wireless launcher 4; Wireless receiver 5 connects power-supply management system 2 by the power supply electric wire, and the output terminal of wireless receiver 5 is connected to visual information processor 7.
Because blast-furnace tuyere has tens need to detect simultaneously, so, but wireless receiving and emission can be adopted one-to-many and transmission mode, and namely described wireless receiver 5 is received the signal of a plurality of wireless launchers 4.
The consideration blast furnace stops wireless signal, but 4 above wireless receivers 5 are evenly installed in 6 soles, air port of blast furnace.
It is indoor that visual information processor 7 is installed in center-control.
Image sensor 3 is pick up camera or industrial camera.Described wireless launcher 5 passes through wired connection with visual information processor 7, perhaps by wireless connections.
Such as Fig. 2, be the 2000M blast furnace 32 air port blast-furnace tuyere wireless camera monitor device distribution structural representations of embodiment of the present utility model.
One group of thermo-electric conversion module 1, power-supply management system, camera 3, wireless launcher 4 are installed in each air port.
Thermo-electric conversion module 1 is welded on the furnace shell on limit, air port, and power-supply management system 2 is installed on the support 6 support and air port mechanical connection with wireless launcher 4.
Described image sensor 3 is fixed on the air port, and image sensor 3 is in the face of the air port.
4 wireless signal receivers 5 are even distributing installation in the sole, sends to graphic information treater 7 with wired or wireless mode for four wireless signal receivers.
During work, thermo-electric conversion module 1 generates electricity, and after by power-supply management system 2 power supply being processed, gives respectively the power supply of camera and wireless signal transmitter.
Camera, the image in the air port that shooting is arrived is by the wireless signal receiver of issuing of wireless signal transmitter.
Wireless signal receiver receives the picture signal in 8 adjacent air ports simultaneously, and received picture signal is sent to Central Control Room visual information processor 7 by wired or wireless mode.
Visual information processor 7 carries out signal processing to four groups of 32 picture signals respectively, shows and storage.
The utility model has been realized the blast-furnace tuyere camera function by wireless mode.
Embodiment recited above is described preferred implementation of the present utility model; be not that design of the present utility model and scope are limited; do not breaking away under the utility model design concept prerequisite; common engineering technical personnel make the technical solution of the utility model in this area various modification and improvement; all should fall into protection domain of the present utility model, the technology contents that the utility model is asked for protection all is documented in claims.

Claims (6)

1. blast-furnace tuyere wireless camera monitor, it is characterized in that comprising thermo-electric conversion module (1), power-supply management system (2), image sensor (3), wireless launcher (4), wireless receiver (5), mounting bracket, visual information processor (7), described thermo-electric conversion module (1) is welded on the furnace shell on limit, air port (6) of blast furnace, described power-supply management system (2) is installed on the mounting bracket mounting bracket and air port (6) mechanical connection with, wireless launcher (4); Described image sensor (3) is fixed on the air port; Described wireless receiver (5) is installed in the sole; Thermo-electric conversion module (1) is connected with power-supply management system (2) electric wire, power-supply management system (2) is powered to image sensor (3) by power supply root line, to wireless launcher (4) power supply, the signal output part of image sensor (3) is connected to the signal input part of wireless launcher (4) by supply lead; Wireless receiver (5) connects power-supply management system (2) by the power supply electric wire, and the output terminal of wireless receiver (5) is connected to visual information processor (7).
2. blast-furnace tuyere wireless camera monitor according to claim 1 is characterized in that a described wireless receiver (5) receives the signal of a plurality of wireless launchers (4).
3. blast-furnace tuyere wireless camera monitor according to claim 1 is characterized in that 4 above wireless receivers (5) are evenly installed in the sole, air port (6) of described blast furnace.
4. blast-furnace tuyere wireless camera monitor according to claim 1 is characterized in that described visual information processor (7) is installed in center-control indoor.
5. blast-furnace tuyere wireless camera monitor according to claim 1 is characterized in that described image sensor (3) is pick up camera or industrial camera.
6. blast-furnace tuyere wireless camera monitor according to claim 1 is characterized in that described wireless launcher (5) and visual information processor (7) pass through wired connection, perhaps by wireless connections.
CN201220552116.2U 2012-10-25 2012-10-25 Wireless camera monitor for blast-furnace tuyere Expired - Fee Related CN202881302U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201220552116.2U CN202881302U (en) 2012-10-25 2012-10-25 Wireless camera monitor for blast-furnace tuyere

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201220552116.2U CN202881302U (en) 2012-10-25 2012-10-25 Wireless camera monitor for blast-furnace tuyere

Publications (1)

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CN202881302U true CN202881302U (en) 2013-04-17

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017036644A1 (en) * 2015-09-02 2017-03-09 Primetals Technologies Austria GmbH Blast furnace having energy-self-sufficient monitoring of carbon injection

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017036644A1 (en) * 2015-09-02 2017-03-09 Primetals Technologies Austria GmbH Blast furnace having energy-self-sufficient monitoring of carbon injection
AT517642A1 (en) * 2015-09-02 2017-03-15 Primetals Technologies Austria GmbH Blast furnace with energy self-sufficient observation of carbon injection
CN107923711A (en) * 2015-09-02 2018-04-17 首要金属科技奥地利有限责任公司 Observe the blast furnace that carbon is blown into self energizing
AT517642B1 (en) * 2015-09-02 2018-07-15 Primetals Technologies Austria GmbH Blast furnace with energy self-sufficient observation of carbon injection
CN107923711B (en) * 2015-09-02 2019-11-01 首要金属科技奥地利有限责任公司 With self energizing observe the blast furnace that carbon is blown into

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130417

Termination date: 20211025