CN107502700A - A kind of protection device of fixed furnace lining thickness measurement with laser scanner - Google Patents

A kind of protection device of fixed furnace lining thickness measurement with laser scanner Download PDF

Info

Publication number
CN107502700A
CN107502700A CN201710783002.6A CN201710783002A CN107502700A CN 107502700 A CN107502700 A CN 107502700A CN 201710783002 A CN201710783002 A CN 201710783002A CN 107502700 A CN107502700 A CN 107502700A
Authority
CN
China
Prior art keywords
module
main body
heat insulation
door main
screw
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201710783002.6A
Other languages
Chinese (zh)
Other versions
CN107502700B (en
Inventor
李培玉
沈国振
王国春
李名聪
张�杰
许振业
谢超
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
HANGZHOU PUCHENG TAIDI INDUSTRIAL Co Ltd
Original Assignee
HANGZHOU PUCHENG TAIDI INDUSTRIAL Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by HANGZHOU PUCHENG TAIDI INDUSTRIAL Co Ltd filed Critical HANGZHOU PUCHENG TAIDI INDUSTRIAL Co Ltd
Priority to CN201710783002.6A priority Critical patent/CN107502700B/en
Publication of CN107502700A publication Critical patent/CN107502700A/en
Application granted granted Critical
Publication of CN107502700B publication Critical patent/CN107502700B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21CPROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OF WROUGHT-IRON OR STEEL; TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
    • C21C5/00Manufacture of carbon-steel, e.g. plain mild steel, medium carbon steel or cast steel or stainless steel
    • C21C5/28Manufacture of steel in the converter
    • C21C5/42Constructional features of converters
    • C21C5/46Details or accessories
    • C21C5/4673Measuring and sampling devices
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21CPROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OF WROUGHT-IRON OR STEEL; TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
    • C21C5/00Manufacture of carbon-steel, e.g. plain mild steel, medium carbon steel or cast steel or stainless steel
    • C21C5/28Manufacture of steel in the converter
    • C21C5/42Constructional features of converters
    • C21C5/46Details or accessories
    • C21C5/4646Cooling arrangements

Abstract

The present invention relates to metallurgical field of steel-making converter lining thickness measurement with laser technology, it is desirable to provide a kind of protection device of fixed furnace lining thickness measurement with laser scanner.The device includes dust-proof mechanism, cooling mechanism and thermal radiation resistant mechanism;Dust-proof mechanism includes shell module, the gentle curtain module of inner chamber module;Cooling mechanism includes the cooled plate for the multiple aluminum alloy materials being arranged on by screw on inner chamber body inwall;Thermal radiation resistant mechanism includes gate heat insulation module, wicket heat insulation module and big face dividing plate, and gate heat insulation module and wicket heat insulation module all include protective door component and pushing component.The present invention is using the dust-proof processing of multilayer insulation and water-cooled cooling mode, when furnace lining thickness measurement with laser scanner does not work, can stable interior environment temperature, avoid interior environment temperature from being raised with ambient temperature rise.When furnace lining thickness measurement with laser scanner works, it can bear the outside heat radiation to it, the life-span for preferably protecting it to use, indirect saving cost of equipment maintenance.

Description

A kind of protection device of fixed furnace lining thickness measurement with laser scanner
Technical field
The present invention relates to metallurgical field of steel-making converter lining thickness measurement with laser technology, more particularly to a kind of fixed furnace lining laser The protection device of thickness measuring scanner.
Background technology
With the maximization of metallurgical furnace and the progress of metallurgical technology, pneumatic steelmaking has turned into the main steel-making in the world today Method, account for the 60% of world steel total output.Converter lining directly contacts in steelmaking process with molten steel, clinker and furnace gas, Corrosion function constantly by physics, mechanically and chemically, when furnace lining is less than safe thickness, heat can be spent from more than 1,600 Molten steel is quickly delivered to the metal furnace shell of converter, can cause to wear steel accident when serious.The maintenance repairing of furnace lining can not only extend Lining durability, the damage of balanced furnace lining, the operating rate for improving converter, reduction production cost, and be advantageous to balanced tissue production, promote Enter the benign cycle of production.
Domestic and international steel mill generally employs slag splashing and fettling, GPRS it is optimal splash slag and fettling opportunity, need The shape and thickness of furnace lining are grasped in time.Therefore, the detection work of lining thickness has extremely important work to STEELMAKING PRODUCTION With with the extensive use of laser ranging technique, laser distance measurement method and automatic control measurement being combined, the converter that research and design goes out Furnace lining thickness measurement with laser system, point by point scanning is carried out to furnace lining inner surface, furnace lining surface undulation is measured, so as to grasp lining wear Situation, therefore furnace lining thickness measurement with laser system is gradually acceptable to the market and extensive use.
At present, in the market has portable and fixed two kinds of converter linings thickness measurement with laser system.Portable converter lining swashs Light thickness measuring system moves freely, and is required for worker scene to look for measurement point during measurement every time;Sole environment temperature is high, so Far measuring distance, it is caused to model time length, measurement accuracy reduces, and provides the danger of worker's execute-in-place significantly.It is fixed Converter lining thickness measurement with laser system is one-point measurement, only needs to build a mould early stage, subsequently can be general;Due to can be from fire door Close-in measurement, ratio of precision movable type converter lining thickness measurement with laser system are higher, it is not necessary to worker's execute-in-place, during measurement used Between it is shorter;But because in convertor steelmaking process, ambient temperature is generally higher, particularly furnace lining thickness measurement with laser scanner is to turning When stove fire door scanned in stove, the external heat radiation of fire door is very big, a large amount of dusts also taken out of in steelmaking process, right The measurement scanning of furnace lining thickness measurement with laser scanner is very big using influenceing.
Therefore a kind of protection device of fixed furnace lining thickness measurement with laser scanner is researched and developed to furnace lining thickness measurement with laser scanner Safe to use, service life and service efficiency are necessary.
The content of the invention
The technical problem to be solved in the present invention is to overcome deficiency of the prior art, there is provided a kind of simple in construction, protective Can be good, the protection device of the wide fixed furnace lining thickness measurement with laser scanner of applicability.
In order to solve the above technical problems, the solution of the present invention is:
A kind of protection device of fixed furnace lining thickness measurement with laser scanner is provided, including swept for coating furnace lining thickness measurement with laser Retouch the dust-proof mechanism of instrument, in addition to cooling mechanism and thermal radiation resistant mechanism;
The dust-proof mechanism includes shell module, the gentle curtain module of inner chamber module;Wherein, shell module is by rectangular solid The casing frame of structure, and the six housing face-plates composition being fixed on casing frame, its former and later two panel have middle part The frame-type or annular of opening, and by the opening on closure panel closure shell front panel;Inner chamber module includes inner chamber body, dovetail Track and circular cone shield, inner chamber body are arranged on inside casing frame, are the rectangular stereochemical structures being welded by polylith carbon steel, and With the opening corresponding with former and later two housing face-plates;Swallowtail track includes top shoe and the downslide connected by dovetail groove Block, both can relatively move;Top shoe is arranged on by screw on the inner side top surface of inner chamber body, furnace lining thickness measurement with laser scanning The base of instrument is arranged on the lower section of sliding block by screw, and the circular cone shield that Open Side Down is set between base and sliding block;Gas curtain Module has multiple, is separately mounted at former and later two housing face-plates;
The cooling mechanism includes the cooled plate for the multiple aluminum alloy materials being arranged on by screw on inner chamber body inwall, its Side is that toothrow face opposite side buries red copper water pipe, toothrow facing to the inside of inner chamber body, bury the side of red copper water pipe with it is interior Set between cavity and paste heat insulation foam;The externally connected cooling water circulation pipeline of inlet and outlet of red copper water pipe, adjacent water cooling Connected between plate with heatproof silicone tube;
The thermal radiation resistant mechanism includes gate heat insulation module, wicket heat insulation module and big face dividing plate, gate heat insulation module All include protective door component and pushing component with wicket heat insulation module;Wherein, the protective door component of gate heat insulation module is by gate Main body, two line slideways and four guide-rail coupling member compositions;The outside of big door main body equipped with stainless steel big face every Plate, its lateral surface are throwing mirror smooth surface;Multiple grooves are continuously set on big door main body, stuffed heat insulated cotton and with gate foreboard in groove Closing;The upper and lower end face of big door main body is connected to two line slideways by guide-rail coupling member respectively, and two line slideways are in water Plain cloth is put and is arranged on by screw in shell module;Wicket heat insulation module is installed between gate heat insulation module and inner chamber body, Its protective door component is made up of small door main body, two line slide rails and several sliding blocks;Continuously set on small door main body multiple recessed Groove, stuffed heat insulated cotton and closed with wicket foreboard in groove;The upper and lower end face of small door main body is connected to two by sliding block respectively Line slide rail, two line slide rails are in horizontally disposed and are arranged on by screw in shell module;Gate heat insulation module and wicket Include pusher cylinder and cylinder connection piece in the pushing component of heat insulation module, for promoting big door main body or small door main body or so It is mobile;Pusher cylinder is arranged in shell module by screw, and one end of cylinder connection piece is fixed on big door main body or wicket master The side of body, the other end are fixed on the push rod of pusher cylinder.
In the present invention, in gate heat insulation module, two guide-rail coupling members are connected by screw in big door main body upper surface On, two guide-rail coupling members are connected by screw on big door main body lower surface, and two line slideways are installed by screw respectively In the lower surface of shell top panel and the upper surface of enclosure bottom plate, guide-rail coupling member is connected to by pin can be in line slideway The rolling bearing of upper movement;Pusher cylinder is arranged on by screw on the upper surface of shell top panel;In wicket heat insulation module, Sliding block is fixedly mounted by screw respectively on the upper and lower end face of small door main body, two line slide rails are arranged on by screw respectively On shell top panel lower surface and enclosure bottom plate upper surface, sliding block can move on slide rail;Pusher cylinder is installed by screw On the upper surface of shell bottom panel.
In the present invention, the inflatable curtain module is linear pattern air knife.
In the present invention, the pusher cylinder is double action type cylinder, can realize that push rod moves forward and backward by air pressure change.
In the present invention, the line slideway is aluminium support cylinder optical axis guide rail.
In the present invention, the line slide rail is rolling ball linear slide rail.
In the present invention, the stickup heat insulation foam is aluminium foil rubber and plastic heat insulation foam.
In the present invention, the heat insulation foam being filled in the groove of big door main body or small door main body is asbestos.
In the present invention, the casing frame is the rectangular stereochemical structure being welded into by 20 20mm × 20mm square steel.
In the present invention, the inflatable curtain module has three, and two of which is separately mounted to the inner chamber body close to shell rear board Both sides, another is arranged in closure panel.
Compared with prior art, the beneficial effects of the invention are as follows:
Present invention employs the processing of the thermal insulation and dust-proof of multilayer and water-cooled cooling mode, in furnace lining thickness measurement with laser scanner not work When making, the interior environment temperature residing for furnace lining thickness measurement with laser scanner can be stablized, avoid interior environment temperature with external rings Border temperature is raised and raised.When furnace lining thickness measurement with laser scanner works, due to installing the space of furnace lining thickness measurement with laser scanner Interior temperature has the very big temperature difference with external environment condition, and it is right can to bear outside when furnace lining thickness measurement with laser scanner quickly scans completely Its heat radiation, the life-span for preferably protecting it to use, the very big cost of equipment maintenance of indirect saving.
Brief description of the drawings
Fig. 1 is the front view of the present invention.
Fig. 2 is the sectional view at A-A and at B-B in Fig. 1.
Fig. 3 is the sectional view at C-C in Fig. 2.
Reference in figure is:Dust-proof mechanism 1;Shell module 11;Casing frame 111;Enclosure bottom plate 112;Shell Top panel 113;Shell left panel 114;Shell right panel 115;Shell front panel 116;Closure panel 117;Shell rear board 118;Big protection face board 119;Inner chamber module 12;Inner chamber body 121;Swallowtail track 122;Top shoe 1221;Sliding block 1222;Circle Bore shield 123;Inflatable curtain module 13;Cooling mechanism 2;Water cooling plate module 21;Paste heat insulation foam 22;Thermal radiation resistant mechanism 3;Gate every Thermal modules 31;Big protective door component 311;Big door main body 3111;Gate foreboard 3112;Heat insulation foam 3113;Line slideway 3114;Lead Rail connector 3115;Pushing component 312;Big pusher cylinder 3121;Big cylinder connection piece 3122;Wicket heat insulation module 32;It is small anti- Protect door component 321;Small door main body 3211;Wicket foreboard 3212;Heat insulation foam 3213;Line slide rail combination 3214;Small pushing component 322;Small pusher cylinder 3221;Small cylinder connection piece 3222;Big face dividing plate 33;Furnace lining thickness measurement with laser scanner 4.
Embodiment
The present invention is described in further detail with embodiment below in conjunction with the accompanying drawings:
The protection device of fixed furnace lining thickness measurement with laser scanner as Figure 1-3, including dust-proof mechanism 1, cooler Structure 2, thermal radiation resistant mechanism 3, for protecting the working environment of the fixed furnace lining thickness measurement with laser scanner 4 of converter.
Dust-proof mechanism 1 includes shell module 11, inner chamber module 12, inflatable curtain module 13, for being swept to furnace lining thickness measurement with laser Retouch the dust-proof, heat-insulated of instrument 4;The shell module 11 includes casing frame 111, enclosure bottom plate 112, shell top panel 113, outer Shell left panel 114, shell right panel 115, shell front panel 116, closure panel 117, shell rear board 118, big protection face board 119, it is dust-proof, heat-insulated for carrying out first layer to external environment condition;Casing frame 111 is welded by 20 20mm × 20mm square steel Into rectangular stereochemical structure, enclosure bottom plate 112, shell front panel 116, plate 113, shell rear board 118 divide above shell The bottom face of casing frame 111, front end face, upper surface, rear end face are not welded on, and shell front panel 116 and shell rear board 118 have There are the frame-type or annular of intermediate openings, and the opening on shell front panel 116 is blocked by closure panel 117.Shell left panel 114th, shell right panel 115 is fastened on the front end face of casing frame 111, left side, right side, big protection face by screw respectively Plate 119 is fastened on shell top panel 113 and enclosure bottom plate 112 by screw, for small pusher cylinder 3221, promotes gas greatly Cylinder 3121 it is heat-insulated, dust-proof.
Inner chamber module 12 includes inner chamber body 121, swallowtail track 122, circular cone shield 123, is welded in casing frame 111 Portion, it is dust-proof, heat-insulated for carrying out the second layer to external environment condition;Inner chamber body 121 is welded by 10 pieces of carbon steel sheets, for steady Determine the interior environment temperature that furnace lining thickness measurement with laser scanner 4 uses, have and shell front panel 116 and the phase of shell rear board 118 Corresponding opening;Swallowtail track 122 includes top shoe 1221 and sliding block 1222, for the furnace lining thickness measurement with laser scanning that is connected Instrument 4, it is set to carry out movable regulation on dovetail rail 122.Top shoe 1221 is arranged on the medial roof of inner chamber body by screw On face, sliding block 1222 is arranged on by screw on the base of furnace lining thickness measurement with laser scanner 4, top shoe 1221 and sliding block 1222 are attached movement by dovetail groove;The Trajectory Design that circular cone shield 123 is run according to furnace lining thickness measurement with laser scanner 4, It is open towards being arranged between sliding block 1222 and the base of furnace lining thickness measurement with laser scanner 4, is swept for furnace lining thickness measurement with laser The dust-proof of instrument 4 is retouched, while prevents the inner tip of inner chamber body 121 from producing the condensation globule in temperature-fall period and dropping in furnace lining Laser Measuring On thick scanner 4;Described inflatable curtain module 13 includes three gas curtains, for inner chamber body 121 internal pressurization and sweep inner space Dust, two of which gas curtain are separately mounted on the inner side left and right front end face of inner chamber body 121, prevent furnace lining thickness measurement with laser scanner 4 Dust outside when measuring scanning enters, and another is arranged in closure panel 117, for furnace lining thickness measurement with laser scanner 4 laser scanning head dedusting.
Cooling mechanism 2 includes water cooling plate module 21, pastes heat insulation foam 22, for being dropped to the inner space of inner chamber body 121 Temperature, ensure the use environment temperature stabilization of furnace lining thickness measurement with laser scanner 4 in isoperibol is applicable;Water cooling plate module 21 includes 5 cooled plates, be connected by screw respectively installed in the upper surface of inner chamber body 121 (there are two cold water plates upper surface), lower surface, Left side, right side, cooled plate are aluminum alloy material, and side is toothrow face, and opposite side buries red copper water pipe, and toothrow facings interior The inner side of cavity 121, it is attached with high temperature resistant silicon sebific duct between cooled plate, inlet and outlet are all connected to the cooling of the offer of outside On water circulating pipe;Paste the piecemeal of heat insulation foam 22 and be pasted onto cooled plate and bury on red copper water pipe end face, it is external to reduce cooled plate Cold and hot exchange, so as to ensure the temperature stabilization inside inner chamber body 121.
The thermal radiation resistant mechanism 3 includes gate heat insulation module 31, wicket heat insulation module 32, big face dividing plate 33, for dropping Heat radiation of the high temperature caused by low pneumatic steelmaking on furnace lining thickness measurement with laser scanner 4 influences;Described gate heat insulation module 31 Including big protective door component 311 and pushing component 312, for carrying out first layer barrier to heat radiation caused by pneumatic steelmaking;Greatly Protective door component 311, which includes big door main body 3111, gate foreboard 3112, the line slideway 3114, four of heat insulation foam 3113, two, leads Rail connector 3115, heat insulation foam 3113 are placed in the groove of big door main body 3111, and gate foreboard 3112 is fastened on greatly by screw On door main body 3111, heat insulation foam 3114 is enclosed in the big groove of door main body 3111, two guide-rail coupling members 3115 pass through screw It is connected on the big upper surface of door main body 3111, two guide-rail coupling members 3115 are connected by screw in the big lower surface of door main body 3111 On, two line slideways 3114 are arranged on the lower surface of shell top panel 113 and the upper end of enclosure bottom plate 112 by screw respectively Face, big door main body 3111 are connected with line slideway 3114 by guide-rail coupling member 3115, can moved left and right;Pushing component 312 include big pusher cylinder 3121, big cylinder connection piece 3122, for promoting big door main body 3111 to be moved left and right;Push away greatly Cylinder 3121 of taking offence is arranged on the upper surface of shell top panel 113 by screw, for the mobile offer thrust of big door main body 3111, air The one end of cylinder connector 3122 is fixed by screws on the big right flank of door main body 3111, and one end is fastened on big promotion gas by nut On the push rod of cylinder 3121, the thrust of big pusher cylinder 3121 is transmitted for big door main body 3111.Described wicket heat insulation module 32 is wrapped Include small protective door component 321, small pushing component 322, for carrying out second layer barrier to heat radiation caused by pneumatic steelmaking;It is small anti- Protecting door component includes 3213, two groups of small door main body 3211, wicket foreboard 3212, heat insulation foam line slide rail combinations 3214, heat insulation foam 3213 are placed in the groove of small door main body 3211, and wicket foreboard is fastened on small door main body by screw, the envelope of heat insulation foam 3213 Close in the small groove of door main body 3211.Every group of line slide rail combination 3214 includes a line slide rail and two sliding blocks;Straight line is slided Rail is arranged on the lower surface of shell top panel 113 and the upper surface of enclosure bottom plate 112 by screw respectively, and small door main body 3211 passes through Mode connects for screw can be moved left and right on sliding block on line slide rail.Pushing component 322 include small pusher cylinder 3221, Small cylinder connection piece 3222, for promoting small door main body 3211 to be moved left and right;Small pusher cylinder 3221 is installed by screw In the upper surface of shell bottom panel 112, for the mobile offer thrust of small door main body 3211, small one end of cylinder connection piece 3222 passes through spiral shell Nail is fixed on the small right flank of door main body 3211, and one end is fastened on by nut on the push rod of small pusher cylinder 3222, is wicket Main body 3211 transmits the thrust of small pusher cylinder 3221;The big face dividing plate 33 is the thick stainless steel plate of one piece of 5mm, big face dividing plate Mirror smooth surface is thrown to fire door one side, for reflective thermal radiation, protection heat radiation is to shell module 11, big pusher cylinder 3121 and guide rail The influence of the heat radiation of connector 3115.
Before use, first water temperature is freezed to 15 DEG C or so, cold water is passed into water cooling plate module by connecting cooling water pipe Circulated in 21, until the temperature sensor feedback in inner chamber body 121 goes out temperature value at 20 DEG C or so, gas curtain 13 is ventilated The inner space of inner chamber body 121 is started to blow, the power supply of furnace lining thickness measurement with laser scanner 4 is opened and carries out preheating early stage and prepare, when turning When stove fire door turns to furnace lining thickness measurement with laser scanner 4, big pusher cylinder 3121 promotes big door main body 3111 to open, small pusher cylinder 3221 promote small door main body 3211 to open, and furnace lining thickness measurement with laser scanner 4 immediately begins to carry out rotation sweep measurement (stove to fire door Lining thickness measurement with laser scanner 4 carries rotation platform), after scanned, big pusher cylinder 3121 closes big door main body 3111 immediately, Small pusher cylinder 3221 closes small door main body 3211, disconnects and opens the power supply of furnace lining thickness measurement with laser scanner 4, and furnace lining thickness measurement with laser is swept Retouch instrument system and start lining wear situation in calculating simulation Converter.
Above-mentioned is scanning survey process once, and when to carry out scanning survey next time, above-mentioned steps repetitive operation is complete Into scanning survey.
Finally it should be noted that listed above is only specific embodiment of the invention, it is clear that the invention is not restricted to Above example, can also there is many variations, and one of ordinary skill in the art can directly lead from present disclosure All deformations for going out or associating, are considered as protection scope of the present invention.

Claims (10)

1. a kind of protection device of fixed furnace lining thickness measurement with laser scanner, including for coating furnace lining thickness measurement with laser scanner Dust-proof mechanism, its spy are, in addition to cooling mechanism and thermal radiation resistant mechanism;
The dust-proof mechanism includes shell module, the gentle curtain module of inner chamber module;Wherein, shell module is by rectangular stereochemical structure Casing frame, and the six housing face-plates composition being fixed on casing frame, its former and later two panel has intermediate openings Frame-type or annular, and by closure panel closure shell front panel on opening;Inner chamber module includes inner chamber body, swallowtail track With circular cone shield, inner chamber body is arranged on inside casing frame, is the rectangular stereochemical structure being welded by polylith carbon steel, and have The opening corresponding with former and later two housing face-plates;Swallowtail track include by dovetail groove connection top shoe and sliding block, two Person can relatively move;Top shoe is arranged on by screw on the inner side top surface of inner chamber body, furnace lining thickness measurement with laser scanner Base is arranged on the lower section of sliding block by screw, and the circular cone shield that Open Side Down is set between base and sliding block;Inflatable curtain module Have multiple, be separately mounted at former and later two housing face-plates;
The cooling mechanism includes the cooled plate for the multiple aluminum alloy materials being arranged on by screw on inner chamber body inwall, its side Red copper water pipe is buried for toothrow face opposite side, and toothrow buries side and the inner chamber body of red copper water pipe facing to the inside of inner chamber body Between set paste heat insulation foam;The externally connected cooling water circulation pipeline of inlet and outlet of red copper water pipe, adjacent cooled plate it Between with heatproof silicone tube connect;
The thermal radiation resistant mechanism includes gate heat insulation module, wicket heat insulation module and big face dividing plate, gate heat insulation module and small Door heat insulation module all includes protective door component and pushing component;Wherein, the protective door component of gate heat insulation module by big door main body, Two line slideways and four guide-rail coupling member compositions;The big face dividing plate of stainless steel is housed in the outside of big door main body, its Lateral surface is throwing mirror smooth surface;Multiple grooves are continuously set on big door main body, stuffed heat insulated cotton and are closed in groove with gate foreboard; The upper and lower end face of big door main body is connected to two line slideways by guide-rail coupling member respectively, and two line slideways are in horizontally disposed And it is arranged on by screw in shell module;Wicket heat insulation module is installed between gate heat insulation module and inner chamber body, and it is protected Door component is made up of small door main body, two line slide rails and several sliding blocks;Multiple grooves, groove are continuously set on small door main body Interior stuffed heat insulated cotton is simultaneously closed with wicket foreboard;The upper and lower end face of small door main body is connected to two straight lines by sliding block respectively and slided Rail, two line slide rails are in horizontally disposed and are arranged on by screw in shell module;Gate heat insulation module and wicket heat insulating mould Include pusher cylinder and cylinder connection piece in the pushing component of block, for promoting big door main body or small door main body to move left and right; Pusher cylinder is arranged in shell module by screw, and one end of cylinder connection piece is fixed on the side of big door main body or small door main body Face, the other end are fixed on the push rod of pusher cylinder.
2. device according to claim 1, it is characterised in that in gate heat insulation module, two guide-rail coupling members pass through Mode connects for screw is on big door main body upper surface, and two guide-rail coupling members are connected by screw on big door main body lower surface, two Line slideway is arranged on the lower surface of shell top panel and the upper surface of enclosure bottom plate by screw respectively, and guide-rail coupling member leads to Cross pin and be connected to the rolling bearing that can be moved on line slideway;Pusher cylinder is arranged on the upper of shell top panel by screw On end face;In wicket heat insulation module, sliding block is fixedly mounted by screw respectively on the upper and lower end face of small door main body, two straight Line slide rail is arranged on shell top panel lower surface and enclosure bottom plate upper surface by screw respectively, and sliding block can be in line slide rail Upper movement;Pusher cylinder is arranged on by screw on the upper surface of enclosure bottom plate.
3. device according to claim 1, it is characterised in that the inflatable curtain module is linear pattern air knife.
4. device according to claim 1, it is characterised in that the pusher cylinder is double action type cylinder, can pass through air pressure Change realizes that push rod moves forward and backward.
5. device according to claim 1, it is characterised in that the line slideway is aluminium support cylinder optical axis guide rail.
6. device according to claim 1, it is characterised in that the line slide rail is rolling ball linear slide rail.
7. device according to claim 1, it is characterised in that the stickup heat insulation foam is aluminium foil rubber and plastic heat insulation foam.
8. device according to claim 1, it is characterised in that be filled in the groove of big door main body or small door main body every Hot cotton is asbestos.
9. device according to claim 1, it is characterised in that the casing frame is by 20 20mm × 20mm square steel The rectangular stereochemical structure being welded into.
10. device according to claim 1, it is characterised in that the inflatable curtain module has three, and two of which is installed respectively Close to the inner chamber body both sides of shell rear board, another is arranged in closure panel.
CN201710783002.6A 2017-09-03 2017-09-03 Protection device of fixed furnace lining laser thickness measurement scanner Active CN107502700B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710783002.6A CN107502700B (en) 2017-09-03 2017-09-03 Protection device of fixed furnace lining laser thickness measurement scanner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710783002.6A CN107502700B (en) 2017-09-03 2017-09-03 Protection device of fixed furnace lining laser thickness measurement scanner

Publications (2)

Publication Number Publication Date
CN107502700A true CN107502700A (en) 2017-12-22
CN107502700B CN107502700B (en) 2022-11-04

Family

ID=60695555

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710783002.6A Active CN107502700B (en) 2017-09-03 2017-09-03 Protection device of fixed furnace lining laser thickness measurement scanner

Country Status (1)

Country Link
CN (1) CN107502700B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108387274A (en) * 2018-05-18 2018-08-10 杭州谱诚泰迪实业有限公司 The device and method that ladle packet condition measures is realized by 3-D scanning
CN110726370A (en) * 2019-10-25 2020-01-24 武汉钢铁集团耐火材料有限责任公司 Ladle lining laser thickness measuring scanner moving device
CN110856382A (en) * 2019-10-25 2020-02-28 武汉钢铁集团耐火材料有限责任公司 Steel ladle lining laser thickness measuring scanner protecting box

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5127736A (en) * 1982-02-22 1992-07-07 Armco Inc. Apparatus for measuring wear in the lining of refractory furnaces
CN101339005A (en) * 2008-08-18 2009-01-07 长沙有色冶金设计研究院 Kiln lining thickness measuring system and method
CN102219364A (en) * 2011-06-21 2011-10-19 重庆飞达电炉有限公司 Bottom lifting type resistance heating annealing furnace
CN202226873U (en) * 2011-08-11 2012-05-23 山西太钢不锈钢股份有限公司 Device for measuring thickness of furnace lining of blast furnace body
CN203323708U (en) * 2013-04-26 2013-12-04 杭州谱诚泰迪实业有限公司 Device measuring thickness of furnace lining
CN207267885U (en) * 2017-09-03 2018-04-24 杭州谱诚泰迪实业有限公司 The protective device of fixed furnace lining thickness measurement with laser scanner

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5127736A (en) * 1982-02-22 1992-07-07 Armco Inc. Apparatus for measuring wear in the lining of refractory furnaces
CN101339005A (en) * 2008-08-18 2009-01-07 长沙有色冶金设计研究院 Kiln lining thickness measuring system and method
CN102219364A (en) * 2011-06-21 2011-10-19 重庆飞达电炉有限公司 Bottom lifting type resistance heating annealing furnace
CN202226873U (en) * 2011-08-11 2012-05-23 山西太钢不锈钢股份有限公司 Device for measuring thickness of furnace lining of blast furnace body
CN203323708U (en) * 2013-04-26 2013-12-04 杭州谱诚泰迪实业有限公司 Device measuring thickness of furnace lining
CN207267885U (en) * 2017-09-03 2018-04-24 杭州谱诚泰迪实业有限公司 The protective device of fixed furnace lining thickness measurement with laser scanner

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108387274A (en) * 2018-05-18 2018-08-10 杭州谱诚泰迪实业有限公司 The device and method that ladle packet condition measures is realized by 3-D scanning
CN108387274B (en) * 2018-05-18 2024-03-19 杭州谱诚泰迪实业有限公司 Device and method for realizing measurement of ladle Bao Kuang through three-dimensional scanning
CN110726370A (en) * 2019-10-25 2020-01-24 武汉钢铁集团耐火材料有限责任公司 Ladle lining laser thickness measuring scanner moving device
CN110856382A (en) * 2019-10-25 2020-02-28 武汉钢铁集团耐火材料有限责任公司 Steel ladle lining laser thickness measuring scanner protecting box
CN110726370B (en) * 2019-10-25 2021-06-01 武汉钢铁集团耐火材料有限责任公司 Ladle lining laser thickness measuring scanner moving device

Also Published As

Publication number Publication date
CN107502700B (en) 2022-11-04

Similar Documents

Publication Publication Date Title
CN207267885U (en) The protective device of fixed furnace lining thickness measurement with laser scanner
CN107502700A (en) A kind of protection device of fixed furnace lining thickness measurement with laser scanner
JPS6193384A (en) Repair device for kiln furnace of kiln
CN104296529A (en) Bell-type atmosphere furnace applicable to sintering of ITO targets
CA2792854C (en) Pivoting slag door
CN102337361A (en) Method for positioning discharged residual iron during overhaul of blast furnace
CN106282480A (en) Mammoth conveter furnace lining and building method
CN116024421A (en) Heat treatment industrial furnace with quick cooling mechanism
CN204268872U (en) Can be used for the atmosphere clock hood type furnace of ITO target sintering
KR20140036363A (en) Apparatus for heat recovery of furnace
CN105907905B (en) A kind of molten slag waste-heat recovery device
CN100577823C (en) Heat treatment furnace with built-in euthermic gas generation device
US6034345A (en) Apparatus for repairing high temperature process vessels
CN115758624A (en) Method for prolonging service life of blast furnace waist and furnace belly cooling wall
CN2391155Y (en) Titanium alloy vacuum heating furnace
CN205482318U (en) Hydrogen sintering stove heat energy cyclic utilization device
CN208171004U (en) Side discharging continuous-type furnace for blank
CN107243623A (en) A kind of ladle with vacuum layer
CN107906948A (en) A kind of horizontal-type high temperature hydrogen resistance furnace
CN103757573B (en) Push disc type aluminum alloy solution and aging heat treatment production line and production process thereof
CN108413769A (en) Side discharging continuous-type furnace for blank
JPS6028666Y2 (en) Core for repairing blast furnace tap trough
CN113623999B (en) Fire-resistant protection box and preparation method thereof
CN218545293U (en) Energy-efficient metallurgical stove of heat loss prevention
CN107421324B (en) A kind of dou-ble-pusher kiln producing ferrovanadium nitride

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant