CN208794973U - Can-type calcine furnace system - Google Patents

Can-type calcine furnace system Download PDF

Info

Publication number
CN208794973U
CN208794973U CN201821525170.1U CN201821525170U CN208794973U CN 208794973 U CN208794973 U CN 208794973U CN 201821525170 U CN201821525170 U CN 201821525170U CN 208794973 U CN208794973 U CN 208794973U
Authority
CN
China
Prior art keywords
heat exchange
pipeline
calcining
type calcine
extension
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.)
Active
Application number
CN201821525170.1U
Other languages
Chinese (zh)
Inventor
王勇国
孟庆帅
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.)
Sotong Qili Carbon Material Co Ltd
Original Assignee
Sotong Qili Carbon Material 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 Sotong Qili Carbon Material Co Ltd filed Critical Sotong Qili Carbon Material Co Ltd
Priority to CN201821525170.1U priority Critical patent/CN208794973U/en
Application granted granted Critical
Publication of CN208794973U publication Critical patent/CN208794973U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Furnace Details (AREA)

Abstract

The utility model discloses a kind of can-type calcine furnace systems, including calcining furnace body, calcining furnace body includes calcining chamber, the multilayer quirk being set on the outside of calcining chamber, adjusting pulling plate is also slidably connected on calcining furnace body, calcining chamber includes successively including feed inlet from top to bottom, cavity and discharge gate, cooling jacket is provided on discharge gate, multiple preheated air roads are additionally provided between the quirk and cooling jacket of bottom, it further include collection conduits, air-introduced machine, heat exchange boiler, heat exchange pump and heating equipment, each preheated air road is all connected in collection conduits, collection conduits are sequentially connected heat exchange boiler and air-introduced machine, heat exchange boiler, heat exchange pump and heating equipment by circulating line are sequentially connected composition heat exchange cycle, collection conduits and circulating line exchange heat in heat exchange boiler.Can-type calcine furnace system provided by the utility model, the control that the air velocity in preheated air road is not calcined reduce the bulk temperature in its locating region by the distinguished and admirable improving heat exchanging efficiency of high speed.

Description

Can-type calcine furnace system
Technical field
The utility model relates to chemical industry equipments, and in particular to a kind of can-type calcine furnace system.
Background technique
Due to having many advantages, such as that heating time is long, it is abundant to be heated, carbon loss is few, can-type calcine furnace is currently the stone of China's mainstream Oil coke calciner carries out indirect high-temperature calcination to intracavitary petroleum coke is calcined by multilayer (generally 6-10 layers) quirk.
In the prior art, the highest calcination temperature of petroleum coke is typically in the range of between 1200-1300 degrees Celsius, and final products Discharge temperature be 100 degree or sos, namely from being fed to discharge, petroleum coke need experience be rapidly heated to nearly 1300 degrees Celsius with Fast cooling is to 100 degree of the two stages, wherein in temperature-fall period, the prior art by be arranged on discharge gate cooling jacket with Realize fast cooling, but since the temperature of bottom quirk still has between 900-1150 degrees Celsius, adjacent thereto is cold But the unbearable such high temperature of water jacket, to solve this problem, the prior art is arranged in advance between bottom quirk and cooling water channel Hot-air road introduces cooling air in preheated air road, realizes bottom quirk and cooling water channel by the cooling of cooling air Between temperature transition.
Air themperature after the heating of waste heat air channel is high, and to utilize the thermal energy, the prior art introduces the air Quirk progress is combustion-supporting, also has portion of techniques that the air is sent into main chimney flue with the not sufficiently combusted volatile matter that ignites.No matter which kind of Technology, disadvantage is that, no matter the air in preheated air road guided into where is combustion-supporting, and flow velocity must receive pot type and forge The integrally-regulated of furnace is burnt, so that its flow velocity can not be mentioned very high, and lower flow velocity makes its cooling effect limited, this Aspect reduces the service life of cooling jacket, on the other hand also indirectly causes the dump temperature of petroleum coke still higher.
Utility model content
The purpose of the utility model is to provide a kind of can-type calcine furnace systems, with the above-mentioned shortcoming in solution technology.
To achieve the goals above, the utility model provides the following technical solutions:
A kind of can-type calcine furnace system, including calcining furnace body, the calcining furnace body include calcining chamber, are set to the calcining Multilayer quirk on the outside of chamber, also slidably connects adjusting pulling plate on the calcining furnace body, the calcining chamber include from top to bottom according to Secondary includes feed inlet, cavity and discharge gate, is provided with cooling jacket on the discharge gate, the quirk of bottom with it is described cold But multiple preheated air roads are additionally provided between water jacket,
It further include that collection conduits, air-introduced machine, heat exchange boiler, heat exchange pump and heating equipment, each preheated air road are equal It is connected in collection conduits, the collection conduits are sequentially connected the heat exchange boiler and air-introduced machine, the heat exchange boiler, heat exchange pump And heating equipment is sequentially connected composition heat exchange cycle by circulating line, the collection conduits and circulating line are in the heat exchange It exchanges heat in boiler.
Above-mentioned can-type calcine furnace system further includes multiple effort-saving mechanisms, is provided with extension on each adjusting pulling plate Portion, each extension are connected with each effort-saving mechanism one-to-one correspondence, are realized by effort-saving mechanism to the adjusting pulling plate It pulls out and is pushed into.
Above-mentioned can-type calcine furnace system, the effort-saving mechanism are pulley drive mechanism, lever transmission mechanism, gear drive Mechanism or electric labor-saving mechanism.
Above-mentioned can-type calcine furnace system, the effort-saving mechanism include multiple support rods and at least one operating stick, respectively The support rod is set to the top or bottom of the calcining furnace body outer wall, and each support rod and each adjusting pulling plate exist Be arranged in a one-to-one correspondence on vertical direction, at least one support portion be provided on the support rod, be provided on the extension to A few forced section;
The force process of the operating stick are as follows: one end of the operating stick is connected on the support portion, the operating stick Middle part be connected on the forced section, the other end of the operating stick is mobile to drive the adjustings pulling plate reciprocating movement.
Above-mentioned can-type calcine furnace system, the operating stick include the body of rod, and one end of the body of rod is rotatably connected to magnetic Head, when the operating stick exerts a force, the magnetic suction head is magneted on the support portion.
Above-mentioned can-type calcine furnace system, the end of the body of rod are provided with first sleeve, institute are connected on the magnetic suction head The one end for stating the body of rod is located in the first sleeve;
The sleeve limits so that the slewing area of the magnetic suction head is less than 120 degree.
Above-mentioned can-type calcine furnace system, the end on the magnetic suction head away from the body of rod are covered with second sleeve.
Above-mentioned can-type calcine furnace system, the support portion include the block being set on the support rod, the block On be provided with and abut hole, the abuttings hole includes connected loudspeaker oral area and arc abdomen, the shape of the arc abdomen with it is described The shape of magnetic suction head is mutually agreed with.
Above-mentioned can-type calcine furnace system, the forced section are the U-shaped bayonet being set on the extension.
The opening of above-mentioned can-type calcine furnace system, the U-shaped bayonet is tilted towards the direction of furnace body.
Above-mentioned can-type calcine furnace system by thermal insulation board is connected with fixing seat on the outer wall of the calcining furnace body, described Extension is slidably connected in the fixing seat by reciprocating dynamic seal structure.
Above-mentioned can-type calcine furnace system, the reciprocating dynamic seal mechanism include the gland being set side by side and multiple Airtight and watertight padding;
Through-hole is provided in the fixing seat, multiple airtight and watertight paddings are successively connected in the through-hole, and are socketed on On the extension, the gland is pressed in the airtight and watertight padding in outside.
Above-mentioned can-type calcine furnace system is provided with extension pipeline on the discharge gate, is connected on the extension pipeline First side is provided with exhaust fan on pipeline to pipeline, first side.
Above-mentioned can-type calcine furnace system, the second side is additionally provided on the extension pipeline to pipeline, second side to Pipeline is used for supplying nitrogen or inert gas into the extension pipeline;
The cooling jacket and second side are placed in first side to the two sides of pipeline to pipeline.
Above-mentioned can-type calcine furnace system, first side to the sucking rate of pipeline be gas transmission of second side to pipeline Two to four times of amount.
In the above-mentioned technical solutions, can-type calcine furnace system provided by the utility model, the preheating at bottom quirk is empty The air of air flue heating is directed directly towards heat exchange boiler and exchanges heat, the control that the air velocity in such preheated air road is not calcined System, can be substantially improved by air-introduced machine, by the distinguished and admirable improving heat exchanging efficiency of high speed, reduce the bulk temperature in its locating region, The problem of reducing bottom quirk and cooling jacket, namely the temperature of discharge is reduced, carbon loss is reduced, and extend cooling water The service life of set.
Detailed description of the invention
In order to illustrate the technical solutions in the embodiments of the present application or in the prior art more clearly, below will be to institute in embodiment Attached drawing to be used is needed to be briefly described, it should be apparent that, the accompanying drawings in the following description is only to record in the utility model Some embodiments be also possible to obtain other drawings based on these drawings for those of ordinary skill in the art.
Fig. 1 is the structural schematic diagram of can-type calcine furnace system provided by the embodiment of the utility model;
Fig. 2 is the cross-sectional view of calcining furnace body provided by the embodiment of the utility model;
Fig. 3 is calcining furnace body provided by the embodiment of the utility model and effort-saving mechanism structural schematic diagram;
Fig. 4 is the structural schematic diagram of support portion provided by the embodiment of the utility model;
Fig. 5 is the structural schematic diagram of extension provided by the embodiment of the utility model;
Fig. 6 is the structural schematic diagram of operating stick provided by the embodiment of the utility model;
Fig. 7 is the cross-sectional view at the top of operating stick provided by the embodiment of the utility model;
Fig. 8 is the structural schematic diagram of reciprocating dynamic seal structure provided by the embodiment of the utility model.
Description of symbols:
1, furnace body is calcined;2, quirk;3, pulling plate is adjusted;3.1, extension;3.2, forced section;4, discharge gate;5, cooling water Set;6, preheated air road;7, collection conduits;8, air-introduced machine;9, heat exchange boiler;10, heat exchange pump;11, heating equipment;12, second Lateral pipeline;13, support rod;13.1, support portion;13.2, block;13.3, hole is abutted;14, rotating member;15, operating stick; 15.1, the body of rod;15.2, magnetic suction head;15.3, first sleeve;15.4, second sleeve;16, thermal insulation board;17, reciprocating dynamic seal knot Structure;18, fixing seat;19, extend pipeline;20, the first side is to pipeline;21, exhaust fan.
Specific embodiment
In order to make those skilled in the art more fully understand the technical solution of the utility model, below in conjunction with attached drawing pair The utility model is further detailed.
As shown in figures 1-8, a kind of can-type calcine furnace system provided by the embodiment of the utility model, including calcining furnace body 1, institute The multilayer quirk 2 that calcining furnace body 1 includes calcining chamber, is set on the outside of the calcining chamber is stated, also sliding connects on the calcining furnace body 1 It is connected to and adjusts pulling plate 3, the calcining chamber includes successively including feed inlet, cavity and discharge gate 4, the discharge gate from top to bottom It is provided with cooling jacket 5 on 4, is additionally provided with multiple preheated air roads 6 between the quirk 2 and the cooling jacket 5 of bottom, It further include collection conduits 7, air-introduced machine 8, heat exchange boiler 9, heat exchange pump 10 and heating equipment 11, each preheated air road 6 is It being connected in collection conduits 7, the collection conduits 7 are sequentially connected the heat exchange boiler 9 and air-introduced machine 8, the heat exchange boiler 9, Heat exchange pump 10 and heating equipment 11 by circulating line are sequentially connected composition heat exchange cycle, the collection conduits 7 and circulation pipe Road exchanges heat in the heat exchange boiler 9.
Specifically, calcining furnace body 1, for calcining to petroleum coke, petroleum coke is from the throat-fed for calcining chamber, from row 4 discharge of material mouth, volatile matter and other fuel carry out high-temp combustion and are calcined with providing high temperature for calcining chamber in quirk 2, fiery Road 2 is generally 6 layers, 8 layers or 10 layers, is that cooling is provided with cooling jacket 5, the quirk 2 and cooling water of the bottom on discharge gate 4 Preheated air road 6 is provided on calcining furnace body 1 between road, the above structure is the shared of can-type calcine furnace in the prior art Structure is the common knowledge and conventional techniques of this field, does not repeat.The main innovation point of the application is, will be multiple pre- The tool of hot-air road 6 is connected in collection conduits 7, and the other side of collection conduits 7 is connected with heat exchange boiler 9, by preheated air road 6 Interior high temperature air is guided to the water exchanged in heat boiler 9 in heat exchange boiler 9 and is heated, and so realizes the utilization of the thermal energy, such as Another of this setting is characterized by, and an air-introduced machine 8 is arranged in the air draft side of heat exchange boiler 9, preferably powerful potent Air-introduced machine 8 promotes wind speed by air-introduced machine 8, can so promote the air velocity in preheated air road 6, and air velocity is promoted, Heat exchange amount is increased, namely reduces the temperature namely bottom quirk 2, preheating sky of overall region locating for bottom quirk 2 The temperature of air flue 6 and cooling jacket 5 not only reduces the temperature of product in this way, so that carbon loss becomes smaller, also extends cooling water The service life of set 5.
In the present embodiment, heat exchange boiler 9, heat exchange pump 10 and heating equipment 11 are sequentially connected composition by circulating line and change Thermal cycle, heating equipment 11 are the equipment needed using hot water, such as heater unit, bath apparatus, heating equipment 11, heat exchange Pump 10 realizes the cold cycling of water.
Can-type calcine furnace system provided by the embodiment of the utility model heats the preheated air road 6 at bottom quirk 2 Air is directed directly towards heat exchange boiler 9 and exchanges heat, the control that the air velocity in such preheated air road 6 is not calcined, can be with It is substantially improved by air-introduced machine 8, by the distinguished and admirable improving heat exchanging efficiency of high speed, reduces the bulk temperature in its locating region, that is, reduce The problem of bottom quirk 2 and cooling jacket 5, namely the temperature of discharge is reduced, carbon loss is reduced, and extend cooling jacket 5 Service life.
In the prior art, it in order to adjust calcination temperature, calcines and is provided with adjusting pulling plate 3 in furnace body 1, adjusting pulling plate 3 includes Air pulling plate and volatile matter pulling plate are up to several hundred thousands of degree due to calcining temperature in furnace body 1, in the prior art all kinds of gas valves It is not available at all, the unlatching of all kinds of air-flows must be so adjusted by the adjusting pulling plate 3 being slidably connected in calcining furnace body 1 Amplitude needs operator frequently to go to pull open or promote by a pull rod to adjust pulling plate 3, with realization pair when specifically adjusting The adjusting of unlatching amplitude.Which results in the physical work intensity of operator is especially big.It is provided by the utility model another Further include multiple effort-saving mechanisms further in embodiment, be provided with extension 3.1 on each adjusting pulling plate 3, extends Portion 3.1 is rod piece, strip structure or plate, and its role is to the one end for adjusting pulling plate 3 is extended to 1 outside of calcining furnace body Certain length operates it convenient for effort-saving mechanism, and each extension 3.1 is connected with each effort-saving mechanism one-to-one correspondence, leads to It crosses effort-saving mechanism and realizes that, to the pull-out and push-in for adjusting pulling plate 3, effort-saving mechanism is pulley drive mechanism, lever driver Structure, gear drive or electric labor-saving mechanism.Pulley drive mechanism, lever transmission mechanism, gear drive are machine The common transmission mechanism in tool field, does not repeat one by one, and such as pulley drive mechanism, a province is arranged on the outer wall of calcining furnace body 1 The pulley blocks of power, one end of rope connect extension 3.1, and the other end receives the pulling of operator, so realize it is laborsaving, it is other Transmission mechanism it is same.One end of these transmission mechanisms is connected with extension 3.1, and the other end is set as handle, by operator Manual actuation, so realizes laborsaving, reduces the physical labor intensity of operator.
Further, the effort-saving mechanism includes multiple support rods 13 and at least one operating stick 15, each branch Strut 13 is set to the top or bottom of calcining 1 outer wall of furnace body, and each support rod 13 exists with each adjusting pulling plate 3 It is arranged in a one-to-one correspondence on vertical direction, support rod 13 is provided at least one on the support rod 13 for providing force fulcrum Support portion 13.1 is provided at least one forced section 3.2 on the extension 3.1;The force process of the operating stick 15, namely Pull or push the whole operation process for adjusting pulling plate 3 are as follows: one end of the operating stick 15 is connected to the support portion 13.1 On, the middle part of the operating stick 15 is connected on the forced section 3.2, and the other end of the operating stick 15 is mobile described to drive Pulling plate 3 is adjusted to move back and forth.It more specifically, first will operation when operator needs to pull or push which pulling plate When the support portion 13.1 for the support rod 13 that the end insertion of bar 15 is located at the pulling plate either above or below, then will be in operating stick 15 Portion is sideling caught in the forced section 3.2 on extension 3.1, finally catch in operating stick 15 far from support rod 13 one end pull or Person pushes, that is, has driven extension 3.1 namely adjusting pulling plate 3 to move back and forth, generally laborsaving thick stick when operating stick 15 operates Bar is realized laborsaving.
In the present embodiment, further, the operating stick 15 includes the body of rod 15.1, and one end of the body of rod 15.1 rotates It is connected with magnetic suction head 15.2, magnetic suction head 15.2 is such as rotatablely connected by rotating member 14, when the operating stick 15 exerts a force, the magnetic The advantages of first 15.2 are magneted on the support portion 13.1, rotation connection be, when operating stick 15 back and forth reciprocally swinging to drive When adjusting the movement of pulling plate 3,15.2 part of magnetic suction head is without swinging, so that operation is more convenient.Magnetic when magnetic suction head 15.2 operates Inhaling on the one hand can be with auxiliary positioning, and on the other hand when support rod 13 is located above, magnetic force can offset the part of operating stick 15 Gravity, so that the more laborsaving convenience of the operation of operating stick 15.
Further, the end of the body of rod 15.1 is provided with first sleeve 15.3, connects on the magnetic suction head 15.2 One end of the body of rod 15.1 is located in the first sleeve 15.3;The limit of the sleeve is so that turning for the magnetic suction head 15.2 Range is moved less than 120 degree, since operator needs hand-held bar 15 to walk up and down indoors, be accustomed to by operating stick 15 Go to hit ground far from hand-held one end, the magnetic suction head 15.2 arbitrarily swung has and can all contact ground on a large scale, when this is operated It is extremely inconvenient and be easy to break, the rotation amplitude of magnetic suction head 15.2 is limited by sleeve, so that end when operator hits ground Portion can contact ground always, reduce the probability broken.
Further, the end on the magnetic suction head 15.2 away from the body of rod 15.1 is covered with second sleeve 15.4, Second sleeve 15.4 prevents it from directly hitting ground in aforesaid operations and damaging for protecting magnetic suction head 15.2.
In further embodiment provided by the utility model, further, the support portion 13.1 is described including being set to Block 13.2 on support rod 13 is provided on the block 13.2 and abuts hole 13.2, and the abuttings hole 13.2 includes connected loudspeaker Oral area and arc abdomen, the shape of the arc abdomen and the shape of the magnetic suction head 15.2 are mutually agreed with, and loudspeaker oral area is convenient for The insertion of magnetic suction head 15.2, arc abdomen can block magnetic suction head 15.2.The forced section 3.2 is to be set on the extension U-shaped bayonet.U-shaped bayonet two are one group, and for every group of two U-shaped bayonets, the opening of one of U-shaped bayonet is towards furnace body Direction inclination, and another U-shaped bayonet opening towards away from furnace body direction tilt, so effect be, pull extend It exerts a force in one direction when portion, and the bayonet with inclined direction exerts a force convenient for one direction, one group two and both direction are not With convenient for free selection thataway force.
In further embodiment provided by the utility model, further, by heat-insulated on the outer wall of the calcining furnace body 1 Plate 16 is connected with fixing seat 18, and the extension 3.1 is slidably connected in the fixing seat 18 by reciprocating dynamic seal structure 17, The temperature for calcining furnace body 1 is higher, is unfavorable for the long-time service of reciprocating dynamic seal structure 17, will by thermal insulation board 16 and fixing seat 18 The setting of reciprocating dynamic seal structure 17 so promotes the service life of reciprocating dynamic seal structure 17 to the outside of calcining furnace body 1.
Further, the reciprocating dynamic seal mechanism includes the gland being set side by side and multiple airtight and watertight paddings; Through-hole is provided in the fixing seat 18, multiple airtight and watertight paddings are successively connected in the through-hole, and are socketed on described prolong In long portion 3.1, the gland is pressed in the airtight and watertight padding in outside, realizes dynamic sealing by packing seal.
In the prior art, it is that the petroleum coke temperature of discharge gate 4 is still higher the main reason for carbon loss, generally greater than 200 Degree, if the air in outside inversely enters discharge gate 4 at this time, the petroleum coke of the temperature aoxidizes after encountering air, to occur Carbon loss, the utility model above-described embodiment can reduce the part carbon loss by reducing the temperature of discharge gate 4, and the utility model mentions In the further embodiment of confession, further, it is provided on the discharge gate 4 and extends pipeline 19, on the extension pipeline 19 The first side is connected with to pipeline 20, first side is provided with exhaust fan 21 on pipeline 20, and exhaust fan 21 extracts at discharge gate 4 Air, form an interception effect, that is, prevent the air in the outside of discharge gate 4 from inversely entering calcining chamber by discharge gate 4 In to forming carbon loss.
Further, the second side is additionally provided on the extension pipeline 19 to pipeline 12, second side is to pipeline 12 For supplying nitrogen or inert gas into the extension pipeline 19;The cooling jacket 5 and second side are to pipeline 12 First side be placed in the two sides of pipeline 20, i.e. active replaces air by inert gas or nitrogen, so that several 4 region of discharge gate can inversely be entered without oxygen, be so greatly reduced and even be eliminated carbon loss resulting from.
To promote the eradicating efficacy, further, first side to the sucking rate of pipeline 20 be second lateral tube Two to four times of the displacement in road 12, a large amount of pumping guarantee that the gas in outside cannot be introduced into discharge gate 4, and elimination is made by the reason At carbon loss, in addition, largely draw outside air also there is cooling effect, quickly cool down product.
It is above that certain exemplary embodiments of the utility model are only described by way of explanation, undoubtedly, for Those skilled in the art can be with a variety of different without departing from the spirit and scope of the utility model Mode is modified described embodiment.Therefore, above-mentioned attached drawing and description are regarded as illustrative in nature, and should not be construed as Limitation to the utility model claims protection scope.

Claims (8)

1. a kind of can-type calcine furnace system, including calcining furnace body, the calcining furnace body include calcining chamber, are set to the calcining chamber The multilayer quirk in outside also slidably connects adjusting pulling plate on the calcining furnace body, and the calcining chamber includes successively from top to bottom Including feed inlet, cavity and discharge gate, cooling jacket, the quirk of bottom and the cooling are provided on the discharge gate Multiple preheated air roads are additionally provided between water jacket, which is characterized in that
It further include that collection conduits, air-introduced machine, heat exchange boiler, heat exchange pump and heating equipment, each preheated air road are all connected with Onto collection conduits, the collection conduits are sequentially connected the heat exchange boiler and air-introduced machine, the heat exchange boiler, heat exchange pump and Heating equipment is sequentially connected composition heat exchange cycle by circulating line, and the collection conduits and circulating line are in the heat exchange boiler Inside exchange heat.
2. can-type calcine furnace system according to claim 1, which is characterized in that it further include multiple effort-saving mechanisms, it is each described It adjusts and is provided with extension on pulling plate, each extension is connected with each effort-saving mechanism one-to-one correspondence, passes through Labor saving machine Structure is realized to the pull-out and push-in for adjusting pulling plate.
3. can-type calcine furnace system according to claim 2, which is characterized in that the effort-saving mechanism is pulley drive machine Structure, lever transmission mechanism, gear drive or electric labor-saving mechanism.
4. can-type calcine furnace system according to claim 2, which is characterized in that it is described calcining furnace body outer wall on by every Hot plate is connected with fixing seat, and the extension is slidably connected in the fixing seat by reciprocating dynamic seal structure.
5. can-type calcine furnace system according to claim 4, which is characterized in that the reciprocating dynamic seal mechanism includes arranged side by side The gland of setting and multiple airtight and watertight paddings;
Through-hole is provided in the fixing seat, multiple airtight and watertight paddings are successively connected in the through-hole, and are socketed on described On extension, the gland is pressed in the airtight and watertight padding in outside.
6. can-type calcine furnace system according to claim 1, which is characterized in that be provided with extension tube on the discharge gate Road is connected with the first side to pipeline on the extension pipeline, and first side is provided with exhaust fan on pipeline.
7. can-type calcine furnace system according to claim 6, which is characterized in that be additionally provided with second on the extension pipeline Lateral pipeline, second side are used for supplying nitrogen or inert gas into the extension pipeline to pipeline;
The cooling jacket and second side are placed in first side to the two sides of pipeline to pipeline.
8. can-type calcine furnace system according to claim 7, which is characterized in that first side is to the sucking rate of pipeline Two to four times of displacement to pipeline of second side.
CN201821525170.1U 2018-09-18 2018-09-18 Can-type calcine furnace system Active CN208794973U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821525170.1U CN208794973U (en) 2018-09-18 2018-09-18 Can-type calcine furnace system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821525170.1U CN208794973U (en) 2018-09-18 2018-09-18 Can-type calcine furnace system

Publications (1)

Publication Number Publication Date
CN208794973U true CN208794973U (en) 2019-04-26

Family

ID=66210021

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821525170.1U Active CN208794973U (en) 2018-09-18 2018-09-18 Can-type calcine furnace system

Country Status (1)

Country Link
CN (1) CN208794973U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109059541A (en) * 2018-09-18 2018-12-21 索通齐力炭材料有限公司 Can-type calcine furnace system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109059541A (en) * 2018-09-18 2018-12-21 索通齐力炭材料有限公司 Can-type calcine furnace system
CN109059541B (en) * 2018-09-18 2024-02-02 索通齐力炭材料有限公司 Tank calciner system

Similar Documents

Publication Publication Date Title
CN208794973U (en) Can-type calcine furnace system
CN109059541A (en) Can-type calcine furnace system
CN108870958B (en) Heated air circulation heat accumulating type radiant tube heating sealing roller kiln
CN109506462B (en) Can-type calcine furnace and its temperature automatic control method
CN208949336U (en) A kind of energy saving and environment friendly natural gas annealing furnace
CN201593061U (en) Rotary continuous pushing type steel pipe heat treatment equipment
CN211147325U (en) Gas calcining furnace
CN206430357U (en) A kind of secondary environment protection vertical boiler utilized of waste heat
CN208505002U (en) Hot air circulation heat accumulation type radiant tube heating sealing roller way kiln
CN207280204U (en) A kind of high temperature biscuiting kiln of ceramic tube
CN109579529B (en) The can-type calcine furnace of laborsaving adjusting
CN218097156U (en) Muffle furnace
CN113186474B (en) Thermal treatment processing equipment for producing 6061 aluminum alloy doped with rare earth element yttrium
CN214582429U (en) High-efficient roller kiln burns out production line
CN101865474A (en) Slag discharging device and pulverized coal burner using same
CN109489418B (en) Reduce the can-type calcine furnace of carbon loss
CN209307451U (en) A kind of bearing steel wire coiled strip double-station UTILIZATION OF VESIDUAL HEAT IN automatic production line
CN118746192B (en) Double heat-storage combustion energy-saving aluminum melting furnace without crucible
CN206073686U (en) A kind of tunnel cave
CN206654927U (en) A kind of oxygen rifle for handling gobbed up
CN221036708U (en) Energy-saving multipurpose electric kiln
CN118640684B (en) Gas type kiln for building calix and firing dragon
CN214612602U (en) Preheating circulating device of hot blast stove
CN208471895U (en) The extrusion mouth of a river station of glass production line
CN108645231B (en) Preheating recovery system of aluminum heating furnace

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant