CN110260339A - The regenerative combustion system of heat storage can be replaced online - Google Patents

The regenerative combustion system of heat storage can be replaced online Download PDF

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Publication number
CN110260339A
CN110260339A CN201910569278.3A CN201910569278A CN110260339A CN 110260339 A CN110260339 A CN 110260339A CN 201910569278 A CN201910569278 A CN 201910569278A CN 110260339 A CN110260339 A CN 110260339A
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CN
China
Prior art keywords
heat storage
pipe
air inlet
box
fixedly connected
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.)
Withdrawn
Application number
CN201910569278.3A
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Chinese (zh)
Inventor
李萌萌
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.)
Lan Xin Environmental Protection Technology Co Ltd Of Ma'an Mountain
Original Assignee
Lan Xin Environmental Protection Technology Co Ltd Of Ma'an Mountain
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 Lan Xin Environmental Protection Technology Co Ltd Of Ma'an Mountain filed Critical Lan Xin Environmental Protection Technology Co Ltd Of Ma'an Mountain
Priority to CN201910569278.3A priority Critical patent/CN110260339A/en
Publication of CN110260339A publication Critical patent/CN110260339A/en
Withdrawn legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/44Details; Accessories
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/44Details; Accessories
    • F23G5/46Recuperation of heat
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G7/00Incinerators or other apparatus for consuming industrial waste, e.g. chemicals
    • F23G7/06Incinerators or other apparatus for consuming industrial waste, e.g. chemicals of waste gases or noxious gases, e.g. exhaust gases
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23JREMOVAL OR TREATMENT OF COMBUSTION PRODUCTS OR COMBUSTION RESIDUES; FLUES 
    • F23J15/00Arrangements of devices for treating smoke or fumes
    • F23J15/02Arrangements of devices for treating smoke or fumes of purifiers, e.g. for removing noxious material
    • F23J15/022Arrangements of devices for treating smoke or fumes of purifiers, e.g. for removing noxious material for removing solid particulate material from the gasflow
    • F23J15/025Arrangements of devices for treating smoke or fumes of purifiers, e.g. for removing noxious material for removing solid particulate material from the gasflow using filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G2206/00Waste heat recuperation
    • F23G2206/10Waste heat recuperation reintroducing the heat in the same process, e.g. for predrying
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23JREMOVAL OR TREATMENT OF COMBUSTION PRODUCTS OR COMBUSTION RESIDUES; FLUES 
    • F23J2217/00Intercepting solids
    • F23J2217/10Intercepting solids by filters

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Solid-Fuel Combustion (AREA)

Abstract

The present invention relates to Regenerative Combustion System technical fields, and disclose the regenerative combustion system that can replace heat storage online, including transferring box and the combustion box being mounted on right above transferring box, the interior bottom of combustion box is sequentially installed with the first heat storage and the second heat storage, symmetrically fixation is communicated with two connecting tubes at the top of transferring box, and the upper end of connecting tube is run through combustion box and is extended into combustion box, and the upper end of two connecting tubes is successively connected with the first heat storage and the second heat storage, fixation is communicated with air inlet pipe in the side upright side walls of transferring box, and the other end of air inlet pipe is equipped with suction ventilator, combustion box fixation on the side wall of air inlet pipe is communicated with exhaust pipe, recovering mechanism is installed jointly between air inlet pipe and exhaust pipe.The present invention recycles the waste heat of discharge exhaust gas, preheats to the air of sucking, and be filtered to the gas of discharge.

Description

The regenerative combustion system of heat storage can be replaced online
Technical field
The present invention relates to Regenerative Combustion System technical fields, more particularly to can replace the heat storage type combustion system of heat storage online System.
Background technique
Regenerative combustion system is a kind of a kind of heating method of two heat storages exchange heating, this heating method (for Narration is easy, this structure exchanged is referred to as transferring box), when heating, suction ventilator by ambient atmos inspiration transferring box, Transferring box makes ambient atmos replace use between two heat storages.
But when this heat exchange mode exchanges heat, waste gases direct out boundary's discharge, bring certain waste.
Summary of the invention
The purpose of the present invention is to solve when the burning of existing regenerative combustion system in the prior art, waste gases are straight The problem of connecing and outwardly discharge, bringing certain waste, and the regenerative combustion system that can replace heat storage online proposed.
To achieve the goals above, present invention employs following technical solutions:
The regenerative combustion system that heat storage can be replaced online, including transferring box and the burning being mounted on right above transferring box Case, the interior bottom of the combustion box are sequentially installed with the first heat storage and the second heat storage, and the top of the transferring box is symmetrically solid Surely two connecting tubes are communicated with, and the upper end of connecting tube is run through combustion box and extended into combustion box, and two connecting tubes Upper end is successively connected with the first heat storage and the second heat storage, in the side upright side walls of the transferring box it is fixed be communicated with into Tracheae, and the other end of air inlet pipe is equipped with suction ventilator, combustion box fixation on the side wall of air inlet pipe is communicated with exhaust Pipe, is equipped with recovering mechanism between the air inlet pipe and exhaust pipe jointly;
The recovering mechanism includes that recovery cylinder, communicating pipe, escape pipe, two sections of cylindrical shape are the first cunning of annular If slot, two pieces match with first sliding groove and section be annular the first sliding block, rotating cylinder, several through-holes, rotating plate and dry plate First flabellum, the recovery cylinder are fixedly attached on the tube wall of air inlet pipe, and the communicating pipe is recycling with fixed be connected to of escape pipe On the top outer tube wall of cylinder, and it is located at escape pipe communicating pipe close to the side of transferring box, the upper end of the communicating pipe and exhaust pipe It is connected, two first sliding grooves are symmetrically provided on the opposed vertical inner tube wall of recovery cylinder, and the air inlet pipe is located at first In sliding slot, first sliding block is slidably connected in first sliding groove, and two pieces of opposite one end of first sliding block both pass through correspondence The notch of first sliding groove simultaneously extends outwardly, and is fixedly connected with rotating cylinder, if rotating plate described in dry plate is evenly distributed equidistantly in a ring Be fixedly connected on immediately below the communicating pipe on the annular outer tube wall of rotating cylinder, several described through-holes are in centered on air inlet pipe Annular spread is uniformly and equidistantly provided on the barrel of rotating cylinder, and first flabellum is fixedly connected on any opposite and is located at same On horizontal linear between two through-holes on the outer tube wall of rotating cylinder.
Preferably, the upper end of the escape pipe is equipped with smoke exhaust mechanism;
The smoke exhaust mechanism includes strainer, bull stick, the second flabellum of two panels and cleaning brush, and the strainer is connected by bindiny mechanism It connecing on the inner tubal wall in escape pipe close to top, the bull stick is rotatably connected in the bottom sidewall of strainer by bearing, and Bearing fixation is located in strainer, and the second flabellum described in two panels is symmetrically fixedly connected on the lower end of bull stick, the cleaning brush fixing sleeve It connects on the bar wall in bull stick close to top, and cleaning brush offsets with strainer.
Preferably, the bindiny mechanism includes card slot, card hole, spring and the fixture block that quantity is two, two cards Slot is symmetrically provided in the phase back side wall of strainer, and two card holes are symmetrically provided with escape pipe tube wall corresponding with card slot On, the spring is fixedly connected on the slot bottom of card slot, and the other end of the spring is fixedly connected with fixture block, and the fixture block is far from bullet One end of spring passes through the notch of card slot and extends into card hole.
Preferably, first sliding block is evenly distributed equidistant open in a ring on the annular sidewall of first sliding groove slot bottom Equipped with several ball grooves, is rolled in the ball grooves and be connected with ball, the ball is passed through far from one end of ball grooves slot bottom The notch of ball grooves simultaneously extends outwardly, and rolls and connect with the slot bottom of first sliding groove.
Preferably, second sliding slot is symmetrically offered on the opposite cell wall of the card slot, be slidably connected in the second sliding slot There is the second sliding block, two pieces of opposite one end of second sliding block both pass through the notch of corresponding second sliding slot and extend outwardly, and It is fixedly connected with fixture block.
Preferably, the combustion box is fixedly connected with support plate, and communicating pipe and support plate on the side wall of communicating pipe It is fixedly connected.
Preferably, equal fixing sleeve is connected to muff on the outer tube wall of the communicating pipe and exhaust pipe.
Preferably, third flabellum corresponding with the first flabellum is fixedly connected on the inner tube wall of the rotating cylinder.
Preferably, antirust paint is coated on the combustion box, transferring box and recovery cylinder.
Compared with prior art, the present invention provides the regenerative combustion system that can replace heat storage online, have following The utility model has the advantages that
1, this can replace the regenerative combustion system of heat storage online, pass through setting recovery cylinder, communicating pipe, escape pipe, the Outside air is sucked transferring box by air inlet pipe by one sliding slot, the first sliding block, rotating cylinder, through-hole, rotating plate and the first flabellum, suction ventilator In, then suck combustion box in, the extra hot gas of combustion box is discharged into recovery cylinder by exhaust pipe and communicating pipe, with air inlet pipe into Row heating, and then heats the air of entrance, and hot gas is contacted with rotating plate, so that rotating plate rotation, into rotating rotating cylinder, into And the first flabellum is rotated, so that the gas mixing in recovery cylinder is uniform, heat is efficiently recycled.
2, this can replace the regenerative combustion system of heat storage online, pass through setting strainer, bull stick, the second flabellum and cleaning Brush, the hot gas of discharge are discharged by strainer, and strainer filtering hot gas, hot gas is contacted with the second flabellum, rotate the second flabellum, So that cleaning brush rotates, the dust adhered on strainer is scraped, the efficiency of filtering is improved.
It is not directed to part in the device to be the same as those in the prior art or can be realized by using the prior art, present invention recycling The waste heat of exhaust gas is discharged, the air of sucking is preheated, and the gas of discharge is filtered.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the regenerative combustion system proposed by the present invention that can replace heat storage online;
Fig. 2 is the enlarged drawing of part A in Fig. 1;
Fig. 3 is the enlarged drawing of part B in Fig. 1;
Fig. 4 is the enlarged drawing of C portion in Fig. 3.
In figure: 1 transferring box, 2 combustion box, 3 first heat storages, 4 second heat storages, 5 connecting tubes, 6 air inlet pipe, 7 suction ventilators, 8 exhaust pipes, 9 recovering mechanisms, 91 recovery cylinders, 92 communicating pipes, 93 escape pipes, 94 first sliding grooves, 95 first sliding blocks, 96 rotating cylinders, 97 Through-hole, 98 rotating plates, 99 first flabellums, 10 smoke exhaust mechanisms, 101 strainers, 102 bull sticks, 103 second flabellums, 104 cleaning brush, 11 connect Connection mechanism, 111 card slots, 112 card holes, 113 springs, 114 fixture blocks, 12 ball grooves, 13 balls, 14 second sliding slots, 15 second sliding blocks.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.
Referring to Fig.1-4, it can replace the regenerative combustion system of heat storage online, including transferring box 1 and be mounted on transferring box Combustion box 2 right above 1, the interior bottom of combustion box 2 are sequentially installed with the first heat storage 3 and the second heat storage 4, transferring box 1 Symmetrically fixation is communicated with two connecting tubes 5 at top, and the upper end of connecting tube 5 is run through combustion box 2 and extended into combustion box 2, And the upper end of two connecting tubes 5 is successively connected with the first heat storage 3 and the second heat storage 4, the side upright side walls of transferring box 1 Upper fixation is communicated with air inlet pipe 6, and the other end of air inlet pipe 6 is equipped with suction ventilator 7, and combustion box 2 is on the side wall of air inlet pipe 6 Fixation is communicated with exhaust pipe 8, is equipped with recovering mechanism 9 between air inlet pipe 6 and exhaust pipe 8 jointly;
Recovering mechanism 9 includes that cylindric recovery cylinder 91,93, two communicating pipe 92, escape pipe sections are the of annular One 94, two pieces of sliding slot matches with first sliding groove 94 and section is the first sliding block 95 of annular, rotating cylinder 96, several through-holes If 97, rotating plate 98 and the first flabellum of dry plate 99, recovery cylinder 91 is fixedly attached on the tube wall of air inlet pipe 6, communicating pipe 92 and outlet The fixed connection of pipe 93 is located at escape pipe 93 communicating pipe 92 close to the side of transferring box 1 on the top outer tube wall of recovery cylinder 91, The upper end of communicating pipe 92 is connected with exhaust pipe 8, and two first sliding grooves 94 are symmetrically provided with the opposed vertical inner cylinder of recovery cylinder 91 On wall, air inlet pipe 6 is located in first sliding groove 94, and the first sliding block 95 is slidably connected in first sliding groove 94, two piece of first sliding block 95 Opposite one end both passes through the notch of corresponding first sliding groove 94 and extends outwardly, and is fixedly connected with rotating cylinder 96, if dry plate turns Plate 98 be evenly distributed in a ring it is equidistant be fixedly connected on the annular outer tube wall of 92 underface rotating cylinder 96 of communicating pipe, it is several A through-hole 97 be evenly distributed in a ring centered on air inlet pipe 6 it is equidistant be provided on the barrel of rotating cylinder 96, the first flabellum 99 is solid Surely it is connected to any opposite and is located on same level straight line between two through-holes 97 on the outer tube wall of rotating cylinder 96, suction ventilator 7 will Outside air is sucked in transferring box 1 by air inlet pipe 6, is then sucked in combustion box 2, the extra hot gas of combustion box 2 passes through exhaust Pipe 8 and communicating pipe 92 are discharged into recovery cylinder 91, are heated with air inlet pipe 6, and then heat to the air of entrance, hot gas with Rotating plate 98 contacts, so that rotating plate 98 rotates, into rotating cylinder 96 is rotated, so that the first flabellum 96 rotates, so that returning The gas mixing received in cylinder 91 is uniform, is efficiently recycled to heat.
The upper end of escape pipe 93 is equipped with smoke exhaust mechanism 10;
Smoke exhaust mechanism 10 includes that strainer 101, bull stick 102, the second flabellum of two panels 103 and cleaning brush 104, strainer 101 pass through Bindiny mechanism 11 is connected to escape pipe 93 on the inner tubal wall at top, and bull stick 102 is rotatably connected on strainer 101 by bearing Bottom sidewall on, and bearing fixation be located in strainer 101, the second flabellum of two panels 103 is symmetrically fixedly connected on bull stick 102 Lower end, cleaning brush 104 is fixedly attached to bull stick 102 on the bar wall at top, and cleaning brush 104 offsets with strainer 101, discharge Hot gas discharged by strainer 101,101 hot gas filtration of strainer, hot gas is contacted with the second flabellum 103, makes the second flabellum The dust adhered on strainer 101 is scraped so that cleaning brush 104 rotates, improves the efficiency of filtering by 103 rotations.
Bindiny mechanism 11 includes card slot 111, card hole 112, spring 113 and the fixture block 114 that quantity is two, two cards Slot 111 is symmetrically provided in the phase back side wall of strainer 101, and two card holes 112 are symmetrically provided with escape pipe 93 and card slot 111 is opposite On the tube wall answered, spring 113 is fixedly connected on the slot bottom of card slot 111, and the other end of spring 113 is fixedly connected with fixture block 114, Fixture block 114 passes through the notch of card slot 111 far from one end of spring 113 and extends into card hole 112, applies pressure to fixture block 114, Just detachable strainer 101.
Equidistant offer if the first sliding block 95 is evenly distributed in a ring on the annular sidewall of 94 slot bottom of first sliding groove Dry ball grooves 12, interior roll of ball grooves 12 are connected with ball 13, and ball 13 passes through ball far from one end of 12 slot bottom of ball grooves The notch of slot 12 simultaneously extends outwardly, and rolls and connect with the slot bottom of first sliding groove 94, slides the first sliding block 95 faster.
Second sliding slot 14 is symmetrically offered on the opposite cell wall of card slot 111, and it is sliding that second is slidably connected in second sliding slot 14 Block 15, two piece of second opposite one end of sliding block 15 both pass through the notch of corresponding second sliding slot 14 and extend outwardly, and and fixture block The case where 114 are fixedly connected, and fixture block 114 is prevented to be detached from card slot 111 generation.
Combustion box 2 is fixedly connected with support plate, and communicating pipe 92 and the fixed company of support plate on the side wall of communicating pipe 92 It connects, is used to support communicating pipe 92.
Equal fixing sleeve is connected to muff on the outer tube wall of communicating pipe 92 and exhaust pipe 8, carries out to communicating pipe 92 and exhaust pipe 8 Isothermal holding.
Third flabellum corresponding with the first flabellum 99, sky in deceleration rotating cylinder 96 are fixedly connected on the inner tube wall of rotating cylinder 96 The flowing of gas.
It is coated with antirust paint on combustion box 2, transferring box 1 and recovery cylinder 91, prevents combustion box 2, transferring box 1 and recovery cylinder 91 The case where getting rusty.
In the present invention, suction ventilator 7 sucks outside air in transferring box 1 by air inlet pipe 6, then sucks in combustion box 2, The extra hot gas of combustion box 2 is by exhaust pipe 8 and is discharged into recovery cylinder 91 communicating pipe 92, is heated with air inlet pipe 6, and then right The air of entrance is heated, and hot gas is contacted with rotating plate 98 so that rotating plate 98 rotate, into make rotating cylinder 96 rotate so that The rotation of first flabellum 96, so that the gas mixing in recovery cylinder 91 is uniform, efficiently recycles heat;The heat of discharge Gas is discharged by strainer 101, and 101 hot gas filtration of strainer, hot gas is contacted with the second flabellum 103, revolves the second flabellum 103 Turn, so that cleaning brush 104 rotates, the dust adhered on strainer 101 is scraped, the efficiency of filtering is improved.
More than, it is merely preferred embodiments of the present invention, but scope of protection of the present invention is not limited thereto, it is any Those familiar with the art in the technical scope disclosed by the present invention, according to the technique and scheme of the present invention and its invents Design is subject to equivalent substitution or change, should be covered by the protection scope of the present invention.

Claims (9)

1. the regenerative combustion system of heat storage can be replaced online, including transferring box (1) and it is mounted on right above transferring box (1) Combustion box (2), which is characterized in that the interior bottom of the combustion box (2) is sequentially installed with the first heat storage (3) and the second heat storage (4), symmetrically fixation is communicated with two connecting tubes (5) at the top of the transferring box (1), and combustion is run through in the upper end of connecting tube (5) Saggar (2) simultaneously extends in combustion box (2), and the upper end of two connecting tubes (5) successively with the first heat storage (3) and the second accumulation of heat Body (4) is connected, and fixation is communicated with air inlet pipe (6) in the side upright side walls of the transferring box (1), and air inlet pipe (6) is another One end is equipped with suction ventilator (7), and the combustion box (2) fixation on the side wall of air inlet pipe (6) is communicated with exhaust pipe (8), institute It states and recovering mechanism (9) is installed jointly between air inlet pipe (6) and exhaust pipe (8);
The recovering mechanism (9) includes that recovery cylinder (91), communicating pipe (92), escape pipe (93), two sections of cylindrical shape are The first sliding groove (94) of annular, two pieces match with first sliding groove (94) and section is annular the first sliding block (95), rotating cylinder (96), several through-holes (97), rotating plate (98) and if the first flabellum of dry plate (99), the recovery cylinder (91) be fixedly attached to air inlet On the tube wall for managing (6), the communicating pipe (92) is connected on the top outer tube wall of recovery cylinder (91) with escape pipe (93) fixation, and It is located at the side of escape pipe (93) close to transferring box (1), upper end and exhaust pipe (8) phase of the communicating pipe (92) communicating pipe (92) Connection, two first sliding grooves (94) are symmetrically provided on the opposed vertical inner tube wall of recovery cylinder (91), the air inlet pipe (6) In first sliding groove (94), first sliding block (95) is slidably connected in first sliding groove (94), two pieces of first sliding blocks (95) opposite one end both passes through the notch of corresponding first sliding groove (94) and extends outwardly, and is fixedly connected with rotating cylinder (96), Equidistant be fixedly connected on positioned at rotating cylinder (96) immediately below communicating pipe (92) if rotating plate described in dry plate (98) is evenly distributed in a ring Annular outer tube wall on, several described through-holes (97) are evenly distributed equidistant be provided in a ring centered on air inlet pipe (6) On the barrel of rotating cylinder (96), first flabellum (99) is fixedly connected on any opposite and logical positioned at two on same level straight line Between hole (97) on the outer tube wall of rotating cylinder (96).
2. the regenerative combustion system according to claim 1 that heat storage can be replaced online, which is characterized in that the outlet The upper end of pipe (93) is equipped with smoke exhaust mechanism (10);
The smoke exhaust mechanism (10) includes strainer (101), bull stick (102), the second flabellum of two panels (103) and cleaning brush (104), institute It states strainer (101) and is connected to escape pipe (93) on the inner tubal wall at top by bindiny mechanism (11), the bull stick (102) is logical It crosses bearing to be rotatably connected in the bottom sidewall of strainer (101), and bearing is fixed is located in strainer (101), the described in two panels Two flabellums (103) are symmetrically fixedly connected on the lower end of bull stick (102), and the cleaning brush (104) is fixedly attached to bull stick (102) and leans on On the bar wall at nearly top, and cleaning brush (104) offsets with strainer (101).
3. the regenerative combustion system according to claim 2 that heat storage can be replaced online, which is characterized in that the connection Mechanism (11) includes card slot (111), card hole (112), spring (113) and the fixture block (114) that quantity is two, two cards Slot (111) is symmetrically provided in the phase back side wall of strainer (101), and two card holes (112) are symmetrically provided with escape pipe (93) On tube wall corresponding with card slot (111), the spring (113) is fixedly connected on the slot bottom of card slot (111), the spring (113) the other end is fixedly connected with fixture block (114), and the fixture block (114) passes through card slot far from the one end of spring (113) (111) notch and the extension into card hole (112).
4. the regenerative combustion system according to claim 2 that heat storage can be replaced online, which is characterized in that described first Sliding block (95) is evenly distributed in a ring on the annular sidewall of first sliding groove (94) slot bottom equidistant offers several balls Slot (12), interior roll of the ball grooves (12) are connected with ball (13), and the one of separate ball grooves (12) slot bottom of the ball (13) It holds the notch across ball grooves (12) and extends outwardly, and roll and connect with the slot bottom of first sliding groove (94).
5. the regenerative combustion system according to claim 3 that heat storage can be replaced online, which is characterized in that the card slot (111) it is symmetrically offered on opposite cell wall second sliding slot (14), slidably connects the second sliding block in the second sliding slot (14) (15), two pieces of opposite one end of second sliding block (15) both pass through the notch of corresponding second sliding slot (14) and extend outwardly, and It is fixedly connected with fixture block (114).
6. the regenerative combustion system according to claim 1 that heat storage can be replaced online, which is characterized in that the burning Case (2) is fixedly connected with support plate on the side wall of communicating pipe (92), and communicating pipe (92) is fixedly connected with support plate.
7. the regenerative combustion system according to claim 1 that heat storage can be replaced online, which is characterized in that the connection Fixing sleeve is connected to muff on the outer tube wall of pipe (92) and exhaust pipe (8).
8. the regenerative combustion system according to claim 1 that heat storage can be replaced online, which is characterized in that the rotating cylinder (96) third flabellum corresponding with the first flabellum (99) is fixedly connected on inner tube wall.
9. the regenerative combustion system according to claim 1 that heat storage can be replaced online, which is characterized in that the burning Antirust paint is coated on case (2), transferring box (1) and recovery cylinder (91).
CN201910569278.3A 2019-06-27 2019-06-27 The regenerative combustion system of heat storage can be replaced online Withdrawn CN110260339A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910569278.3A CN110260339A (en) 2019-06-27 2019-06-27 The regenerative combustion system of heat storage can be replaced online

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Application Number Priority Date Filing Date Title
CN201910569278.3A CN110260339A (en) 2019-06-27 2019-06-27 The regenerative combustion system of heat storage can be replaced online

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Publication Number Publication Date
CN110260339A true CN110260339A (en) 2019-09-20

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110986030A (en) * 2019-12-17 2020-04-10 湖南恒晟环保科技有限公司 Low-oxygen flameless heat accumulating type combustion device
CN111974108A (en) * 2020-08-21 2020-11-24 阜阳九珍食品有限公司 Energy-saving and environment-friendly recycling equipment for liquefied waste gas in chicken essence production
CN112303900A (en) * 2020-09-24 2021-02-02 江苏通亚电热科技有限公司 Intelligent high-efficient heater

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110986030A (en) * 2019-12-17 2020-04-10 湖南恒晟环保科技有限公司 Low-oxygen flameless heat accumulating type combustion device
CN110986030B (en) * 2019-12-17 2022-08-23 湖南恒晟环保科技有限公司 Low-oxygen flameless heat accumulating type combustion device
CN111974108A (en) * 2020-08-21 2020-11-24 阜阳九珍食品有限公司 Energy-saving and environment-friendly recycling equipment for liquefied waste gas in chicken essence production
CN112303900A (en) * 2020-09-24 2021-02-02 江苏通亚电热科技有限公司 Intelligent high-efficient heater

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Application publication date: 20190920

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