CN212584969U - Explosion-proof type RTO processing apparatus - Google Patents

Explosion-proof type RTO processing apparatus Download PDF

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Publication number
CN212584969U
CN212584969U CN202021236008.5U CN202021236008U CN212584969U CN 212584969 U CN212584969 U CN 212584969U CN 202021236008 U CN202021236008 U CN 202021236008U CN 212584969 U CN212584969 U CN 212584969U
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device shell
pipeline
run
explosion
cavity
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CN202021236008.5U
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沈跃辉
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Jiangsu Haihuang Environmental Protection Technology Co ltd
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Jiangsu Haihuang Environmental Protection Technology Co ltd
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Abstract

The utility model discloses an explosion-proof type RTO processing apparatus, including bottom plate and second device shell, the fourth device shell is installed on the top of bottom plate, and installs on fourth device shell top and run through to the inside third device shell of fourth device shell, the intermediate position department at the inside both ends of fourth device shell all installs first shower nozzle, the installation piece is installed to the upper end of fourth device shell inside wall, and installs the inside intermediate position department of piece and has seted up first cavity. This explosion-proof type RTO processing apparatus passes through on the water pump carries first shower nozzle with the inside liquid of first device shell, cools down through first shower nozzle to the inside high temperature that produces of fourth device shell, cools down through the third filter screen simultaneously for the device can better cool down the inside of device when using, prevents that the high temperature from producing the explosion, improves the security of device.

Description

Explosion-proof type RTO processing apparatus
Technical Field
The utility model relates to a waste gas treatment technical field specifically is explosion-proof type RTO processing apparatus.
Background
Along with the development of society, a large amount of waste gas can be produced in the daily production process of people, when the waste gas is treated, equipment named as TRO is needed, TRO is equipment for treating organic waste gas, a heat accumulating type oxidation furnace is short, and the traditional explosion-proof type TRO treatment device can basically meet the use requirements of people, but still has certain problems, and the specific problems are as follows:
1. most RTO treatment devices in the market generate large heat when in use, the accumulated heat can damage the devices, and the danger of device explosion caused by heat exists when the RTO treatment devices are used at high temperature for a long time;
2. most RTO processing apparatus when using in the existing market, the filter screen of device inside is general comparatively trouble when changing for the device needs to shut down for a long time and just can change the filter screen, leads to the device availability factor low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an explosion-proof type RTO processing apparatus to the high temperature that proposes in solving above-mentioned background art leads to the danger of explosion and changes the filter screen inconvenient, the longer problem of time.
In order to achieve the above object, the utility model provides a following technical scheme: an explosion-proof RTO treatment device comprises a bottom plate and a second device shell, wherein a fourth device shell is installed at the top end of the bottom plate, a third device shell penetrating into the fourth device shell is installed at the top end of the fourth device shell, first spray nozzles are installed at the middle positions of two ends in the fourth device shell, an installation block is installed at the upper end of the inner side wall of the fourth device shell, a first cavity is formed in the middle position in the installation block, a second cavity is formed in the installation block at one end of the first cavity, a driving motor is installed at one end, close to the first cavity, in the second cavity, the output end of the driving motor is provided with a first bevel gear penetrating into the first cavity through a bearing, a fifth device shell penetrating into the bottom end of the installation block is installed at the bottom end in the first cavity through a bearing, and a second bevel gear meshed with the first bevel gear is installed at the top end of the fifth device shell, the bottom end of the outer side of the fifth device shell is uniformly provided with a second spray head penetrating through the fifth device shell, a sixth pipeline penetrating through the inner wall of the fourth device shell at one end of the mounting block is arranged inside the fifth device shell, and one end, far away from the fifth device shell, of the sixth pipeline is provided with an electromagnetic valve.
Preferably, the solenoid valve is kept away from sixth pipeline one end and is installed the third pipeline that runs through the fourth device shell and be connected with first pipeline, the first mounting groove that runs through to the inside of fourth device shell is seted up on fourth device shell one end top, and the draw-in groove has all been seted up with the bottom on the top of first mounting groove one end fourth device shell one end, the top of fourth device shell one end is provided with the second device shell, and the second device shell is close to fourth device shell one end and installs the second filter screen that extends to the inside of first mounting groove.
Preferably, the second device shell is kept away from fourth device shell one end top and is all installed through the bearing and run through to the inside kelly of draw-in groove, and the inside of kelly outside second device shell all installs first gear, fourth device shell one end intermediate position department is kept away from to the second device shell installs through the bearing and runs through the inside pivot of second device shell, and the second gear of pivot outside installation and first gear engaged with, the one end that fourth device shell was kept away from in the pivot is installed and is changeed the handle.
Preferably, fourth device shell one end intermediate position department installs and runs through to the inside fourth pipeline of fourth device shell, the roof is installed on the top of third device shell, the inside top of third device shell is evenly installed the air discharge fan, and the internally mounted of air discharge fan top third device shell has first filter screen.
Preferably, a first device shell is installed at the bottom end of the inside of the fourth device shell, a water pump is installed at the bottom end of one end of the fourth device shell, and a fifth pipeline penetrating through the inside of the first device shell is installed at the input end of the water pump.
Preferably, the second pipeline that runs through to the inside and first shower nozzle that is connected of fourth device shell is installed on fourth device shell one end top, and the second pipeline keeps away from first shower nozzle one end and installs the first pipeline that is connected with water pump output terminal line, fourth device shell one end is seted up and is run through to the inside second mounting groove of fourth device shell, and the inside third filter screen that runs through the second mounting groove that is provided with of second mounting groove, the mounting panel is installed to the one end of third filter screen.
Compared with the prior art, the beneficial effects of the utility model are that:
1. by installing the water pump, the first device shell and the first spray head, liquid in the first device shell is conveyed to the first spray head through the water pump, then high temperature generated in the fourth device shell is cooled through the first spray head, and meanwhile, the third filter screen is used for cooling, so that the device can be used for cooling the inside of the device better, explosion caused by high temperature is prevented, and the safety of the device is improved;
2. meanwhile, the device is provided with a fourth device shell, a second spray nozzle and a fifth device shell, a driving motor drives a first bevel gear to rotate in a recording mode, the first bevel gear drives a second bevel gear to rotate when rotating, meanwhile, the fifth device shell is driven to rotate through the second bevel gear, the fifth device shell drives the second spray nozzle to rotate when rotating, and meanwhile, liquid is conveyed to the second spray nozzle through a sixth pipeline to clean the inner wall of the fourth device shell;
3. the device is through installing second device shell, first gear and draw-in groove simultaneously, rotates driving the second gear through changeing, drives first gear when the second gear is in the pivoted and rotates, drives the kelly simultaneously and rotates in the inside of draw-in groove, laminates second device shell and fourth device shell for the device can be more convenient when using dismantle the change to the second filter screen.
Drawings
FIG. 1 is a front view of the cross-sectional structure of the present invention;
FIG. 2 is a schematic left side view of the cross-sectional structure of the present invention;
FIG. 3 is a schematic right sectional view of the present invention;
fig. 4 is a schematic top view of the present invention;
fig. 5 is an enlarged schematic view of a portion a of fig. 1 according to the present invention.
In the figure: 1. a base plate; 2. a water pump; 3. a first device housing; 4. mounting a plate; 5. a first conduit; 6. a second conduit; 7. a third pipeline; 8. an electromagnetic valve; 9. a second device housing; 10. a first gear; 11. a card slot; 12. a clamping rod; 13. a top plate; 14. a first filter screen; 15. a third device housing; 16. an exhaust fan; 17. a first mounting groove; 18. a second filter screen; 19. mounting blocks; 20. a first nozzle; 21. a fourth conduit; 22. a third filter screen; 23. a second mounting groove; 24. a fourth device housing; 25. a fifth pipeline; 26. a second gear; 27. a rotating shaft; 28. a second nozzle; 29. turning a handle; 30. a fifth device housing; 31. a first cavity; 32. a sixth pipeline; 33. a first bevel gear; 34. a drive motor; 35. a second cavity; 36. a second bevel gear.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides an embodiment: an explosion-proof RTO treatment device comprises a bottom plate 1 and a second device shell 9, wherein a fourth device shell 24 is installed at the top end of the bottom plate 1, a fourth pipeline 21 penetrating into the fourth device shell 24 is installed in the middle of one end of the fourth device shell 24, a top plate 13 is installed at the top end of a third device shell 15, an exhaust fan 16 is evenly installed at the top end of the inside of the third device shell 15, a first filter screen 14 is installed inside the third device shell 15 at the top end of the exhaust fan 16, when the explosion-proof RTO treatment device is used, waste gas is exhausted into the device through the fourth pipeline 21, the waste gas purified inside the fourth device shell 24 is exhausted through the rotation of the exhaust fan 16, and meanwhile, the third device shell 15 is protected through the top plate 13;
the first device shell 3 is installed at the bottom end inside the fourth device shell 24, the water pump 2 is installed at the bottom end of one end of the fourth device shell 24, the model of the water pump 2 can be 150QJ10-50/7, the fifth pipeline 25 penetrating into the first device shell 3 is installed at the input end of the water pump 2, when the water pump 2 is used, liquid is extracted from the inside of the first device shell 3 through the fifth pipeline 25 and used, and particles contained in waste gas inside the device are pressed;
a second pipeline 6 penetrating through the fourth device shell 24 and connected with the first spray head 20 is installed at the top end of one end of the fourth device shell 24, a first pipeline 5 connected with the output end line of the water pump 2 is installed at one end, far away from the first spray head 20, of the second pipeline 6, a second installation groove 23 penetrating through the fourth device shell 24 is formed in one end of the fourth device shell 24, a third filter screen 22 penetrating through the second installation groove 23 is arranged in the second installation groove 23, an installation plate 4 is installed at one end of the third filter screen 22, liquid is injected into the second pipeline 6 through the first pipeline 5 when the device is used, particles contained in waste gas in the device are pressed through the first spray head 20, and meanwhile, the liquid is filtered through the third filter screen 22, so that the liquid in the device can be recycled;
a third device shell 15 penetrating through the fourth device shell 24 is installed at the top end of the fourth device shell 24, a first spray nozzle 20 is installed at the middle position of two ends of the inner part of the fourth device shell 24, an installation block 19 is installed at the upper end of the inner side wall of the fourth device shell 24, a first cavity 31 is opened at the middle position of the inner part of the installation block 19, a second cavity 35 is opened inside the installation block 19 at one end of the first cavity 31, a driving motor 34 is installed at one end, close to the first cavity 31, inside the second cavity 35, the driving motor 34 can be GM12-15BY-n1 in model number, a first bevel gear 33 penetrating through the inner part of the first cavity 31 is installed at the output end of the driving motor 34 through a bearing, a fifth device shell 30 penetrating through the bottom end of the installation block 19 is installed at the bottom end of the inner part of the first cavity 31 through a bearing, and a second bevel gear 36 meshed with the first bevel gear 33 is installed at the top end of, the bottom end of the outer side of the fifth device shell 30 is uniformly provided with a second spray head 28 penetrating into the fifth device shell 30, a sixth pipeline 32 penetrating through the inner wall of the fourth device shell 24 at one end of the mounting block 19 is arranged in the fifth device shell 30, and the end, far away from the fifth device shell 30, of the sixth pipeline 32 is provided with an electromagnetic valve 8;
the end, far away from the sixth pipeline 32, of the electromagnetic valve 8 is provided with a third pipeline 7 which penetrates through a fourth device shell 24 and is connected with the first pipeline 5, the top end of one end of the fourth device shell 24 is provided with a first mounting groove 17 which penetrates into the fourth device shell 24, the top end and the bottom end of one end, near the fourth device shell 24, of the fourth device shell 24 are provided with clamping grooves 11, the top end of one end of the fourth device shell 24 is provided with a second device shell 9, one end, close to the fourth device shell 24, of the second device shell 9 is provided with a second filter screen 18 which extends into the first mounting groove 17, when the electromagnetic valve is used, waste gas is filtered through the second filter screen 18, and meanwhile, the second filter screen 18 is disassembled through the second device shell 9, so that the device can better replace the second filter screen 18 when the electromagnetic valve;
the top end of the second device shell 9 far away from the fourth device shell 24 is provided with a clamping rod 12 penetrating into the clamping groove 11 through a bearing, the inside of the second device shell 9 outside the clamping rod 12 is provided with a first gear 10, the middle position of the end of the second device shell 9 far away from the fourth device shell 24 is provided with a rotating shaft 27 penetrating into the second device shell 9 through a bearing, the outer side of the rotating shaft 27 is provided with a second gear 26 engaged with the first gear 10, the end of the rotating shaft 27 far away from the fourth device shell 24 is provided with a rotating handle 29, when in use, the rotating handle 29 can rotate to drive the rotating shaft 27 to rotate, when the rotating shaft 27 rotates, the second gear 26 is driven to rotate, and simultaneously the first gear 10 engaged therewith is driven to rotate, and simultaneously the clamping rod 12 is driven to rotate, so that the clamping rod 12 is separated from the inside of the clamping groove 11, so that the second filter 18 can be removed and replaced better when the device is in use.
The working principle is as follows: when the explosion-proof RTO treatment device is used, firstly, a power supply is externally connected, waste is injected into the fourth device shell 24 through the fourth pipeline 21, the water pump 2 pumps liquid in the first device shell 3 through the fifth pipeline 25, meanwhile, liquid is injected into the first spray head 20 through the first pipeline 5, particles contained in waste gas entering the fourth device shell 24 from the fourth pipeline 21 are pressed, meanwhile, liquid sprayed out of the first spray head 20 is filtered through the third filter screen 22 and then returns to the inside of the first device shell 3 for reuse, when the fourth device shell 24 needs to be cooled, water liquid is injected into the fifth device shell 30 through the sixth pipeline 32 after the electromagnetic valve 8 is opened, meanwhile, the first bevel gear 33 is driven to rotate through the driving motor 34 in the second cavity 35, the first bevel gear 33 drives the second bevel gear 36 to rotate when rotating, when the second bevel gear 36 rotates, the fifth device housing 30 is driven to rotate when rotating, the second spray head 28 is driven to rotate, the inside of the fourth device housing 24 needs to be cooled comprehensively, meanwhile, the rotating shaft 27 is driven to rotate through the rotating handle 29, the second gear 26 is driven to rotate when the rotating shaft 27 rotates, the second gear 26 drives the first gear 10 meshed with the second gear 26 to rotate when rotating, the first gear 10 drives the clamping rod 12 to rotate when rotating, the clamping rod 12 rotates from the inside of the clamping groove 11 when rotating, meanwhile, the second filter screen 18 is pulled out from the inside of the first mounting groove 17 through the second device housing 9, so that the second filter screen 18 can be pulled out from the inside of the first mounting groove 17 more conveniently when the device is used, meanwhile, the exhaust fan 16 starts to rotate, after the second filter screen 18 is filtered, the gas is filtered through the first filter screen 14 and then is discharged after being filtered again Outside the device, the above is the utility model discloses a whole theory of operation.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. Explosion-proof type RTO processing apparatus, including bottom plate (1) and second device shell (9), its characterized in that: fourth device shell (24) is installed on the top of bottom plate (1), and fourth device shell (24) top is installed and is run through to inside third device shell (15) of fourth device shell (24), intermediate position department at the inside both ends of fourth device shell (24) all installs first shower nozzle (20), installation piece (19) are installed to the upper end of fourth device shell (24) inside wall, and install the inside intermediate position department of piece (19) and seted up first cavity (31), second cavity (35) have been seted up to the inside of first cavity (31) one end installation piece (19), and second cavity (35) inside is close to first cavity (31) one end and installs driving motor (34), driving motor (34) output is installed through the bearing and is run through to the inside first conical gear (33) of first cavity (31), the inside bottom of first cavity (31) is installed through the bearing and is run through to the fifth device shell (15) bottom of installation piece (19) Device shell (30), and fifth device shell (30) top install with first bevel gear (33) engaged with second bevel gear (36), fifth device shell (30) outside bottom is evenly installed and is run through to the inside second shower nozzle (28) of fifth device shell (30), fifth device shell (30) inside is provided with sixth pipeline (32) that runs through installation piece (19) one end fourth device shell (24) inner wall, and the solenoid valve (8) are installed to the one end that fifth device shell (30) was kept away from in sixth pipeline (32).
2. An explosion-proof RTO processing apparatus according to claim 1, wherein: keep away from sixth pipeline (32) one end in solenoid valve (8) and install third pipeline (7) that run through fourth device shell (24) and be connected with first pipeline (5), fourth device shell (24) one end top is seted up and is run through to inside first mounting groove (17) of fourth device shell (24), and the top and the bottom of first mounting groove (17) one end fourth device shell (24) one end have all seted up draw-in groove (11), the top of fourth device shell (24) one end is provided with second device shell (9), and second device shell (9) are close to fourth device shell (24) one end and install second filter screen (18) that extend to inside first mounting groove (17).
3. An explosion-proof RTO processing apparatus according to claim 2, wherein: keep away from fourth device shell (24) one end top in second device shell (9) and all install through the bearing and run through to inside kelly (12) of draw-in groove (11), and inside of kelly (12) outside second device shell (9) all installs first gear (10), fourth device shell (24) one end intermediate position department is kept away from in second device shell (9) installs through bearing and runs through inside pivot (27) of second device shell (9), and pivot (27) outside installation and first gear (10) engaged with second gear (26), the one end of keeping away from fourth device shell (24) in pivot (27) is installed and is changeed (29).
4. An explosion-proof RTO processing apparatus according to claim 1, wherein: fourth device shell (24) one end intermediate position department installs fourth pipeline (21) that runs through to fourth device shell (24) inside, roof (13) are installed on the top of third device shell (15), exhaust fan (16) are evenly installed on the inside top of third device shell (15), and the internally mounted of exhaust fan (16) top third device shell (15) has first filter screen (14).
5. An explosion-proof RTO processing apparatus according to claim 1, wherein: first device shell (3) are installed to the inside bottom of fourth device shell (24), water pump (2) are installed to the bottom of fourth device shell (24) one end, and water pump (2) input is installed and is run through to the inside fifth pipeline (25) of first device shell (3).
6. An explosion-proof RTO processing apparatus according to claim 1, wherein: fourth device shell (24) one end top is installed and is run through second pipeline (6) that are connected to fourth device shell (24) inside and first shower nozzle (20), and second pipeline (6) keep away from first shower nozzle (20) one end and install first pipeline (5) that are connected with water pump (2) output end line, fourth device shell (24) one end is seted up and is run through to inside second mounting groove (23) of fourth device shell (24), and inside third filter screen (22) that run through second mounting groove (23) that is provided with of second mounting groove (23), mounting panel (4) are installed to the one end of third filter screen (22).
CN202021236008.5U 2020-06-29 2020-06-29 Explosion-proof type RTO processing apparatus Active CN212584969U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021236008.5U CN212584969U (en) 2020-06-29 2020-06-29 Explosion-proof type RTO processing apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021236008.5U CN212584969U (en) 2020-06-29 2020-06-29 Explosion-proof type RTO processing apparatus

Publications (1)

Publication Number Publication Date
CN212584969U true CN212584969U (en) 2021-02-23

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Application Number Title Priority Date Filing Date
CN202021236008.5U Active CN212584969U (en) 2020-06-29 2020-06-29 Explosion-proof type RTO processing apparatus

Country Status (1)

Country Link
CN (1) CN212584969U (en)

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