CN107574272B - Hanging arm side-opening hot stuffy tank - Google Patents

Hanging arm side-opening hot stuffy tank Download PDF

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Publication number
CN107574272B
CN107574272B CN201710995287.XA CN201710995287A CN107574272B CN 107574272 B CN107574272 B CN 107574272B CN 201710995287 A CN201710995287 A CN 201710995287A CN 107574272 B CN107574272 B CN 107574272B
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China
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hot
tank
cover
shaft
tank cover
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CN107574272A (en
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田晓林
卢敏
周芝国
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MCC Energy Saving and Environmental Protection Co Ltd
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MCC Energy Saving and Environmental Protection Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

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  • Devices For Medical Bathing And Washing (AREA)

Abstract

The invention relates to a suspension arm side-opening hot stuffy tank, which comprises: the hot stifled jar support, hot stifled jar barrel and hot stifled jar cover, hot stifled jar barrel sets up in the top of hot stifled jar support, hot stifled jar cover passes through davit pivot mechanism and links to each other with hot stifled jar barrel, be connected for the tooth meshing between hot stifled jar cover and the hot stifled jar barrel, be equipped with the wrong tooth device on the hot stifled jar cover, be equipped with safety interlock between hot stifled jar cover and the hot stifled jar barrel. The suspension arm side-opening type hot stuffy tank cover disclosed by the invention has the advantages that the switching speed is stable, no blockage exists, the tank cover cannot sink and deform after being used for a period of time, and no 'rotation' phenomenon exists after the tank cover is opened in place. In addition, the safety interlocking device is arranged between the cylinder body and the tank cover of the hot stifled tank, so that the safety performance of the hot stifled tank is greatly improved; in addition, the dislocation device is arranged on the tank cover, so that the tank cover and the cylinder body can be locked/unlocked smoothly and flexibly.

Description

Hanging arm side-opening hot stuffy tank
[ technical field ] A method for producing a semiconductor device
The invention relates to a hot stuffy tank, in particular to a hanging arm side-opening type hot stuffy tank.
[ background ] A method for producing a semiconductor device
The steel slag is a necessary byproduct in the steel making process, the discharge amount of the steel slag accounts for about 15-20% of the yield of crude steel, the utilization rate of the steel slag in China is low at present, the steel industry in China develops rapidly in recent years, according to statistics, the yield of the crude steel in China reaches 5 hundred million tons in 2008, the yield of the steel produced in whole year reaches 5000-10000 ten thousand tons, the reasonable utilization and the effective recovery of the steel slag are important measures for realizing the sustainable development of the steel industry, solving the shortage of the steel scrap in the steel enterprise, reducing the production cost and improving the economic benefit of the enterprise, and are also beneficial measures for protecting the environment, reducing pollution and turning waste into wealth.
The method for recovering and treating the thermal steel slag mainly comprises a water quenching method, a hot splashing method, a hot smoldering method and the like, wherein the hot smoldering method is characterized in that the steel slag is rapidly cracked and pulverized by utilizing the thermal stress, the chemical stress and the phase change stress generated by the change of the residual heat of the steel slag on the composition of a mineral phase under the condition of water spraying, and simultaneously, the metal and slag in the steel slag are effectively separated. The hinge-opening type thermally-sealed tank is commonly used in the prior art, and the tank cover is easy to sink after the hinge-opening type thermally-sealed tank is used for a period of time.
Therefore, there is a need for a boom side open hot stuffer can that solves the above problems.
[ summary of the invention ]
In order to solve the above problems, an object of the present invention is to provide a boom side open type hot stuffy can capable of preventing a can lid from sinking and deforming.
In order to achieve the purpose, the invention adopts the technical scheme that: a boom side open hot stuffy tank comprising: the hot stifled jar support, hot stifled jar barrel and hot stifled jar cover, hot stifled jar barrel sets up in the top of hot stifled jar support, hot stifled jar cover passes through davit pivot mechanism and links to each other with hot stifled jar barrel, be connected for the tooth meshing between hot stifled jar cover and the hot stifled jar barrel, be equipped with the wrong tooth device on the hot stifled jar cover, be equipped with safety interlock between hot stifled jar cover and the hot stifled jar barrel.
Preferably, the boom side open type hot stuffy tank of the invention is further configured as follows: the davit pivot means includes: the davit installation base that sets up on hot stifled jar barrel, install the davit on the davit installation base and install the link mechanism on the davit through the davit back shaft, be equipped with davit pivot mechanism between davit and the davit back shaft, install the cover pivot with cover fixed connection in the davit, link mechanism includes first connecting rod fixed plate, second connecting rod fixed plate and connects the connecting rod between first connecting rod fixed plate and second connecting rod fixed plate, first connecting rod fixed plate passes through fixed axle and davit back shaft fixed connection, be connected through first rotation coupling mechanism between first connecting rod fixed plate and the connecting rod, second connecting rod fixed plate and cover pivot fixed connection, be connected through second rotation coupling mechanism between connecting rod and the second connecting rod fixed plate, install on the davit installation base and be used for driving davit pivot mechanism pivoted first hydraulic cylinder, the piston rod of first hydraulic cylinder passes through the connecting piece and links to each other with davit pivot mechanism.
Preferably, the boom side open type hot stuffy tank of the invention is further configured as follows: the tank cover comprises a tank cover mounting seat and a tank cover body, wherein the tank cover mounting seat is fixedly connected with a tank cover rotating shaft, and the center of the tank cover body is connected with the tank cover mounting seat through a connecting mechanism so that the tank cover body can rotate relative to the tank cover mounting seat.
Preferably, the boom side open type hot smoldering tank provided by the invention is further provided with: the tank cover comprises a step shaft, a bearing seat, a bearing, a baffle and an end cover, wherein the step shaft is welded with a tank cover body, the bearing seat is welded with a tank cover mounting seat, the bearing is arranged between the bearing seat and the step shaft, the baffle is mounted at one end of the bearing and fixed with the step shaft, and the end cover is connected with the bearing seat through a fixing piece.
Preferably, the boom side open type hot smoldering tank provided by the invention is further provided with: be equipped with the wrong tooth device between cover mount pad and the cover body, the wrong tooth device is including setting up in second hydraulic cylinder mounting panel, second hydraulic cylinder and the pivot of cover mount pad one side, be connected through first connecting piece between the one end of second hydraulic cylinder and the second hydraulic cylinder mounting panel and make and form relative rotation between second hydraulic cylinder and the second hydraulic cylinder mounting panel and be connected, the second hydraulic cylinder piston rod is connected through the second connecting piece with the one end of pivot and makes and form relative rotation between second hydraulic cylinder piston rod and the pivot and be connected, the other end and the cover body fixed connection of pivot.
Preferably, the boom side open type hot stuffy tank of the invention is further configured as follows: set up the locking shaft mechanism on hot stifled jar barrel and set up the locking plate on hot stifled jar cover, locking shaft mechanism includes: with hot stifled jar barrel flange fixed connection's mount pad and lock sleeve fixed plate, be equipped with third hydraulic cylinder mounting panel and proximity switch mounting panel on the mount pad, install the third hydraulic cylinder on the third hydraulic cylinder mounting panel, install proximity switch on the proximity switch mounting panel, be equipped with the lock sleeve in the lock sleeve fixed plate, lock sleeve and lock sleeve fixed plate fixed connection, be equipped with in the lock sleeve and can be for the lock sleeve axial displacement's lock shaft, the free terminal fixed connection of the one end of lock shaft and third hydraulic cylinder piston rod, be equipped with on the lock plate with lock shaft matched with lockhole.
Preferably, the boom side open type hot smoldering tank provided by the invention is further provided with: and a slag car track, a track mounting plate and a slag groove buttress are arranged in the hot stifle tank barrel.
Preferably, the boom side open type hot stuffy tank of the invention is further configured as follows: and a spraying device is arranged above the hot stuffy tank body.
Preferably, the boom side open type hot smoldering tank provided by the invention is further provided with: and the inner wall of the hot stuffy tank barrel is provided with a mullite layer.
Preferably, the boom side open type hot stuffy tank of the invention is further configured as follows: the flange of the hot stifled tank body is provided with a self-tightening sealing ring matched with the tank cover of the hot stifled tank
Compared with the prior art, the invention has the following beneficial effects: the suspension arm side-opening type hot stuffy tank cover disclosed by the invention has the advantages that the switching speed is stable, no blockage exists, the tank cover cannot sink and deform after being used for a period of time, and no 'rotation' phenomenon exists after the tank cover is opened in place. In addition, the safety interlocking device is arranged between the cylinder body and the tank cover of the hot stuffy tank, so that the safety performance of the hot stuffy tank is greatly improved; in addition, the dislocation device is arranged on the tank cover, so that the tank cover and the tank body can be locked/unlocked smoothly and flexibly.
[ description of the drawings ]
Fig. 1 is a schematic front view of a boom side open type hot stuffy tank according to the present invention.
Fig. 2 is a schematic top view of the boom side open hot stuffy tank of the present invention.
FIG. 3 is a schematic diagram of a side view of the boom side open hot stuffy tank of the present invention.
Fig. 4 is a schematic front view of the boom pivot device according to the present invention.
Fig. 5 is a schematic top view of the boom pivot mechanism of the present invention.
Fig. 6 is a schematic structural diagram of a boom pivot mechanism in the invention.
Fig. 7 is a schematic view of the structure of the link mechanism of the present invention.
FIG. 8 is a schematic view of the lid of the present invention.
Figure 9 is a schematic view of the construction of a can lid of the present invention.
Fig. 10 isbase:Sub>A schematic sectional view taken along linebase:Sub>A-base:Sub>A of fig. 9.
Fig. 11 is a schematic structural view of a connecting mechanism between the can lid body and the can lid mount.
FIG. 12 is a schematic view of the construction of the safety interlock device of the present invention.
Figure 13 is a diagram of the opening process of the can lid of the present invention.
In the figure: 1. a hot stuffy tank support, 2, a hot stuffy tank cylinder body, 20, a slag car track, 21, a track mounting plate, 22, a slag groove buttress, 23, a spraying device, 24, a self-tightening sealing ring, 3, a hot stuffy tank cover, 30, a tank cover mounting seat, 31, a tank cover body, 310, a meshing tooth, 32, a connecting mechanism, 320, a step shaft, 321, a bearing seat, 322, a bearing, 323, a baffle plate, 324, an end cover, 33, a limiting piece, 34, a first staggered tooth device, 340, a second cylinder mounting plate, 341, a second cylinder, 0, a second cylinder piston rod, 342, a rotating shaft, 35, a second staggered tooth device, 3414, a suspension arm rotating shaft device, 40, a suspension arm mounting seat, 41, a suspension arm supporting shaft, 42, a suspension arm, 43, a connecting rod mechanism, 430, a first connecting rod fixing plate, 431, a second connecting rod fixing plate, 432, a connecting rod, 4320, a connecting rod shaft, 4321, a first threaded shaft, 4322, a second threaded shaft, 433, a fixing shaft, 434, a first rotary connection mechanism, 4340, a first rotary shaft, 4341, a first shaft sleeve, 4342, a first bearing, 4343, a first end cap, 435, a second rotary connection mechanism, 4350, a second rotary shaft, 4351, a second shaft sleeve, 4352, a second bearing, 4353, a second end cap, 44, a boom shaft mechanism, 440, a shaft sleeve, 441, a bearing, 442, a distance sleeve, 443, a baffle, 444, an adjustment ring, 445, a sealing cover, 450, a boom bearing seat, 451, a boom copper bearing, 452, a thrust bearing, 453, a boom bearing upper seat, 454, a boom nut, 455, an arm upper adjustment plate, 456, a boom lower adjustment plate, 457, a connection plate, 458, a hot stuffy tank cover relative to a rotation center of the boom, 45, a tank cover rotary shaft, 46, a first fluid cylinder, 460, a first fluid cylinder piston rod, 47, a connection, 48, a first proximity switch mounting plate, 480, a first proximity switch, 5. the safety interlocking device comprises a safety interlocking device 50, a locking shaft mechanism 51, a locking plate 52, a mounting seat 520, a third hydraulic cylinder mounting plate 521, a second proximity switch mounting plate 522, a third hydraulic cylinder 5220, a third hydraulic cylinder piston rod 523, a second proximity switch 53, a locking sleeve fixing plate 530, a locking sleeve 531 and a locking shaft.
[ detailed description ] embodiments
The boom side open hot stuffer can of the present invention is further described in detail by the following embodiments.
As shown in fig. 1 to 3, a boom side-opening hot stuffy tank comprises a saddle type hot stuffy tank support 1, a hot stuffy tank body 2 and a hot stuffy tank cover 3, wherein the hot stuffy tank body 2 is arranged above the hot stuffy tank support 1, the hot stuffy tank cover 3 is arranged on the hot stuffy tank body 2 through a boom rotating shaft device 4, a slag car track 20, a track mounting plate 21 and a slag groove buttress 22 are arranged in the hot stuffy tank body 2, a spray device 23 is arranged above the hot stuffy tank body 2, and a mullite layer is arranged on the inner wall of the hot stuffy tank body 2, so that the hot stuffy tank body 2 has better fire resistance and high temperature resistance; the flange of the hot stifled tank body 2 is provided with a self-tightening sealing ring 24 matched with the hot stifled tank cover 3, so that the hot stifled tank body 2 and the hot stifled tank cover 3 have good sealing performance. The hot stifling tank cylinder body 2 is provided with a pressure measuring port, a water spraying port, an exhaust port, a temperature measuring port, a water discharging port, a liquid level meter port, a hydrogen detecting port, a safety valve port, a nitrogen charging port and a plurality of standby ports. The hot stifled jar cover 3 is connected with the hot stifled jar body 2 in a tooth meshing manner, and a safety interlocking device 5 is arranged between the hot stifled jar cover 3 and the hot stifled jar body 2.
Referring to fig. 4 and 5, the boom spindle device 4 includes: set up davit mount pad 40 on hot stifled jar barrel 2, install davit 42 on davit mount pad 40 and install link mechanism 43 on davit 42 through davit back shaft 41, be equipped with davit pivot mechanism 44 between davit 42 and the davit back shaft 41, install in the davit 42 with hot stifled jar cover 3 fixed connection's cover pivot 45, install on the davit mount pad 40 and be used for driving davit pivot mechanism 44 pivoted first hydraulic cylinder 46, first hydraulic cylinder piston rod 460 links to each other with davit pivot mechanism 44 through connecting piece 47, be equipped with first proximity switch mounting panel 48 on the davit mount pad 40, be equipped with two first proximity switches 480 on the first proximity switch mounting panel 48.
Referring to fig. 6, the boom pivot mechanism 44 includes a shaft sleeve 440 sleeved on the boom support shaft 41, and a bearing 441 and a distance sleeve 442 disposed between the shaft sleeve 440 and the boom support shaft 41, wherein a baffle 443 and an adjusting ring 444 are disposed at one end of the bearing 441, the baffle 443 is connected to the boom support shaft 41 through a fixing member, a cover 445 is disposed at one end of the shaft sleeve 440, the cover 445 is connected to the shaft sleeve 440 through a fixing member, the shaft sleeve 440 is welded to the connecting member 47, and the shaft sleeve 440 is welded to the boom 42.
Referring to fig. 7, the link mechanism 43 includes a first link fixing plate 430, a second link fixing plate 431, and a link 432 connected between the first link fixing plate 430 and the second link fixing plate 431, the first link fixing plate 430 is fixedly connected to the boom support shaft 41 through a fixing shaft 433, the first link fixing plate 430 is connected to the link 432 through a first rotating connection mechanism 434, the second link fixing plate 431 is fixedly connected to the tank cover rotating shaft 45, the link 432 is connected to the second link fixing plate 431 through a second rotating connection mechanism 435, and the first rotating connection mechanism 434 includes: a first rotating shaft 4340, a first shaft sleeve 4341, a first bearing 4342 and a first end cap 4343, wherein the first rotating shaft 4340 is fixedly connected to the first link fixing plate 430, the first shaft sleeve 4341 is sleeved on the outer side of the first rotating shaft 4340, the first bearing 4342 is disposed between the first shaft sleeve 4341 and the first rotating shaft 4340, the first end cap 4343 is disposed on one side of the first shaft sleeve 4341 and is connected to the first rotating shaft 4340 through a fixing member, and the second rotating connection mechanism 435 includes: the second rotating shaft 4350 is fixedly connected to the second link fixing plate 431, the second shaft sleeve 4351 is sleeved outside the second rotating shaft 4350, the second bearing 4352 is disposed between the second shaft sleeve 4351 and the second rotating shaft 4350, the second end cap 4353 is disposed on one side of the second shaft sleeve 4351 and connected to the second rotating shaft 4350 through a fixing member, the first shaft sleeve 4341 is fixedly connected to one end of the link 432, and the second shaft sleeve 4351 is fixedly connected to the other end of the link 432. The connecting rod 432 comprises a connecting rod shaft 4320, a first threaded shaft 4321 arranged at one end of the connecting rod shaft 4320, and a second threaded shaft 4322 arranged at the other end of the connecting rod shaft 4320, wherein one end of the first threaded shaft 4321 is in threaded connection with the connecting rod shaft 4320, the other end of the first threaded shaft 4321 is in threaded connection with the first sleeve 4341, one end of the second threaded shaft 4322 is in threaded connection with the connecting rod shaft 4320, and the other end of the second threaded shaft 4322 is in threaded connection with the second sleeve 4351.
Referring to fig. 8, the boom 42 is provided with a mounting hole for mounting a tank cover rotating shaft 45, a boom bearing seat 450 and a boom copper bearing 451 are arranged between the tank cover rotating shaft 45 and the mounting hole, a one-way thrust bearing 452, a boom bearing upper seat 453 and a boom nut 454 are arranged above the boom bearing seat 450, the boom bearing upper seat 453 is in key connection with the tank cover rotating shaft 45, the second link fixing plate 431 is fixedly connected with the boom bearing upper seat 453, the boom bearing seat 450 is sleeved with an upper boom adjusting plate 455 mounted above the boom 42 and a lower boom adjusting plate 456 mounted below the boom 42, and the lower part of the tank cover rotating shaft 45 is fixedly connected with the hot stuffy tank cover 3 through a connecting plate 457.
Referring to fig. 13, the working principle of the boom rotating shaft device 4 is as follows: the first hydraulic cylinder rod 460 is controlled to move linearly by controlling the switch, the head of the first hydraulic cylinder rod 460 is connected to the bushing 440 of the boom pivot mechanism 44 through a connecting member 47, so the bushing 440 is driven to rotate relative to the boom support shaft 41 during the movement of the first hydraulic cylinder rod 460, the boom 42 is driven to rotate relative to the boom support shaft 41 because the bushing 440 is welded to the boom 42, the first proximity switch 480 is used to limit the rotation angle of the boom 42, the first link fixing plate 430 is fixedly connected to the boom support shaft 41 through the fixing shaft 433, so during the rotation of the boom 42, the first link fixing plate 430 and the fixing shaft 433 are both in a fixed state, the link 432 is driven to rotate around the first pivot 4340 of the first rotary connecting mechanism 434 during the rotation of the boom 42, the second link fixing plate 431 is driven to rotate around the hot blank can cover 3 relative to the rotation center 458 of the boom 42 during the rotation of the boom 42, the second link fixing plate 431 is fixedly connected to the blank cover pivot 45, so the blank can cover pivot 45 is driven to rotate, and the hot blank can cover 3 relative to the boom 42.
Referring to fig. 9 to 11, the thermally stuffy can lid 3 of the present invention comprises: a can lid mounting base 30 and a can lid body 31 mounted on the can lid mounting base 30, the can lid body 31 is provided with meshing teeth 310 on the circumference, the center of the can lid body 31 is connected to the can lid mounting base 30 through a connecting mechanism 32 so that the can lid body 31 can rotate relative to the can lid mounting base 30, the connecting mechanism 32 includes: the tank cover comprises a stepped shaft 320 welded with a tank cover body 31, a bearing seat 321 welded with a tank cover mounting seat 30, a bearing 322, a baffle 323 and an end cover 324, wherein the bearing 322 is mounted between the bearing seat 321 and the stepped shaft 320, the baffle 323 is mounted at one end of the bearing 322 and fixed with the stepped shaft 320, and the end cover 324 is connected with the bearing seat 321 through bolts. The cover body 31 has stoppers 33 on both sides of the cover mounting base 30.
One side of the tank cover mounting base 30 is provided with a first staggered teeth device 34 matched with the tank cover body 31, the other side of the tank cover mounting base 30 is provided with a second staggered teeth device 35 matched with the tank cover body 31, the first staggered teeth device 34 comprises a second cylinder mounting plate 340, a second cylinder 341 and a rotating shaft 342, the second cylinder mounting plate 340 is fixedly connected with the tank cover mounting base 30, one end of the second cylinder 341 is connected with the second cylinder mounting plate 340 through a pin shaft and a split pin so that the second cylinder 341 and the second cylinder mounting plate 340 can rotate relatively, one end of the second cylinder piston rod 3410 is connected with one end of the rotating shaft 432 through the split pin so that the second cylinder piston rod 3410 and the rotating shaft 432 can rotate relatively, and the other end of the rotating shaft 432 is welded on the tank cover body 31. The second teeth staggering device 35 has the same structure as the first teeth staggering device 34, and in this embodiment, two sets of the teeth staggering devices are provided and are respectively provided on both sides of the tank cover mounting base 30, but in other embodiments, only one set of the teeth staggering devices may be provided on one side of the tank cover mounting base 30, and the present invention can be similarly implemented.
The working principle of the staggered tooth device is as follows: when the hot-covered can cover 3 is engaged with the hot-covered can body 2, the control switch is operated to move the second cylinder piston rod 3410 in the staggered teeth device, and since the cover body 31 is connected with the second cylinder piston rod 3410 through the rotating shaft 432, the second cylinder piston rod 3410 drives the cover body 31 to rotate, so that the meshing teeth on the circumference of the cover body 31 and the meshing teeth on the circumference of the can body form staggered locking connection. When the thermally-sealed can cover 3 needs to be opened, the control switch is also operated to make the second cylinder piston rod 3410 in the staggered teeth device move in the opposite direction, so as to drive the can cover body 31 to rotate in the opposite direction, and thus the meshing teeth on the circumference of the can cover body 31 and the meshing teeth on the circumference of the can body are disengaged from the lock catch.
Referring to FIG. 12, the safety interlock device 5 includes: a locking shaft mechanism 50 arranged on the hot stuffy tank cylinder body 2 and a locking plate 51 arranged on the hot stuffy tank cover 3. The locking shaft mechanism 50 includes: with 2 flange looks welded mount pads 52 and lock sleeve fixed plate 53 of hot stifled jar barrel, be equipped with third cylinder mounting panel 520 and second proximity switch mounting panel 521 on the mount pad 52, install third cylinder 522 on the third cylinder mounting panel 520, install second proximity switch 523 on the second proximity switch mounting panel 521, be equipped with lock sleeve 530 in the lock sleeve fixed plate 53, lock sleeve 530 and lock sleeve fixed plate 53 fixed connection, be equipped with in the lock sleeve 530 can be for lock sleeve 530 axial displacement's lock shaft 531, the one end of lock shaft 531 passes through threaded connection with the free end of third cylinder piston rod 5220, lock plate 51 welds with hot stifled jar lid 3 flange mutually, be equipped with on the lock plate 51 with lock shaft 531 matched with locking round hole.
The working principle of the safety interlock device 5 is as follows: when the hot stuffy tank cover 3 is closed with the hot stuffy tank barrel 2, the third hydraulic cylinder piston rod 5220 of the safety interlock device 5 moves axially to drive the locking shaft 531 fixedly connected with the third hydraulic cylinder piston rod 5220 to move axially, so that one end of the locking shaft 531 extends into the locking round hole of the locking plate 51 to realize locking, and similarly, when the hot stuffy tank cover 3 needs to be opened from the hot stuffy tank barrel 2, the third hydraulic cylinder piston rod 5220 of the safety interlock device 5 moves axially in the opposite direction to drive the locking shaft 531 to be separated from the locking round hole of the locking plate 51 to realize unlocking, the second proximity switch 523 is used for controlling the stroke of the third hydraulic cylinder piston rod 5220, and when the stroke of the third hydraulic cylinder piston rod 5220 reaches the set stroke, the second proximity switch 523 transmits a signal to the control system, and controls the third hydraulic cylinder 522 through the control system.
In conclusion, the open-type hot stuffy tank cover with the side-open type suspension arm has the advantages that the opening and closing speed is stable, no blocking exists, the tank cover cannot sink and deform after being used for a period of time, and the tank cover does not have the phenomenon of turning after being opened in place. In addition, the safety interlocking device is arranged between the cylinder body and the tank cover of the hot stifled tank, so that the safety performance of the hot stifled tank is greatly improved; in addition, the dislocation device is arranged on the tank cover, so that the tank cover and the cylinder body can be locked/unlocked smoothly and flexibly.
The above-mentioned embodiments are merely illustrative of the principles and effects of the present invention, and some embodiments may be used, not restrictive; it should be noted that, for those skilled in the art, various changes and modifications can be made without departing from the inventive concept of the present invention, and these changes and modifications belong to the protection scope of the present invention.

Claims (8)

1. A side-opening hot stuffy tank with a suspension arm, which is characterized in that,
the method comprises the following steps:
the hot stifled tank comprises a hot stifled tank support, a hot stifled tank body and a hot stifled tank cover, wherein the hot stifled tank body is arranged above the hot stifled tank support, the hot stifled tank cover is connected with the hot stifled tank body through a suspension arm rotating shaft device, the hot stifled tank cover and the hot stifled tank body are in tooth meshing connection, a staggered tooth device is arranged on the hot stifled tank cover, and a safety interlocking device is arranged between the hot stifled tank cover and the hot stifled tank body;
the davit pivot mechanism includes: the hot stuffy tank comprises a suspension arm mounting seat arranged on a hot stuffy tank barrel, a suspension arm mounted on the suspension arm mounting seat through a suspension arm supporting shaft, and a link mechanism mounted on the suspension arm, wherein a suspension arm rotating shaft mechanism is arranged between the suspension arm and the suspension arm supporting shaft, a tank cover rotating shaft fixedly connected with a tank cover is mounted in the suspension arm, the link mechanism comprises a first link fixing plate, a second link fixing plate and a link rod connected between the first link fixing plate and the second link fixing plate, the first link fixing plate is fixedly connected with the suspension arm supporting shaft through a fixing shaft, the first link fixing plate is connected with the link rod through a first rotating connection mechanism, the second link fixing plate is fixedly connected with the tank cover rotating shaft, the link rod is connected with the second link fixing plate through a second rotating connection mechanism, a first hydraulic cylinder for driving the suspension arm rotating shaft mechanism to rotate is mounted on the suspension arm mounting seat, and a piston rod of the first hydraulic cylinder is connected with the suspension arm rotating shaft mechanism through a connecting piece;
the safety interlock device includes: set up locking shaft mechanism on hot stifled jar barrel and set up the locking board on hot stifled jar cover, locking shaft mechanism includes: with hot stifled jar barrel flange fixed connection's mount pad and lock sleeve fixed plate, be equipped with third hydraulic cylinder mounting panel and proximity switch mounting panel on the mount pad, install the third hydraulic cylinder on the third hydraulic cylinder mounting panel, install proximity switch on the proximity switch mounting panel, be equipped with the lock sleeve in the lock sleeve fixed plate, lock sleeve and lock sleeve fixed plate fixed connection, be equipped with in the lock sleeve and be for the lock shaft of lock sleeve axial displacement, the one end of lock shaft and the free terminal fixed connection of third hydraulic cylinder piston rod, be equipped with on the lock plate with lock shaft matched with lockhole.
2. The boom side open hot stuffer tank of claim 1, wherein:
the thermally stuffy can lid comprises: the tank cover comprises a tank cover mounting seat and a tank cover body, wherein the tank cover mounting seat is fixedly connected with a tank cover rotating shaft, and the center of the tank cover body is connected with the tank cover mounting seat through a connecting mechanism, so that the tank cover body can rotate relative to the tank cover mounting seat.
3. The boom side open hot pot of claim 2, wherein:
the coupling mechanism between cover body and the cover mount pad includes: the tank cover comprises a step shaft, a bearing seat, a bearing, a baffle and an end cover, wherein the step shaft is welded with a tank cover body, the bearing seat is welded with a tank cover mounting seat, the bearing is arranged between the bearing seat and the step shaft, the baffle is mounted at one end of the bearing and fixed with the step shaft, and the end cover is connected with the bearing seat through a fixing piece.
4. The boom side open hot pot of claim 3, wherein:
be equipped with the wrong tooth device between cover mount pad and the cover body, the wrong tooth device is including setting up in second hydraulic cylinder mounting panel, second hydraulic cylinder and the pivot of cover mount pad one side, be connected through first connecting piece between the one end of second hydraulic cylinder and the second hydraulic cylinder mounting panel and make and form relative rotation between second hydraulic cylinder and the second hydraulic cylinder mounting panel and be connected, the second hydraulic cylinder piston rod is connected through the second connecting piece with the one end of pivot and makes and form relative rotation between second hydraulic cylinder piston rod and the pivot and be connected, the other end and the cover body fixed connection of pivot.
5. The boom side open hot pot of claim 1, wherein:
and a slag car track, a track mounting plate and a slag groove buttress are arranged in the hot stifle tank barrel.
6. The boom side open hot stuffer tank of claim 1, wherein:
and a spraying device is arranged above the hot stuffy tank body.
7. The boom side open hot pot of claim 1, wherein:
and the inner wall of the hot stuffy tank cylinder body is provided with a mullite layer.
8. The boom side open hot stuffer tank of claim 1, wherein:
and a self-tightening sealing ring matched with the cover of the hot stuffy tank is arranged at the flange of the hot stuffy tank body.
CN201710995287.XA 2017-10-23 2017-10-23 Hanging arm side-opening hot stuffy tank Active CN107574272B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710995287.XA CN107574272B (en) 2017-10-23 2017-10-23 Hanging arm side-opening hot stuffy tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710995287.XA CN107574272B (en) 2017-10-23 2017-10-23 Hanging arm side-opening hot stuffy tank

Publications (2)

Publication Number Publication Date
CN107574272A CN107574272A (en) 2018-01-12
CN107574272B true CN107574272B (en) 2023-01-10

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CN201473553U (en) * 2009-07-30 2010-05-19 济钢集团国际工程技术有限公司 Sealing device for high-pressure slag stewing tank
CN101698892B (en) * 2009-11-09 2012-07-25 广东省韶关钢铁集团有限公司 Hot stuffy processing device for steel slag
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CN207376073U (en) * 2017-10-23 2018-05-18 张化机(苏州)重装有限公司 A kind of laterally opened hot vexed tank of arm

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