CN212595667U - But continuous production acrylic acid emulsion reaction unit - Google Patents

But continuous production acrylic acid emulsion reaction unit Download PDF

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Publication number
CN212595667U
CN212595667U CN202020696542.8U CN202020696542U CN212595667U CN 212595667 U CN212595667 U CN 212595667U CN 202020696542 U CN202020696542 U CN 202020696542U CN 212595667 U CN212595667 U CN 212595667U
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welded
rod
block
plate
shaped base
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顾春晓
封云杰
沈佳伟
李阳
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Zhejiang Yufeng New Materials Co ltd
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Zhejiang Yufeng New Materials Co ltd
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Abstract

The utility model discloses a but continuous production acrylic acid emulsion reaction unit relates to acrylic acid emulsion technical field. This but continuous production acrylic acid emulsion reaction unit, including the U-shaped base, the top surface welded mounting of U-shaped base has the bottom plate, the top surface welded mounting of bottom plate has first side frame, second side frame and rose box, the lift groove has all been seted up to the inside of first side frame and second side frame, the inside slidable mounting of lift groove has the elevator, the adjacent lateral wall welded mounting of elevator has the roof, the fixed plate is installed in the outer wall welded mounting of one side of second side frame, the top surface welded mounting of fixed plate has the hydraulic stem, the top surface welded mounting of hydraulic stem has the accessory plate, the accessory plate is installed with one side outer wall welded mounting of elevator. The utility model discloses can carry out the quick cleaning work to acrylic acid emulsion apparatus for producing, shorten staff's latency, the indirect purpose that reaches continuous production.

Description

But continuous production acrylic acid emulsion reaction unit
Technical Field
The invention relates to the technical field of acrylic emulsion, in particular to a reaction device capable of continuously producing acrylic emulsion.
Background
The acrylate emulsion polymer is widely used for pigment printing, electrostatic flocking, fabric attaching, warp sizing, coating processing and the like, and acrylates with different properties have different purposes due to the difference of used raw materials and mixture ratio. The organosilicon modified acrylic emulsion is an emulsion polymer of organosilicon compounds and acrylic ester, the emulsion has uniform particle size distribution, high stability, good comprehensive performance of a coating film and good waterproof performance, and the waterproof performance can reach a higher level.
However, the existing acrylic emulsion production device cannot perform continuous production, because the production device needs to be cleaned after a batch of acrylic emulsion is produced, but the existing acrylic emulsion production device and the existing acrylic emulsion production device are inconvenient to clean, which seriously affects the production efficiency, and when the acrylic emulsion is produced, raw materials and auxiliary agents need to be manually added, but impurities are contained in the raw materials and the auxiliary agents, so that staff cannot filter the acrylic emulsion, which can affect the quality of the subsequent acrylic emulsion.
Disclosure of Invention
The invention aims to provide a reaction device capable of continuously producing acrylic emulsion so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: a reaction device capable of continuously producing acrylic emulsion comprises a U-shaped base, wherein a bottom plate is welded on the outer surface of the top of the U-shaped base, a first side rack, a second side rack and a filter box are welded on the outer surface of the top of the bottom plate, lifting grooves are formed in the first side rack and the second side rack, lifting blocks are slidably mounted in the lifting grooves, a top plate is welded on the adjacent side wall of each lifting block, a fixed plate is welded on the outer wall of one side of the second side rack, a hydraulic rod is welded on the outer surface of the top of the fixed plate, an auxiliary plate is welded on the outer surface of the top of the hydraulic rod, the auxiliary plate is welded on the outer wall of one side of each lifting block, a limiting block and a connecting rod are welded on the outer surface of the top plate, a clamping plate is welded on the outer surface of the top of, the rotating cleaning mechanism is arranged above the U-shaped base, the rapid filtering mechanism is arranged above the U-shaped base, and the drainage mechanism is arranged above the U-shaped base.
Preferably, the liftable stirring mechanism comprises a stirring blade, a first rotating rod, a second rotating rod, a first motor, a first belt pulley, a belt and a second belt pulley, the first motor is welded and installed on the outer surface of the top plate, holes are formed in the top of the top plate, the number of the holes is two, rectangular holes are formed in the top plate and communicated with the holes, the second rotating rod is welded and installed at the output end of the first motor, the free end of the second rotating rod penetrates through the holes and extends to the outside of the top plate, the limiting block is located right above the holes, the first rotating rod is rotatably installed on the outer surface of the bottom of the limiting block, the free end of the first rotating rod penetrates through the holes and extends to the outside of the top plate, the first belt pulley and the second belt pulley are respectively sleeved and installed on the first rotating rod and the second rotating rod, the belt is arranged between the first belt pulley and the second belt pulley, the belt is located inside the rectangular holes, first belt pulley passes through the belt and is connected with the transmission of second belt pulley, and welded mounting has stirring blade on first bull stick and the second bull stick, and the bottom welded mounting of first bull stick and second bull stick has the backup pad, and the top surface welded mounting of backup pad has the balancing weight.
Preferably, the rotating cleaning mechanism comprises a second motor, a transmission rod, a first support rod and a brushing block, the second motor is installed on the outer surface of the top plate in a welded mode, the transmission rod is installed on the outer surface of the bottom of the top plate in a rotating mode, an output shaft of the second motor penetrates through the top plate and is installed with the transmission rod in a welded mode, the first support rod and the second support rod are installed on the outer wall of one side of the transmission rod in a welded mode, the brushing block is installed on the free end of the first support rod in a welded mode, and the free end of the second support rod is installed.
Preferably, quick filter mechanism includes feeder hopper, serpentine coil, ejection of compact pipeline, active carbon filter block, sponge filter block and solid cotton filter block, the equal fixed mounting in top and the bottom surface of rose box has the feeder hopper, the inboard top fixed mounting of rose box has the charge-in pipeline, the free end fixed mounting of charge-in pipeline has serpentine coil, the inboard bottom fixed mounting of rose box has ejection of compact pipeline, serpentine coil's free end and ejection of compact pipeline's top fixed mounting, charge-in pipeline's inside is the cavity setting, there is active carbon filter block in the inside difference fixed mounting of charge-in pipeline, sponge filter block and solid cotton filter block.
Preferably, drainage mechanism includes outlet conduit, suction pump, the hose of intaking and suction head, and the top surface welded mounting of clamp plate has the suction pump, and one side outer wall fixed mounting of water storage tank has outlet conduit, and outlet conduit's free end and the play water end fixed mounting of suction pump, the end fixed mounting that intakes of suction pump have the hose of intaking, and the top surface welded mounting of roof has the suction head to place the case, and the free end fixed mounting of the hose of intaking has the suction head, and the suction head is located the inside that the case was placed to the suction head.
Preferably, a third motor is welded to the outer wall of one side of the U-shaped base, a threaded thick rod and a moving block are rotatably and slidably mounted inside the U-shaped base, the threaded thick rod penetrates through the moving block, and an output shaft of the third motor penetrates through the U-shaped base and is welded to the threaded thick rod.
Preferably, the top of the bottom plate is provided with a sliding groove, the sliding block is slidably mounted inside the sliding groove, the reaction kettle is welded to the outer surface of the top of the sliding block, and the moving block is welded to the outer surface of the bottom of the sliding block.
Preferably, the outer wall of one side of the first side rack is welded with a water tank, the outer surface of the bottom of the water tank is fixedly provided with a transmission pipeline, and the transmission pipeline is provided with a control valve.
Compared with the prior art, the invention has the beneficial effects that:
the reaction device for continuously producing the acrylic emulsion can carry out rapid and fine filtering work on the raw materials and the auxiliary agents through the matching use of the structures such as the feed hopper, the feed pipeline, the serpentine coil, the discharge pipeline, the activated carbon filter block and the like when the raw materials and the auxiliary agents are required to be added during the production of the acrylic emulsion, can effectively filter impurities in the raw materials and the auxiliary agents, indirectly provides a powerful guarantee for the quality of the acrylic emulsion after subsequent processing, can not be taken out and has poor stirring effect in the existing stirring mechanism in the acrylic emulsion production device, is inconvenient for subsequent cleaning work, can carry out convenient and rapid lifting work on a liftable stirring mechanism through the matching use of the structures such as the hydraulic rod, the auxiliary plate, the lifting block, the stirring blade and the first rotating rod, is convenient for the subsequent cleaning work to be carried out smoothly, and the improved stirring mechanism can enable the raw materials and the auxiliary agents to be more rapidly blended together, when the production device needs to be cleaned, the reaction kettle can be moved to the position right below the rotary cleaning mechanism by matching the structures such as the third motor, the moving block, the thread thick rod, the sliding block and the like, the water can be injected into the reaction kettle and can be rapidly cleaned through the matching use of the structures such as the hydraulic rod, the lifting block, the water tank, the transmission pipeline and the like, and finally, the cleaned water can be rapidly pumped out through the matching use of the structures such as the water outlet pipeline, the water suction pump, the water inlet hose, the water suction head and the like, the rapid cleaning work of the acrylic emulsion production device can be realized by the matching use of the structures, the problem that the cleaning of the existing acrylic emulsion production device is time-consuming is solved, the quick cleaning work greatly shortens the waiting time of workers, thereby indirectly achieving the continuous production of the acrylic emulsion.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a front view of the present invention;
FIG. 3 is a front view of the reactor of the present invention after displacement;
FIG. 4 is an enlarged view of portion A of the present invention;
FIG. 5 is an enlarged view of section B of the present invention;
FIG. 6 is an enlarged view of section C of the present invention;
FIG. 7 is an enlarged view of section D of the present invention.
In the figure: 1 liftable stirring mechanism, 101 stirring blades, 102 first rotating rod, 103 second rotating rod, 104 first motor, 105 first belt pulley, 106 belt, 107 second belt pulley, 2 rotating cleaning mechanism, 201 second motor, 202 transmission rod, 203 first supporting rod, 204 brushing block, 3 rapid filtering mechanism, 301 feed hopper, 302 feed pipe, 303 serpentine coil, 304 discharge pipe, 305 active carbon filtering block, 306 sponge filtering block, 307 solid cotton filtering block, 4 drainage mechanism, 401 water outlet pipe, 402 water pump, 403 water inlet hose, 404 water suction head, 5 bottom plate, 6 third motor, 7 moving block, 8 thread thick rod, 9U-shaped base, 10 sliding block, 11 reaction kettle, 12 first side frame, 13 balancing weight, 14 supporting plate, 15 fixing plate, 16 hydraulic rod, 17 auxiliary plate, 18 second supporting rod, 19 top plate, 20 limiting block, 21 lifting block, 105 first belt pulley, 106 belt pulley, 107 second belt pulley, 2 rotating cleaning mechanism, 201 second motor, 202 transmission rod, 203 solid cotton filtering block, 307 solid cotton filtering block, 4 drainage mechanism, 22 clamping plates, 23 second side frames, 24 water storage tanks, 25 suction head placing tanks, 26 water tanks, 27 transmission pipelines and 28 filter tanks.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides a technical solution: a reaction device capable of continuously producing acrylic emulsion comprises a U-shaped base 9, a bottom plate 5 is welded on the outer surface of the top of the U-shaped base 9, a first side rack 12, a second side rack 23 and a filter box 28 are welded on the outer surface of the top of the bottom plate 5, lifting grooves are formed in the first side rack 12 and the second side rack 23, lifting blocks 21 are slidably mounted in the lifting grooves, a top plate 19 is welded on the adjacent side wall of each lifting block 21, a fixing plate 15 is welded on the outer wall of one side of the second side rack 23, a hydraulic rod 16 is welded on the outer surface of the top of the fixing plate 15, an auxiliary plate 17 is welded on the outer surface of the top of the hydraulic rod 16, the auxiliary plate 17 is welded on the outer wall of one side of the lifting blocks 21, a limiting block 20 and a connecting rod are welded on the outer surface of, the outer surface of the top of the clamping plate 22 is welded with a water storage tank 24, a liftable stirring mechanism 1 is arranged above the U-shaped base 9, the liftable stirring mechanism 1 comprises a stirring blade 101, a first rotating rod 102, a second rotating rod 103, a first motor 104, a first belt pulley 105, a belt 106 and a second belt pulley 107, the outer surface of the top plate 19 is welded with the first motor 104, the top of the top plate 19 is provided with two holes, the inside of the top plate 19 is provided with a rectangular hole, the rectangular hole is communicated with the holes, the output end of the first motor 104 is welded with the second rotating rod 103, the free end of the second rotating rod 103 penetrates through the hole and extends to the outside of the top plate 19, the limiting block 20 is positioned right above the hole, the outer surface of the bottom of the limiting block 20 is rotatably provided with the first rotating rod 102, the free end of the first rotating rod 102 penetrates through the hole and extends to the outside of the, a first belt pulley 105 and a second belt pulley 107 are respectively sleeved on the first rotating rod 102 and the second rotating rod 103, a belt 106 is arranged between the first belt pulley 105 and the second belt pulley 107, the belt 106 is positioned inside the rectangular hole, the first belt pulley 105 is in transmission connection with the second belt pulley 107 through the belt 106, stirring blades 101 are welded on the first rotating rod 102 and the second rotating rod 103, a supporting plate 14 is welded at the bottom of the first rotating rod 102 and the second rotating rod 103, a balancing weight 13 is welded on the outer surface of the top of the supporting plate 14, a rotating cleaning mechanism 2 is arranged above the U-shaped base 9, the rotating cleaning mechanism 2 comprises a second motor 201, a transmission rod 202, a first supporting rod 203 and a scrubbing block 204, a second motor 201 is welded on the outer surface of the top plate 19, a transmission rod 202 is rotatably arranged on the outer surface of the bottom of the top plate 19, an output shaft of the second motor 201 penetrates through the top plate 19 and is welded with the, the outer wall of one side of the transmission rod 202 is welded with a first support rod 203 and a second support rod 18, the free end of the first support rod 203 is welded with a scrubbing block 204, the free end of the second support rod 18 is welded with the outer surface of the top of the first support rod 203, a rapid filtering mechanism 3 is arranged above the U-shaped base 9, the rapid filtering mechanism 3 comprises a feed hopper 301, a serpentine coil 303, a discharge pipeline 304, an activated carbon filtering block 305, a sponge filtering block 306 and a solid cotton filtering block 307, the outer surfaces of the top and the bottom of the filtering box 28 are fixedly provided with the feed hopper 301, the top of the inner side of the filtering box 28 is fixedly provided with a feed pipeline 302, the free end of the feed pipeline 302 is fixedly provided with the serpentine coil 303, the bottom of the inner side of the filtering box 28 is fixedly provided with the discharge pipeline 304, and the free end of, the interior of the feeding pipeline 302 is hollow, an activated carbon filter block 305, a sponge filter block 306 and a solid cotton filter block 307 are respectively and fixedly installed in the feeding pipeline 302, a drainage mechanism 4 is arranged above the U-shaped base 9, the drainage mechanism 4 comprises a water outlet pipeline 401, a water suction pump 402, a water inlet hose 403 and a water suction head 404, a water suction pump 402 is installed on the outer surface of the top of the clamping plate 22 in a welded mode, a water outlet pipeline 401 is fixedly installed on the outer wall of one side of the water storage tank 24, the free end of the water outlet pipeline 401 and the water outlet end of the water suction pump 402 are fixedly installed, the water inlet hose 403 is fixedly installed on the water inlet end of the water suction pump 402, a water suction head placing tank 25 is installed on the outer surface of the top plate 19 in a welded mode, the water suction head 404 is fixedly installed on the free end of the water inlet hose 403, the water suction head, a thread thick rod 8 and a moving block 7 are rotatably and slidably mounted in a U-shaped base 9, the thread thick rod 8 penetrates through the moving block 7, an output shaft of a third motor 6 penetrates through the U-shaped base 9 and is welded with the thread thick rod 8, a sliding groove is formed in the top of a bottom plate 5, a sliding block 10 is slidably mounted in the sliding groove, a reaction kettle 11 is welded and mounted on the outer surface of the top of the sliding block 10, the moving block 7 and the outer surface of the bottom of the sliding block 10 are welded and mounted, a water tank 26 is welded and mounted on the outer wall of one side of a first side frame 12, a transmission pipeline 27 is fixedly mounted on the outer surface of the bottom of the water tank 26, a control valve is arranged on the transmission pipeline 27, and through the matching use of structures such as a feed hopper 301, a feed pipeline 302, a serpentine coil 303, a discharge pipeline 304 and an active carbon filter block 305, indirect provides powerful guarantee for the quality of acrylic emulsion finished by subsequent processing, the stirring mechanism in the existing acrylic emulsion production device can not be taken out and has poor stirring effect, which is inconvenient for subsequent cleaning work, and the lifting mechanism 1 can be conveniently and rapidly lifted through the matching use of the structures of the hydraulic rod 16, the auxiliary plate 17, the lifting block 21, the stirring blade 101 and the first rotating rod 102, which is convenient for the smooth proceeding of the subsequent cleaning work, and the improved stirring mechanism can enable the raw materials and the auxiliary agents to be more rapidly blended together, when the production device needs to be cleaned, the reaction kettle 11 can be firstly moved to the position under the rotary cleaning mechanism 2 through the matching use of the structures of the third motor 6, the moving block 7, the thread thick rod 8 and the sliding block 10, and the reaction kettle 11 can be moved to the position under the rotary cleaning mechanism 2 through the structures of the hydraulic rod 16, the lifting block 21, the hydraulic rod 16, the first rotating rod 102, The water tank 26 and the transmission pipeline 27 are used in cooperation, so that water can be injected into the reaction kettle 11 and can be quickly cleaned, and finally, the cleaned water can be quickly pumped out through the cooperation of the structures such as the water outlet pipeline 401, the water suction pump 402, the water inlet hose 403 and the water suction head 404, so that the acrylic emulsion production device can be quickly cleaned, the problem that the conventional acrylic emulsion production device is time-consuming to clean is solved, the quick cleaning work is realized, the waiting time of workers is greatly shortened, and therefore, the continuous production of acrylic emulsion is indirectly achieved, and it is worth mentioning that the balancing weight 13 and the supporting plate 14 are added to aim at the fact that in the rotating process of the first rotating rod 102 and the second rotating rod 103, the reason of the rotating rod process is probably caused, the first rotating rod 102 and the second rotating rod 103 are caused to generate swing movement, which is likely to hit the internal components of the reaction kettle, and in order to avoid this situation, the counterweight 13 and the support plate 14 are additionally arranged, so that the swing situation of the first rotating rod 102 and the second rotating rod 103 is avoided, and similarly, the second support rod 18 is additionally arranged to ensure that the swing situation of the first support rod 203 is avoided in the rotating process of the transmission rod 202.
The working principle is as follows: firstly, raw materials and auxiliary agents enter a serpentine coil 303 through a feed hopper 301 to be filtered, a worker can hold a storage device with hands to collect the filtered raw materials and auxiliary agents, then put the collected raw materials and auxiliary agents into a reaction kettle 11, start a hydraulic rod 16 to drive a liftable stirring mechanism 1 on a top plate 19 to descend, cover the reaction kettle 11, enable a first rotating rod 102 and a second rotating rod 103 to be positioned inside the reaction kettle 11, then start a first motor 104 to enable a first belt pulley 105 to drive a second belt pulley 107 to rotate through a belt 106, further enable the first rotating rod 102 and the second rotating rod 103 to stir the raw materials and the auxiliary agents in the reaction kettle 11, when production is finished, the liftable stirring mechanism 1 is separated from the reaction kettle 11, start a third motor 6 to enable the reaction kettle 11 on a moving block 7 to transversely move, and when a rotating cleaning mechanism 2 is positioned above the reaction kettle 11, the hydraulic rod 16 is started to enable the transmission rod 202 to be located inside the hydraulic rod, the valve on the transmission pipeline 27 is opened to enable water in the water tank 26 to enter the reaction kettle 11, the second motor 201 is started to drive the transmission rod 202 and the brushing block 204 to rotate to clean the reaction kettle, then the water suction head 404 is placed in the reaction kettle 11, and the water suction pump 402 is started to suck the water into the water storage tank 24.

Claims (8)

1. A reaction device capable of continuously producing acrylic emulsion comprises a U-shaped base (9), and is characterized in that: the outer surface of the top of the U-shaped base (9) is welded with a bottom plate (5), the outer surface of the top of the bottom plate (5) is welded with a first side rack (12), a second side rack (23) and a filter box (28), lifting grooves are formed in the first side rack (12) and the second side rack (23), lifting blocks (21) are slidably arranged in the lifting grooves, adjacent side walls of the lifting blocks (21) are welded with a top plate (19), one outer wall of one side of the second side rack (23) is welded with a fixing plate (15), the outer surface of the top of the fixing plate (15) is welded with a hydraulic rod (16), an auxiliary plate (17) is welded with the outer surface of the top of the hydraulic rod (16), the auxiliary plate (17) is welded with the outer wall of one side of the lifting blocks (21), and a limiting block (20) and a connecting rod are welded, the top surface welding of connecting rod installs clamp plate (22), and the top surface welding of clamp plate (22) installs water storage tank (24), and the top of U-shaped base (9) is provided with liftable formula rabbling mechanism (1), and the top of U-shaped base (9) is provided with rotation wiper mechanism (2), and the top of U-shaped base (9) is provided with quick filtering mechanism (3), and the top of U-shaped base (9) is provided with drainage mechanism (4).
2. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the liftable stirring mechanism (1) comprises a stirring blade (101), a first rotating rod (102), a second rotating rod (103), a first motor (104), a first belt pulley (105), a belt (106) and a second belt pulley (107), wherein the first motor (104) is installed on the outer surface of the top plate (19) in a welding mode, holes are formed in the top of the top plate (19), the number of the holes is two, a rectangular hole is formed in the top plate (19) and communicated with the holes, the second rotating rod (103) is installed on the output end of the first motor (104) in a welding mode, the free end of the second rotating rod (103) penetrates through the holes and extends to the outer portion of the top plate (19), the limiting block (20) is located right above the holes, the first rotating rod (102) is installed on the outer surface of the bottom of the limiting block (20) in a rotating mode, the free end of the first rotating rod (102) penetrates through the holes and extends to the outer portion of the top, first belt pulley (105) and second belt pulley (107) are installed to the cover respectively on first bull stick (102) and second bull stick (103), be provided with belt (106) between first belt pulley (105) and second belt pulley (107), belt (106) are located the inside in rectangular hole, first belt pulley (105) are connected with second belt pulley (107) transmission through belt (106), welding installation stirring vane (101) are gone up in first bull stick (102) and second bull stick (103), backup pad (14) are installed in the bottom welding of first bull stick (102) and second bull stick (103), balancing weight (13) are installed in the top surface welding of backup pad (14).
3. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the rotary cleaning mechanism (2) comprises a second motor (201), a transmission rod (202), a first supporting rod (203) and a scrubbing block (204), the second motor (201) is installed on the outer surface of the top of a top plate (19) in a welded mode, the transmission rod (202) is installed on the outer surface of the bottom of the top plate (19) in a rotated mode, an output shaft of the second motor (201) penetrates through the top plate (19) and is installed with the transmission rod (202) in a welded mode, the outer wall of one side of the transmission rod (202) is installed with the first supporting rod (203) and the second supporting rod (18) in a welded mode, the scrubbing block (204) is installed on the free end of the first supporting rod (203) in a welded mode, and the free end of the second supporting rod (18) is.
4. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the rapid filtering mechanism (3) comprises a feed hopper (301), a serpentine coil (303), a discharge pipeline (304), an activated carbon filtering block (305), a sponge filtering block (306) and a solid cotton filtering block (307), the top and the bottom surface of rose box (28) all fixed mounting have feeder hopper (301), the inboard top fixed mounting of rose box (28) has charge-in pipeline (302), the free end fixed mounting of charge-in pipeline (302) has serpentine coil (303), the inboard bottom fixed mounting of rose box (28) has ejection of compact pipeline (304), the free end of serpentine coil (303) and the top fixed mounting of ejection of compact pipeline (304), the inside of charge-in pipeline (302) is the cavity setting, the inside of charge-in pipeline (302) is fixed mounting respectively has active carbon filter block (305), sponge filter block (306) and solid cotton filter block (307).
5. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: drainage mechanism (4) include outlet conduit (401), suction pump (402), intake hose (403) and suction head (404), suction pump (402) are installed to the top surface welding of pinch-off blades (22), one side outer wall fixed mounting of holding in water tank (24) has outlet conduit (401), the free end of outlet conduit (401) and the play water end fixed mounting of suction pump (402), the end fixed mounting that intakes of suction pump (402) has intake hose (403), the top surface welding of roof (19) is installed the suction head and is placed case (25), the free end fixed mounting of intake hose (403) has suction head (404), suction head (404) are located the inside that the suction head placed case (25).
6. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the outer wall of one side of the U-shaped base (9) is welded with a third motor (6), the inner portion of the U-shaped base (9) is rotated and slidably provided with a threaded thick rod (8) and a moving block (7), the threaded thick rod (8) penetrates through the moving block (7), and an output shaft of the third motor (6) penetrates through the U-shaped base (9) and is welded with the threaded thick rod (8).
7. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the top of the bottom plate (5) is provided with a sliding groove, a sliding block (10) is slidably mounted inside the sliding groove, a reaction kettle (11) is welded and mounted on the outer surface of the top of the sliding block (10), and a moving block (7) is welded and mounted on the outer surface of the bottom of the sliding block (10).
8. The reaction apparatus for continuously producing acrylic emulsion according to claim 1, wherein: the water tank (26) is welded on the outer wall of one side of the first side rack (12), the transmission pipeline (27) is fixedly installed on the outer surface of the bottom of the water tank (26), and the control valve is arranged on the transmission pipeline (27).
CN202020696542.8U 2020-04-29 2020-04-29 But continuous production acrylic acid emulsion reaction unit Active CN212595667U (en)

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CN202020696542.8U CN212595667U (en) 2020-04-29 2020-04-29 But continuous production acrylic acid emulsion reaction unit

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Application Number Priority Date Filing Date Title
CN202020696542.8U CN212595667U (en) 2020-04-29 2020-04-29 But continuous production acrylic acid emulsion reaction unit

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CN212595667U true CN212595667U (en) 2021-02-26

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114259974A (en) * 2021-12-31 2022-04-01 黄山联固新材料科技有限公司 But continuous production's acrylic acid emulsion reaction unit

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114259974A (en) * 2021-12-31 2022-04-01 黄山联固新材料科技有限公司 But continuous production's acrylic acid emulsion reaction unit
CN114259974B (en) * 2021-12-31 2024-02-06 黄山联固新材料科技有限公司 But continuous production's acrylic emulsion reaction unit

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