Glass reaction kettle convenient to clean
Technical Field
The utility model relates to the technical field of glass reaction kettles, in particular to a glass reaction kettle convenient to clean.
Background
The reaction solvent is placed in the inner layer of the glass reaction kettle to perform stirring reaction, the interlayer circulates through a cold heat source, the interlayer of the glass reaction kettle can perform high-temperature reaction or low-temperature reaction, and the glass reaction kettle can be vacuumized to perform negative pressure reaction. The unique design of the test device ensures that the test is safer and more convenient;
at present, after an experiment is carried out on the existing glass reaction kettle, the residual reagent on the inner wall of the existing glass reaction kettle is inconvenient to clean.
Disclosure of utility model
The utility model aims to provide a glass reaction kettle convenient to clean, which is used for solving the problems in the background technology and is convenient to popularize.
The utility model provides a glass reaction kettle convenient to clean, includes the bottom plate, be equipped with the casing above the bottom plate, be equipped with sealing device on the casing outer wall, be equipped with adjusting device on the sealing device, be equipped with belt cleaning device on the adjusting device, be equipped with agitating unit in the casing, the fixed discharging pipe that is equipped with below the casing, the fixed solenoid valve that is equipped with on the discharging pipe;
The sealing device comprises a first bearing plate and a second bearing plate which are fixedly arranged on the outer wall of the shell, an adjusting motor is arranged on the first bearing plate, an adjusting threaded rod is fixedly arranged at the output end of the adjusting motor, one end of the adjusting threaded rod, which is far away from the output end of the adjusting motor, is rotationally provided with a transverse plate, a screw nut pair is connected to the adjusting threaded rod in a threaded manner, a guide rod is arranged between the second bearing plate and the transverse plate, a shaft sleeve is sleeved on the guide rod, a sealing plate is arranged between the shaft sleeve and the screw nut pair, and a through hole is formed in the transverse plate.
Further, the adjusting device comprises a first adjusting oil cylinder and a second adjusting oil cylinder which are fixedly arranged on the transverse plate, and the piston rods of the first adjusting oil cylinder and the second adjusting oil cylinder penetrate through the transverse plate to be fixedly provided with the adjusting plate.
Further, the cleaning device comprises a cleaning spray head fixedly arranged below the adjusting plate and a cleaning water pump fixedly arranged above the transverse plate, a high-pressure hose is arranged between the cleaning water pump and the cleaning spray head, and a water inlet pipe is fixedly arranged on a water inlet of the cleaning water pump.
Further, agitating unit is including fixed the layer board that sets up on the casing outer wall, be equipped with agitator motor above the layer board, the fixed (mixing) shaft that is equipped with on the agitator motor output, the one end that agitator motor output was kept away from to the (mixing) shaft rotates and sets up on shells inner wall, the fixed puddler that is equipped with a plurality of arrangements on the (mixing) shaft.
Further, the adjusting motor is a reversible motor.
Further, a first supporting leg and a second supporting leg which are arranged in pairs are symmetrically arranged below the bottom plate.
As an improvement, the utility model has the following beneficial effects:
According to the glass reaction kettle convenient to clean, when the equipment works, firstly, the adjusting motor rotates to drive the adjusting threaded rod to rotate to drive the screw nut pair to move on the adjusting threaded rod to drive the sealing plate to move, then the stirring motor rotates to drive the stirring shaft to rotate to drive the stirring rod to stir and mix raw materials on the inner wall of the shell, then the reacted reagent is discharged through the discharging pipe, then the adjusting oil cylinder I and the adjusting oil cylinder II work to drive the adjusting plate to move, and then the cleaning liquid is sprayed out through the cleaning spray head to clean the residual reagent on the inner wall of the shell, and finally the residual reagent on the inner wall of the shell is washed, so that the subsequent work is facilitated.
Drawings
FIG. 1 is an isometric view of a glass reactor of the present utility model for ease of cleaning;
FIG. 2 is an isometric view B of a glass reactor for facilitating cleaning in accordance with the present utility model;
FIG. 3 is an isometric view C of a glass reactor for facilitating cleaning in accordance with the present utility model;
FIG. 4 is an enlarged view of the utility model at A in FIG. 2;
FIG. 5 is an enlarged view of the utility model at B in FIG. 3;
Reference numeral control table:
1. The device comprises a bottom plate, a 2 part, a shell, a3 part, a sealing device, a 301 part, a first bearing plate, a302 part, a second bearing plate, a 303 part, an adjusting motor, a 304 part, an adjusting threaded rod, a 305 part, a transverse plate, a 306 part, a screw nut pair, a 307 part, a guide rod, a 308 part, a shaft sleeve, a 309 part, a sealing plate, a 310 part, a through hole, a 4 part, an adjusting device, a 401 part, a first adjusting oil cylinder, a 402 part, a second adjusting oil cylinder, a 403 part, an adjusting plate, a 5 part, a cleaning device, a 501 part, a cleaning sprinkler, a 502 part, a cleaning water pump, a 503 part, a high-pressure hose, a 504 part, a water inlet pipe, a 6 part, a stirring device, a 601 part, a supporting plate, a 602 part, a stirring motor, a 603 part, a stirring shaft, a 604 part, a stirring rod, a 7 part, a discharging pipe, an 8 part, an electromagnetic valve, a 9 part, a first supporting leg and a 10 part, and a second supporting leg.
Detailed Description
Specific embodiments of the present utility model will be further described below with reference to the accompanying drawings. Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
In order to make the contents of the present utility model more clearly understood, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Wherein like parts are designated by like reference numerals.
According to the glass reaction kettle convenient to clean, shown in fig. 1 to 5, the glass reaction kettle comprises a bottom plate 1, wherein a shell 2 is arranged on the bottom plate 1, a sealing device 3 is arranged on the outer wall of the shell 2, an adjusting device 4 is arranged on the sealing device 3, a cleaning device 5 is arranged on the adjusting device 4, a stirring device 6 is arranged in the shell 2, a discharging pipe 7 is fixedly arranged below the shell 2, an electromagnetic valve 8 is fixedly arranged on the discharging pipe 7, and a first supporting leg 9 and a second supporting leg 10 which are symmetrically arranged below the bottom plate 1 are arranged in pairs.
In this embodiment, the sealing device 3 includes a first bearing plate 301 and a second bearing plate 302 fixedly disposed on an outer wall of the casing 2, an adjusting motor 303 is disposed on the first bearing plate 301, an adjusting threaded rod 304 is fixedly disposed at an output end of the adjusting motor 303, a transverse plate 305 is rotationally disposed at one end of the adjusting threaded rod 304 far away from the output end of the adjusting motor 303, a screw nut pair 306 is screwed on the adjusting threaded rod 304, a guide rod 307 is disposed between the second bearing plate 302 and the transverse plate 305, a shaft sleeve 308 is sleeved on the guide rod 307, a sealing plate 309 is disposed between the shaft sleeve 308 and the screw nut pair 306, a through hole 310 is disposed on the transverse plate 305, and the adjusting motor 303 is a reversible motor.
Through the above technical scheme, through the rotation of the adjusting motor 303, the adjusting threaded rod 304 is driven to rotate, and then the screw nut pair 306 is driven to move on the adjusting threaded rod 304, and then the sealing plate 309 is driven to move.
In this embodiment, the adjusting device 4 includes a first adjusting cylinder 401 and a second adjusting cylinder 402 fixedly disposed on the transverse plate 305, and the piston rods of the first adjusting cylinder 401 and the second adjusting cylinder 402 pass through the transverse plate 305 and are fixedly provided with an adjusting plate 403.
Through the above technical scheme, the first adjusting cylinder 401 and the second adjusting cylinder 402 work to drive the adjusting plate 403 to move.
In this embodiment, the cleaning device 5 includes a cleaning spray head 501 fixedly disposed below the adjusting plate 403 and a cleaning water pump 502 fixedly disposed above the transverse plate 305, a high-pressure hose 503 is disposed between the cleaning water pump 502 and the cleaning spray head 501, and a water inlet pipe 504 is fixedly disposed at a water inlet of the cleaning water pump 502.
Through the above technical scheme, through the work of washing water pump 502, and then with the washing liquid through wasing sprinkler head 501 blowout, and then realize washing the reagent that remains on the casing 2 inner wall.
In this embodiment, agitating unit 6 is including fixed layer board 601 that sets up on casing 2 outer wall, is equipped with agitator motor 602 above the layer board 601, and agitator motor 602 output is last to be fixed to be equipped with (mixing) shaft 603, and the one end rotation that agitator motor 602 output was kept away from to (mixing) shaft 603 sets up on casing 2 inner wall, and the fixed puddler 604 that is equipped with a plurality of arrangements even on the (mixing) shaft 603.
Through foretell technical scheme, through agitator motor 602's rotation, and then drive the rotation of (mixing) shaft 603, and then drive puddler 604 and stir the mixture to the raw materials of casing 2 inner wall, then discharge the reagent that will react well through discharging pipe 7, finally realize washing the reagent that remains on the casing 2 inner wall, make things convenient for subsequent work.
The above description is illustrative of the present utility model and is not intended to be limiting, but is to be construed as being included within the spirit and scope of the present utility model.