CN217614689U - High efficiency's stainless steel reaction vessel - Google Patents

High efficiency's stainless steel reaction vessel Download PDF

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Publication number
CN217614689U
CN217614689U CN202221498023.6U CN202221498023U CN217614689U CN 217614689 U CN217614689 U CN 217614689U CN 202221498023 U CN202221498023 U CN 202221498023U CN 217614689 U CN217614689 U CN 217614689U
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China
Prior art keywords
stirring
mixing
connecting rod
tank body
fixed connection
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CN202221498023.6U
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Chinese (zh)
Inventor
邵长权
沈正峰
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Linyi Hongye Chemical Equipment Co ltd
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Linyi Hongye Chemical Equipment Co ltd
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Abstract

A rapid and efficient stainless steel reaction vessel comprises a charging mechanism and a heating mechanism, wherein the heating mechanism is arranged on the outer side of the charging mechanism; the charging mechanism comprises a tank cover, a thermometer, a manhole window, a tank body, supporting legs, a discharge port, a locking ring, a stirring mechanism and a locking buckle, wherein the manhole window and the thermometer are arranged on the tank cover, the tank body is arranged on one side of the tank cover, and the locking ring is arranged on the outer sides of the tank cover and the tank body; the utility model discloses the (mixing) shaft drives mixes work or material rest, connecting rod, swash plate and rotates, and the connecting rod drives upset side pipe and rotates, and upset side pipe rotates and then upwards flows the material guide of bottom, just can accelerate the material of jar body bottom to circulate when the stirring begins, and the mutual flow between the different position materials accelerates for contact fusion speed between the material reduces required reaction time between the material, mixes work or material rest, connecting rod and carries out the stirring of continuation to the material.

Description

High efficiency's stainless steel reaction vessel
Technical Field
The utility model belongs to the technical field of the stainless steel container, in particular to high efficiency's stainless steel reaction vessel.
Background
The stainless steel reaction vessel has high heat transfer speed, can quickly improve the temperature in the vessel, has good high temperature resistance and corrosion resistance, is convenient to recover after having reached the service life, and is widely used in chemical production;
the following problems are encountered in the existing stainless steel reaction vessel: 1) When the materials are stirred, the contact and fusion speed of the materials at the bottom and the materials at the top of the tank body in the container is low, and the reaction time required between the materials is correspondingly prolonged, so that the efficiency is low.
Disclosure of Invention
The utility model aims at overcoming the deficiencies in the prior art, providing a high efficiency's stainless steel reaction vessel, heat for charging mechanism through heating mechanism.
In order to realize the purpose, the utility model discloses a technical scheme be:
a rapid and efficient stainless steel reaction vessel comprises a charging mechanism and a heating mechanism, wherein the heating mechanism is arranged outside the charging mechanism;
the feeding mechanism comprises a tank cover, a thermometer, a manhole window, a tank body, supporting legs, a discharge hole, a locking ring, a stirring mechanism and locking buckles, wherein the manhole window and the thermometer are arranged on the tank cover;
it is internal to put into the jar with the material that needs the reaction to mix, installs the cover on the jar body again, fastens between the locking ring through locking buckle, and rethread rabbling mechanism stirs the internal material of jar to observe the circumstances that the reaction mixes through thermometer and manhole window, the material after the mixture passes through the bin outlet and discharges.
Preferably, the stirring mechanism comprises a stirring frame, a stirring shaft, a limiting sleeve, supporting legs, a material mixing frame, turnover square pipes, connecting rods, inclined plates and guide holes, the stirring frame is fixedly connected with a tank cover, the top of the stirring frame is fixedly connected with a motor, the stirring shaft penetrates through the stirring frame and is connected with the output end of the motor, the bottom of the stirring shaft is movably connected with the limiting sleeve, the outer side of the limiting sleeve is fixedly connected with a plurality of supporting legs, the supporting legs are fixedly connected with the bottom of the inner wall of the tank body, the material mixing frame is arranged on one side of the limiting sleeve and is U-shaped, the material mixing frame is fixedly connected with the bottom of the stirring shaft, a plurality of turnover square pipes are arranged on one side of the material mixing frame and are spiral, one side of each turnover square pipe is fixedly connected with a plurality of connecting rods, one end of each connecting rod is fixedly connected with the stirring shaft, the outer side of the stirring shaft is provided with a plurality of inclined plates, and a plurality of guide holes are formed in the inclined plates;
the motor provides power for the (mixing) shaft rotates, the (mixing) shaft and then drives and mix the work or material rest, the connecting rod, the swash plate rotates, the connecting rod drives upset side's pipe and rotates, upset side's pipe rotates and then upwards flows the material guide of bottom, the material that flows out from upset side's pipe simultaneously continues upwards to flow under the guide of swash plate, partial material passes the guide hole outdiffusion, mix the work or material rest simultaneously, the connecting rod carries out the stirring of continuation to the material, stop collar and stabilizer blade rotate the (mixing) shaft and carry on spacingly.
Preferably, the locking buckle comprises a clamping plate, a sleeve and a loop bar, the sleeve and the loop bar are sleeved, the sleeve and the loop bar are both fixedly connected with the clamping plate, the centers of the sleeve and the loop bar are both movably connected with the screw, and both ends of the screw are both connected with the nut through threads;
the sleeve and the loop bar are sleeved together, the clamping plate is buckled on the locking ring, and the sleeve and the loop bar are fastened through the screw and the nut, so that the tank cover and the tank body are fastened.
Preferably, the heating mechanism comprises a water outlet, an air inlet, an air outlet, an outer wrapping plate and a steam chamber, the outer wrapping plate is fixedly connected with the tank body, the steam chamber is arranged between the outer wrapping plate and the tank body, and the outer wrapping plate is fixedly connected with the air inlet, the air outlet and the water outlet;
and steam is sent into the steam chamber through the air inlet, the steam further heats the tank body and the reacted materials, the steam is discharged through the air outlet, and water in the steam chamber is emptied through the water outlet.
Compared with the prior art, the utility model beneficial effect shows:
1) The motor provides power for the rotation of the stirring shaft, the stirring shaft further drives the material stirring frame, the connecting rod and the inclined plate to rotate, the connecting rod drives the overturning square tube to rotate, the overturning square tube rotates to guide the material at the bottom to flow upwards, the upward circulation of the material at the bottom of the tank body can be accelerated when the stirring is started, the mutual flow among the materials at different positions is accelerated, the contact fusion speed among the materials is accelerated, the required reaction time among the materials is reduced, the efficiency is improved, meanwhile, the material flowing out of the overturning square tube continues to flow upwards under the guide of the inclined plate, part of the material passes through the material guide holes to diffuse outwards, and meanwhile, the material stirring frame and the connecting rod carry out continuous stirring on the material;
2) Stop collar and stabilizer blade rotate the (mixing) shaft and carry on spacingly, prevent that the (mixing) shaft from taking place to deflect at the stirring in-process and rocking, cause the damage to thermometer and jar internal wall.
Drawings
FIG. 1 is a schematic structural view of a fast and efficient stainless steel reaction vessel of the present invention;
FIG. 2 is a schematic diagram of the internal structure of a rapid and efficient stainless steel reaction vessel of the present invention;
FIG. 3 is a schematic structural view of a fast and efficient stirring mechanism of a stainless steel reaction vessel of the present invention;
in the figure: 1. a charging mechanism; 11. a can cover; 12. a thermometer; 13. a manhole window; 14. a tank body; 15. supporting legs; 16. a discharge outlet; 17. locking a ring; 18. a stirring mechanism; 181. a stirring frame; 182. a stirring shaft; 183. a position limiting sleeve; 1831. a leg; 184. a material mixing frame; 185. turning over the square tube; 186. a connecting rod; 187. a sloping plate; 188. a material guide hole; 19. a locking buckle; 191. a clamping plate; 192. a sleeve; 193. a loop bar; 2. a heating mechanism; 21. a water outlet; 22. an air inlet; 23. an air outlet; 24. an outer wrapping sheet; 25. a vapor chamber.
Detailed Description
For the convenience of understanding of those skilled in the art, the technical solution of the present invention will be further specifically described with reference to fig. 1 to 3.
A quick and efficient stainless steel reaction vessel comprises a charging mechanism 1 and a heating mechanism 2, wherein the heating mechanism 2 is arranged outside the charging mechanism 1;
the charging mechanism 1 comprises a tank cover 11, a thermometer 12, a manhole window 13, a tank body 14, supporting legs 15, a discharge port 16, a locking ring 17, a stirring mechanism 18 and locking buckles 19, wherein the manhole window 13 and the thermometer 12 are arranged on the tank cover 11, the tank body 14 is arranged on one side of the tank cover 11, the locking ring 17 is arranged on the outer sides of the tank cover 11 and the tank body 14, a plurality of locking buckles 19 are uniformly arranged on the outer side of the locking ring 17, the discharge port 16 is arranged at the center of the bottom of the tank body 14, the supporting legs 15 are arranged at the bottom of the tank body 14, and the stirring mechanism 18 is arranged at the center of the tank cover 11;
the materials to be reacted and mixed are placed in the tank body 14, the tank cover 11 is installed on the tank body 14, the locking rings 17 are fastened through the locking buckles 19, the materials in the tank body 14 are stirred through the stirring mechanism 18, the reaction and mixing conditions are observed through the thermometer 12 and the manhole window 13, and the mixed materials are discharged through the discharge port 16.
The stirring mechanism 18 comprises a stirring frame 181, a stirring shaft 182, a limiting sleeve 183, supporting legs 1831, a stirring frame 184, a turning square tube 185, a connecting rod 186, an inclined plate 187 and material guide holes 188, the stirring frame 181 is fixedly connected with the tank cover 11, the top of the stirring frame 181 is fixedly connected with a motor, the stirring shaft 182 penetrates through the stirring frame 181 and is connected with the output end of the motor, the bottom of the stirring shaft 182 is movably connected with the limiting sleeve 183, the outer side of the limiting sleeve 183 is fixedly connected with the supporting legs 1831, the supporting legs 1831 are fixedly connected with the bottom of the inner wall of the tank 14, one side of the limiting sleeve 183 is provided with the stirring frame 184, the stirring frame 184 is U-shaped, the stirring frame 184 is fixedly connected with the bottom of the stirring shaft 182, one side of the stirring frame 184 is provided with the turning square tube 185, one side of the turning square tube 185 is spiral, one side of the turning square tube 186 is fixedly connected with the connecting rods 186, one end of the connecting rod 186 is fixedly connected with the stirring shaft 182, the outer side of the stirring shaft 182 is provided with the inclined plate 187, and the material guide holes 188 are arranged on the inclined plate 187;
the motor provides power for the rotation of (mixing) shaft 182, the (mixing) shaft 182 and then drive the stirring frame 184, connecting rod 186, swash plate 187 rotates, connecting rod 186 drives upset side pipe 185 and rotates, upset side pipe 185 rotates and then upwards flows the material guide of bottom, the material that flows out from upset side pipe 185 continues upwards to flow under the guide of swash plate 187 simultaneously, some materials pass guide hole 188 outdiffusion, simultaneously stir the material frame 184, connecting rod 186 carries out the stirring of continuation to the material, accelerate the reaction of material to mix, stop collar 183 and stabilizer blade 1831 rotate (mixing) shaft 182 and carry out spacingly, prevent that (mixing) shaft 182 rocks.
The locking buckle 19 comprises a clamping plate 191, a sleeve 192 and a loop bar 193, the sleeve 192 and the loop bar 193 are sleeved, the sleeve 192 and the loop bar 193 are fixedly connected with the clamping plate 191, the centers of the sleeve 192 and the loop bar 193 are movably connected with a screw, and two ends of the screw are connected with nuts through threads;
the sleeve 192 and the loop bar 193 are sleeved together, the clamping plate 191 is buckled on the locking ring 17, and the sleeve 192 and the loop bar 193 are fastened through a screw and a nut, so that the tank cover 11 and the tank body 14 are fastened.
The heating mechanism 2 comprises a water outlet 21, an air inlet 22, an air outlet 23, an outer wrapping plate 24 and a steam chamber 25, the outer wrapping plate 24 is fixedly connected with the tank body 14, the steam chamber 25 is arranged between the outer wrapping plate 24 and the tank body 14, and the outer wrapping plate 24 is fixedly connected with the air inlet 22, the air outlet 23 and the water outlet 21;
steam is fed through the inlet 22 into the steam chamber 25, which in turn heats the vessel 14 and the reacted material, and is discharged through the outlet 23, and water in the steam chamber 25 is evacuated through the drain 21.
A fast and efficient stainless steel reaction vessel comprises the following working processes:
putting materials to be reacted and mixed into a tank body, mounting a tank cover on the tank body, sleeving a sleeve and a loop bar together, buckling a clamping plate on a locking ring, and fastening the sleeve and the loop bar through a screw and a nut so as to fasten the tank cover and the tank body;
the motor provides power for the (mixing) shaft rotation, the (mixing) shaft and then drives and mix the work or material rest, the connecting rod, the swash plate rotates, the connecting rod drives upset side pipe and rotates and then upwards flows the material guide of bottom, the material that flows out simultaneously from upset side pipe continues upwards to flow under the guide of swash plate, partial material passes the guide hole outdiffusion, mix the work or material rest simultaneously, the connecting rod carries out the stirring of continuation to the material, and observe the mixed condition of reaction through thermometer and manhole window, steam sends into the steam chamber through the air inlet, steam and then heats for the material of jar body and reaction, the material after mixing passes through the bin outlet and discharges.
The foregoing is merely exemplary and illustrative of the structure of the invention, and various modifications, additions and substitutions as described in the detailed description may be made by those skilled in the art without departing from the structure or exceeding the scope of the invention as defined in the claims.

Claims (2)

1. A fast and efficient stainless steel reaction vessel comprises a charging mechanism and a heating mechanism, and is characterized in that the heating mechanism is arranged outside the charging mechanism;
the feeding mechanism comprises a tank cover, a thermometer, a manhole window, a tank body, supporting legs, a discharge hole, a locking ring, a stirring mechanism and locking buckles, wherein the manhole window and the thermometer are arranged on the tank cover;
the rabbling mechanism includes the stirring frame, (mixing) shaft, the stop collar, the stabilizer blade, mix the work or material rest, upset side pipe, the connecting rod, the swash plate, the guide hole, stirring frame and cover fixed connection, stirring frame top and motor fixed connection, the (mixing) shaft passes stirring frame and motor output end connection, (mixing) shaft bottom and stop collar swing joint, the stop collar outside and a plurality of stabilizer blade fixed connection, stabilizer blade and jar internal wall bottom fixed connection, stop collar one side is equipped with mixes the work or material rest, it is the U type to mix the work or material rest, mix work or material rest and (mixing) shaft bottom fixed connection, it is equipped with a plurality of upset side pipes to mix work or material rest one side, upset side pipe is the heliciform, upset side pipe one side and a plurality of connecting rod fixed connection, connecting rod one end and (mixing) shaft fixed connection, the (mixing) shaft outside is equipped with a plurality of swash plates, be equipped with a plurality of guide holes on the swash plate.
2. The rapid and efficient stainless steel reaction vessel according to claim 1, wherein the locking buckle comprises a clamping plate, a sleeve and a loop bar, the sleeve and the loop bar are sleeved, the sleeve and the loop bar are both fixedly connected with the clamping plate, the centers of the sleeve and the loop bar are both movably connected with a screw, and both ends of the screw are both connected with a nut through threads;
the heating mechanism comprises a water outlet, an air inlet, an air outlet, an outer wrapping plate and a steam chamber, the outer wrapping plate is fixedly connected with the tank body, the steam chamber is arranged between the outer wrapping plate and the tank body, and the outer wrapping plate is fixedly connected with the air inlet, the air outlet and the water outlet.
CN202221498023.6U 2022-06-15 2022-06-15 High efficiency's stainless steel reaction vessel Active CN217614689U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221498023.6U CN217614689U (en) 2022-06-15 2022-06-15 High efficiency's stainless steel reaction vessel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221498023.6U CN217614689U (en) 2022-06-15 2022-06-15 High efficiency's stainless steel reaction vessel

Publications (1)

Publication Number Publication Date
CN217614689U true CN217614689U (en) 2022-10-21

Family

ID=83626876

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221498023.6U Active CN217614689U (en) 2022-06-15 2022-06-15 High efficiency's stainless steel reaction vessel

Country Status (1)

Country Link
CN (1) CN217614689U (en)

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