CN213434433U - Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft - Google Patents

Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft Download PDF

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Publication number
CN213434433U
CN213434433U CN202021887451.9U CN202021887451U CN213434433U CN 213434433 U CN213434433 U CN 213434433U CN 202021887451 U CN202021887451 U CN 202021887451U CN 213434433 U CN213434433 U CN 213434433U
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China
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pivot
end cover
vertical
shaft
rotating shaft
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CN202021887451.9U
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Chinese (zh)
Inventor
袁鹏
章丽
冯永胜
秦秀芳
胡秀雪
王先英
郭小忠
杨双土
刘荣新
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Quzhou Intel Polymer Materials Co ltd
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Quzhou Intel Polymer Materials Co ltd
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Abstract

The utility model relates to an establish horizontal (mixing) shaft and perpendicular agitator for reation kettle of (mixing) shaft, including erecting the pivot, connect and erect pivot pivoted agitator motor in the epaxial perpendicular pivot stirring vane of erecting the pivot and drive, be equipped with the drawing liquid passageway in erecting the pivot, it is connected with horizontal pivot to erect to rotate on the pivot, be connected with the driven conical gear who is located the drawing liquid passageway in the horizontal pivot, the meshing has initiative conical gear on the driven conical gear, initiative conical gear is connected with the vertical pivot that is located the drawing liquid passageway, the rigid coupling has the liquid stream that flows through the drawing liquid passageway to drive and use vertical pivot as an axle pivoted driving vane in the vertical pivot, be connected with horizontal pivot axial stirring vane in the horizontal pivot, the lower extreme of drawing liquid passageway is equipped with the inlet. The utility model provides a can prevent effectively that material from depositing establish horizontal (mixing) shaft and erect agitator for reation kettle of (mixing) shaft for solve current agitator stirring vane for reation kettle can only produce the problem of depositing easily with the material that vertical rotation of axes exists.

Description

Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft
Technical Field
The utility model relates to a reation kettle especially relates to an establish horizontal (mixing) shaft and erect agitator for reation kettle of (mixing) shaft.
Background
The reaction kettle is a container for physical or chemical reaction, and the heating, evaporation, cooling and low-speed mixing functions required by the process are realized through the structural design and parameter configuration of the container. The reation kettle includes the cauldron body and carries out the agitator that stirs to the material that stores in the cauldron body, and the internal electric heater that is located cauldron body bottom that is equipped with of cauldron, agitator include perpendicular pivot, connect perpendicular pivot portion stirring vane and the perpendicular pivot pivoted agitator motor of drive on perpendicular pivot. The existing reaction kettle has the following defects: when setting up to vertical, the (mixing) shaft only can be designed for following vertical extension, and the gravity of material can not be overcome to the stirring power, and stirring in-process material produces easily to deposit and leads to mixing inhomogeneous.
SUMMERY OF THE UTILITY MODEL
The utility model provides a can prevent effectively that material from depositing establish horizontal (mixing) shaft and erect agitator for reation kettle of (mixing) shaft for solve current agitator stirring vane for reation kettle can only produce the problem of depositing easily with the material that vertical rotation of axes exists.
The technical problem is solved by the following technical scheme: the utility model provides an establish horizontal (mixing) shaft and erect agitator for reation kettle of (mixing) shaft, includes perpendicular pivot, connects perpendicular pivot pivoted agitator motor of perpendicular pivot portion stirring vane and drive in the perpendicular pivot, its characterized in that, be equipped with the drawing liquid passageway in the perpendicular pivot, it is connected with the horizontal pivot to rotate on the perpendicular pivot, be connected with in the horizontal pivot and be located driven bevel gear in the drawing liquid passageway, the meshing has initiative bevel gear on the driven bevel gear, initiative bevel gear is connected with the vertical pivot that is located the drawing liquid passageway, the rigid coupling has the liquid stream that flows through the drawing liquid passageway to drive and use vertical pivot as axle pivoted driving vane in the vertical pivot, be connected with horizontal pivot portion stirring vane in the horizontal pivot, the lower extreme of drawing liquid passageway is equipped with the inlet. During the use, the utility model discloses with the mode that the vertical pivot was put according to on reation kettle, link together the entrance point of suction pump with the upper end of drawing liquid passageway, the material that the suction pump was taken discharges in reation kettle again, the material can drive the driving vane rotation when the drawing liquid passageway is flowed under the action of suction pump, thereby make vertical pivot drive horizontal pivot rotate and drive horizontal pivot portion blade rotation, the weight of material and the material stirring of cauldron body bottom can be overcome to the rotation direction of horizontal pivot portion blade, thereby play the effect that prevents the sediment. The stirring motor drives the vertical rotating shaft to rotate, and the stirring blade on the vertical rotating shaft part is used for stirring.
Preferably, the upper end of the vertical rotating shaft can be rotatably arranged in the liquid outlet ring in a penetrating mode, an annular groove extending along the circumferential direction of the vertical rotating shaft is formed in the inner circumferential surface of the liquid outlet ring, the opening of the annular groove is closed by the vertical rotating shaft, a plurality of vertical rotating shaft communicating holes communicating the annular groove with the liquid pumping channel are formed in the circumferential surface of the vertical rotating shaft, and a liquid outlet hole of the liquid outlet ring part penetrating through the surface of the liquid outlet ring is formed in the annular direction. When the suction pump is used, the inlet end of the suction pump is connected with the liquid outlet hole of the liquid outlet ring part in a sealing mode to be communicated with the liquid pumping channel, and the suction pump is convenient to butt.
Preferably, the lower end of the liquid pumping channel penetrates through the lower end surface of the vertical rotating shaft to form the liquid inlet, and the liquid inlet is provided with a filter plate. Can prevent the particle blocking of the pumping channel and the pumping pump caused by dissolution and the like.
Preferably, every two of the transverse rotating shafts are located on the same straight line, and the two transverse rotating shafts located on the same straight line are driven by the same driven bevel gear. The structure is compact, the running stability and the connection reliability are good.
Preferably, a suspension block is arranged in the liquid pumping channel, and the vertical rotating shaft is rotatably connected to the suspension block. The connection reliability of the vertical rotating shaft can be improved.
Preferably, the stirring motor comprises a motor shell, a stator connected in the motor shell, a rotor arranged in the stator in a penetrating way and a motor rotating shaft connected on the rotor, one end of the motor shell is connected with a front end cover, the other end of the motor shell is connected with a rear end cover, a rotating shaft part flow passage communicated with the liquid pumping passage is arranged in the rotating shaft of the motor, a front end cover part inner cavity is arranged in the front end cover, a front end cover part liquid outlet hole penetrating through the surface of the front end cover is arranged in the front end cover part inner cavity, the rear end cover is internally provided with a rear end cover part inner cavity, the motor shell is internally provided with a plurality of shell part flow passages which are communicated with the front end cover part inner cavity and the rear end cover part inner cavity, the rear end cover is sealed and sleeved on the motor rotating shaft, the inner cavity of the rear end cover part penetrates through the inner circumferential surface of the rear end cover, and a plurality of motor rotating shaft part communicating holes for communicating the inner cavity of the rear end cover part with the rotating shaft part flow channel are formed in the circumferential surface of the motor rotating shaft. During the use, set up the three-way valve, the three-way valve is equipped with three-way valve export, the first import of three-way valve and three-way valve second import, the first import of three-way valve with go out liquid ring portion and go out liquid hole sealed butt joint together, three-way valve second import with front end housing portion goes out liquid hole sealed butt joint together, the import of pump with three-way valve export is sealed butt joint together. When the temperature of material is low and can regard when the coolant liquid to use, three-way valve second import and three-way valve export intercommunication, the material flows through liquid pump of drawing liquid to the end behind pivot portion runner, rear end cap portion inner chamber, shell portion runner and front end cap portion inner chamber this moment, plays and carries out refrigerated effect to the motor. When the temperature of material is high and can not be to the motor cooling, the first import of three-way valve is with three-way valve export intercommunication, and the material does not get into the motor this moment. The motor can be cooled by the material at low temperature, and the heat dissipation of the motor is not interfered when the material is at high temperature.
The utility model has the advantages of that: the stirring blades rotate by taking the vertical rotating shaft as an axis and also rotate by taking the horizontal shaft as an axis, so that the materials can be prevented from being precipitated.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a partially enlarged schematic view of the present invention;
fig. 3 is a schematic view of the usage state of the present invention.
In the figure: the device comprises a kettle body 1, an electric heater 2, a vertical rotating shaft 3, a vertical rotating shaft stirring blade 4, a stirring motor 5, a liquid pumping channel 6, a liquid outlet ring 7, an annular groove 8, a vertical rotating shaft communicating hole 9, a liquid outlet ring part liquid outlet hole 10, a water suction pump 11, a filter plate 12, an outlet 21 of the water suction pump, a transverse rotating shaft 22, a driven bevel gear 23, a driving bevel gear 24, a vertical rotating shaft 25, a driving blade 26, a transverse rotating shaft stirring blade 27, a suspension block 28, a three-way valve 29, a motor shell 31, a stator 32, a rotor 33, a motor rotating shaft 34, a front end cover 35, a rear end cover 36, a rotating shaft runner 37, a front end cover part inner cavity 38, a front end cover part liquid outlet hole 39, a rear end cover part inner cavity 40, a shell part runner 41, a motor rotating shaft part communicating hole 42, a three-way.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
Referring to fig. 1 to 3, the stirrer with the transverse stirring shaft and the vertical stirring shaft for the reaction kettle comprises a vertical rotating shaft 3, a vertical rotating shaft stirring blade 4 connected to the vertical rotating shaft, and a stirring motor 5 driving the vertical rotating shaft to rotate, wherein the stirring motor is vertically arranged. A liquid pumping channel 6 is arranged in the vertical rotating shaft, the upper end of the vertical rotating shaft can be rotatably arranged in the liquid outlet ring 7 in a penetrating way, and the inner circumferential surface of the liquid outlet ring is provided with an annular groove 8 which extends along the circumferential direction of the vertical rotating shaft. The vertical rotating shaft seals the opening of the annular groove, a plurality of vertical rotating shaft part communicating holes 9 which are communicated with the annular groove and the liquid pumping channel are arranged on the circumferential surface of the vertical rotating shaft, and a liquid outlet hole 10 of the liquid outlet ring part which is communicated with the surface of the liquid outlet ring is arranged in an annular direction. The lower end of the liquid pumping channel is communicated with the lower end surface of the vertical rotating shaft to form a liquid inlet, and the liquid inlet is provided with a filter plate 12. The upper end of the vertical rotating shaft is connected with the rotating shaft of the motor. The vertical rotating shaft is rotatably connected with a transverse rotating shaft 22, the transverse rotating shaft is connected with a driven conical gear 23 located in the liquid pumping channel, the driven conical gear is meshed with a driving conical gear 24, the driving conical gear is connected with a vertical rotating shaft 25 located in the liquid pumping channel, the vertical rotating shaft is fixedly connected with a driving blade 26 which is driven by liquid flow flowing through the liquid pumping channel and rotates by taking the vertical rotating shaft as a shaft, and the transverse rotating shaft is connected with a transverse rotating shaft part stirring blade 27. Every two transverse rotating shafts are located on the same straight line, and the two transverse rotating shafts located on the same straight line are driven by the same driven bevel gear. A suspension block 28 is arranged in the liquid pumping channel, and the vertical rotating shaft is rotatably connected to the suspension block. The stirring motor comprises a motor shell 31, a stator 32 connected in the motor shell, a rotor 33 penetrating in the stator and a motor rotating shaft 34 connected on the rotor, one end of the motor shell is connected with a front end cover 35, the other end of the motor shell is connected with a rear end cover 36, a rotating shaft part flow channel 37 communicated with a liquid pumping channel is arranged in the motor rotating shaft, a front end cover part inner cavity 38 is arranged in the front end cover, a front end cover part liquid outlet hole 39 penetrating through the surface of the front end cover is arranged in the front end cover part inner cavity, a rear end cover part inner cavity 40 is arranged in the rear end cover, a plurality of shell part flow channels 41 communicating the front end cover part inner cavity with the rear end cover part inner cavity are arranged in the motor shell, the rear end cover is sealed and sleeved on the motor rotating shaft, the rear end cover part inner cavity penetrates through the inner peripheral.
During the use, agitator motor supports on the roof of the cauldron body through going out the liquid ring, realizes through three-way valve 29 that suction pump 11 is connected with each runner, specifically: the three-way valve is provided with a three-way valve outlet 43, a three-way valve first inlet 44 and a three-way valve second inlet 45, the three-way valve first inlet is in sealed butt joint with the liquid outlet hole of the liquid outlet ring part, the three-way valve second inlet is in sealed butt joint with the liquid outlet hole of the front end cover part, and the inlet of the water pump is in sealed butt joint with the three-way valve outlet. The outlet 21 of the water pump is positioned in the kettle body. The vertical pivot of agitator motor drive rotates and carries out the in-process that stirs, the drive water pump is taken out the material, drive blade removes the vertical pivot of drive and rotates when the material flows through the drawing liquid passageway, vertical pivot is through the driven conical gear of initiative conical gear cooperation and the horizontal pivot of drive rotates, horizontal pivot drive horizontal pivot portion stirring vane rotates and stirs, this stirring effect can make the material produce vertical rotation to overcome gravity and prevent to produce the sediment. When the temperature of the material is low and can be used as cooling liquid, the second inlet of the three-way valve is communicated with the outlet of the three-way valve, and the material flows through the motor to cool the motor; when the material temperature is high and can not be used for cooling the motor, make the first import of three-way valve and the export intercommunication of three-way valve, the material bypasses the motor and does not interfere the heat dissipation of motor during the circulation.

Claims (6)

1. The utility model provides an establish horizontal (mixing) shaft and erect agitator for reation kettle of (mixing) shaft, includes perpendicular pivot, connects perpendicular pivot pivoted agitator motor of perpendicular pivot portion stirring vane and drive in the perpendicular pivot, its characterized in that, be equipped with the drawing liquid passageway in the perpendicular pivot, it is connected with the horizontal pivot to rotate on the perpendicular pivot, be connected with in the horizontal pivot and be located driven bevel gear in the drawing liquid passageway, the meshing has initiative bevel gear on the driven bevel gear, initiative bevel gear is connected with the vertical pivot that is located the drawing liquid passageway, the rigid coupling has the liquid stream that flows through the drawing liquid passageway to drive and use vertical pivot as axle pivoted driving vane in the vertical pivot, be connected with horizontal pivot portion stirring vane in the horizontal pivot, the lower extreme of drawing liquid passageway is equipped with the inlet.
2. The stirring device as claimed in claim 1, wherein the vertical stirring shaft has a horizontal stirring shaft and a vertical stirring shaft, the vertical stirring shaft is rotatably inserted into the liquid outlet ring at an upper end thereof, the liquid outlet ring has an annular groove extending along a circumferential direction of the vertical stirring shaft on an inner circumferential surface thereof, the vertical stirring shaft seals an opening of the annular groove, the vertical stirring shaft has a plurality of vertical stirring shaft communication holes on a circumferential surface thereof for communicating the annular groove with the liquid pumping channel, and the annular groove has a liquid outlet hole on a liquid outlet ring portion extending through a surface of the liquid outlet ring.
3. The stirring device for a reaction kettle with a horizontal stirring shaft and a vertical stirring shaft as claimed in claim 2, wherein the lower end of said liquid-extracting channel penetrates the lower end face of said vertical stirring shaft to form said liquid inlet, and said liquid inlet is provided with a filter plate.
4. The stirring apparatus as claimed in claim 1, wherein the horizontal stirring shafts are located on a straight line two by two, and two of the horizontal stirring shafts located on the same straight line are driven by the same driven bevel gear.
5. The stirring apparatus with the transverse stirring shaft and the vertical stirring shaft for the reaction kettle as claimed in claim 1, wherein a suspension block is arranged in the liquid pumping channel, and the vertical rotating shaft is rotatably connected to the suspension block.
6. The agitator with a horizontal agitating shaft and a vertical agitating shaft for a reaction kettle as claimed in claim 1, wherein the agitating motor comprises a motor housing, a stator connected in the motor housing, a rotor penetrating in the stator, and a motor rotating shaft connected to the rotor, one end of the motor housing is connected with a front end cover, the other end is connected with a rear end cover, a rotating shaft part flow passage communicated with the liquid pumping passage is arranged in the motor rotating shaft, a front end cover part inner cavity is arranged in the front end cover, a front end cover part liquid outlet hole penetrating through the surface of the front end cover is arranged in the front end cover part inner cavity, a rear end cover part inner cavity is arranged in the rear end cover, a plurality of housing part flow passages communicating the front end cover part inner cavity and the rear end cover part inner cavity are arranged in the motor housing, a rear end cover sealing sleeve is arranged on the motor rotating shaft, and the rear end cover part inner cavity, and a plurality of motor rotating shaft part communicating holes for communicating the inner cavity of the rear end cover part with the rotating shaft part flow channel are formed in the circumferential surface of the motor rotating shaft.
CN202021887451.9U 2020-09-02 2020-09-02 Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft Active CN213434433U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021887451.9U CN213434433U (en) 2020-09-02 2020-09-02 Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021887451.9U CN213434433U (en) 2020-09-02 2020-09-02 Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft

Publications (1)

Publication Number Publication Date
CN213434433U true CN213434433U (en) 2021-06-15

Family

ID=76319958

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021887451.9U Active CN213434433U (en) 2020-09-02 2020-09-02 Stirrer for reaction kettle with transverse stirring shaft and vertical stirring shaft

Country Status (1)

Country Link
CN (1) CN213434433U (en)

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