CN208741975U - The anti-blockage structure of crystallization kettle - Google Patents
The anti-blockage structure of crystallization kettle Download PDFInfo
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- CN208741975U CN208741975U CN201821130104.4U CN201821130104U CN208741975U CN 208741975 U CN208741975 U CN 208741975U CN 201821130104 U CN201821130104 U CN 201821130104U CN 208741975 U CN208741975 U CN 208741975U
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- crystallization kettle
- kettle ontology
- ontology
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- shaft
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Abstract
The utility model belongs to crystallization kettle equipment technical field, it is intended to provide a kind of crystallization kettle anti-blockage structure, its key points of the technical solution are that including crystallization kettle ontology, the motor of crystallization kettle ontology upper end is set, the feed inlet that is arranged on crystallization kettle ontology and the discharge pipe that crystallization kettle ontology lower end is set, valve is provided on the discharge pipe, the output end of the motor is fixedly connected with shaft, the lower end of the shaft is fixedly connected with agitating paddle, the lower end of the crystallization kettle ontology is set as conical structure, the side wall of the crystallization kettle ontology and the junction of lower end are set as circular arc protrusion;This crystallization kettle anti-blockage structure keeps the inner wall of crystallization kettle ontology integrally coherent by the way that the junction of crystallization kettle lower end pyramidal structure and side wall is arranged to circular arc chamfering, eliminates angle, makes crystallization that can be directly entered discharge port, avoids accumulation to improve output capacity.
Description
Technical field
The utility model relates to crystallization kettle equipment technical field, in particular to a kind of anti-blockage structure of crystallization kettle.
Background technique
Crystallization kettle is the crystallizer that interlayer domestic demand chilled water or chilled water sharply cool down after material hybrid reaction, is closed
Key link is that the size of interlayer area, the structure type and material outlet form of blender, the interior high-precision of tank body polish, and
The requirement without dead angle is cleaned in tank body to meet technique use condition.
For crystallization kettle when carrying out crystallization reaction, often its inner wall has deposit buildup, leads to knot when blanking
The phenomenon that crystalline substance is not easy to be discharged, and may result in blanking Caton or blanking blockage.Currently, notification number is the reality of CN206934794U
With new patent, it specifically discloses a kind of condensing crystallizing kettle, including autoclave body, upper cover, transmission stirring system and lower head, under
End socket is pyramidal structure, and transmission stirring system includes that driving motor, the stirring rod being connected with driving motor and setting are being stirred
The U-shaped agitating paddle of bar bottom, the one circle scraping blade of outer edge setting of U-shaped agitating paddle, for striking off the concentration crystal on inner wall of kettle.
Although above-mentioned technical proposal prevents crystal accumulation by setting lower head to the structure of vertebra shape, and passes through addition
Scraping blade stirs the crystal of bottom, assists blanking, but the pyramidal structure of lower head can form one with crystallization kettle side wall
Fixed angle, the scraping blade of addition can not also touch in angle, and crystal may be deposited in extremely during crystallization in this way
It will affect the output capacity of crystal in angle.
Utility model content
The utility model is to provide a kind of anti-blockage structure of crystallization kettle, by by crystallization kettle lower end pyramidal structure and side
The junction of wall is arranged to circular arc chamfering to keep the inner wall of crystallization kettle ontology integrally coherent, eliminates angle, makes crystallization can be straight
It taps into discharge port, avoids accumulation to improve output capacity.
The above-mentioned technical purpose of the utility model has the technical scheme that
A kind of anti-blockage structure of crystallization kettle, including crystallization kettle ontology, motor that crystallization kettle ontology upper end is arranged in, setting
Feed inlet on crystallization kettle ontology and the discharge pipe that crystallization kettle ontology lower end is arranged in are provided on the discharge pipe
Valve, the output end of the motor are fixedly connected with shaft, and the lower end of the shaft is fixedly connected with agitating paddle, the crystallization kettle
The lower end of ontology is set as conical structure, and the side wall of the crystallization kettle ontology and the junction of lower end are set as circular arc protrusion.
By using above-mentioned technical proposal, conical structure keeps the inner wall of crystallization kettle ontology relatively steep, enables raw material
It directly slides along the inner wall of crystallization kettle ontology to discharge port, by being arranged in the side wall of crystallization kettle ontology and the junction of lower end
For circular arc protrusion crystal can be avoided to accumulate in the bottom of crystallization kettle ontology, make to be precipitated to avoid dead angle is formed in crystallization kettle ontology
Crystal can smoothly discharge, crystal output capacity improve.
Further setting: the lower end of the shaft is fixedly connected with agitating shaft, and the agitating shaft extends in discharge pipe,
Stirring sheet is fixedly connected on the agitating shaft.
By using above-mentioned technical proposal, shaft rotation drives agitating shaft rotation, and agitating shaft drives stirring sheet rotation, due to
Stirring sheet extends in discharge pipe, when crystal enters and is deposited in discharge pipe, agitating shaft and stirring sheet rotation agitation
Crystal prevents crystal from bonding in discharge pipe.
Further setting: being connected with pneumatic hammer on the outside of the crystallization kettle ontology, the pneumatic hammer far from crystallization kettle ontology one
End is communicated with high-pressure air source gas pipeline.
By using above-mentioned technical proposal, pneumatic hammer is connected to high-pressure air source gas pipeline, and gas compression acts on crystallization kettle sheet
Body, crystallization kettle ontology shake, and the crystal that when vibration sticks in this body sidewall of crystallization kettle can be fallen, and prevent crystal bonding attached
In the inner wall of crystallization kettle ontology.
Further setting: it is solid by connection component that screw hole one, the pneumatic hammer and crystallization kettle ontology are offered on the pneumatic hammer
Fixed connection, the connection component include the attachment base being fixedly connected with crystallization kettle ontology, the first trunnion being arranged on attachment base,
Screw hole two, the screw thread being provided on the first trunnion are plugged on the screw rod of screw hole two, the annular groove being provided on attachment base, setting
In the screw hole three of annular groove bottom, the second trunnion being fixedly connected with pneumatic hammer lateral wall, the sliding slot that is provided on the second trunnion
One, the sliding slot one matches with screw rod, and the screw hole one matches with screw hole three.
By using above-mentioned technical proposal, pneumatic hammer can be by fixing twice, and fixed effect is more preferably stronger, makees in pneumatic hammer
When for crystallization kettle ontology, pneumatic hammer may loosen while crystallization kettle ontology shakes, and pneumatic hammer and crystallization kettle ontology connect
Connect it is stronger can prevent pneumatic hammer from loosening, influence pneumatic hammer vibration effect.
Further setting: gasket is equipped between the screw rod and sliding slot.
By using above-mentioned technical proposal, the setting of gasket can make screw rod connect stronger with the second trunnion, prevent
Screw bolt loosening, pneumatic hammer connection are unstable.
Further setting: through slot is offered in the annular groove.
By using above-mentioned technical proposal, the setting of through slot can enable pneumatic hammer normally exercise to act on crystallization kettle sheet
Body, crystallization kettle ontology generate vibration, and the crystal of adhesion in crystallization kettle inner body wall is made to be detached from inner wall, and reaching quickening blanking prevents from blocking up
The purpose of plug.
Further setting: sliding slot two is offered on the outside of the agitating shaft, is equipped with grab, the stirring in the sliding slot two
On piece is equipped with card slot corresponding with grab matching.
By using above-mentioned technical proposal, the grab in sliding slot two can be clamped with pocket matches, realized stirring sheet and stirred
Mix the disassembly of axis, convenient cleaning and replacement to stirring sheet.
Further setting: the upper end of the stirring sheet is set as arc-shaped.
By using above-mentioned technical proposal, the setting of arc-shaped prevent crystal bottom discharge precipitate during in stirring sheet
Bonding improves crystal eduction rate.
Further setting: silica gel piece is fixedly connected on the grab.
By using above-mentioned technical proposal, the setting of silica gel piece can make grab be clamped even closer with card slot, prevent
Crystal enters card slot and blocks, and influences the disassembly and installation of stirring sheet.
Further setting: the bottom end of the agitating shaft is fixedly connected with pin shaft, and baffle, institute are rotatably connected on the pin shaft
State the lower end that baffle is located at sliding slot two.
By using above-mentioned technical proposal, when stirring sheet is inserted into sliding slot two with grab clamping, rotation baffle can be right
Stirring sheet forms a resistance, prevents stirring sheet from falling off when stirring.
In conclusion the utility model has the following beneficial effects:
1, the circular arc protrusion of the conical structure of crystallization kettle ontology lower end and junction can make the inner wall of crystallization kettle ontology
It is integrally formed, not will form dead angle, crystal will not stick on inner wall after being precipitated, so that crystal eduction rate is higher;
2, the agitating shaft and stirring sheet being arranged in crystallization kettle ontology can constantly stir the crystal in discharge pipe, prevent crystalline substance
Body sticks together the phenomenon that blocking discharge pipe when being precipitated;
3, the pneumatic hammer being fixedly connected on the outside of crystallization kettle ontology can hit the side wall of crystallization kettle ontology, make crystallization kettle ontology
Shake, fall to the crystal sticked in crystallization kettle inner body wall in discharge pipe, not only accelerate blanking velocity and
And also prevent from blocking, improve the eduction rate of crystal.
Detailed description of the invention
Fig. 1 is the overall structure diagram for embodying crystallization kettle ontology;
Fig. 2 is the structural schematic diagram for embodying connection component;
Fig. 3 is the structural schematic diagram for embodying agitating shaft;
Fig. 4 is the attachment structure schematic diagram for embodying agitating shaft and stirring sheet;
Fig. 5 is for embodying the structure enlargement diagram in Fig. 4 at A;
Fig. 6 is the structural schematic diagram for embodying baffle.
In figure, 1, crystallization kettle ontology;11, motor;111, shaft;12, feed inlet;13, discharge pipe;14, valve;2, it stirs
Mix paddle;3, agitating shaft;31, stirring sheet;311, card slot;32, sliding slot two;33, grab;34, silica gel piece;4, pneumatic hammer;41, high pressure gas
Source gas pipeline;42, screw hole one;5, connection component;51, attachment base;52, the first trunnion;53, screw hole two;55, screw rod;56, ring
Connected in star;561, through slot;57, screw hole three;58, the second trunnion;59, sliding slot one;6, gasket;7, pin shaft;8, baffle.
Specific embodiment
The utility model is described in further detail below in conjunction with attached drawing.
Wherein identical components are presented with like reference characters.It should be noted that word used in the following description
Language "front", "rear", "left", "right", "up" and "down" refer to the direction in attached drawing, word " bottom surface " and " top surface ", "inner" and
"outside" refers respectively to the direction towards or away from geometric center of specific component.
A kind of anti-blockage structure of crystallization kettle, as shown in Figure 1, the upper end of crystallization kettle ontology 1 is fixedly connected with motor 11, knot
Brilliant 1 upper end of kettle ontology offers feed inlet 12, and 1 lower end of crystallization kettle ontology is fixedly connected with discharge pipe 13, on discharge pipe 13
It is provided with valve 14, the lower end of crystallization kettle ontology 1 is set as conical structure, and conical structure makes the inner wall of crystallization kettle ontology 1
Relatively steep, the side wall of crystallization kettle ontology 1 and the junction of lower end are set as circular arc protrusion, eliminate dead in crystallization kettle ontology 1
Angle, crystal are not easy the adhesion on the inner wall of crystallization kettle ontology 1 after being precipitated, improve the eduction rate of crystal.
As shown in Figure 1, the outer wall of crystallization kettle is fixedly connected with pneumatic hammer 4, pneumatic hammer 4 is settable multiple, and pneumatic hammer 4 is far from crystallization kettle
One end of ontology 1 is communicated with high-pressure air source gas pipeline 41, and pneumatic hammer 4 is connected by connection component 5 with crystallization kettle ontology 1, gas
Hammer 4 makes gas generate impact force action in internal hammer body by compressed air, makes tup action in the outer of crystallization kettle ontology 1
Wall, the vibration of crystallization kettle ontology 1 shake off the crystal sticked on inner wall, prevent crystallization from sticking on inner wall to influence crystal
Eduction rate.
As shown in Fig. 2, offering screw hole 1 on pneumatic hammer 4, connection component 5 includes being fixedly connected with crystallization kettle ontology 1
Attachment base 51, the first trunnion 52 being arranged on attachment base 51, screw hole 2 53, the screw thread being provided on the first trunnion 52 are plugged on
Screw rod 55 in screw hole 2 53, the annular groove 56 being provided on attachment base 51, the screw hole three that 56 bottom of annular groove is set
57, the second trunnion 58 being fixedly connected with 4 lateral wall of pneumatic hammer, the sliding slot 1 being provided on the second trunnion 58, sliding slot 1 with
Screw rod 55 matches, and screw hole 1 matches with screw hole 3 57, and the setting of connection component 5 can make pneumatic hammer 4 and crystallization kettle ontology 1
What is connected is more firm, when pneumatic hammer 4 strikes crystallization kettle ontology 1, prevents pneumatic hammer 4 from loosening, between screw rod 55 and sliding slot 1
Equipped with gasket 6, the setting of gasket 6 can make screw rod 55 connect stronger with the second trunnion 58, prevent screw rod 55 from loosening, pneumatic hammer
4 connections are unstable, through slot 561 offered in annular groove 56, the setting of through slot 561 can enable pneumatic hammer 4, and normally enforcement acts on
In crystallization kettle ontology 1, crystallization kettle ontology 1 generates vibration, so that the crystal of adhesion on 1 inner wall of crystallization kettle ontology is detached from inner wall, reaches
Accelerating blanking prevents the purpose of blocking.
As shown in figure 3, being provided with shaft 111 in crystallization kettle ontology 1, shaft 111 is driven by motor 11, under shaft 111
End is fixedly connected with agitating paddle 2, and the lower end of agitating paddle 2 is fixedly connected with agitating shaft 3, and dismantling connection has stirring sheet on agitating shaft 3
31, shaft 111 drives agitating shaft 3 to rotate, and agitating shaft 3 drives the rotation of stirring sheet 31 that can will be deposited in the crystalline substance in discharge pipe 13
Body loosens, and prevents crystal felt jam discharge pipe 13, the upper end of stirring sheet 31 is set as arc-shaped, and the setting of arc-shaped can be kept away
Exempt from crystal deposition in the upper end of stirring sheet 31, makes crystal be easier to fall, the eduction rate of crystal is higher.
As shown in figure 4, agitating shaft 3 and stirring sheet 31 are dismantling connection, the convenient replacement to stirring sheet 31.
As shown in figure 5,3 lower end of agitating shaft and the junction of stirring sheet 31 offer sliding slot 2 32, setting in sliding slot 2 32
Have grab 33, be provided in stirring sheet 31 with the matched card slot 311 of grab 33, be fixedly connected with silica gel piece 34 on grab 33, can
So that grab 33 is bonded even closer with card slot 311, it not only can prevent stirring sheet 31 from falling but also prevent crystal from entering
The gap of card slot 311 and grab 33.
As shown in fig. 6, the lower end of agitating shaft 3 is fixedly connected with pin shaft 7, it is rotatably connected to baffle 8 on pin shaft, rotates baffle
8 can form a resistance to stirring sheet 31, prevent stirring sheet 31 from falling off when stirring.
Specific work process: motor 11 starts the rotation of shaft 111 and agitating paddle 2 is driven to rotate, to molten in crystallization kettle ontology 1
Liquid is uniformly stirred, and the agitating shaft 3 and stirring sheet 31 of 2 bottom end of agitating paddle can be continuous when crystal settling blanking
It is stirred, prevents crystal from blocking discharge pipe 13, influence the eduction rate of crystal, the pneumatic hammer 4 of 1 side wall of crystallization kettle ontology connection can
To access the side wall that pressure-air acts on crystallization kettle ontology 1, make crystallization kettle ontology 1 that certain vibration occur, makes to be bonded in knot
Crystal in brilliant 1 inner wall of kettle ontology is fallen, and is prevented crystal adhesion on inner wall, is influenced the eduction rate of crystal.
This specific embodiment is only the explanation to the utility model, is not limitations of the present invention, ability
Field technique personnel can according to need the modification that not creative contribution is made to the present embodiment after reading this specification, but
As long as all by the protection of Patent Law in the scope of the claims of the utility model.
Claims (10)
1. a kind of anti-blockage structure of crystallization kettle, including crystallization kettle ontology (1), setting crystallization kettle ontology (1) upper end motor
(11), feed inlet (12) on crystallization kettle ontology (1) and setting are set in the discharge pipe of crystallization kettle ontology (1) lower end
(13), it is provided with valve (14) on the discharge pipe (13), the output end of the motor (11) is fixedly connected with shaft
(111), the lower end of the shaft (111) is fixedly connected with agitating paddle (2), it is characterised in that: under the crystallization kettle ontology (1)
End is set as conical structure, and the side wall of the crystallization kettle ontology (1) and the junction of lower end are set as circular arc protrusion.
2. the anti-blockage structure of crystallization kettle according to claim 1, it is characterised in that: the lower end of the shaft (111) is solid
Surely it is connected with agitating shaft (3), the agitating shaft (3) extends in discharge pipe (13), and disassembly has stirring on the agitating shaft (3)
Piece (31).
3. the anti-blockage structure of crystallization kettle according to claim 2, it is characterised in that: outside the crystallization kettle ontology (1)
Side is connected with pneumatic hammer (4), and the pneumatic hammer (4) is communicated with high-pressure air source gas pipeline (41) far from the one end of crystallization kettle ontology (1).
4. the anti-blockage structure of crystallization kettle according to claim 3, it is characterised in that: offer spiral shell on the pneumatic hammer (4)
Hole one (42), the pneumatic hammer (4) are fixedly connected with crystallization kettle ontology (1) by connection component (5), connection component (5) packet
It includes the attachment base (51) being fixedly connected with crystallization kettle ontology (1), the first trunnion (52) being arranged on attachment base (51), be provided with
Screw rod (55) that screw hole two (53), screw thread on first trunnion (52) are plugged in screw hole two (53) is provided with attachment base (51)
On annular groove (56), setting be fixedly connected in the screw hole three (57) of annular groove (56) bottom, with pneumatic hammer (4) lateral wall
Second trunnion (58), the sliding slot one (59) being provided on the second trunnion (58), the sliding slot one (59) match with screw rod (55),
The screw hole one (42) matches with screw hole three (57).
5. the anti-blockage structure of crystallization kettle according to claim 4, it is characterised in that: between the screw rod (55) and sliding slot
Equipped with gasket (6).
6. the anti-blockage structure of crystallization kettle according to claim 5, it is characterised in that: opened up in the annular groove (56)
There are through slot (561).
7. the anti-blockage structure of crystallization kettle according to claim 2, it is characterised in that: opened on the outside of the agitating shaft (3)
Equipped with sliding slot two (32), grab (33) are equipped in the sliding slot two (32), the stirring sheet (31) is equipped with and grab (33)
With corresponding card slot (311).
8. the anti-blockage structure of crystallization kettle according to claim 7, it is characterised in that: the upper end of the stirring sheet (31) is set
For arc-shaped.
9. the anti-blockage structure of crystallization kettle according to claim 8, it is characterised in that: be fixedly connected on the grab (33)
There are silica gel piece (34).
10. the anti-blockage structure of crystallization kettle according to claim 8, it is characterised in that: the bottom end of the agitating shaft (3) is solid
Surely it is connected with pin shaft (7), is rotatably connected to baffle (8) on the pin shaft (7), the baffle (8) is located under sliding slot two (32)
End.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821130104.4U CN208741975U (en) | 2018-07-16 | 2018-07-16 | The anti-blockage structure of crystallization kettle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821130104.4U CN208741975U (en) | 2018-07-16 | 2018-07-16 | The anti-blockage structure of crystallization kettle |
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Publication Number | Publication Date |
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CN208741975U true CN208741975U (en) | 2019-04-16 |
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ID=66057388
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CN201821130104.4U Active CN208741975U (en) | 2018-07-16 | 2018-07-16 | The anti-blockage structure of crystallization kettle |
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2018
- 2018-07-16 CN CN201821130104.4U patent/CN208741975U/en active Active
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