CN207805569U - A kind of reaction kettle splicing frame - Google Patents
A kind of reaction kettle splicing frame Download PDFInfo
- Publication number
- CN207805569U CN207805569U CN201721837737.4U CN201721837737U CN207805569U CN 207805569 U CN207805569 U CN 207805569U CN 201721837737 U CN201721837737 U CN 201721837737U CN 207805569 U CN207805569 U CN 207805569U
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- sliding
- groove
- pulley
- rack
- reaction kettle
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Abstract
The utility model discloses a kind of reaction kettle splicing framves, including installing supporting rack on the ground, support frame as described above top offers the first sliding groove, sliding is provided with the first sliding rack on first sliding groove, the top of first sliding rack offers the second sliding groove with the perpendicular setting of the first sliding groove, sliding is provided with the second sliding rack for placing splicing shell on second sliding groove, its key points of the technical solution are that working efficiency can be improved to a certain extent.
Description
Technical field
The utility model is related to field of chemical equipment, more particularly to a kind of reaction kettle splicing frame.
Background technology
The broad understanding of reaction kettle has the container physically or chemically reacted, is matched with parameter by the structure design to container
It sets, realizes the mixture function of the heating of technological requirement, evaporation, cooling and low high speed.Reaction kettle be widely used in oil, chemical industry,
The research of the type of productions such as rubber, pesticide, dyestuff, medicine, food user and various scientific experiment projects, for complete hydrolysis, in
With crystallization, distillation, evaporation, storage, hydrogenation, hydrocarbonylation, polymerization, condensation, heating mixture, the technical process such as isothermal reaction.
In existing reaction kettle, discharge port is generally located on the bottom end of reaction kettle, and upper valve is coordinated to be opened
Control, after opening valve, the colloid inside reaction kettle is fallen down under self gravitation effect, and staff can be in discharge port
Lower section carries out splicing, and generally a supporting rack can be arranged in the lower section of discharge port is supported splicing shell, when in splicing shell
When filling colloid, it is necessary to close valve, remove the splicing shell for filling colloid, then change new splicing shell, cause time-consuming
Arduously.
Utility model content
In view of the deficienciess of the prior art, the purpose of this utility model is to provide a kind of reaction kettle splicing frame, energy
It is enough to improve working efficiency to a certain extent.
The above-mentioned technical purpose of the utility model technical scheme is that:
A kind of reaction kettle splicing frame includes the supporting rack of installation on the ground, and support frame as described above top offers first
Sliding groove, on first sliding groove sliding be provided with the first sliding rack, the top of first sliding rack offers and first
Second sliding groove of the perpendicular setting of sliding groove, on second sliding groove sliding be provided with second for placing splicing shell
Sliding rack.
So set, by placing splicing shell on the second sliding rack, push the second sliding rack in the second sliding groove
Sliding so that the container below discharge port is replaced, and by the second sliding rack, unidirectionally sliding carries out replacement container, and
With the sliding for closing the first sliding rack so that the container that can place rows and columns in splicing shell carries out splicing, thus only
It pushes the first sliding rack and the second sliding rack to can be carried out the container splicing of multiple lines and multiple rows, need not carry out manually replacing and hold
Device can improve working efficiency to a certain extent.
Further preferably:The bottom end of first sliding rack and the second sliding rack is both provided with mounting plate, the installation
The side of plate is provided on the mounting plate and pacifies for pulley rotation in being provided with pulley in the first sliding groove and the second sliding groove
Mounted in the connector of mounting plate.
So set, by the way that pulley is arranged, and coordinate upper connector that pulley is connected with mounting plate, and can
Rotation, it is possible to reduce the contact area of the first sliding rack and supporting rack reduces the contact surface of the second sliding rack and the first sliding rack
Product so that the frictional force slided between each other is reduced, and reduces required motive force, it is time saving and energy saving to have the function of.
Further preferably:The connector includes the bolt and and bolt thread for sequentially passing through pulley and mounting plate
Nut of the connection for pulley limit.
So set, passing through pulley and mounting plate by bolt, and it is fixed by nut, the fixation of nut will not
The rotation of pulley is influenced, only pulley is limited in mounting plate side, plays the role of connection.
Further preferably:First sliding groove is symmetrically opened in the inside of supporting rack, and second sliding groove is symmetrical
It is opened in the inside of the first supporting rack.
It, can be to the so set, be opened in the inside of corresponding sliding object by the first sliding groove and the second sliding groove
One sliding rack and the second sliding rack play the role of limit so that the first sliding rack and the second sliding rack will not respectively with supporting rack
It is detached from the first sliding rack, influences the normal splicing of container, ensure that the sliding stability of the first sliding rack and the second sliding rack
Property, that is, it ensure that the stability of splicing.
Further preferably:Offered respectively on support frame as described above and the first sliding rack the first groove slided for pulley and
Second groove, first groove and the second groove are located at the bottom end of the first sliding groove and the second sliding groove.
Although so set, carried out the limit perpendicular with glide direction to the first sliding rack and the second sliding rack,
It is to be not proceed to limit in the vertical direction, there is the first sliding racks and the tilting of second sliding rack one end to lead to inclination conditions
Generation, influence the first sliding rack and the second sliding rack sliding stability, opened respectively by supporting rack and the first sliding rack
Equipped with the first groove and the second groove slided for pulley, pulley is limited, the first cunning can be reduced to a certain extent
Moving frame and the second sliding rack slide unstable possibility.
Further preferably:Annular groove is offered on the wheel face of the pulley, is all provided in first groove and the second groove
It is equipped with and the matched convex block of annular groove.
So set, by the way that annular groove is arranged on pulley, and coordinate upper protruding block, pulley can be made to be slided only along convex block
It is dynamic, it will not deviate, be slided for pulley due to opening up the first groove and the second groove, then the first groove and the second groove
Width is greater than the width of pulley, then pulley can be caused to deviate, the friction with the both ends of the surface of the first groove or the second groove, production
Raw larger frictional force, on the one hand can wear pulley, and still further aspect also results in the first sliding rack and the sliding of the second sliding rack
It is unstable, cause sliding it is more laborious.
Further preferably:The both ends of the annular groove are set as arc.
So set, the both ends by annular groove are set as arc, the contact angle of pulley and convex block can be reduced, increase connects
Contacting surface is accumulated, and by the sliding of arc, and frictional force is also smaller and pulley sliding is more stablized.
Further preferably:The top of second sliding rack offers the placing groove for placing splicing shell.
So set, being placed in the placing groove on the second sliding rack in splicing shell, docking material shell body carries out limit work
With, it is therefore prevented that the disengaging of splicing shell and the second sliding rack ensure that in the first sliding rack and the second sliding rack sliding process, connect
The stability of material shell body.
In conclusion the utility model having the beneficial effect that in contrast to the prior art:It is more by being placed in splicing shell
The container of row and multiple row so that staff need not carry out replacement container, it is only necessary to the first sliding rack and second be pushed to slide
Frame slides, it will be able to realize the splicing of multiple containers, can improve the working efficiency of splicing to a certain extent;
And top sheave is coordinated to be slided in the first groove and the second groove, pulley is slided along convex block, can be played and be led
To the effect of limit so that the sliding of the first sliding rack and the second sliding rack is more stablized.
Description of the drawings
Fig. 1 is the structural schematic diagram of embodiment;
Fig. 2 is the front view of embodiment;
Fig. 3 is the enlarged drawing of A in embodiment Fig. 2;
Fig. 4 is the exploded view of part-structure in embodiment Fig. 3;
Fig. 5 is the side view of embodiment;
Fig. 6 is the enlarged drawing of B in embodiment Fig. 5;
Fig. 7 is the exploded view of part-structure in embodiment Fig. 6.
Reference numeral:1, supporting rack;2, the first sliding groove;3, the first sliding rack;31, the second sliding groove;4, the second sliding
Frame;41, placing groove;5, mounting plate;6, pulley;61, annular groove;7, connector;71, bolt;72, nut;8, the first groove;9,
Two grooves;10, convex block.
Specific implementation mode
The utility model is described in further detail below in conjunction with attached drawing.
A kind of reaction kettle splicing frame, it is shown referring to Fig.1, including supporting rack 1, the first sliding rack 3, the second sliding rack 4.
Wherein, on the ground, the top of supporting rack 1 symmetrically offers the first sliding groove 2, and two to the installation of supporting rack 1
First sliding groove 2 is located at the inside of supporting rack 1, is slided in the first sliding groove 2 and is provided with the first sliding rack 3, the first sliding rack 3
Top symmetrically offers the second sliding groove 31, and the extending direction of the second sliding groove 31 and the extending direction of the first sliding groove 2 are mutual
Vertically, the second sliding groove 31 is located at the inside of the first sliding rack 3, and slidably connects the second sliding rack in the second sliding groove 31
4, the top of the second sliding rack 4 offers the placing groove 41 for placing splicing shell, and placing groove 41 is located at the second sliding rack 4
Inside.
It is worth noting that with reference to shown in Fig. 2 and Fig. 3, the bottom end of the second sliding rack 4 is provided with mounting plate 5, mounting plate 5
It is set as L-type, end face is connect with 4 bottom end of the second sliding rack, other end and the 4 perpendicular setting of the second sliding rack, mounting plate 5
Side in being provided with pulley 6 in the second sliding groove 31, and be provided on mounting plate 5 and be rotatably installed in installation for pulley 6
The connector 7 of plate 5.
Connector 7 includes the bolt 71 across pulley 6 and mounting plate 5, and pulley 6 is rotatablely connected with bolt 71, mounting plate 5 with
Bolt 71 is threadedly coupled, and the nut 72 being threadedly coupled with bolt 71 is provided in the other end of mounting plate 5, and bolt 71 can be with
Play the role of supporting pulley 6 and limiting, and nut 72 is threadedly coupled with bolt 71, can prevent bolt 71 and mounting plate 5
Disengaging.
Shown in referring to figure 5 and figure 6, the bottom end of the first sliding rack 3 is provided with mounting plate 5, and mounting plate 5 is set as L-type, one end
Face is connect with the first sliding rack 3, and other end and the 3 perpendicular setting of the first sliding rack, the side of mounting plate 5 is in the first sliding groove
It is provided with pulley 6 in 2, and is provided with the connector 7 for being rotatably installed in mounting plate 5 for pulley 6 on mounting plate 5.
Connector 7 includes the bolt 71 across pulley 6 and mounting plate 5, and pulley 6 is rotatablely connected with bolt 71, mounting plate 5 with
Bolt 71 is threadedly coupled, and the nut 72 being threadedly coupled with bolt 71 is provided in the other end of mounting plate 5, and bolt 71 can be with
Play the role of supporting pulley 6 and limiting, and nut 72 is threadedly coupled with bolt 71, can prevent bolt 71 and mounting plate 5
Disengaging.
It is noted that with reference to shown in Fig. 4 and Fig. 7, offered respectively for pulley 6 on supporting rack 1 and the first sliding rack 3
The first groove 8 and the second groove 9 of sliding, the first groove 8 and the second groove 9 are located at the sliding of the first sliding groove 2 and second
The bottom end of slot 31, and annular groove 61 is offered on pulley 6, the both ends of annular groove 61 are arc-shaped, i.e. 6 both ends of pulley are recessed to medial arc
Fall into, and be both provided in the first groove 8 and the second groove 9 with 61 matched convex block 10 of annular groove, convex block 10 can be to pulley 6
Play the role of guiding and limit.
The course of work:
Splicing shell is placed in placing groove 41, and the container of rows and columns is placed in splicing shell so that its
In a container be located at the lower section of discharge port, when container close to it is full when, push the second sliding rack 4 to carry out the replacement on uniline direction
Container, the sliding in the second groove 9 of pulley 6, and pulley 6 is slided along convex block 10, when the container on straight line all fills
When colloid, the first sliding rack 3 is pushed, into the replacement of ranks, then carries out the splicing on uniline direction.
The above is only the exemplary embodiment of the utility model, the protection model rather than limited the present invention
It encloses, the scope of protection of the utility model is determined by the attached claims.
Claims (8)
1. a kind of reaction kettle splicing frame includes the supporting rack (1) of installation on the ground, it is characterized in that:Support frame as described above (1) pushes up
End offers the first sliding groove (2), is slided on first sliding groove (2) and is provided with the first sliding rack (3), first sliding
The top of frame (3) offers the second sliding groove (31) with the first sliding groove (2) perpendicular setting, second sliding groove (31)
Upper sliding is provided with the second sliding rack (4) for placing splicing shell.
2. a kind of reaction kettle splicing frame according to claim 1, it is characterized in that:First sliding rack (3) and second
The bottom end of sliding rack (4) is both provided with mounting plate (5), and the side of the mounting plate (5) is slided in the first sliding groove (2) and second
It is provided with pulley (6) in slot (31), the company for being rotatably installed in mounting plate (5) for pulley (6) is provided on the mounting plate (5)
Fitting (7).
3. a kind of reaction kettle splicing frame according to claim 2, it is characterized in that:The connector (7) includes wearing successively
It crosses the bolt (71) of pulley (6) and mounting plate (5) and is threadedly coupled the nut for pulley (6) limit with bolt (71)
(72)。
4. a kind of reaction kettle splicing frame according to claim 2, it is characterized in that:First sliding groove (2) is symmetrically opened
It is located at the inside of supporting rack (1), second sliding groove (31) is symmetrically opened in the inside of the first supporting rack (1).
5. a kind of reaction kettle splicing frame according to claim 2 or 4, it is characterized in that:Support frame as described above (1) and first is slided
Offer the first groove (8) slided for pulley (6) and the second groove (9) in moving frame (3) respectively, first groove (8) and
Second groove (9) is located at the bottom end of the first sliding groove (2) and the second sliding groove (31).
6. a kind of reaction kettle splicing frame according to claim 5, it is characterized in that:It is opened up on the wheel face of the pulley (6)
There is annular groove (61), is both provided in first groove (8) and the second groove (9) and annular groove (61) matched convex block (10).
7. a kind of reaction kettle splicing frame according to claim 6, it is characterized in that:The both ends of the annular groove (61) are set as
Arc.
8. a kind of reaction kettle splicing frame according to claim 1, it is characterized in that:The top of second sliding rack (4)
Offer the placing groove (41) for placing splicing shell.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721837737.4U CN207805569U (en) | 2017-12-25 | 2017-12-25 | A kind of reaction kettle splicing frame |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721837737.4U CN207805569U (en) | 2017-12-25 | 2017-12-25 | A kind of reaction kettle splicing frame |
Publications (1)
Publication Number | Publication Date |
---|---|
CN207805569U true CN207805569U (en) | 2018-09-04 |
Family
ID=63330487
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201721837737.4U Active CN207805569U (en) | 2017-12-25 | 2017-12-25 | A kind of reaction kettle splicing frame |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN207805569U (en) |
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2017
- 2017-12-25 CN CN201721837737.4U patent/CN207805569U/en active Active
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