CN210332442U - Gelling kettle - Google Patents
Gelling kettle Download PDFInfo
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- CN210332442U CN210332442U CN201921127396.0U CN201921127396U CN210332442U CN 210332442 U CN210332442 U CN 210332442U CN 201921127396 U CN201921127396 U CN 201921127396U CN 210332442 U CN210332442 U CN 210332442U
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- frictioning
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- colloid
- kettle
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Abstract
The utility model discloses a gelatinization cauldron, it includes and is used for supplying organic mixture and gelatinization agent to mix in it in order to form the cauldron body of colloid and other organic matters, the upper end of the cauldron body is provided with out jiao kou, its at least some stretch into in other organic matters, and be used for making the colloid of mixing in other organic matters float to the air supporting device of the liquid level of other organic matters and be used for scraping the colloid of liquid level to a jiao kou with make things convenient for the colloid from a jiao kou exhaust frictioning device. The utility model discloses can separate out the colloid from the organic mixture well, simplify production process, improve production efficiency.
Description
Technical Field
The utility model relates to a gelatinization cauldron.
Background
At present, colloid can be formed after the organic mixture is mixed with a gelatinizing agent, but the colloid is mixed in the organic mixture and is difficult to separate from the organic mixture, the separation and extraction of the colloid are influenced, and the production is not facilitated.
Disclosure of Invention
The utility model aims to solve the technical problem that overcome prior art's defect, provide a cauldron that gels, it can be well with the colloid separate out from organic mixture, simplified production process, improved production efficiency.
In order to solve the technical problem, the technical scheme of the utility model is that: a gelling tank comprising:
the kettle body is used for mixing the organic mixture and the gelatinizing agent to form colloid and other organic matters, and the upper end part of the kettle body is provided with a colloid outlet;
at least one part of the air flotation device extends into other organic matters and is used for enabling the colloid mixed in the other organic matters to float to the liquid level of the other organic matters;
and the glue scraping device is used for scraping the glue on the liquid surface to the glue outlet so as to facilitate the discharge of the glue from the glue outlet.
Further, the gelatinizing kettle also comprises a stirring device for accelerating the mixing speed of the organic mixture and the gelatinizing agent, and the stirring device is positioned below the part of the air floating device, which extends into other organic matters.
The stirring device comprises a stirring shaft, a rotary driving mechanism and a stirring blade, wherein the stirring shaft is rotatably supported at the bottom of the kettle body, the stirring blade is connected onto the stirring shaft, and the rotary driving mechanism is connected with the stirring shaft to drive the stirring shaft to rotate.
The specific structure of the air flotation device is further provided, the air flotation device comprises an air flotation pipe, at least one part of the air flotation pipe extends into other organic matters, and the part of the air flotation pipe extending into the other organic matters is provided with a plurality of air holes so as to provide air bubbles for the other organic matters in the kettle body, so that colloid in the other organic matters adheres to the air bubbles and floats to the liquid level along with the air bubbles.
Further, in order to increase the speed of the air flotation pipe for providing air bubbles into the organic mixture, the air flotation device further comprises an air blowing mechanism which is communicated with the air flotation pipe and is used for blowing air into the air flotation pipe.
Further provided a concrete structure of frictioning device, the frictioning device includes frictioning board group, rotary driving spare and scrapes gluey pole, scrape gluey pole rotatably supporting on the cauldron body, frictioning board group with scrape the lower tip of gluey pole and link to each other, rotary driving spare links to each other with the drive frictioning pole with the upper end of scraping gluey pole and rotates, scrapes gluey pole and drives frictioning board group again and rotate in order to realize the frictioning.
Further in order to adjust the height of the frictioning plate group so that the frictioning plate group and the glue outlet are located at the same height, the frictioning device further comprises a lifting driving mechanism which is arranged between the frictioning rod and the frictioning plate group or between the rotary driving piece and the frictioning rod and is used for driving the frictioning plate group to lift.
Further to facilitate entry of the gelling agent and the organic mixture into the tank body, the tank body is provided with a first inlet for entry of the gelling agent and a second inlet for entry of the organic mixture.
Further, a first pump is connected between the external gelling agent supply device and the first inlet for the gelling agent to enter the first inlet, and a second pump is connected between the external organic mixture supply device and the second inlet for the organic mixture to enter the second inlet.
Further in order to prevent the liquid level of the organic mixture or other organic matters from being too high, the gelling kettle further comprises a controller and a liquid level detection mechanism which is arranged in the kettle body, is positioned below the glue outlet and is used for generating a stop signal when the liquid level detection mechanism detects that the liquid level of the organic mixture or other organic matters in the kettle body reaches the height of the organic mixture or other organic matters, and the liquid level detection mechanism, the first pump and the second pump are respectively in signal connection with the controller so that the controller controls the first pump and the second pump to stop working after receiving the stop signal.
After having adopted above-mentioned technical scheme, drop into the cauldron body with organic mixture and gelatinization agent, form colloid and other organic matters after the internal mixture of cauldron, the colloid mixes in other organic matters, and the air supporting device makes the colloid come-up to the liquid level of other organic matters, then the frictioning device scrapes the colloid of other organic matters liquid levels to going out jiao kou, and then makes things convenient for the colloid to discharge from going out jiao kou, then accomplishes the separation of colloid and other organic matters, the utility model discloses can realize the separation of colloid and other organic matters well at the in-process of colloid preparation, removed the trouble of later stage separation from, simplified the preparation of colloid and the process of separation, improved production efficiency.
Drawings
Fig. 1 is a schematic structural view of the gelling kettle of the present invention.
Detailed Description
In order that the present invention may be more readily and clearly understood, the following detailed description of the present invention is provided in connection with the accompanying drawings.
As shown in fig. 1, a gelling tank comprises:
the kettle body 1 is used for mixing an organic mixture and a gelatinizing agent therein to form colloid and other organic matters, and the upper end part of the kettle body 1 is provided with a colloid outlet 11;
at least one part of the air flotation device extends into other organic matters and is used for enabling the colloid mixed in the other organic matters to float to the liquid level of the other organic matters;
and the glue scraping device is used for scraping the glue on the liquid surface to the glue outlet 11 so as to facilitate the discharge of the glue from the glue outlet 11.
In this embodiment, in order to facilitate the discharge of other organic matters, a liquid discharge port is provided at the lower end of the kettle 1. The glue outlet 11 is arranged on the side wall of the kettle body 1.
As shown in fig. 1, the gelatinizing reactor further includes a stirring device for accelerating the mixing speed of the organic mixture and the gelatinizing agent, and the stirring device is located below the portion of the air floating device extending into other organic matters. Specifically, the stirring device is positioned below the part of the air floatation device, which extends into other organic matters, so that the stirring device can be effectively prevented from influencing the upward floating of the colloid.
As shown in fig. 1, the stirring device comprises a stirring shaft 21, a rotary driving mechanism 23 and a stirring blade 22, wherein the stirring shaft 21 is rotatably supported at the bottom of the kettle body 1, the stirring blade 22 is connected to the stirring shaft 21, and the rotary driving mechanism 23 is connected to the stirring shaft 21 to drive the stirring shaft 21 to rotate. In the present embodiment, the rotation driving mechanism 23 may be a motor, but is not limited thereto.
As shown in fig. 1, the air flotation device includes an air flotation pipe 31, at least a portion of the air flotation pipe 31 extends into other organic matters, and a plurality of air holes are formed in a portion of the air flotation pipe 31 extending into other organic matters to provide air bubbles for other organic matters in the autoclave body 1, so that colloid in other organic matters adheres to the air bubbles and floats to the liquid surface along with the air bubbles.
As shown in fig. 1, in order to increase the speed of the air flotation pipe 31 providing air bubbles to the organic mixture, the air flotation device further comprises an air blowing mechanism which is communicated with the air flotation pipe 31 and is used for blowing air into the air flotation pipe 31. In the present embodiment, the air blowing mechanism may be an air pump 32, but is not limited thereto.
As shown in fig. 1, the frictioning device includes a frictioning plate set, a rotary driving member 42 and a frictioning rod 43, the frictioning rod 43 is rotatably supported on the kettle body 1, the frictioning plate set is connected with the lower end portion of the frictioning rod 43, the rotary driving member 42 is connected with the upper end portion of the frictioning rod 43 to drive the frictioning rod 43 to rotate, and the frictioning rod 43 drives the frictioning plate set to rotate to realize frictioning. In this embodiment, the squeegee assembly includes two squeegee plates 41 perpendicular to each other, the two squeegee plates 41 are connected to each other, and the lower surfaces of the two squeegee plates 41 are flush with each other. The rotary drive 42 may be a motor, but is not limited thereto.
In this embodiment, the frictioning plate group is located the same height with glue outlet 11, and in the process of the rotation of the frictioning plate group driven by the rotation driving member 42, the frictioning plate group pushes away the glue floating on the liquid surface to glue outlet 11, so that the glue is conveniently discharged from glue outlet 11.
As shown in fig. 1, in order to adjust the height of the squeegee assembly so that the squeegee assembly and the glue outlet are located at the same height, the squeegee device further includes a lifting driving mechanism disposed between the squeegee rod 43 and the squeegee assembly and used for driving the squeegee assembly to lift. In the present embodiment, the elevating drive mechanism may be, but is not limited to, a piston cylinder 44.
As shown in fig. 1, in order to facilitate the entrance of the gelling agent and the organic mixture into the autoclave body 1, the autoclave body 1 is provided with a first inlet 12 for the entry of the gelling agent and a second inlet 13 for the entry of the organic mixture. In this embodiment, the first inlet 12 is disposed at the lower end of the kettle 1, and the second inlet 13 is disposed at the upper end of the kettle 1.
As shown in fig. 1, a first pump 5 is connected between the external gelling agent supply and the first inlet 12 for the entry of the gelling agent into the first inlet 12, and a second pump 6 is connected between the external organic mixture supply and the second inlet 13 for the entry of the organic mixture into the second inlet 13. In the present embodiment, a first valve 7 for controlling whether or not communication is established between the first pump 5 and the first inlet 12 is provided between the first pump 5 and the first inlet 12, and a second valve 8 for controlling whether or not communication is established between the second pump 6 and the second inlet 13 is provided between the second pump 6 and the second inlet 13.
As shown in fig. 1, in order to prevent the liquid level of the organic mixture or other organic matters from being too high, the gelling kettle further comprises a controller and a liquid level detection mechanism which is arranged in the kettle body 1, is positioned below the glue outlet 11, and is used for generating a stop signal when the liquid level detection mechanism detects that the liquid level of the organic mixture or other organic matters in the kettle body 1 reaches the height of the liquid level detection mechanism, and the liquid level detection mechanism, the first pump 5 and the second pump 6 are respectively in signal connection with the controller, so that the controller controls the first pump 5 and the second pump 6 to stop working after receiving the stop signal. In the present embodiment, the liquid level detection mechanism is a liquid level meter 9, but is not limited thereto. The liquid level meter 9 is arranged at a position, close to the glue outlet 11, of the kettle body 1, so that the liquid level of the organic mixture or other organic matters can be guaranteed to be lower than the height of the glue outlet 11, the organic mixture or other organic matters can be prevented from overflowing from the glue outlet 11, and the height of the liquid level can meet the requirement that the glue scraping mechanism scrapes the glue floating on the liquid level to the glue outlet 11 and discharges from the glue outlet 11.
The working principle of the utility model is as follows:
drop into the cauldron body 1 with organic mixture and gelatinization agent, form colloid and other organic matters after mixing in the cauldron body 1, the colloid mixes in other organic matters, and the air supporting device makes the colloid come-up to the liquid level of other organic matters, then the frictioning device scrapes the colloid of other organic matters liquid levels to a jiao kou 11, and then makes things convenient for the colloid to discharge from a jiao kou 11, then accomplishes the separation of colloid and other organic matters, the utility model discloses can realize the separation of colloid and other organic matters well at the in-process of colloid preparation, removed the trouble of later stage separation from, simplified the preparation of colloid and the process of separation, improved production efficiency.
The above-mentioned embodiments further explain in detail the technical problems, technical solutions and advantages solved by the present invention, and it should be understood that the above only is a specific embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.
In the description of the present invention, it is to be understood that the terms indicating orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for convenience of description and simplification of description, and do not indicate or imply that the equipment or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate the position or positional relationship based on the position or positional relationship shown in the drawings, or the position or positional relationship which is usually placed when the product of the present invention is used, and are only for convenience of description and simplification of the description, but do not indicate or imply that the device or element referred to must have a specific position, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and the like are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance.
Furthermore, the terms "horizontal", "vertical", "overhang" and the like do not imply that the components are required to be absolutely horizontal or overhang, but may be slightly inclined. For example, "horizontal" merely means that the direction is more horizontal than "vertical" and does not mean that the structure must be perfectly horizontal, but may be slightly inclined.
In the present disclosure, unless otherwise expressly stated or limited, the first feature may comprise both the first and second features directly contacting each other, and also may comprise the first and second features not being directly contacting each other but being in contact with each other by means of further features between them. Also, the first feature being above, on or above the second feature includes the first feature being directly above and obliquely above the second feature, or merely means that the first feature is at a higher level than the second feature. A first feature that underlies, and underlies a second feature includes a first feature that is directly under and obliquely under a second feature, or simply means that the first feature is at a lesser level than the second feature.
Claims (10)
1. A gelling tank, characterized in that it comprises:
the kettle body (1) is used for mixing the organic mixture and the gelatinizing agent to form colloid and other organic matters, and the upper end part of the kettle body (1) is provided with a colloid outlet (11);
at least one part of the air flotation device extends into other organic matters and is used for enabling the colloid mixed in the other organic matters to float to the liquid level of the other organic matters;
the glue scraping device is used for scraping glue on the liquid surface to the glue outlet (11) so as to facilitate the discharge of the glue from the glue outlet (11).
2. The gelling kettle of claim 1, further comprising a stirring device for increasing the mixing speed of the organic mixture and the gelling agent, wherein the stirring device is located below the part of the air floating device extending into other organic matters.
3. The gelling kettle of claim 2, wherein the stirring device comprises a stirring shaft (21), a rotary driving mechanism (23) and a stirring blade (22), the stirring shaft (21) is rotatably supported at the bottom of the kettle body (1), the stirring blade (22) is connected to the stirring shaft (21), and the rotary driving mechanism (23) is connected with the stirring shaft (21) to drive the stirring shaft (21) to rotate.
4. The gelatinizing kettle according to claim 1, wherein the air flotation device comprises an air flotation pipe (31), at least one part of the air flotation pipe (31) extends into other organic matters, and the part of the air flotation pipe (31) extending into other organic matters is provided with a plurality of air holes to provide air bubbles for other organic matters in the kettle body (1), so that colloid in other organic matters adheres to the air bubbles and floats to the liquid level along with the air bubbles.
5. The gelatinizing kettle according to claim 4, wherein the air flotation device further comprises an air blowing mechanism communicated with the air flotation pipe (31) and used for blowing air into the air flotation pipe (31).
6. The gelatinizing kettle according to claim 1, wherein the frictioning device comprises a frictioning plate set, a rotary driving member (42) and a frictioning rod (43), the frictioning rod (43) is rotatably supported on the kettle body (1), the frictioning plate set is connected with the lower end of the frictioning rod (43), the rotary driving member (42) is connected with the upper end of the frictioning rod (43) to drive the frictioning rod (43) to rotate, and the frictioning rod (43) drives the frictioning plate set to rotate to realize frictioning.
7. The gelatinizing kettle according to claim 6, wherein the frictioning device further comprises a lifting driving mechanism disposed between the frictioning rod (43) and the frictioning plate group or between the rotary driving member (42) and the frictioning rod (43) and used for driving the frictioning plate group to lift.
8. The peptizing kettle according to claim 1 or 2, characterized in that the kettle body (1) is provided with a first inlet (12) for the peptizing agent to enter and a second inlet (13) for the organic mixture to enter.
9. The gelling tank as claimed in claim 8, characterized in that a first pump (5) is connected between the external gelling agent supply and the first inlet (12) for the entry of the gelling agent into the first inlet (12), and a second pump (6) is connected between the external organic mixture supply and the second inlet (13) for the entry of the organic mixture into the second inlet (13).
10. The gelling kettle of claim 9, further comprising a controller and a liquid level detection mechanism disposed in the kettle body (1) below the glue outlet (11) and used for generating a stop signal when the liquid level detection mechanism detects that the liquid level of the organic mixture or other organic matters in the kettle body (1) reaches the height of the organic mixture or other organic matters, wherein the liquid level detection mechanism, the first pump (5) and the second pump (6) are respectively in signal connection with the controller, so that the controller controls the first pump (5) and the second pump (6) to stop working after receiving the stop signal.
Priority Applications (1)
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CN201921127396.0U CN210332442U (en) | 2019-07-17 | 2019-07-17 | Gelling kettle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921127396.0U CN210332442U (en) | 2019-07-17 | 2019-07-17 | Gelling kettle |
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CN210332442U true CN210332442U (en) | 2020-04-17 |
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CN201921127396.0U Active CN210332442U (en) | 2019-07-17 | 2019-07-17 | Gelling kettle |
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- 2019-07-17 CN CN201921127396.0U patent/CN210332442U/en active Active
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