CN210385727U - Polymer nanometer repair memory glue preparation device - Google Patents

Polymer nanometer repair memory glue preparation device Download PDF

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Publication number
CN210385727U
CN210385727U CN201921038330.4U CN201921038330U CN210385727U CN 210385727 U CN210385727 U CN 210385727U CN 201921038330 U CN201921038330 U CN 201921038330U CN 210385727 U CN210385727 U CN 210385727U
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reaction kettle
vacuum reaction
vacuum
rod
stirring motor
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CN201921038330.4U
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Chinese (zh)
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胡星
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Jiangxi Sharp European Black Technology Co Ltd
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Jiangxi Sharp European Black Technology Co Ltd
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Abstract

The utility model discloses a memory is restoreed to polymer nanometer and is glued preparation facilities, including support frame, compounding device, transfer jar, vacuum reation kettle and main control unit, compounding device, transfer jar, vacuum reation kettle set up on the support frame, and the compounding device passes through pipe one with the transfer jar and is connected, and the transfer jar passes through pipe two with vacuum reation kettle and is connected. The main controller controls the mixing device, the transfer tank and the vacuum reaction kettle to operate, so that the automatic production of the polymer nano repair memory adhesive is realized.

Description

Polymer nanometer repair memory glue preparation device
Technical Field
The utility model relates to a system glues equipment technical field, especially relates to a preparation facilities is glued to polymer nanometer restoration memory.
Background
The polymer nano-repair memory adhesive is usually applied to the inner layer of a tire, so that the tire is prevented from being punctured and deflated by sharp objects such as nails and the like when a vehicle runs, and the occurrence rate of traffic accidents is further reduced. The preparation method of the polymer nano-repair memory adhesive is complex, the automation degree of the conventional adhesive-making equipment is low, and the industrial mass production is difficult to realize.
SUMMERY OF THE UTILITY MODEL
The utility model provides a preparation facilities is glued to polymer nanometer restoration memory to solve the problem that proposes in the background art.
In order to realize the purpose, the utility model provides a following technical scheme: the utility model provides a preparation facilities is glued to polymer nanometer restoration memory, includes support frame, compounding device, transfer tank, vacuum reation kettle and main control unit, the fixed upper end that sets up at the support frame of compounding device, the transfer tank sets up in the upper end on support frame upper portion, and the compounding device passes through pipe one with the transfer tank to be connected, vacuum reation kettle sets up inside the support frame, and transfer tank and vacuum reation kettle communicate, main control unit sets up the outside at vacuum reation kettle.
Preferably, the compounding device includes storage bucket, inlet pipe, agitator motor one, stirring rod one, bracing piece one, the upper end at the support frame is fixed to bracing piece one lower part, the storage bucket is fixed to bracing piece one upper end, storage bucket upper end one side is provided with the inlet pipe, agitator motor one sets up at storage bucket upper portion intermediate position, and the guide arm of agitator motor one inserts the storage bucket and is connected with stirring rod one.
Preferably, the lower part of the charging bucket is connected with a first conduit, an infusion pump is arranged on the conduit, and the other end of the first conduit is inserted into the transfer tank.
Preferably, the lower part of the transfer tank is provided with a first opening valve and a second conduit, the first opening valve is electrically connected with the time controller, and the transfer tank is connected with the vacuum reaction kettle through the second conduit.
Preferably, the vacuum reaction kettle comprises a second stirring motor, a vacuum controller, a heating plate, a thermometer, a second stirring rod, a discharge port and a second support rod, the lower part of the second support rod is fixed on the lower part of the support frame, the upper end of the second support rod is fixedly supported with the vacuum reaction kettle, the second stirring motor is arranged in the middle position of the top of the vacuum reaction kettle, a guide rod of the second stirring motor is inserted into the vacuum reaction kettle and connected with the second stirring rod, the vacuum controller is arranged on the upper part of the vacuum reaction kettle, the heating plate is arranged on the inner wall of the vacuum reaction kettle, the thermometer is arranged on the outer side of the vacuum reaction kettle, and a probe part of the thermometer is inserted; the bottom of the vacuum reaction kettle is provided with a discharge hole.
Preferably, the lower part of the discharge hole is externally connected with a rubber delivery pipe.
Preferably, the main controller is electrically connected with the time controller, the vacuum controller, the heating plate, the discharge hole, the first stirring motor and the second stirring motor respectively.
Has the advantages that:
1. through main control unit, control time controller, vacuum controller, hot plate, discharge gate, agitator motor one and agitator motor two electricity connection respectively realize the high automated production that a polymer nanometer restoreed memory and glued, be fit for the industrial mass production.
2. The transfer tank is arranged and works in cooperation with the mixing device and the vacuum reaction kettle, so that time and expense caused by the raw material transportation of the mixing device and the vacuum reaction kettle are reduced.
Drawings
FIG. 1 is a schematic diagram of a device for preparing polymer nano-repair memory glue according to the present invention; FIG. 2 is a structure diagram of the vacuum reaction kettle of the present invention.
Illustration of the drawings: 1. a supporting seat; 2. a mixing device; 21. a charging barrel; 22. a feed pipe; 23. a first stirring motor; 24. a first stirring rod; 25. a first supporting rod; 3. a transfer tank; 31. opening the valve; 32. a second conduit; 4. a first conduit; 5. an infusion pump; 6. a vacuum reaction kettle; 61. a second stirring motor; 62. a vacuum controller; 63. heating plates; 64. a thermometer; 65 stirring rod II; 66. a glue outlet; 7. a main controller; 8. a time controller; 9. a rubber delivery pipe.
Detailed Description
The technical solution of the present invention is further explained by the following embodiments with reference to fig. 1 and fig. 2.
As shown in fig. 1 and 2, the utility model provides a memory is restoreed to polymer nanometer and is glued preparation facilities, including support frame 1, compounding device 2, transfer jar 3, vacuum reaction cauldron 6 and main control unit 7, the fixed upper end that sets up at support frame 1 of compounding device 2, transfer jar 3 sets up the upper end on support frame 1 upper portion, compounding device 2 is connected through pipe 4 with transfer jar 3, vacuum reaction cauldron 6 sets up inside support frame 1, transfer jar 3 communicates with vacuum reaction cauldron 6, main control unit 7 sets up the outside at vacuum reaction cauldron 6. The main controller 7 controls the material mixing device 2 to complete material mixing work, and the material mixing device continues to start the next material mixing work after flowing into the transfer tank 3 through the guide pipe 4. The raw materials in the transfer tank 3 flow into the vacuum reaction kettle 6, the controller 7 controls the vacuum reaction kettle 6 to react to complete the preparation of the polymer nano repair memory adhesive, and automatic production is realized.
The material mixing device 2 comprises a material barrel 21, a feeding pipe 22, a first stirring motor 23, a first stirring rod 24 and a first supporting rod 25, the lower portion of the first supporting rod 25 is fixed at the upper end of the supporting frame 1, the material barrel 21 is fixed at the upper end of the first supporting rod 25, the feeding pipe 22 is arranged on one side of the upper end of the material barrel 21, the stirring motor 23 is arranged in the middle of the upper portion of the material barrel 21, a guide rod of the first stirring motor 23 is inserted into the material barrel 21 and is connected with the first stirring rod 24, and the controller 7 is electrically connected with the. Firstly, the flow of the feeding pipe 22 is set, and the controller 7 controls the first stirring motor 23 to rotate and drives the first stirring rod 24 to stir the raw materials.
The lower part of the charging basket 21 is connected with a first conduit 4, a transfusion pump 5 is arranged on the first conduit 4, and the other end of the first conduit 4 is inserted into the transfer tank 3. The stirred raw materials are introduced into the transfer tank 3 through the infusion pump 5, and the glue feeding amount in the transfer tank 3 is regulated and controlled by adjusting the power of the infusion pump 5.
The lower part of the transfer tank 3 is provided with an opening valve 31 and a second conduit 32, the opening valve 31 is electrically connected with the time controller 8, the transfer tank 3 is connected with the vacuum reaction kettle 6 through the second conduit 32, and the time controller 8 is electrically connected with the main controller 7. The working time interval of the time controller 8 is set by the main controller 7, when the time interval reaches a set value, the time controller 8 controls the opening valve 31 to be opened, all the raw materials in the transfer tank 3 are transferred to the vacuum reaction kettle 6 through the second conduit 32, and then the time controller 8 controls the opening valve 31 to be closed again.
The vacuum reaction kettle 6 comprises a second stirring motor 61, a vacuum controller 62, a heating plate 63, a thermometer 64, a second stirring rod 65, a discharge port 66 and a second support rod 67, the lower part of the second support rod 67 is fixed on the lower part of the support frame 1, the vacuum reaction kettle 6 is fixedly supported at the upper end of the second support rod 67, the second stirring motor 61 is arranged at the middle position of the top of the vacuum reaction kettle 6, a guide rod of the second stirring motor 61 is inserted into the vacuum reaction kettle 6 and connected with the second stirring rod 65, the vacuum controller 62 is arranged at the upper part of the vacuum reaction kettle 6, the heating plate 63 is arranged on the inner wall of the vacuum reaction kettle, the thermometer 64 is arranged at the outer side of the vacuum reaction kettle 6, a probe part of the thermometer 64 is inserted into the vacuum reaction kettle (6) to monitor the temperature, the discharge port 66 is arranged at the bottom of the vacuum reaction kettle 6, a, The discharge hole 66 is electrically connected with the second stirring motor 61. After the raw materials enter the vacuum kettle 6, the main controller 7 controls the vacuum reaction kettle 6 to complete the glue making work, the discharge port 66 is controlled to open the discharge, and the discharge port is controlled to close after the discharge is completed. The feed time plus the discharge time plus the reaction time is a work flow, and the work flow time is also the control duration of the time controller 8. When the output of the sizing material in the vacuum reaction kettle 6 is finished, the valve 31 is opened and the sizing material is refilled into the vacuum reaction kettle 6.
The utility model discloses repair the gluey preparation facilities work of memory with main control unit control polymer nanometer, realize that polymer nanometer restores the automated production that memory was glued.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the spirit and scope of the invention. The present invention is not to be limited by the specific embodiments disclosed herein, and other embodiments that fall within the scope of the claims of the present application are intended to be within the scope of the present invention.

Claims (7)

1. A macromolecule nanometer repair memory glue preparation device is characterized in that: comprises a support frame (1), a mixing device (2), a transfer tank (3), a vacuum reaction kettle (6) and a main controller (7);
the mixing device (2) is fixedly arranged at the upper end of the support frame (1);
the transfer tank (3) is arranged at the upper end of the upper part of the support frame (1), and the mixing device (2) is connected with the transfer tank (3) through a first guide pipe (4);
the vacuum reaction kettle (6) is arranged inside the support frame (1);
the transfer tank (3) is communicated with the vacuum reaction kettle (6);
the main controller (7) is arranged on the outer side of the vacuum reaction kettle (6).
2. The device for preparing the polymer nano-repairing memory glue according to claim 1, wherein:
the mixing device (2) comprises a charging bucket (21), a feeding pipe (22), a first stirring motor (23), a first stirring rod (24) and a first supporting rod (25);
the lower part of the first support rod (25) is fixed at the upper end of the support frame (1), and the upper end of the first support rod (25) is fixed with the charging basket (21);
a feeding pipe (22) is arranged on one side of the upper end of the charging bucket (21);
the first stirring motor (23) is arranged in the middle of the upper portion of the charging basket (21), and a guide rod of the first stirring motor (23) is inserted into the charging basket (21) and connected with the first stirring rod (24).
3. The device for preparing the polymer nano-repairing memory glue according to claim 2, wherein:
the lower part of the charging bucket (21) is connected with the first guide pipe (4), the first guide pipe (4) is provided with a liquid conveying pump (5), and the other end of the first guide pipe (4) is inserted into the transfer tank (3).
4. The device for preparing the polymer nano-repairing memory glue according to claim 1, wherein:
the lower part of the transfer tank (3) is provided with an opening valve (31) and a second guide pipe (32);
the opening valve (31) is electrically connected with the time controller (8);
the transfer tank (3) is connected with the vacuum reaction kettle (6) through a second conduit (32).
5. The device for preparing the polymer nano-repairing memory glue according to claim 1, wherein:
the vacuum reaction kettle (6) comprises a second stirring motor (61), a vacuum controller (62), a heating plate (63), a thermometer (64), a second stirring rod (65), a discharge hole (66) and a second support rod (67);
the lower part of the second support rod (67) is fixed at the lower part of the support frame (1), and the upper end of the second support rod (67) is fixedly supported with the vacuum reaction kettle (6);
the second stirring motor (61) is arranged in the middle of the top of the vacuum reaction kettle (6), and a guide rod of the second stirring motor (61) is inserted into the vacuum reaction kettle (6) and is connected with the second stirring rod (65);
the vacuum controller (62) is arranged at the upper part of the vacuum reaction kettle (6);
the heating plate (63) is arranged on the inner wall of the vacuum reaction kettle;
the thermometer (64) is arranged on the outer side of the vacuum reaction kettle (6), and the probe part of the thermometer (64) is inserted into the vacuum reaction kettle (6);
and a discharge hole (66) is formed in the bottom of the vacuum reaction kettle (6).
6. The device for preparing the polymer nano-repairing memory glue according to claim 5, wherein:
the lower part of the discharge hole (66) is externally connected with a rubber delivery pipe (9).
7. The device for preparing the polymer nano-repairing memory glue according to claim 1, wherein:
the main controller (7) is electrically connected with the time controller (8), the vacuum controller (62), the heating plate (63), the discharge hole (66), the first stirring motor (23) and the second stirring motor (61) respectively.
CN201921038330.4U 2019-07-04 2019-07-04 Polymer nanometer repair memory glue preparation device Active CN210385727U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921038330.4U CN210385727U (en) 2019-07-04 2019-07-04 Polymer nanometer repair memory glue preparation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921038330.4U CN210385727U (en) 2019-07-04 2019-07-04 Polymer nanometer repair memory glue preparation device

Publications (1)

Publication Number Publication Date
CN210385727U true CN210385727U (en) 2020-04-24

Family

ID=70352654

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921038330.4U Active CN210385727U (en) 2019-07-04 2019-07-04 Polymer nanometer repair memory glue preparation device

Country Status (1)

Country Link
CN (1) CN210385727U (en)

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