CN215429075U - Glass lining reaction kettle - Google Patents

Glass lining reaction kettle Download PDF

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Publication number
CN215429075U
CN215429075U CN202121706903.3U CN202121706903U CN215429075U CN 215429075 U CN215429075 U CN 215429075U CN 202121706903 U CN202121706903 U CN 202121706903U CN 215429075 U CN215429075 U CN 215429075U
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China
Prior art keywords
material taking
defoaming
needle tube
base
glass
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CN202121706903.3U
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Chinese (zh)
Inventor
韩青青
杨春东
陈泓
李双满
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Xiuzheng Pharmaceutical Group Liuhe Pharmaceutical Co ltd
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Xiuzheng Pharmaceutical Group Liuhe Pharmaceutical Co ltd
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Publication of CN215429075U publication Critical patent/CN215429075U/en
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Abstract

A glass lining reaction kettle comprises a base, wherein a tank body is fixedly arranged on the base, a top cover is arranged at the top of the tank body, a material taking port is welded in the top cover, a defoaming mechanism is installed on the material taking port through a fixing frame, and a sampling mechanism is installed on the top cover; sampling mechanism can conveniently take out intraductal material and observe its reaction situation, defoaming mechanism can carry out physics or chemical treatment to the bubble that warding off glass reactor contents liquid produced, realizes the function of defoaming, and this device is simple convenient to use.

Description

Glass lining reaction kettle
Technical Field
The utility model belongs to the technical field of reaction kettles, and particularly relates to a glass lining reaction kettle.
Background
The glass lining reactor is made up by lining the glass containing high silicon dioxide on the inner surface of steel container, and burning at high temp. to firmly adhere it on the metal surface to form composite material product, so that it has the double advantages of glass stability and metal strength, and is an excellent corrosion-resisting equipment.
The structure of the existing glass lining reaction kettle is not reasonable enough, in the material reaction process, the material is inconvenient to sample and the whole reaction is stopped to know the material reaction condition, and some materials can generate bubbles in the reaction process, the existing defoaming method is physical defoaming or chemical defoaming, a proper defoaming method is required to be selected according to the condition of specific materials, and a simple device for combining two defoaming methods is not arranged in the prior art.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problems of material sampling and defoaming in a glass reactor, and provides a glass lining reactor which has the technical effects of convenient sampling and the combination of chemical defoaming and physical defoaming.
The technical scheme provided by the utility model is as follows:
a glass lining reaction kettle comprises a base, wherein a tank body is fixedly arranged on the base, a top cover is arranged at the top of the tank body, a material taking port is welded in the top cover, a defoaming mechanism is installed on the material taking port through a fixing frame, and a sampling mechanism is installed on the top cover;
the defoaming mechanism comprises a partition plate, the partition plate is fixedly installed between the tank body and the tank cover, a connecting cavity extends out of the middle of the partition plate, a defoaming needle tube is arranged in the connecting cavity, the defoaming needle tube is of a hollow structure, a rack is arranged at one end of the outer part of the defoaming needle tube, the other end of the defoaming needle tube is a pointed end, the defoaming needle tube is closely and slidably connected with the connecting cavity, a base is arranged on the connecting cavity, the defoaming needle tube penetrates through the base, a gear is rotatably installed at one end of the base, the gear is meshed with the rack, the axis of the gear is in driving connection with a handle, and the other end of the defoaming needle tube is communicated with a material taking port;
the sampling mechanism comprises a fixing frame, wherein one end of the fixing frame is installed at the end part of the material taking opening, the other end of the fixing frame is provided with a material taking pump, the output end of the material taking pump is connected with one end of a material taking pipe, the other end of the material taking pipe is tightly communicated with the material taking opening, the material taking pipe is provided with a first material taking opening and a second material taking opening, and the first material taking opening and the second material taking opening are respectively provided with a first pipe clamp and a second pipe clamp.
Preferably, the other end of the first sampling port is provided with a first hopper.
Preferably, the base is provided with castors at the bottom.
Preferably, a rubber pad is fixedly arranged in the connecting cavity, and the defoaming needle tube is tightly connected with the connecting cavity in a sliding manner through the rubber pad.
Preferably, the handle is a handle with a catch mechanism.
Preferably, a limiting support is fixedly installed on the base and is in sliding connection with the defoaming needle tube, and the limiting support has a limiting effect on the defoaming needle tube.
The beneficial effects of the utility model are embodied in the following aspects:
a glass lining reaction kettle comprises a base, wherein a tank body is fixedly arranged on the base, a top cover is arranged at the top of the tank body, a material taking port is welded in the top cover, a defoaming mechanism is installed on the material taking port through a fixing frame, and a sampling mechanism is installed on the top cover; sampling mechanism can conveniently take out intraductal material and observe its reaction situation, defoaming mechanism can carry out physics or chemical treatment to the bubble that warding off glass reactor contents liquid produced, realizes the function of defoaming, and this device is simple convenient to use.
Drawings
FIG. 1 is a schematic view of the overall structure of a glass lining reactor.
FIG. 2 is a schematic diagram of a defoaming mechanism of a glass lining reaction vessel.
In the figure: the device comprises a base 1, a tank body 2, a top cover 3, a sampling mechanism 4, a defoaming mechanism 5, a partition plate 31, a connecting cavity 32, a material taking port 33, a fixed frame 41, a material taking pipe 42, a first material taking port 43, a first pipe clamp 44, a second pipe clamp 46, a second material taking port 47, a third pipe clamp 48, a material taking pump 49, a defoaming needle tube 51, a base 52, a gear 54, a rack 55 and a limiting support 56.
Detailed Description
The present invention will be further described with reference to the following detailed description, wherein the drawings are for illustrative purposes only and are not intended to be limiting, wherein certain elements may be omitted, enlarged or reduced in size, and are not intended to represent the actual dimensions of the product, so as to better illustrate the detailed description of the utility model.
As shown in figures 1 and 2, the glass lining reaction kettle comprises a base 1, wherein casters are arranged at the bottom of the base 1, and the casters can facilitate the movement of the device. The fixed jar body 2 that is equipped with on the base 1, jar body 2 is the reation kettle jar body 2 that current glass-lined reation kettle used always, has conventional function, need not to describe repeatedly. 2 tops of jar body are equipped with top cap 3, welding material taking port 33 on the top cap 3 is gone up, get and install defoaming mechanism 5 through mount 41 on the material taking port 33, install sampling mechanism 4 on the top cap 3, sampling mechanism 4 can conveniently take out intraductal material and observe its reaction regime, defoaming mechanism 5 can carry out physics or chemical treatment to the bubble that the interior thing liquid of glass lining reation kettle produced, realizes the function of defoaming.
Defoaming mechanism 5, including baffle 31, baffle 31 fixed mounting be in between jar body 2 and the cover, baffle 31 middle part is extended and is connected chamber 32, be equipped with defoaming needle tubing 51 in connecting chamber 32, defoaming needle tubing 51 is well logical structure, the outside one end of defoaming needle tubing 51 is equipped with rack 55, the defoaming needle tubing 51 other end is most advanced, defoaming needle tubing 51 with connect the inseparable sliding connection in chamber 32, the concrete connection is: a rubber pad is fixedly arranged in the connecting cavity 32, and the defoaming needle tube 51 is tightly connected with the connecting cavity in a sliding manner through the rubber pad. Be equipped with base 52 on the connection chamber 32, defoaming needle tube 51 passes base 52, the rotatable installation gear 54 of base 52 one end, gear 54 with rack 55 meshes mutually, gear 54 axle center is connected with the handle drive, the defoaming needle tube 51 other end communicates with each other with material taking port 33 and is connected, the handle is for having the handle of card clamping mechanism, fixed mounting limit bracket 56 on the base 52, limit bracket 56 with defoaming needle tube 51 sliding connection, limit bracket 56 is right defoaming needle tube 51 plays limiting displacement. According to the needs of the interior material reaction condition of jar body 2 during the use, when needing the physics defoaming, it is rotatory to drive gear 54 through rotating the handle, thereby it removes to drive rack 55, thereby drive defoaming needle tubing 51 and move down and contact and pierce through the bubble, the reverse rotation handle, defoaming needle tubing 51 rises, gaseous accessible defoaming needle tubing 51's lumen is got rid of outside the jar through sampling mechanism 4, equally accessible sampling mechanism 4 and defoaming needle tubing 51 inject the chemistry defoaming agent into jar body 2 in, realize the chemistry defoaming function.
The sampling mechanism 4 comprises a fixed frame 41, one end of the fixed frame 41 is installed at the end part of the material taking port 33, the other end of the fixed frame 41 is provided with a material taking pump 49, the output end of the material taking pump 49 is connected with one end of a material taking pipe 42, the other end of the material taking pipe 42 is tightly communicated and connected with the material taking port 33, a sealing rubber ring can be arranged at the contact part of the material taking pipe 42 and the material taking port 33 to ensure the tightness of the connection of the other end of the material taking pipe 42 and the material taking port 33, the material taking pipe 42 is provided with a first material taking port 43 and a second material taking port 47, the first material taking port 43 and the second material taking port 47 are respectively provided with a first pipe clamp 44 and a second pipe clamp 46, the other end of the first sampling port is provided with a first hopper, the output end of the material taking pump 49 is connected with other equipment, when in use, a defoaming needle tube 51 is in contact with materials in the tank, the material taking pump 49 is started, the first pipe clamp 44 is closed, the second pipe clamp 46 and a third pipe clamp 48 is started, the solution flows out from the second material inlet 47, and the solution to be measured is retained. The material taking pump 49 is turned off, the second pipe clamp 46 and the third pipe clamp 48 are turned off, and the redundant liquid flows into the first material taking port 43 and enters the tank body 2 again through the first material taking port 43 and the defoaming mechanism 5, and when the chemical defoaming agent needs to be injected, the liquid can also enter through the first material taking port 43, and the entering mode is as described above.
While embodiments of the utility model have been disclosed above, it is not intended to be limited to the uses set forth in the specification and examples. It can be applied to all kinds of fields suitable for the present invention. All the above-mentioned electric components are matched and belong to the existent technology. Additional modifications will readily occur to those skilled in the art. It is therefore intended that the utility model not be limited to the exact details and illustrations described and illustrated herein, but fall within the scope of the appended claims and equivalents thereof.

Claims (6)

1. A glass lining reaction kettle is characterized by comprising a base, wherein a tank body is fixedly arranged on the base, a top cover is arranged at the top of the tank body, a material taking port is welded in the top cover, a defoaming mechanism is installed on the material taking port through a fixing frame, and a sampling mechanism is installed on the top cover;
the defoaming mechanism comprises a partition plate, the partition plate is fixedly installed between the tank body and the tank cover, a connecting cavity extends out of the middle of the partition plate, a defoaming needle tube is arranged in the connecting cavity, the defoaming needle tube is of a hollow structure, a rack is arranged at one end of the outer part of the defoaming needle tube, the other end of the defoaming needle tube is a pointed end, the defoaming needle tube is closely and slidably connected with the connecting cavity, a base is arranged on the connecting cavity, the defoaming needle tube penetrates through the base, a gear is rotatably installed at one end of the base, the gear is meshed with the rack, the axis of the gear is in driving connection with a handle, and the other end of the defoaming needle tube is communicated with a material taking port;
the sampling mechanism comprises a fixing frame, wherein one end of the fixing frame is installed at the end part of the material taking opening, the other end of the fixing frame is provided with a material taking pump, the output end of the material taking pump is connected with one end of a material taking pipe, the other end of the material taking pipe is tightly communicated with the material taking opening, the material taking pipe is provided with a first material taking opening and a second material taking opening, and the first material taking opening and the second material taking opening are respectively provided with a first pipe clamp and a second pipe clamp.
2. A glass-lined reactor as recited in claim 1, wherein a first hopper is installed at the other end of said first material taking port.
3. A glass-lined reactor as defined in claim 1, wherein casters are mounted on the bottom of said base.
4. A glass-lined reactor as defined in claim 1, wherein said connection cavity is fixed with a rubber pad, and said defoaming needle tube and said connection cavity are closely and slidably connected through the rubber pad.
5. The glass-lined reactor of claim 1, wherein the handle is a handle with a catch mechanism.
6. A glass lining reactor as claimed in claim 1, wherein the base is fixedly provided with a limiting bracket, the limiting bracket is slidably connected with the defoaming needle tube, and the limiting bracket limits the defoaming needle tube.
CN202121706903.3U 2021-07-26 2021-07-26 Glass lining reaction kettle Active CN215429075U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121706903.3U CN215429075U (en) 2021-07-26 2021-07-26 Glass lining reaction kettle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121706903.3U CN215429075U (en) 2021-07-26 2021-07-26 Glass lining reaction kettle

Publications (1)

Publication Number Publication Date
CN215429075U true CN215429075U (en) 2022-01-07

Family

ID=79684547

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121706903.3U Active CN215429075U (en) 2021-07-26 2021-07-26 Glass lining reaction kettle

Country Status (1)

Country Link
CN (1) CN215429075U (en)

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