CN213050429U - Raw materials compounding reaction unit for building materials production - Google Patents

Raw materials compounding reaction unit for building materials production Download PDF

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Publication number
CN213050429U
CN213050429U CN202021764235.5U CN202021764235U CN213050429U CN 213050429 U CN213050429 U CN 213050429U CN 202021764235 U CN202021764235 U CN 202021764235U CN 213050429 U CN213050429 U CN 213050429U
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China
Prior art keywords
pipeline
reaction kettle
tank
pump
material tank
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CN202021764235.5U
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Chinese (zh)
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赵江
陈家荣
王庄
张红生
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Fuquan Kaiweite New Materials Co ltd
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Fuquan Kaiweite New Materials Co ltd
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Abstract

The utility model discloses a raw material mixing reaction device for building material production, wherein a first storage box is connected with a first pipeline, a first material supplementing pump is arranged on the first pipeline, the end of the first pipeline is connected with a second pipeline, the second pipeline is connected with a first material tank, a third pipeline is connected and arranged at the bottom of the first material tank, and the third pipeline is connected with a reaction kettle; the second material storage tank is connected with a fourth pipeline, a second material supplementing pump is arranged on the fourth pipeline, the tail end of the fourth pipeline is connected with a fifth pipeline, the fifth pipeline is connected with a second material tank, the bottom of the second material tank is connected with a sixth pipeline, and the sixth pipeline is connected with the reaction kettle; one end of the water tank is connected with a seventh pipeline, a water pump is arranged on the seventh pipeline, the bottom of the water tank is connected with an eighth pipeline, and the eighth pipeline is connected with the reaction kettle; a rotating shaft is arranged in the reaction kettle, the rotating shaft is connected with a first driving motor, and a stirring paddle is arranged on the rotating shaft; the bottom of the reaction kettle is connected with a ninth pipeline. So that the raw materials can be mixed and reacted conveniently.

Description

Raw materials compounding reaction unit for building materials production
Technical Field
The utility model relates to a raw materials compounding technical field, concretely relates to raw materials compounding reaction unit for building materials production.
Background
Building materials are a general term for materials used in civil engineering and construction. It can be divided into structural material, decorative material and some special materials. The structural materials comprise wood, bamboo, stone, cement, concrete, metal, tiles, ceramics, glass, engineering plastics, composite materials and the like. The decorative material comprises various coatings, paints, plating layers, veneers, ceramic tiles with various colors, glass with special effects and the like; the special material is used for water proofing, moisture proofing, corrosion prevention, fire prevention, flame retardance, sound insulation, heat preservation, sealing and the like.
In the production process, raw material mixing is required when the building material is prepared. Therefore, the raw material mixing reaction device for building material production is provided, and the raw material mixing reaction is convenient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a raw materials compounding reaction unit for building materials production solves the problem of reacting after several kinds of raw materials are difficult to mix.
In order to solve the technical problem, the utility model adopts the following technical scheme:
a raw material mixing reaction device for building material production comprises a first storage box, a second storage box, a water tank and a reaction kettle;
the first material storage tank is connected with a first pipeline, a first material supplementing pump is arranged on the first pipeline, the tail end of the first pipeline is connected with a second pipeline, the second pipeline is connected with a first material tank, the bottom of the first material tank is connected with a third pipeline, and the third pipeline is connected with the reaction kettle;
the second material storage tank is connected with a fourth pipeline, a second material supplementing pump is arranged on the fourth pipeline, the tail end of the fourth pipeline is connected with a fifth pipeline, the fifth pipeline is connected with a second material tank, the bottom of the second material tank is connected with a sixth pipeline, and the sixth pipeline is connected with the reaction kettle;
one end of the water tank is connected with a seventh pipeline, a water pump is arranged on the seventh pipeline, the bottom of the water tank is connected with an eighth pipeline, and the eighth pipeline is connected with the reaction kettle;
a rotating shaft is arranged in the reaction kettle, the rotating shaft is connected with a first driving motor, and a stirring paddle is arranged on the rotating shaft;
the bottom of the reaction kettle is connected with a ninth pipeline.
Further, the method comprises the following steps of; and the third pipeline, the sixth pipeline and the eighth pipeline are all provided with a first control valve and a third material supplementing pump.
Further, the method comprises the following steps of; the bottom of the first material tank, the bottom of the second material tank and the bottom of the water tank are all set to be conical, and the bottom of the first material tank, the bottom of the second material tank and the bottom of the water tank are all provided with a support.
Further, the method comprises the following steps of; the number of the first material tank, the second material tank and the reaction kettle is one to five;
the number of the first charging bucket, the second charging bucket and the reaction kettle is consistent.
Further, the method comprises the following steps of; and a second control valve is arranged on the ninth pipeline, the tail end of the ninth pipeline is connected with a tenth pipeline, and a delivery pump is arranged on the tenth pipeline.
Further, the method comprises the following steps of; the side wall of the reaction kettle is arranged to be a cavity structure, a solution is filled in the cavity structure, a heater is arranged in the cavity structure of the reaction kettle, the side wall of the reaction kettle is connected with a circulating pipe, a circulating pump is arranged on the circulating pipe, a vibration net is arranged in the cavity structure of the reaction kettle, and the vibration net is connected with a second driving motor.
Compared with the prior art, the utility model discloses an at least, have one of following beneficial effect:
1. the material of first storage case enters into first material jar, enters into reation kettle by first material jar again, and the material of second storage case enters into the second material jar, enters into reation kettle by the second material jar again, and the water of water tank enters into reation kettle in, several kinds of materials and water of being convenient for mix, satisfy the needs.
2. The support is arranged to play a supporting role.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the reaction kettle of the present invention.
In the figure: the device comprises a first storage tank (1), a first pipeline (2), a first material supplementing pump (3), a second pipeline (4), a first material tank (5), a third pipeline (6), a reaction kettle (7), a second storage tank (8), a fourth pipeline (9), a second material supplementing pump (10), a fifth pipeline (11), a sixth pipeline (12), a water tank (13), a seventh pipeline (14), a water pump (15), an eighth pipeline (16), a rotating shaft (17), a first driving motor (18), a stirring paddle (19), a ninth pipeline (20), a first control valve (21), a third material supplementing pump (22), a support (23), a second control valve (24), a tenth pipeline (25), a conveying pump (26), a heater (27), a circulating pipe (28), a circulating pump (29), a vibration net (30), a second driving motor (31) and a second material tank (32).
Detailed Description
Fig. 1-2 are schematic views illustrating the present invention, and the embodiments and examples are further detailed below to make the objects, technical solutions and advantages of the present invention more clearly understood. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example 1:
a raw material mixing reaction device for building material production comprises a first storage box 1, a second storage box 8, a water tank 13 and a reaction kettle 7;
the first material storage tank 1 is connected with a first pipeline 2, a first material supplementing pump 3 is arranged on the first pipeline 2, the tail end of the first pipeline 2 is connected with a second pipeline 4, the second pipeline 4 is connected with a first material tank 5, the bottom of the first material tank 5 is connected with a third pipeline 6, and the third pipeline 6 is connected with a reaction kettle 7;
the second material storage tank 8 is connected with a fourth pipeline 9, a second material supplementing pump 10 is arranged on the fourth pipeline 9, the tail end of the fourth pipeline 9 is connected with a fifth pipeline 11, the fifth pipeline 11 is connected with a second material tank 32, the bottom of the second material tank 32 is connected with a sixth pipeline 12, and the sixth pipeline 12 is connected with the reaction kettle 7;
one end of the water tank 13 is connected with a seventh pipeline 14, a water pump 15 is arranged on the seventh pipeline 14, the bottom of the water tank 13 is connected with an eighth pipeline 16, and the eighth pipeline 16 is connected with the reaction kettle 7; a rotating shaft 17 is arranged in the reaction kettle 7, the rotating shaft 17 is connected with a first driving motor 18, and a stirring paddle 19 is arranged on the rotating shaft 17;
the bottom of the reaction kettle 7 is connected with a ninth pipeline 20; the material of first storage case 1 enters into first material jar 5, enters into reation kettle 7 by first material jar 5 again, and the material of second storage case 8 enters into second material jar 32, enters into reation kettle 7 by second material jar 32 again, and the water of water tank 13 enters into reation kettle 7 in, several kinds of materials and water of being convenient for mix, satisfy the needs.
Example 2:
on the basis of the embodiment 1, the third pipeline 6, the sixth pipeline 12 and the eighth pipeline 16 are all provided with a first control valve 21 and a third feeding pump 22; and meets the requirement.
Example 3:
on the basis of the embodiment 1-2, the bottoms of the first material tank 5, the second material tank 32 and the water tank 13 are all set to be conical, and the bottoms of the first material tank 5, the second material tank 32 and the water tank 13 are all provided with the bracket 23; the support 23 is arranged to play a supporting role.
Example 4:
on the basis of the embodiments 1-3, the number of the first material tank 5, the second material tank 32 and the reaction kettle 7 is one to five;
the number of the first charging bucket 5, the second charging bucket 32 and the reaction kettle 7 is consistent; the number of the first material tank 5, the second material tank 32 and the reaction kettle 7 is one to five, which is convenient for parallel component stirring and mixing, so that the mixing effect is good.
Example 5:
on the basis of the embodiments 1 to 4, the ninth pipeline 20 is provided with the second control valve 24, the tail end of the ninth pipeline 20 is connected with the tenth pipeline 25, and the tenth pipeline 25 is provided with the delivery pump 26; and the output is convenient.
Example 6:
on the basis of the embodiments 1 to 5, the side wall of the reaction kettle 7 is provided with a cavity structure, the cavity structure is filled with solution, a heater 27 is arranged in the cavity structure of the reaction kettle 7, the side wall of the reaction kettle 7 is connected with a circulating pipe 28, a circulating pump 29 is arranged on the circulating pipe 28, a vibration net 30 is arranged in the cavity structure of the reaction kettle 7, and the vibration net 30 is connected with a second driving motor 31; a heater 27 is arranged in the cavity structure of the reaction kettle 7 to play a role in heating so as to facilitate reaction, and a circulating pipe 28 and a vibrating net 30 are arranged so as to facilitate uniform temperature of the filling solution.
Although the invention has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this invention. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (6)

1. The utility model provides a raw materials compounding reaction unit for building materials production which characterized in that: comprises a first storage box (1), a second storage box (8), a water tank (13) and a reaction kettle (7);
the first storage tank (1) is connected with a first pipeline (2), a first feeding pump (3) is arranged on the first pipeline (2), the tail end of the first pipeline (2) is connected with a second pipeline (4), the second pipeline (4) is connected with a first material tank (5), a third pipeline (6) is connected to the bottom of the first material tank (5), and the third pipeline (6) is connected with a reaction kettle (7);
the second storage tank (8) is connected with a fourth pipeline (9), a second feeding pump (10) is arranged on the fourth pipeline (9), the tail end of the fourth pipeline (9) is connected with a fifth pipeline (11), the fifth pipeline (11) is connected with a second material tank (32), a sixth pipeline (12) is connected to the bottom of the second material tank (32), and the sixth pipeline (12) is connected with the reaction kettle (7);
one end of the water tank (13) is connected with a seventh pipeline (14), a water pump (15) is arranged on the seventh pipeline (14), the bottom of the water tank (13) is connected with an eighth pipeline (16), and the eighth pipeline (16) is connected with the reaction kettle (7);
a rotating shaft (17) is arranged in the reaction kettle (7), the rotating shaft (17) is connected with a first driving motor (18), and a stirring paddle (19) is arranged on the rotating shaft (17);
the bottom of the reaction kettle (7) is connected with a ninth pipeline (20).
2. A raw material mixing reaction device for building material production according to claim 1, characterized in that: and a first control valve (21) and a third material supplementing pump (22) are arranged on the third pipeline (6), the sixth pipeline (12) and the eighth pipeline (16).
3. A raw material mixing reaction device for building material production according to claim 1, characterized in that: the bottom of the first material tank (5), the bottom of the second material tank (32) and the bottom of the water tank (13) are all set to be conical, and the bottom of the first material tank (5), the bottom of the second material tank (32) and the bottom of the water tank (13) are all provided with a support (23).
4. A raw material mixing reaction device for building material production according to claim 1, characterized in that: the number of the first material tank (5), the second material tank (32) and the reaction kettle (7) is one to five;
the number of the first charging bucket (5), the second charging bucket (32) and the reaction kettle (7) is consistent.
5. A raw material mixing reaction device for building material production according to claim 1, characterized in that: and a second control valve (24) is arranged on the ninth pipeline (20), the tail end of the ninth pipeline (20) is connected with a tenth pipeline (25), and a delivery pump (26) is arranged on the tenth pipeline (25).
6. A raw material mixing reaction device for building material production according to claim 1, characterized in that: the side wall of the reaction kettle (7) is arranged to be of a cavity structure, solution is filled in the cavity structure, a heater (27) is arranged in the cavity structure of the reaction kettle (7), the side wall of the reaction kettle (7) is connected with a circulating pipe (28), a circulating pump (29) is arranged on the circulating pipe (28), a vibration net (30) is arranged in the cavity structure of the reaction kettle (7), and the vibration net (30) is connected with a second driving motor (31).
CN202021764235.5U 2020-08-21 2020-08-21 Raw materials compounding reaction unit for building materials production Active CN213050429U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021764235.5U CN213050429U (en) 2020-08-21 2020-08-21 Raw materials compounding reaction unit for building materials production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021764235.5U CN213050429U (en) 2020-08-21 2020-08-21 Raw materials compounding reaction unit for building materials production

Publications (1)

Publication Number Publication Date
CN213050429U true CN213050429U (en) 2021-04-27

Family

ID=75554224

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021764235.5U Active CN213050429U (en) 2020-08-21 2020-08-21 Raw materials compounding reaction unit for building materials production

Country Status (1)

Country Link
CN (1) CN213050429U (en)

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