CN216825809U - Sealed raw materials mixing device that glues - Google Patents

Sealed raw materials mixing device that glues Download PDF

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Publication number
CN216825809U
CN216825809U CN202123414143.1U CN202123414143U CN216825809U CN 216825809 U CN216825809 U CN 216825809U CN 202123414143 U CN202123414143 U CN 202123414143U CN 216825809 U CN216825809 U CN 216825809U
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fixed
raw materials
tube
stirring
buffer tube
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CN202123414143.1U
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王勇
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Changzhou Kofi Automation Technology Co ltd
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Changzhou Kofi Automation Technology Co ltd
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Abstract

The utility model belongs to sealed glue production facility field, especially is a sealed glue raw materials mixing device, including agitator tank and two loading hoppers fixed at its top surface, the bottom surface of agitator tank is fixed with the row material pipe, the bottom surface central point department of agitator tank rotates and runs through has lower takeover, the top surface central point department of agitator tank rotates and runs through has upper takeover, be fixed with four stirring pipes that evenly arrange in circumference between lower takeover and the upper takeover; when the stirring, can produce a large amount of heats, too high temperature probably leads to the raw materials degeneration, advances to manage through cold water and pours into cold water into in the buffer pipe downwards, takes over the pivoted down in, cold water still via taking over down and carry to the stirred tube in, the stirred tube is to raw materials cooling when stirring the raw materials, and cools off the inside of raw materials stirring through the stirred tube, in the cooling, the raw materials is stirred, the mobility of raw materials is better, prevents that the raw materials cooling from solidifying.

Description

Sealed raw materials mixing device that glues
Technical Field
The utility model relates to a sealed production facility field of gluing specifically is a sealed raw materials mixing device that glues.
Background
The sealant is a sealing material which deforms along with the shape of the sealing surface, is not easy to flow and has certain cohesiveness, is an adhesive used for filling a formation gap to play a role in sealing, has the functions of leakage prevention, water prevention, vibration prevention, sound insulation, heat insulation and the like, and is prepared by mixing raw materials in various proportions in the production process of the sealant, and uniformly mixing the raw materials by using a uniformly mixing device.
Chinese patent discloses a sealed glue mixing stirring device, (No. CN209791342U), this patent technology is in order to avoid causing the influence to the property of material, set up the intermediate layer in the barrel wall of primary bucket and second grade bucket, and set up the cooling water course around barrel body spiral setting in the intermediate layer, cool off the mixture, however, its mixture that only can pass through the section of thick bamboo wall to the outside cools off, and the mixture mobility in the outside is relatively poor, when directly being cooled by the low temperature, take place the bonding on the barrel wall easily, take place to solidify even, lead to the misce bene degree of raw materials to reduce. Therefore, the technical personnel in the field provide a sealant raw material blending device to solve the problems in the background art.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a sealed raw materials mixing device of gluing to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a sealant raw material blending device, which comprises a stirring tank and two charging hoppers fixed on the top surface of the stirring tank, a discharge pipe is fixed on the bottom surface of the stirring tank, a lower connecting pipe is rotatably penetrated through the center of the bottom surface of the stirring tank, an upper connecting pipe is rotatably penetrated through the center of the top surface of the stirring tank, four stirring pipes which are uniformly arranged in the circumferential direction are fixed between the lower connecting pipe and the upper connecting pipe, the stirring pipe is positioned in the stirring tank, one side of the lower connecting pipe close to the bottom end is coaxially sleeved and fixed with a first belt pulley, the lower connecting pipe also comprises a motor, a second belt pulley is fixed at the output end of the motor, the second belt pulley is connected with the first belt pulley through a belt in a transmission way, the motor is installed the agitator tank outside, the lower coupling assembling that is used for supplying water is installed to the bottom of takeover down, the last coupling assembling that is used for the drainage is installed on the top of going up the takeover.
As a further aspect of the present invention: the outer wall cover of agitator tank is equipped with the heating jacket, the lateral wall top of heating jacket is fixed with the inlet tube, the lateral wall bottom mounting of agitator tank has the outlet pipe.
As a further aspect of the present invention: the motor is fixed on the outer wall of the heating sleeve.
As a further aspect of the present invention: and four heat exchange fins which are uniformly arranged in the circumferential direction are fixed on the outer wall of each stirring pipe.
As a further aspect of the present invention: lower coupling assembling includes buffer tube down and fixes the lower mechanical seal on its top, down take over through lower mechanical seal with lower buffer tube seal rotates and connects, just the bottom of taking over down extends to buffer tube is inside down, the both sides of buffer tube are fixed with hot water respectively down and advance the pipe and cold water advances the pipe, the buffer tube passes through the support to be fixed down the bottom surface of agitator tank.
As a further aspect of the present invention: the upper connecting assembly comprises an upper buffer tube and an upper mechanical seal fixed at the bottom end of the upper buffer tube, the upper connecting tube is in sealed rotary connection with the upper buffer tube through the upper mechanical seal, the top end of the upper connecting tube extends into the upper buffer tube, a drain pipe is fixed at the top end of the upper buffer tube, and the upper buffer tube is fixed at the top surface of the stirring tank through a support.
As a further aspect of the present invention: four supporting legs which are uniformly arranged in the circumferential direction are fixed on the bottom surface of the stirring tank.
Compared with the prior art, the beneficial effects of the utility model are that:
when the stirring, can produce a large amount of heats, too high temperature probably leads to the raw materials degeneration, advance the intraductal cold water of pouring into of tub downwards buffer through cold water, because take over down and be connected with the sealed rotation of buffer tube down through mechanical seal, consequently, take over pivoted down, cold water still is carried to the stirred tube via taking over down, the stirred tube cools down the raw materials when stirring the raw materials, and cools off the inside of raw materials stirring through the stirred tube, in the cooling, the raw materials is stirred, the mobility of raw materials is better, prevent that the raw materials from cooling from solidifying.
Drawings
FIG. 1 is a schematic structural diagram of a sealant raw material blending device;
FIG. 2 is a schematic diagram of the internal structure of a stirring tank in a sealant raw material blending device;
FIG. 3 is an enlarged view of the point A in FIG. 2;
FIG. 4 is a schematic diagram showing the position distribution of the stirring pipes in the sealant raw material blending device;
FIG. 5 is a schematic diagram of a position distribution structure of heat exchange fins in a sealant material blending device.
In the figure: 1. a stirring tank; 11. a hopper; 12. a discharge pipe; 13. heating a jacket; 131. a water inlet pipe; 132. a water outlet pipe; 14. a support leg; 2. a lower connecting pipe; 21. a stirring pipe; 211. a heat exchanger fin; 22. an upper connecting pipe; 23. a first pulley; 24. a motor; 25. a second pulley; 3. a lower connecting assembly; 31. a lower buffer tube; 32. lower mechanical sealing; 33. a hot water inlet pipe; 34. a cold water inlet pipe; 4. an upper connection assembly; 41. an upper buffer tube; 42. mechanically sealing the upper part; 43. and a water discharge pipe.
Detailed Description
Referring to fig. 1-5, in the embodiment of the present invention, a sealant material blending device comprises an agitator tank 1 and two hoppers 11 fixed on the top surface thereof, a material discharging pipe 12 is fixed on the bottom surface of the agitator tank 1, a lower connecting pipe 2 is rotatably penetrated through the center position of the bottom surface of the agitator tank 1, an upper connecting pipe 22 is rotatably penetrated through the center position of the top surface of the agitator tank 1, four stirring pipes 21 uniformly arranged in the circumferential direction are fixed between the lower connecting pipe 2 and the upper connecting pipe 22, the stirring pipes 21 are located inside the agitator tank 1, a first belt pulley 23 is coaxially sleeved and fixed on one side of the lower connecting pipe 2 close to the bottom end, the lower connecting pipe 2 further comprises a motor 24, a second belt pulley 25 is fixed on the output end of the motor 24, the second belt pulley 25 is connected with the first belt pulley 23 through a belt transmission, the motor 24 is installed outside the agitator tank 1, a lower connecting component 3 for supplying water is installed on the bottom end of the lower connecting pipe 2, the upper connection pipe 22 has an upper connection assembly 4 mounted at the top end thereof for discharging water.
In this embodiment: when the stirring device is used, raw materials are put into the stirring tank 1 through the feeding hopper 11, the motor 24 is started, the second belt pulley 25 on the motor 24 drives the first belt pulley 23 to rotate through a belt, the first belt pulley 23 drives the lower connecting pipe 2, the stirring pipe 21 and the upper connecting pipe 22 to synchronously rotate, the stirring pipe 21 stirs and mixes the raw materials, the raw materials are uniformly mixed and then discharged through the discharging pipe 12, a large amount of heat is generated during stirring, the raw materials are possibly denatured due to overhigh temperature, cold water is injected into the lower buffer pipe 31 through the cold water inlet pipe 34, the lower connecting pipe 2 is in sealed rotating connection with the lower buffer pipe 31 through the lower mechanical seal 32, therefore, when the lower connecting pipe 2 rotates, the cold water is still conveyed into the stirring pipe 21 through the lower connecting pipe 2, the stirring pipe 21 cools the raw materials while stirring the raw materials, and the stirring pipe 21 cools the interior of the raw materials, when the raw materials are cooled and stirred, the flowability of the raw materials is better, the raw materials are prevented from being cooled and solidified, if the environmental temperature is lower and the flowability of the raw materials is poor, hot water is injected into the lower buffer tube 31 through the hot water inlet tube 33, the hot water is conveyed into the stirring tube 21 through the lower connecting tube 2, the stirring tube 21 heats the raw materials while stirring the raw materials, the flowability of the raw materials is increased, the mixing efficiency is improved, cold water or hot water is conveyed into the upper buffer tube 41 through the upper connecting tube 22 and then discharged through the water discharge tube 43, because the upper connecting tube 22 is in sealed rotating connection with the upper buffer tube 41 through the upper mechanical seal 42, the water can still be discharged into the upper buffer tube 41 while the upper connecting tube 22 rotates, when the stirring tank is used, the hot water can be conveyed into the heating jacket 13 through the water inlet tube 131, the water bath heating is carried out on the side wall of the stirring tank 1, and the raw materials are prevented from being solidified due to the low temperature of the side wall of the stirring tank 1, the heat-exchanged hot water is discharged through the water outlet pipe 132.
In fig. 1 and 2: the outer wall cover of agitator tank 1 is equipped with heating jacket 13, and the lateral wall top of heating jacket 13 is fixed with inlet tube 131, and the lateral wall bottom mounting of agitator tank 1 has outlet pipe 132, and in the use, accessible inlet tube 131 carries hot water in to heating jacket 13, carries out the water bath heating to the lateral wall of agitator tank 1, prevents that the raw materials from crossing low and taking place to solidify because of the lateral wall temperature of agitator tank 1, and hot water after the heat exchange is discharged via outlet pipe 132.
In fig. 1 and 2: the motor 24 is fixed on the outer wall of the heating sleeve 13, the installation position space of the motor 24 is large, and the subsequent maintenance is convenient.
In fig. 2, 4 and 5: the outer wall of stirring pipe 21 all is fixed with four circumference evenly arranged's heat exchanger fin 211, and heat exchanger fin 211 can effectively increase the area of heat conduction, improves heat exchange efficiency, increases the stirring area simultaneously, improves stirring efficiency.
In fig. 1, 2 and 3: the lower connection component 3 comprises a lower buffer tube 31 and a lower mechanical seal 32 fixed at the top end thereof, the lower connection tube 2 is connected with the lower buffer tube 31 in a sealing and rotating manner through the lower mechanical seal 32, the bottom end of the lower connection tube 2 extends into the lower buffer tube 31, a hot water inlet tube 33 and a cold water inlet tube 34 are respectively fixed at two sides of the lower buffer tube 31, the lower buffer tube 31 is fixed at the bottom surface of the stirring tank 1 through a bracket, a large amount of heat is generated during stirring, the raw materials are likely to be denatured due to overhigh temperature, cold water is injected into the lower buffer tube 31 through the cold water inlet tube 34, the lower connection tube 2 is connected with the lower buffer tube 31 in a sealing and rotating manner through the lower mechanical seal 32, therefore, when the lower connection tube 2 rotates, the cold water is still conveyed into the stirring tube 21 through the lower connection tube 2, the stirring tube 21 cools the raw materials while stirring the raw materials, and cools the interior of the raw materials stirred through the stirring tube 21, when the raw materials are cooled and stirred, the flowability of the raw materials is good, the raw materials are prevented from being cooled and solidified, if the environmental temperature is low and the flowability of the raw materials is poor, hot water is injected into the lower buffer tube 31 through the hot water inlet tube 33, the hot water is conveyed into the stirring tube 21 through the lower connecting tube 2, and the stirring tube 21 heats the raw materials while stirring the raw materials, so that the flowability of the raw materials is improved, and the mixing efficiency is improved.
In fig. 1, 2 and 3: the upper connection assembly 4 includes an upper buffer tube 41 and an upper mechanical seal 42 fixed at the bottom end thereof, the upper connection tube 22 is rotatably connected to the upper buffer tube 41 through the upper mechanical seal 42 in a sealing manner, and the top end of the upper connection tube 22 extends into the upper buffer tube 41, a drain tube 43 is fixed at the top end of the upper buffer tube 41, the upper buffer tube 41 is fixed at the top surface of the agitation tank 1 through a bracket, cold water or hot water is supplied into the upper buffer tube 41 through the upper connection tube 22 and then discharged through the drain tube 43, and since the upper connection tube 22 is rotatably connected to the upper buffer tube 41 through the upper mechanical seal 42 in a sealing manner, water can be discharged into the upper buffer tube 41 while the upper connection tube 22 is rotated.
In fig. 1 and 2: four supporting legs 14 which are uniformly arranged in the circumferential direction are fixed on the bottom surface of the stirring tank 1, the whole device is stably supported through the four supporting legs 14, and the device is placed to topple during operation.
The utility model discloses a theory of operation is: when the stirring device is used, raw materials are put into the stirring tank 1 through the feeding hopper 11, the motor 24 is started, the second belt pulley 25 on the motor 24 drives the first belt pulley 23 to rotate through a belt, the first belt pulley 23 drives the lower connecting pipe 2, the stirring pipe 21 and the upper connecting pipe 22 to synchronously rotate, the stirring pipe 21 stirs and mixes the raw materials, the raw materials are uniformly mixed and then discharged through the discharging pipe 12, a large amount of heat is generated during stirring, the raw materials are possibly denatured due to overhigh temperature, cold water is injected into the lower buffer pipe 31 through the cold water inlet pipe 34, the lower connecting pipe 2 is in sealed rotating connection with the lower buffer pipe 31 through the lower mechanical seal 32, therefore, when the lower connecting pipe 2 rotates, the cold water is still conveyed into the stirring pipe 21 through the lower connecting pipe 2, the stirring pipe 21 cools the raw materials while stirring the raw materials, and the stirring pipe 21 cools the interior of the raw materials, when the raw materials are cooled and stirred, the flowability of the raw materials is better, the raw materials are prevented from being cooled and solidified, if the environmental temperature is lower and the flowability of the raw materials is poor, hot water is injected into the lower buffer tube 31 through the hot water inlet tube 33, the hot water is conveyed into the stirring tube 21 through the lower connecting tube 2, the stirring tube 21 heats the raw materials while stirring the raw materials, the flowability of the raw materials is increased, the mixing efficiency is improved, cold water or hot water is conveyed into the upper buffer tube 41 through the upper connecting tube 22 and then discharged through the water discharge tube 43, because the upper connecting tube 22 is in sealed rotating connection with the upper buffer tube 41 through the upper mechanical seal 42, the water can still be discharged into the upper buffer tube 41 while the upper connecting tube 22 rotates, when the stirring tank is used, the hot water can be conveyed into the heating jacket 13 through the water inlet tube 131, the water bath heating is carried out on the side wall of the stirring tank 1, and the raw materials are prevented from being solidified due to the low temperature of the side wall of the stirring tank 1, the heat-exchanged hot water is discharged through the water outlet pipe 132.
The above-mentioned, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (7)

1. The utility model provides a sealed raw materials mixing device that glues, its characterized in that includes agitator tank (1) and fixes two loading hoppers (11) at its top surface, the bottom surface of agitator tank (1) is fixed with row material pipe (12), the bottom surface central point department of putting of agitator tank (1) rotates and runs through down and take over (2), the top surface central point department of putting of agitator tank (1) rotates and runs through and has last takeover (22), take over (2) down and be fixed with agitator pipe (21) that four circumference were evenly arranged between takeover (22), agitator pipe (21) are located the inside of agitator tank (1), take over (2) down and be close to one side coaxial cover of bottom and establish and be fixed with first belt pulley (23), take over (2) still includes motor (24) down, the output of motor (24) is fixed with second belt pulley (25), second belt pulley (25) with first belt pulley (23) pass through belt transmission and connect, install motor (24) agitator tank (1) the outside, lower coupling assembling (3) that are used for supplying water are installed to the bottom of takeover (2) down, last coupling assembling (4) that are used for the drainage are installed on the top of going up takeover (22).
2. The sealant raw material blending device according to claim 1, wherein a heating jacket (13) is sleeved on an outer wall of the stirring tank (1), a water inlet pipe (131) is fixed at a top end of a side wall of the heating jacket (13), and a water outlet pipe (132) is fixed at a bottom end of a side wall of the stirring tank (1).
3. The sealant raw material blending device according to claim 2, wherein the motor (24) is fixed on the outer wall of the heating jacket (13).
4. The sealant raw material blending device according to claim 1, wherein four heat exchanging fins (211) are fixed on the outer wall of the stirring pipe (21) and are uniformly arranged in the circumferential direction.
5. The sealant raw material mixing device according to claim 1, wherein the lower connecting assembly (3) comprises a lower buffer tube (31) and a lower mechanical seal (32) fixed at the top end of the lower buffer tube, the lower connecting tube (2) is connected with the lower buffer tube (31) in a sealing and rotating manner through the lower mechanical seal (32), the bottom end of the lower connecting tube (2) extends to the inside of the lower buffer tube (31), a hot water inlet tube (33) and a cold water inlet tube (34) are respectively fixed at two sides of the lower buffer tube (31), and the lower buffer tube (31) is fixed at the bottom surface of the stirring tank (1) through a support.
6. The sealant raw material mixing device according to claim 1, wherein the upper connecting assembly (4) comprises an upper buffer tube (41) and an upper mechanical seal (42) fixed at the bottom end thereof, the upper connecting tube (22) is connected with the upper buffer tube (41) in a sealing and rotating manner through the upper mechanical seal (42), the top end of the upper connecting tube (22) extends into the upper buffer tube (41), a drain pipe (43) is fixed at the top end of the upper buffer tube (41), and the upper buffer tube (41) is fixed at the top surface of the stirring tank (1) through a bracket.
7. The sealant raw material blending device according to claim 1, wherein four support legs (14) are fixed on the bottom surface of the stirring tank (1) and are uniformly arranged in the circumferential direction.
CN202123414143.1U 2021-12-31 2021-12-31 Sealed raw materials mixing device that glues Active CN216825809U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123414143.1U CN216825809U (en) 2021-12-31 2021-12-31 Sealed raw materials mixing device that glues

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123414143.1U CN216825809U (en) 2021-12-31 2021-12-31 Sealed raw materials mixing device that glues

Publications (1)

Publication Number Publication Date
CN216825809U true CN216825809U (en) 2022-06-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123414143.1U Active CN216825809U (en) 2021-12-31 2021-12-31 Sealed raw materials mixing device that glues

Country Status (1)

Country Link
CN (1) CN216825809U (en)

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