Special gelatin melting tank for vegetable gelatin

By installing a bottom powder inlet and a stirring rod device in the specialized plant gum container, the problem of raw material loss during vacuuming was solved, achieving a high-precision mixing and low-waste production process, and improving the quality of plant gum preparation.

CN223555877UActive Publication Date: 2025-11-18WEIFANG AOLIKE PHARMA MACHINERY
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Patent Information

Application Number
CN202520158725.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-11-18
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing plant gum mixing devices often cause raw materials to leak out with the air during vacuum feeding, resulting in waste and inaccurate mixing ratios, which affects the mixing effect.

Method used

Design a specialized plant gum container with the gum powder inlet located at the bottom of the mixing tank. Combined with a stirring rod device and a heating layer assembly, the gum powder is drawn in by negative pressure and directly mixed with the liquid material in the mixing tank, avoiding raw material loss. The mixing efficiency is improved by the stirring blade assembly.

Benefits of technology

It improved the accuracy of raw material preparation, reduced the waste rate of raw materials, and enhanced the mixing effect and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of mixing tanks, and discloses a special gelatin melting tank for vegetable gelatin, which comprises a mixing tank body, a tank top seal head is integrally connected above the mixing tank body, a stirring rod device is arranged in the mixing tank body, and a driving component for driving the stirring rod device to rotate is arranged above the tank top seal head. A heating layer assembly used for heating the mixing tank body is arranged on the outer side of the mixing tank body, a vacuum opening is formed in the upper portion of the tank top end socket, purified water for preparing a vegetable glue solution is stored in the mixing tank body, and a glue powder inlet is eccentrically formed in the bottom of the mixing tank body; a gelatin powder material for preparing a vegetable gelatin solution enters the mixing tank body through a gelatin powder inlet in the bottom of the mixing tank body; according to the utility model, vegetable gelatin raw materials can be prevented from flowing out along with air in the vacuumizing process, the configuration precision is improved, the waste rate of the raw materials is reduced, the whole structure is simple, the use is convenient, and the use effect can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of mixing tank, specifically relates to a plant glue special gel tank. BACKGROUND

[0002] Plant glue is a kind of glue liquid made of plant glue powder, glycerol and purified water, and has the advantages of natural plant extraction, no odor, no preservative and no bactericide, and can be widely applied to food, health care and medical industries.

[0003] In the production and preparation of plant glue, plant glue liquid mixing and stirring device is generally used to prepare plant glue raw materials, and plant glue raw materials are put into plant glue liquid mixing and stirring device, and plant glue raw materials are stirred and mixed by plant glue liquid mixing and stirring device to obtain plant glue liquid with viscosity.

[0004] The existing plant glue liquid mixing and stirring device is various, such as the Chinese utility model patent with patent application number CN202022183347.8, which discloses a plant capsule glue liquid mixing and stirring device, which comprises a mounting bracket, a stirring barrel is arranged in the middle of the mounting bracket, a sealing cover is arranged on the top surface of the stirring barrel, a stirring motor is arranged in the middle of the top surface of the sealing cover, a stirring shaft located in the stirring barrel is connected to the stirring motor, a plurality of stirring paddles are arranged on the stirring shaft, a plurality of flow holes are arranged on the stirring paddles, a glue liquid inlet pipe, a batching inlet pipe, a vacuum valve and a balance valve are arranged on both sides of the stirring motor, a multi-interface piece is connected to the end of the batching inlet pipe, a batching pipe is connected to each interface of the multi-interface piece, a plurality of evenly distributed horizontal auxiliary devices and vertical auxiliary devices are arranged on the inner side wall of the stirring barrel, and each horizontal auxiliary device is provided with an electric heating element, a discharge pipe is arranged on the bottom surface of the stirring barrel, and a discharge valve is arranged on the discharge pipe.

[0005] The above-mentioned plant glue mixing and stirring device uses a vacuum device to vacuumize the stirring barrel, and then the prepared material is sucked into the stirring barrel through the suction force of the vacuum negative pressure and the opening of the feeding port, but the feeding port of the existing plant glue mixing and stirring device is arranged above the stirring barrel and located on one side of the vacuum valve, and since the plant glue raw material is light, the plant glue raw material will flow away directly with the vacuumization during the vacuum suction feeding process, causing a large amount of waste of plant glue raw material, and the configuration proportion of the raw material is not accurate, which affects the mixing effect of the plant glue liquid and reduces the production effect. UTILITY MODEL CONTENTS

[0006] The main technical problem to be solved by the utility model is to provide a plant glue special gel tank, which can avoid the plant glue raw material flowing out with air during the vacuumization process, improve the configuration accuracy, reduce the waste rate of raw materials, and has a simple overall structure, is convenient to use, and can improve the use effect.

[0007] To solve the above technical problems, the utility model provides the following technical scheme:

[0008] A kind of special glue tank for plant glue, including mixing tank body, the upper portion of mixing tank body is integrally connected with tank top head, stirring rod device is provided in mixing tank body, the upper portion of tank top head is provided with the driving assembly for driving stirring rod device to rotate, the outside of mixing tank body is provided with heating layer component for heating mixing tank body, the upper portion of tank top head is provided with vacuum port, purified water for preparing plant glue solution is stored in mixing tank body, the eccentricity of the bottom of mixing tank body is provided with glue powder import, and glue powder material for preparing plant glue solution enters mixing tank body by the glue powder import of mixing tank body bottom.

[0009] The following is the further optimization of the technical scheme of the application:

[0010] The glue powder import is provided with glue powder import on-off valve, which is used to open or close the glue powder import.

[0011] Further optimization: the bottom of the mixing tank body is provided with a temperature detection port, and a temperature detection probe is installed at the temperature detection port, the detection end of the temperature detection probe is located inside the mixing tank body, and the temperature detection probe is used to detect the real-time temperature of the material in the mixing tank body.

[0012] Further optimization: the stirring rod device includes a driven shaft, a stirring driving shaft is drivingly connected to the upper end of the driven shaft through a connecting assembly, the upper end of the stirring driving shaft penetrates the tank top head, a rotating sleeve assembly for rotatingly supporting and connecting the stirring driving shaft is provided on the inner top surface of the tank top head, and a stirring blade assembly is provided on the outer surface of the driven shaft.

[0013] Further optimization: the rotating sleeve assembly includes a reinforcing shaft sleeve that is sleeved on the outer surface of the stirring driving shaft, the upper end of the reinforcing shaft sleeve is fixedly installed on the tank top head, a bearing seat, a mechanical seal seat and a mechanical seal cover are sequentially provided on the lower end surface of the reinforcing shaft sleeve, the bearing seat, the mechanical seal seat and the mechanical seal cover are coaxially sleeved on the stirring driving shaft, and are fixedly connected with the reinforcing shaft sleeve by a bolt pair.

[0014] Further optimization: the stirring blade assembly includes a plurality of arc-shaped stirring paddles, the arc-shaped surfaces of the arc-shaped stirring paddles are correspondingly arranged with the inner bottom surface of the mixing tank body, and the plurality of arc-shaped stirring paddles are annularly and spacedly arranged along the axis of the driven shaft; one end of the arc-shaped stirring paddle is fixedly installed on the driven shaft, and the other end of the arc-shaped stirring paddle is fixedly installed with a reinforcing connecting rod, and the other end of the reinforcing connecting rod is fixedly connected with the driven shaft.

[0015] Further optimization: the passive shaft is provided with a plurality of spiral stirring rods above the arc-shaped stirring paddle, the spiral stirring rods are spirally arranged, and the spiral stirring rods are annularly and spacedly arranged along the axis of the passive shaft; one end of the spiral stirring rod is fixedly installed on the passive shaft, and the other end of the spiral stirring rod is fixedly installed with a connecting reinforcing rod, and the other end of the connecting reinforcing rod is fixedly connected with the passive shaft.

[0016] Further optimization: a plurality of transverse stirring rods are fixedly installed on the passive shaft below the connecting reinforcing rod and are annularly and spacedly arranged along the axis of the passive shaft, and each transverse stirring rod is horizontally arranged.

[0017] Further optimization: the driving assembly comprises a tank top flange fixedly installed on the top of the tank top head, the tank top flange is coaxially arranged with the stirring driving shaft, the upper end of the tank top flange is fixedly installed with a speed reducer through a transition flange, and the upper end of the stirring driving shaft extends into the speed reducer and is in transmission connection with the power output end of the speed reducer; a stirring motor for driving the speed reducer to work is fixedly installed on one side of the speed reducer.

[0018] Further optimization: the heating layer assembly comprises a jacket arranged outside the mixing tank body, a heating cavity is arranged between the inner surface of the jacket and the outer surface of the mixing tank body; a water inlet is fixedly installed at the lower end position of the jacket, at least one water return port is fixedly installed at the upper end position of the jacket, and a heat preservation outer sleeve is fixedly arranged outside the jacket.

[0019] The utility model discloses the above -mentioned technical scheme, clever design, reasonable structure, the glue powder import is arranged at the bottom of the mixing tank body, when the plant glue powder enters the mixing tank body through the glue powder import, the plant glue powder will directly mix with the liquid material in the mixing tank body, and then will not flow out with the air of vacuumizing, improves the configuration precision, reduces the waste rate of raw material.

[0020] In the application, the stirring motor and the speed reducer work to drive the stirring driving shaft to drive the passive shaft to rotate; the passive shaft rotates synchronously to drive the arc-shaped stirring paddle, the reinforcing connecting rod, the spiral stirring rod, the connecting reinforcing rod and the transverse stirring rod to rotate, thereby stirring the material in the mixing tank body to mix, improving the mixing effect of the material, and finally obtaining the plant glue solution.

[0021] When the material in the mixing tank body needs to be heated, the water inlet and the water return port are respectively communicated with an external heat energy liquid source, the external heat energy liquid source outputs heat energy liquid into the heating cavity through the water inlet, and then returns to the external heat energy liquid source through the water return port, the circulation of the heat energy liquid in the heating cavity is used to heat the mixing tank body and the material in the mixing tank body, improve the heating rate and heating effect of the mixing tank body and the material, and improve the use effect.

[0022] The utility model is further illustrated below in combination with the drawings and embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is the overall structure schematic diagram of the embodiment of the utility model;

[0024] Figure 2 It is the top view of the overall structure in the embodiment of the utility model;

[0025] Figure 3 It is the structure schematic diagram of the stirring rod device in the embodiment of the utility model;

[0026] Figure 4 It is the overall structure schematic diagram when using in the embodiment of the utility model.

[0027] In the drawing: 1 - manhole; 2 - tank top flange; 3 - transition flange; 4 - speed reducer; 5 - stirring motor; 6 - stirring driving shaft; 7 - reinforced shaft sleeve; 8 - tank top head; 9 - backwater outlet; 10 - mixing tank body; 11 - jacket; 12 - heat preservation outer cover; 13 - support seat; 14 - temperature measuring probe; 15 - tank bottom valve; 16 - water inlet; 17 - arc-shaped stirring paddle; 171 - reinforced connecting rod; 172 - spiral stirring rod; 173 - connecting reinforcing rod; 174 - transverse stirring rod; 18 - driven shaft; 19 - first stirring connecting flange; 20 - mechanical seal cover; 21 - bearing seat; 22 - mechanical seal seat; 23 - second stirring connecting flange; 24 - positioning sleeve; 25 - bubble detection port; 26 - glycerol port; 27 - vacuum port; 28 - lamp hole; 29 - cleaning port; 30 - standby port; 31 - air inlet; 32 - powder inlet; 33 - exhaust port; 34 - pressure vacuum gauge. DETAILED DESCRIPTION

[0028] As Figures 1-4 Shown: a plant glue special gelatinization tank, including mixing tank body 10, the upper portion of mixing tank body 10 is integrally connected with tank top head 8, stirring rod device is arranged in mixing tank body 10, the upper portion of tank top head 8 is provided with the drive assembly for driving stirring rod device to rotate, the outside of mixing tank body 10 is provided with heating layer assembly for heating mixing tank body 10, the upper portion of tank top head 8 is provided with vacuum port 27, mixing tank body 10 stores the purified water for preparing plant glue solution, the bottom of mixing tank body 10 is eccentrically provided with powder inlet 32, and the powder material for preparing plant glue solution enters mixing tank body 10 through powder inlet 32 in the bottom of mixing tank body 10.

[0029] In the embodiment, the powder inlet 32 is provided with a powder inlet on-off valve, which is used to open or close the powder inlet 32.

[0030] A vacuum port 27 is arranged on the upper surface of the tank top head 8, and a vacuum port on-off valve is connected in series with the vacuum port 27; the vacuum port 27 is communicated with an external vacuumizing device.

[0031] A glycerol port 26 is arranged on the upper surface of the tank top head 8, and a glycerol port on-off valve is connected in series with the glycerol port 26; the glycerol port 26 is communicated with an external glycerol adding device through a pipeline.

[0032] In this way, in use, plant gum powder, glycerol and purified water are used as raw materials to configure plant gum liquid. In the configuration, the purified water is first delivered into the mixing tank body 10, and then the glycerol is delivered into the mixing tank body 10 through the glycerol port 26. The external vacuumizing device and the vacuum port on-off valve are opened, and the mixing tank body 10 is vacuumized through the vacuum port 27. When it is necessary to add plant gum powder, the powder inlet on-off valve is first opened. At this time, the plant gum powder is made to enter the mixing tank body 10 through the powder inlet 32 by negative pressure suction force. Then, the driving assembly drives the stirring rod device to work. The stirring rod device is used to uniformly mix various materials to obtain plant gum raw materials.

[0033] In this embodiment, the powder inlet 32 is arranged at the bottom of the mixing tank body 10. When the plant gum powder enters the mixing tank body 10 through the powder inlet 32, the plant gum powder will be directly mixed with the liquid materials in the mixing tank body 10, and then will not flow out with the vacuumized air, thereby improving the configuration accuracy and reducing the waste rate of raw materials.

[0034] A manhole 1 is arranged on one side of the top surface of the top of the tank top head 8. A sealing cover is detachably installed at the manhole 1. The sealing cover is used to close or open the manhole 1. The manhole 1 is used to overhaul the components installed in the mixing tank body 10.

[0035] In this embodiment, the top of the tank top head 8 is also provided with a bubble detection port 25, a lamp hole 28, a cleaning port 29, a standby port 30, a gas inlet port 31 and an exhaust port 33.

[0036] A bubble detector can be installed at the bubble detection port 25. An illuminating lamp can be installed at the lamp hole 28, which is used to illuminate the inside of the mixing tank body 10. A cleaning pipeline can be externally connected to the cleaning port 29, which is used to deliver cleaning water into the mixing tank body 10 through the cleaning pipeline and the cleaning port 29. A gas inlet pipeline can be externally connected to the gas inlet port 31, which is used to deliver gas into the mixing tank body 10 through the gas inlet pipeline and the gas inlet port 31. An exhaust valve is installed on the exhaust port 33, which is used to open the exhaust port 33, thereby realizing the exhaust operation of the inside of the mixing tank body 10.

[0037] In the embodiment, the cleaning port 29, the standby port 30 and the gas filling port 31 are provided with switch valves, which are used to open or close the corresponding communication ports.

[0038] In the embodiment, the top of the tank top head 8 is further provided with a mounting port, and a pressure vacuum gauge 34 is mounted in the mounting port, which is used to detect the vacuum degree in the mixing tank body 10.

[0039] In the embodiment, the bottom of the mixing tank body 10 is provided with a temperature detection port, and a temperature detection probe 14 is mounted in the temperature detection port, the detection end of the temperature detection probe 14 is located in the inside of the mixing tank body 10, and the temperature detection probe 14 is used to detect the real-time temperature of the material in the mixing tank body 10.

[0040] The stirring rod device comprises a driven shaft 18, the upper end of the driven shaft 18 is drivingly connected with a stirring driving shaft 6 through a connecting assembly, the upper end of the stirring driving shaft 6 penetrates the tank top head 8, the inner top surface of the tank top head 8 is provided with a rotating sleeve assembly for rotatingly supporting and connecting the stirring driving shaft 6, and the outer surface of the driven shaft 18 is provided with a stirring blade assembly.

[0041] The connecting assembly comprises a first stirring connecting flange 19 fixedly mounted at the lower end of the stirring driving shaft 6, the upper end of the driven shaft 18 is fixedly provided with a second stirring connecting flange 23, and the first stirring connecting flange 19 and the second stirring connecting flange 23 are fixedly connected through a bolt pair.

[0042] The rotating sleeve assembly comprises a reinforcing shaft sleeve 7 sleeved on the outer surface of the stirring driving shaft 6, the upper end of the reinforcing shaft sleeve 7 is fixedly mounted on the tank top head 8, and the lower end surface of the reinforcing shaft sleeve 7 is sequentially provided with a bearing seat 21, a mechanical seal seat 22 and a mechanical seal cover 20, and the bearing seat 21, the mechanical seal seat 22 and the mechanical seal cover 20 are coaxially sleeved on the stirring driving shaft 6.

[0043] The inner side of the bearing seat 21 is drivingly connected with the stirring driving shaft 6 through a bearing, the inner side of the mechanical seal seat 22 is rotatably and sealingly connected with the outer surface of the stirring driving shaft 6 through a sealing ring, and the inner side of the mechanical seal cover 20 is rotatably connected with the outer surface of the stirring driving shaft 6.

[0044] In the embodiment, the bearing seat 21, the mechanical seal seat 22 and the mechanical seal cover 20 are fixedly connected with the reinforcing shaft sleeve 7 through a bolt pair.

[0045] The lower end of the driven shaft 18 is rotatably connected with a positioning sleeve 24, the positioning sleeve 24 is fixedly mounted on the inner bottom surface of the mixing tank body 10, and the positioning sleeve 24 is used to support the driven shaft 18 to rotate and improve the stability of the driven shaft 18 during rotation.

[0046] The stirring blade assembly comprises a plurality of arc-shaped stirring paddles 17, the arc-shaped surfaces of the arc-shaped stirring paddles 17 are arranged corresponding to the inner bottom surface of the mixing tank body 10, and the arc-shaped stirring paddles 17 are arranged in a ring shape along the axis of the driven shaft 18.

[0047] One end of the arc-shaped stirring paddle 17 is fixedly installed on the driven shaft 18, and a reinforcing connecting rod 171 is fixedly installed on the other end of the arc-shaped stirring paddle 17, the reinforcing connecting rod 171 is arranged in an inclined manner, and the other end of the reinforcing connecting rod 171 is fixedly connected with the corresponding driven shaft 18.

[0048] In this way, the overall structural strength of the arc-shaped stirring paddle 17 can be improved by the reinforcing connecting rod 171, and the stirring effect of the arc-shaped stirring paddle 17 during stirring can be improved.

[0049] A plurality of spiral stirring rods 172 are arranged above the arc-shaped stirring paddle 17 on the driven shaft 18, the spiral stirring rods 172 are arranged in a spiral shape, and the spiral stirring rods 172 are arranged in a ring shape along the axis of the driven shaft 18.

[0050] One end of the spiral stirring rod 172 is fixedly installed on the driven shaft 18, and a connecting reinforcing rod 173 is fixedly installed on the other end of the spiral stirring rod 172, the connecting reinforcing rod 173 is arranged in a horizontal manner, and the other end of the connecting reinforcing rod 173 is fixedly connected with the corresponding driven shaft 18.

[0051] A plurality of transverse stirring rods 174 are arranged below the connecting reinforcing rod 173 on the driven shaft 18 in a spaced manner and are fixedly installed, the transverse stirring rods 174 are arranged in a ring shape along the axis of the driven shaft 18, and each transverse stirring rod 174 is arranged in a horizontal manner.

[0052] In this way, the driven shaft 18 rotates synchronously to drive the arc-shaped stirring paddle 17, the reinforcing connecting rod 171, the spiral stirring rod 172, the connecting reinforcing rod 173 and the transverse stirring rod 174 to rotate, thereby stirring the materials in the mixing tank body 10 to mix them, and finally obtaining the plant glue solution.

[0053] The driving assembly comprises a tank top flange 2 fixedly installed on the top of the tank top head 8, the tank top flange 2 is coaxially arranged with the stirring driving shaft 6, the upper end of the tank top flange 2 is fixedly installed with a speed reducer 4 through a transition flange 3, and the upper end of the stirring driving shaft 6 extends into the speed reducer 4 and is in transmission connection with the power output end of the speed reducer 4.

[0054] One side of the speed reducer 4 is fixedly installed with a stirring motor 5 for driving the speed reducer 4 to work.

[0055] In this way, the stirring motor 5 starts to output rotary power to drive the speed reducer 4 to work, the speed reducer 4 drives the stirring driving shaft 6 to rotate, and the stirring driving shaft 6 drives the driven shaft 18 to rotate.

[0056] The heating layer assembly comprises a jacket 11 arranged outside the mixing tank 10, and a heating cavity is arranged between the inner surface of the jacket 11 and the outer surface of the mixing tank 10.

[0057] The lower end of the jacket 11 is fixedly provided with a water inlet 16, which is communicated with the heating cavity, and at least one water return port 9 is fixedly arranged at the upper end of the jacket 11, which is communicated with the heating cavity.

[0058] In this embodiment, the water inlet 16 and the water return port 9 are respectively communicated with an external heat energy liquid source, and the heat energy liquid output by the external heat energy liquid source enters the heating cavity through the water inlet 16, and at this time, the heat energy liquid is used to heat the mixing tank 10 and the material in the mixing tank 10, and then flows back to the external heat energy liquid source through the water return port 9, and the circulation of the heat energy liquid in the heating cavity is used to improve the heating rate and heating effect of the mixing tank 10 and the material, thereby improving the use effect.

[0059] The outer surface of the jacket 11 is fixedly provided with a heat preservation jacket 12, which is used to heat preservation of the mixing tank 10, to avoid heat leakage and improve the use effect.

[0060] A plurality of support seats 13 are fixedly arranged on the heat preservation jacket 12, and supports can be arranged on the support seats 13. Figure 4 As shown, the support seats 13 and the support frames are used to support the special gel tank for plant glue.

[0061] A discharge port is arranged at the middle position of the bottom of the mixing tank 10, and a tank bottom valve 15 is arranged at the discharge port, which is used to control the opening and closing of the discharge port, and when the tank bottom valve 15 is opened, the material in the mixing tank 10 is discharged through the discharge port, which is convenient for discharging operation.

[0062] In use, plant glue powder, glycerol and purified water are used as raw materials to configure plant glue liquid, and in the configuration process, the purified water is first sent into the mixing tank 10, then the glycerol is sent into the mixing tank 10 through the glycerol port 26, the external vacuumizing equipment and the vacuum port on-off valve are opened, and the external vacuumizing equipment and the vacuum port 27 are used to vacuumize the mixing tank 10,

[0063] In this way, the rubber powder inlet 32 is arranged at the bottom of the mixing tank 10, when the plant rubber powder enters the mixing tank 10 through the rubber powder inlet 32, the plant rubber powder can be directly mixed with the liquid material in the mixing tank 10, and then will not flow out with the air of vacuumization, so as to improve the configuration accuracy and reduce the waste rate of raw materials.

[0064] Then the stirring motor 5 of the driving assembly is started to drive the speed reducer 4 to work, the speed reducer 4 drives the stirring driving shaft 6 to rotate, the stirring driving shaft 6 rotates to drive the driven shaft 18 to rotate, the driven shaft 18 rotates to synchronously drive the arc-shaped stirring paddle 17, the reinforced connecting rod 171, the spiral stirring rod 172, the connecting reinforced rod 173 and the transverse stirring rod 174 to rotate, so as to stir the material in the mixing tank 10 to mix, and finally obtain the plant rubber liquid.

[0065] When the material in the mixing tank 10 needs to be heated, the water inlet 16 and the backwater outlet 9 are respectively communicated with an external heat energy liquid source, the external heat energy liquid source outputs heat energy liquid into the heating cavity through the water inlet 16, and then flows back to the external heat energy liquid source through the backwater outlet 9, the circulation of the heat energy liquid in the heating cavity is used for heating the mixing tank 10 and the material in the mixing tank 10, so as to improve the heating rate and heating effect of the mixing tank 10 and the material, and then improve the use effect.

[0066] In this embodiment, the external heat energy liquid source can be hot water, hot oil liquid, high-temperature steam and the like.

[0067] For those skilled in the art, according to the teaching of the present application, the changes, modifications, replacements and variations of the embodiments without departing from the principles and spirits of the present application still fall within the protection scope of the present application.

Claims

1. A plant glue special glue tank, comprising a mixing tank body (10), an upper part of the mixing tank body (10) is integrally connected with a tank top head (8), characterized in that: A stirring rod device is arranged in the mixing tank body (10), a driving assembly for driving the stirring rod device to rotate is arranged above the tank top head (8), a heating layer assembly for heating the mixing tank body (10) is arranged on the outer side of the mixing tank body (10), a vacuum port (27) is arranged above the tank top head (8), purified water for preparing plant glue liquid is stored in the mixing tank body (10), a glue powder inlet (32) is arranged eccentrically at the bottom of the mixing tank body (10), and the glue powder material for preparing the plant glue liquid enters the mixing tank body (10) through the glue powder inlet (32) at the bottom of the mixing tank body (10).

2. A plant gum specific gumming tank as claimed in claim 1, wherein: A glue powder inlet opening and closing valve is arranged on the glue powder inlet (32) and used for opening or closing the glue powder inlet (32).

3. A plant gum specific gumming tank as claimed in claim 2, wherein: A temperature detection port is arranged at the bottom of the mixing tank body (10), a temperature detection probe (14) is arranged at the temperature detection port, the detection end of the temperature detection probe (14) is located in the mixing tank body (10), and the temperature detection probe (14) is used for detecting the real-time temperature of the material in the mixing tank body (10).

4. The plant gum special gumming tank according to claim 3, characterized in that: The stirring rod device comprises a driven shaft (18), the upper end of the driven shaft (18) is in transmission connection with a stirring driving shaft (6) through a connecting assembly, the upper end of the stirring driving shaft (6) penetrates through the tank top head (8), a rotating sleeve assembly for rotatingly supporting and connecting the stirring driving shaft (6) is arranged on the inner top surface of the tank top head (8), and a stirring blade assembly is arranged on the outer surface of the driven shaft (18).

5. A plant gum specific gumming tank as claimed in claim 4, wherein: The rotating sleeve assembly comprises a reinforcing shaft sleeve (7) sleeved on the outer surface of the stirring driving shaft (6), the upper end of the reinforcing shaft sleeve (7) is fixedly installed on the tank top head (8), a bearing seat (21), a mechanical seal seat (22) and a mechanical seal cover (20) are sequentially arranged on the lower end surface of the reinforcing shaft sleeve (7), the bearing seat (21), the mechanical seal seat (22) and the mechanical seal cover (20) are coaxially sleeved on the stirring driving shaft (6) and are fixedly connected with the reinforcing shaft sleeve (7) through a bolt pair.

6. A plant gum specific gumming tank as claimed in claim 5, wherein: The stirring blade assembly comprises a plurality of arc-shaped stirring paddles (17), the arc-shaped surfaces of the arc-shaped stirring paddles (17) are correspondingly arranged on the inner bottom surface of the mixing tank body (10), the plurality of arc-shaped stirring paddles (17) are annularly and spacedly arranged along the axis of the driven shaft (18), one end of the arc-shaped stirring paddle (17) is fixedly installed on the driven shaft (18), and a reinforcing connecting rod (171) is fixedly installed on the other end of the arc-shaped stirring paddle (17).

7. A plant gum specific gumming tank as claimed in claim 6, wherein: A plurality of spiral stirring rods (172) are further arranged above the arc-shaped stirring paddles (17) on the driven shaft (18), the spiral stirring rods (172) are spirally arranged, the plurality of spiral stirring rods (172) are annularly and spacedly arranged along the axis of the driven shaft (18), one end of the spiral stirring rod (172) is fixedly installed on the driven shaft (18), and a connecting reinforcing rod (173) is fixedly installed on the other end of the spiral stirring rod (172).

8. A plant gum specific gumming tank as claimed in claim 7, wherein: A plurality of transverse stirring rods (174) are fixedly installed on the passive shaft (18) below the connecting reinforcing rods (173) and are arranged in a ring along the axis of the passive shaft (18) and are spaced apart, and each transverse stirring rod (174) is horizontally arranged.

9. A plant gum specific gumming tank as claimed in claim 8, wherein: The driving assembly comprises a tank top flange (2) fixedly installed on the top of the tank top head (8), the tank top flange (2) is coaxially arranged with the stirring driving shaft (6), the upper end of the tank top flange (2) is fixedly installed with a speed reducer (4) through a transition flange (3), the upper end of the stirring driving shaft (6) extends into the speed reducer (4) and is in transmission connection with the power output end of the speed reducer (4); one side of the speed reducer (4) is fixedly installed with a stirring motor (5) for driving the speed reducer (4) to work.

10. A plant gum specific gumming tank as claimed in claim 9, wherein: The heating layer assembly comprises a jacket (11) arranged outside the mixing tank body (10), a heating cavity is arranged between the inner surface of the jacket (11) and the outer surface of the mixing tank body (10); a water inlet (16) is fixedly installed at the lower end position of the jacket (11), at least one water return port (9) is fixedly installed at the upper end position of the jacket (11), and a heat preservation outer sleeve (12) is fixedly arranged outside the jacket (11).

Citation Information

Patent Citations

  • Plant capsule glue solution mixing and stirring device

    CN213348667U