Efficient temperature control reaction device for amino grape production

By installing multiple temperature measuring units inside the sleeve of the aminoglucosamine production reactor, the problem of thermocouples being affected by external environmental interference was solved, achieving accuracy and reliability in temperature measurement, and ensuring the stability of the production process and product quality.

CN224009799UActive Publication Date: 2026-03-20YANGZHOU RIXING BIO TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing aminoglucosamine production reactors have open top sleeves, making thermocouples susceptible to external environmental interference, resulting in inaccurate temperature measurements and affecting product quality and production efficiency.

Method used

Multiple temperature measuring units are installed inside the sleeve of the reaction device. Each sleeve is equipped with a thermocouple, a screw section, and a wire protection tube. The thermocouples are fixed by a locking mechanism to ensure stable installation. The distribution of multiple temperature measuring units and the cooperation of fixing blocks improve the accuracy and reliability of temperature measurement.

Benefits of technology

To ensure the accuracy and reliability of temperature measurements, timely detection of faults can reduce the impact on the production process and improve product quality and production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224009799U_ABST
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Abstract

The utility model discloses an efficient temperature control reaction device for amino grape production, which comprises a kettle body, a plurality of sleeves extending into the kettle body are mounted at the kettle body, and a temperature measuring unit is mounted at each sleeve. The reaction device is provided with three temperature measurement units, so that the accuracy and reliability of temperature measurement data can be ensured, and faults can be timely perceived and processed when occurring, thereby reducing the influence on the production process. Through cooperation of the fixing block and the temperature measuring unit, the sealing effect of the inner space of the sleeve located below the fixing block measured by the thermocouple is good, and the measured temperature is closer to the temperature in the reaction device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of reaction device, more specifically, relate to a kind of for the efficient temperature control reaction device of amino grape production. BACKGROUND

[0002] Amino glucose is very high in production process to temperature requirement.Therefore, in the production line of amino glucose, temperature monitoring and control means are usually used.A common and effective method is to set a sleeve on the reaction device and insert a thermocouple into the sleeve to measure the temperature inside the reaction device.

[0003] The existing reaction device for amino grape production has an open top on the sleeve, and the thermocouple may be affected by external environment during measurement, such as air flow, temperature change, etc. These interference factors will cause the temperature measured by the thermocouple to deviate from the actual temperature inside the reaction device. This deviation will not only affect the accurate control of the reaction process, but also may cause unstable product quality. Some reaction devices usually only install a thermocouple at one position for temperature measurement. Once the thermocouple fails or the measurement deviates, it is often difficult for workers to find out in time. In this case, if the temperature inside the reaction device has actually deviated from the optimal range, but the workers still operate according to the wrong temperature data, it may seriously affect the product quality and production efficiency, and even cause economic losses. SUMMARY

[0004] The utility model aims at overcoming the defects of prior art, and provides an efficient temperature control reaction device for amino grape production.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an efficient temperature control reaction device for amino grape production, comprising a kettle body, the kettle body is provided with a jacket, the jacket is provided with a heating pipe, the kettle body is provided with a steam inlet connected with the heating pipe and a steam outlet connected with the heating pipe, the bottom of the kettle body is provided with a discharge port, the top of the kettle body is provided with a feed port, a vacuum connection and a water inlet, the kettle body is provided with a motor, the output shaft of the motor is connected with a stirring shaft extending into the kettle body, the stirring shaft is connected with a plurality of stirring paddles, the kettle body is also provided with a plurality of sleeves extending into the kettle body, each sleeve is provided with a temperature measurement unit, the temperature measurement unit comprises a thermocouple, a screw rod connected with the thermocouple and a wire protection tube connected with the screw rod, the wire protection tube is fixedly connected with a limiting plate, the thermocouple is inserted into the sleeve, the inner wall of the sleeve is provided with a fixing block, the fixing block is provided with a first threaded hole matched with the screw rod, the top of the sleeve is provided with a convex edge, the convex edge is provided with a lock part, and the lock part can fixedly connect the limiting plate with the convex edge.

[0006] Further, a control unit is further included, and the wire of the temperature measuring unit is connected with the control unit.

[0007] Further, the locking part comprises a fixed plate fixedly connected with the bottom of the convex edge and a buckle connected with the fixed plate through a pin shaft, the buckle is J-shaped, a clamping bolt capable of abutting against the top of the limiting plate is arranged at the buckle, and the buckle is provided with a second threaded hole matched with the clamping bolt.

[0008] Therefore, the opening and locking operation of the locking part is convenient.

[0009] Further, three locking parts are arranged at the convex edge of each sleeve, and the three locking parts are annularly and equidistantly distributed.

[0010] Therefore, the locking part can stably fix and install the temperature measuring unit.

[0011] Further, the wire protection pipe comprises a tapered pipe and an extension pipe connected with the tapered pipe, the limiting plate is fixed at the extension pipe, the fixed block has a landslide part matched with the tapered pipe, the landslide part is in an inverted conical groove structure, and the first threaded hole is located in the landslide part.

[0012] Therefore, the thermocouple can be quickly aligned to pass through the first threaded hole.

[0013] Further, a rubber pad is arranged at the limiting plate and located between the limiting plate and the convex edge.

[0014] Therefore, the sealing performance of the temperature measuring unit during installation is improved.

[0015] Further, the temperature measuring unit has three, and the three temperature measuring units are annularly and equidistantly distributed.

[0016] Therefore, the temperature measurement is more accurate, and even if one of them fails, the staff can find it in time.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] 1. The reaction device of the application is provided with three temperature measuring units, which can not only ensure the accuracy and reliability of the temperature measurement data, but also can be detected and processed in time when a fault occurs, thereby reducing the influence on the production process.

[0019] 2. The reaction device of the application is matched with the temperature measuring unit through the fixed block, so that the closed effect of the sleeve internal space below the fixed block measured by the thermocouple is good, and the measured temperature is closer to the temperature inside the reaction device. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1A schematic diagram of a reaction device is shown in the figure;

[0021] Figure 2 A magnified view of area A is shown in the figure;

[0022] Figure 3 A sectional view of the reaction device is shown in the figure;

[0023] Figure 4 A separate schematic diagram of one of the temperature measuring units is shown in the figure;

[0024] Figure 5 A magnified view of area B is shown in the figure;

[0025] Figure 6 A magnified view of area C is shown in the figure;

[0026] Figure 7 A schematic diagram of the fixing block is shown in the figure;

[0027] For the sake of clarity, Figure 7 The fixing block is shown separately in the figure, and the wires of the temperature measuring unit are not shown in the figure.

[0028] Reference signs: kettle body 1; steam inlet 1.1; steam outlet 1.2; discharge port 1.3; feed inlet 2.1; vacuum connection 2.2; water inlet 2.3; motor 3; stirring shaft 4; stirring paddle 4.1; sleeve 5; convex edge 5.1; thermocouple 6; screw portion 7; wire protection tube 8; limiting plate 8.1; conical tube 8.2; extension tube 8.3; rubber pad 8.4; fixing block 9; first threaded hole 9.1; landslide portion 9.2; lock catch 10; fixing plate 10.1; pin shaft 10.2; buckle 10.3; abutting bolt 10.4. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0030] The present application provides a reaction device as Figures 1-7The high-efficiency temperature control reaction device for amino grape production shown comprises a kettle body 1, a jacket is arranged at the kettle body 1, heating pipes are arranged in the jacket, a steam inlet 1.1 connected with the heating pipes and a steam outlet 1.2 connected with the heating pipes are arranged at the kettle body 1, a discharge port 1.3 is arranged at the bottom of the kettle body 1, a feeding port 2.1, a vacuumizing interface 2.2 and a water injection port 2.3 are arranged at the top of the kettle body 1, a motor 3 is arranged at the kettle body 1, an output shaft of the motor is connected with a stirring shaft 4 extending into the kettle body 1, a plurality of stirring paddles 4.1 are connected at the stirring shaft 4, a plurality of sleeves 5 extending into the kettle body 1 are further arranged at the kettle body 1, a temperature measuring unit is arranged at each sleeve 5, the temperature measuring unit comprises a thermocouple 6, a screw rod part 7 connected with the thermocouple 6 and a wire protection tube 8 connected with the screw rod part 7, a limiting plate 8.1 is fixedly connected at the wire protection tube 8, the thermocouple 6 is inserted into the sleeve 5, a fixed block 9 is arranged on the inner wall of the sleeve 5, the fixed block 9 is provided with a first threaded hole 9.1 matched with the screw rod part 7, a convex edge 5.1 is arranged at the top of the sleeve 5, a lock buckle part 10 is arranged at the convex edge 5.1, and the limiting plate 8.1 and the convex edge 5.1 are fixedly connected by the lock buckle part 10.

[0031] The lock buckle part 10 comprises a fixed plate 10.1 fixedly connected with the bottom of the convex edge 5.1 and a buckle 10.3 connected with the fixed plate 10.1 through a pin shaft 10.2, the buckle 10.3 is in J shape, a pressing bolt 10.4 capable of abutting against the top of the limiting plate 8.1 is arranged at the buckle 10.3, and the buckle 10.3 is provided with a second threaded hole matched with the pressing bolt 10.4. Three lock buckle parts 10 are arranged at the convex edge 5.1 of each sleeve 5, and the three lock buckle parts 10 are annularly and equidistantly distributed. The wire protection tube 8 comprises a tapered tube 8.2 and an extension tube 8.3 connected with the tapered tube 8.2, the limiting plate 8.1 is fixed at the extension tube 8.3, the fixed block 9 is provided with a landslide part 9.2 matched with the tapered tube 8.2, the landslide part 9.2 is in inverted conical groove structure, and the first threaded hole 9.1 is located in the landslide part 9.2. A rubber pad 8.4 is arranged at the limiting plate 8.1 and located between the limiting plate 8.1 and the convex edge 5.1. There are three temperature measuring units, and the three temperature measuring units are annularly and equidistantly distributed.

[0032] Working principle: the reaction device of the application is provided with three temperature measuring units, even if one of the temperature measuring units fails due to various reasons and the measurement data deviates from those of the other two temperature measuring units in the actual production process, the staff can find the abnormality in time and take replacement measures in time, thereby ensuring the continuity and stability of the production process and avoiding the production efficiency and product quality problems caused by inaccurate temperature measurement.

[0033] In the specific installation, firstly, the thermocouple is inserted into the sleeve, the landslide portion guides the screw portion to align the threaded hole, then the screw portion is rotated to be screwed with the first threaded hole, so as to fix the temperature measuring unit in the sleeve, meanwhile, the closing effect of the internal space of the sleeve below the fixing block measured by the thermocouple is good, so that the measured temperature is closer to the temperature inside the reaction device. Then, the temperature measuring unit is further fixed through the lock buckle, the buckle is rotated to be above the limiting plate, then the abutting bolt is used to pass through the second threaded hole of the buckle, and the abutting bolt is screwed until the top of the limiting plate is abutted, so that the limiting plate is fixed on the top of the convex edge of the sleeve.

[0034] Although the utility model has been illustrated and described with reference to the preferred embodiments, it should be understood that various changes and modifications can be made to the utility model without departing from the scope of the claims of the utility model.

Claims

1. A high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine, characterized in that, The device includes a vessel body with a jacket containing a heating tube. The vessel body has a steam inlet and an outlet connected to the heating tube. The bottom of the vessel body has a discharge port, and the top has a feed inlet, a vacuum interface, and a water inlet. A motor is installed in the vessel body, and the motor's output shaft is connected to a stirring shaft extending into the vessel body. Multiple stirring paddles are connected to the stirring shaft. Multiple sleeves extending into the vessel body are also installed in the vessel body. Each sleeve is equipped with a temperature measuring unit, which includes a thermocouple, a screw connected to the thermocouple, and a wire protection tube connected to the screw. A limit plate is fixedly connected to the wire protection tube. The thermocouple is inserted into the sleeve. A fixing block is provided on the inner wall of the sleeve, and the fixing block has a first threaded hole that mates with the screw. A protruding edge is provided on the top of the sleeve, and a locking part is provided on the protruding edge to fix the limit plate to the protruding edge.

2. The high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine according to claim 1, characterized in that, The locking part includes a fixing plate fixedly connected to the bottom of the protruding edge and a buckle connected to the fixing plate by a pin. The buckle is J-shaped and is provided with a clamping bolt that can abut against the top of the limiting plate. The buckle has a second threaded hole that matches the clamping bolt.

3. The high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine according to claim 1, characterized in that, Each sleeve has three locking parts on its convex edge, and the three locking parts are distributed in a ring at equal intervals.

4. The high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine according to claim 1, characterized in that, The wire protection tube includes a tapered tube and an extension tube connected to the tapered tube. The limiting plate is fixed at the extension tube. The fixing block has a slope portion that cooperates with the tapered tube. The slope portion has an inverted conical groove structure. The first threaded hole is located inside the slope portion.

5. The high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine according to claim 1, characterized in that, A rubber pad is provided at the limiting plate, and the rubber pad is located between the limiting plate and the convex edge.

6. The high-efficiency temperature-controlled reaction apparatus for the production of aminoglucosamine according to claim 1, characterized in that, The temperature measuring unit has three units, which are arranged in a ring with equal spacing.