Biological dressing reagent preparation device

By using a thermal conductivity sleeve in the biodressing reagent preparation device to transfer the heat energy of the biodressing reagent to the raw material liquid, the problem that the existing device cannot recover and utilize heat energy is solved, and efficient energy utilization and improvement of preparation efficiency are achieved.

CN222918526UActive Publication Date: 2025-05-30ZHEJIANG KALEIKA BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421906412.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-30
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing biodressing reagent preparation device cannot recover the finished heat energy output, resulting in high workshop temperature and waste of energy.

Method used

A biological dressing reagent preparation device is designed to transfer the thermal energy of the biological dressing reagent output from the stirring barrel to the raw material liquid in the liquid storage barrel through a thermal conduction sleeve to achieve preheating of the raw material liquid.

Benefits of technology

It effectively reduces energy waste, improves energy utilization, and accelerates the heating process of raw material liquid through preheating, improving preparation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a biological dressing reagent preparation device which comprises a stirring barrel, a liquid storage barrel for storing raw material liquid, a liquid inlet pipe, a first valve, a meter, a first pump, a heating mechanism, a stirring shaft, a motor, a first liquid outlet pipe, a second valve, a second pump, a heat conduction sleeve and a second liquid outlet pipe, a discharging opening is formed in the upper side of the stirring barrel; the liquid storage barrel is connected with the stirring barrel through the liquid inlet pipe, the first valve and the meter are both mounted on the liquid inlet pipe, and the first pump is used for pumping raw material liquid in the liquid storage barrel to the stirring barrel; the heating mechanism and the stirring shaft are both mounted in the stirring barrel, and the motor is used for driving the stirring shaft to rotate, so that the raw material liquid and the raw material medicine powder are mixed to form a biological dressing reagent; the liquid storage barrel is sleeved with the heat conduction sleeve so that the liquid storage barrel can be heated, and a flow channel is formed in the heat conduction sleeve. The utility model provides a biological dressing reagent preparation device, which utilizes heat energy of a biological dressing reagent to heat raw material liquid so as to reduce energy waste.
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Description

Technical Field

[0001] The utility model relates to the technical field of biological dressing reagent preparation, in particular to a device for preparing biological dressing reagents. Background Art

[0002] The existing device for preparing biological dressing reagents includes a stirring barrel, a heating device, a stirring shaft, a liquid inlet pipe and a liquid outlet pipe. When preparing biological dressing reagents, the raw material liquid is input into the stirring barrel through the liquid inlet pipe, the heating device heats the raw material liquid, the raw material medicine powder is poured into the stirring barrel, and the stirring shaft stirs to make the raw material liquid and the raw material medicine powder mix evenly. Finally, the finished product is output through the discharge pipe.

[0003] The temperature of the finished product output by the existing preparation device is still relatively high and has a lot of heat energy. These heat energies are directly dissipated into the air. On the one hand, it causes a relatively high temperature in the workshop. On the other hand, it also causes energy waste. Summary of the Utility Model

[0004] In order to solve the defect that the existing preparation device cannot recycle the heat energy of the output finished product, the utility model provides a device for preparing biological dressing reagents, which uses the heat energy of the biological dressing reagents to heat the raw material liquid to reduce energy waste.

[0005] To achieve the above object, the utility model adopts the following technical solutions:

[0006] A device for preparing biological dressing reagents includes: a stirring barrel, a liquid storage barrel for storing the raw material liquid, a liquid inlet pipe, a first valve, a measuring meter and a first pump, a heating mechanism, a stirring shaft and a motor, a first liquid outlet pipe, a second valve, a second pump, a heat conducting sleeve and a second liquid outlet pipe; a feeding port is arranged on the upper side of the stirring barrel for pouring the raw material medicine powder into the stirring barrel; the liquid storage barrel is connected with the stirring barrel through the liquid inlet pipe, the first valve and the measuring meter are both installed on the liquid inlet pipe, and the first pump is used to pump the raw material liquid in the liquid storage barrel to the stirring barrel; the heating mechanism and the stirring shaft are both installed in the stirring barrel, and the motor is used to drive the stirring shaft to rotate to mix the raw material liquid and the raw material medicine powder to form biological dressing reagents; the heat conducting sleeve is sleeved on the liquid storage barrel to heat the liquid storage barrel, a flow channel is arranged inside the heat conducting sleeve, one end of the flow channel is connected with the stirring barrel through the first liquid outlet pipe, and the other end of the flow channel is connected with the second liquid outlet pipe, and the second valve and the second pump are both installed on the first liquid outlet pipe.

[0007] Through the above settings, the biological dressing reagents output by the stirring barrel pass through the heat conducting sleeve, and the biological dressing reagents transfer the heat energy to the raw material liquid in the liquid storage barrel through the heat conducting sleeve, and use the residual heat energy of the biological dressing reagents to preheat the raw material liquid to improve the energy utilization rate.

[0008] Further, the flow channel spirally extends around the liquid storage barrel, the upper end of the flow channel is connected with the first liquid outlet pipe, and the lower end of the flow channel is connected with the second liquid outlet pipe.

[0009] With the above settings, the path for the biological dressing reagent to flow through the liquid storage barrel is relatively long, enabling as much heat energy in the biological dressing reagent as possible to be transferred to the raw material liquid.

[0010] Furthermore, the preparation device further includes a heat conduction layer. The outer side of the heat conduction layer is in contact with the inner wall of the heat conduction sleeve, and the inner side of the heat conduction layer is in contact with the outer side of the liquid storage barrel. A number of heating rods are embedded in the heat conduction layer, and the number of heating rods are arranged in sequence along the circumferential direction of the liquid storage barrel.

[0011] With the above settings, first, the heating rods can be used to dredge the flow channel. Second, when the heating rods are heating, the temperature of the raw material liquid rises, preventing waste of heat energy.

[0012] Furthermore, the material of the heat conduction sleeve is copper, and the upper and lower sides of the heat conduction sleeve are flush with the upper and lower sides of the liquid storage barrel respectively.

[0013] Furthermore, the material of the heat conduction layer is graphene.

[0014] With the above settings, both the heat conduction sleeve and the heat conduction layer have good heat conduction performance.

[0015] Furthermore, the heating mechanism is set as an electric heating plate, and the electric heating plate is installed on the inner wall of the stirring barrel and close to the bottom of the stirring barrel. Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the preparation device of the embodiment.

[0017] Figure 2 It is Figure 1 the A-A cross-sectional view of Detailed Embodiments

[0018] Next, through embodiments and in combination with the drawings, the technical solutions of the present invention will be further specifically described.

[0019] See Figures 1 to 2, a biological dressing reagent preparation device, comprising: a stirring barrel 3, a liquid storage barrel 4 for storing raw material liquid, a liquid inlet pipe 5, a first valve 6, a meter 7 and a first pump 8, a heating mechanism 9, a stirring shaft 10 and a motor 11, a first liquid outlet pipe 12, a second valve 13, a second pump 14, a heat conduction sleeve 15 and a second liquid outlet pipe 16; a feeding port 31 is arranged on the upper side of the stirring barrel 3 for pouring the raw medicine powder into the stirring barrel 3; the liquid storage barrel 4 is connected to the stirring barrel 3 through the liquid inlet pipe 5, the first valve 6 and the meter 7 are both installed on the liquid inlet pipe 5, and the first pump 8 is used to pump the raw material liquid in the liquid storage barrel 4 to the stirring barrel 3; the heating mechanism 9 and the stirring shaft 10 are both installed in the stirring barrel 3, and the motor 11 is used to drive the stirring shaft 10 to rotate to mix the raw material liquid and the raw medicine powder to form a biological dressing reagent; the heat conduction sleeve 15 is sleeved on the liquid storage barrel 4 to heat the liquid storage barrel 4, a flow channel 151 is arranged inside the heat conduction sleeve 15, one end of the flow channel 151 is connected to the stirring barrel 3 through the first liquid outlet pipe 12, the other end of the flow channel 151 is connected to the second liquid outlet pipe 16, and the second valve 13 and the second pump 14 are both installed on the first liquid outlet pipe 12.

[0020] Through the above settings, the biological dressing reagent output from the stirring barrel 3 passes through the heat conduction sleeve 15, and the biological dressing reagent transfers heat energy to the raw material liquid in the liquid storage barrel 4 through the heat conduction sleeve 15, and the residual heat energy of the biological dressing reagent is used to preheat the raw material liquid to improve the energy utilization rate.

[0021] The raw material liquid is stored in the liquid storage barrel 4. When the preparation device is in use, the first valve 6 is opened, the first pump 8 pumps the raw material liquid into the stirring barrel 3, and the meter 7 measures the input amount of the raw material liquid. When the input amount of the raw material liquid reaches the preset amount, the first pump 8 and the first valve 6 are closed, the heating mechanism 9 is turned on, and the heating mechanism 9 heats the raw material liquid to the preset temperature. The preset temperature is 50 - 80 degrees Celsius. In this application, the preset temperature is 70 degrees Celsius. The heating mechanism 9 is turned off. During the heating process, the temperature of the raw material liquid can be measured by a thermometer. The increase in temperature is beneficial to improving the stirring efficiency, thereby increasing the production capacity of the biological dressing reagent. The worker pours the raw medicine powder into the stirring barrel 3 through the feeding port, the motor 11 is started, the motor 11 drives the stirring shaft 10, and the stirring shaft 10 mixes the raw material liquid and the raw medicine powder together to form a biological dressing reagent. The second valve 13 and the second pump 14 are opened, and the second pump 14 discharges the biological dressing reagent through the first liquid outlet pipe 12, the flow channel 151, and the second liquid outlet pipe 16; the temperature of the biological dressing reagent when leaving the stirring barrel 3 is relatively high. When the biological dressing reagent passes through the flow channel 151, the biological dressing reagent transfers heat energy to the raw material liquid through the heat conduction sleeve 15 and the liquid storage barrel 4 to preheat the raw material liquid; during the next preparation, after the raw material liquid is input into the stirring barrel 3, the heating mechanism 9 can heat the raw material liquid to the preset temperature faster, improving the efficiency while saving energy.

[0022] As an implementation, the flow channel 151 spirally extends around the liquid storage barrel 4. The upper end of the flow channel 151 is connected to the first liquid outlet pipe 12, and the lower end of the flow channel 151 is connected to the second liquid outlet pipe 16.

[0023] With the above settings, the path of the biological dressing reagent flowing through the liquid storage barrel 4 is relatively long, enabling as much heat energy in the biological dressing reagent as possible to be transferred to the raw material liquid.

[0024] As an implementation, the preparation device further includes a heat conduction layer 17. The outer side of the heat conduction layer 17 is in contact with the inner wall of the heat conduction sleeve 15, and the inner side of the heat conduction layer 17 is in contact with the outer side of the liquid storage barrel 4. A number of heating rods 18 are embedded in the heat conduction layer 17, and the number of heating rods 18 are arranged in sequence along the circumferential direction of the liquid storage barrel 4.

[0025] With the above settings, first, the heating rods 18 can be used to dredge the flow channel 151. Second, when the heating rods 18 are heating, the temperature of the raw material liquid rises, preventing waste of heat energy.

[0026] In this application, when the biological dressing reagent flows through the flow channel 151, the biological dressing reagent heats the raw material liquid through the heat conduction sleeve 15, the heat conduction layer 17, and the liquid storage barrel 4. The temperature of the biological dressing reagent drops in the flow channel 151. Over time, the biological dressing reagent may caking on the side wall of the flow channel 151, resulting in blockage of the flow channel 151. When the heating rods 18 are heating, the outer side of the heating rods 18 heats the heat conduction sleeve 15 and the biological dressing reagent inside, turning the caked biological dressing reagent into a fluid and discharging it from the flow channel 151. The inner side of the heating rods 18 heats the liquid storage barrel 4 and the raw material liquid, making full use of the heat energy of the heating rods 18.

[0027] As an implementation, the material of the heat conduction sleeve 15 is copper, and the upper and lower sides of the heat conduction sleeve 15 are respectively flush with the upper and lower sides of the liquid storage barrel 4.

[0028] As an implementation, the material of the heat conduction layer 17 is graphene.

[0029] With the above settings, both the heat conduction sleeve 15 and the heat conduction layer 17 have good heat conduction performance.

[0030] As an implementation, the heating mechanism 9 is set as an electric heating plate, and the electric heating plate is installed on the inner wall of the stirring barrel 3 and close to the bottom of the stirring barrel 3.

[0031] It should be understood that for those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all such improvements and transformations should fall within the protection scope of the appended claims of the present utility model.

Claims

1. A biological dressing reagent preparation device, characterized in that: include: A mixing barrel and a liquid storage barrel for storing raw material liquid, wherein the upper side of the mixing barrel is provided with a discharge port so as to pour the raw material powder into the mixing barrel; A liquid inlet pipe, a first valve, a meter and a first pump, wherein the liquid storage barrel is connected to the mixing barrel via the liquid inlet pipe, the first valve and the meter are both installed on the liquid inlet pipe, and the first pump is used to pump the raw material liquid in the liquid storage barrel to the mixing barrel; A heating mechanism, a stirring shaft and a motor, wherein the heating mechanism and the stirring shaft are both installed in the stirring barrel, and the motor is used to drive the stirring shaft to rotate so as to mix the raw material liquid and the raw material powder to form a biological dressing reagent; A first liquid outlet pipe, a second valve, a second pump, a heat-conducting sleeve and a second liquid outlet pipe, wherein the heat-conducting sleeve is arranged on the liquid storage barrel so as to heat the liquid storage barrel, a flow channel is arranged inside the heat-conducting sleeve, one end of the flow channel is connected to the stirring barrel through the first liquid outlet pipe, and the other end of the flow channel is connected to the second liquid outlet pipe, and the second valve and the second pump are both installed on the first liquid outlet pipe.

2. A biological dressing reagent preparation device according to claim 1, characterized in that: The flow channel spirally extends around the liquid storage barrel, the upper end of the flow channel is connected to the first liquid outlet pipe, and the lower end of the flow channel is connected to the second liquid outlet pipe.

3. A biological dressing reagent preparation device according to claim 2, characterized in that: The preparation device also includes a heat-conducting layer, the outer side of the heat-conducting layer contacts the inner wall of the heat-conducting sleeve, the inner side of the heat-conducting layer contacts the outer side of the liquid storage barrel, and a plurality of heating rods are embedded in the heat-conducting layer, and the plurality of heating rods are arranged in sequence along the circumference of the liquid storage barrel.

4. A biological dressing reagent preparation device according to claim 1, characterized in that: The heat-conducting sleeve is made of copper, and the upper and lower sides of the heat-conducting sleeve are flush with the upper and lower sides of the liquid storage barrel.

5. A biological dressing reagent preparation device according to claim 3, characterized in that: The material of the heat conducting layer is graphene.

6. A biological dressing reagent preparation device according to claim 1, characterized in that: The heating mechanism is configured as an electric heating plate, and the electric heating plate is mounted on the inner wall of the mixing barrel and close to the bottom of the mixing barrel.