Temperature control traditional Chinese medicine packaging bottle heat preservation distribution box

Through intelligent temperature control of traditional Chinese medicine encapsulated bottle insulation distribution box, integrated LED digital display and magnetron, the problem of improper temperature control during traditional Chinese medicine distribution is solved, precise control and automatic heating of the temperature of the medicine liquid are achieved, and distribution efficiency and drug effect stability are improved.

CN120229458AInactive Publication Date: 2025-07-01GUANGXI QINZHOU XIAOWEI SMART TRADITIONAL CHINESE MEDICINE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510494274.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-20
Publication Date
2025-07-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Improper temperature control during the distribution of traditional Chinese medicine leads to damage to the efficacy of the medicine, and existing heating equipment is inefficient, inconvenient to operation and cannot maintain temperature stability.

Method used

An intelligent temperature-controlled traditional Chinese medicine encapsulated bottle insulation distribution box is designed, integrating LED digital displays, infrared temperature measurement sensors and magnetrons to realize real-time temperature monitoring and automatic heating of the medicine liquid in the traditional Chinese medicine encapsulated bottles, ensuring that the temperature of the medicine liquid is within the range of 55-60 degrees Celsius.

Benefits of technology

It realizes precise control of the temperature of the medicine liquid in the packaging bottle of traditional Chinese medicine, improves distribution efficiency and convenience, reduces energy consumption, reduces the risk of musculoskeletal damage, and ensures the stability of the medicine effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a temperature control traditional Chinese medicine packaging bottle heat preservation distribution box, and aims to solve the problem of improper temperature control in the traditional Chinese medicine distribution process and ensure the medicine effect. The heat preservation box comprises a cover plate hasp, a heat preservation shell, a heat preservation partition plate, an LED digital display, an infrared temperature measurement sensor, a hollow grid lining, a magnetron and the like. The magnetron is installed at the bottom, and the traditional Chinese medicine packaging bottle is heated through manual or program control. The heat preservation partition plate is integrated with temperature monitoring equipment, and real-time monitoring is achieved. The design of the hollow grid lining accords with human engineering, and the hollow grid lining is convenient to take. The design improves the delivery efficiency, ensures that the traditional Chinese medicine is delivered within the optimal drug effect temperature range, and provides an effective solution for modern delivery of the traditional Chinese medicine.
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Description

Technical Field

[0001] The present invention relates to the technical field of traditional Chinese medicine distribution, and particularly to a temperature-controlled insulation delivery box for traditional Chinese medicine encapsulated bottles. Background Art

[0002] Traditional Chinese medicine, as an important part of traditional Chinese medicine, plays an important role in disease prevention and treatment. The efficacy of traditional Chinese medicine is closely related to the activity of its components, and these active components are often sensitive to temperature. During the distribution process of traditional Chinese medicine, maintaining an appropriate temperature is crucial for maintaining the efficacy. However, in current traditional Chinese medicine distribution practices, improper temperature control during the distribution process of traditional Chinese medicine is a common problem, resulting in damaged efficacy.

[0003] The traditional method is usually to store the decocted traditional Chinese medicine in the refrigerator first and then take it out for heating when needed. This method is not only inefficient, but also the multiple freezing and heating processes will seriously affect the efficacy of traditional Chinese medicine. In addition, existing heating devices such as steamers and electric stoves have disadvantages such as small capacity, unsanitary, high power consumption, low efficiency, and inconvenient operation, far from meeting the clinical needs. Moreover, the storage and heating of traditional Chinese medicine packages are carried out separately. When nurses take them, they need to carry the medicine packages to the heating place for heating. The heated medicine packages cannot be stored in a heat-insulated manner, will quickly cool down after being taken out, and the heating and insulation temperature cannot be accurately controlled during use.

[0004] With the development of technology, the application of traditional Chinese medicine decocting machines and medicine dispensing machines has realized the automatic decocting and encapsulation of traditional Chinese medicine. These automatic devices can directly decoct traditional Chinese medicine and then encapsulate it in bottles, greatly improving the efficiency and quality of traditional Chinese medicine preparation. However, how to ensure the temperature of the encapsulated traditional Chinese medicine during the distribution process and ensure the efficacy has become a new challenge.

[0005] Therefore, in view of this situation, there is an urgent need to design and produce an intelligent temperature-controlled insulation delivery box for traditional Chinese medicine encapsulated bottles to meet the actual use needs. The intelligent temperature-controlled insulation delivery box of the present invention aims to solve the problem of improper temperature control during the distribution process of traditional Chinese medicine in the prior art. By integrating advanced temperature control technology, it ensures that the temperature of traditional Chinese medicine during the distribution process is maintained within the optimal range, thereby ensuring the efficacy and providing an effective solution for the modern distribution of traditional Chinese medicine. Summary of the Invention

[0006] The object of the present invention is to provide an intelligent temperature-controlled insulation delivery box for traditional Chinese medicine encapsulated bottles, which can monitor the temperature of traditional Chinese medicine in real time and automatically heat when the temperature is lower than the predetermined range to ensure the efficacy of traditional Chinese medicine.

[0007] To achieve the above object, the present invention adopts the following technical solutions. Preferably, for claim 1, the temperature-controlled traditional Chinese medicine encapsulation bottle thermal insulation delivery box includes the following components: a buckle for firmly fixing the thermal insulation box cover on the thermal insulation box housing; the thermal insulation box housing, which constitutes the external structure of the thermal insulation delivery box, providing basic protection and thermal insulation functions; the thermal insulation box cover, covering the top of the thermal insulation box housing and cooperating with the cover buckle to enhance the thermal insulation effect; reinforced handles installed on both sides of the thermal insulation box housing for easy handling and movement; the first thermal insulation partition and the second thermal insulation partition, respectively placed on the top layer and the bottom layer of the thermal insulation box housing, for separating spaces and providing additional thermal insulation effects.

[0008] Furthermore, the LED digital display is integrated on the first thermal insulation partition and the second thermal insulation partition for displaying the temperature of the liquid medicine in the traditional Chinese medicine encapsulation bottle; the infrared temperature sensor is also integrated on the first thermal insulation partition and the second thermal insulation partition for real-time monitoring of the temperature of the liquid medicine in the traditional Chinese medicine encapsulation bottle; the first hollow grid inner lining and the second hollow grid inner lining are respectively placed on the top layer and the bottom layer of the thermal insulation box housing for fixing the traditional Chinese medicine encapsulation bottle and providing additional thermal insulation and protection; the magnetron is installed at the bottom of the thermal insulation box housing for heating the liquid medicine in the traditional Chinese medicine encapsulation bottle when needed; the traditional Chinese medicine encapsulation bottle is placed in the first hollow grid inner lining and the second hollow grid inner lining for encapsulating the decocted traditional Chinese medicine.

[0009] Even further, the interior of the thermal insulation box housing is divided into two layers, with the second hollow grid inner lining and the second thermal insulation partition placed on the bottom layer, and the first hollow grid inner lining and the first thermal insulation partition placed on the top layer, to achieve layered storage and thermal insulation of the traditional Chinese medicine encapsulation bottles.

[0010] Preferably, for claim 2, the first thermal insulation partition and the second thermal insulation partition are integrated with LED digital displays and infrared temperature sensors having the same number of grids as the opened hollow grid inner lining. This allows each position of the traditional Chinese medicine encapsulation bottle to be equipped with corresponding temperature monitoring devices, thereby realizing real-time monitoring of the temperature of the liquid medicine in each medicine bottle.

[0011] Furthermore, each LED digital display correspondingly displays the temperature data monitored by the infrared temperature sensor, ensuring that the delivery personnel can intuitively see the real-time temperature information of each medicine bottle. The one-to-one monitoring method can improve the accuracy of temperature monitoring, ensure that the temperature of the traditional Chinese medicine is maintained within the optimal range during the delivery process, and thus guarantee the efficacy of the medicine. At the same time, this design also helps to promptly detect and handle abnormal temperature situations, avoiding the loss of efficacy caused by improper temperature. For claim 3, the magnetron is installed in the shaped mating groove formed in the bottom space of the thermal insulation box housing. By utilizing the space at the bottom of the thermal insulation box that is not occupied by the traditional Chinese medicine encapsulation bottle array, the effective utilization of space is achieved, while avoiding the occupation of the placement space of the traditional Chinese medicine encapsulation bottle array.

[0012] Furthermore, the microwave generated by the magnetron is emitted from the bottom to the entire interior of the thermal insulation delivery box. The bottom-up microwave emission method helps to achieve a uniform temperature distribution inside the box, ensuring that the liquid medicine in the traditional Chinese medicine packaging bottle can maintain its efficacy in a relatively stable and uniform temperature environment.

[0013] Furthermore, the interior of the thermal insulation box can be heated by the microwave generated by the magnetron. When the infrared temperature sensor monitors that the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle is lower than the preset range, the magnetron can be automatically activated to heat the liquid medicine in the traditional Chinese medicine packaging bottle by generating microwave, so as to ensure that the liquid medicine temperature is maintained within the range of 55 degrees Celsius to 60 degrees Celsius, ensuring the effect of traditional Chinese medicine hot drinks. Since the microwave generated by the magnetron can directly act on the entire interior of the thermal insulation box, it helps to improve the heating efficiency, reduce energy consumption, and achieve energy-saving effects. The installation position and functional design of the magnetron enable the operator to heat the traditional Chinese medicine packaging bottle without frequently opening the cover of the thermal insulation box, improving the convenience of operation and the delivery efficiency.

[0014] Regarding claim 4, for the temperature-controlled traditional Chinese medicine packaging bottle thermal insulation delivery box, an important ergonomic design feature is proposed, that is, the opening height of the second hollow grid lining is lower than the height of the traditional Chinese medicine packaging bottle. This improves the efficiency and convenience during the delivery process, while ensuring the comfort and safety of operation. The height of the second hollow grid lining is designed to be lower than the height of the traditional Chinese medicine packaging bottle. When the delivery personnel need to take out the traditional Chinese medicine packaging bottle from the thermal insulation box, they can directly reach the middle or bottom of the bottle without having to bend over too much or reach too deep, thus simplifying the taking action and reducing the labor intensity.

[0015] Furthermore, by setting the height of the second hollow grid lining lower than the height of the traditional Chinese medicine packaging bottle and considering ergonomic principles, the delivery personnel can maintain a natural posture when taking the traditional Chinese medicine packaging bottle, reducing the pressure on the back, arms and wrists, thereby reducing the risk of muscle fatigue and injury that may occur during the work process. The simplified taking action can reduce the time and force required by the delivery personnel for each bottle retrieval, thus improving the overall delivery efficiency, which is particularly important for medical institutions or delivery services that need to deliver traditional Chinese medicine quickly and frequently.

[0016] Regarding claim 5, both the first thermal insulation partition and the second thermal insulation partition are designed to be divided into six independent areas. The division method enables each area to be independently operated, improving the flexibility of use. Each area is designed to correspond to 8 traditional Chinese medicine packaging bottles. This ensures that each area can effectively accommodate a certain number of medicine bottles, while being convenient for management and operation.

[0017] Furthermore, when delivering to the user, the delivery staff can separately open the corresponding area as needed. This avoids the need to open the entire thermal insulation partition each time, thus saving the time for fetching and improving efficiency. By only opening the required area, heat loss inside the thermal insulation partition can be minimized. This is crucial for maintaining the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle, especially in cases where frequent access or long-distance delivery is required. By reducing unnecessary heat loss, it helps to maintain the temperature stability inside the entire incubator, thereby improving the thermal insulation efficiency. Reducing heat loss also means less energy is used to maintain the temperature, which helps to reduce energy consumption and achieve energy-saving effects.

[0018] Preferably, for claim 6, the incubator cover is of a stepped design, which helps to fit more closely above the box body and enhance the thermal insulation effect. The stepped design can also provide additional stability to prevent the cover from accidentally opening during handling. Cover buckles are installed on both sides of the incubator cover, and these buckles are used to ensure that the cover fits tightly above the box body, guaranteeing the embedding effect and thermal insulation effect. The design of the cover buckles makes it more convenient to open and close, while ensuring that the cover will not easily loosen during delivery, thus maintaining the temperature stability inside the box.

[0019] Furthermore, a storage rack is provided at the bottom of the incubator cover to prevent the first thermal insulation partition and the first hollow grid inner lining that are folded and overlapped. When the first hollow grid inner lining needs to be folded or moved during delivery, the storage rack can provide support to prevent it from colliding with or squeezing the traditional Chinese medicine packaging bottle, thereby protecting the integrity of the medicine bottle and the quality of the medicine.

[0020] Preferably, for claim 7, reinforced carrying handles are installed on both sides of the thermal insulation outer shell. This enhances the structural strength of the carrying handles, enabling them to withstand greater weight and force, while reducing the risk of deformation or damage. The presence of the reinforced carrying handles makes it easier and safer to carry and move the thermal insulation delivery box. Users can easily lift the incubator without worrying about slipping or the carrying handle breaking, thus improving the convenience and safety of handling.

[0021] During the delivery process, it is often necessary to quickly carry the incubator. The design of the reinforced carrying handles allows the delivery staff to move the incubator quickly and stably, improving the operation efficiency and shortening the delivery time. The reinforced carrying handles take into account the needs of different delivery environments, and can provide a stable and reliable way of carrying whether in a hospital, pharmacy or home delivery. For users, an easily portable incubator can reduce their waiting time and improve their satisfaction. The design of the reinforced carrying handles reflects the attention to user experience, making the entire delivery process smoother. Furthermore, the reinforced carrying handles are usually made of durable materials, which can withstand long-term use and frequent handling, thereby extending the service life of the incubator.

[0022] Regarding claim 8, the traditional Chinese medicine encapsulation bottle is designed to deliver two bottles per person per delivery. Such a design takes into account the taking habits and dosage requirements of traditional Chinese medicine, ensuring that patients can correctly take traditional Chinese medicine according to the doctor's advice. The capacity of each traditional Chinese medicine encapsulation bottle is set at 250 milliliters, which meets the needs of a single dose, while also considering the rational use of the internal space of the incubator and the convenience of delivery. Further, after the liquid medicine in the traditional Chinese medicine encapsulation bottle is encapsulated, its medicinal effect is optimal within 4 to 6 hours. During this time period, the temperature and component stability of the liquid medicine can be guaranteed, making it suitable for patients to take. Beyond this time, the medicinal effect will be affected due to temperature changes or other factors.

[0023] Preferably, regarding claim 9, the infrared temperature sensor is responsible for detecting the temperature of the liquid medicine in the traditional Chinese medicine encapsulation bottle and transmitting the measured data to the LED digital display. It plays a key role in ensuring that the liquid medicine remains within the required temperature range during delivery. The infrared temperature sensor uses the relationship between infrared radiation and the temperature of an object to measure the temperature of the object, and it includes an infrared detector that can sense and measure the infrared radiation emitted by the object. The sensor can monitor the temperature changes during the decocting process in real time and transmit the data to the controller. Finally, the LED digital display will show these temperature data, enabling the delivery personnel to visually monitor the temperature of the liquid medicine in each traditional Chinese medicine encapsulation bottle and ensuring that the medicinal effect is optimally maintained.

[0024] Preferably, regarding claim 10, the first hollow grid inner lining and the second hollow grid inner lining can be opened to form a grid for fixing and protecting the traditional Chinese medicine encapsulation bottle, or they can be closed to the folded and overlapping state to save space and facilitate storage.

[0025] Further, after the traditional Chinese medicine encapsulation bottle on the top layer is delivered, the first hollow grid inner lining can be closed and folded. Its external dimensions are the same as those of the first thermal insulation partition, and it can be neatly placed in the storage rack of the incubator cover, thus creating space for the delivery of the next layer. This allows the delivery personnel to quickly switch from the top layer to the traditional Chinese medicine encapsulation bottle on the bottom layer, improving the delivery efficiency and reducing the time consumption during delivery. In the closed state, the hollow grid inner lining can protect the traditional Chinese medicine encapsulation bottle from external impacts and collisions, ensuring the safety of the medicine during delivery.

[0026] Regarding claim 11, the control method of the magnetron is another key feature of the present invention, which can be controlled manually or by a single-chip microcomputer program. The magnetron is responsible for starting heating when the liquid medicine temperature in the traditional Chinese medicine packaging bottle is lower than the predetermined range. The automatic temperature control ensures that the liquid medicine always remains within the temperature range for the best medicinal effect. The operator can manually control the start and stop of the magnetron according to the actual situation, providing the possibility for flexible operation during the distribution process. Optionally, through the single-chip microcomputer program, the automatic control of the magnetron can be realized. When the infrared temperature measurement sensor detects that the liquid medicine temperature is lower than the preset value, the program can automatically start the magnetron for heating without manual intervention. The program control helps to avoid unnecessary energy waste because the heating process only starts when needed, thus improving the energy utilization efficiency.

[0027] The above technical solutions can achieve the following beneficial effects: . The temperature-controlled traditional Chinese medicine packaging bottle thermal insulation distribution box provided by the present invention can accurately control the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle, ensuring that the medicinal effect is not affected during the distribution process.

[0028] . The present invention improves the efficiency of traditional Chinese medicine distribution and reduces the time consumption and heat dissipation during the distribution process through the dual states of the partition integrating temperature measurement and heat preservation functions and the hollow grid lining.

[0029] . The present invention makes handling and operation more convenient through the reinforced handle and stepped cover plate, improving the user satisfaction. The intelligent control method of the magnetron helps to reduce energy consumption and achieve energy-saving effects.

[0030] . The ergonomic design adopted by the present invention, especially the height setting of the second hollow grid lining, enables the distribution personnel to maintain a natural posture when taking the traditional Chinese medicine packaging bottle, reducing the pressure on the back, arms and wrists, thereby reducing the risk of musculoskeletal injuries that may occur during the work process and improving the comfort and safety of the operation.

[0031] . The temperature control system provided by the present invention can not only monitor the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle in real time, but also automatically start the magnetron for heating when the temperature is lower than the predetermined range. This automatic temperature control ensures that the liquid medicine always remains within the temperature range for the best medicinal effect, improving the therapeutic effect of traditional Chinese medicine. Description of the Drawings

[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art.

[0033] Figure 1 It is the assembled front view of the temperature-controlled traditional Chinese medicine packaging bottle thermal insulation distribution box provided by the present invention.

[0034] Figure 2It is the top view of the temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box provided by the present invention.

[0035] Figure 3 It is the insulation partition board, LED digital display, and infrared temperature sensor adopted by the present invention Assembly relationship illustration.

[0036] Figure 4 It is the schematic diagram of the integrated effect of the first insulation partition board adopted by the present invention.

[0037] Figure 5 It is the schematic diagram of the top structure of the temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box provided by the present invention.

[0038] Figure 6 It is the schematic diagram of the space generated when the hollow grid inner lining adopted by the present invention is opened.

[0039] Figure 7 It is the schematic diagram of the overlapping of the closed hollow grid inner lining adopted by the present invention.

[0040] Figure 8 It is the schematic diagram of the assembly relationship of the cover buckle, insulation box shell, insulation box cover, and reinforcement handle adopted by the present invention.

[0041] Figure 9 It is the front three-dimensional structure schematic diagram of the insulation box shell adopted by the present invention.

[0042] Figure 10 It is the three-dimensional schematic diagram of the magnetron adopted by the present invention.

[0043] In the figure: (1) cover buckle, (2) insulation box shell, (3) insulation box cover, (4) reinforcement handle, (5) first insulation partition board, (6) LED digital display, (7) infrared temperature sensor, (8) second insulation partition board, (9) first hollow grid inner lining, (10) second hollow grid inner lining, (11) magnetron, (12) traditional Chinese medicine packaging bottle. Specific implementation mode

[0044] The following further describes the present invention with reference to the accompanying drawings.

[0045] The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box disclosed by the present invention includes the following components. The cover buckle (1) is used to ensure that the insulation box cover (3) is firmly fixed on the insulation box shell (2) to enhance the insulation effect. The insulation box shell (2) constitutes the external structure of the insulation delivery box, providing basic protection and insulation functions.

[0046] The insulation box cover (3) covers the top of the insulation box shell (2) and is used in conjunction with the cover buckle (1) to enhance the insulation effect. The reinforced handle (4) is installed on both sides of the insulation box shell (2) for easy handling and movement. The first insulation partition (5) and the second insulation partition (8) are respectively placed on the top layer and the bottom layer of the insulation box shell (2) to separate the space and provide additional insulation. Further, as Figure 3 shown, the LED digital display (6) and the infrared temperature sensor (7) are integrated on the first insulation partition (5) and the second insulation partition (8) to display and monitor the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle (12).

[0047] As Figure 2 shown in the top view of the temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box, it can be seen that the traditional Chinese medicine packaging bottles (12) are neatly placed in the first hollow grid inner lining (9) and the second hollow grid inner lining (10). The inner lining is designed to fix the traditional Chinese medicine packaging bottles and provide additional insulation and protection. The grid layout of the hollow grid inner lining shows the arrangement of the traditional Chinese medicine packaging bottles in the insulation box to ensure that each bottle can be evenly heated and insulated. The first insulation partition (5) and the second insulation partition (8) are divided into six areas, and each area corresponds to 8 medicine bottles, which is convenient for opening the corresponding area separately to reduce heat loss.

[0048] As Figure 3 shown, the LED digital display (6) and the infrared temperature sensor (7) are integrated on the first insulation partition (5) and the second insulation partition (8). Each sensor corresponds to a traditional Chinese medicine packaging bottle to monitor and display the temperature of the liquid medicine in real time. The specific positions of the sensors and the digital displays on the insulation partitions ensure that the temperature of each traditional Chinese medicine packaging bottle can be accurately monitored.

[0049] As Figure 4 shown, the first insulation partition (5) and the second insulation partition (8) are integrated with the same number of LED digital displays (6) and infrared temperature sensors (7) as the number of grids generated when the hollow grid inner lining is opened, allowing each position of the traditional Chinese medicine packaging bottle (12) to be equipped with corresponding temperature monitoring equipment, so as to realize the real-time monitoring of the temperature of the liquid medicine in each medicine bottle.

[0050] As Figure 5 shown, the first hollow grid inner lining (9) and the second hollow grid inner lining (10) are respectively placed on the top layer and the bottom layer of the insulation box shell (2) to fix the traditional Chinese medicine packaging bottles (12) and provide additional insulation and protection.

[0051] As Figure 6 and Figure 7As shown, the first hollow grid lining (9) and the second hollow grid lining (10) can be opened to form a grid for fixing and protecting the traditional Chinese medicine encapsulation bottle (12), or can be closed to the folded and overlapped state to save space and facilitate storage.

[0052] As Figure 8 and Figure 9 shown, the magnetron (11) is installed at the bottom of the incubator housing (2) for heating the liquid medicine in the traditional Chinese medicine encapsulation bottle (12) when needed.

[0053] Embodiment 2, as Figure 1 and Figure 2 shown, the interior of the incubator housing (2) is divided into two layers. The second hollow grid lining (10) and the second heat preservation partition board (8) are placed on the bottom layer, and the first hollow grid lining (9) and the first heat preservation partition board (5) are placed on the top layer to achieve layered storage and heat preservation of the traditional Chinese medicine encapsulation bottle (12).

[0054] As Figure 3 shown, the first heat preservation partition board (5) and the second heat preservation partition board (8) are integrated with LED digital displays (6) and infrared temperature sensors (7) having the same number as the grids generated by the opening of the hollow grid lining, allowing corresponding temperature monitoring devices to be equipped at the position of each traditional Chinese medicine encapsulation bottle (12), so as to realize real-time monitoring of the temperature of the liquid medicine in each medicine bottle.

[0055] As Figure 4 shown, each LED digital display correspondingly displays the temperature data monitored by the infrared temperature sensor, ensuring that the delivery personnel can intuitively see the real-time temperature information of each medicine bottle. The one-to-one monitoring method can improve the accuracy of temperature monitoring, ensure that the temperature of the traditional Chinese medicine is maintained within the optimal range during distribution, and thus ensure the medicinal effect. At the same time, this design also helps to promptly detect and handle abnormal temperature conditions, avoiding the loss of medicinal effect caused by improper temperature.

[0056] As Figure 5 shown, the magnetron (11) is installed in the shape-fitting groove formed by the bottom space of the incubator housing (2). By using the space at the bottom of the incubator that is not occupied by the traditional Chinese medicine encapsulation bottle array, the effective utilization of space is realized, and at the same time, the occupation of the placement space of the traditional Chinese medicine encapsulation bottle array is avoided.

[0057] As Figure 6 and Figure 7 shown, the microwave generated by the magnetron (11) is emitted from the bottom to the entire interior of the heat preservation delivery box. The bottom-up microwave emission method helps to achieve uniform distribution of the temperature in the box, ensuring that the liquid medicine in the traditional Chinese medicine encapsulation bottle (12) can maintain its medicinal effect in a relatively stable and uniform temperature environment.

[0058] As Figure 8As shown, the microwave generated by the magnetron (11) can heat the inside of the incubator. When the infrared temperature sensor (7) detects that the temperature of the liquid medicine in the traditional Chinese medicine packaging bottle (12) is lower than the preset range, the magnetron can be automatically started to heat the liquid medicine in the traditional Chinese medicine packaging bottle (12) by generating microwaves, so as to ensure that the temperature of the liquid medicine is maintained within the range of 55 degrees Celsius to 60 degrees Celsius, ensuring the effect of traditional Chinese medicine hot drinks. Since the microwaves generated by the magnetron (11) can directly act on the entire inside of the incubator, it helps to improve the heating efficiency, reduce energy consumption, and achieve energy-saving effects. The installation position and functional design of the magnetron enable the operator to heat the traditional Chinese medicine packaging bottle without frequently opening the incubator cover, improving the convenience of operation and the delivery efficiency.

[0059] Combined with Figure 5 and Figure 9 It is described that the temperature-controlled traditional Chinese medicine packaging bottle insulation and delivery box presents an important ergonomic design feature, that is, the opening height of the second hollow grid lining (10) is lower than the height of the traditional Chinese medicine packaging bottle (12). This improves the efficiency and convenience during the delivery process, while ensuring the comfort and safety of operation. The height of the second hollow grid lining (10) is designed to be lower than the height of the traditional Chinese medicine packaging bottle (12). When the delivery person needs to take out the traditional Chinese medicine packaging bottle from the incubator, they can directly reach the middle or bottom of the bottle without excessive bending or reaching too deep, thus simplifying the taking action and reducing the labor intensity.

[0060] As Figure 9 shown, the temperature-controlled traditional Chinese medicine packaging bottle insulation and delivery box presents an important ergonomic design feature, that is, the opening height of the second hollow grid lining (10) is lower than the height of the traditional Chinese medicine packaging bottle (12). This design improves the efficiency and convenience during the delivery process, while ensuring the comfort and safety of operation. The height of the second hollow grid lining (10) is designed to be lower than the height of the traditional Chinese medicine packaging bottle (12). When the delivery person needs to take out the traditional Chinese medicine packaging bottle from the incubator, they can directly reach the middle or bottom of the bottle without excessive bending or reaching too deep, thus simplifying the taking action and reducing the labor intensity.

[0061] Furthermore, by setting the height of the second hollow grid lining (10) lower than the height of the traditional Chinese medicine packaging bottle (12) and considering ergonomic principles, it enables the delivery person to maintain a natural posture when taking the traditional Chinese medicine packaging bottle, reducing the pressure on the back, arms, and wrists, thereby reducing the risk of muscle fatigue and injury that may occur during work. The simplified taking action can reduce the time and force required by the delivery person for each bottle taking, thus improving the overall delivery efficiency, which is particularly important for medical institutions or delivery services that need to quickly and frequently deliver traditional Chinese medicine.

[0062] AsFigure 10 As shown, the magnetron (11) is installed in the shape - fitting groove formed in the bottom space of the incubator housing (2). This design makes full use of the space at the bottom of the incubator that is not occupied by the array of traditional Chinese medicine packaging bottles (12), achieving effective utilization of space and avoiding occupying the placement space of the array of traditional Chinese medicine packaging bottles.

[0063] Furthermore, the magnetron (11) is responsible for starting heating when the liquid medicine temperature in the traditional Chinese medicine packaging bottle (12) is lower than the preset range. The microwave it generates can be emitted from the bottom to the entire interior of the thermal insulation delivery box, realizing a bottom - up microwave emission mode, which helps to achieve uniform temperature distribution inside the box and ensure that the liquid medicine in the traditional Chinese medicine packaging bottle (12) can maintain its medicinal effect in a relatively stable and uniform temperature environment.

[0064] Even further, the magnetron (11) can be controlled manually or by a single - chip microcomputer program. When the infrared temperature - measuring sensor (7) monitors that the liquid medicine temperature in the traditional Chinese medicine packaging bottle (12) is lower than the preset range, the magnetron can be automatically started to heat the liquid medicine in the traditional Chinese medicine packaging bottle (12) by generating microwaves, so as to ensure that the liquid medicine temperature is maintained within the range of 55 degrees Celsius to 60 degrees Celsius, ensuring the effect of traditional Chinese medicine hot drinks.

[0065] Since the microwave generated by the magnetron (11) can directly act on the entire interior of the incubator, this design helps to improve the heating efficiency, reduce energy consumption, and achieve energy - saving effects. The installation position and functional design of the magnetron enable the operator to heat the traditional Chinese medicine packaging bottle without frequently opening the incubator cover plate, improving the convenience of operation and the delivery efficiency.

[0066] The infrared temperature - measuring sensor (7) detects whether the liquid medicine temperature of the traditional Chinese medicine packaging bottle corresponding to the bottom is within the predetermined temperature range and transmits the specific temperature value to the LED digital display (6). The delivery personnel can monitor and observe the temperature of each medicine bottle in real time. When the liquid medicine temperature in the medicine bottle is lower than the set range, there are two implementation methods. The first is that when the temperature is observed manually to be lower than the lowest value of the predetermined range, the magnetron (11) is powered on to generate microwaves, which are reflected back and forth on the metal of the incubator wall and heat the liquid medicine in the traditional Chinese medicine bottle. The second is controlled by a single - chip microcomputer program. When the temperature is lower than the lowest value of the predetermined range, the magnetron (11) is started to heat the medicine bottle and form a closed - loop.

[0067] Then, open the first hollow grid lining (9) again and place it above the second thermal insulation partition (8). For the same - number array, put the traditional Chinese medicine liquid - collecting bottles, and then place the first thermal insulation partition (5).

[0068] During the actual delivery process, the first thermal insulation partition (5) and the first hollow grid inner lining (9) are on the top layer. First, the top layer is delivered, and then the bottom layer is delivered, with 48 medicine bottles on each layer. For traditional Chinese medicine, one dose for one person is two bottles, and each bottle is 250 ml. For one customer, the first bottle on the top layer is delivered in the morning, and the second bottle on the bottom layer is delivered in the afternoon. The optimal efficacy is achieved when the two bottles are reused within 4 - 6 hours.

[0069] The size of the entire insulation box is close to that of a conventional food delivery box, which is convenient for production. After placing two layers of traditional Chinese medicine packaging bottles, the hollow grid inner lining, and the thermal insulation partition, a thermal insulation cover plate (3) is placed on the top. Cover buckles (1) are installed on both sides of the thermal insulation cover plate, which can closely fit the cover plate above the box body. Moreover, the cover plate is stepped, with better embedding and thermal insulation effects. In addition, reinforcement handles (4) are installed on both sides of the thermal insulation shell, which is convenient for the handling and movement of the entire insulation box.

[0070] The specific embodiments described above further elaborate on the purpose, technical solutions, and beneficial effects of the present invention. It should be understood that the above are only specific embodiments of the present invention and are not used to limit the protection scope of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection scope of the present invention.

Claims

1. A temperature-controlled insulated delivery box for Chinese medicine packaging bottles, comprising a cover buckle, an insulation box shell, an insulation box cover, a reinforced handle, a first insulation partition, an LED digital display, an infrared temperature sensor, a second insulation partition, a first hollow grid lining, a second hollow grid lining, a magnetron, and a Chinese medicine packaging bottle. Among them, The interior of the thermal insulation box shell is divided into two layers, the second hollow grid liner and the second thermal insulation baffle are placed on the bottom layer, and the first hollow grid liner and the first thermal insulation baffle are placed on the top layer.

2. A temperature-controlled insulated delivery box for packaging bottles of traditional Chinese medicine according to claim 1, wherein the first insulation partition and the second insulation partition are integrated with LED digital displays and infrared temperature sensors with the same number of grids as the hollow grid liner produced by opening.

3. A temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The magnetron is installed in a shape-matching groove formed in the bottom space of the thermal insulation box shell. It does not occupy the array placement space of the Chinese medicine packaging bottles. And the microwaves generated by the magnetron are emitted from the bottom to the entire interior of the thermal insulation delivery box.

4. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The height of the second hollow grid liner when opened is lower than that of the traditional Chinese medicine packaging bottle, so that it is convenient for delivery personnel to directly take it, which is ergonomic.

5. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The first thermal insulation partition and the second thermal insulation partition are divided into six areas, each area corresponds to 8 medicine bottles, so that the corresponding areas can be opened separately when delivered to users, and when taking the medicine bottles, the corresponding sub-areas are opened to avoid excessive heat loss of the Chinese medicine packaging bottles inside the array caused by removing the thermal insulation partition as a whole.

6. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The insulated box cover is a stepped design, with cover buckles installed on both sides, which are used to fit tightly on the box body to ensure the embedding effect and insulation effect. A shelf is provided at the bottom of the insulated box cover to prevent the first insulated partition and the first hollow grid liner from folding and overlapping.

7. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: Reinforced handles are installed on both sides of the heat-insulating shell to facilitate transportation and movement.

8. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The Chinese medicine packaging bottle contains two bottles for one dose per person, each bottle is 250 ml, and the best reuse time of the medicine is 4-6 hours.

9. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The infrared temperature sensor detects the temperature of the medicine liquid in the traditional Chinese medicine packaging bottle and transmits the data to the LED digital display.

10. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The hollow grid lining has two states: open to produce a grid and closed to fold and overlap. After the traditional Chinese medicine packaging bottles on the top layer are delivered, it can be closed to the folded and overlapped state, and the outer dimensions are the same as those of the first insulation partition. They are placed together and stored in the storage rack of the insulation box cover, and then the traditional Chinese medicine packaging bottles on the bottom layer are delivered.

11. The temperature-controlled traditional Chinese medicine packaging bottle insulation delivery box according to claim 1, characterized in that: The magnetron can be controlled manually or by a single chip computer program, and heating is started when the temperature of the liquid medicine is lower than a predetermined range.