Chemical transportation device

Through the design of chemical transportation equipment, including an insulated box, temperature control mechanism and shock-absorbing platform, the problems of glass bottle collision, direct sunlight and temperature changes were solved, and stable transportation of chemicals and improved safety were achieved.

CN223355652UActive Publication Date: 2025-09-19蒙牛乳业(唐山)有限责任公司 +1
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Patent Information

Application Number
CN202422892312.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-09-19
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

During the transportation of chemicals, glass bottles are prone to collision and breakage, direct sunlight affecting stability, and temperature changes causing safety risks.

Method used

A chemical transportation device was designed, including an insulation box, a temperature control mechanism, a template and a shock-absorbing platform. Semiconductor refrigeration plates and cooling fans were used to adjust the temperature. The template fixed the medicine bottles to reduce collision and shaking. The containment cavity was sealed to prevent direct sunlight. The thermal insulation and cooling areas were separated by a thermal deflection plate.

Benefits of technology

It effectively prevents glass bottles from breaking, maintains chemical stability, avoids photochemical reactions and temperature changes, ensures chemicals are within the appropriate temperature range, and improves transportation safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of chemical transportation, and provides a chemical transportation device which comprises a transportation vehicle. The heat preservation box comprises a cover plate, a box body and a template, the box body is arranged on the transport vehicle, the cover plate is arranged on the box body, and the cover plate is matched with the box body to form a closed containing cavity; the template is arranged in the containing cavity, and a groove matched with the medicament bottle in shape is formed in the template and used for fixing the medicament bottle; the temperature control mechanism is arranged on the cover plate or the box body, and the refrigerating end of the temperature control mechanism is arranged in the containing cavity. According to the chemical transportation device, the chemical bottle can be stably fixed, and the problem that the glass bottle is broken due to shaking or collision in the transportation process is solved. Direct sunlight is effectively shielded, photochemical reaction is avoided, and the stability of chemicals in the transportation process is ensured. And the built-in temperature control mechanism can accurately adjust the temperature in the accommodating cavity, so that the problem of chemical property change or failure caused by temperature change is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of chemical transportation, in particular to a chemical transportation device. Background Art

[0002] In factories, hazardous chemicals used for testing are typically stored in dedicated warehouses. However, the lack of reliable transportation during regular visits to the warehouse to retrieve these hazardous chemicals presents numerous safety risks. For one thing, the glass bottles containing the chemicals could be impacted during the access process. If a bottle breaks, the leaked hazardous chemicals could pose a serious threat to personnel and the environment. Furthermore, chemicals could be exposed to direct sunlight during access, potentially affecting their stability and even triggering chemical reactions. Furthermore, in the summer, the temperature can rise during the journey to retrieve hazardous chemicals. For chemicals with specific temperature requirements, this temperature change can alter their properties, increasing safety risks.

[0003] Therefore, in order to solve these problems, there is an urgent need for a device that can effectively protect the safety risks of hazardous chemicals during the use process. Utility Model Content

[0004] The utility model provides a chemical transportation device for solving the safety risk problems caused by collision of glass bottles, direct sunlight and temperature rise in the existing process of taking dangerous chemicals.

[0005] The utility model provides a chemical transportation device, comprising:

[0006] transport vehicles;

[0007] The thermal insulation box includes a cover plate, a box body, and a template. The box body is arranged on the transport vehicle, the cover plate is arranged on the box body, and the cover plate cooperates with the box body to form a closed accommodating cavity. The template is arranged in the accommodating cavity, and the template is formed with a groove adapted to the shape of the medicine bottle for fixing the medicine bottle.

[0008] A temperature control mechanism is provided on the cover plate or the box body, and a refrigeration end of the temperature control mechanism is provided in the accommodating cavity for adjusting the temperature in the accommodating cavity.

[0009] According to a chemical transport device provided by the present utility model, the cover plate or the box body is provided with a mounting port communicating with the accommodating cavity;

[0010] The temperature control mechanism includes a refrigeration fin and a cooling fan, and the refrigeration fin and the cooling fan are arranged at the installation port.

[0011] According to a chemical transport device provided by the present invention, the chemical transport device further includes:

[0012] A heat conduction plate is arranged in the accommodating cavity, and the heat conduction plate divides the accommodating cavity into a heat preservation area and a temperature reduction area. The heat preservation area is used to place medicine bottles, and the temperature reduction area is connected to the installation port.

[0013] According to a chemical transport device provided by the present invention, the thermal insulation box further includes:

[0014] The inner liner is sleeved in the accommodating cavity, and a notch groove for fixing the template is formed in the inner liner, so that the medicine bottle is fixed in the notch groove through the groove.

[0015] According to a chemical transport device provided by the present invention, the thermal insulation box further includes:

[0016] A temperature display screen is provided on the cover or the box body;

[0017] The temperature sensor is used to detect the temperature in the accommodating cavity and is electrically connected to the temperature display screen.

[0018] According to a chemical transport device provided by the present invention, the thermal insulation box further includes:

[0019] A handle is connected to the cover plate or the box body.

[0020] According to a chemical transport device provided by the present invention, the chemical transport device further includes:

[0021] A shock-absorbing platform, provided on the transport vehicle, for carrying the thermal insulation box;

[0022] An elastic member is connected between the shock absorbing platform and the transport vehicle.

[0023] According to a chemical transport device provided by the present invention, the chemical transport device further includes:

[0024] a power supply, provided on the transport vehicle;

[0025] A switch has one end electrically connected to the power supply and the other end electrically connected to the temperature control mechanism via an external circuit.

[0026] According to a chemical transport device provided by the present invention, the chemical transport device further includes:

[0027] A protective plate is arranged on the transport vehicle, and a mounting groove for accommodating the power supply is formed on the transport vehicle.

[0028] According to a chemical transport device provided by the present utility model, the transport vehicle comprises: a vehicle body, a push rod and rollers;

[0029] The vehicle body is used to carry the box body, the top surface of the vehicle body is connected to the push rod, and the bottom surface of the vehicle body is connected to the roller.

[0030] The chemical transport device provided by the present invention can firmly fix the medicine bottle through the template set in the storage chamber and the groove formed on the template that is adapted to the shape of the medicine bottle, thereby avoiding the problem of glass bottle breakage caused by shaking or collision during transportation. The chemical transport device adopts a closed storage chamber formed by the cooperation of the cover plate and the box body, which effectively blocks direct sunlight, avoids the occurrence of photochemical reactions, and ensures the stability of chemicals during transportation. The built-in temperature control mechanism can accurately adjust the temperature in the storage chamber according to the temperature requirements of the chemicals. In high temperature environments such as summer, the cooling end of the temperature control mechanism can effectively reduce the temperature in the storage chamber, ensuring that the chemicals are always within the appropriate temperature range, avoiding the problem of changes in chemical properties or failure due to temperature changes. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the technical solutions in the present invention or the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0032] Figure 1 It is a schematic diagram of the three-dimensional structure of the chemical transportation device provided by the utility model.

[0033] Figure 2 This is a disassembly diagram of the thermal insulation box provided by the utility model.

[0034] Figure 3 It is a front view of the thermal insulation box provided by the utility model.

[0035] Figure 4 for Figure 3 Schematic diagram of the AA section.

[0036] Figure 5 It is a three-dimensional structural schematic diagram of the heat preservation box provided by the utility model.

[0037] Reference numerals:

[0038] 10. Transport vehicle; 110. Push rod; 120. Roller; 130. Vehicle body; 20. Insulated box; 210. Cover; 220. Box body; 230. Template; 240. Inner liner; 250. Temperature display screen; 260. Handle; 30. Temperature control mechanism; 310. Refrigeration plate; 320. Cooling fan; 330. Interface; 340. First external circuit; 350. Second external circuit; 40. Thermal conduction plate; 50. Shock-absorbing platform; 60. Elastic member; 70. Power supply; 80. Switch; 90. Protective plate. DETAILED DESCRIPTION

[0039] To make the purpose, technical solutions, and advantages of the present invention more clear, the following will be combined with the accompanying drawings to clearly and completely describe the technical solutions of the present invention. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0040] The following combination Figures 1 to 3 The present invention provides a chemical transport device, which includes a transport vehicle 10 and an insulated box 20. The insulated box 20 includes a cover 210, a box body 220, and a template 230. The box body 220 is mounted on the transport vehicle 10, with the cover 210 mounted on the box body 220. The cover 210 and the box body 220 form a closed receiving cavity. The template 230 is disposed in the receiving cavity and has a groove formed thereon that matches the shape of a pharmaceutical bottle for securing the bottle. A temperature control mechanism 30 is mounted on the cover 210 or the box body 220. The cooling end of the temperature control mechanism 30 is disposed in the receiving cavity to adjust the temperature within the receiving cavity.

[0041] In this embodiment, the transport vehicle 10 serves as the carrier of the entire device. It has a sturdy structure and stable driving performance. It is used to carry the thermal insulation box 20 and the chemicals inside it from one place to another, ensuring the smooth progress of the entire transportation process. The box body 220 is set on the transport vehicle 10 and is generally made of polypropylene plastic foam material (Expanded Polypropylene, EPP). It is mainly used for thermal insulation. It can effectively reduce the impact of the external ambient temperature on the hazardous chemicals in the box, prevent heat from entering in high temperature environments, and slow down heat loss in low temperature environments. It helps maintain the stability of the ambient temperature of the chemicals and reduces the risk of changes in chemical properties or reactions due to temperature changes. Secondly, it is used for buffering and protection. The EPP material itself has good elasticity and impact resistance. It can provide buffering protection for the chemical containers placed therein, reducing the possibility of damage to the containers due to collisions and vibrations, which may cause chemical leaks.

[0042] The cover 210 fits tightly with the housing 220 to form a closed chamber. When closed, the cover 210 completely isolates the chemicals within the chamber from the outside environment, preventing the ingress of impurities such as dust and moisture. The cover 210 is typically made of EPP material, which acts as a seal, reducing heat exchange and air circulation between the chamber and the outside, enhancing insulation and maintaining a more stable temperature for the hazardous chemicals within. Furthermore, the cover 210 is quick and easy to open and close, making it convenient for users to access chemicals.

[0043] Template 230 is placed within the storage chamber. Its surface is covered with grooves that perfectly match the shape of the medicine bottles. Typically, there are multiple grooves. Template 230 serves two main functions. First, it secures the medicine bottles in place, preventing them from tipping over or colliding with each other during transport due to shaking or collisions, thus reducing the risk of bottle breakage. Second, it provides a positioning function, ensuring that the medicine bottles are neatly arranged and easily identified and retrieved, thereby improving management efficiency during transport.

[0044] The temperature control mechanism 30 is mounted on the cover 210 or the housing 220, with its cooling end extending directly into the chamber. Through intelligent regulation, the temperature control mechanism 30 precisely adjusts the temperature within the chamber based on the actual temperature requirements of the chemicals and fluctuations in the ambient temperature. This function is particularly important in hot environments, such as summer, as it ensures that the chemicals remain within the appropriate temperature range, preventing deterioration or failure due to excessive temperatures.

[0045] The chemical transport device provided by the embodiment of the present invention can firmly fix the medicine bottle through the template 230 set in the storage chamber and the groove formed on the template 230 that is adapted to the shape of the medicine bottle, thereby avoiding the problem of glass bottle breakage caused by shaking or collision during transportation. The chemical transport device adopts a closed storage chamber formed by the cover 210 and the box body 220, which effectively blocks direct sunlight, avoids the occurrence of photochemical reactions, and ensures the stability of chemicals during transportation. The built-in temperature control mechanism 30 can accurately adjust the temperature in the storage chamber according to the temperature requirements of the chemicals. In high temperature environments such as summer, the cooling end of the temperature control mechanism 30 can effectively reduce the temperature in the storage chamber, ensuring that the chemicals are always within the appropriate temperature range, avoiding the problem of changes in chemical properties or failure due to temperature changes.

[0046] In some embodiments, as Figures 1 to 5 As shown, the cover plate 210 or the box body 220 is provided with an installation port communicating with the accommodating cavity; the temperature control mechanism 30 includes a refrigeration fin 310 and a cooling fan 320, and the refrigeration fin 310 and the cooling fan 320 are arranged at the installation port.

[0047] Refrigeration chip 310 utilizes advanced semiconductor refrigeration technology, a highly efficient and environmentally friendly cooling method. Through the action of an electric current, semiconductor refrigeration chip 310 rapidly absorbs and removes heat from the hazardous chemicals, thereby lowering their temperature. This function is particularly important in hot environments, such as summer, as it ensures that the chemicals remain in a relatively cool and stable environment, effectively preventing safety accidents caused by excessive temperatures.

[0048] The cooling fan 320 is primarily used to accelerate the circulation and flow of cold air. It rapidly delivers the cooled air, cooled by the cooling fins 310, to the surrounding area of ​​the chemicals, creating a powerful cold air circulation system. This not only improves the cooling efficiency of the temperature control mechanism 30 but also rapidly dissipates heat, preventing chemicals from experiencing changes in properties or dangerous reactions due to prolonged exposure to high temperatures. The presence of the cooling fan 320 further enhances the safety and stability of the chemical transport system.

[0049] Typically, the chemical transport device also includes a thermal deflector plate 40, which is positioned within the storage chamber and divides the storage chamber into a heat preservation area and a cooling area. The heat preservation area is used to house the pharmaceutical bottles, and the cooling area is connected to the mounting port. The thermal deflector plate 40 is typically made of a cold conduction plate 304. This material not only has excellent thermal conductivity and temperature uniformity, but can also effectively transfer the cold energy generated by the refrigeration system to the area where hazardous chemicals are placed (the heat preservation area), evenly distributing the cold energy around the chemicals and ensuring a balanced temperature across the entire area. It also provides excellent isolation and protection. The cold conduction plate 304 separates the temperature control mechanism 30 from direct contact with the hazardous chemicals, avoiding the risk of chemical reactions with the temperature control mechanism 30 in the event of a leak, further enhancing the safety of the device.

[0050] This embodiment utilizes 304 panels, which offer excellent thermal and cooling properties, to rapidly transfer cold air, ensuring hazardous chemicals remain within an appropriate temperature range. Combined with the cooling fan 320, it can be adjusted based on actual temperature conditions, ensuring effective cooling while achieving energy savings and high efficiency.

[0051] In some embodiments, as Figure 1 and Figure 2 As shown, the thermal insulation box 20 further includes an inner liner 240. The inner liner 240 is sleeved within the accommodating cavity. A notch is formed in the inner liner 240 for fixing the template 230, so that the medicine bottle is fixed in the notch through the groove. In this way, the position of the medicine bottle in the thermal insulation box 20 is effectively fixed, avoiding shaking and tipping during transportation or storage.

[0052] The inner liner 240 is typically made of polytetrafluoroethylene (PTFE). PTFE is resistant to corrosion from various hazardous chemicals, preventing damage to the inner liner 240 and thus preventing chemical leakage. It also prevents adhesion. Its smooth surface prevents hazardous chemicals from adhering to the inner liner 240, making it easier to pour and clean.

[0053] The overall structural design of the thermal insulation box 20 can effectively reduce the impact of external temperature on the hazardous chemicals inside. Whether in a high-temperature environment or a low-temperature environment, it can provide a stable temperature environment for the hazardous chemicals, ensuring their stable properties and reducing safety risks.

[0054] In some embodiments, as Figure 1 and Figure 2 As shown, the thermal insulation box 20 further includes a temperature display screen 250 and a temperature sensor. The temperature display screen 250 is disposed on the cover 210 or the box body 220; the temperature sensor is used to detect the temperature in the receiving cavity and is electrically connected to the temperature display screen 250.

[0055] When the sensor detects a temperature change, it transmits a corresponding electrical signal to the display screen, which then updates the displayed temperature value in real time based on the received signal. Operators can monitor the temperature inside the insulated box 20 in real time to ensure that the chemicals are always within a safe temperature range. This helps prevent safety hazards such as chemical deterioration or leakage caused by excessively high or low temperatures. The real-time display function of the temperature display screen 250 allows operators to more conveniently manage the chemicals inside the insulated box 20. Based on the temperature information on the display screen, they can quickly adjust the settings of the insulated box 20 or take other measures to ensure that the storage conditions of the chemicals meet the requirements.

[0056] In some embodiments, as Figure 1 As shown, the thermal insulation box 20 also includes a handle 260 connected to the cover 210 or the box body 220. The design of the handle 260 allows the operator to hold the handle 260 with one or both hands and easily move the thermal insulation box 20 from one location to another. This not only saves time and energy, but also reduces the risk of accidental injury that may occur during transportation. By equipping the thermal insulation box 20 with the handle 260, the portability of the thermal insulation box 20 is significantly improved. The operator can carry the thermal insulation box 20 anytime and anywhere, whether in indoor or outdoor environments, and can easily cope with various transportation needs.

[0057] In some embodiments, as Figure 1 As shown, the chemical transport device further includes a shock absorbing platform 50 and an elastic member 60. The shock absorbing platform 50 is provided on the transport vehicle 10 for carrying the thermal insulation box 20; the elastic member 60 is connected between the shock absorbing platform 50 and the transport vehicle 10.

[0058] The shock-absorbing platform 50 is arranged on the transport vehicle 10 and is specifically used to carry the thermal insulation box 20. The shock-absorbing platform 50 is made of high-strength, corrosion-resistant materials and has excellent load-bearing capacity and stability. In the utility model, the elastic member 60 adopts a shock-absorbing spring pad. The shock-absorbing spring pad has good elasticity and recovery. In the dangerous chemical transportation device, the shock-absorbing spring pad mainly plays the role of buffering and shock absorption. When the chemical transportation device is driving under complex road conditions, such as passing through bumpy roads or shaking, the shock-absorbing spring pad can respond quickly and absorb vibration energy to prevent the thermal insulation box 20 placed on it and the chemical containers inside from colliding with each other due to severe vibration. It avoids the occurrence of container rupture and chemical leakage, and effectively improves the safety and reliability of transportation.

[0059] In some embodiments, as Figure 1 As shown, the chemical transport device further includes: a power supply 70 and a switch 80. The power supply 70 is disposed on the transport vehicle 10; one end of the switch 80 is electrically connected to the power supply 70, and the other end is electrically connected to the temperature control mechanism 30 via an external circuit.

[0060] In this embodiment, the power supply 70 is a portable battery that provides power output to the temperature control mechanism 30 to ensure the normal operation of the cooling fan 320. The switch 80 is a knob switch 80 that controls the start and stop of the cooling fan 320 and / or the cooling fin 310.

[0061] Specifically, the user can observe the real-time temperature information on the temperature display 250 and, based on the temperature requirements of the chemicals, rotate the knob switch 80 to start or stop the cooling fan 320 and / or the cooling fins 310. Furthermore, since the insulated box 20 of the present invention is equipped with multiple cooling fans 320 and cooling fins 310, the user can flexibly control the number of cooling fans 320 and / or cooling fins 310 started and stopped by designing the knob switch 80 to correspond to one or more cooling fans 320 and / or cooling fins 310, thereby achieving precise temperature control. This design not only improves transportation safety, but also effectively saves energy and reduces operating costs.

[0062] In one example, if Figure 1 As shown, the chemical transport device also includes a protective plate 90, which is mounted on the transport vehicle 10. The transport vehicle 10 has a mounting slot for accommodating the power supply 70. Made of high-strength, corrosion-resistant material, the protective plate 90 offers excellent protection. It not only secures the battery and ensures its stable position within the mounting slot, but also effectively protects the battery from external forces such as impact and squeezing during transport, thereby minimizing damage and potential dangers.

[0063] In a specific embodiment, Figure 1As shown, the transport vehicle 10 is equipped with two thermal insulation boxes 20. The two thermal insulation boxes 20 are mounted on either side of the transport vehicle 10 or at appropriate locations, forming two independent storage chambers for safely storing and transporting different types of chemicals. Each thermal insulation box 20 is equipped with two temperature control mechanisms 30 (a first temperature control mechanism 30 and a second temperature control mechanism 30). Specifically, each thermal insulation box 20 is equipped with two cooling fins 310 and two cooling fans 320. Each thermal insulation box 20 is equipped with two switches 80 (a first switch 80 and a second switch 80), which are used to control the first temperature control mechanism 30 and the second temperature control mechanism 30, respectively. The cover 210 or the housing 220 is provided with an interface 330. The cover 210 or the housing 220 is provided with a first interface electrically connected to the first temperature control mechanism 30, and the cover 210 or the housing 220 is provided with a second interface electrically connected to the second temperature control mechanism 30. The first temperature control mechanism 30 is electrically connected to the power supply 70 via the first interface, the first external circuit 340, and the first switch 80. The second temperature control mechanism 30 is electrically connected to the power source 70 via a second interface, a second external connection 350, and a second switch 80. The first external connection 340 quickly connects the power source 70 to the first temperature control mechanism 30, while the second external connection 350 quickly connects the power source 70 to the second temperature control mechanism 30. This connection between the first and second external connections 340, 350 facilitates replacement and maintenance, and can quickly disconnect the power source 70 in an emergency to ensure safety.

[0064] Based on the above embodiments, in some embodiments, such as Figure 1 As shown, the transport vehicle 10 includes a vehicle body 130, a push rod 110 and a roller 120. The vehicle body 130 is used to carry the box 220. The top surface of the vehicle body 130 is connected to the push rod 110, and the bottom surface of the vehicle body 130 is connected to the roller 120.

[0065] In this embodiment, the vehicle body 130 serves as the platform for the entire transport device and is constructed from durable materials to ensure it can withstand various external forces and loads during transport. The top surface of the vehicle body 130 is designed to be flat and spacious, supporting the insulated box 20 and other necessary components. Furthermore, the vehicle body 130's compact and rational structure ensures greater stability and reliability during transport.

[0066] In this embodiment, the vehicle body 130 is a universal push-pull vehicle, which enables the transport vehicle 10 to move easily in various terrains and environments, especially to flexibly turn in narrow spaces. This feature greatly improves the flexibility and applicability of the chemical transport device, enabling it to better adapt to various complex transportation scenarios. The push rod 110 is connected to the top surface of the vehicle body 130, providing a convenient control method for the operator. The roller 120 is connected to the bottom surface of the vehicle body 130. In this embodiment, the roller 120 adopts a rubber wheel design. The rubber wheel has excellent shock absorption performance and can buffer vibrations and bumps during transportation, thereby reducing the impact on hazardous chemicals. In addition, the rubber wheel also has noise reduction characteristics, which can reduce the noise generated when the wheel rolls, making the transportation process quieter and more comfortable. Generally speaking, a roller 120 is installed at each corner of the transport vehicle 10 to ensure its stability and balance during movement.

[0067] In summary, the chemical transport device provided in the embodiments of the present application replaces existing transport devices. With a more efficient cooling system, a stable fixed structure, and good shock absorption function, it ensures the safety of hazardous chemicals during transportation, reduces potential risks, and improves transportation efficiency and reliability.

[0068] Compared with the existing technology, it can transfer cold more quickly and effectively, ensuring that hazardous chemicals are always within the appropriate temperature range, and improving the cooling performance. In terms of fixed structure, the embodiment of the present application has a precise medicine bottle template 230 and a battery protective plate 90 to ensure stable fixation and stable power supply. In terms of shock absorption function, the embodiment of the present application is equipped with a rubber roller 120 and a special shock absorption design, which can effectively reduce vibration impact. In terms of thermal insulation performance, the embodiment of the present application achieves excellent thermal insulation through high-quality thermal insulation materials and reasonable structural design, which improves the thermal insulation performance of the entire insulation box 20.

[0069] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A chemical transport device, characterized in that: include: Transporter (10); The heat preservation box (20) comprises a cover plate (210), a box body (220) and a template (230), wherein the box body (220) is arranged on the transport vehicle (10), the cover plate (210) is arranged on the box body (220), and the cover plate (210) cooperates with the box body (220) to form a closed accommodating cavity; the template (230) is arranged in the accommodating cavity, and a groove adapted to the shape of a medicine bottle is formed on the template (230) for fixing the medicine bottle; A temperature control mechanism (30) is provided on the cover plate (210) or the box body (220), and a refrigeration end of the temperature control mechanism (30) is provided in the accommodating cavity for adjusting the temperature in the accommodating cavity.

2. The chemical transport device according to claim 1, characterized in that: The cover plate (210) or the box body (220) is provided with a mounting opening that communicates with the accommodating cavity; The temperature control mechanism (30) comprises a refrigeration fin (310) and a cooling fan (320), and the refrigeration fin (310) and the cooling fan (320) are arranged at the installation port.

3. The chemical transport device according to claim 2, characterized in that: The chemical transport device further comprises: A heat conduction plate (40) is arranged in the accommodating cavity, and the heat conduction plate (40) divides the accommodating cavity into a heat preservation area and a temperature reduction area, the heat preservation area is used to place the medicine bottle, and the temperature reduction area is communicated with the installation port.

4. The chemical transport device according to claim 1, characterized in that: The thermal insulation box (20) further includes: An inner liner (240) is sleeved in the accommodating cavity, and a notch groove for fixing the template (230) is formed in the inner liner (240), so that the medicine bottle is fixed in the notch groove through the groove.

5. The chemical transport device according to claim 1, characterized in that: The thermal insulation box (20) further includes: a temperature display screen (250), arranged on the cover plate (210) or the box body (220); A temperature sensor is used to detect the temperature in the accommodating cavity and is electrically connected to the temperature display screen (250).

6. The chemical transport device according to claim 1, characterized in that: The thermal insulation box (20) further includes: A handle (260) is connected to the cover plate (210) or the box body (220).

7. The chemical transport device according to claim 1, characterized in that: The chemical transport device further comprises: A shock-absorbing platform (50) is provided on the transport vehicle (10) and is used to carry the thermal insulation box (20); An elastic member (60) is connected between the shock absorbing platform (50) and the transport vehicle (10).

8. The chemical transport device according to any one of claims 1 to 7, characterized in that: The chemical transport device further comprises: A power supply (70) is provided on the transport vehicle (10); A switch (80) has one end electrically connected to the power source (70) and the other end electrically connected to the temperature control mechanism (30) via an external circuit.

9. The chemical transport device according to claim 8, characterized in that: The chemical transport device further comprises: A protective plate (90) is provided on the transport vehicle (10), and a mounting groove for accommodating the power supply (70) is formed on the transport vehicle (10).

10. The chemical transport device according to any one of claims 1 to 7, characterized in that: The transport vehicle (10) comprises: a vehicle body (130), a push rod (110) and a roller (120); The vehicle body (130) is used to carry the box body (220); the top surface of the vehicle body (130) is connected to the push rod (110); and the bottom surface of the vehicle body (130) is connected to the roller (120).