Heat preservation device convenient to disassemble
By designing an easily detachable insulation device, the problem of low transportation efficiency for large and expensive medical equipment was solved, enabling rapid loading and unloading and temperature control, thereby improving transportation efficiency and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-03-27
AI Technical Summary
Existing insulated boxes are not effective in transporting large and expensive medical equipment, and the transport of small and slender equipment is wasteful and cumbersome in loading and unloading, resulting in low transportation efficiency.
An easily disassembled insulation device was designed, which adopts a detachable side plate and connector structure, combined with support components and cooling components, to achieve rapid assembly and disassembly and improve transportation efficiency.
By using rapid assembly and disassembly methods, the efficiency of transportation equipment is improved, transportation costs are reduced, and temperature control during transportation is ensured.
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Figure CN224045987U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of medical instrument transportation, in particular to a heat preservation device convenient to disassemble. BACKGROUND
[0002] The current heat preservation box is only suitable for small medical cold chain logistics transportation, and the existing heat preservation box cannot be used for cold chain transportation for some valuable and large medical equipment, and can only be transported by using a refrigeration special vehicle. Moreover, for small and slender valuable medical equipment, the small amount of distribution of 2-3 boxes each time easily causes waste in transportation. According to statistics, such orders account for 1.7% of the total number of cold chain transportation orders, and the high transportation cost undoubtedly increases the operating cost of enterprises.
[0003] Therefore, people design the volume of the existing heat preservation box into a preset shape. However, when transporting and transferring, it is necessary to avoid collision with medical equipment, resulting in that the small and slender valuable medical equipment is relatively cumbersome to load and unload; therefore, in order to improve the efficiency of the heat preservation box in the transportation and transfer equipment, it is urgent to develop a heat preservation box which can be quickly installed or disassembled. SUMMARY
[0004] The utility model aims at improving the problem of low efficiency of the existing heat preservation box in the transportation equipment, and provides a heat preservation device convenient to disassemble.
[0005] The technical scheme for realizing the above-mentioned purpose comprises the following:
[0006] The heat preservation device convenient to disassemble comprises a heat preservation box body, a storage box body, a first connecting piece and at least four second connecting pieces. A heat preservation cavity is formed in the heat preservation box body, and the storage box body is arranged in the heat preservation cavity. The heat preservation box body comprises a top plate, a bottom plate and four side plates. The first ends of the four side plates are detachably mounted on the bottom plate, the second ends of the four side plates are detachably mounted on the top plate, and the top plate, the bottom plate and the four side plates jointly form the heat preservation cavity.
[0007] In the first direction, two adjacent side plates are fixed by the second connecting piece. In the second direction, the top plate, the side plate and the bottom plate are fixed by the first connecting piece, and the first direction intersects the second direction.
[0008] In one embodiment, the heat preservation device further has a cooling assembly and a supporting assembly. The supporting assembly comprises two supporting pieces, the first ends of the two supporting pieces are mounted on the top plate or the side plate, and the two supporting pieces are oppositely arranged. The second end of the supporting piece has an L-shaped slot, and the two ends of the cooling assembly are arranged in the L-shaped slots of the two supporting pieces.
[0009] In one embodiment, the supporting piece has a bent structure.
[0010] The support piece comprises a connecting block and a support block, the first end of the connecting block is installed on the support block, the support block is L-shaped, the inner side of the support block forms the L-shaped slot, and the second end of the connecting block is installed on the inner side of the top plate or the side plate.
[0011] In one embodiment, the cooling assembly comprises at least two ice blocks, the two ice blocks are distributed along the length direction of the heat preservation box, and the support piece is arranged along the length direction of the heat preservation box.
[0012] In one embodiment, the support assembly has three groups, the number of the cooling assembly corresponds to the number of the support assembly, one group of the support assembly is installed on the top plate, and the other two groups of the support assembly are installed on the two oppositely arranged side plates.
[0013] In one embodiment, the bottom plate and the top plate are provided with positioning blocks, the positioning blocks are arranged close to the outer edges of the bottom plate and the top plate, and the two ends of the side plate are provided with positioning grooves matched with the positioning blocks.
[0014] In one embodiment, the first connecting piece comprises a first binding belt, a second binding belt and a third binding belt, the first binding belt is arranged at the middle of the length direction of the heat preservation box, and the second binding belt and the third binding belt are arranged at the two sides of the length direction of the heat preservation box.
[0015] In one embodiment, the second connecting piece comprises a first adhesive part and a second adhesive part, the first adhesive part and the second adhesive part are installed on the two adjacent side plates respectively, and the first adhesive part and the second adhesive part are bonded and matched.
[0016] In one embodiment, the heat preservation device further comprises a temperature sensor and a control console, the temperature sensor is installed on any one side plate, the temperature sensor is at least partially located in the heat preservation chamber, and the temperature sensor is electrically connected with the control console.
[0017] In one embodiment, the top plate, the bottom plate and the side plate are all PVC foamed boards.
[0018] The technical scheme provided by the utility model has the following advantages and effects:
[0019] Four side plates are enclosed, the first end of the four side plates is installed on the bottom plate, two adjacent side plates are fixed through the second connecting piece, the four side plates are quickly assembled, the top plate is installed on the second end of the four side plates, then the first connecting piece is enclosed on the top plate, the two side plates and the bottom plate, and the top plate, the side plate and the bottom plate are fixed. When disassembling, the first connecting piece and the second connecting piece are removed from the heat preservation box body, the four side plates are unfolded and removed together with the top plate, then the storage box body is transported by using the forklift, and the transportation efficiency of the storage box body is improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] The drawings of the present application show the specific examples of the technical scheme of the present application, and constitute part of the specification together with the specific embodiments, for explaining the technical scheme, principle and effect of the present application.
[0021] Unless specifically stated or defined otherwise, the same reference signs in different drawings represent the same or similar technical features, and different reference signs may also be used to represent the same or similar technical features.
[0022] Figure 1 is a schematic view of the heat preservation device in an embodiment of the present application;
[0023] Figure 2 is an exploded view of the heat preservation device in an embodiment of the present application;
[0024] Figure 3 is a sectional view of the heat preservation device in an embodiment of the present application;
[0025] Figure 4 is a schematic view of the support in an embodiment of the present application;
[0026] BRIEF DESCRIPTION OF DRAWINGS:
[0027] 100, heat preservation device; 1, heat preservation box body; 11, top plate; 12, bottom plate; 13, side plate; 14, positioning block; 15, heat preservation chamber; 2, first connecting piece; 21, first binding belt; 22, second binding belt; 23, third binding belt; 3, second connecting piece; 31, first adhesive part; 32, second adhesive part; 4, cooling assembly; 5, base; 6, storage box body; 70, support assembly; 7, support; 71, connecting block; 72, support block; 73, L-shaped groove; 74, placing groove; 8, temperature sensor; 9, temperature display. DETAILED DESCRIPTION
[0028] In order to facilitate the understanding of the present application, the specific embodiments of the present application will be described in more detail with reference to the drawings of the specification.
[0029] Unless specifically stated or otherwise represented otherwise, as used herein, "first, second," and the like are used to distinguish names in the description, and are not intended to indicate a specific number or order.
[0030] Unless specifically stated or otherwise represented otherwise, as used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0031] It should be noted that when an element is considered to be "fixed" to another element, it can be directly fixed to the other element or a middle element can exist; when an element is considered to be "connected" to another element, it can be directly connected to the other element or a middle element can exist; when an element is considered to be "mounted" to another element, it can be directly mounted to the other element or a middle element can exist. When an element is considered to be "provided" to another element, it can be directly provided to the other element or a middle element can exist.
[0032] The utility model provides a kind of heat preservation device 100 convenient to disassemble, as shown in Figures 1 to 3 The utility model discloses a heat preservation device 100 convenient to disassemble, as shown in
[0033] Specifically, the storage box body 6 is used to accommodate elongated medical instruments. During assembly, the bottom plate 12 is placed on the base 5, the storage box body 6 is carried onto the bottom plate 12 using a forklift, then the four side plates 13 are enclosed, the first ends of the four side plates 13 are mounted on the bottom plate 12, the second ends of the four side plates 13 are mounted on the top plate 11, and the first connecting member 2 is enclosed on the top plate 11, the two side plates 13 and the bottom plate 12. The top plate 11, the side plates 13 and the bottom plate 12 are fixed. Therefore, the heat preservation box body 1 is fixed in the first direction and the second direction by the first connecting member 2 and the second connecting member 3, improving the stability of the heat preservation box body 1.
[0034] When disassembly is needed, the first connecting piece 2 and the second connecting piece 3 are removed from the heat preservation box body 1, the four side plates 13 are unfolded and removed together with the top plate 11, and then the storage box body 6 is transported by using a forklift, thereby improving the transportation efficiency of the storage box body 6. Preferably, the first connecting piece 2 can be an elastic band or an adjustable binding band, which is not particularly limited here.
[0035] Preferably, as shown in Figure 3 The heat preservation device 100 also has a cooling assembly 4 and a support assembly 70. The support assembly 70 includes two support pieces 7, the first ends of the two support pieces 7 are installed on the top plate 11 or the side plate 13, and the two support pieces 7 are oppositely arranged. The second end of the support piece 7 has an L-shaped groove 73, and the two ends of the cooling assembly 4 are arranged in the L-shaped grooves 73 of the two support pieces 7. Specifically, when the storage box body 6 is installed in the heat preservation chamber 15, the cooling assembly 4 is arranged on the two support pieces 7, the two ends of the cooling assembly 4 are located in the L-shaped grooves 73 of the two support pieces 7, and the two support pieces 7 are used to support the cooling assembly 4 and limit the position of the cooling assembly 4 in the heat preservation chamber 15, so as to avoid the cooling assembly 4 from pressing or compressing the storage box body 6. At the same time, the cooling assembly 4 cools the heat preservation chamber 15, ensures that the heat preservation chamber 15 is in a preset temperature range, and further realizes cold chain transportation of the heat preservation device 100.
[0036] Preferably, as shown in Figure 3 and Figure 4 The support piece 7 has a bent structure. The support piece 7 includes a connecting block 71 and a support block 72. The first end of the connecting block 71 is installed on the support block 72. The support block 72 has an L shape, and the inner side of the support block 72 forms an L-shaped groove 73. The second end of the connecting block 71 is installed on the inner side of the top plate 11 or the side plate 13. Specifically, the connecting block 71 is used to be fixed on the inner side of the top plate 11 or the side plate 13. When the two support pieces 7 are oppositely arranged, the two support blocks 72 support a placing groove 74. The placing groove 74 is used to place the cooling assembly 4. The two ends of the cooling assembly 4 are placed in the two L-shaped grooves 73. The support block 72 supports the cooling assembly 4, and further improves the stability of the cooling assembly 4 on the support assembly 70.
[0037] Preferably, the cooling assembly 4 includes at least two ice blocks. The two ice blocks are distributed along the length direction of the heat preservation box body 1. The support piece 7 is arranged along the length direction of the heat preservation box body 1. Specifically, in order to facilitate installation and transportation of the cooling assembly 4, the cooling assembly 4 can be composed of a plurality of ice blocks. The plurality of ice blocks can be sequentially inserted into the placing groove 74. The specific number is determined according to the length of the heat preservation box body 1. The support piece 7 is arranged along the length direction of the heat preservation box body 1. When the plurality of ice blocks are distributed along the length direction of the heat preservation box body 1, the plurality of ice blocks can be supported by the two support pieces 7.
[0038] Preferably, the support assembly 70 has three groups, and the number of the cooling assemblies 4 corresponds to the number of the support assemblies 70, wherein one group of the support assemblies 70 is installed on the top plate 11, and the other two groups of the support assemblies 70 are installed on the two oppositely arranged side plates 13. Specifically, by adopting three groups of the support assemblies 70, one group of the support assemblies 70 and one group of the cooling assemblies 4 can be arranged on the top plate 11 to achieve cooling of the top of the storage box body 6; and the other two groups of the support assemblies 70 and two groups of the cooling assemblies 4 are arranged on the two oppositely arranged side plates 13 to achieve cooling of the two sides of the storage box body 6.
[0039] In some embodiments, in order to improve the installation efficiency of the bottom plate 12, the side plate 13 and the top plate 11, the bottom plate 12 and the top plate 11 are both provided with positioning blocks 14 arranged close to the outer edges of the bottom plate 12 and the top plate 11, and the two ends of the side plate 13 are provided with positioning grooves matched with the positioning blocks 14. By matching the positioning blocks 14 with the positioning grooves, the bottom plate 12 and the side plate 13 are quickly assembled, and the side plate 13 and the top plate 11 are quickly assembled; at the same time, the positioning blocks 14 can also improve the installation precision among the bottom plate 12, the side plate 13 and the top plate 11.
[0040] In some embodiments, the first connecting piece 2 includes a first binding belt 21, a second binding belt 22 and a third binding belt 23, the first binding belt 21 is arranged at the middle of the length direction of the heat preservation box body 1, and the second binding belt 22 and the third binding belt 23 are arranged at the two sides of the length direction of the heat preservation box body 1. Specifically, by adopting the first binding belt 21, the second binding belt 22 and the third binding belt 23, the top plate 11, the two oppositely arranged side plates 13 and the bottom plate 12 can be bundled in the length direction of the heat preservation box body 1, thereby improving the stability of the heat preservation box body 1 in the second direction.
[0041] In some embodiments, the second connecting piece 3 includes a first adhesive part 31 and a second adhesive part 32, the first adhesive part 31 and the second adhesive part 32 are respectively installed on the two adjacent side plates 13, and the first adhesive part 31 and the second adhesive part 32 are bonded and matched. Specifically, the second connecting piece 3 can be bonded by using magic tape, the first adhesive part 31 and the second adhesive part 32 on the two adjacent side plates 13 are bonded and matched, thereby improving the stability between the two adjacent side plates 13; and the second connecting piece 3 can be provided with multiple, and the multiple second connecting pieces 3 are used to fix the two adjacent side plates 13, thereby improving the stability of the heat preservation box body 1 in the first direction.
[0042] In some embodiments, the heat preservation device 100 further comprises a temperature sensor 8, a control console, and a temperature display 9, the temperature sensor 8 is installed on any one of the side plates 13, the temperature sensor 8 is at least partially located in the heat preservation chamber 15, and the temperature sensor 8 is electrically connected to the control console. Specifically, the temperature sensor 8 is used to sense the temperature in the heat preservation chamber 15, when the temperature sensed by the temperature sensor 8 is greater than a predetermined threshold, the temperature sensor 8 sends an electrical signal to the control console, and the control console alarms or prompts the staff after receiving the electrical signal. The temperature display 9 is used to display the temperature in the heat preservation box 1, so as to facilitate the transport personnel to observe the temperature in the heat preservation box 1 in time.
[0043] Preferably, the top plate 11, the bottom plate 12, and the side plate 13 are all PVC foamed boards. The PVC foamed board has the characteristics of high hardness, no pollution, waterproof and mildewproof, wear resistance, corrosion resistance, fast construction, moderate price, good heat preservation, etc. The use of the PVC foamed board as the plate material of the heat preservation box 1 can improve the heat preservation performance of the heat preservation box 1.
[0044] When referring to the drawings, the new features appearing are described; in order to avoid repeated reference to the drawings leading to less concise description, the features already described are not repeatedly referred to the drawings.
[0045] The purpose of the above embodiments is to exemplarily reproduce and deduce the technical scheme of the present application, and to completely describe the technical scheme, purpose and effect of the present application, so as to make the public understand the disclosure of the present application more thoroughly and comprehensively, and not to limit the protection scope of the present application.
[0046] The above embodiments are not exhaustive enumeration based on the present application, and there can be many other unlisted embodiments. Any replacement and improvement made without violating the concept of the present application is within the protection scope of the present application.
Claims
1. A heat retaining device which is easy to disassemble, characterized by The application relates to a heat preservation device, which comprises a heat preservation box, a storage box, a first connecting piece and at least four second connecting pieces. In a first direction, two adjacent side plates are fixed through the second connecting piece; in a second direction, the top plate, the side plates and the bottom plate are fixed through the first connecting piece, and the first direction intersects the second direction. The heat preservation device further has a cooling assembly and a supporting assembly, the supporting assembly comprises two supporting pieces, the first ends of the two supporting pieces are installed on the top plate or the side plates, and the two supporting pieces are oppositely arranged, the second ends of the supporting pieces have L-shaped grooves, and the two ends of the cooling assembly are arranged in the L-shaped grooves of the two supporting pieces.
2. The thermal device of claim 1, wherein, The supporting piece has a bent structure.
3. The thermal device of claim 2, wherein, The supporting piece comprises a connecting block and a supporting block, the first end of the connecting block is installed on the supporting block, the supporting block has an L shape, the inner side of the supporting block forms the L-shaped groove, and the second end of the connecting block is installed on the inner side of the top plate or the side plate. The cooling assembly comprises at least two ice blocks, the two ice blocks are distributed along the length direction of the heat preservation box, and the supporting pieces are arranged along the length direction of the heat preservation box.
4. The thermal device of claim 2, wherein, The supporting assembly has three groups, the number of the cooling assembly corresponds to the number of the supporting assembly, one group of the supporting assembly is installed on the top plate, and the other two groups of the supporting assembly are installed on the two oppositely arranged side plates.
5. The thermal device of claim 2, wherein, The bottom plate and the top plate are provided with positioning blocks, the positioning blocks are arranged close to the outer edges of the bottom plate and the top plate, and the two ends of the side plate have positioning grooves matched with the positioning blocks.
6. The heat retaining device according to any one of claims 1 to 5, wherein The first connecting piece comprises a first binding belt, a second binding belt and a third binding belt, the first binding belt is arranged at the middle of the length direction of the heat preservation box, and the second binding belt and the third binding belt are arranged at the two sides of the length direction of the heat preservation box.
7. The heat retaining device according to any one of claims 1 to 5, wherein The second connecting piece comprises a first adhesive part and a second adhesive part, the first adhesive part and the second adhesive part are installed on the two adjacent side plates respectively, and the first adhesive part and the second adhesive part are bonded and matched.
8. The heat retaining device according to any one of claims 1 to 5, wherein The heat preservation device further comprises a temperature sensor and a control console, the temperature sensor is installed on any side plate, the temperature sensor is at least partially located in the heat preservation cavity, and the temperature sensor is electrically connected with the control console.
9. The heat retaining device according to any one of claims 1 to 5, wherein The top plate, the bottom plate and the side plates are all PVC foamed plates.
10. The heat retaining device according to any one of claims 1 to 5, wherein