Temperature control storage device
By designing temperature-controlled storage devices, including storage modules, temperature-controlled modules and external battery installation parts, the problem that existing insulation boxes cannot be refrigerated for a long time is solved, the function of refrigeration for a long time outdoors is realized, and the volume ratio and portability of the equipment are improved.
Patent Information
- Application Number
- CN202421686700.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-01
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing outdoor insulated boxes cannot effectively refrigerate food or beverages for a long time, and cannot actively change the temperature in the box, which cannot meet the long-term outdoor refrigeration needs.
A temperature-controlled storage device is designed, including a storage module, a temperature control module, a battery mounting part and a soft outsourcing. The temperature control module is set at the bottom of the storage module, and the temperature is adjusted by power supply and refrigeration. The battery mounting part is powered externally, and the soft outsourcing covers and modifys the appearance, increasing the volume ratio and portability.
It realizes the function of refrigerating food or beverages outdoors for a long time, improves the volume ratio, enhances portability and functionality, and is suitable for a variety of outdoor activities.
Smart Images

Figure CN223064140U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of outdoor food storage, in particular to a temperature-controlled storage device. Background Art
[0002] Refrigerators can provide functions such as refrigeration, food preservation, and heat dissipation, but usually require a large amount of space and consume a large amount of power, making them inconvenient for outdoor use. With the rise of various outdoor entertainment activities such as walking and cycling, higher requirements have been put forward for the storage and refrigeration of food or beverages.
[0003] To meet the need for refrigerating food or beverages outdoors, a common practice is to carry a simple insulated box, such as an aluminum foil insulated box. However, the performance of this insulated box is limited, only supporting short-term heat preservation, and unable to actively change the temperature inside the box, thus unable to meet the need for long-term refrigeration of food or beverages outdoors.
[0004] A new temperature-controlled storage device is proposed, which is convenient for users to refrigerate food or beverages outdoors for a long time. Summary of the Utility Model
[0005] The problem to be solved by the utility model is to provide a new temperature-controlled storage device with a high volume ratio and capable of changing the temperature inside the box according to actual needs.
[0006] To solve the above technical problems, the utility model provides a temperature-controlled storage device, including at least one storage module, at least one temperature control module, at least one battery installation part, and a soft outer package. The storage module includes at least one storage body and a storage cover, the storage cover is coverably arranged on the storage body, and the soft outer package covers the storage body;
[0007] The temperature control module is arranged at the bottom of the storage body, one side of the temperature control module is covered by the soft outer package, and the temperature control module cools after being powered, for adjusting the temperature inside the storage body;
[0008] The battery installation part is arranged outside the storage module, the battery installation part is electrically connected to the temperature control module, and a battery pack is detachably installed in the battery installation part for powering the temperature control module.
[0009] Further, the temperature control module includes at least one refrigeration component and a control circuit electrically connected to the refrigeration component, and the battery installation part is electrically connected to the control circuit.
[0010] Further, the refrigeration component includes a compressor, a condensing pipe connected to the compressor, and an evaporating pipe connected to the condensing pipe, and a heat dissipation fan is installed on one side of the condensing pipe.
[0011] Further, a refrigeration base is installed at the bottom of the storage body, the refrigeration component and the control circuit are both installed in the refrigeration base, ventilation windows are provided on both sides of the refrigeration base, the condenser tube and the radiator fan are close to one of the ventilation windows, and the compressor, the condenser tube and the radiator fan are arranged in sequence in the heat dissipation channel defined by the two ventilation windows.
[0012] Further, the refrigeration base has an installation surface, and ventilation windows are provided on both sides of the refrigeration base, and the battery installation part is installed on the installation surface, wherein;
[0013] The installation surface of the refrigeration base is perpendicular to the plane defined by the two ventilation windows; or
[0014] The installation surface of the refrigeration base is the plane where the ventilation window defining the air inlet end is located; or
[0015] The installation surface of the refrigeration base is the plane where the ventilation window defining the air outlet end is located.
[0016] Further, the refrigeration base has an installation surface, and ventilation windows are provided on both sides of the refrigeration base. The ventilation window defining the air inlet is coplanar with a control panel, the control circuit is connected to the control panel, and the installation surface of the refrigeration base and the control panel are held at the corners of the refrigeration base on both sides; or
[0017] The battery installation part is installed on the outside of the storage module, and the battery installation part is held perpendicular to the plane defined by the two ventilation windows; or
[0018] The battery installation part is installed on the outside of the storage module, and the battery installation part is installed on any plane defined by the two ventilation windows; or
[0019] The soft outer package includes an openable storage body and a storage cover, the storage cover covers the storage body, and the battery installation part is installed on the top of the storage cover.
[0020] Further, the refrigeration base has an installation surface, the battery installation part is installed on the outer surface of the storage module or the installation surface of the refrigeration base, and an external power supply port and a wiring hole are further provided on the installation surface, and the external power supply port is used for connecting an external power supply, wherein:
[0021] The external power supply port and the battery installation part are arranged coplanarly; or
[0022] The external power supply port and the battery installation part are oppositely arranged on both sides of the soft outer package.
[0023] Further, at least one battery bag is provided on the side of the soft backpack to install the battery installation part.
[0024] Further, the temperature-controlled storage device further includes one or more battery packs, which are detachably plugged into the battery installation part for power supply.
[0025] Further, there are more than two battery installation parts for detachably plugging in more than two battery packs.
[0026] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0027] By optimizing the installation position of the temperature control module on the storage module, the volume ratio is increased. At the same time, the storage module is cleverly covered by the soft package to create a light feeling for the user; the detachable carrying and expansion components are provided to facilitate human carrying and travel. On the one hand, by mounting other expansion components, the functionality of the backpack can be greatly enriched; and the carrying piece can also install the portable temperature-controlled storage device on other carriers such as outdoor vehicles and bicycles. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the technical solutions of the present application, the drawings required for implementation will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0029] Figure 1 It is a schematic diagram of the principle of the temperature-controlled storage device.
[0030] Figure 2 It is a schematic diagram of the principle of another embodiment of the temperature-controlled storage device.
[0031] Figure 3 It is an exploded view of the temperature-controlled storage device.
[0032] Figure 4 It is a three-dimensional view of the temperature-controlled storage device.
[0033] Figure 5 It is a three-dimensional view of the temperature-controlled storage device with a power supply board installed.
[0034] Figure 6 It is an exploded view of the temperature-controlled storage device.
[0035] Figure 7 It is a cross-sectional view of the temperature-controlled storage device.
[0036] Figure 8 It is a cross-sectional view of the temperature-controlled storage device.
[0037] Figure 9 It is a cross-sectional view of the temperature-controlled storage device.
[0038] Figure 10 Schematic diagram of adding an extended enclosure to a temperature-controlled storage device.
[0039] Figure 11 Stereoscopic schematic diagram of a temperature-controlled storage device.
[0040] Figure 12 Top view schematic diagram of a temperature-controlled storage device.
[0041] Figure 13 Schematic diagram of the combination of a temperature-controlled storage device and an electric vehicle.
[0042] Figure 14 Stereoscopic schematic diagram of a temperature-controlled storage device.
[0043] Figure 15 Schematic diagram of the hot air circulation of a temperature-controlled storage device.
[0044] Figure 16 Schematic diagram of another embodiment of a temperature-controlled storage device.
[0045] Figure 17 For a temperature-controlled storage device Figure 16 Schematic diagram of another perspective.
[0046] Figure 18 For a temperature-controlled storage device Figure 16 Partial cross-sectional view.
[0047] Figure 19 Schematic diagram of the metal bracket of a temperature-controlled storage device.
[0048] Figure 20A Schematic diagram of the overall external structure of the storage main body of a temperature-controlled storage device in a preferred embodiment.
[0049] Figure 20B Cross-sectional schematic diagram of the temperature-controlled storage device of the above embodiment.
[0050] Figure 21 Schematic diagram of the temperature control module of the above embodiment.
[0051] Figure 22 Schematic diagram of adding an extended enclosure to a temperature-controlled storage device.
[0052] Figure 23 For a temperature-controlled storage device Figure 22 Cross-sectional view.
[0053] Figure 24 Schematic diagram of the structure of the extended enclosure of a temperature-controlled storage device.
[0054] Figure 25 Schematic diagram of another embodiment of the extended enclosure of a temperature-controlled storage device.
[0055] Figure 26 Schematic diagram of another embodiment of the extended enclosure for a temperature-controlled storage device. Detailed implementation manners
[0056] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0057] Referring to "embodiment" or "implementation manner" herein means that a specific feature, structure or characteristic described in connection with the embodiment or implementation manner may be included in at least one embodiment of the present application. The phrase appears in various positions in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art explicitly and implicitly understand that the embodiments described herein may be combined with other embodiments.
[0058] In this specification, for convenience, words indicating orientation or positional relationship such as "middle part", "upper", "lower", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are used to describe the positional relationship of the constituent elements with reference to the accompanying drawings, which are only for the convenience of describing this specification and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to the present disclosure. The positional relationship of the constituent elements is appropriately changed according to the direction of the described constituent elements. Therefore, it is not limited to the words described in the specification, and can be appropriately replaced according to the situation.
[0059] As Figure 1 shown, the present utility model provides a temperature-controlled storage device, including a storage module 100, a temperature control module 250 detachably connected to the storage module 100, a battery installation part 409, and a soft outer package 200.
[0060] As Figure 1 shown in Figure 2 connection with
[0061] shown, the storage module 100 includes a storage main body 102 and a storage cover 104 that can be opened and simultaneously hermetically cover the storage main body 102 and the soft outer package 200; the soft outer package 200 covers the storage main body 102. The soft outer package 200 has at least one soft package body 204 and a soft package cover 202 for hermetically covering the soft package body 204, and the soft package body 204 and the soft package cover 202 are simultaneously hermetically wrapped around the outer periphery of the storage module 100. The soft outer package 200 is hermetically wrapped around the outer periphery of the storage module 100.
[0062] As shown Figure 3 in FIG. 1, an anti-overflow space 112 is provided between the storage body 102 and the soft outer package 200, and the temperature control module 250 is disposed in the anti-overflow space 112;
[0063] As shown Figure 1 in FIG. 2, at least a part of the temperature control module 250 protrudes from the storage body 102, one side of the temperature control module 250 is covered by the soft outer package 200, and the temperature control module 250 cools after being powered, for regulating the temperature inside the storage body 102. Figure 2 As shown
[0064] in FIG. 3, further, at least a part of the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100. Further, one side of the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100. Figure 1 As shown
[0065] in FIG. 4, further, at least a part of the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100. Further, the opposite sides of the temperature control module 250 and the storage module 100 respectively protrude from the radial peripheral surface of the storage module 100. Figure 2 As shown
[0066] in FIG. 5, optionally, at least a part of the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100. Further, the temperature control module 250 protrudes from the radial peripheral surface of the storage module 100 at a corner of the storage module 100.
[0067] As shown
[0068] in FIG. 6, in Embodiment 1, as shown Figure 3 in FIG. 7, the temperature-controlled storage device has at least one power supply component. In the embodiment of the present application, the power supply component includes at least one mobile power source 405 and a battery installation part 409 matching the mobile power source 405. The mobile power source 405 is detachably connected to the battery installation part 409, and the battery installation part 409 is disposed on the outer surface of the storage module 100. The battery installation part 409 has an opening. When the mobile power source 405 is connected to the battery installation part 409, the mobile power source 405 is electrically connected to the battery installation part 409 to supply power to the temperature control module 250.
[0069] Specifically, the mobile power source 405 can be inserted into the battery installation part 409 in a direction close to the storage module 100; the opening of the battery installation part 409 can also face any other direction that satisfies the insertion of the mobile power source 405; the mobile power source 405 and the battery installation part 409 can also be arranged on the front surface of the storage module 100, and the mobile power source 405 is inserted into the battery installation part 409 in a vertically downward or horizontal direction; the mobile power source 405 and the battery installation part 409 can also be arranged on the top surface of the storage module 100, and the mobile power source 405 is inserted into the battery installation part 409 in a direction parallel to the top surface.
[0070] In this embodiment, the mobile power source 405 is a lithium-ion battery pack, but it is not limited thereto. The mobile power source 405 can also be a polymer lithium-ion battery, an alkaline battery, a fuel cell, a hand-cranked power generation device, etc., which are power sources that meet the power requirements.
[0071] In this embodiment, the mobile power source 405 can be charged and discharged repeatedly, but it is not limited thereto. In other embodiments, the mobile power source 405 can be set to support only single use.
[0072] Specifically, the soft outer package 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface. The battery installation part 409 can be arranged on at least one radial circumferential surface of the soft outer package 200, can be arranged on the bottom surface of the soft outer package 200, can also be arranged in the anti-spill space 112 defined by the soft outer package 200 and the storage main body 102 and close to the opening between the storage cover 104 and the storage main body 102, and can also be arranged on the top surface of the soft package cover 202; or: the battery installation part 409 is arranged inside the soft package cover 202, and the battery installation part 409 has a battery compartment and a plugging opening, and the plugging opening communicates the battery compartment with the external space for accommodating the battery pack.
[0073] As Figure 4 shown, in this embodiment, the number of the mobile power source 405 and the battery installation part 409 is one each, and they are arranged on one side of the storage module 100. The advantage of such an arrangement is that it is convenient to connect the mobile power source 405 to the battery installation part 409. The mobile power source 405 is vertically inserted into the battery installation part 409, and at the same time, being arranged on the side makes the overall appearance close to the side pocket of a backpack.
[0074] In the preferred embodiment, the storage cover 104 and the soft package cover 202 are assembled into one body. In other variant embodiments, the storage cover 104 and the soft package cover 202 are separably arranged. Etc.
[0075] As Figure 5As shown in the figure, specifically, another implementation of the power supply component in this embodiment is as follows: it includes a power supply bracket 213 and a power supply board 210 installed on the power supply bracket 213. The power supply board 210 can be a photovoltaic power generation board. The power supply board 210 provides power for the temperature-controlled storage device by absorbing solar energy. At the same time, the power supply board 210 can provide sunlight shading for users.
[0076] As Figure 6 shown in the figure, in this embodiment, the mobile power supply 405 can be fixed on the battery installation part 409 by the action of assembly and gravity. A fixing member 411 is provided on the battery installation part 409. The fixing member 411 can strengthen the connection between the mobile power supply 405 and the battery installation part 409 to prevent the mobile power supply 405 from accidentally disengaging from the battery installation part 409.
[0077] In other embodiments, the fixing member 411 can also be a strap, a nylon fastener, etc. The fixing member 411 can also be set into two parts that match each other on the mobile power supply 405 and the battery installation part 409.
[0078] As Figure 6 shown in the figure, the temperature-controlled storage device is provided with an electronic control unit 404. The electronic control unit 404 includes at least one power supply interface 407. The power supply interface 407 is electrically connected to the temperature control module 250. The power supply interface 407 can be used for other power sources to directly output power to the temperature-controlled storage device.
[0079] Different from the traditional refrigerator bag where the temperature control module and the power supply module are both arranged in the storage module 100, resulting in a reduction in the actual available space of the traditional refrigerator bag; in the temperature-controlled storage device of this application, the temperature control module 250 and the battery installation part 409 are both or separately at least partially exposed to the external environment of the storage module 100, greatly increasing the volume of the storage module 100; at the same time, in order to decorate the protruding part on the outer surface of the storage module 100, this application adds a soft outer package 200 to decorate the protruding part, which not only beautifies the appearance but also further plays a heat preservation role.
[0080] In other embodiments, the battery installation part 409 and the temperature control template 250 are such that the wires on the temperature control module 250 are connected to the mobile power supply 405 in the battery installation part 409. In this way, it can be ensured that the battery pack placed in the battery installation part 409 is less affected by the heat of the temperature control module 250. Due to the decoration of the soft outer package 200, the wiring of the battery installation part 409 can be exposed outside the storage main body 102 and will not be exposed to the user.
[0081] The battery compartment is arranged in the battery bag 502. The wires can be held between the storage module 100, the refrigeration base 402, and the storage main body 102. The wires can be decorated by the soft outer package 200. The battery bag 502 is formed in the soft outer package 200.
[0082] In other embodiments, heat dissipation holes may be formed in the outer wall of the battery installation part 409 to facilitate the dissipation of heat of the mobile power supply 405. At the same time, a heat dissipation fan may be added at the position where the heat dissipation holes are formed to further improve the heat dissipation effect of the mobile power supply 405.
[0083] An ear bag 220 is provided on the outer surface of the soft package body 204. Specifically, the ear bag 220 may be provided as one or more, and the battery installation part 409 is opened and closed while being covered by the ear bag 220. In this application, two ear bags 220 are provided, which are respectively arranged on both sides of the storage module 100. This makes the appearance of the temperature-controlled storage device change significantly, different from the metal appearance of the previous temperature-controlled devices, creating a light feeling visually and actually bringing a higher volume ratio.
[0084] Such as Figure 7 shown, in order to enable the temperature-controlled storage device of the present application to achieve the purpose of heating food, at least one heating element 116 is further included in the anti-overflow space. The heating element 116 is electrically connected to the electronic control unit 404. The advantage of such a setting is that the food in the storage module 100 can be heated in cold weather to cope with different outdoor conditions. Specifically, the heating element 116 may be a heating wire.
[0085] Such as Figure 7 shown, in order to enable the temperature-controlled storage device of the present application to achieve the purposes of food preservation, refrigeration and freezing, the temperature control module 250 includes a refrigeration component 450 and a cooling element 118. Heat dissipation holes are provided at the position of the storage module 100 corresponding to the refrigeration component 450. The refrigeration component 450 is connected to the cooling element 118 to lower the internal temperature of the storage module 100.
[0086] The storage main body 102 is connected to the refrigeration base 402, the temperature control module 250 is arranged in the refrigeration base 402, and the compressor, the condenser pipe and the electronic control unit 404 are arranged in the refrigeration base 402. The condenser pipe of the temperature control module 250 is wound around the module 100.
[0087] In other embodiments, optionally, the temperature-controlled storage device further includes a refrigeration base 402. The electronic control unit 404 is arranged in the refrigeration base 402. The refrigeration base 402 is detachably connected to the storage module 100 to greatly reduce the weight of the temperature-controlled storage device, only retaining the basic heat preservation function, and the rest can be charged without being carried. At the same time, the refrigeration component 450 is arranged in the refrigeration base 402.
[0088] The refrigeration component 450 is electrically connected to the control circuit, the battery installation part 409 is electrically connected to the control circuit, and the control circuit is arranged outside the refrigeration component 450.
[0089] The control circuit includes at least two modes, namely a first refrigeration mode and a second refrigeration mode respectively. The first refrigeration mode and the second refrigeration mode can be switched, and the first refrigeration mode and the second refrigeration mode are selected by the way of being triggered by a key.
[0090] Specifically, the refrigeration component 450 is close to the radial surface of the storage body 102; or the refrigeration component 450 is close to the bottom surface of the storage body 102; or the refrigeration component 450 is close to at least two adjacent surfaces of the storage body 102; or the refrigeration component 450 is fitted into a corner of the storage body 102, and the refrigeration component 450 is close to at least two adjacent surfaces of the storage body 102.
[0091] As Figure 8 And Figure 9 As shown, meanwhile, the storage space inside the storage body 102 is also divided into areas with different temperatures. The storage body 102 includes a first area and at least one second area. The first area and the second area are at least partially separated to manage the temperatures of the first area and the second area separately.
[0092] The storage body 102 is provided with an air outlet 135. A partition plate 127 is fixedly connected inside the storage body 102. The partition plate 127 divides the storage space into a first area and a second area. The air outlet 135 can output cold air, making the temperature of the storage space on the left drop faster, and controlling the temperature of the storage space on the left to be lower than that of the storage space on the right. At the same time, since the partition plate 127 divides the storage space with different heights, different items can be placed in the storage spaces on the left and right, meeting different actual needs of users.
[0093] Specifically, in the embodiment of the present application, the storage body 102 and the partition plate 127 can also be relatively rotatable. The partition plate 127 is rotatably arranged on the partition plate conversion member 129. A partition plate conversion positioning member 131 is arranged inside the storage body 102. The partition plate conversion positioning member 131 can make the partition plate 127 stay at different positions. When the partition plate 127 stays at different positions, the storage space can be selectively divided vertically or horizontally. When the partition plate 127 stays horizontally, the storage space is divided into upper and lower parts. At the same time, the space of the lower storage space is relatively small. Cooperating with the air outlet 135, the temperature here can drop rapidly and can have a lower temperature.
[0094] To make the temperature-controlled storage device of the present application have a heat preservation effect, the storage cover 104 can have different height dimensions, so that by replacing different storage covers 104, the temperature-controlled storage device can have different storage space sizes.
[0095] As Figure 10As shown, an extension enclosure 216 is provided between the storage body 102 and the storage cover 104. The extension enclosure 216 has two through openings, which are respectively connected to the storage body 102 and the storage cover 104. By adding the extension enclosure 216, the temperature-controlled storage device has different storage space sizes. At this time, at least two sealing limit members 108 are provided. One sealing limit member 108 connects the enclosure structure and the storage body 102, and one sealing limit member 108 connects the enclosure structure and the storage cover 104.
[0096] The storage body 102 and the storage cover 104 define a sealed connection position, and the flexible package 204 and the storage cover 104 define a receiving connection position 201. The sealed connection position and the receiving connection position 201 are arranged to be offset in the height direction. The connection method of the sealed connection position can be one of zipper connection, buckle connection, magnetic attraction connection, or use rotary connection and seal with a sealing strip, or use concave-convex clamping connection and seal with a sealing strip.
[0097] In one embodiment, the extension enclosure 216 is a drawer with a bottom surface 2161, wherein the bottom surface 2161 can communicate with the extended space and the storage space; as Figure 25 shown, by providing the bottom surface 2161, the extension enclosure 216 can be isolated from the storage body 102 to form a dual-temperature zone, so as to facilitate storing foods with different temperature requirements.
[0098] In one embodiment, the extension enclosure 216 is a cylinder that is vertically conductive, as Figure 24 shown, through the cylindrical structure, cold air can be transmitted into the extension enclosure 216.
[0099] In a variant embodiment of the present embodiment, the extension enclosure 216 includes at least one layer of extended thermal insulation layer 2166. The soft outer package 200 is extensible. The soft outer package 200 extensibly covers the extension enclosure 216. The flexible package 204 of the soft outer package 200 is extensible. The flexible package 204 extensibly covers the extension enclosure 216. The soft outer package is connected to the soft cover 202.
[0100] In another variant embodiment, the extension enclosure 216 includes at least one layer of extended thermal insulation layer 2166. The soft outer package 200 is extensible. The soft outer package 200 extensibly covers the extension enclosure 216. The soft cover 202 of the soft outer package 200 is extensible. The soft cover 202 extensibly covers the extension enclosure 216. The soft outer package is connected to the flexible package 204.
[0101] In a variant implementation manner of the above embodiment, the bottom of the extension enclosure 216 is a hollow structure 2162, as Figure 26As shown. Among them, the hollow structure 2162 is a mesh surface or a hollow plate, etc. Through the hollowing 2162, food can be placed inside the extension envelope 216, while ensuring that the cold air inside the storage main body 102 can still enter the extension envelope 216.
[0102] In one embodiment, a fan for driving air flow can also be installed on the extension envelope 216. Through the fan, the cold air can circulate, making the temperature inside the extension envelope 216 more balanced.
[0103] In one embodiment, a heat-conducting material can also be provided on the extension envelope 216 to facilitate the transfer of low temperature into the extension envelope 216.
[0104] In one embodiment, fabric outer skins are provided on the outside of the storage cover 104, the storage main body 102, and the extension envelope 216. The multiple fabric outer skins are connected by zippers to form a soft backpack 500, as Figure 22 、 25 shown.
[0105] One end of the extension envelope 216 can be closely attached to the storage cover 104, and the other end of the extension envelope 216 is closely attached to the storage main body 102. The connection methods include: rotary connection and pressing with a sealing strip; concave-convex limiting and sealing with a sealing strip.
[0106] As Figure 3 shown, to further enhance the heat preservation effect of the storage module, the storage main body 102 includes a first storage main body 110 and a second storage main body 120 stacked on the first storage main body. The first storage main body 110 and the second storage main body 120 are spaced apart, and heat preservation materials can be placed between them. The heat preservation materials are foam materials, but are not limited thereto. In other embodiments, the heat preservation materials can be polyurethane foam, polystyrene board, phenolic foam, glass wool, rock wool and other materials with heat preservation performance; or a vacuum can be maintained between them.
[0107] As Figure 11 and Figure 12 shown, a detachable carrying component 300 is provided on the soft outer package 200. The carrying component 300 includes a human carrying part 310. The human carrying part 310 includes a main body 312 and a shock-absorbing part 314. The main body 312 has an outer surface and an inner surface. The outer surface of the main body 312 is connected to the storage module 100, and the shock-absorbing part 314 is provided on the inner surface of the main body 312. A camp expansion component 316 is provided on the human carrying part 310.
[0108] As Figure 3 shown, in this embodiment, the camp expansion component 316 is provided on the main body 312. By adding hooks, outdoor supplies such as blankets, tents, and walking sticks can be expanded and assembled, greatly expanding the functionality of the temperature-controlled storage device.
[0109] As Figure 13 shown, the carrying component 300 includes at least one carrying extension component 318, and the carrying extension component 318 is arranged on the outer surface of the soft outer package 200 for buckling, hooking or binding.
[0110] As Figure 14 shown, in order to improve the airtightness of the storage module 100, the storage module 100 may be provided with a sealing limit member 108, and the sealing limit member 108 connects the soft outer package 200 and the storage cover 104. In this embodiment, the number of the sealing limit members 108 is two, and the sealing limit member 108 may be a metal buckle. The sealing limit member 108 can enable the storage module 100 to obtain better sealing performance. At the same time, adopting this sealing form can well open the temperature-controlled storage device and facilitate taking the food therein.
[0111] At the same time, the sealing limit member 108 may also be a layer of edging, and the storage module 100 is opened and closed by setting a zipper on the edging.
[0112] At the same time, the soft outer package 200 and the storage cover 104 may also be provided with concave and convex parts to achieve the sealing effect.
[0113] In this embodiment, the temperature-controlled storage device of the present application has multiple functions, including but not limited to refrigeration function, heating function, heat preservation function and air cooling function. The temperature-controlled storage device of the present application mainly supplies power through energy storage technology. The temperature-controlled storage device powered by energy storage has many advantages, including but not limited to that the temperature-controlled storage device powered by energy storage can be used in places without power, such as outdoor activities, picnics, camping, etc. In case of power outage or other emergencies, the temperature-controlled storage device powered by energy storage can continue to work to ensure the freshness of food and beverages. The temperature-controlled storage device powered by energy storage can store electric energy when the power demand is low and release electric energy when the power demand is high, so as to achieve other advantages such as efficient utilization of energy.
[0114] In Embodiment 2, the present utility model provides a temperature-controlled storage device with a battery pack. As Figure 6 shown, the difference from Embodiment 1 is that the battery pack is detachably placed in the battery installation part 409 of the temperature-controlled storage device, and the battery pack is a mobile power supply 405. The battery pack can be at least partially exposed to the external environment of the soft outer package 200, and the battery pack is placed in the battery installation part 409 and supplies power to the temperature control module 250.
[0115] The battery installation part 409 is held in a manner blocked by the soft outer package 200 between the soft outer package 200 and... The soft outer package 200 accommodates the battery installation part 409 in an openable and closable manner. In other words, the soft outer package 200 accommodates the mobile power supply 405 in an openable and closable manner. In the first state, the mobile power supply 405 is covered by the soft outer package 200. In the second state, the soft outer package 200 can be opened and the mobile power supply 405 can be displayed
[0116] Optionally, the battery pack is detachably placed in the battery installation part 409 of the temperature-controlled storage device, and the battery pack is the mobile power supply 405
[0117] In Embodiment 3, the present utility model provides a portable temperature-controlled storage device. Different from Embodiment 1, it further includes a carrying member, and the carrying member can be a rope. The carrying member is detachably assembled on the temperature-controlled storage device of the present application, and the temperature-controlled storage device of the present application can be kept away from the ground by using the carrying member
[0118] The soft outer package 200 is provided with a carrying connection part, and the carrying connection part is connected to the carrying member. Among them:
[0119] The carrying connection part has at least two connection holes that can be penetrated, and the carrying member can pass through the at least two connection holes to form one or more closed loops, so that the supported object can pass through one or more closed loops to support the temperature-controlled storage device away from the ground; or
[0120] The carrying connection part is one or more clamping members, and at least one carrying member that can form one or more closed loops is clamped by the clamping members, so that the supported object can pass through one or more closed loops to support the temperature-controlled storage device away from the ground;
[0121] Or the carrying connection part has at least one connection hole that can be penetrated, and the carrying member can pass through the connection hole to form a hook, so that the supported object can pass through the carrying member to support the temperature-controlled storage device away from the ground;
[0122] Or the carrying connection part has a hook, so that the supported object can pass through the carrying connection part to support the temperature-controlled storage device away from the ground;
[0123] Or the carrying connection part has a buckle, so that the supported object is buckled to the carrying connection part to support the temperature-controlled storage device away from the ground
[0124] In Embodiment 4, the present utility model provides an assemblable temperature-controlled storage device, as Figure 13 shown. Different from Embodiment 1, it further includes an electric vehicle. The temperature-controlled storage device of the present application is preset on the electric vehicle. The electric vehicle includes a detachable external power supply, and the external power supply can supply power to the electric vehicle and the temperature-controlled storage device of the present application respectively
[0125] The electric vehicle and the temperature-controlled storage device of the present application are simultaneously powered by an external power supply, where:
[0126] At least one of the electric vehicle and the temperature-controlled storage device of the present application is powered by being connected by a power cord; or at least one of the electric vehicle and the temperature-controlled storage device of the present application is directly contacted and powered by docking an electrical connector; or at least one of the electric vehicle and the temperature-controlled storage device of the present application is directly contacted and powered by wireless charging.
[0127] The type of the external power supply is a battery pack with multiple batteries, a battery pack group with multiple battery packs, or an energy storage power supply with an inverter circuit.
[0128] Hooks and buckles matching the temperature-controlled storage device of the present application can be reserved on the electric vehicle, so that the temperature-controlled storage device of the present application can be detachably fixed on the electric vehicle by carrying an expansion component 318.
[0129] In Embodiment 5, the present utility model provides a method for recovering heat energy of a temperature-controlled storage device, including:
[0130] S001 By means of a storage main body 102 and a temperature control module 250 that can be used for refrigeration, the temperature inside the storage main body 102 is adjusted;
[0131] S002 By means of a recovery chamber of a soft outer package 200, the heat output by the temperature control module is retained in the recovery chamber for the object to be heated.
[0132] Before step S001, it further includes:
[0133] S003 By means of an external power supply, power is supplied to the temperature control module 250 by docking with a battery installation part 409 of the temperature-controlled storage device; or
[0134] S004 By means of an external power supply, power is supplied to the temperature control module 250 by connecting a power cord to a power connection part of the temperature-controlled storage device.
[0135] As Figure 15 shown, a hot air circulation port 137 for discharging hot air is provided on the soft outer package 200, and the hot air circulation port 137 is arranged in the ear bag 220. Items can be placed in the ear bag 220. When the temperature-controlled storage device is started, hot air is output to the ear bag 220 to heat the items therein. Using hot air recovery insulation or fan hot air insulation, these technologies can reduce the energy consumption of the temperature-controlled storage device, save the energy of the refrigerator and reduce the load, which has environmental protection significance.
[0136] In Embodiment 6, this embodiment provides a temperature-controlled storage device. The difference from Embodiment 1 is that the temperature control module 250 is held against the bottom of the storage main body 102 and at least partially protrudes from the storage main body 102, and the temperature control module 250 is at least partially covered by the soft outer package 200.
[0137] Meanwhile, the battery installation part 409 can be at least partially exposed to the external environment of the soft outer package 200. The battery installation part 409 can be set to protrude from the radially extending wall of the soft outer package 200, or can also be set to protrude from the storage cover 104.
[0138] Wherein the temperature control module 250 is powered, one or more battery installation parts 409 are at least partially exposed to the external environment of the soft outer package 200, and the battery installation part 409 and the temperature control module 250 are electrically connected. The battery pack is placed on the battery installation part 409 and electrically connected to the temperature control module 250 to supply power to the temperature control module 250; or a power connection part is used to replace the battery installation part 409. The power connection part is electrically connected to the temperature control module 250, and the power connection part can be connected to the power supply by wiring.
[0139] The power connection part can also be one or more electrical connection interfaces. One or more electrical connection interfaces can be electrically connected to an external power supply, and the types of the electrical connection interfaces include TYPEC, AC female plug, triangular interface, and USB interface.
[0140] In Embodiment 7, this embodiment provides a temperature-controlled storage device. The difference from Embodiment 1 is that the battery installation part 409 at least partially protrudes from the side wall of the storage main body 102, and the temperature control module 250 is at least partially covered by the soft outer package 200. The battery installation part 409 and the temperature control module 250 are electrically connected, so that the battery pack placed on the battery installation part 409 is electrically connected to the temperature control module 250 to supply power to the temperature control module 250.
[0141] The battery installation part 409 can be at least partially exposed to the external environment of the soft outer package 200, and the battery installation part 409 protrudes from the main extending wall of the soft outer package 200.
[0142] In Embodiment 8, the temperature-controlled storage device provided in this embodiment can also be powered by the vehicle's power supply, enabling the vehicle owner to enjoy ice-cold drinks and warm food at any time and place, greatly improving the quality of automotive life.
[0143] In Embodiment 9, the temperature-controlled storage device provided in this embodiment can meet the requirement of "not losing power when leaving the vehicle" through in-vehicle power supply technology. After reaching the set temperature, it will suspend operation, so the power consumption for continuous operation for 24 hours is often less than one degree.
[0144] In Embodiment 10, the temperature-controlled storage device can also be combined with the front or rear of the E-BIKE in some innovative ways.
[0145] When the temperature-controlled storage device is combined with the front of the E-BIKE, the temperature-controlled storage device can be designed as a special front basket and installed on the front of the E-BIKE. In this way, in some cases, the temperature-controlled storage device can also be powered by the battery of the E-BIKE. In addition, the position of the refrigerator is also convenient for the rider to access cold drinks or food at any time.
[0146] When the temperature-controlled storage device is combined with the rear of the E-BIKE, the temperature-controlled storage device can be designed as a rear seat storage box and installed on the rear of the E-BIKE. This design can provide a larger storage space, which is suitable for long-distance travel or picnics. Similarly, the temperature-controlled storage device can also be powered by the battery of the E-BIKE.
[0147] Furthermore, whether it is the front or the rear, the temperature-controlled storage device can be connected to the power system of the E-BIKE through a cable to achieve energy interaction. For example, when the battery of the E-BIKE is fully charged, the excess electric energy can be used to charge the temperature-controlled storage device. Conversely, when the battery of the E-BIKE is low on power, the battery of the temperature-controlled storage device can also provide additional power for the E-BIKE.
[0148] In Embodiment 11, for the temperature-controlled storage device provided in this embodiment, the temperature-controlled storage device can also be combined with a conventional bicycle and set on the body of the bicycle, such as the front or the rear of the bicycle.
[0149] In Embodiment 12, a temperature-controlled storage device includes:
[0150] At least one storage mechanism, the storage mechanism includes at least one storage module 100, at least one soft shell 200 covering the storage module 100, and an openable storage cover 104. An anti-overflow space 112 is defined between the storage module 100 and the soft shell 200. The storage cover 104 is hermetically sealed to the storage housing in an openable manner and defines a storage opening. The storage opening communicates with the anti-overflow space 112 and the storage space. The temperature control module 250 is disposed in the anti-overflow space 112;
[0151] At least one temperature control module 250, the temperature control module 250 is fittingly held at the bottom of the storage module 100. After being powered, the temperature control module 250 cools to adjust the temperature of the storage space of the storage module 100; and
[0152] One or more battery mounting parts 409, the battery mounting parts 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting parts 409 are electrically connected to the temperature control module 250, so that the battery pack 405 can be electrically connected to the temperature control module 250 when placed in the battery mounting parts 409 to supply power to the temperature control module 250.
[0153] It is worth mentioning that in Embodiments 1 to 12, the soft shell 200 and the soft outer package 200 refer to the same component, which refers to the soft material that can shield and accommodate the storage module 100. Due to its plastic form, it can modify the shape of the temperature-controlled storage device, so that the temperature-controlled storage device is not necessarily a square housing. The soft outer package seals and wraps the storage module 100 and the temperature control module 250 at the same time to modify the protruding part of the outer surface of the storage module 100, not only beautifying the appearance but also further playing a heat preservation role.
[0154] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting part 409 is disposed on at least one radial circumferential surface of the soft shell 200.
[0155] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting part 409 is disposed on the bottom surface of the soft shell 200.
[0156] In one embodiment, the soft shell 200 has one or more radial circumferential surfaces, a top surface, and a bottom surface, and the battery mounting part 409 is disposed on the top surface of the soft shell 200.
[0157] In one embodiment, the battery mounting part 409 is disposed in the anti-overflow space 112 defined by the soft shell 200 and the storage module 100, and the battery mounting part 409 is close to the storage opening. In one embodiment, the battery mounting part 409 is disposed on the top surface of the soft package cover 202.
[0158] In one embodiment, the storage cover 104 and the soft package cover 202 are integrally formed, the battery mounting part 409 is disposed between the storage cover 104 and the soft package cover 202, and the battery mounting part 409 has a battery compartment and a plug-in opening, and the plug-in opening communicates the battery compartment with the external space for accommodating the battery pack 405.
[0159] In one embodiment, the soft shell 200 includes one or more ear packages 220, and each battery mounting part 409 is covered and opened by at least one of the ear packages 220.
[0160] In one embodiment, the temperature control module 250 includes a refrigeration component 450 and a control circuit 404 circuit - connected to the refrigeration component 450. The battery mounting portion 409 is circuit - connected to the control circuit 404. The control circuit 404 is circuit - connected to the refrigeration component 450 and the battery mounting portion 409. The control circuit 404 is disposed outside the refrigeration component 450, and the refrigeration component 450 is adjacent to the radial surface of the storage module 100.
[0161] It is worth mentioning that the control circuit 404 is an electronic control unit 404, which is the same component in different embodiments.
[0162] In one embodiment, the temperature control module 250 includes a refrigeration component 450 and a control circuit 404 circuit - connected to the refrigeration component 450. The battery mounting portion 409 is circuit - connected to the control circuit 404. The control circuit 404 is circuit - connected to the refrigeration component 450 and the battery mounting portion 409. The control circuit 404 is disposed outside the refrigeration component 450, and the refrigeration component 450 is adjacent to the bottom surface of the storage module 100.
[0163] In one embodiment, the temperature control module 250 includes a refrigeration component 450 and a control circuit 404 circuit - connected to the refrigeration component 450. The battery mounting portion 409 is circuit - connected to the control circuit 404. The control circuit 404 is circuit - connected to the refrigeration component 450 and the battery mounting portion 409. The control circuit 404 is disposed outside the refrigeration component 450, and the refrigeration component 450 is adjacent to at least two adjacent surfaces of the storage module 100.
[0164] In one embodiment, the temperature control module 250 includes a refrigeration component 450 and a control circuit 404 circuit - connected to the refrigeration component 450. The battery mounting portion 409 is circuit - connected to the control circuit 404. The control circuit 404 is circuit - connected to the refrigeration component 450 and the battery mounting portion 409. The control circuit 404 is disposed outside the refrigeration component 450, and the refrigeration component 450 is fitted into a corner of the storage module 100, and the refrigeration component 450 is adjacent to at least two adjacent surfaces of the storage module 100.
[0165] Referring to the accompanying drawings of the specification Figures 20A to 21 The present utility model provides a temperature - controlled storage device, which includes a storage module 100, a temperature control module 250 connected to the storage module 100, a battery mounting portion 409, and a soft outer package 200. The storage module 100 and the temperature control module 250 connected to the storage module 100 are assembled into one body and are covered by the soft outer package 200.
[0166] The storage module 100 includes a storage main body 102 and a storage cover 104 that can be opened and closed and simultaneously hermetically covers the storage main body 102; a soft outer package 200 covers the storage main body 102 and the storage cover 104.
[0167] The soft outer package 200 has at least one soft package body 204 and a soft package cover 202 for covering the soft package body 204, and the soft package body 204 is hermetically wrapped around the outer periphery of the storage module 100.
[0168] More preferably, the soft outer package 200 has at least one soft package body 204 and a soft package cover 202 that can be opened and closed to hermetically cover the soft package body 204. The soft package body 204 hermetically covers the storage main body 102, and the soft package cover 202 is hermetically wrapped around the outer periphery of the storage cover 104. The soft package body 202 and the storage cover 104 are integrally formed.
[0169] It is worth mentioning that the soft outer package 200 also has a clamping cover body that is openably and closably connected to the soft package body 204 for clamping other additional packages and / or some clampable utensils, increasing the storage space. For example, blankets, roll-up table boards, clothes, etc. can be clamped by the clamping cover body and the soft package body 204.
[0170] The soft package cover 202 and the storage cover 104 are assembled into one body. The soft package body 204 and the storage main body 102 are assembled into one body.
[0171] In a modified embodiment, optionally, the soft outer package 200 has at least one soft package body 204, and the soft package body 204 hermetically covers the storage main body 102. The soft package body 202 and the storage cover 104 are integrally formed. The storage cover 104 is openably and closably covered on the storage main body 102.
[0172] In a modified embodiment, the soft outer package 200 has at least one soft package body 204 and a soft package cover 202 that is openably and closably connected to the soft package body 204. The soft package body 204 hermetically covers the storage main body 102. The soft package body 202 and the storage cover 104 are separately arranged. The storage cover 104 is openably and closably covered on the storage main body 102.
[0173] Further, the battery installation part 250 at least partially protrudes from the radial circumferential surface of the storage module 100. Further. One side of the temperature control module 250 protrudes from the radial circumferential surface of the storage module 100.
[0174] Further, the temperature control module 250 does not protrude from the radial circumferential surface of the storage module 100.
[0175] In this embodiment, as Figure 20AAs shown, the refrigeration assembly 450 includes a compressor 451, a condensing pipe 452 connected to the compressor 451, and an evaporating pipe 454 connected to the condensing pipe 452. A heat dissipation fan 453 is installed on one side of the condensing pipe 452. A refrigeration base 402 is installed on one side of the bottom of the storage main body 102. The refrigeration assembly 450 and the control circuit 404 are both installed in the refrigeration base 402. Ventilation windows 4021 are provided on both sides of the refrigeration base 402. The condensing pipe 452 and the heat dissipation fan 450 are close to one of the ventilation windows 4021. One side of the refrigeration base 402 that is vertically opposite to the ventilation window 4021 on the outside is set as an installation surface 4025. A control panel 4022 is also installed on the side of the refrigeration base 4025 where the ventilation window 4021 is provided. The battery installation part 409 is installed on the outer surface of the storage module 100 or the installation surface 4025 of the refrigeration base 402. An external power supply port 4023 and a wire routing hole 4024 are also provided on the installation surface 4025.
[0176] Preferably, the condensing pipe 452 and the heat dissipation fan 450 are close to the air outlet. The ventilation window 4021 close to the condensing pipe 452 and the heat dissipation fan 450 is the air outlet. The ventilation window 4021 close to the control panel 4022 is the air inlet. The two ventilation windows 4021 conduct external air, and the two ventilation windows 4021 define a heat dissipation channel.
[0177] Preferably, the battery installation part 409 is installed in the side pocket of the soft outer package 200. The battery installation part 409 is installed in the battery pocket of the soft outer package 200. The battery installation part 409 is locked to the refrigeration base 402. The position of the battery installation part 409 is perpendicular to the plane defined by the two ventilation windows 4021. That is to say, the battery installation part 409 is far away from the heat dissipation channel defined by the two ventilation windows 4021. In this embodiment, the ventilation windows 4021 on both sides are distributed front and back. The front ventilation window 4021 is the air outlet end, and the rear ventilation window is the air inlet end. Among them, the condensing pipe 452 and the heat dissipation fan 450 are arranged close to the front ventilation window 4021. A certain interval space is maintained between the first storage main body 110 and the second storage main body 120. The evaporating pipe 454 extends into this interval for temperature reduction. The evaporating pipe 454 is equivalent to the temperature reduction part 118. The evaporating pipe 454 is closely wound around the outside of the second storage main body 120, as Figure 20B shown. Through this layout, the compressor 451, the condensing pipe 452, and the evaporating pipe 454 work together to form a complete refrigeration cycle system, which can accurately and efficiently cool the interior of the storage main body 102.
[0178] To further improve the performance of the refrigeration system, a cooling fan 453 is specifically provided. It is dedicated to dissipating heat from the condenser tube 452, and the dissipated heat is blown out through the ventilation window 4021 on the front side, ensuring the smooth progress of the condensation process and preventing the system from overheating. In addition, the ventilation windows 4021 on the front and rear sides not only optimize the air circulation but also facilitate the rapid dissipation of heat to the external environment, thus ensuring the stability and durability of the entire refrigeration system.
[0179] In this embodiment, the battery installation part 409 is installed in the following way: the battery installation part 409 is installed on a side surface far from the refrigeration base 402, preferably on the side surface of the storage body 102 facing away from the refrigeration base 402, as Figure 20A shown. Such a layout is designed to effectively avoid the adverse impact of the heat generated by the refrigeration component 450 during operation on the performance of the battery pack 405. Through this structure, the battery pack 405 can be maintained in a more stable and suitable working environment, thus ensuring its long-term stable operation. When installed in this way, the wires are routed from the outside of the storage body 102 and are covered and decorated by the soft exterior 200 to avoid the wires being exposed to the user.
[0180] The battery pack 405 is one or more, and the battery pack 405 is detachably plugged into the battery installation part 409 for power supply.
[0181] In a modified embodiment, there are two or more battery installation parts 409 for two or more battery packs 405 to be detachably plugged in.
[0182] By providing an external power supply port 4023 on the installation surface 4025, an external power supply cord can be plugged into the external power supply port 4023, so as to provide additional power support for the storage device when needed. This not only enhances the practicality and flexibility of the storage device but also provides users with more diversified power supply options. For example, users can connect the storage device to a car power source to achieve the convenience of mobile power supply and ensure that the storage device can be continuously and stably powered in any environment.
[0183] In this embodiment, the external power supply port 4023 and the battery installation part 409 are relatively arranged on both sides of the soft outer package 200.
[0184] In a modified embodiment of the present embodiment, the external power supply port 4023 and the battery installation part 409 are arranged coplanarly. In addition, a control panel 4022 is integrated on the refrigeration base 402 of this embodiment, and the control panel 4022 is installed at the ventilation window 4021 at the air inlet end. The control panel 4022 not only provides an intuitive operation interface for the user, but also enables the user to conveniently perform various operations on the refrigeration component 450. And through the control panel 4022, the user can easily adjust the refrigeration parameters, monitor the operating status, and even perform fault diagnosis and repair, greatly improving the usability and maintainability of the device.
[0185] In another embodiment, as Figures 16 to 19 shown, a soft backpack 500 is sleeved outside the storage body 102, and a metal bracket 501 is installed on the soft backpack 500 for fixedly installing the soft backpack 500 on a means of transportation, such as a bicycle, a car, etc., so as to install the storage device on the means of transportation for carrying.
[0186] By configuring the soft backpack 500 for the storage body 102, a portable solution is provided for the user. The soft backpack 500 can perfectly fit the shape of the storage body 102 and provide good protection for it.
[0187] To increase the practicality of the soft backpack 500, a metal bracket 501 is also installed on the soft backpack 500. This metal bracket 501 can effectively fixedly install the soft backpack 500 on various means of transportation, such as bicycles, cars, etc. Thus, the user can easily install the storage device on the means of transportation according to their own needs, facilitating carrying and moving. In this way, the storage device can be easily carried with the user at any time to meet their storage needs of the device's usability and maintainability.
[0188] Through holes 503 corresponding to the ventilation window 4021 are formed on both sides of the soft backpack 500. The soft outer package 200 is provided with a plurality of side pockets, and one of the side pockets of the soft outer package 200 is a battery pocket 502. The battery pocket 502 is formed on the side of the ventilation channel defined by the two ventilation windows 4021 of the soft outer package 200. That is to say, at least one battery pocket 502 is formed in the vertical direction of the ventilation channel defined by the two ventilation windows 4021 of the soft outer package 200. By providing the through holes 503 corresponding to the ventilation window 4021, it is ensured that the refrigeration component 450 can dissipate heat smoothly.
[0189] In this embodiment, when a soft backpack 500 is sleeved outside the storage body 102, the battery installation part 409 and the battery pack 405 can be placed into the battery bag 502 for storage and installation. The wires can be held between the storage module 100, the refrigeration base 402, and the storage body 102, and at the same time, the wires can be decorated by the soft outer package 200. Thus, the battery pack 405 and the wires are protected. And the battery bag 502 is provided with a zipper opening, through which it is convenient to open and close the battery bag 502, and it is also convenient to replace the battery pack 405 in the battery bag 502.
[0190] A heat dissipation fan 453 is provided, which specifically dissipates heat from the condenser tube 452, and the dissipated heat is blown out through the ventilation window 4021 on the front side, ensuring that the condensation process can proceed smoothly and preventing the system from overheating. In addition, through the ventilation windows 4021 opposite to each other on the front and back sides, not only is the air circulation optimized, but also the heat is quickly dissipated to the external environment, thus ensuring the stability and durability of the entire refrigeration system.
[0191] In a modified embodiment, the refrigeration base 402 has an installation surface 4025, the battery installation part 409 is installed on the installation surface 4025, the battery installation part 409 is electrically connected to the control circuit 404, and the installation surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air inlet is located.
[0192] In a modified embodiment, the refrigeration base 402 has an installation surface 4025, the battery installation part 409 is installed on the installation surface 4025, the battery installation part 409 is electrically connected to the control circuit 404, and the installation surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air outlet is located.
[0193] In multiple embodiments, the wires are connected to the mobile power source 405 in the battery installation part 409. In this way, it can be ensured that the power-on battery pack placed in the battery installation part 409 is less affected by the heat of the temperature control module 250. Due to the decoration of the soft outer package 200, the wire routing in the battery installation part 409 can be exposed outside the storage body 102, but not exposed to the user.
[0194] In a modified embodiment, there are multiple battery packs 405, and the battery packs 405 are detachably plugged into the battery installation part 409 for power supply.
[0195] In a modified embodiment, there are two or more battery installation parts 409 for two or more battery packs 405 to be detachably plugged.
[0196] In a modified embodiment, the external power supply port 4023 and the battery installation part 409 are relatively arranged on both sides of the soft outer package 200.
[0197] In a modified embodiment, the external power supply port 4023 and the battery installation part 409 are arranged coplanarly.
[0198] Optionally, the storage module 100 and the soft package cover 202 define a sealed connection position, and the soft package body 204 and the soft package cover 202 define a receiving connection position 201. The sealed connection position and the receiving connection position 201 are arranged offset in the height direction.
[0199] Referring to the accompanying drawings of the specification Figure 22 , the storage mechanism further includes an extended enclosure 216. The extended enclosure 216 includes an extended thermal insulation layer 2166 and a connecting flexible layer 2167. The extended thermal insulation layer 2166 includes a first extended connection end 2163 and a second extended connection end 2164. The first extended connection end 2163 is sealed to the soft package cover 202, and the second extended connection end 2164 is sealed to the storage module 100. The extended thermal insulation layer 2166 is a drawer with a bottom surface.
[0200] In one embodiment, the storage mechanism further includes an extended enclosure 216. The extended enclosure 216 includes an extended thermal insulation layer 2166 and a connecting flexible layer 2167. The extended thermal insulation layer 2166 includes a first extended connection end 2163 and a second extended connection end 2164. The first extended connection end 2163 is sealed to the soft package cover 202, and the second extended connection end 2164 is sealed to the storage module 100. The extended thermal insulation layer 2166 is a cylinder that is open at both the top and bottom.
[0201] The soft package body 204 and the soft package cover 202 are respectively sleeved outside the storage main body 102 and the storage cover body 104. A sealing layer is provided between the storage main body 102 and the storage cover body 104. The sealing layer between the storage main body 102 and the storage cover body 104 is a rubber layer 2165. When the extended enclosure 216 is disassembled, the rubber layers 2165 between the storage main body 102 and the storage cover body 104 are mutually attached, and the soft package body 204 and the soft package cover 202 are detachably connected.
[0202] Rubber layers 2165 are correspondingly provided at the upper and lower ends of the extended enclosure 216. When the extended enclosure 216 is installed, the rubber layers 2165 of the extended enclosure 216 are respectively attached to the rubber layers 2165 of the storage main body 102 and the storage cover body 104. The soft package body 204 and the soft package cover 202 are connected by a zipper or a buckle or a magnetic attraction connection.
[0203] In one embodiment, the storage mechanism further includes an extended enclosure 216. The extended enclosure 216 includes an extended thermal insulation layer 2166 and a connecting flexible layer 2167. The extended thermal insulation layer 2166 includes a first extended connection end 2163 and a second extended connection end 2164 opposite to the first extended connection end 2163. The first extended connection end 2163 is sealed to the soft package cover 202, and the second extended connection end 2164 is sealed to the storage module 100. The soft package cover 202 includes a storage cover body 104 and a soft package cover 202, and the storage cover body 104 and the soft package cover 202 are integrally formed. The connecting flexible layer 2167 is respectively connected to the soft shell 200 and the soft package cover 202. The first extended connection end 2163 and the storage cover body 104 are detachably connected, and the second extended connection end 2164 and the storage module 100 are detachably connected. The sealed connection position between the second extended connection end 2164 and the storage module 100 is blocked from the external environment of the storage mechanism by the anti-overflow space 112, wherein the sealed connection position between the first extended connection end 2163 and the storage cover body 104 is blocked from the external environment of the storage mechanism by the anti-overflow space 112.
[0204] In one embodiment, the storage mechanism further includes an extended enclosure 216. The extended enclosure 216 includes an extended thermal insulation layer 2166 and a connecting flexible layer 2167. The extended thermal insulation layer 2166 includes a first extended connection end 2163 and a second extended connection end 2164 opposite to the first extended connection end 2163. Sealing layers are also provided at the ends of the first extended connection end 2163 and the second extended connection end 2164. The first extended connection end 2163 is sealed to the soft package cover 202, and the second extended connection end 2164 is sealed to the storage module 100. The soft package cover 202 includes a storage cover body 104 and a soft package cover 202, and the storage cover body 104 and the soft package cover 202 are integrally formed. The connecting flexible layer 2167 is respectively connected to the soft shell 200 and the soft package cover 202. The first extended connection end 2163 and the storage cover body 104 are detachably connected, and the second extended connection end 2164 and the storage module 100 are detachably connected. The sealed connection position between the second extended connection end 2164 and the storage module 100 is blocked from the external environment of the storage mechanism by the anti-overflow space 112. An extended anti-overflow space 112 is defined between the extended thermal insulation layer 2166 and the connecting flexible layer 2167, and the sealed connection position between the first extended connection end 2163 and the storage cover body 104 is blocked from the external environment of the storage mechanism by the extended anti-overflow space 112.
[0205] In one embodiment, the storage mechanism further includes an extended enclosure 216. The extended enclosure 216 includes an extended thermal insulation layer 2166. One end of the extended thermal insulation layer 2166 can be sealed to the soft package cover 202, and the other end of the extended thermal insulation layer 2166 is sealed to the storage module 100. The connection methods include:
[0206] Rotate and connect, and press and fit with a sealing strip; limit with concave and convex parts and seal with a sealing strip.
[0207] In one embodiment, the electronic control unit 404 further includes at least two modes, including a first refrigeration mode and a second refrigeration mode respectively. The first refrigeration mode and the second refrigeration mode can be switched, and the first refrigeration mode and the second refrigeration mode are selected by the way of being triggered by a key.
[0208] In one embodiment, the temperature control module 250 is detachably connected to the storage mechanism.
[0209] In one embodiment, the battery installation part 409 includes at least one battery compartment and at least one power supply interface arranged in the battery compartment. The power supply interface is electrically connected to the temperature control module 250.
[0210] In one embodiment, the carrying component 300 includes at least one human carrying part. The human carrying part is connected to the storage mechanism. The human carrying part includes a main body and at least one shock-absorbing part. The main body has an outer surface and an inner surface. The outer surface of the main body is connected to the storage mechanism, and the shock-absorbing part is arranged on the inner surface of the main body.
[0211] In one embodiment, the carrying component 300 includes at least one carrying expansion component 318. The carrying expansion component 318 is arranged on the outer surface of the storage mechanism for buckling, hooking or binding.
[0212] In one embodiment, the storage module 100 includes a first area and at least one second area. The first area and the second area are at least partially separated. The first area receives less refrigeration temperature from the refrigeration component 450 than the second area, so as to manage the temperatures of the first area and the second area in a partitioned manner.
[0213] In one embodiment, the storage module 100 includes a first storage module 100 and a second storage module 100 superposed on the first storage module 100. The first storage module 100 and the second storage module 100 are arranged at intervals so as to be placed in a heat-insulating material; or
[0214] The storage module 100 includes a first storage module 100 and a second storage module 100 superposed on the first storage module 100. A vacuum is maintained between the first storage module 100 and the second storage module 100.
[0215] In one embodiment, the temperature-controlled storage device with a battery pack 405 includes a temperature-controlled storage device and one or more battery packs 405. The battery pack 405 is detachably placed in the battery installation part 409 of the temperature-controlled storage device. The battery pack 405 can be at least partially exposed to the external environment of the storage mechanism. The battery pack 405 is electrically connected to the temperature control module 250 in the battery installation part 409 to supply power to the temperature control module 250.
[0216] In one embodiment, a portable temperature-controlled storage device includes a temperature-controlled storage device and at least one human-carrying member 310 that can form one or more closed loops. The human-carrying member 310 is detachably assembled to the temperature-controlled storage device so that a support can support the temperature-controlled storage device through one or more closed loops of the human-carrying member 310 to be away from the ground.
[0217] In one embodiment, the temperature-controlled storage device includes a storage mechanism and a carrying connection part arranged on the storage mechanism. The carrying connection part is connected to the human-carrying member 310, wherein:
[0218] The carrying connection part has at least two connection holes that can be penetrated. The human-carrying member 310 can pass through at least two connection holes to form one or more closed loops so that a support can support the temperature-controlled storage device through one or more closed loops to be away from the ground; or
[0219] The carrying connection part is one or more clamping members, and at least one human-carrying member 310 that can form one or more closed loops is clamped to the clamping members so that a support can support the temperature-controlled storage device through one or more closed loops to be away from the ground; or
[0220] The carrying connection part has at least one connection hole that can be penetrated. The carrying member can pass through the connection hole to form a hook so that a support can support the temperature-controlled storage device through the carrying member to be away from the ground; or
[0221] The carrying connection part has a hook so that a support can support the temperature-controlled storage device through the carrying connection part to be away from the ground; or
[0222] The carrying connection part has a buckle so that a support is buckled to the carrying connection part to support the temperature-controlled storage device to be away from the ground.
[0223] In another embodiment, a portable temperature-controlled storage device includes a temperature-controlled storage device and an electric vehicle. The temperature-controlled storage device is preset on the electric vehicle. The electric vehicle includes a detachable mobile power source 405, and the mobile power source 405 can supply power to the electric vehicle and the temperature-controlled storage device respectively.
[0224] It is worth mentioning that the mobile power source 405 is an external power source.
[0225] In one embodiment, the temperature-controlled storage device includes that the electric vehicle and the temperature-controlled storage device are simultaneously powered by the mobile power source 405, wherein:
[0226] At least one of the electric vehicle and the temperature-controlled storage device is powered by being connected by a power cord; or
[0227] At least one of the electric vehicle and the temperature-controlled storage device is directly powered by direct contact in a manner of electrical connection; or
[0228] At least one of the electric vehicle and the temperature-controlled storage device is directly powered by wireless charging in a manner of direct contact.
[0229] In one embodiment, the temperature-controlled storage device includes a mobile power source 405 of the type of a battery pack 405 having a plurality of batteries, a battery pack 405 group having a plurality of battery packs 405, or an energy storage power source having an inverter circuit.
[0230] In one embodiment, a method for heat energy recovery of a temperature-controlled storage device includes:
[0231] S001 By means of a storage module 100 and a temperature control module 250 available for refrigeration, to adjust the temperature inside the storage module 100; and
[0232] S002 By means of a recovery chamber of a software shell 200, keep the heat output by the temperature control module in the recovery chamber for heating the object to be placed.
[0233] In one embodiment, for the method of heat energy recovery of a temperature-controlled storage device, further included before step S001 is:
[0234] S003 By means of a mobile power source 405, power the temperature control module 250 by docking with a battery installation part 409 of the temperature-controlled storage device; or
[0235] S004 By means of a mobile power source 405, power the temperature control module 250 by connecting a power cord to a power connection part of the temperature-controlled storage device.
[0236] It is worth mentioning that the recovery chamber of the software shell 200 is formed inside the ear pad 220.
[0237] It is worth mentioning that in Embodiments 1 to 12, the software shell 200 and the soft outer package 200 refer to the same component, which is a software material capable of shielding and accommodating the storage module 100. Due to its plastic form, it can modify the appearance of the temperature-controlled storage device, so that the temperature-controlled storage device is not necessarily a square housing. The soft outer package also hermetically wraps the storage module 100 and the temperature control module 250 to modify the protruding part of the outer surface of the storage module 100, not only beautifying the appearance but also further playing a heat preservation role.
[0238] In another embodiment, a temperature-controlled storage device includes:
[0239] At least one storage mechanism, the storage mechanism includes at least one storage module 100, at least one software shell 200 covering the storage module 100, and an openable and closable storage cover 104. An anti-overflow space 112 is defined between the storage module 100 and the software shell 200. The storage cover 104 is hermetically sealed to the storage housing in an openable and closable manner and defines a storage opening, and the storage opening communicates with the anti-overflow space 112 and the storage space. The temperature control module 250 is disposed in the anti-overflow space 112;
[0240] At least one temperature control module 250, the temperature control module 250 is fittingly held at the bottom of the storage module 100, and at least part of it protrudes from the storage module 100, and the temperature control module 250 is at least partially covered by the software shell 200. After the temperature control module 250 is powered, it cools down to adjust the temperature of the storage space of the storage module 100.
[0241] In one embodiment, the temperature control module 250 is powered. The temperature control storage device includes one or more battery mounting parts 409. The battery mounting parts 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting parts 409 are electrically connected to the temperature control module 250, so that the battery pack 405 can be placed in the battery mounting parts 409 and electrically connected to the temperature control module 250 to supply power to the temperature control module 250; and / or
[0242] The temperature control storage device includes a power connection part, the power connection part is electrically connected to the temperature control module 250, and the power connection part can be connected to the power supply in a wired manner.
[0243] In one embodiment, the temperature control module 250 is powered. The temperature control storage device includes a power connection part, the power connection part includes one or more power supply interfaces 407, the one or more power supply interfaces 407 can be electrically connected to an external power supply, and the types of the power supply interfaces 407 include TYPEC, AC female plug, delta interface, and USB interface.
[0244] The power supply interface 407 is an electrical connection interface and is the same component in different embodiments.
[0245] The battery mounting part 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting part 409 protrudes from the radial extension wall of the software shell 200.
[0246] The battery mounting part 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting part 409 protrudes from the storage cover 104.
[0247] In another embodiment, a temperature control storage device includes:
[0248] At least one storage mechanism, the storage mechanism includes at least one storage module 100, at least one software shell 200 covering the storage module 100, and an openable and closable storage cover 104. An anti-overflow space 112 is defined between the storage module 100 and the software shell 200. The storage cover 104 is hermetically sealed to the storage housing in an openable and closable manner and defines a storage opening. The storage opening communicates with the anti-overflow space 112 and the storage space. The temperature control module 250 is disposed in the anti-overflow space 112;
[0249] At least one temperature control module 250, the temperature control module 250 is closely held at the bottom of the storage module 100. After being powered, the temperature control module 250 cools to adjust the temperature of the storage space of the storage module 100; and
[0250] One or more battery mounting parts 409, the battery mounting parts 409 can be at least partially exposed to the external environment of the storage mechanism. The battery mounting parts 409 at least partially protrude from the side wall of the storage module 100, and the temperature control module 250 is at least partially covered by the software shell 200. The battery mounting parts 409 and the temperature control module 250 are electrically connected so that the battery pack 405 can be placed on the battery mounting parts 409 and electrically connected to the temperature control module 250 to supply power to the temperature control module 250.
[0251] The battery mounting parts 409 can be at least partially exposed to the external environment of the storage mechanism, and the battery mounting parts 409 protrude from the main extension wall of the software shell 200.
[0252] In one embodiment, the refrigeration base 402 has a mounting surface 4025, the battery mounting part 409 is mounted on the mounting surface 4025, the battery mounting part 409 is electrically connected to the control circuit 404, and the mounting surface of the refrigeration base 402 is perpendicular to the plane defined by the two ventilation windows 4021.
[0253] Preferably, the refrigeration base 402 has a mounting surface 4025, the battery mounting part 409 is mounted on the mounting surface 4025, the battery mounting part 409 is electrically connected to the control circuit 404. The ventilation window 4021 defining the air inlet of the refrigeration base 4025 is coplanar with a control panel 4022. The control circuit 404 is electrically connected to the control panel 4022, and the mounting surface of the refrigeration base 402 and the control panel 4022 are held at the corners of the refrigeration base 402 on both sides.
[0254] In one embodiment, the refrigeration base 402 has a mounting surface 4025, the battery mounting part 409 is mounted on the mounting surface 4025, the battery mounting part 409 is electrically connected to the control circuit 404, and the mounting surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air inlet is located.
[0255] In one embodiment, the refrigeration base 402 has an installation surface 4025, the battery installation part 409 is installed on the installation surface 4025, the battery installation part 409 is circuit-connected to the control circuit 404, and the installation surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air outlet is located.
[0256] In one embodiment, the battery installation part 409 is installed outside the storage module 100, and the battery installation part 409 is kept perpendicular to the plane defined by the two ventilation windows 4021.
[0257] In one embodiment, the battery installation part 409 is installed outside the storage module 100, and the battery installation part 409 is installed on the plane defined by any two ventilation windows 4021.
[0258] In some embodiments, a temperature-controlled storage device includes at least one storage module 100, at least one temperature control module 250, at least one battery installation part 409, and a soft outer package 200. The storage module 100 includes at least one storage body 102 and a storage cover 104. The storage cover 104 is pivotally covered on the storage body 102, and the soft outer package 200 covers the storage body 102;
[0259] The temperature control module 250 is disposed at the bottom of the storage body 102. One side of the temperature control module 250 is covered by the soft outer package 200. After being powered, the temperature control module 250 cools down to adjust the temperature inside the storage body 102;
[0260] The battery installation part 409 is disposed outside the storage module 100. The battery installation part 409 is circuit-connected to the temperature control module 250. A battery pack 405 is detachably installed in the battery installation part 409 for powering the temperature control module 250.
[0261] In some embodiments, the temperature control module 250 includes at least one refrigeration component 450 and a control circuit 404 circuit-connected to the refrigeration component 450. The battery installation part 409 is circuit-connected to the control circuit 404.
[0262] In some embodiments, the refrigeration component 450 includes a compressor 451, a condensing pipe 452 connected to the compressor 451, and an evaporating pipe 454 connected to the condensing pipe 452. A cooling fan 453 is installed on one side of the condensing pipe 452.
[0263] In some embodiments, both the refrigeration component 450 and the control circuit 404 are installed in the refrigeration base 402. Ventilation windows 4021 are opened on both sides of the refrigeration base 402. The condensing pipe 452 and the cooling fan 450 are close to one of the ventilation windows 4021. The compressor 451, the condensing pipe 452, and the cooling fan 450 are arranged in sequence in the heat dissipation channel defined by the two ventilation windows 4021.
[0264] In some embodiments, the refrigeration base 402 has an installation surface 4025, and ventilation windows 4021 are provided on both sides of the refrigeration base 402. The battery installation part 409 is installed on the installation surface 4025, where;
[0265] The installation surface of the refrigeration base 402 is perpendicular to the plane defined by the two ventilation windows 4021; or
[0266] The installation surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air inlet is located; or
[0267] The installation surface of the refrigeration base 402 is the plane where the ventilation window 4021 defining the air outlet is located.
[0268] The refrigeration base 402 has an installation surface 4025, and ventilation windows 4021 are provided on both sides of the refrigeration base 402. The ventilation window 4021 defining the air inlet is coplanar with a control panel 4022. The control circuit 404 is electrically connected to the control panel 4022. The installation surface of the refrigeration base 402 and the control panel 4022 are held at the corners of the refrigeration base 402 on both sides; or
[0269] The battery installation part 409 is installed outside the storage module 100 and is held perpendicular to the plane defined by the two ventilation windows 4021; or
[0270] The battery installation part 409 is installed outside the storage module 100 and is installed on the plane defined by any two ventilation windows 4021; or
[0271] The soft outer package includes an openable storage main body 102 and a storage cover 104. The storage main body 102 covers the storage main body 102, and the battery installation part 409 is installed on the top of the storage cover 104.
[0272] In some embodiments, the refrigeration base 402 has an installation surface 4025. The battery installation part 409 is installed on the outer surface of the storage module 100 or on the installation surface 4025 of the refrigeration base 402. An external power supply port 4023 and a wire routing hole 4024 are further provided on the installation surface 4025. The external power supply port 4023 is used for connecting to an external power supply, where:
[0273] The external power supply port 4023 and the battery installation part 409 are arranged coplanarly; or
[0274] The external power supply port 4023 and the battery installation part 409 are arranged oppositely on both sides of the soft outer package 200.
[0275] At least one battery pocket 502 is provided on the side of the soft backpack 500 to install the battery installation part 409.
[0276] In some embodiments, the temperature-controlled storage device further includes one or more battery packs 405, which are detachably plugged into the battery mounting portion 409 for power supply.
[0277] In some embodiments, there are more than two battery mounting portions 409 for more than two battery packs 405 to be detachably plugged in.
[0278] There is one or more battery packs 405, which are detachably plugged into the battery mounting portion 409 for power supply.
[0279] In some embodiments, there are more than two battery mounting portions 409 for more than two battery packs 405 to be detachably plugged in.
[0280] In the broad sense of the present utility model, the design of the temperature-controlled storage device provided by the present utility model can be applied in multiple fields, including but not limited to outdoor activities such as camping, picnic, barbecue, etc. The temperature-controlled storage device can provide refrigeration and heat preservation functions to keep food and beverages at an appropriate temperature; during a long journey, the temperature-controlled storage device can provide cold drinks and fresh food for travelers; during a sports event, the temperature-controlled storage device can provide cold drinks for athletes to help them recover their strength; the temperature-controlled storage device can also be used to transport medical products such as vaccines, blood samples, etc., items that need to be stored at a specific temperature; it can also be provided to deliverymen to transport refrigerated food or beverages using the temperature-controlled storage device; in some experiments that need to be carried out at a specific temperature, the temperature-controlled storage device can provide a stable temperature environment and various other fields. The present utility model is described through preferred embodiments. Those skilled in the art know that without departing from the spirit and scope of the present utility model, various changes or equivalent replacements can be made to these features and embodiments. The present utility model is not limited by the specific embodiments disclosed herein, and other embodiments falling within the scope of the claims of this application belong to the protection scope of the present utility model.
Claims
1. A temperature-controlled storage device, characterized in that, Comprising at least one storage module (100), at least one temperature control module (250), at least one battery mounting part (409) and a soft outer package (200), the battery mounting part (409) is electrically connected to the temperature control module (250), the storage module (100) includes at least one storage body (102) and a storage cover (104), the storage cover (104) is pivotally covered on the storage body (102), the soft outer package (200) is sleeved outside the storage module (100), the soft outer package (200) has at least one soft package body (204) and a soft package cover (202) for sealing and covering the soft package body (204), and at least one extension sleeve (216) is detachably connected between the storage body (102) and the storage cover (104).
2. The temperature-controlled storage device according to claim 1, characterized in that: The soft package body (204) and the soft package cover (202) are respectively sleeved outside the storage body (102) and the storage cover (104), and a sealing layer is provided between the storage body (102) and the storage cover (104); When the extension sleeve (216) is disassembled, the sealing layers between the storage body (102) and the storage cover (104) are mutually attached, and the soft package body (204) and the soft package cover (202) are detachably connected.
3. The temperature-controlled storage device according to claim 1, characterized in that: The extension sleeve (216) includes at least one layer of extended heat insulation layer (2166) and a connecting soft body layer (2167) provided outside the extended heat insulation layer (2166), the extended heat insulation layer (2166) includes a first extended connection end (2163) and a second extended connection end (2164), and sealing layers are also provided at the ends of the first extended connection end (2163) and the second extended connection end (2164), the first extended connection end (2163) is sealed to the storage cover (104), and the second extended connection end (2164) is sealed to the storage body (102); The connecting soft body layer (2167) includes a first soft body connection end and a second soft body connection end respectively corresponding to the first extended connection end (2163) and the second extended connection end (2164), wherein connection parts are respectively provided on the first soft body connection end and the second soft body connection end.
4. The temperature-controlled storage device according to claim 1, wherein: The extension sleeve (216) includes at least one layer of extended heat insulation layer (2166), the soft outer package (200) is extensible, and the soft outer package (200) extensibly covers the extension sleeve (216), wherein: The soft package body (204) of the soft outer package (200) is extensible, the soft package body (204) extensibly covers the extension sleeve (216), and the soft outer package is connected to the soft package cover (202); or The soft package cover (202) of the soft outer package (200) is extensible, the soft package cover (202) extensibly covers the extension sleeve (216), and the soft outer package is connected to the soft package body (204).
5. The temperature-controlled storage device according to claim 1, characterized in that: An anti-overflow space (112) is provided between the storage body (102) and the soft outer package (200), and the temperature control module (250) is disposed in the anti-overflow space (112).
6. The temperature-controlled storage device according to claim 1, wherein: The storage module (100) and the soft package cover (202) define one or two sealing connection positions, and the soft package body (204) and the soft package cover (202) define one or two accommodation connection positions (201). The sealing connection positions and the accommodation connection positions (201) are arranged to be offset in the height direction.
7. The temperature-controlled storage device according to claim 6, wherein: The connection method of the sealing connection position is zipper connection, buckle connection, magnetic attraction connection, rotary connection or concave-convex clamping connection.
8. The temperature-controlled storage device according to claim 2 or 3, characterized in that: The sealing layer is a rubber layer (2165); after the extension sleeve (216) is installed, the rubber layers (2165) of the extension sleeve (216) are respectively attached to the rubber layers (2165) of the storage body (102) and the storage cover (104), and the soft package body (204) and the soft package cover (202) are connected by a zipper connection, a buckle connection or a magnetic attraction connection.
9. The temperature-controlled storage device according to any one of claims 1 to 4, characterized in that: The extension sleeve (216) is a drawer with a bottom surface (2161), wherein the bottom surface (2161) can conduct the extension space and the storage space; or the extension sleeve (216) is a drawer with a bottom surface (2161), wherein the bottom surface (2161) can separate the extension space and the storage space; or the extension sleeve (216) is a cylinder that is vertically conductive.
10. The temperature-controlled storage device according to claim 1, characterized in that: The battery installation part (409) is disposed outside the storage module (100). The battery installation part (409) is electrically connected to the temperature control module (250), and a battery pack is detachably installed in the battery installation part (409) for supplying power to the temperature control module (250).
11. The temperature-controlled storage device according to claim 1, wherein: The extension sleeve (216) is equipped with a fan for driving the cold air to circulate; or the extension sleeve (216) is provided with a heat-conducting material.