Packaging unit and packaging combination
By designing packaging units and combinations, the problems of inconvenient transportation and time-consuming disassembly in the sale of energy storage power supplies and solar panels were solved, thereby improving stability and space utilization and enhancing the user experience.
Patent Information
- Application Number
- CN202311636495.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-29
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2043-11-29
AI Technical Summary
When selling energy storage power supplies and solar panels together, existing technologies suffer from inconvenient transportation and time-consuming disassembly.
Design a packaging unit and packaging assembly that consists of at least one first packaging sub-unit and at least one second packaging sub-unit partially aligned along a first direction, and filled with filler units as necessary, forming a packaging unit outline to ensure the stability and space utilization of the solar panel and energy storage power supply.
It achieves convenient transportation and simple disassembly, improves space utilization, and ensures product safety and user experience.
Smart Images

Figure CN117429753B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of multi-product combination packaging, in particular to a packaging unit and a packaging combination. BACKGROUND
[0002] Energy storage power supply and solar panels can be used in combination. Under the driving of actual sales strategy, the company plans to launch a combination sales plan of matching products to meet the needs of consumers to purchase matching products and improve sales volume. However, in the case of combination sales, the matching products are delivered by disassembly, which has the problems of inconvenient transportation and time-consuming disassembly. SUMMARY
[0003] The embodiments of the present application provide a packaging unit and a packaging combination to solve at least one of the above technical problems.
[0004] The embodiments of the present application provide a packaging unit. The packaging unit is used for packaging at least one solar panel and at least one energy storage power supply, and the packaging unit comprises:
[0005] at least one first packaging subunit, each of which is used for packaging one solar panel;
[0006] at least one second packaging subunit, each of which is used for packaging one energy storage power supply, the at least one first packaging subunit and the at least one second packaging subunit are arranged in at least partial alignment along a first direction, the first direction is the thickness direction of the solar panel, and the orthographic projection of the packaging unit along the first direction forms a packaging unit contour;
[0007] at least one filler unit, at least part of the filler units are arranged on at least one side of the first packaging subunit so that the orthographic projection of the first packaging subunit and at least part of the filler units along the first direction matches the packaging unit contour; and / or
[0008] at least part of the filler units are arranged on at least one side of the second packaging subunit so that the orthographic projection of the second packaging subunit and at least part of the filler units along the first direction matches the packaging unit contour.
[0009] The above packaging unit can package at least one solar panel and at least one energy storage power supply, so that it can be packaged and delivered, which is convenient for transportation and disassembly. In addition, by arranging the at least one first packaging subunit and the at least one second packaging subunit in at least partial alignment along the first direction and filling the filler units when necessary, the form of the products can be considered and the space utilization of the packaging unit can be improved.
[0010] In some embodiments, the filling unit is used for packaging the accommodation, and the accommodation includes at least one of accessories, wires, instructions or gifts.
[0011] In this way, the accessories of the solar panel and the energy storage power supply are synchronously distributed in a safe and efficient manner while ensuring the overall stability of the packaging unit.
[0012] In some embodiments, the filling unit includes a shell, and the accommodation is located in the shell.
[0013] In this way, the stability of the accommodation is improved, thereby ensuring the safe transportation of the accommodation.
[0014] In some embodiments, the shell includes at least one of foam, bubble bag, honeycomb paperboard or corrugated paperboard.
[0015] In this way, the buffering protection of the shell is ensured, and the protection cost of the accessories, wires, instructions or gifts is reduced.
[0016] In some embodiments, the packaging unit includes at least one first packaging subunit and one second packaging subunit, and the first packaging subunit and the second packaging subunit are arranged along the first direction.
[0017] In this way, the solar panel and the energy storage power supply are reasonably placed to improve the transportation efficiency of the product, thereby meeting the multiple product purchase needs of users and improving the user experience.
[0018] In some embodiments, the packaging unit includes one filling unit, the second packaging subunit is dimensionally matched with the first packaging subunit in the width direction of the first packaging subunit, and the second packaging subunit is dimensionally matched with the filling unit in the length direction of the first packaging subunit.
[0019] In this way, the stability of the placement of the solar panel and the energy storage power supply is ensured, thereby improving the space utilization.
[0020] In some embodiments, the packaging unit includes at least one first packaging subunit and two second packaging subunits, and the two second packaging subunits are partially aligned along the second direction, which is the length direction of the solar panel.
[0021] In this way, one solar panel and two energy storage power supplies are reasonably placed to improve the transportation efficiency of the product, thereby meeting the multiple product purchase needs of users and improving the user experience.
[0022] In some embodiments, the packaging unit further includes two of the filling units. The second packaging subunit is dimensionally matched with one of the filling units in the width direction of the first packaging subunit, and the first packaging subunit is dimensionally matched with the other filling unit in the length direction of the two second packaging subunits.
[0023] In this way, the stability of the placement of the solar panel and the energy storage power supply is ensured, thereby improving the space utilization rate.
[0024] In some embodiments, the packaging unit includes four of the first packaging subunits and four of the second packaging subunits. The four second packaging subunits are arranged in a "field" shape, the four first packaging subunits are arranged in a stacked "day" shape, and the four first packaging subunits and the four second packaging subunits are arranged along a first direction.
[0025] In this way, the four solar panels and the four energy storage power supplies can be reasonably placed, so as to improve the transportation efficiency of the product, thereby ensuring the user's multi-product purchase demand and further improving the user experience.
[0026] In some embodiments, the packaging unit further includes one of the filling units. The second packaging subunit is dimensionally matched with the first packaging subunit in the width direction of the first packaging subunit, and the first packaging subunit is dimensionally matched with the filling unit in the length direction of the two second packaging subunits.
[0027] In this way, the stability of the placement of the solar panel and the energy storage power supply is ensured, thereby improving the space utilization rate.
[0028] An embodiment of the present invention further provides a packaging combination, which includes at least two packaging units as described in any one of the above embodiments.
[0029] The above packaging combination can package at least one solar panel and at least one energy storage power supply. In this way, it can be packaged and shipped, which is convenient for transportation and disassembly. In addition, by at least partially aligning and arranging at least one first packaging subunit and at least one second packaging subunit along the first direction and filling the filling unit when necessary, the form of the product can be taken into account and the space utilization rate of the packaging unit can be improved.
[0030] The additional aspects and advantages of the present invention will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, in which:
[0032] Figure 1 is a perspective assembly view of the packaging unit of the present application embodiment;
[0033] Figure 2 is a perspective exploded view of the packaging unit of the present application embodiment;
[0034] Figure 3 is a perspective view of the solar panel of the present application embodiment;
[0035] Figure 4 is a perspective view of the energy storage power supply of the present application embodiment;
[0036] Figures 5 to 12 is a perspective assembly view of the first packaging subunit of the present application embodiment;
[0037] Figures 13 to 17 is a perspective assembly view of the second packaging subunit of the present application embodiment;
[0038] Figures 18 to 20 is a perspective view of the filling unit of the present application embodiment;
[0039] Figures 21 to 23 is a perspective view of one first packaging subunit and one second packaging subunit of the present application embodiment;
[0040] Figures 24 to 27 is a perspective view of two first packaging subunits and one second packaging subunit of the present application embodiment;
[0041] Figures 28 to 29 is a perspective view of one first packaging subunit and two second packaging subunits of the present application embodiment;
[0042] Figures 30 to 35 is a perspective view of two first packaging subunits and two second packaging subunits of the present application embodiment;
[0043] Figures 36 to 37 is a perspective view of four first packaging subunits and four second packaging subunits of the present application embodiment;
[0044] Figures 38 to 39 is a perspective view of a plurality of first packaging subunits and a plurality of second packaging subunits of the present application embodiment.
[0045] Main component figure mark explanation:
[0046] Packaging combination 100, packaging unit 10, solar panel 20, energy storage power supply 30, first packaging subunit 11, second packaging subunit 12, filling unit 13, first buffer 111, second buffer 121, shell 131. DETAILED DESCRIPTION
[0047] Embodiments of the present application are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals and characters in the drawings denote like or similar elements among which continuous lines
[0048] In the description of the present application, it is to be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like are based on the orientations or positional relationships shown in the drawings, and are merely for the purpose of facilitating the description of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly specified and limited.
[0049] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected. It can be mechanical connection, or electrical connection. It can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0050] In the present application, unless otherwise explicitly specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "over" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher in horizontal height than the second feature. The first feature "under", "below" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the first feature is lower in horizontal height than the second feature.
[0051] The disclosure herein provides many different embodiments or examples for implementing different structures of the present application. For the purpose of simplicity, the members and settings of certain examples are described in the present disclosure. Of course, they are merely examples and are not intended to limit the present application. Moreover, the present application can repeatedly refer to reference numerals and / or reference letters in different examples, and such repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or settings being discussed. Furthermore, the present application provides examples of various specific processes and materials, but one of ordinary skill in the art can realize the application of other processes and / or the use of other materials.
[0052] Referring to Figures 1 to 4 The packaging unit 10 provided by the embodiments of the present application is used for packaging at least one solar panel 20 and at least one energy storage power supply 30. The packaging unit 10 comprises at least one first packaging subunit 11, at least one second packaging subunit 12, and at least one filling unit 13. Each first packaging subunit 11 is used for packaging one solar panel 20, and each second packaging subunit 12 is used for packaging one energy storage power supply 30. The at least one first packaging subunit 11 and the at least one second packaging subunit 12 are arranged in alignment at least in part along a first direction, the first direction being the thickness direction of the solar panel 20, and the orthographic projection of the packaging unit 10 along the first direction forms a packaging unit contour. At least part of the filling unit 13 is arranged on at least one side of the first packaging subunit 11 so that the orthographic projection of the first packaging subunit 11 and the at least part of the filling unit 13 along the first direction matches the packaging unit contour; and / or at least part of the filling unit 13 is arranged on at least one side of the second packaging subunit 12 so that the orthographic projection of the second packaging subunit 12 and the at least part of the filling unit 13 along the first direction matches the packaging unit contour.
[0053] The packaging unit 10 described above can be used for packaging at least one solar panel 20 and at least one energy storage power supply 30, so that the products can be packaged and shipped, which is convenient for transportation and disassembly. In addition, by arranging the at least one first packaging subunit 11 and the at least one second packaging subunit 12 in alignment at least in part along the first direction and filling the filling unit 13 as necessary, the shape of the products can be taken into account, and the space utilization of the packaging unit 10 can be improved.
[0054] Specifically, in one embodiment, the number of the packaging units 10 can be determined by the size of the contour of the projection of the at least one first packaging subunit 11.
[0055] For example, in some examples, if the size of the contour of the projection of the at least one first packaging subunit 11 along the thickness direction of the solar panel 20 (i.e., the packaging unit contour) is equal to the area of a single first packaging subunit 11, it means that the number of the packaging units 10 is 1.
[0056] If the outline size of the at least one first packaging subunit 11 after being projected along the thickness direction of the solar panel 20 is twice the area of a single first packaging subunit 11, it means that the number of packaging units 10 is 2.
[0057] By analogy, if the outline size of the at least one first packaging subunit 11 after being projected along the thickness direction of the solar panel 20 is N times the area of a single first packaging subunit 11, it means that the number of packaging units 10 is N, which will not be described here.
[0058] For example, Figure 1 The outline size of the first packaging subunit 11 after being projected along the thickness direction of the solar panel 20 (i.e. the first direction) is equal to the area of a single first packaging subunit 11, i.e. Figure 1 The number of packaging units 10 is 1.
[0059] In an embodiment, the first packaging subunit 11 can be the packaging of the solar panel 20, and is matched with the shape of the part to be packaged of the solar panel 20 (such as the corner, side or outer surface, etc.), so as to reduce the collision loss caused by the handling process or the transportation process, thereby ensuring the safety and stability of the solar panel 20.
[0060] In an embodiment, the second packaging subunit 12 can be the packaging of the energy storage power supply 30, and is matched with the shape of the part to be packaged of the energy storage power supply 30 (such as the corner, side or outer surface, etc.), so as to reduce the collision loss caused by the handling process or the transportation process, thereby ensuring the safety and stability of the energy storage power supply 30.
[0061] In an embodiment, the solar panel 20 is fragile, such as a glass solar panel, and should be avoided from being squeezed or violently shaken during the transportation process, so as to reduce the hidden cracks or damage.
[0062] In another embodiment, the energy storage power supply 30 is heavy and contains chemicals, and needs to be placed stably and handled gently, and should be avoided from being thrown or hit during the transportation process, so as to improve the safety of the energy storage power supply 30.
[0063] Preferably, as shown in Figure 1 The solar panel 20 can be placed on the top of the packaging unit 10, so that the protection performance of the solar panel 20 is the best, and at the same time, the energy storage power supply 30 can be stably placed on the bottom of the packaging unit 10, and the safety is high.
[0064] The at least one first packaging subunit 11 and the at least one second packaging subunit 12 are arranged at least partially aligned along the first direction, and it can be understood that, as shown in Figure 1As shown, the first packaging subunit 11 and the second packaging subunit 12 are arranged in matching and alignment in the front-rear direction, while in the left-right direction, the size of the first packaging subunit 11 is larger than that of the second packaging subunit 12 and is protrudingly arranged, thus requiring a free area between the first packaging subunit 11 and the second packaging subunit 12 to place the filling unit 13, so as to make the packaging unit 10 stable as a whole and improve the space utilization.
[0065] In other embodiments, the first packaging subunit 11 and the second packaging subunit 12 can also be in matching size in the left-right direction and in non-matching size in the front-rear direction, and can also be in matching size in both the left-right direction and the front-rear direction (in which case the stability of the packaging unit 10 can be ensured without placing the filling unit 13), which is not specifically limited herein.
[0066] In one embodiment, as shown, Figure 1 at least part of the filling unit 13 is arranged at least on one side of the second packaging subunit 12 to make the orthographic projection of the second packaging subunit 12 and the at least part of the filling unit 13 along the first direction match the packaging unit contour, and it can be understood that, Figure 1 in the embodiment shown in FIG. 1, the filling unit 13 is arranged on the left side of the second packaging subunit 12, so that the size of the filling unit 13 and the second packaging subunit 12 in the left-right direction matches the size of the first packaging subunit 11 in the left-right direction, thereby ensuring that the orthographic projection area of the second packaging subunit 12 and the filling unit 13 along the first direction is equal to the packaging unit contour, and further facilitating packaging and delivery, and being stable.
[0067] That is, Figure 1 the orthographic projection of the first packaging subunit 11 along the first direction in the embodiment shown in FIG. 1 is the packaging unit contour, so that the packaging unit contour is equal to the orthographic projection area of the second packaging subunit 12 and the filling unit 13 along the first direction, thereby ensuring that the packaging unit 10 forms a cuboid with high space utilization, and is stable and safe.
[0068] In another embodiment, at least part of the filling unit 13 is arranged at least on one side of the first packaging subunit 11 to make the orthographic projection of the first packaging subunit 11 and the at least part of the filling unit 13 along the first direction match the packaging unit contour, and it can be understood that, in combination with Figure 29 , the filling unit 13 can be arranged in the second direction (e.g. the length direction) of the first packaging subunit 11 to match the size of at least two second packaging subunits 12 in the second direction, thereby facilitating packaging and delivery, and being stable.
[0069] That is, the filling unit 13 can be arranged in the length direction of the first packaging subunit 11, so that the orthographic projection of the filling unit 13 and the first packaging subunit 11 along the first direction matches the orthographic projection of the at least two second packaging subunits 12 along the first direction, thereby ensuring that the packaging unit 10 forms a cuboid with high space utilization, stability and safety.
[0070] It is worth noting that in one example, the packaging unit 10 can include an outer box, and the first packaging subunit 11, the second packaging subunit 12 and / or the filling unit 13 can be stably packaged in a containing space, i.e., in the outer box, thereby improving the stability of the packaging unit 10 and ensuring the safe transportation of the product.
[0071] In other embodiments, the packaging unit 10 can also be fixed in other ways to achieve safe transportation, which is not specifically limited here.
[0072] Please refer to Figures 5 to 12 In some embodiments, the first packaging subunit 11 includes a first buffer 111, which is sleeved on the outer side of the solar panel 20.
[0073] In this way, the shock resistance of the solar panel 20 is improved, thereby ensuring the safe transportation of the solar panel 20.
[0074] Specifically, in one embodiment, the first buffer 111 can be used to at least partially wrap the solar panel 20, so as to improve the buffering capacity of the first packaging subunit 11, thereby reducing the impact force, and further ensuring the safe transportation of the solar panel 20.
[0075] In one embodiment, as shown in Figure 5 and Figure 6 The first buffer 111 can be front and rear corners or left and right corners, for example, the first buffer 111 is in the form of a rectangular box without a cover, i.e., includes two hollow boxes without covers, which can be used to sleeve the opposite two sides (e.g., front and rear sides or left and right sides) of the solar panel 20, so as to ensure the stability and corner safety of the solar panel 20, thereby improving the shock resistance of the solar panel 20.
[0076] In one embodiment, as shown in Figure 7 The first buffer 111 can be upper and lower corners, for example, the first buffer 111 includes a top cover and a bottom cover, so that the top cover covers the top of the solar panel 20, and the bottom cover wraps the bottom of the solar panel 20, so as to form a sandwiched first packaging subunit 11 with good protection performance.
[0077] In one embodiment, as shown in Figure 8As shown, the first buffer 111 can be a full-enclosed corner guard, for example, a rectangular box, wherein the box cover is rectangular and can be detachably placed in the box body to ensure that the solar panel 20 is safely and stably placed inside the rectangular box.
[0078] In one embodiment, as shown in Figure 9 As shown, the first buffer 111 can be a soft and fluffy bubble bag, which can substantially wrap the outer surface of the solar panel 20, thereby improving the overall buffering capacity of the solar panel 20.
[0079] In one embodiment, as shown in Figure 10 and Figure 11 As shown, the first buffer 111 can be a square corner guard or a triangular corner guard, which can be sleeved on the sharp corner part of the solar panel 20 to reduce the collision loss of the solar panel 20.
[0080] In one embodiment, as shown in Figure 12 As shown, the first buffer 111 can be a paper box, which can accommodate the solar panel 20 to wrap the outer surface of the solar panel 20, thereby reducing the collision intensity and ensuring safety.
[0081] In some embodiments, the first buffer 111 includes at least one of foam, bubble bag, honeycomb paperboard or corrugated paperboard.
[0082] In this way, the buffering and protection effect of the first buffer 111 is ensured, and the protection cost of the solar panel 20 is reduced.
[0083] Specifically, in one embodiment, the first buffer 111 can be foam, which has the advantages of good sealing, good resilience, flame retardant, light weight and low cost as a foam material, and can improve the buffering effect of the first packaging subunit 11, thereby ensuring the safe transportation of the solar panel 20.
[0084] In one embodiment, the first buffer 111 can be a bubble bag, which can buffer and prevent shock through the small bubbles containing air inside the bubble bag, has the advantages of low cost, good heat preservation and heat insulation effect, and can improve the buffering effect of the first packaging subunit 11, thereby ensuring the safe transportation of the solar panel 20.
[0085] In one embodiment, the first buffer 111 can be a honeycomb paperboard, which can form a porous honeycomb structure for buffering and shock prevention, has the advantages of high elasticity, pressure resistance and shock absorption, and can improve the buffering effect of the first packaging subunit 11, thereby ensuring the safe transportation of the solar panel 20.
[0086] In one embodiment, the first buffer 111 can be corrugated paper, which can form an arch-shaped structure, and the arch-shaped doors formed in parallel can support each other for buffering and shock absorption, and have good buffering performance and impact resistance, so as to improve the buffering effect of the first packaging subunit 11, thereby ensuring the safe transportation of the solar panel 20.
[0087] In other embodiments, the first buffer 111 can be any two of the following materials: foam, bubble bag, honeycomb paperboard, and corrugated paperboard, or any three of the following materials: foam, bubble bag, honeycomb paperboard, and corrugated paperboard, or all of the following materials: foam, bubble bag, honeycomb paperboard, and corrugated paperboard, so as to ensure the buffering effect of the first buffer 111, which is not limited herein.
[0088] Please refer to Figures 13 to 17 In some embodiments, the second packaging subunit 12 comprises a second buffer 121, which is sleeved on the outside of the energy storage power supply 30.
[0089] In this way, the shock resistance of the energy storage power supply 30 is improved, thereby ensuring the safe transportation of the energy storage power supply 30.
[0090] Specifically, in one embodiment, the second buffer 121 can be used to at least partially wrap the energy storage power supply 30, so as to improve the buffering capacity of the second packaging subunit 12, thereby reducing the impact force, and further ensuring the safe transportation of the energy storage power supply 30.
[0091] In one embodiment, as shown in Figure 13 and Figure 14 , the second buffer 121 can be an upper and lower corner protector, a front and rear corner protector, or a left and right corner protector, for example, the second buffer 121 is in the form of a rectangular box without a cover, that is, it comprises two open boxes, which can be used to sleeve the opposite two sides (for example, the upper and lower sides, the front and rear sides, or the left and right sides) of the energy storage power supply 30, so as to ensure the stability and corner safety of the energy storage power supply 30, thereby improving the shock resistance of the energy storage power supply 30.
[0092] In one embodiment, as shown in Figure 15 , the second buffer 121 can be a soft and fluffy bubble bag, which can wrap the outer surface of the energy storage power supply 30 substantially entirely, thereby improving the overall buffering capacity of the energy storage power supply 30.
[0093] In one embodiment, as shown in Figure 16 , the second buffer 121 can be a triangular corner protector, which can sleeve two adjacent sharp corner portions of the energy storage power supply 30 at the same time, so as to reduce the impact loss of the energy storage power supply 30.
[0094] In one embodiment, as shown in Figure 17As shown, the second buffer 121 can be a carton, which can accommodate the energy storage power supply 30 to wrap the outer surface of the energy storage power supply 30, so as to reduce the impact force and improve safety.
[0095] In some embodiments, the second buffer 121 includes at least one of foam, bubble bag, honeycomb paperboard or corrugated paperboard.
[0096] In this way, the buffering protection of the second buffer 121 is ensured, and the protection cost of the energy storage power supply 30 is reduced.
[0097] Specifically, in one embodiment, the second buffer 121 can be foam, which has the advantages of good sealing, good resilience, flame retardant, light weight and low cost as a foam material, and can improve the buffering effect of the second packaging subunit 12, thereby ensuring the safe transportation of the energy storage power supply 30.
[0098] In one embodiment, the second buffer 121 can be a bubble bag, which can buffer and prevent shock through a plurality of small bubbles containing air inside the bubble bag, has the advantages of low cost, good heat preservation and heat insulation effect, and can improve the buffering effect of the second packaging subunit 12, thereby ensuring the safe transportation of the energy storage power supply 30.
[0099] In one embodiment, the second buffer 121 can be a honeycomb paperboard, which can form a porous honeycomb structure to buffer and prevent shock, has the advantages of high elasticity, pressure resistance and shock absorption, and can improve the buffering effect of the second packaging subunit 12, thereby ensuring the safe transportation of the energy storage power supply 30.
[0100] In one embodiment, the second buffer 121 can be a corrugated paperboard, which can form an arch-shaped structure and form arch-shaped doors side by side to support each other to buffer and prevent shock, has good buffering performance and impact resistance, and can improve the buffering effect of the second packaging subunit 12, thereby ensuring the safe transportation of the energy storage power supply 30.
[0101] In other embodiments, the second buffer 121 can be selected from any two of foam, bubble bag, honeycomb paperboard or corrugated paperboard, or any three of foam, bubble bag, honeycomb paperboard or corrugated paperboard, or all of foam, bubble bag, honeycomb paperboard and corrugated paperboard, to ensure the buffering effect of the second buffer 121, which is not limited here.
[0102] Please refer to Figures 18 to 20 In some embodiments, the filling unit 13 is used to package a container (not shown), and the container includes at least one of accessories, wires, instructions or gifts.
[0103] In this way, while ensuring the overall stability of the packaging unit 10, the accessories of the solar panel 20 and the energy storage power supply 30 are delivered simultaneously, which is safe and efficient.
[0104] Specifically, in one embodiment, the filling unit 13 can be a regular cuboid (such as...). Figure 18 It can be used to fill the packaging unit 10 to ensure the stability of the packaging unit 10.
[0105] In another embodiment, the filling unit 13 can be an irregular cuboid (such as...). Figure 19 and Figure 20 The filling unit 13 may be provided with grooves to improve its fixing effect, thereby improving the stability of the packaging unit 10.
[0106] It is understood that the filling unit 13 may contain a container (not shown), such as a solar panel 20 or a power storage device 30, to facilitate users' quick use of the product and improve their user experience.
[0107] In one embodiment, the container includes at least one of accessories, wiring, instruction manuals, or gifts to ensure that the product is equipped with corresponding adapters, so as to ensure that the accessories of the solar panel 20 and the energy storage power supply 30 are delivered simultaneously, resulting in high delivery efficiency and a better user experience.
[0108] In some embodiments, the filling unit 13 includes a housing 131, and the contents (not shown) are located within the housing 131.
[0109] This improves the stability of the contents, thereby ensuring their safe transportation.
[0110] Specifically, in one embodiment, the housing 131 may be a seal and may be made of a cushioning material to improve the stability and security of the contents (not shown), thereby ensuring the safe delivery of accessories or gifts, etc.
[0111] That is, the container is located inside the housing 131, so that the container comes into contact with the cushioning material on the inner periphery of the housing 131, thereby reducing the impact force and ensuring the safe transportation of the container.
[0112] In one embodiment, the housing 131 may be integrally formed from cardboard or other materials to ensure stable placement and safe transportation of the contained items, without any specific limitations.
[0113] In some embodiments, the housing 131 includes at least one of foam, bubble wrap, honeycomb paperboard, or corrugated paperboard.
[0114] This ensures the cushioning protection of the housing 131 while reducing the cost of protecting accessories, wiring, manuals, or freebies.
[0115] Specifically, in one embodiment, the shell 131 can be foam, which has the advantages of good sealing, good resilience, flame retardant, light weight and low cost as a foam material, and can improve the buffering effect of the filling unit 13, thereby ensuring the safe transportation of accessories, wires, instructions or gifts.
[0116] In one embodiment, the shell 131 can be a bubble bag, which can be buffered and shock-absorbed by the small bubbles containing air inside the bubble bag, has the advantages of low cost, good heat preservation and insulation effect, and can improve the buffering effect of the filling unit 13, thereby ensuring the safe transportation of accessories, wires, instructions or gifts.
[0117] In one embodiment, the shell 131 can be a honeycomb paperboard, which can form a porous honeycomb structure for buffering and shock-absorbing, has the advantages of high elasticity, pressure resistance and shock absorption, and can improve the buffering effect of the filling unit 13, thereby ensuring the safe transportation of accessories, wires, instructions or gifts.
[0118] In one embodiment, the shell 131 can be a corrugated paperboard, which can form an arch-shaped structure and form arch-shaped doors side by side to support each other for buffering and shock-absorbing, has good buffering performance and impact resistance, and can improve the buffering effect of the filling unit 13, thereby ensuring the safe transportation of accessories, wires, instructions or gifts.
[0119] In other embodiments, the shell 131 can be selected from any two of foam, bubble bag, honeycomb paperboard or corrugated paperboard, or any three of foam, bubble bag, honeycomb paperboard or corrugated paperboard, or all four of foam, bubble bag, honeycomb paperboard and corrugated paperboard, to ensure the buffering effect of the filling unit 13, which is not limited here.
[0120] In some embodiments, the packaging unit 10 includes at least one first packaging sub-unit 11 and one second packaging sub-unit 12, and the first packaging sub-unit 11 and the second packaging sub-unit 12 are arranged along the first direction.
[0121] Please refer to Figures 21 to 23 In some embodiments, the packaging unit 10 includes one first packaging sub-unit 11 and one second packaging sub-unit 12, and the first packaging sub-unit 11 and the second packaging sub-unit 12 are arranged along the first direction.
[0122] In this way, the solar panel 20 and the energy storage power supply 30 are reasonably placed to improve the transportation efficiency of the product, thereby meeting the user's demand for purchasing multiple products and improving the user experience.
[0123] Specifically, in one embodiment, please refer to Figure 1, preferably, the first packaging subunit 11 can be arranged at the top of the packaging unit 10, and the first packaging subunit 11 and the second packaging subunit 12 are arranged along the first direction so that the second packaging subunit 12 is arranged at the bottom of the packaging unit 10, thereby ensuring that the energy storage power supply 30 with a large weight is stably placed, and the solar panel 20 is not easily damaged by impact, and the safety is good.
[0124] In another embodiment, as shown in Figure 22 and Figure 23 , the first packaging subunit 11 can also be arranged at the side of the packaging unit 10, and the first packaging subunit 11 and the second packaging subunit 12 are arranged along the first direction so that the energy storage power supply 30 is stably placed, and the solar panel 20 is reduced by the weight of the extrusion, thereby improving the safety performance of the packaging unit 10.
[0125] That is, the packaging unit 10 integrates a first packaging subunit 11 and a second packaging subunit 12 to form a high space utilization cubic shape, so that the solar panel 20 and the energy storage power supply 30 are reasonably placed and packaged for transportation, thereby saving packaging materials, reducing costs, improving product transportation efficiency, and improving user experience.
[0126] Please refer to Figures 24 to 27 , in some embodiments, the packaging unit 10 includes two first packaging subunits 11 and a second packaging subunit 12, and the two first packaging subunits 11 and the second packaging subunit 12 are arranged along the first direction.
[0127] In this way, two solar panels 20 and an energy storage power supply 30 are reasonably placed to improve product transportation efficiency, thereby meeting the user's demand for multiple product purchases and improving user experience.
[0128] Specifically, in one embodiment, as shown in Figure 24 and Figure 25 , preferably, the two first packaging subunits 11 are arranged in alignment and stacked and arranged at the top of the packaging unit 10, and the two first packaging subunits 11 and the second packaging subunit 12 are arranged along the first direction so that the second packaging subunit 12 is arranged at the bottom of the packaging unit 10, thereby ensuring that the energy storage power supply 30 with a large weight is stably placed, and the two solar panels 20 are not easily damaged by impact, and the safety is good.
[0129] In another embodiment, as shown in Figure 26As shown, preferably, one second packaging subunit 12 is arranged between the two first packaging subunits 11, such that the two first packaging subunits 11 are respectively arranged at the top and bottom of the packaging unit 10, and the first packaging subunits 11 and the second packaging subunit 12 are arranged in the first direction, so that the packaging unit 10 is stably placed as a whole, thereby improving the safety performance of the packaging unit 10.
[0130] In yet another embodiment, as shown in FIG. 1C, the two first packaging subunits 11 are arranged in alignment and at the bottom of the packaging unit 10, and the two first packaging subunits 11 and the second packaging subunit 12 are arranged in the first direction, such that the second packaging subunit 12 is arranged at the top of the packaging unit 10, so that the packaging unit 10 is stably placed as a whole, thereby improving the safety performance of the packaging unit 10. Figure 27
[0131] That is, the packaging unit 10 integrates the two first packaging subunits 11 and the second packaging subunit 12, so as to form a cuboid with high space utilization, so that the solar panels 20 and the energy storage power supply 30 are reasonably placed and packaged for transportation, thereby saving packaging materials, reducing costs, improving product transportation efficiency, and improving user experience.
[0132] Please refer to Figures 22 to 27 In some embodiments, the packaging unit 10 includes a filling unit 13, the second packaging subunit 12 is dimensionally matched with the first packaging subunit 11 in the width direction of the first packaging subunit 11, and the second packaging subunit 12 is dimensionally matched with the filling unit 13 in the length direction of the first packaging subunit 11.
[0133] In this way, the stability of the placement of the solar panels 20 and the energy storage power supply 30 is ensured, thereby improving the space utilization.
[0134] Specifically, in one embodiment, the filling unit 13 is one and is used to fill the idle space between the first packaging subunit 11 and the second packaging subunit 12, so as to ensure that the packaging unit 10 is stacked to form a stable cuboid structure with high space utilization, thereby improving the stability of the placement of the solar panels 20 and the energy storage power supply 30, and further improving the transportation safety of the product.
[0135] It can be understood that, in one example, as shown in FIG. 1A, Figure 1 Figure 22 and Figure 23 As shown, the filling unit 13 is one and filled between one first packaging subunit 11 and one second packaging subunit 12, so that the size of the second packaging subunit 12 and the filling unit 13 in the length direction is equal to the size of the first packaging subunit 11 in the length direction, and because the size of the first packaging subunit 11 and the second packaging subunit 12 in the width direction of the first packaging subunit 11 is matched, it is ensured that the packaging unit 10 forms a high space utilization cubic shape, thereby ensuring the safe transportation of the solar panel 20 and the energy storage power supply 30.
[0136] In another example, as shown in Figure 26 the filling unit 13 is one and filled between two first packaging subunits 11 and one second packaging subunit 12, so that the size of the second packaging subunit 12 and the filling unit 13 in the length direction is equal to the size of the first packaging subunit 11 in the length direction, and because the size of the second packaging subunit 12 and the first packaging subunit 11 in the width direction of the first packaging subunit 11 is matched, it is ensured that the packaging unit 10 forms a high space utilization cubic shape, thereby ensuring the safe transportation of the solar panel 20 and the energy storage power supply 30.
[0137] In yet another example, as shown in Figure 25 and Figure 27 the filling unit 13 is one and filled between two first packaging subunits 11 and one second packaging subunit 12, so that the size of the second packaging subunit 12 and the filling unit 13 in the length direction is equal to the size of the first packaging subunit 11 in the length direction, and because the size of the second packaging subunit 12 and the first packaging subunit 11 in the width direction of the first packaging subunit 11 is matched, it is ensured that the packaging unit 10 forms a high space utilization cubic shape, thereby ensuring the safe transportation of the solar panel 20 and the energy storage power supply 30.
[0138] In some embodiments, the packaging unit 10 includes at least one first packaging subunit 11 and two second packaging subunits 12, and the two second packaging subunits 12 are arranged in partial alignment along the second direction, which is the length direction of the solar panel 20.
[0139] As shown in Figure 28 and Figure 29 In some embodiments, the packaging unit 10 includes at least one first packaging subunit 11 and two second packaging subunits 12, and the two second packaging subunits 12 are arranged in partial alignment along the second direction, which is the length direction of the solar panel 20.
[0140] In this way, one solar panel 20 and two energy storage power supplies 30 are reasonably placed to improve the transportation efficiency of the product, thereby ensuring the user's demand for multiple product purchases, and thereby improving the user experience.
[0141] Specifically, in one embodiment, as shown in Figure 28 and Figure 29 shown, two second packaging sub-units 12 are arranged in alignment and stacked along the second direction (e.g. the length direction of the solar panel 20) and disposed at the side of the packaging unit 10, so that the two second packaging sub-units 12 are partially aligned with the first packaging sub-unit 11 along the first direction, so that the packaging unit 10 is stably placed as a whole, thereby improving the safety performance of the packaging unit 10.
[0142] It can be understood that the two energy storage power supplies 30 with greater weight are stacked, so that the stability of the energy storage power supply 30 is better, and it is not easy to be damaged by falling. In addition, the solar panel 20 is placed on one side of the two energy storage power supplies 30 and is tightly attached to the two energy storage power supplies 30, which is not easy to be damaged by heavy pressure, so that the overall stability of the packaging unit 10 is better, and the safety is higher.
[0143] That is, the packaging unit 10 integrates a first packaging sub-unit 11 and two second packaging sub-units 12 to ensure that the packaging unit 10 forms a high space utilization rate cubic shape, so that the solar panel 20 and the energy storage power supply 30 are reasonably placed and packaged and shipped, thereby saving packaging materials, reducing costs, improving product transportation efficiency, and improving user experience.
[0144] Please refer to Figures 30 to 32 In some embodiments, the packaging unit 10 includes two first packaging sub-units 11 and two second packaging sub-units 12, and the two second packaging sub-units 12 are partially aligned along the second direction, which is the length direction of the solar panel 20.
[0145] In this way, the two solar panels 20 and the two energy storage power supplies 30 are reasonably placed to improve the transportation efficiency of the product, thereby meeting the user's demand for purchasing multiple products and improving the user experience.
[0146] Specifically, in one embodiment, as shown in Figures 30 to 32 two second packaging sub-units 12 are arranged in alignment and stacked along the second direction (e.g. the length direction of the solar panel 20) and disposed at the side of the packaging unit 10, while the two first packaging sub-units 11 are arranged in alignment and placed on one side to tightly attach to the two second packaging sub-units 12, so that the two second packaging sub-units 12 are partially aligned with the two first packaging sub-units 11 along the first direction, so that the packaging unit 10 is stably placed as a whole, thereby improving the safety performance of the packaging unit 10.
[0147] It can be understood that the two energy storage power supplies 30 with greater weight are stacked, so that the stability of the energy storage power supply 30 is better, and it is not easy to be damaged by falling. In addition, the two solar panels 20 are placed in alignment on one side of the two energy storage power supplies 30 and are tightly attached to the two energy storage power supplies 30, which is not easy to be damaged by heavy pressure, so that the overall stability of the packaging unit 10 is better, and the safety is higher.
[0148] That is, the packaging unit 10 integrates two first packaging sub-units 11 and two second packaging sub-units 12 to ensure that the packaging unit 10 forms a cuboid with high space utilization, so that the solar panels 20 and the energy storage power supply 30 are reasonably placed and packaged for shipping, thereby saving packaging materials, reducing costs, and improving product shipping efficiency and user experience.
[0149] Please refer to Figure 29 , Figure 31 and Figure 32 In some embodiments, the packaging unit 10 further includes two filler units 13, one of the second packaging sub-units 12 and one of the filler units 13 are dimensionally matched in the width direction of the first packaging sub-unit 11, and the first packaging sub-unit 11 and the other filler unit 13 are dimensionally matched in the length direction of the two second packaging sub-units 12.
[0150] In this way, the stability of the placement of the solar panels 20 and the energy storage power supply 30 is ensured, thereby improving the space utilization.
[0151] Specifically, in one embodiment, the filler unit 13 is two and is used to fill the idle position between the first packaging sub-unit 11 and the second packaging sub-unit 12, to ensure that the packaging unit 10 is stacked to form a stable cuboid structure with high space utilization, thereby improving the stability of the placement of the solar panels 20 and the energy storage power supply 30, and further improving the shipping safety of the product.
[0152] It can be understood that, in one example, as shown in Figure 29 , the filler unit 13 is two and one of the filler units 13 fills the length direction (second direction) of one first packaging sub-unit 11 and is arranged at least partially aligned with the second packaging sub-unit 12, so that the size of one of the filler units 13 and one first packaging sub-unit 11 in the length direction (second direction) is equal to the size of the two second packaging sub-units 12 in the length direction (second direction).
[0153] And because the size of the first packaging sub-unit 11 in the width direction is greater than the size of the second packaging sub-unit 12 in the width direction, the other filler unit 13 fills the width direction of the second packaging sub-unit 12 to compensate for the size of the second packaging sub-unit 12 in the width direction, so that the size of the other filler unit 13 and the second packaging sub-unit 12 in the width direction is equal to the size of the first packaging sub-unit 11 in the width direction.
[0154] In summary, the packaging unit 10 is provided with two filler units 13 to ensure that the packaging unit 10 forms a cuboid with high space utilization, thereby ensuring the shipping safety of the solar panels 20 and the energy storage power supply 30.
[0155] In another example, as shown in Figure 31 and Figure 32 , the packing unit 10 comprises two filling units 13, one of which fills in the length direction (second direction) of the two first packing sub-units 11 arranged in lateral alignment, and is at least partially arranged in alignment with the second packing sub-units 12, so that the size of one of the filling units 13 and the two first packing sub-units 11 arranged in lateral alignment in the length direction (second direction) is equal to the size of the two second packing sub-units 12 in the length direction (second direction).
[0156] In addition, because the size of the first packing sub-units 11 in the width direction is greater than the size of the second packing sub-units 12 in the width direction, the other filling unit 13 fills in the width direction of the second packing sub-units 12 to compensate for the size of the second packing sub-units 12 in the width direction, so that the size of the other filling unit 13 and the second packing sub-units 12 in the width direction is equal to the size of the first packing sub-units 11 in the width direction.
[0157] In summary, the packing unit 10 is arranged by setting two filling units 13 to ensure that the packing unit 10 forms a high space utilization rate cubic shape, thereby ensuring the safe transportation of the solar panels 20 and the energy storage power supplies 30.
[0158] Referring to Figures 33 to 35 , in some embodiments, the packing unit 10 comprises two first packing sub-units 11 and two second packing sub-units 12, and the two first packing sub-units 11 and the two second packing sub-units 12 are arranged along the first direction.
[0159] In this way, the two solar panels 20 and the two energy storage power supplies 30 are placed reasonably to improve the transportation efficiency of the products, thereby meeting the user's demand for multiple product purchases and improving the user experience.
[0160] Specifically, in one embodiment, as shown in Figure 33 and Figure 34 , preferably, the two first packing sub-units 11 are arranged in lateral alignment and are arranged at the top of the packing unit 10, and the two second packing sub-units 12 are arranged in lateral alignment and are arranged below the two first packing sub-units 11, and the two first packing sub-units 11 and the two second packing sub-units 12 are arranged along the first direction, so that the two second packing sub-units 12 are arranged at the bottom of the packing unit 10, thereby ensuring that the two energy storage power supplies 30, which have a relatively large weight, are stably placed, and at the same time, the two solar panels 20 are not easily damaged by impact, and the safety is good.
[0161] In another embodiment, as shown in Figure 35As shown, two first packaging sub-units 11 are placed side by side and aligned at the bottom of the packaging unit 10. At the same time, two second packaging sub-units 12 are placed side by side and aligned above the two first packaging sub-units 11. It is ensured that the two first packaging sub-units 11 and the two second packaging sub-units 12 are arranged in the first direction, so that the two second packaging sub-units 12 are arranged at the top of the packaging unit 10, enabling the packaging unit 10 to be stably placed as a whole, thereby improving the safety performance of the packaging unit 10.
[0162] That is to say, the packaging unit 10 integrates two first packaging sub-units 11 and two second packaging sub-units 12 to ensure that the packaging unit 10 forms a cube shape with high space utilization, enabling the solar panels 20 and the energy storage power supplies 30 to be reasonably placed and packed for transportation, thereby saving packaging materials, reducing costs, improving the product transportation efficiency, and further enhancing the user experience.
[0163] Please refer to Figure 36 and Figure 37 , in some embodiments, the packaging unit 10 includes four first packaging sub-units 11 and four second packaging sub-units 12. The four second packaging sub-units 12 are arranged in a "field" shape, and the four first packaging sub-units 11 are arranged in a stacked "day" shape. The four first packaging sub-units 11 and the four second packaging sub-units 12 are arranged in the first direction.
[0164] In this way, the four solar panels 20 and the four energy storage power supplies 30 can be reasonably placed to improve the product transportation efficiency, ensuring the user's demand for purchasing multiple products, and further enhancing the user experience.
[0165] Specifically, as shown in Figure 36 and Figure 37 , preferably, the four first packaging sub-units 11 are arranged in a stacked "day" shape at the top of the packaging unit 10. At the same time, the four second packaging sub-units 12 are arranged in a "field" shape below the four first packaging sub-units 11. It is ensured that the four first packaging sub-units 11 and the four second packaging sub-units 12 are arranged in the first direction, so that the four second packaging sub-units 12 are arranged at the bottom of the packaging unit 10, thereby ensuring the stable placement of the four relatively heavy energy storage power supplies 30 and ensuring that the four solar panels 20 are not easily damaged by impact, with good safety.
[0166] In another embodiment, the four first packaging sub-units can be arranged at the bottom of the packaging unit 10 (not shown in the figure). At the same time, the four second packaging sub-units 12 can be arranged at the top of the packaging unit 10. It is ensured that the four first packaging sub-units 11 and the four second packaging sub-units 12 are arranged in the first direction, enabling the packaging unit 10 to be stably placed as a whole, thereby improving the safety performance of the packaging unit 10.
[0167] That is, the packaging unit 10 integrates four first packaging sub-units 11 and four second packaging sub-units 12 to form a cuboid with high space utilization, so that the solar panels 20 and the energy storage power sources 30 are placed and packed reasonably for transportation, thereby saving packaging materials, reducing costs, improving product transportation efficiency, and improving user experience.
[0168] In some embodiments, the packaging unit 10 further comprises a filling unit 13, the second packaging sub-units 12 are dimensionally matched with the first packaging sub-units 11 in the width direction of the first packaging sub-units 11, and the first packaging sub-units 11 are dimensionally matched with the filling unit 13 in the length direction of the two second packaging sub-units 12.
[0169] In this way, the stability of the placement of the solar panels 20 and the energy storage power sources 30 is ensured, thereby improving the space utilization.
[0170] Specifically, in one embodiment, the filling unit 13 is one and is used to fill the idle space between the first packaging sub-units 11 and the second packaging sub-units 12, so that the packaging unit 10 is stacked to form a stable cuboid structure with high space utilization, thereby improving the stability of the placement of the solar panels 20 and the energy storage power sources 30 and improving the transportation safety of the products.
[0171] It can be understood that, in one example, as shown in Figure 34 and Figure 35 , the filling unit 13 is one and is filled between two first packaging sub-units 11 and two second packaging sub-units 12, so that the size of the second packaging sub-units 12 in the length direction (the second direction) is equal to the size of the first packaging sub-units 11 in the length direction, and because the first packaging sub-units 11 are dimensionally matched with the second packaging sub-units 12 in the width direction of the first packaging sub-units 11, the packaging unit 10 forms a cuboid with high space utilization, thereby ensuring the transportation safety of the solar panels 20 and the energy storage power sources 30.
[0172] In another example, as shown in Figure 37 , the filling unit 13 is one and is filled between four first packaging sub-units 11 and two second packaging sub-units 12, so that the size of the first packaging sub-units 11 in the length direction (the second direction) is equal to the total size of the two second packaging sub-units 12 in the length direction, and because the second packaging sub-units 12 are dimensionally matched with the first packaging sub-units 11 in the width direction of the first packaging sub-units 11, the packaging unit 10 forms a cuboid with high space utilization, thereby ensuring the transportation safety of the solar panels 20 and the energy storage power sources 30.
[0173] Please refer to Figure 38 andFigure 39 In addition, an embodiment of the present invention further provides a packaging combination 100. The packaging combination 100 includes at least two packaging units 10 of any one of the above embodiments.
[0174] The above packaging combination 100 can package at least one solar panel 20 and at least one energy storage power supply 30. In this way, it can be packaged and shipped, which is convenient for transportation and disassembly. In addition, by arranging at least one first packaging sub-unit 11 and at least one second packaging sub-unit 12 at least partially aligned in the first direction and filling the filling unit 13 when necessary, the form of the product can be taken into account and the space utilization rate of the packaging unit 10 can be improved.
[0175] It should be noted that the above explanations of the embodiments and beneficial effects of the packaging unit 10 also apply to the packaging combination 100 of the embodiments of the present invention. To avoid redundancy, they will not be elaborated here.
[0176] Specifically, in one embodiment, as Figure 39 shown, the first packaging sub-units 11 are arranged in a "field" shape and stacked in two layers, with a total of 8 first packaging sub-units 11. It can be known from the fact that the number of packaging units 10 can be determined by the outline size of the projection of at least one first packaging sub-unit 11 that the number of packaging units 10 determined by the projection of 8 first packaging sub-units 11 is 4. Thus, by assembling and stacking with multiple second packaging sub-units 12, a stable cubic structure can be formed, thereby ensuring the transportation safety of at least one solar panel 20 and at least one energy storage power supply 30.
[0177] It is worth noting that when at least one solar panel 20 and at least one energy storage power supply 30 just assemble to form a stable cubic structure, as Figure 39 shown, the packaging combination 100 can dispense with filling the filling unit 13, and can take into account the form of the product and the space utilization rate, with good stability.
[0178] When there is remaining space in the assembly of at least one solar panel 20 and at least one energy storage power supply 30 (that is, the packaging unit 10 is unstable), the packaging combination 100 needs to fill the filling unit 13, so as to take into account the form of the product and the space utilization rate, with good practicability.
[0179] That is to say, the packaging combination 100 can fill the filling unit 13 when necessary to take into account the form of the product while improving the space utilization rate.
[0180] In the description of the specification, reference to "one embodiment", "some embodiments", "certain embodiments", "an example", "a specific example", or "some examples" means that a particular feature, structure, material, or characteristic being described is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "in some embodiments", "in certain embodiments", "in an example", "in a specific example", or "in some examples" in various places in the specification are not necessarily referring to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.
[0181] Although embodiments of the present application have been shown and described, it would be appreciated by those skilled in the art that changes, modifications, alternatives and variations to these embodiments could be made without departing from the principles and spirit of the application, the scope of which is defined in the claims and their equivalents.
Claims
1. A packaging unit for packing at least one solar panel and at least one energy storage power source, characterized in that, The packaging unit includes: At least one first packaging subunit, each of the first packaging subunits being configured to package one of the solar panels; At least one second packaging subunit, each of the second packaging subunits being configured to package one of the energy storage power supplies. The at least one first packaging subunit and the at least one second packaging subunit are at least partially aligned and arranged along a first direction, which is the thickness direction of the solar panel. The orthographic projection of the packaging unit along the first direction forms a packaging unit contour; At least one filling unit, the filling unit being configured to fill the vacant positions between the first packaging unit and the second packaging unit to ensure that the packaging units are stacked to form a stable cubic structure. At least part of the filling unit is arranged on at least one side of the first packaging subunit so that the orthographic projection of the first packaging subunit and at least part of the filling unit along the first direction matches the packaging unit contour, ensuring that the orthographic projection area of the first packaging subunit and the filling unit along the first direction is equal to the packaging unit contour; and / or At least part of the filling unit is arranged on at least one side of the second packaging subunit so that the orthographic projection of the second packaging subunit and at least part of the filling unit along the first direction matches the packaging unit contour, ensuring that the orthographic projection area of the second packaging subunit and the filling unit along the first direction is equal to the packaging unit contour.
2. The packaging unit according to claim 1, characterized in that, The filling unit is configured to package the contained items, and the contained items include at least one of accessories, wiring, instructions or gifts.
3. The packaging unit of claim 2, wherein, The filling unit includes a housing, and the contained items are located inside the housing.
4. The packaging unit according to claim 3, characterized in that, The housing includes at least one of foam, bubble bag, honeycomb cardboard or corrugated cardboard.
5. The packaging unit of claim 1, wherein, The packaging unit includes at least one of the first packaging subunits and one of the second packaging subunits, and the first packaging subunit and the second packaging subunit are arranged along the first direction.
6. The packaging unit of claim 5, wherein, The packaging unit includes one filling unit. The second packaging subunit matches the first packaging subunit in size in the width direction of the first packaging subunit, and the second packaging subunit matches the filling unit in size in the length direction of the first packaging subunit.
7. The packaging unit of claim 1, wherein, The packaging unit includes at least one of the first packaging subunits and two of the second packaging subunits, and the two second packaging subunits are partially aligned and arranged along a second direction, which is the length direction of the solar panel.
8. The packaging unit of claim 7, wherein, The packaging unit further includes two filling units. The second packaging subunit matches one of the filling units in size in the width direction of the first packaging subunit, and the first packaging subunit matches the other filling unit in size in the length direction of the two second packaging subunits.
9. The packaging unit of claim 1, wherein, The packaging unit includes four of the first packaging subunits and four of the second packaging subunits. The four second packaging subunits are arranged in a "field" shape, and the four first packaging subunits are stacked and arranged in a "day" shape. The four first packaging subunits and the four second packaging subunits are arranged along the first direction.
10. The packaging unit of claim 9, wherein, The packaging unit further comprises a filling unit, the second packaging sub-units being dimensionally matched to the first packaging sub-units in the width direction of the first packaging sub-units, the first packaging sub-units being dimensionally matched to the filling unit in the length direction of the second packaging sub-units.
11. A packaging combination, characterized in that The packaging assembly comprises at least two packaging units according to any one of claims 1-10.
Citation Information
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