Shoe box
By designing a shoe box with switchable left and right boxes, the problem of friction during shoe transportation was solved, achieving a multi-functional protective and display effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN YUTO PACKAGING TECH
- Filing Date
- 2025-06-12
- Publication Date
- 2026-07-31
AI Technical Summary
During transportation, existing shoe boxes can cause friction between the two shoes, affecting their appearance and quality.
Design a shoe box including a left box, a right box, and a connector. The left and right boxes can switch between stacked and side-by-side states, each holding one shoe, and are connected by the connector to prevent the shoes from touching each other.
It effectively prevents shoes from rubbing against each other during transportation, enhances the protective effect of the shoe box, and is suitable for various functional scenarios, including transportation and sales display.
Smart Images

Figure CN224576997U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of packaging technology, and in particular to a shoe box. Background Technology
[0002] A shoe box is a container used to package shoes. It protects the shoes inside. Currently, most shoe boxes include a base for holding two shoes at a time. During transportation, the two shoes inside the box may rub against each other, negatively impacting their appearance and quality. Utility Model Content
[0003] This application provides a shoe box that helps improve the protective effect of the shoe box on shoes.
[0004] This application provides a shoe box, which includes a left box body, a right box body, and a connector.
[0005] The left box includes a first cover plate, a first bottom plate, and a first side plate, both of which are connected to the first side plate. The right box includes a second cover plate, a second bottom plate, and a second side plate, both of which are connected to the second side plate. The connecting piece includes a first plate, a second plate, and a third plate; the first plate is connected to the first side plate, and the third plate is connected to the second side plate. One of the left and right boxes can be flipped relative to the other, allowing the left and right boxes to switch between a stacked state and a side-by-side arrangement. When the left and right boxes are stacked, the first and second cover plates are stacked, and the connecting piece is unfolded and located on the same side of the left and right boxes. When the left and right boxes are arranged side-by-side, both the first and second cover plates face upwards, and the connecting piece is folded and located between the left and right boxes.
[0006] The shoe box of this embodiment includes a left box body, a right box body, and a connector. The connector connects the left and right box bodies. The left and right box bodies can switch between different states, enabling the shoe box to fulfill multiple functions such as transportation and sales display, thus enhancing its functionality and applicability to various scenarios. Each of the left and right box bodies can independently store one shoe, isolating the two shoes in different compartments. This prevents contact and friction between the shoes, reducing the possibility of friction affecting their appearance and improving the shoe box's protective effect.
[0007] In some feasible implementations, the first cover plate is an inclined plate, and the second cover plate is an inclined plate.
[0008] In some possible implementations, the first side plate includes a first sub-plate, a second sub-plate, a third sub-plate, and a fourth sub-plate connected in sequence, a first cover plate is connected to the second sub-plate, a first plate body is connected to the first sub-plate, and the first sub-plate, the second sub-plate, the third sub-plate, and the fourth sub-plate are all connected to the first bottom plate.
[0009] In some feasible implementations, both the first and third sub-boards are trapezoidal, with the large ends of the first and third sub-boards connected to the second sub-board, and the small ends of the first and third sub-boards connected to the fourth sub-board.
[0010] In some feasible implementations, the second side plate includes a fifth sub-plate, a sixth sub-plate, a seventh sub-plate, and an eighth sub-plate connected in sequence, a second cover plate connected to the sixth sub-plate, a third plate body connected to the fifth sub-plate, and the fifth, sixth, seventh, and eighth sub-plates all connected to the second bottom plate.
[0011] In some feasible implementations, the fifth and seventh sub-boards are both trapezoidal, with the large ends of the fifth and seventh sub-boards connected to the sixth sub-board, and the small ends of the fifth and seventh sub-boards connected to the eighth sub-board. The small end of the first sub-board is on the same side as the large end of the fifth sub-board, and the large end of the first sub-board is on the same side as the small end of the fifth sub-board.
[0012] In some feasible configurations, shoelace holes are provided on the first sub-plate, the third sub-plate, the fifth sub-plate, the seventh sub-plate, and the second plate. The shoelace holes on the first sub-plate are aligned with the shoelace holes on the second plate, and the shoelace holes on the fifth sub-plate are aligned with the shoelace holes on the second plate.
[0013] In some possible implementations, the first side plate also includes a ninth sub-plate and a tenth sub-plate, the third sub-plate and the ninth sub-plate are connected and stacked on top of each other, the ninth sub-plate is located on the inside, the first sub-plate and the tenth sub-plate are connected and stacked on top of each other, and the tenth sub-plate is located on the inside.
[0014] The fourth sub-board includes a first main board and a first wing board stacked on top of each other. The first sub-board connects the first main board and the second sub-board, and the first wing board is located on the inner side.
[0015] The first base plate includes a first sub-base plate, a second sub-base plate, a third sub-base plate, a fourth sub-base plate, and a fifth sub-base plate. The first sub-base plate is connected to the first sub-base plate, the second sub-base plate is connected to the third sub-base plate, the third sub-base plate is connected to the second sub-base plate, the fourth sub-base plate is connected to the first main plate, and the fifth sub-base plate is connected to the tenth sub-base plate. The second, third, and fourth sub-base plates are spliced together to form a first intermediate plate layer. The first intermediate plate layer is located between the first sub-base plate and the fifth sub-base plate, and the first sub-base plate is located below the first intermediate plate layer.
[0016] In some feasible embodiments, the second side plate also includes an eleventh sub-plate and a twelfth sub-plate, the seventh sub-plate and the eleventh sub-plate are connected and stacked on top of each other, the eleventh sub-plate is located on the inside, the fifth sub-plate and the twelfth sub-plate are connected and stacked on top of each other, the twelfth sub-plate is located on the inside;
[0017] The eighth sub-board includes a second main board and a second wing board stacked on top of each other, the fifth sub-board connects the second main board and the sixth sub-board, and the second wing board is located on the inner side;
[0018] The second base plate includes a sixth sub-base plate, a seventh sub-base plate, an eighth sub-base plate, a ninth sub-base plate, and a tenth sub-base plate. The sixth sub-base plate is connected to the fifth sub-base plate, the seventh sub-base plate is connected to the seventh sub-base plate, the eighth sub-base plate is connected to the sixth sub-base plate, the ninth sub-base plate is connected to the second main plate, and the tenth sub-base plate is connected to the twelfth sub-base plate. The seventh, eighth, and ninth sub-base plates are spliced together to form the second intermediate plate layer. The second intermediate plate layer is located between the sixth and tenth sub-base plates, and the sixth sub-base plate is located below the second intermediate plate layer.
[0019] In some feasible embodiments, the shoe box also includes a first tongue and a second tongue, with the first tongue disposed at the end of the first cover away from the second sub-plate, and the second tongue disposed on opposite sides of the first cover.
[0020] The shoe box also includes a third tongue and a fourth tongue. The third tongue is provided at the end of the second cover away from the sixth sub-plate, and the fourth tongue is provided on the opposite sides of the second cover. Attached Figure Description
[0021] The features, advantages, and technical effects of exemplary embodiments of this application will now be described with reference to the accompanying drawings.
[0022] Figure 1 This is a schematic diagram of the structure of a shoe box in an embodiment of this application, in which the left and right boxes are stacked on top of each other;
[0023] Figure 2 This is a schematic diagram of the structure of a shoe box in an embodiment of this application, in which the left and right boxes are stacked on top of each other;
[0024] Figure 3 This is a schematic diagram of the connector in the unfolded state according to an embodiment of this application;
[0025] Figure 4 This is a schematic diagram of the left and right box bodies arranged side by side in a shoe box according to an embodiment of this application;
[0026] Figure 5 This is an exploded structural diagram of a shoe box according to an embodiment of this application, showing the left and right box bodies arranged side by side.
[0027] Figure 6 This is a schematic diagram of the left box body in the open state according to an embodiment of this application;
[0028] Figure 7 This is a schematic diagram of the right box body in the open state according to an embodiment of this application;
[0029] Figure 8This is a schematic diagram of the molding process of the left box body according to an embodiment of this application;
[0030] Figure 9 This is a schematic diagram of the structure of the left box body after molding according to an embodiment of this application;
[0031] Figure 10 This is a schematic diagram of the structure of a flat cardboard for forming the left box body according to an embodiment of this application;
[0032] Figure 11 This is a schematic diagram of the structure of the first intermediate plate layer according to an embodiment of this application;
[0033] Figure 12 This is a schematic diagram of the molding process of the left box body according to an embodiment of this application;
[0034] Figure 13 This is a schematic diagram of the molding process of the right box body according to an embodiment of this application;
[0035] Figure 14 This is a schematic diagram of the right box body after molding according to an embodiment of this application;
[0036] Figure 15 This is a schematic diagram of the structure of a flat cardboard for forming the right box body according to an embodiment of this application;
[0037] Figure 16 This is a schematic diagram of the structure of the second intermediate plate layer according to an embodiment of this application;
[0038] Figure 17 This is a schematic diagram of the molding process of the right box body according to an embodiment of this application.
[0039] In the accompanying drawings, the same parts use the same reference numerals. The drawings are not drawn to scale.
[0040] Explanation of reference numerals in the attached figures:
[0041] 10. Shoe box;
[0042] 20. Left box body;
[0043] 30. Right side of the box;
[0044] 40. Connector; 41. First plate; 42. Second plate; 43. Third plate;
[0045] 50. First cover plate;
[0046] 60. First base plate; 61. First sub-base plate; 62. Second sub-base plate; 63. Third sub-base plate; 64. Fourth sub-base plate; 65. Fifth sub-base plate;
[0047] 70. First side plate; 71. First sub-plate; 72. Second sub-plate; 73. Third sub-plate; 74. Fourth sub-plate; 741. First main plate; 742. First wing plate; 75. Ninth sub-plate; 76. Tenth sub-plate;
[0048] 80. Second cover plate;
[0049] 90. Second base plate; 91. Sixth sub-base plate; 92. Seventh sub-base plate; 93. Eighth sub-base plate; 94. Ninth sub-base plate; 95. Tenth sub-base plate;
[0050] 100. Second side panel; 101. Fifth sub-panel; 102. Sixth sub-panel; 103. Seventh sub-panel; 104. Eighth sub-panel; 1041. Second main panel; 1042. Second wing panel; 105. Eleventh sub-panel; 106. Twelfth sub-panel;
[0051] 110. First tongue plate;
[0052] 120. Second tongue plate;
[0053] 130. Third tongue plate;
[0054] 140. Fourth tongue plate;
[0055] 200. Shoelace eyelets;
[0056] 300. First intermediate layer;
[0057] 400. Second intermediate layer;
[0058] 500, Handhold position. Detailed Implementation
[0059] The embodiments of this application will be described in further detail below with reference to the accompanying drawings and examples. The detailed description of the following embodiments and the accompanying drawings are used to illustrate the principles of this application by way of example, but should not be used to limit the scope of this application, that is, this application is not limited to the described embodiments.
[0060] In the description of this application, it should be noted that, unless otherwise stated, "multiple" means two or more; the terms "upper," "lower," "left," "right," "inner," and "outer," etc., indicating orientation or positional relationships, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. Furthermore, the terms "first," "second," and "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. "Vertical" is not vertical in the strict sense, but within the allowable tolerance range. "Parallel" is not parallel in the strict sense, but within the allowable tolerance range.
[0061] In this application, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this application can be combined with other embodiments.
[0062] The directional terms used in the following description refer to the directions shown in the figures and are not intended to limit the specific structure of this application. It should also be noted in the description of this application that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0063] To better understand this application, the following will be combined with... Figures 1 to 17 Describe it.
[0064] See Figures 1 to 5 As shown in the figure, this application embodiment provides a shoe box 10, which includes a left box body 20, a right box body 30, and a connector 40.
[0065] The left box body 20 includes a first cover plate 50, a first bottom plate 60, and a first side plate 70. Both the first cover plate 50 and the first bottom plate 60 are connected to the first side plate 70. The right box body 30 includes a second cover plate 80, a second bottom plate 90, and a second side plate 100. Both the second cover plate 80 and the second bottom plate 90 are connected to the second side plate 100. The connecting member 40 includes a first plate 41, a second plate 42, and a third plate 43. The first plate 41 is connected to the first side plate 70, and the third plate 43 is connected to the second side plate 100.
[0066] In this configuration, one of the left box 20 and the right box 30 is flipped relative to the other, so that the left box 20 and the right box 30 can switch between a stacked state and a side-by-side arrangement state.
[0067] When the left box 20 and the right box 30 are stacked on top of each other, the first cover plate 50 and the second cover plate 80 are stacked, and the connector 40 is unfolded and located on the same side of the left box 20 and the right box 30.
[0068] When the left box 20 and the right box 30 are arranged side by side, the first cover plate 50 and the second cover plate 80 are both facing upwards, the first cover plate 50 and the second cover plate 80 are located on the same side of the shoe box 10, and the connector 40 is folded and located between the left box 20 and the right box 30.
[0069] In this embodiment of the shoe box 10, the left box body 20 and the right box body 30 are each independently provided. The left box body 20 can be used to place the shoe corresponding to the left foot. The first cover plate 50, the first bottom plate 60, and the first side plate 70 can be enclosed to form a storage space for accommodating one shoe. The right box body 30 can be used to place the shoe corresponding to the right foot. The second cover plate 80, the second bottom plate 90, and the second side plate 100 can be enclosed to form a storage space for accommodating one shoe.
[0070] Connector 40 connects the left box 20 and the right box 30. Connector 40 acts like a hinge. When the user flips either the left box 20 or the right box 30, connector 40 can unfold or fold. The second plate 42 of connector 40 is not connected or fixed to either the left box 20 or the right box 30. The second plate 42 of connector 40 is in a free state. The second plate 42 has creases. The second plate 42 can unfold or fold along the creases.
[0071] When the shoe box 10 is in transit, the left box 20 and the right box 30 are stacked on top of each other, the first cover 50 and the second cover 80 are facing each other, and the positions of the first cover 50 and the second cover 80 are inside the shoe box 10 as a whole, making it difficult for the first cover 50 and the second cover 80 to be opened, reducing the possibility of the shoes falling out due to the accidental opening of the first cover 50 and the second cover 80.
[0072] When the shoe box 10 is in the sales state, the left box body 20 and the right box body 30 are arranged side by side, with the first cover plate 50 and the second cover plate 80 located on the same side of the shoe box 10 and exposed. The first cover plate 50 and the second cover plate 80 can both face upwards, while the first bottom plate 60 and the second bottom plate 90 face downwards, making it convenient for consumers to open the first cover plate 50 and the second cover plate 80 to take out the shoes inside for trying them on.
[0073] In some feasible ways, the left box 20, the right box 30, and the connector 40 are all made of paper material, which makes the shoe box 10 environmentally friendly.
[0074] The shoe box 10 of this embodiment includes a left box body 20, a right box body 30, and a connector 40. The connector 40 connects the left box body 20 and the right box body 30. The left box body 20 and the right box body 30 can switch between different states, enabling the shoe box 10 to meet multiple functions such as transportation and sales display, thereby enhancing the functionality and applicability of the shoe box 10 in various scenarios. The left box body 20 and the right box body 30 can each hold one shoe independently, keeping the two shoes isolated in different storage spaces. This prevents the two shoes from contacting or rubbing against each other, reducing the possibility of affecting the appearance quality due to friction between the two shoes, and improving the protective effect of the shoe box 10 on the shoes.
[0075] See also some of the possible implementation methods. Figure 5 As shown, the first cover plate 50 is an inclined plate. The second cover plate 80 is an inclined plate.
[0076] Shoes typically have different heights in different areas; for example, the toe area is relatively shorter, while the upper area is relatively taller. The design of both the first cover plate 50 and the second cover plate 80 with angled edges allows the internal space of the left and right boxes 20 to better fit the shape of the shoe, reducing the difficulty of placing the shoe into the left and right boxes 20 and 30.
[0077] See Figure 1 As shown, when the left box 20 and the right box 30 are stacked on top of each other, the first cover plate 50 and the second cover plate 80 are stacked on top of each other, and the first cover plate 50 and the second cover plate 80 are tilted in the same direction.
[0078] See Figure 4 As shown, when the left box 20 and the right box 30 are arranged side by side, the first cover plate 50 and the second cover plate 80 are both facing upwards, and the tilting directions of the first cover plate 50 and the second cover plate 80 are opposite.
[0079] See also some of the possible implementation methods. Figure 6 As shown, the first side plate 70 includes a first sub-plate 71, a second sub-plate 72, a third sub-plate 73, and a fourth sub-plate 74 connected in sequence. The first cover plate 50 is connected to the second sub-plate 72. The first plate body 41 is connected to the first sub-plate 71. The first sub-plate 71, the second sub-plate 72, the third sub-plate 73, and the fourth sub-plate 74 are all connected to the first bottom plate 60.
[0080] The first sub-plate 71, the second sub-plate 72, the third sub-plate 73, and the fourth sub-plate 74 are arranged in pairs. The first side plate 70 has an overall ring structure. The method of forming the first side plate 70 by connecting the first sub-plate 71, the second sub-plate 72, the third sub-plate 73, and the fourth sub-plate 74 helps to reduce the molding difficulty of the first side plate 70.
[0081] In some examples, the first sub-plate 71, the second sub-plate 72, the third sub-plate 73, and the fourth sub-plate 74 are perpendicular to each other. The first cover plate 50 and the first base plate 60 are both rectangular in shape.
[0082] In some examples, the third sub-board 73 and the fourth sub-board 74 are bonded together. The fourth sub-board 74 and the first sub-board 71 are integrally formed. The first sub-board 71 and the second sub-board 72 are integrally formed. The second sub-board 72 and the third sub-board 73 are integrally formed.
[0083] In some examples, the first plate 41 is bonded and fixed to the first sub-plate 71.
[0084] See in some examples Figure 6As shown, both the first sub-plate 71 and the third sub-plate 73 are trapezoidal. The large ends of the first sub-plate 71 and the third sub-plate 73 are located on the same side. The large ends of the first sub-plate 71 and the third sub-plate 73 are respectively connected to the second sub-plate 72. The small ends of the first sub-plate 71 and the third sub-plate 73 are located on the same side. The small ends of the first sub-plate 71 and the third sub-plate 73 are respectively connected to the fourth sub-plate 74.
[0085] The larger ends of the first sub-plate 71 and the third sub-plate 73 refer to the larger edges, while the smaller ends of the first sub-plate 71 and the third sub-plate 73 refer to the smaller edges.
[0086] Shoes typically have different heights at different locations; for example, the toe area is relatively shorter, while the upper area is relatively taller. Both the first sub-plate 71 and the third sub-plate 73 are trapezoidal, and the first cover plate 50 is angled, allowing the internal space of the left box 20 to better fit the shape of the shoe and reducing the difficulty of placing the shoe into the left box 20.
[0087] For example, the first sub-board 71 and the third sub-board 73 are identical in shape and size.
[0088] For example, both the second sub-board 72 and the fourth sub-board 74 are rectangular.
[0089] See in some examples Figure 7 As shown, the second side plate 100 includes a fifth sub-plate 101, a sixth sub-plate 102, a seventh sub-plate 103, and an eighth sub-plate 104 connected in sequence. The second cover plate 80 is connected to the sixth sub-plate 102. The third plate body 43 is connected to the fifth sub-plate 101. The fifth sub-plate 101, the sixth sub-plate 102, the seventh sub-plate 103, and the eighth sub-plate 104 are all connected to the second bottom plate 90.
[0090] When the left box 20 and the right box 30 are stacked on top of each other, the first sub-board 71 and the fifth sub-board 101 are located on the same side, and the third sub-board 73 and the seventh sub-board 103 are located on the same side.
[0091] The fifth sub-plate 101, the sixth sub-plate 102, the seventh sub-plate 103, and the eighth sub-plate 104 are arranged in pairs. The second side plate 100 has an overall ring structure. The method of forming the second side plate 100 by connecting the fifth sub-plate 101, the sixth sub-plate 102, the seventh sub-plate 103, and the eighth sub-plate 104 helps to reduce the molding difficulty of the second side plate 100.
[0092] In some examples, the fifth sub-plate 101, the sixth sub-plate 102, the seventh sub-plate 103, and the eighth sub-plate 104 are perpendicular to each other. The second cover plate 80 and the second base plate 90 are both rectangular in shape.
[0093] In some examples, the seventh sub-board 103 and the eighth sub-board 104 are bonded together. The eighth sub-board 104 and the fifth sub-board 101 are integrally formed. The fifth sub-board 101 and the sixth sub-board 102 are integrally formed. The sixth sub-board 102 and the seventh sub-board 103 are integrally formed.
[0094] In some examples, the third plate 43 is bonded and fixed to the fifth sub-plate 101.
[0095] See in some examples Figure 7 As shown, both the fifth sub-plate 101 and the seventh sub-plate 103 are trapezoidal. The large ends of the fifth sub-plate 101 and the seventh sub-plate 103 are located on the same side. The large ends of the fifth sub-plate 101 and the seventh sub-plate 103 are connected to the sixth sub-plate 102. The small ends of the fifth sub-plate 101 and the seventh sub-plate 103 are located on the same side. The small ends of the fifth sub-plate 101 and the seventh sub-plate 103 are connected to the eighth sub-plate 104. The small end of the first sub-plate 71 is located on the same side as the large end of the fifth sub-plate 101. The large end of the first sub-plate 71 is located on the same side as the small end of the fifth sub-plate 101.
[0096] The large end of the fifth sub-board 101 and the large end of the seventh sub-board 103 refer to the larger edges, while the small end of the fifth sub-board 101 and the small end of the seventh sub-board 103 refer to the smaller edges.
[0097] Shoes typically have different heights at different locations; for example, the toe area is relatively shorter, while the upper area is relatively taller. The fifth sub-plate 101 and the seventh sub-plate 103 are both trapezoidal, and the second cover plate 80 is angled, allowing the internal space of the right box 30 to better fit the shape of the shoe and reducing the difficulty of placing the shoe into the right box 30.
[0098] For example, the fifth sub-board 101 and the seventh sub-board 103 are identical in shape and size.
[0099] For example, when the left box 20 and the right box 30 are stacked on top of each other, the shoe box 10 formed by the left box 20 and the right box 30 can be in the shape of a cuboid, which is beneficial to improving the convenience of stacking and transporting the shoe box 10 as a whole.
[0100] For example, both the sixth sub-board 102 and the eighth sub-board 104 are rectangular.
[0101] See in some examples Figure 2 , Figure 3 , Figure 6 and Figure 7As shown, shoelace holes 200 are provided on the first sub-plate 71, the third sub-plate 73, the fifth sub-plate 101, the seventh sub-plate 103, and the second plate 42. The shoelace holes 200 on the first sub-plate 71 are aligned with the shoelace holes 200 on the second plate 42, and the shoelace holes 200 on the fifth sub-plate 101 are aligned with the shoelace holes 200 on the second plate 42.
[0102] When shoes with laces are placed in the left box 20, the laces can pass through the lace holes 200 on the first sub-plate 71, the second plate 42, and the third sub-plate 73. When shoes with laces are placed in the right box 30, the laces can pass through the lace holes 200 on the fifth sub-plate 101, the second plate 42, and the seventh sub-plate 103. On the outside of the shoebox 10, the two laces can form a predetermined shape. For example, when the left box 20 and the right box 30 are stacked on top of each other, the user can carry the shoebox 10 using the handle formed by the exposed laces or display the shape formed by the exposed laces, which improves the portability and personalization of the shoebox 10.
[0103] For example, the first sub-plate 71 has three shoelace holes 200. The third sub-plate 73 has six shoelace holes 200. The fifth sub-plate 101 has three shoelace holes 200. The seventh sub-plate 103 has six shoelace holes 200. The second plate 42 has six shoelace holes 200, wherein three shoelace holes 200 are aligned with the three shoelace holes 200 on the first sub-plate 71, and the other three shoelace holes 200 are aligned with the three shoelace holes 200 on the fifth sub-plate 101.
[0104] In some examples, the first sub-plate 71 is bonded and fixed to the first plate 41 of the connector 40. The fifth sub-plate 101 is bonded and fixed to the third plate 43 of the connector 40.
[0105] See in some examples Figure 8 , Figure 9 and Figure 10 As shown, the first side panel 70 also includes a ninth sub-panel 75 and a tenth sub-panel 76. The third sub-panel 73 and the ninth sub-panel 75 are connected and stacked on top of each other, with the ninth sub-panel 75 located on the inner side. The first sub-panel 71 and the tenth sub-panel 76 are connected and stacked on top of each other, with the tenth sub-panel 76 located on the inner side. The fourth sub-panel 74 includes a first main plate 741 and a first wing plate 742 that are stacked on top of each other. The first sub-panel 71 is connected to the first main plate 741 and the second sub-panel 72. The first wing plate 742 is located on the inner side.
[0106] The first base plate 60 includes a first sub-base plate 61, a second sub-base plate 62, a third sub-base plate 63, a fourth sub-base plate 64, and a fifth sub-base plate 65. The first sub-base plate 61 is connected to the first sub-base plate 71. The second sub-base plate 62 is connected to the third sub-base plate 73. The third sub-base plate 63 is connected to the second sub-base plate 72. The fourth sub-base plate 64 is connected to the first main plate 741. The fifth sub-base plate 65 is connected to the tenth sub-base plate 76. (See also...) Figure 11 As shown, the second sub-base plate 62, the third sub-base plate 63, and the fourth sub-base plate 64 are spliced to form the first intermediate plate layer 300. The first intermediate plate layer 300 is located between the first sub-base plate 61 and the fifth sub-base plate 65. The first sub-base plate 61 is located below the first intermediate plate layer 300.
[0107] The first side plate 70 and the first bottom plate 60 have high structural strength, giving them excellent support performance and making them less prone to deformation or collapse. The left box 20, including the first side plate 70 and the first bottom plate 60, also has high overall structural strength, giving it good resistance to deformation and reducing the likelihood of deformation or collapse under pressure.
[0108] Figure 10 The flat cardboard shown can be folded at the corresponding creases to form the left box body 20. See also Figure 12 As shown, the ninth sub-plate 75 can be folded inward, the tenth sub-plate 76 can be folded inward, and the fifth sub-base plate 65 can be folded inward. Then, the first cover plate 50 is closed.
[0109] For example, the first sub-base plate 61 is generally rectangular. The fifth sub-base plate 65 is generally rectangular. The second sub-base plate 62 is an isosceles triangle. The third sub-base plate 63 and the fourth sub-base plate 64 are generally right trapezoids. See also Figure 11 As shown, in the first intermediate plate layer 300 formed by splicing the second sub-base plate 62, the third sub-base plate 63 and the fourth sub-base plate 64, the oblique edges of the third sub-base plate 63 and the fourth sub-base plate 64 respectively mate with the two waists of the second sub-base plate 62.
[0110] For example, the first sub-base plate 61 and the first intermediate plate layer 300 are bonded and fixed together. The fifth sub-base plate 65 and the ninth sub-plate 75 can be interlocked to fix the fifth sub-base plate 65. The fifth sub-base plate 65 and the first intermediate plate layer 300 are in contact with each other but not connected.
[0111] For example, the first sub-plate 71 is provided with shoelace holes 200. The first sub-plate 71 and the tenth sub-plate 76 are connected and stacked on top of each other, with the tenth sub-plate 76 located on the inside. Shoelaces can pass between the first sub-plate 71 and the tenth sub-plate 76 and then exit through the shoelace holes 200. For example, shoelaces can be inserted between the first sub-plate 71 and the tenth sub-plate 76 from the side of the tenth sub-plate 76 near the second sub-plate 72 or the side near the fourth sub-plate 74.
[0112] For example, the third sub-plate 73 is provided with shoelace holes 200. The third sub-plate 73 and the ninth sub-plate 75 are connected and stacked on top of each other, with the ninth sub-plate 75 located on the inside. Shoelaces can pass between the third sub-plate 73 and the ninth sub-plate 75 and then exit through the shoelace holes 200.
[0113] For example, the third sub-board 73 and the ninth sub-board 75 are both trapezoidal. The first sub-board 71 and the tenth sub-board 76 are both trapezoidal.
[0114] See in some examples Figure 9 and Figure 10 As shown, the shoe box 10 also includes a first tongue 110 and a second tongue 120. The first tongue 110 is provided at the end of the first cover plate 50 away from the second sub-plate 72. The second tongue 120 is provided on opposite sides of the first cover plate 50.
[0115] When the first cover plate 50 is in the closed position, the first tongue plate 110 and the second tongue plate 120 are inserted into the inner side of the first side plate 70. The first tongue plate 110 and the second tongue plate 120 are in contact with the inner wall of the first side plate 70, and the friction between the first tongue plate 110 and the second tongue plate 120 and the first side plate 70 can achieve a limiting force, making it difficult for the first tongue plate 110 and the second tongue plate 120 to come out of the first side plate 70, and making it difficult for the first cover plate 50 to fall out of the closed position, thereby reducing the possibility that the shoe may fall out of the left box 20 due to the first cover plate 50 falling out of the closed position.
[0116] For example, the first tongue plate 110 and the second tongue plate 120 are each independently provided. The first tongue plate 110 and the second tongue plate 120 are not connected to each other.
[0117] For example, a handle position 500 is provided at the end of the first cover plate 50 away from the second sub-plate 72, so that the user can use his / her fingers to engage the first cover plate 50 and pull up the first cover plate 50 to open the first cover plate 50 smoothly.
[0118] See in some examples Figure 13 , Figure 14 and Figure 15As shown, the second side panel 100 also includes an eleventh sub-panel 105 and a twelfth sub-panel 106. The seventh sub-panel 103 and the eleventh sub-panel 105 are connected and stacked on top of each other, with the eleventh sub-panel 105 located on the inner side. The fifth sub-panel 101 and the twelfth sub-panel 106 are connected and stacked on top of each other, with the twelfth sub-panel 106 located on the inner side.
[0119] The eighth sub-board 104 includes a second main board 1041 and a second wing board 1042 stacked on top of each other. The fifth sub-board 101 connects the second main board 1041 and the sixth sub-board 102, and the second wing board 1042 is located on the inner side.
[0120] The second base plate 90 includes a sixth sub-base plate 91, a seventh sub-base plate 92, an eighth sub-base plate 93, a ninth sub-base plate 94, and a tenth sub-base plate 95. The sixth sub-base plate 91 is connected to the fifth sub-base plate 101. The seventh sub-base plate 92 is connected to the seventh sub-base plate 103. The eighth sub-base plate 93 is connected to the sixth sub-base plate 102. The ninth sub-base plate 94 is connected to the second main plate 1041. The tenth sub-base plate 95 is connected to the twelfth sub-base plate 106. (See also...) Figure 16 As shown, the seventh sub-base plate 92, the eighth sub-base plate 93, and the ninth sub-base plate 94 are spliced to form the second intermediate plate layer 400. The second intermediate plate layer 400 is located between the sixth sub-base plate 91 and the tenth sub-base plate 95. The sixth sub-base plate 91 is located below the second intermediate plate layer 400.
[0121] The second side plate 100 and the second bottom plate 90 have high structural strength, giving them excellent support performance and making them less prone to deformation or collapse. The right box 30, including the second side plate 100 and the second bottom plate 90, has high overall structural strength, giving it good resistance to deformation and reducing the likelihood of deformation or collapse under pressure.
[0122] Figure 15 The flat cardboard shown can be folded at the corresponding creases to form the left box body 20. See also Figure 17 As shown, the eleventh sub-plate 105 can be folded inward, the twelfth sub-plate 106 can be folded inward, and the tenth sub-bottom plate 95 can be folded inward. Then, the second cover plate 80 is closed.
[0123] For example, the sixth sub-base plate 91 is generally rectangular. The tenth sub-base plate 95 is generally rectangular. The seventh sub-base plate 92 is an isosceles triangle. The eighth sub-base plate 93 and the ninth sub-base plate 94 are generally right trapezoids. See also Figure 16 As shown, in the second intermediate plate layer 400 formed by splicing the seventh sub-base plate 92, the eighth sub-base plate 93 and the ninth sub-base plate 94, the oblique edges of the eighth sub-base plate 93 and the ninth sub-base plate 94 respectively mate with the two waists of the seventh sub-base plate 92.
[0124] For example, the sixth sub-base plate 91 and the second intermediate plate layer 400 are bonded and fixed together. The tenth sub-base plate 95 and the eleventh sub-plate 105 can be interlocked to fix the tenth sub-base plate 95. The tenth sub-base plate 95 and the second intermediate plate layer 400 are in contact with each other but not connected.
[0125] For example, the fifth sub-plate 101 is provided with shoelace holes 200. The fifth sub-plate 101 and the twelfth sub-plate 106 are connected and stacked on top of each other, with the twelfth sub-plate 106 located on the inside. Shoelaces can pass between the fifth sub-plate 101 and the twelfth sub-plate 106 and then exit through the shoelace holes 200. For example, shoelaces can be inserted between the fifth sub-plate 101 and the twelfth sub-plate 106 from the side of the twelfth sub-plate 106 near the sixth sub-plate 102 or the side near the eighth sub-plate 104.
[0126] For example, the seventh sub-plate 103 is provided with shoelace holes 200. The seventh sub-plate 103 and the eleventh sub-plate 105 are connected and stacked on top of each other, with the eleventh sub-plate 105 located on the inside. Shoelaces can pass between the seventh sub-plate 103 and the eleventh sub-plate 105 and then exit through the shoelace holes 200.
[0127] For example, the seventh sub-board 103 and the eleventh sub-board 105 are both trapezoidal. The fifth sub-board 101 and the twelfth sub-board 106 are both trapezoidal.
[0128] See in some examples Figure 14 and Figure 15 As shown, the shoe box 10 also includes a third tongue plate 130 and a fourth tongue plate 140. The third tongue plate 130 is provided at the end of the second cover plate 80 away from the sixth sub-plate 102. The fourth tongue plate 140 is provided on opposite sides of the second cover plate 80.
[0129] When the second cover plate 80 is in the closed position, the third tongue plate 130 and the fourth tongue plate 140 are inserted into the inner side of the second side plate 100. The third tongue plate 130 and the fourth tongue plate 140 each contact the inner wall of the second side plate 100. The friction between the third tongue plate 130 and the fourth tongue plate 140 and the second side plate 100 can achieve a limiting effect, making it difficult for the third tongue plate 130 and the fourth tongue plate 140 to come out of the second side plate 100. This also makes it difficult for the second cover plate 80 to come out of the closed position, reducing the possibility that the shoe may fall out of the right box 30 due to the second cover plate 80 coming out of the closed position.
[0130] For example, the third tongue plate 130 and the fourth tongue plate 140 are each provided independently. The third tongue plate 130 and the fourth tongue plate 140 are not connected to each other.
[0131] For example, a handle position 500 is provided at the end of the second cover plate 80 away from the sixth sub-plate 102, so that the user can use his / her fingers to engage the second cover plate 80 and pull up the second cover plate 80 to open the second cover plate 80 smoothly.
[0132] In some feasible methods, the left box body 20 is a one-piece molded structure. A flat cardboard sheet for forming the left box body 20 is made by machining a whole sheet of paper blank, and then the left box body 20 is formed by corresponding folding and gluing processes.
[0133] In some feasible methods, the right box body 30 is a one-piece molded structure. A flat cardboard sheet for molding the right box body 30 is made by machining a whole sheet of paper blank, and then the right box body 30 is made by corresponding folding and gluing processes.
[0134] In some feasible ways, the left box 20 and the right box 30 have the same structure and size, and can be made using the same machining, folding and bonding processes, which helps to reduce the manufacturing difficulty and cost of the left box 20 and the right box 30.
[0135] Although this application has been described with reference to preferred embodiments, various modifications can be made thereto and components can be replaced with equivalents without departing from the scope of this application. In particular, the technical features mentioned in the various embodiments can be combined in any manner, provided there is no structural conflict. This application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A shoe box characterized in that, include: The left box body includes a first cover plate, a first bottom plate, and a first side plate, wherein the first cover plate and the first bottom plate are both connected to the first side plate; The right box body includes a second cover plate, a second bottom plate, and a second side plate, wherein the second cover plate and the second bottom plate are both connected to the second side plate; The connector includes a first plate, a second plate, and a third plate, wherein the first plate is connected to the first side plate, and the third plate is connected to the second side plate; In this configuration, one of the left and right boxes is flipped relative to the other, allowing the left and right boxes to switch between a stacked state and a side-by-side arrangement. When the left and right boxes are stacked on top of each other, the first and second cover plates are also stacked, and the connector is unfolded and located on the same side of the left and right boxes. When the left box and the right box are arranged side by side, the first cover plate and the second cover plate are both facing upwards, and the connector is folded and located between the left box and the right box.
2. The shoe box according to claim 1, characterized in that The first cover plate is an inclined plate, and the second cover plate is an inclined plate.
3. The shoe box of claim 2, wherein, The first side plate includes a first sub-plate, a second sub-plate, a third sub-plate, and a fourth sub-plate connected in sequence. The first cover plate is connected to the second sub-plate, the first plate body is connected to the first sub-plate, and the first sub-plate, the second sub-plate, the third sub-plate, and the fourth sub-plate are all connected to the first bottom plate.
4. The shoe box according to claim 3, characterized in that Both the first sub-board and the third sub-board are trapezoidal. The large ends of the first sub-board and the third sub-board are respectively connected to the second sub-board, and the small ends of the first sub-board and the third sub-board are respectively connected to the fourth sub-board.
5. The shoe box according to claim 4, characterized in that The second side plate includes a fifth sub-plate, a sixth sub-plate, a seventh sub-plate, and an eighth sub-plate connected in sequence. The second cover plate is connected to the sixth sub-plate, the third plate body is connected to the fifth sub-plate, and the fifth, sixth, seventh, and eighth sub-plates are all connected to the second bottom plate.
6. The shoe box of claim 5, wherein, Both the fifth sub-board and the seventh sub-board are trapezoidal. The large ends of the fifth sub-board and the seventh sub-board are respectively connected to the sixth sub-board. The small ends of the fifth sub-board and the seventh sub-board are respectively connected to the eighth sub-board. The small end of the first sub-board and the large end of the fifth sub-board are located on the same side.
7. The shoe box according to claim 5, characterized in that, The first sub-plate, the third sub-plate, the fifth sub-plate, the seventh sub-plate, and the second plate are all provided with shoelace holes. The shoelace holes on the first sub-plate are aligned with the shoelace holes on the second plate, and the shoelace holes on the fifth sub-plate are aligned with the shoelace holes on the second plate.
8. The shoe box according to any one of claims 5 to 7, characterized in that, The first side panel further includes a ninth sub-panel and a tenth sub-panel. The third sub-panel and the ninth sub-panel are connected and stacked on top of each other. The ninth sub-panel is located on the inner side. The first sub-panel and the tenth sub-panel are connected and stacked on top of each other. The tenth sub-panel is located on the inner side. The fourth sub-board includes a first main board and a first wing board stacked on top of each other. The first sub-board connects the first main board and the second sub-board, and the first wing board is located on the inner side. The first base plate includes a first sub-base plate, a second sub-base plate, a third sub-base plate, a fourth sub-base plate, and a fifth sub-base plate. The first sub-base plate is connected to the first sub-plate, the second sub-base plate is connected to the third sub-plate, the third sub-base plate is connected to the second sub-plate, the fourth sub-base plate is connected to the first main plate, and the fifth sub-base plate is connected to the tenth sub-plate. The second sub-base plate, the third sub-base plate, and the fourth sub-base plate are spliced together to form a first intermediate plate layer. The first intermediate plate layer is located between the first sub-base plate and the fifth sub-base plate, and the first sub-base plate is located below the first intermediate plate layer.
9. The shoe box according to any one of claims 5 to 7, characterized in that, The second side panel also includes an eleventh sub-panel and a twelfth sub-panel. The seventh sub-panel and the eleventh sub-panel are connected and stacked on top of each other. The eleventh sub-panel is located on the inner side. The fifth sub-panel and the twelfth sub-panel are connected and stacked on top of each other. The twelfth sub-panel is located on the inner side. The eighth sub-board includes a second main board and a second wing board stacked on top of each other, the fifth sub-board connects the second main board and the sixth sub-board, and the second wing board is located on the inner side; The second base plate includes a sixth sub-base plate, a seventh sub-base plate, an eighth sub-base plate, a ninth sub-base plate, and a tenth sub-base plate. The sixth sub-base plate is connected to the fifth sub-base plate, the seventh sub-base plate is connected to the seventh sub-base plate, the eighth sub-base plate is connected to the sixth sub-base plate, the ninth sub-base plate is connected to the second main plate, and the tenth sub-base plate is connected to the twelfth sub-base plate. The seventh, eighth, and ninth sub-base plates are spliced together to form a second intermediate plate layer. The second intermediate plate layer is located between the sixth and tenth sub-base plates, and the sixth sub-base plate is located below the second intermediate plate layer.
10. The shoe box according to any one of claims 5 to 7, characterized in that, The shoe box also includes a first tongue and a second tongue. The first tongue is provided at the end of the first cover away from the second sub-plate, and the second tongue is provided on opposite sides of the first cover. The shoe box also includes a third tongue and a fourth tongue. The third tongue is provided at the end of the second cover away from the sixth sub-plate, and the fourth tongue is provided on the opposite sides of the second cover.