Packing box and cardboard structure
12240665 ยท 2025-03-04
Assignee
Inventors
Cpc classification
B65D5/5016
PERFORMING OPERATIONS; TRANSPORTING
B65D81/05
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D5/50
PERFORMING OPERATIONS; TRANSPORTING
B65D5/42
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure relates to a packing box and a cardboard structure. The packing box includes: a box body, which further includes a bottom, a side wall and a containing space; the side wall connects to the bottom, and the containing space is formed by the bottom and the side wall; a carrying structure, positioned in the containing space; the carrying structure, including connecting parts and buffer parts, connects to the side wall with a bendable connection in one-piece structure; the buffer part is connected to both ends of the connecting part along the second direction, and the carrying structure is connected to the side wall through the connecting part; the buffer part is connected to the connecting part with a bendable connection, the buffer part abuts against the side wall with deformation; and the effective space inside the box changes with the deformation of the buffer part.
Claims
1. A packing box, comprising: a box body, wherein the box body comprises a bottom, a side wall that is connected to the bottom, and a containing space that is bounded by the bottom and the side wall, and the side wall comprises a side wall body that comprises multiple walls; and a carrying structure disposed in the containing space, wherein the carrying structure comprises a connecting part and a buffer part, the carrying structure connects to the side wall through the connecting part with a bendable connection; and wherein the buffer part is connected to both ends of the connecting part along a second direction, the buffer part abuts against the side wall with deformation, and effective space inside the box changes with the deformation of the buffer part; wherein the carrying structure comprises a carrying part, the carrying part connects to the connecting part at a side close to the bottom with a bendable connection, and the carrying part abuts against the bottom by forming an angle with the bottom so that the carrying part is capable of carrying and buffering one or more objects placed in the packing box along a third direction that is perpendicular to a horizontal plane that the bottom is located at, the carrying part comprises a flexible bent structure, the flexible bent structure comprises a first bending plate and a second bending plate, a first end of the first bending plate is connected to the connecting part with a bendable connection, and a second end of the first bending plate is connected to the second bending plate with a bendable connection, a bending angle between the first bending plate and the second bending plate is greater than 90 and less than 180, a length of a fold line between the first bending plate and the connecting part is less than a length of a fold line between the first bending plate and the second bending plate, the second bending plate is capable of distributing weight of the one or more objects on the bottom; wherein the side wall comprises a fixing part, the fixing part is respectively connected to two ends of a wall of the side wall body along a first direction with a bendable connection, the fixing part is fixedly connected with the side wall body, the first direction is perpendicular to the second direction, and the first direction and the second direction are parallel to the bottom, wherein the side wall comprises an extension part that is connected to the fixing part with a bendable connection, and at least a part of the bottom is attached to the extension part that extends to an inner side of the bottom along the first direction so as to block gaps between one of two walls of the side wall body and the horizontal plane that the bottom is located at, wherein shape of the fixing part is substantially same as the two walls.
2. The packing box of claim 1, wherein the box body forms a cuboid container.
3. The packing box of claim 2, wherein the carrying part and the connecting part are one-piece structure that is bendable.
4. The packing box of claim 3, wherein the second bending plate is capable of providing resilience force when the carrying part lifts the one or more objects.
5. The packing box of claim 1, wherein the buffer part is a structure that connects to the connecting part with a bendable connection; the buffer part is a bending buffer structure; and the bending buffer structure comprises a third bending plate and a fourth bending plate, wherein a first end of the third bending plate is connected to the connecting part with a bendable connection, and a second end of the third bending plate is connected to a first end of the said fourth bending plate, and a second end of the fourth bending plate abuts against the side wall.
6. The packing box of claim 5, wherein a length of a fold line between the third bending plate and the fourth bending plate is less than a length of a side line of the fourth bending plate away from the third bending plate; or the bending angle between the third bending plate and the fourth bending plate is greater than 90 and less than 180.
7. The packing box of claim 1, wherein the connecting part is a connectable bending structure; and the connectable bending structure comprises a connecting plate, a fifth bending plate and a sixth bending plate that are sequentially connected with a bendable connection, wherein the buffer part and the sixth bending plate are respectively connected to the connecting plate and the side wall with a bendable connection; or a length of a fold line between the fifth bending plate and the connecting plate is smaller than a length of a fold line between the fifth bending plate and the sixth bending plate.
8. A cardboard structure, comprising: a first surface of a cardboard; a second surface of the cardboard that is in the opposite side of the first surface of the cardboard; a box body area, wherein the box body area comprises a bottom area and a side wall area that are connected together, wherein the side wall area and the bottom area are respectively configured to bend toward the first surface to form a side wall and a bottom, the bottom and the side wall form a containing space, and the side wall comprises a side wall body that comprises multiple walls; and a carrying area that is connected to the box area, wherein the carrying area is configured to bend toward the first surface to form a carrying structure; the carrying structure, comprising a connecting subarea and a buffer subarea, is positioned in the containing space; the buffer subarea connects to the connecting subarea; the connecting subarea and the buffer subarea are respectively configured to bend toward the first surface and the second surface at least once to form a connecting part and a buffer part; and the carrying structure connects to the side wall through the connecting part; and wherein the buffer part is connected to both ends of the connecting part along a second direction, the buffer part abuts against the side wall with deformation, and effective space inside the box changes with the deformation of the buffer part, wherein the carrying structure further comprises a carrying part, the carrying part connects to the connecting part at a side close to the bottom with a bendable connection, and the carrying part abuts against the bottom by forming an angle with the bottom so that the carrying part is capable of carrying and buffering one or more objects placed in the packing box along a third direction that is perpendicular to a horizontal plane that the bottom is located at, the carrying part comprises a flexible bent structure, the flexible bent structure comprises a first bending plate and a second bending plate, a first end of the first bending plate is connected to the connecting part with a bendable connection, and a second end of the first bending plate is connected to the second bending plate with a bendable connection, a bending angle between the first bending plate and the second bending plate is greater than 90 and less than 180, a length of a fold line between the first bending plate and the connecting part is less than a length of a fold line between the first bending plate and the second bending plate, the second bending plate is capable of distributing weight of the one or more objects on the bottom; wherein the side wall further comprises a fixing part, the fixing part is respectively connected to two ends of a wall of the side wall body along a first direction with a bendable connection, the fixing part is fixedly connected with the side wall body, the first direction is perpendicular to the second direction, and the first direction and the second direction are parallel to the bottom, wherein the side wall further comprises an extension part that is connected to the fixing part with a bendable connection, and at least a part of the bottom is attached to the extension part that extends to an inner side of the bottom along the first direction so as to block gaps between one of two walls of the side wall body and the horizontal plane that the bottom is located at, wherein shape of the fixing part is substantially same as the two walls.
9. The cardboard structure of claim 8, wherein the carrying part and the connecting part are one-piece structure that is bendable.
10. The cardboard structure of claim 9, wherein the second bending plate is capable of providing resilience force when the carrying part lifts the one or more objects.
11. The cardboard structure of claim 8, wherein the box body area further comprises at least one top cover area, wherein the at least one top cover area is connected to the side wall area, and the at least one top cover area is bent toward the first surface to form a top cover.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawings described here are used to provide a further understanding of the present disclosure and constitute a part of the present disclosure. The examples and descriptions of the present disclosure are used to explain the present disclosure, and do not constitute an improper limitation of the present disclosure.
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DETAILED DESCRIPTION
(15) Here, examples of the present disclosure will be described in detail, and examples thereof are shown in the accompanying drawings. When the following description refers to the drawings, unless otherwise indicated, the same reference numbers in different drawings indicate the same or similar elements. The examples described following do not represent all examples consistent with the present disclosure. On the contrary, they are merely examples of devices and methods consistent with some aspects of the disclosure as detailed in the appended claims.
(16) It should be noted that in this application, the terms include, comprise or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, product or device including a series of elements not only those listed, but also those that are not explicitly listed, or elements inherent to the process, method, product, or device. Without more restrictions, the element defined by the sentence including a . . . does not exclude the existence of other identical elements in the process, method, product or device that includes the element. In addition, components, features, and elements with the same name in different examples of this disclosure may have the same meaning or different meanings, and their specific meanings need to be determined by their explanation or further combined with the context in the specific example.
(17) It should be understood that although the terms first, second, or third, etc. may be used herein to describe various information, and the information should not be limited to these terms. These terms are merely used to distinguish the same type of information from each other. For example, without departing from the scope of this disclosure, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word if as used herein can be interpreted as when or while or in response to determination. Furthermore, as used in this disclosure, the singular forms a, an and the are also intended to include the plural forms, unless the context indicates to the contrary. It should be further understood that the terms comprising and including indicate the presence of the described features, steps, operations, elements, components, items, types, and/or groups, but do not exclude the existence, appearance or addition of one or more other features, steps, operations, elements, components, items, types, and/or groups. The terms or and and/or used in this disclosure are interpreted as inclusive or mean any one or any combination. Therefore, A, B or C or A, B and/or C means any of the following: A; B; C; A and B; A and C; B and C; A, B and C. An exception to this definition will only occur when the combination of elements, functions, steps or operations is inherently mutually exclusive in some way. In describing the structure of a component, when a layer or an area is referred to as being on or above another layer or area, it can mean that it is directly on another layer or area, or mean that there are other layers or areas between them. And, if the component is turned over, the layer or area will be below or under another layer or area. In the example of the present disclosure, B corresponding to A means that B is associated with A, and B can be determined according to A. However, it should also be understood that determining B according to A does not mean that B is determined only according to A, and B can also be determined according to A and/or other information.
(18) It should be understood that the specific examples described here are merely used to explain the present disclosure, and are not intended to limit the present disclosure.
(19) In the following description, the use of suffixes about element, such as module, part and unit are merely used to describe and best understand this disclosure, and have no specific meaning in itself. Therefore, module, part or unit can be used in a mixed manner.
(20) The packing boxes are usually used to package objects. When these boxes are transported, vibrations and bumps can easily happen that will cause damage to objects. The packing boxes in the prior art are usually formed by bending a single well-cut cardboard, for example, a cuboid packing box. Because all the six sides only have a cardboard of single layer or double layers, the buffer capacity of the box is poor, and it's hardly to protect the objects effectively during transportation. In order to improve the buffer effect, more additional buffer materials, such as foam, bubble paper, sponge, paper holder, and etc., are usually filled or set in the box. When making boxes, additional buffer materials increase the cost of the box. In addition, when packing objects, first it is necessary to bend and fix the linear box, then to add buffer materials, and finally to fix the objects with buffer materials. This is a complicated process. When opening the boxes, the buffer material must be taken out first, and then the objects can be taken out. This greatly affects the user's experience and feelings.
(21) To resolve the foregoing technical problems, this disclosure provides a packing box and a cardboard structure. A carrying structure with a deformable buffer part is arranged in the packing box. With the deformable the buffer part can buffer objects by absorbing external vibrations. In addition, the carrying structure and the side wall of the packing box are a bendable one-piece structure, so that when the packing box is made, the carrying structure can be directly obtained by bending, and the carrying structure can be bent into the interior of the packing box, thereby the process of adding buffer materials can be omitted, the production cost of the packing box is reduced, and the packaging process of the packing box is simplified.
The First Example
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(23) With reference to
(24) The shape of the box body is not limited, for example, it may be cylindrical, triangular prism, cuboid, or oblique parallelepiped. For the convenience of description, referring to
(25) In an alternative example, referring to
(26) In an alternative example, the carrying structure 3 is put in the containing space of the box body, and is mainly used to hold objects and meanwhile to buffer the objects. Since the carrying structure 3 and the side wall 2 are also a bendable one-piece structure, they can be obtained by a well-cut cardboard at the same time. Exemplarily, the carrying structure 3 is connected to one end of at least one of the first wall 201 or the third wall 203 in the third direction C with a bendable connection. When bending, it can be bent toward the inside of the box body so that the carrying structure 3 is positioned inside the box body.
(27) In an alternative example, referring to
(28) In an alternative example, the side wall 2 further includes an extension part 22; the extension part 22 is connected to the fixing part 21 with a bendable connection, and at least a part of the bottom 1 is attached to the extension part 22. The extension part 22 can increase the connection performance between the side wall 2 and the bottom 1. Exemplarily, the extension part 22 extends to the inner side of the bottom 1 along the first direction A, and it can block the gap not only between the first wall 201 and the bottom 1 but also between the third wall 203 and the bottom 1.
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(30) In an alternative example, referring to
(31) In an alternative example, continuing to refer to
(32) In an alternative example, referring to
(33) In an alternative example, referring to
(34) In an alternative example, referring to
(35) In an alternative example, referring to
(36) In an alternative example, referring to
(37) Along the first direction A, two buffer parts 32 can buffer the object. Along the three directions, the carrying part 33 and the connecting part 31 can buffer the object. In addition, the carrying part 33 can also carry and lift the object. Along the second direction B, since the carrying part 33, the connecting part 31 and the buffer part 32 all adopt a deformable bending structure, the area of the connecting part in contact with the object can buffer the object.
The Second Example
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(39) Referring to
(40) The cardboard structure can be bent to form the packing box of the foregoing example of the present disclosure.
(41) Referring to
(42) Referring to
(43) In an alternative example, referring to
(44) In an alternative example, referring to
(45) In an alternative example, referring to
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(47) In an alternative example, referring to
(48) In an alternative example, referring to
(49) In an alternative example, referring to
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(51) In an alternative example, referring to
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(53) In an alternative example, referring to
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(55) In an alternative example, referring to
(56) The packing box includes: a box body, which further comprises of a bottom, a side wall and a containing space; the side wall connects to the bottom and the containing space is formed by the bottom and the side wall; a carrying structure, positioned in the containing space, is connected to the side wall in one-piece structure with a bendable connection; the carrying structure includes the connecting part and the buffer part; wherein the said buffer part is connected to both ends of the connecting part along the second direction, and the carrying structure connects to the side wall through the connecting part; the buffer part is a structural component that is connected to the connecting part with a bendable connection, and the buffer part abuts against the side wall with a amount of deformation, and the effective space inside the box changes with the deformation of the buffer part.
(57) Optional, the carrying structure also comprises carrying part, and the carrying part connects to the connecting part at a side close to the bottom with a bendable connection, and the carrying part abuts against the bottom.
(58) Optional, carrying part is a flexible bent structure, the flexible bent structure includes a first bending plate and a second bending plate. One end of the first bending plate is connected to the connecting part with a bendable connection, and the other end of the first bending plate is connected to the second bending plate with a bendable connection.
(59) Optional, the length of the fold line between the first bending plate and the connecting part is less than that between the first bending plate and the second bending plate; the bending angle between the first bending plate and the second bending plate is greater than 90 and less than 180.
(60) Optional, the buffer part is a buffer bending structure; the buffer bending structure includes a third bending plate and a fourth bending plate; one end of the third bending plate is connected to the connecting part with a bendable connection, and the other end of the third bending plate is connected to one end of the fourth bending plate, and the other end of the fourth bending plate abuts against the side wall.
(61) Optional, the length of the fold line between the third bending plate and the fourth bending plate is less than the length of the side line of the fourth bending plate away from the third bending plate; the bending angle between the third bending plate and the fourth bending plate is greater than 90 and less than 180.
(62) Optional, the side wall further includes fixing part; the fixing part is respectively connected to the two ends of the side wall along the first direction with a bendable connection; the fixing part is permanently connected with the side wall.
(63) Optional, the side wall further includes extension part; the extension part is connected to the fixing part with a bendable connection, and at least a part of the bottom is attached to the extension part.
(64) Optional, it also includes a top cover, which is respectively connected to the two ends of the side wall along the second direction with a bendable connection (for example, the top cover is connected to a top edge of the side wall along a third direction with a bendable connection); the connecting part is a connectable bending structure, the connectable bending structure includes a connecting plate, a fifth bending plate and a sixth bending plate that are sequentially connected together with a bendable connection; the buffer part is connected to the connecting plate with a bendable connection; the sixth bending plate is connected to the side wall with a bendable connection; the length of the fold line between the fifth bending plate and the connecting plate is smaller than that between the fifth bending plate and the sixth bending plate.
(65) Optional, the box forms a cuboid container.
(66) The packing box and the cardboard structure are provided by the embodiments of this application. By arranging the carrying structure with buffer part in the packing box to carry objects, and by using the deformable buffer part to buffer the objects, the buffer capacity of the packing box can be improved thereby. In addition, the carrying structure and the side wall of the packing box are a bendable one-piece structure, so that the carrying structure can be directly obtained by bending, consequently the process of adding buffer materials can be omitted, and the packaging process of the packing box is simplified.
(67) In summary, the examples of the present disclosure provide a packing box and a cardboard structure to improve its buffer capacity by arranging a carrying structure 3 with a buffer part 32 to carry objects. Moreover, since the carrying structure 3 and the side wall 2 are a bendable one-piece structure, the carrying structure 3 can be obtained by bending, so additional buffer materials can be omitted, thereby the manufacturing process of the packing box and the packaging process of the objects are simplified. In addition, when the packing box is opened, the rebound effect of the carrying part 33 can lift the object up, which enhances the user's experience and feeling.
(68) The foregoing descriptions are merely examples of this disclosure, and are not intended to limit this disclosure in any way. Any equivalent structure or equivalent process transformation made to the foregoing examples according to the technical essence of this disclosure, or directly or indirectly used in other related technical fields, shall fall within the scope of the technical solutions of this disclosure.