Honey package capable of changing display modes

By designing honey packaging with variable display methods, the problem of inconvenient display of existing honey packaging boxes is solved, diversified display and secondary use of honey jars is realized, users' desire to purchase is enhanced, and in line with environmental protection concepts.

CN223267285UActive Publication Date: 2025-08-26GUANGDONG VOION ECO PACKAGING IND CO LTD
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Patent Information

Application Number
CN202422531849.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-26
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

The existing honey packaging boxes are not convenient for product display, and have weak functions and reduce consumers' consumption desire.

Method used

A honey packaging with a variable display method is designed, including a left loading part, a right loading part and a connecting plate. Three display states of honey pots are realized through different folding surfaces and slot structures, including single-line arrangement, horizontal fitting and vertical insertion to enhance the display effect.

Benefits of technology

It realizes diversified display of honey pots, enhances users' desire to buy, and conforms to environmental protection concepts, has good functionality and display effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a honey package capable of changing display modes, which comprises a package body, and the package body comprises a left loading part, a right loading part and a connecting plate. The left side loading part and the right side loading part are vertically arranged in parallel, and the bottoms of the left side loading part and the right side loading part are bonded and fixed with the connecting plate; the left side loading part and the right side loading part are vertically arranged in parallel to form a hexagon; a honey pot loading space is formed between the left loading part and the right loading part; the left side loading part and the right side loading part are both provided with embedding grooves corresponding to honey cans in shape in a crossing cutting mode in the length direction of the left side loading part and the right side loading part, and the embedding grooves in the two opposite sides form an insertion hole perpendicular to the packaging body; three display modes are provided, the functionality is high, and the purchase desire of the user is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, in particular to a honey packaging with a changeable display mode. Background Art

[0002] China Authorization Publication No. CN211766912U, with an authorization announcement date of October 27, 2020, discloses a hexagonal canned product packaging box cutout. The cutout is cut from a piece of cardboard and includes a bottom, left side, right side, front side, and back side. The left and right sides are hexagonal in shape, and the front side is provided with a flip-open front flap located on the side of the front side near the bottom. The canned product packaging box cutout can be folded into a hexagonal packaging box. The canned products are stacked in a tower shape within the box. By flipping open the front flap to form an opening, a canned product at the bottom of the box can be removed. After removal, the canned products at the upper layers fall sequentially under the action of gravity and fill the opening, making each canned product in the box easily removable. This solves the problem of some canned products being difficult to remove in the prior art. The drawbacks of this prior art are that it is inconvenient to display the products, has poor functionality, and reduces consumer consumption. Given this situation, improvement is urgently needed. Utility Model Content

[0003] Based on this, the purpose of the present invention is to provide a honey packaging with a changeable display mode, which has three display modes, is highly functional, and greatly enhances the user's desire to buy.

[0004] The utility model provides a honey package with a transformable display mode, comprising a package body, the package body comprising a left loading portion, a right loading portion, and a connecting plate; the left loading portion and the right loading portion are vertically arranged side by side, and the bottoms of both are bonded and fixed to the connecting plate; the left loading portion and the right loading portion form a hexagon when vertically arranged side by side; a honey jar loading space is formed between the left loading portion and the right loading portion; the left loading portion and the right loading portion are each cross-cut with an engaging groove corresponding to the shape of a honey jar along their length direction, and the engaging grooves on opposite sides form an insertion hole perpendicular to the package body;

[0005] When in the first display state, the bottoms of the left loading portion and the right loading portion are split apart at the connecting plate, so that the left loading portion and the right loading portion are arranged in a straight line, directly displaying the honey jars placed in the honey jar loading space;

[0006] When in the second display state, based on the first display state, the honey jar is horizontally embedded in the embedding groove;

[0007] When in the third display state, the honey jar is inserted transversely into the insertion hole and forms a vertical relationship with the packaging body.

[0008] Preferably, the number of the engaging grooves provided on the left loading part and the right loading part is N, where N≥1.

[0009] Preferably, when the number of the engaging grooves provided in the left loading part and the right loading part is greater than one, a partition is provided in the honey jar loading space formed between the left loading part and the right loading part, and the honey jar loading space is divided into multiple parts by the partition.

[0010] Preferably, the left loading part and the right loading part both include a first folding surface, a second folding surface, a third folding surface, a fourth folding surface, a fifth folding surface, a sixth folding surface, and a seventh folding surface cut and formed from a corrugated cardboard and connected in sequence, a first card folding surface and a second card folding surface formed respectively on opposite sides of the width direction of the second folding surface, a first triangular folding surface and a second triangular folding surface formed respectively on opposite sides of the width direction of the third folding surface, a first isosceles triangular folding surface and a first isosceles trapezoidal folding surface formed respectively on opposite sides of the width direction of the fourth folding surface, a second isosceles triangular folding surface and a third isosceles triangular folding surface formed on one side of the waist of the first isosceles triangular folding surface and connected in sequence, a fourth isosceles triangular folding surface, a fifth isosceles triangular folding surface, a second isosceles trapezoidal folding surface, a first tongue, a an isosceles trapezoidal folding surface away from one side of the fourth folding surface and sequentially connected to an eighth folding surface, a third isosceles trapezoidal folding surface, a second tongue, a third triangular folding surface and a fourth triangular folding surface formed on opposite sides of the width direction of the fifth folding surface, and a third locking surface and a fourth locking surface formed on opposite sides of the width direction of the sixth folding surface; at least one first trapezoidal groove is opened on the free side of the first folding surface along its length direction, and at least one second trapezoidal groove corresponding to the first trapezoidal groove is opened on the free side of the seventh folding surface along its length direction; at least one first trapezoidal hole is cut across the second folding surface and the third folding surface, and at least one second trapezoidal hole is cut across the fifth folding surface and the sixth folding surface; the first locking surface, the second locking surface, the third locking surface and the fourth locking surface all have locking slots; the number of the first trapezoidal hole and the second trapezoidal hole is set to be equal;

[0011] When the left loading part and the right loading part are respectively in the forming state, the third folding surface, the fifth folding surface, the first isosceles trapezoidal folding surface, and the first isosceles triangular folding surface are all folded upwards, and the fourth triangular folding surface and the second triangular folding surface are folded toward each other and contacted with the first isosceles trapezoidal folding surface. After the first triangular folding surface and the third triangular folding surface are folded toward each other, the second folding surface and the sixth folding surface are both folded inwardly toward one side of the fourth folding surface. After the first folding surface is folded between the second folding surface and the third folding surface, the first folding surface is glued and connected to the third folding surface. After the seventh folding surface is folded between the fifth folding surface and the sixth folding surface, the seventh folding surface is glued and connected to the fifth folding surface. After the first locking surface and the third locking surface are folded toward each other, the locking slots of the first locking surface and the third locking surface are correspondingly snap-connected. After the fourth locking surface and the second locking surface are folded toward each other, the locking slots of the fourth locking surface and the second locking surface are correspondingly snap-connected. The buckle connection is such that the eighth folding surface is folded horizontally 90°, the third isosceles trapezoidal folding surface is folded downward 90°, and the second inserting tongue is folded 90° toward one side of the first isosceles trapezoidal folding surface and then contacts the fourth folding surface. After the second isosceles triangle folding surface and the fourth isosceles triangle folding surface are folded upward along the side waist of the first isosceles triangle folding surface, the second isosceles triangle folding surface is in contact with the first triangle folding surface, the fourth isosceles triangle folding surface is in contact with the third triangle folding surface, the third isosceles triangle folding surface is folded horizontally toward one side of the fourth isosceles triangle folding surface, the fifth isosceles triangle folding surface is folded horizontally toward one side of the second isosceles triangle folding surface and then contacts the third isosceles triangle folding surface. The second isosceles trapezoidal folding surface is folded downward 90°, and the first inserting tongue is folded 90° toward one side of the first isosceles triangle folding surface and then contacts the fourth folding surface; the first trapezoidal hole and the second trapezoidal hole form the fitting groove.

[0012] Preferably, an outward folding surface is cut across the second isosceles triangle folding surface, the first isosceles triangle folding surface, and the fourth isosceles triangle folding surface; when the packaging body is in a formed state, a handle portion is formed between the outward folding surfaces of the left loading portion and the right loading portion.

[0013] Preferably, when the number of the first trapezoidal holes is M, and M>1, the number of the first interlocking holes orderly and evenly distributed on the second folding surface along its length direction is D, and D=M-1; the sixth folding surface is orderly and evenly distributed on the second interlocking holes along its length direction; the number of the first interlocking holes is equal to the number of the second interlocking holes; and a partition insertion space is formed between the first interlocking holes and the second interlocking holes on opposite sides.

[0014] Preferably, a third inserting tongue is formed on the side of the second isosceles triangular folding surface close to the first triangular folding surface, and a first inserting tongue hole for inserting the third inserting tongue is formed at the connection between the first triangular folding surface and the third folding surface; a fourth inserting tongue is formed on the side of the fourth isosceles triangular folding surface close to the third triangular folding surface, and a second inserting tongue hole for inserting the fourth inserting tongue is formed at the connection between the third triangular folding surface and the fifth folding surface.

[0015] The beneficial effects of the utility model are: on the basis of ensuring that the honey jar can be stored normally, it can also realize three forms of display, and when in the second display form, multiple honey jars can be stacked and placed, which has strong functionality, realizes secondary use, and has a good display effect, greatly enhancing the user's desire to buy, and the full corrugated paper structure conforms to the concept of environmental protection. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a perspective view of the first embodiment.

[0017] Figure 2 This is a three-dimensional view of the first embodiment in a first display state.

[0018] Figure 3 This is a three-dimensional view of the first embodiment in the second display state.

[0019] Figure 4 This is a perspective view of the first embodiment in the second display state (stacked state).

[0020] Figure 5 This is a three-dimensional view of the first embodiment in the third display state.

[0021] Figure 6 It is a planar expansion view of the left loading portion and the right loading portion in the first embodiment.

[0022] Figure 7 It is a perspective view of the second embodiment.

[0023] The reference numerals are: first folding surface 10, second folding surface 11, third folding surface 12, fourth folding surface 13, fifth folding surface 14, sixth folding surface 15, seventh folding surface 16, first clamping surface 17, first triangular folding surface 20, second triangular folding surface 19, first inserting tongue hole 21, third triangular folding surface 22, second inserting tongue hole 23, first isosceles trapezoidal folding surface 24, eighth folding surface 25, third isosceles trapezoidal folding surface 26, second inserting tongue 27, fourth triangular folding surface 28, third clamping surface 29, fourth clamping surface 30, second isosceles triangular folding surface 32, third Isosceles triangle folding surface 31, first isosceles triangle folding surface 33, fourth isosceles triangle folding surface 34, fifth isosceles triangle folding surface 35, second isosceles trapezoidal folding surface 36, first inserting tongue 37, outward-turning folding surface 38, third inserting tongue 39, fourth inserting tongue 40, second locking folding surface 41, first trapezoidal hole 42, second trapezoidal hole 43, first trapezoidal groove 44, first fitting hole 45, second fitting hole 46, second trapezoidal groove 47, left loading portion 48, right loading portion 49, connecting plate 51, partition 50, honey jar 52, insertion hole 53, handle portion 55. DETAILED DESCRIPTION

[0024] In order to further understand the features, technical means, and specific objectives and functions achieved by the present invention, the present invention is described in further detail below in conjunction with specific implementation methods and accompanying drawings.

[0025] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; they can refer to mechanical connection or electrical connection; they can refer to direct connection or indirect connection through an intermediate medium; they can refer to internal communication between two components. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to the specific circumstances.

[0026] First embodiment, please refer to Figure 1-6 As shown, the utility model provides a honey package with a transformable display mode, including a package body, the package body including a left loading portion 48, a right loading portion 49, and a connecting plate 51; the left loading portion 48 and the right loading portion 49 are arranged vertically side by side and the bottoms of both are bonded and fixed to the connecting plate 51; the left loading portion 48 and the right loading portion 49 form a hexagon when arranged vertically side by side; a honey jar loading space is formed between the left loading portion 48 and the right loading portion 49; the left loading portion 48 and the right loading portion 49 are each cross-cut with an engaging groove corresponding to the shape of a honey jar 52 along their length direction, and the engaging grooves on opposite sides form an insertion hole 53 perpendicular to the package body; the connecting plate 51 is set as a corrugated cardboard;

[0027] When in the first display state, the bottoms of the left loading portion 48 and the right loading portion 49 are split apart at the connecting plate 51, so that the left loading portion 48 and the right loading portion 49 form a straight line arrangement, directly displaying the honey jar 52 placed in the honey jar loading space;

[0028] When in the second display state, based on the first display state, the honey jar 52 is horizontally inserted into the insertion groove;

[0029] When in the third display state, the honey jar 52 is inserted transversely into the insertion hole 53 and forms a vertical relationship with the packaging body.

[0030] The number of fitting grooves provided in the left loading section 48 and the right loading section 49 is N, where N ≥ 1. In this embodiment, the number of fitting grooves is two. If the number of fitting grooves provided in the left loading section 48 and the right loading section 49 is greater than one, a partition 50 is provided within the honey jar loading space formed between the left loading section 48 and the right loading section 49, thereby dividing the honey jar loading space into multiple compartments. In this embodiment, since the number of fitting grooves is two, a single partition 50 is provided, thereby forming two honey jar loading spaces.

[0031] In this embodiment, the left loading portion 48 and the right loading portion 49 each include a first folding surface 10, a second folding surface 11, a third folding surface 12, a fourth folding surface 13, a fifth folding surface 14, a sixth folding surface 15, and a seventh folding surface 16 cut and formed from a corrugated cardboard and connected in sequence, a first locking folding surface 17 and a second locking folding surface 41 formed on opposite sides of the second folding surface 11 in the width direction, a first triangular folding surface 20 and a second triangular folding surface 19 formed on opposite sides of the third folding surface 12 in the width direction, a first isosceles triangular folding surface 33 and a first isosceles trapezoidal folding surface 24 formed on opposite sides of the fourth folding surface 13 in the width direction, a second isosceles triangular folding surface 32 and a third isosceles triangular folding surface 31 formed on one side of the first isosceles triangular folding surface 33 and connected in sequence, a fourth isosceles triangular folding surface 34, a fifth isosceles triangular folding surface 35, a second isosceles trapezoidal folding surface 36, a first inserting tongue 37, The eighth folding surface 25, the third isosceles trapezoidal folding surface 26, the second tongue 27, the third triangular folding surface 22 and the fourth triangular folding surface 28 formed on the opposite sides of the width direction of the fifth folding surface 14, and the third locking folding surface 29 and the fourth locking folding surface 30 formed on the opposite sides of the width direction of the sixth folding surface 15 are formed on the free side of the first folding surface 10 along its length. At least one first trapezoidal groove 44 is opened, and the seventh folding surface 16 is formed. At least one second trapezoidal groove 47 corresponding to the first trapezoidal groove 44 is formed on the free side along its length; at least one first trapezoidal hole 42 is cut across the second folding surface 11 and the third folding surface 12, and at least one second trapezoidal hole 43 is cut across the fifth folding surface 14 and the sixth folding surface 15; the first card folding surface 17, the second card folding surface 41, the third card folding surface 29, and the fourth card folding surface 30 are all provided with a card slot 54; the number of the first trapezoidal holes 42 and the second trapezoidal holes 43 is set to be equal;

[0032] When the left loading portion 48 and the right loading portion 49 are in the forming state, the third folding surface 12, the fifth folding surface 14, the first isosceles trapezoidal folding surface 24, and the first isosceles triangular folding surface 33 are all folded upward, and the fourth triangular folding surface 28 and the second triangular folding surface 19 are folded toward each other and contacted with the first isosceles trapezoidal folding surface 24. After the first triangular folding surface 20 and the third triangular folding surface 22 are folded toward each other, the second folding surface 11 and the sixth folding surface 15 are folded inward toward the side of the fourth folding surface 13, and the first folding surface 10 is close to the first folding surface 13. After being folded between the second folding surface 11 and the third folding surface 12, the first folding surface 10 is glued and connected to the third folding surface 12. After the seventh folding surface 16 is folded between the fifth folding surface 14 and the sixth folding surface 15, the seventh folding surface 16 is glued and connected to the fifth folding surface 14. After the first card folding surface 17 and the third card folding surface 29 are folded toward each other, the card slots 54 of the first card folding surface 17 and the third card folding surface 29 are correspondingly snap-connected. After the fourth card folding surface 30 and the second card folding surface 41 are folded toward each other, the card slots of the fourth card folding surface 30 and the second card folding surface 41 are correspondingly snap-connected. 54 corresponds to the buckle connection, the eighth folding surface 25 is horizontally folded 90 degrees, the third isosceles trapezoidal folding surface 26 is folded downward 90 degrees, the second tongue 27 is horizontally folded 90 degrees to the side of the first isosceles trapezoidal folding surface 24 and then in contact with the fourth folding surface 13, the second isosceles triangle folding surface 32 and the fourth isosceles triangle folding surface 34 are both folded upward along the side waist of the first isosceles triangle folding surface 33, the second isosceles triangle folding surface 32 is in contact with the first triangle folding surface 20, the fourth isosceles triangle folding surface 34 is in contact with the third triangle folding surface The third isosceles triangle folding surface 31 is horizontally folded toward one side of the fourth isosceles triangle folding surface 34, the fifth isosceles triangle folding surface 35 is horizontally folded toward one side of the second isosceles triangle folding surface 32 and is in contact with the third isosceles triangle folding surface 31, the second isosceles trapezoidal folding surface 36 is folded downward by 90°, and the first inserting tongue 37 is folded 90° toward one side of the first isosceles triangle folding surface 33 and is in contact with the fourth folding surface 13; the first trapezoidal hole 42 and the second trapezoidal hole 43 form a fitting groove.

[0033] Preferably, an outward-turned folding surface 38 is cut across the second isosceles triangular folding surface 32, the first isosceles triangular folding surface 33, and the fourth isosceles triangular folding surface 34. When the package body is in the formed state, a handle portion 55 is formed between the outward-turned folding surfaces 38 of the left loading portion 48 and the right loading portion 49. The provision of the handle portion 55 makes the package structure easy to carry. At the same time, the outward-turned folding surfaces 38 on both sides resemble bee wings in appearance, enhancing the decorative effect of the package structure.

[0034] Preferably, when the number of first trapezoidal holes 42 is M, and M>1, in this embodiment, the number of first trapezoidal holes 42 is set to 2, and the number of first fitting holes 45 orderly and evenly distributed along the length of the second folding surface 11 is D, and D=M-1. Therefore, in this embodiment, the number of first fitting holes 45 orderly and evenly distributed along the length of the second folding surface 11 is 1, and the second fitting hole 46 orderly and evenly distributed along the length of the sixth folding surface 15 is provided. In this embodiment, the number of first fitting holes 45 and second fitting holes 46 is equal, both being 1. A space for inserting a partition 50 is formed between the first fitting holes 45 and the second fitting holes 46 on opposite sides. The partition 50 is formed by folding a corrugated cardboard.

[0035] Preferably, a third inserting tongue 39 is formed on the side of the second isosceles triangular folding surface 32 that faces the first triangular folding surface 20, and a first inserting tongue hole 21 for inserting the third inserting tongue 39 is formed at the connection between the first triangular folding surface 20 and the third folding surface 12. A fourth inserting tongue 40 is formed on the side of the fourth isosceles triangular folding surface 34 that faces the third triangular folding surface 22, and a second inserting tongue hole 23 for inserting the fourth inserting tongue 40 is formed at the connection between the third triangular folding surface 22 and the fifth folding surface 14. The mating structure of the inserting tongues and the inserting tongue holes ensures that the packaging body will not deform.

[0036] This embodiment, on the basis of ensuring that the honey jar can be stored normally, can also realize three forms of display, and when in the second display form, multiple honey jars can be stacked and placed, which has strong functionality, realizes secondary use, and has a good display effect, greatly enhancing the user's desire to buy, and the full corrugated paper structure is in line with the concept of environmental protection.

[0037] For the second implementation, please refer to Figure 7 As shown, the difference from the first embodiment is that the left loading part 48 and the right loading part 49 are provided with one fitting groove, thereby forming one insertion hole 53, which can normally accommodate one bee jar. When in the first display state, only one bee jar can be displayed; when in the second display state, at least two sealed jars can be displayed; when in the third display state, only one bee jar can be displayed.

[0038] The above-described embodiment merely represents one embodiment of the present invention. While the description is relatively specific and detailed, it should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.

Claims

1. A honey package with a changeable display mode, comprising a package body, characterized in that: The packaging body comprises a left loading portion (48), a right loading portion (49), and a connecting plate (51); the left loading portion (48) and the right loading portion (49) are arranged vertically side by side and their bottoms are both bonded and fixed to the connecting plate (51); the left loading portion (48) and the right loading portion (49) form a hexagon when they are arranged vertically side by side; a honey jar loading space is formed between the left loading portion (48) and the right loading portion (49); the left loading portion (48) and the right loading portion (49) are both cross-cut with an interlocking groove corresponding to the shape of the honey jar (52) along their length direction, and the interlocking grooves on opposite sides form a socket (53) perpendicular to the packaging body; When in a normal storage state, the honey jar (52) is stored vertically in the honey jar loading space; When in the first display state, the bottoms of the left loading portion (48) and the right loading portion (49) are split apart at the connecting plate (51), so that the left loading portion (48) and the right loading portion (49) form a straight-line arrangement state, directly displaying the honey jar (52) placed in the honey jar loading space; When in the second display state, based on the first display state, the honey jar (52) is correspondingly placed in the embedding groove in a horizontal manner; When in the third display state, the honey jar (52) is inserted transversely into the insertion hole (53) and forms a vertical relationship with the packaging body.

2. The honey packaging with a changeable display mode according to claim 1, characterized in that: The number of engagement grooves provided on the left loading portion (48) and the right loading portion (49) is N, where N≥1.

3. The honey packaging with a changeable display mode according to claim 2, characterized in that: When the number of the engaging grooves provided on the left loading part (48) and the right loading part (49) is greater than one, a partition (50) is provided in the honey jar loading space formed between the left loading part (48) and the right loading part (49), and the honey jar loading space is divided into a plurality of parts by the partition (50).

4. The honey package with a changeable display mode according to claim 3, characterized in that: The left loading portion (48) and the right loading portion (49) each comprise a first folding surface (10), a second folding surface (11), a third folding surface (12), a fourth folding surface (13), a fifth folding surface (14), a sixth folding surface (15), a seventh folding surface (16), which are cut and formed from a corrugated cardboard and connected in sequence, a first card folding surface (17) and a second card folding surface (41) formed on opposite sides of the second folding surface (11) in the width direction, a first triangular folding surface (20) and a second triangular folding surface (19) formed on opposite sides of the third folding surface (12) in the width direction, and a first card folding surface (17) and a second card folding surface (41) formed on opposite sides of the third folding surface (12) in the width direction, A first isosceles triangular folding surface (33) and a first isosceles trapezoidal folding surface (24) formed on opposite sides of the fourth folding surface (13) in the width direction, a second isosceles triangular folding surface (32) and a third isosceles triangular folding surface (31) formed on one side of the waist of the first isosceles triangular folding surface (33) and connected in sequence, a fourth isosceles triangular folding surface (34), a fifth isosceles triangular folding surface (35), a second isosceles trapezoidal folding surface (36), a first tongue (37), and a second isosceles trapezoidal folding surface ( an eighth folding surface (25) which is away from the fourth folding surface (13) and is sequentially connected to the eighth folding surface (25), a third isosceles trapezoidal folding surface (26), a second inserting tongue (27), a third triangular folding surface (22) and a fourth triangular folding surface (28) formed on opposite sides of the width direction of the fifth folding surface (14), and a third locking folding surface (29) and a fourth locking folding surface (30) formed on opposite sides of the width direction of the sixth folding surface (15); the free side of the first folding surface (10) is provided with at least one first trapezoidal groove (44) along its length direction, and the free side of the seventh folding surface (16) is provided with a first trapezoidal groove (44) along its length direction. At least one second trapezoidal groove (47) corresponding to the first trapezoidal groove (44) is provided; at least one first trapezoidal hole (42) is cut across the second folding surface (11) and the third folding surface (12); at least one second trapezoidal hole (43) is cut across the fifth folding surface (14) and the sixth folding surface (15); the first card folding surface (17), the second card folding surface (41), the third card folding surface (29), and the fourth card folding surface (30) are all provided with a card slot (54); the number of the first trapezoidal holes (42) and the second trapezoidal holes (43) are set to be equal; When the left loading portion (48) and the right loading portion (49) are respectively in the forming state, the third folding surface (12), the fifth folding surface (14), the first isosceles trapezoidal folding surface (24), and the first isosceles triangular folding surface (33) are all folded upwards, and the fourth triangular folding surface (28) and the second triangular folding surface (19) are folded toward each other and come into contact with the first isosceles trapezoidal folding surface (24). After the first triangular folding surface (20) and the third triangular folding surface (22) are folded toward each other, the second folding surface (11) and the sixth folding surface (15) are both folded inwards toward the fourth folding surface (13), and the first folding surface (10) is folded toward the first folding surface (11). After the second folding surface (11) and the third folding surface (12) are folded together, the first folding surface (10) and the third folding surface (12) are glued together. After the seventh folding surface (16) is folded between the fifth folding surface (14) and the sixth folding surface (15), the seventh folding surface (16) and the fifth folding surface (14) are glued together. After the first locking surface (17) and the third locking surface (29) are folded together, the locking grooves (54) of the first locking surface (17) and the third locking surface (29) are correspondingly snap-fitted together. After the fourth locking surface (30) and the second locking surface (41) are folded together, the fourth locking surface (30) and The card slot (54) of the second card folding surface (41) corresponds to the buckle connection, the eighth folding surface (25) is horizontally folded 90 degrees, the third isosceles trapezoidal folding surface (26) is folded downward 90 degrees, the second inserting tongue (27) is horizontally folded 90 degrees toward the side of the first isosceles trapezoidal folding surface (24) and then contacts the fourth folding surface (13), the second isosceles triangular folding surface (32) and the fourth isosceles triangular folding surface (34) are both folded upward along the side waist of the first isosceles triangular folding surface (33), the second isosceles triangular folding surface (32) contacts the first triangular folding surface (20), the fourth isosceles triangular folding surface (34) is horizontally folded 90 degrees, and the second isosceles triangular folding surface (32) contacts the first triangular folding surface (20), and the fourth isosceles triangular folding surface (34) is horizontally folded 90 degrees toward the side of the first isosceles triangular folding surface (24). ) is in contact with the third triangular folding surface (22), the third isosceles triangular folding surface (31) is folded horizontally toward one side of the fourth isosceles triangular folding surface (34), the fifth isosceles triangular folding surface (35) is folded horizontally toward one side of the second isosceles triangular folding surface (32) and is in contact with the third isosceles triangular folding surface (31), the second isosceles trapezoidal folding surface (36) is folded downward by 90°, the first inserting tongue (37) is folded by 90° toward one side of the first isosceles triangular folding surface (33) and is in contact with the fourth folding surface (13); the first trapezoidal hole (42) and the second trapezoidal hole (43) form the fitting groove.

5. The honey package with a changeable display mode according to claim 4, characterized in that: An outward-turning folding surface (38) is cut across the second isosceles triangular folding surface (32), the first isosceles triangular folding surface (33), and the fourth isosceles triangular folding surface (34); when the packaging body is in a formed state, a handle portion (55) is formed between the outward-turning folding surfaces (38) of the left loading portion (48) and the right loading portion (49).

6. The honey package with a changeable display mode according to claim 4, characterized in that: When the number of the first trapezoidal holes (42) is M, and M>1, the number of the first interlocking holes (45) distributed in an orderly and uniform manner on the second folding surface (11) along its length direction is D, and D=M-1; the second interlocking holes (46) are distributed in an orderly and uniform manner on the sixth folding surface (15) along its length direction; the number of the first interlocking holes (45) is equal to the number of the second interlocking holes (46); and a space for inserting a partition plate (50) is formed between the first interlocking holes (45) and the second interlocking holes (46) on opposite sides.

7. The honey package with a changeable display mode according to claim 4, characterized in that: A third inserting tongue (39) is formed on the side of the second isosceles triangular folding surface (32) close to the first triangular folding surface (20), and a first inserting tongue hole (21) for inserting the third inserting tongue (39) is formed at the connection between the first triangular folding surface (20) and the third folding surface (12); a fourth inserting tongue (40) is formed on the side of the fourth isosceles triangular folding surface (34) close to the third triangular folding surface (22), and a second inserting tongue hole (23) for inserting the fourth inserting tongue (40) is formed at the connection between the third triangular folding surface (22) and the fifth folding surface (14).