CN219584674U - Double-layer abnormal-shape firm Gao Chengchong card box structure - Google Patents

Double-layer abnormal-shape firm Gao Chengchong card box structure Download PDF

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Publication number
CN219584674U
CN219584674U CN202320720015.XU CN202320720015U CN219584674U CN 219584674 U CN219584674 U CN 219584674U CN 202320720015 U CN202320720015 U CN 202320720015U CN 219584674 U CN219584674 U CN 219584674U
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folding surface
folding
linkage
integrally formed
hole
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陆宗贵
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Shenzhen Voion Colour Box & Paper Co ltd
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Shenzhen Voion Colour Box & Paper Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/80Packaging reuse or recycling, e.g. of multilayer packaging

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Abstract

The utility model provides a double-layer abnormal-shaped stable Gao Chengchong card box structure which comprises a first folding surface, a second folding surface, a third folding surface and a fourth folding surface which are formed by cutting paper, wherein the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are all isosceles triangular surfaces with the same shape, the first folding surface and the second folding surface are arranged in a way of sharing a waist line, the second folding surface and the third folding surface are arranged in a way of sharing a waist line, and the third folding surface and the fourth folding surface are arranged in a way of sharing a waist line; the bottom edge of the first folding surface is integrally formed with a fifth folding surface, the bottom edge of the second folding surface is integrally formed with a sixth folding surface, the bottom edge of the third folding surface is integrally formed with a seventh folding surface, and the bottom edge of the fourth folding surface is integrally formed with an eighth folding surface; the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are all isosceles trapezoid surfaces with the same shape; the surface layer structure is regular in arrangement, has good bearing capacity, is not easy to collapse, is convenient to fold and set by equipment assistance, and improves the molding efficiency.

Description

Double-layer abnormal-shape firm Gao Chengchong card box structure
Technical Field
The utility model relates to the technical field of packaging, in particular to a double-layer abnormal-shape stable Gao Chengchong card box structure.
Background
The Chinese authorized bulletin number CN 216003374U, authorized bulletin day 2022, 03 and 11, provides a 3D diamond-shaped folding packaging box, which comprises a box body, an inner support and a waist wind, wherein the box body is an outer box surface; the outer box surface comprises a side surface area, a bottom surface area and an inserting area, the inner support comprises a bottom support and a dust cover, a support column is further arranged in the center of the bottom support, a tray is sleeved on the support column, and the waist wind comprises a waist wind surface area and a waist wind inserting area. The beneficial effects of the utility model are as follows: the packaging box with the 3D stereoscopic diamond shape is formed by fixing plane paper, PET, PVC and the like through folding and inserting holes. The packaging and shipping volume is reduced, the logistics cost is saved, the single-box eyelash loading quantity is improved, the modeling breakthrough is realized, and the manufacturing cost of the traditional fine mounting paper box is greatly reduced. The waist wind design collocation is adopted, so that the printing cost is reduced, the form is flexible, and the real small-batch personalized customization can be realized. The prior art has the following defects: the whole surface layer is relatively complex to set up, and the step is many when leading to folding and setting up the shaping, has reduced efficiency to, because the setting of surface layer is irregular, is difficult to fold through equipment assistance and establishes, can only rely on the manual work, thereby leads to fashioned efficiency to receive the restriction, in view of this situation, need to improve urgently.
Disclosure of Invention
Based on the structure, the utility model aims to provide a double-layer abnormal-shape stable Gao Chengchong card box structure, which has the advantages of regular surface layer structure arrangement, good bearing capacity, difficult bottom collapse, convenience for equipment auxiliary folding and forming and improvement of forming efficiency.
The utility model provides a double-layer abnormal-shaped stable Gao Chengchong card box structure which comprises a first folding surface, a second folding surface, a third folding surface and a fourth folding surface which are formed by cutting paper, wherein the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are all isosceles triangular surfaces with the same shape, the first folding surface and the second folding surface are arranged in a way of sharing a waist line, the second folding surface and the third folding surface are arranged in a way of sharing a waist line, and the third folding surface and the fourth folding surface are arranged in a way of sharing a waist line;
a fifth folding surface is integrally formed at the bottom edge of the first folding surface, a sixth folding surface is integrally formed at the bottom edge of the second folding surface, a seventh folding surface is integrally formed at the bottom edge of the third folding surface, and an eighth folding surface is integrally formed at the bottom edge of the fourth folding surface; the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are all isosceles trapezoid surfaces with the same shape;
a first linkage folding surface is uniformly and integrally formed at the side waist of one side opposite to the fifth folding surface and the sixth folding surface; a second linkage folding surface is uniformly and integrally formed at the side waist part of one side opposite to the sixth folding surface and the seventh folding surface; a third linkage folding surface is uniformly and integrally formed at the side waist of the opposite side of the seventh folding surface and the eighth folding surface; the first linkage folding surface, the second linkage folding surface and the third linkage folding surface are the same in shape;
a first fitting surface is formed at one side waist of the fourth folding surface far away from the third folding surface; a second fitting surface is formed at one side waist of the eighth folding surface far away from the third linkage folding surface; a third fitting surface is formed at one side waist of the fifth folding surface far away from the first linkage folding surface;
a first bottom folding surface is formed at the upper edge of the fifth folding surface, a second bottom folding surface is formed at the upper edge of the sixth folding surface, a third bottom folding surface is formed at the upper edge of the seventh folding surface, and a fourth bottom folding surface is formed at the upper edge of the eighth folding surface;
a first outward turning fastening surface is cut at the middle part of the first bottom folding surface, and a fastening through hole is cut at the position of the third bottom folding surface corresponding to the first outward turning fastening surface;
a tongue inserting surface is formed on one side, far away from the sixth folding surface, of the second bottom folding surface, and a first inserting hole for inserting the tongue inserting surface is formed at a bending position between the eighth folding surface and the fourth bottom folding surface;
the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are sequentially folded and arranged to enclose a pyramid-shaped upper box body layer, the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are sequentially folded and arranged to enclose a box body bottom layer with side sections in an isosceles trapezoid shape, and the first bottom folding surface, the second bottom folding surface, the third bottom folding surface and the fourth bottom folding surface are oppositely folded and arranged to form a box body bottom surface.
Preferably, a second jack is cut in the middle of the bending part of the tongue inserting surface and the sixth bending surface; and a second outward turning fastening surface which is inserted into the second jack correspondingly is cut at the position of the fourth bottom folding surface corresponding to the first jack.
Preferably, a first through hole is cut on one side, far away from the fifth folding surface, of the first folding surface, a second through hole corresponding to the first through hole is cut on one side, far away from the seventh folding surface, of the third folding surface, and the first through hole and the second through hole form a hanging part of the handle belt.
Preferably, the middle parts of the first linkage folding surface, the second linkage folding surface and the third linkage folding surface are divided into two trapezoid folding surfaces with the same shape through folding lines.
Preferably, a fourth bonding surface is formed on one side of the second bonding surface away from the eighth folding surface.
The beneficial effects of the utility model are as follows: the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are sequentially folded and arranged to enclose a pyramid-shaped box body upper layer, the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are sequentially folded and arranged to enclose a box body lower layer with isosceles trapezoid-shaped side sections, the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are all isosceles triangular surfaces with the same shape, the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are all isosceles trapezoid-shaped surfaces with the same shape, the surface layer structure is regular, the auxiliary folding and forming by equipment are facilitated, and the forming efficiency is improved; the first bottom folding surface, the second bottom folding surface, the third bottom folding surface and the fourth bottom folding surface are oppositely folded to form the bottom surface of the box body, when the box body is in a forming state, the first bottom folding surface and the third bottom folding surface are oppositely folded and arranged and then correspondingly inserted into the fastening through holes by the first outward turning fastening surface to realize first-layer fastening, and then the second bottom folding surface and the fourth bottom folding surface are oppositely folded and arranged and then correspondingly inserted into the first insertion holes by the inserting tongue surface to realize double-layer fastening, so that the box body has good bearing capacity and is not easy to collapse.
Drawings
Fig. 1 is a plan expanded view of the present utility model.
Fig. 2 is a schematic view of the upper layer of the case.
Fig. 3 is a schematic view of a bottom layer of the case.
Fig. 4 is a schematic view of a folded bottom surface of the case.
Fig. 5 is a schematic view of the present utility model in a molded state.
The reference numerals are: first bottom flap 11, first valgus clasp 12, fifth flap 13, first linkage flap 14, second linkage flap 15, second flap 16, second bottom flap 17, tongue insertion surface 18, sixth flap 19, first receptacle 20, second receptacle 21, third flap 22, clasp through hole 23, third bottom flap 24, seventh flap 25, fourth bottom flap 26, second valgus clasp 27, eighth flap 28, second attachment surface 29, fourth flap 30, first attachment surface 31, second through hole 32, first through hole 33, first flap 34, third linkage flap 35, fourth attachment surface 36.
Detailed Description
The utility model will be further described in detail with reference to the following detailed description and the accompanying drawings, in order to further understand the features and technical means of the utility model and the specific objects and functions achieved.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and include, for example, either permanently connected, removably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
Referring to fig. 1-5, the present utility model provides a dual-layer special-shaped Gao Chengchong cartridge structure, which comprises a first folding surface 34, a second folding surface 16, a third folding surface 22 and a fourth folding surface 30 formed by cutting paper, wherein the first folding surface 34, the second folding surface 16, the third folding surface 22 and the fourth folding surface 30 are all isosceles triangular surfaces with the same shape, the first folding surface 34 and the second folding surface 16 are arranged in a common waist line, the second folding surface 16 and the third folding surface 22 are arranged in a common waist line, and the third folding surface 22 and the fourth folding surface 30 are arranged in a common waist line;
the bottom edge of the first folding surface 34 is integrally formed with a fifth folding surface 13, the bottom edge of the second folding surface 16 is integrally formed with a sixth folding surface 19, the bottom edge of the third folding surface 22 is integrally formed with a seventh folding surface 25, and the bottom edge of the fourth folding surface 30 is integrally formed with an eighth folding surface 28; the fifth folding surface 13, the sixth folding surface 19, the seventh folding surface 25 and the eighth folding surface 28 are all isosceles trapezoid surfaces with the same shape;
the first linkage folding surface 14 is uniformly and integrally formed at the side waist of the opposite side of the fifth folding surface 13 and the sixth folding surface 19; the second linkage folding surface 15 is uniformly and integrally formed at the side waist of the opposite side of the sixth folding surface 19 and the seventh folding surface 25; a third linkage folding surface 35 is uniformly and integrally formed at the side waist of the opposite side of the seventh folding surface 25 and the eighth folding surface 28; the first linkage folded surface 14, the second linkage folded surface 15 and the third linkage folded surface 35 have the same shape;
the waist of the side of the fourth folding surface 30 far away from the third folding surface 22 is provided with a first bonding surface 31; a second fitting surface 29 is formed at one side waist of the eighth folding surface 28 far from the third linkage folding surface 35; a third fitting surface 10 is formed at one side waist of the fifth folding surface 13 far away from the first linkage folding surface 14;
the upper edge of the fifth folding surface 13 is provided with a first bottom folding surface 11, the upper edge of the sixth folding surface 19 is provided with a second bottom folding surface 17, the upper edge of the seventh folding surface 25 is provided with a third bottom folding surface 24, and the upper edge of the eighth folding surface 28 is provided with a fourth bottom folding surface 26;
the middle part of the first bottom folding surface 11 is provided with a first outward turning fastening surface 12, and the position of the third bottom folding surface 24 corresponding to the first outward turning fastening surface 12 is provided with a fastening through hole 23;
a tongue inserting surface 18 is formed on one side, far away from the sixth folding surface 19, of the second bottom folding surface 17, and a first inserting hole 20 for inserting the tongue inserting surface 18 is formed at a bending part between the eighth folding surface 28 and the fourth bottom folding surface 26;
the first folding surface 34, the second folding surface 16, the third folding surface 22 and the fourth folding surface 30 are sequentially folded and arranged to form a pyramid-shaped upper box body layer, the fifth folding surface 13, the sixth folding surface 19, the seventh folding surface 25 and the eighth folding surface 28 are sequentially folded and arranged to form a box body bottom layer with isosceles trapezoid side sections, and the first bottom folding surface 11, the second bottom folding surface 17, the third bottom folding surface 24 and the fourth bottom folding surface 26 are oppositely folded and arranged to form a box body bottom surface.
A second jack 21 is cut in the middle of the bending part of the tongue inserting surface 18 and the sixth bending surface 19; the fourth bottom folded surface 26 is provided with a second flip-up fastening surface 27 which is inserted into the second jack 21 correspondingly at a position corresponding to the first jack 20.
The side of the first folding surface 34 far away from the fifth folding surface 13 is provided with a first through hole 33, the side of the third folding surface 22 far away from the seventh folding surface 25 is provided with a second through hole 32 corresponding to the first through hole 33, and the first through hole 33 and the second through hole 32 form a hanging part of the handle belt.
The middle parts of the first linkage folding surface 14, the second linkage folding surface 15 and the third linkage folding surface 35 are divided into two trapezoid folding surfaces with the same shape through folding lines.
Preferably, a fourth bonding surface 36 is formed on a side of the second bonding surface 29 away from the eighth folding surface 28.
The first folding surface, the second folding surface, the third folding surface and the fourth folding surface are sequentially folded and arranged to form a pyramid-shaped upper box body layer, and the first bonding surface 31 is tightly bonded with the inner side surface of the first folding surface 34 through glue so as to realize fixation; the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are sequentially folded and arranged to form a box bottom layer with isosceles trapezoid-shaped side sections, the first linkage folding surface 14, the second linkage folding surface 15 and the third linkage folding surface 35 are respectively folded inwards along folding lines, then the third bonding surface 10 and the second bonding surface 29 are respectively folded inwards and then are bonded by glue, and the fourth bonding surface 36 is bonded with the first bonding surface 31 to realize fixation; the first folding surface, the second folding surface, the third folding surface and the fourth folding surface are all isosceles triangular surfaces with the same shape, the fifth folding surface, the sixth folding surface, the seventh folding surface and the eighth folding surface are all isosceles trapezoid surfaces with the same shape, the surface layer structure is arranged regularly, the equipment is convenient for auxiliary folding and forming, and the forming efficiency is improved; the first bottom folding surface, the second bottom folding surface, the third bottom folding surface and the fourth bottom folding surface are oppositely folded to form the bottom surface of the box body.
When the folding device is in a forming state, the first bottom folding surface and the third bottom folding surface are oppositely folded and arranged, then the first valgus fastening surface is inserted into the fastening through hole to realize first-layer fastening, then the second bottom folding surface and the fourth bottom folding surface are oppositely folded and arranged, then the inserting tongue surface is correspondingly inserted into the first inserting hole, and then the second valgus fastening surface is correspondingly inserted into the second inserting hole, so that double-layer fastening is realized, and the folding device has good bearing capacity and is not easy to collapse.
The above examples illustrate only one embodiment of the utility model, which is described in more detail and is not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (5)

1. A double-deck abnormal shape firm Gao Chengchong card box structure, its characterized in that: the paper cutting machine comprises a first folding surface (34), a second folding surface (16), a third folding surface (22) and a fourth folding surface (30), wherein the first folding surface (34), the second folding surface (16), the third folding surface (22) and the fourth folding surface (30) are all isosceles triangular surfaces with the same shape, the first folding surface (34) and the second folding surface (16) are arranged along a waistline, the second folding surface (16) and the third folding surface (22) are arranged along a waistline, and the third folding surface (22) and the fourth folding surface (30) are arranged along a waistline;
a fifth folding surface (13) is integrally formed at the bottom edge of the first folding surface (34), a sixth folding surface (19) is integrally formed at the bottom edge of the second folding surface (16), a seventh folding surface (25) is integrally formed at the bottom edge of the third folding surface (22), and an eighth folding surface (28) is integrally formed at the bottom edge of the fourth folding surface (30); the fifth folding surface (13), the sixth folding surface (19), the seventh folding surface (25) and the eighth folding surface (28) are all isosceles trapezoid surfaces with the same shape;
a first linkage folding surface (14) is uniformly formed at the side waist of the opposite side of the fifth folding surface (13) and the sixth folding surface (19); a second linkage folding surface (15) is uniformly and integrally formed at the side waist part of the opposite side of the sixth folding surface (19) and the seventh folding surface (25); a third linkage folding surface (35) is uniformly and integrally formed at the side waist part of the opposite side of the seventh folding surface (25) and the eighth folding surface (28); the first linkage folding surface (14), the second linkage folding surface (15) and the third linkage folding surface (35) are the same in shape;
a first fitting surface (31) is formed at one side waist of the fourth folding surface (30) far away from the third folding surface (22); a second fitting surface (29) is formed at one side waist of the eighth folding surface (28) far away from the third linkage folding surface (35); a third joint surface (10) is formed at one side waist of the fifth folding surface (13) far away from the first linkage folding surface (14);
a first bottom folding surface (11) is formed at the upper edge of the fifth folding surface (13), a second bottom folding surface (17) is formed at the upper edge of the sixth folding surface (19), a third bottom folding surface (24) is formed at the upper edge of the seventh folding surface (25), and a fourth bottom folding surface (26) is formed at the upper edge of the eighth folding surface (28);
a first outward turning fastening surface (12) is cut at the middle part of the first bottom folding surface (11), and a fastening through hole (23) is cut at the position of the third bottom folding surface (24) corresponding to the first outward turning fastening surface (12);
a tongue inserting surface (18) is formed on one side, far away from the sixth folding surface (19), of the second bottom folding surface (17), and a first inserting hole (20) for inserting the tongue inserting surface (18) is formed at a folding position between the eighth folding surface (28) and the fourth bottom folding surface (26);
the first folding surface (34), the second folding surface (16), the third folding surface (22) and the fourth folding surface (30) are sequentially folded and arranged to enclose a box body upper layer forming a pyramid shape, the fifth folding surface (13), the sixth folding surface (19), the seventh folding surface (25) and the eighth folding surface (28) are sequentially folded and arranged to enclose a box body bottom layer forming an isosceles trapezoid shape in side section, and the first bottom folding surface (11), the second bottom folding surface (17), the third bottom folding surface (24) and the fourth bottom folding surface (26) are oppositely folded and arranged to form a box body bottom surface.
2. A dual layer profile stable Gao Chengchong cartridge structure as claimed in claim 1, wherein: a second jack (21) is cut in the middle of the bending part of the tongue inserting surface (18) and the sixth bending surface (19); and a second outward turning fastening surface (27) which is correspondingly inserted into the second jack (21) is cut at the position corresponding to the first jack (20) on the fourth bottom folding surface (26).
3. A dual layer profile stable Gao Chengchong cartridge structure as claimed in claim 1, wherein: a first through hole (33) is cut on one side, far away from the fifth folding surface (13), of the first folding surface (34), a second through hole (32) corresponding to the first through hole (33) is cut on one side, far away from the seventh folding surface (25), of the third folding surface (22), and the first through hole (33) and the second through hole (32) form a hanging part of the handle belt.
4. A dual layer profile stable Gao Chengchong cartridge structure as claimed in claim 1, wherein: the middle parts of the first linkage folding surface (14), the second linkage folding surface (15) and the third linkage folding surface (35) are divided into two trapezoid folding surfaces with the same shape through folding lines.
5. A dual layer profile stable Gao Chengchong cartridge structure as claimed in claim 1, wherein: a fourth bonding surface (36) is formed on one side of the second bonding surface (29) away from the eighth folding surface (28).
CN202320720015.XU 2023-03-28 2023-03-28 Double-layer abnormal-shape firm Gao Chengchong card box structure Active CN219584674U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320720015.XU CN219584674U (en) 2023-03-28 2023-03-28 Double-layer abnormal-shape firm Gao Chengchong card box structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320720015.XU CN219584674U (en) 2023-03-28 2023-03-28 Double-layer abnormal-shape firm Gao Chengchong card box structure

Publications (1)

Publication Number Publication Date
CN219584674U true CN219584674U (en) 2023-08-25

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Application Number Title Priority Date Filing Date
CN202320720015.XU Active CN219584674U (en) 2023-03-28 2023-03-28 Double-layer abnormal-shape firm Gao Chengchong card box structure

Country Status (1)

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