CN218344245U - Buffering packing box structure - Google Patents

Buffering packing box structure Download PDF

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Publication number
CN218344245U
CN218344245U CN202222549737.1U CN202222549737U CN218344245U CN 218344245 U CN218344245 U CN 218344245U CN 202222549737 U CN202222549737 U CN 202222549737U CN 218344245 U CN218344245 U CN 218344245U
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folding
shaped
box
folded
inner box
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雷锋军
罗光辉
许世发
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Dongguan Zhimei Environmental Protection Packaging Technology Co ltd
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Dongguan Zhimei Environmental Protection Packaging Technology Co ltd
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Abstract

The utility model provides a buffer packing box structure, which comprises an outer box, an inner box arranged in the outer box, a U-shaped stacking pressure-resistant plate A, a U-shaped stacking pressure-resistant plate B, a middle layer clapboard, a first accessory inner box, a second accessory inner box, a third accessory inner box, a first special-shaped splint, a second special-shaped splint, a middle embedded buffer, a top guard plate and a four-L-shaped sealing strip; the middle-layer partition plate, the first buffer part, the second buffer part, the first accessory inner box, the middle embedded buffer part and the third accessory inner box are arranged in an enclosing mode to form a first object containing space; a second object placing space is formed between the first special-shaped clamping plate and the second special-shaped clamping plate; a second accessory inner box which is used for being placed in the product inner cavity is arranged in the second storage space; a first buffer part, a second buffer part and a tubular pressure lever are arranged in the inner box; the first buffer part, the second buffer part and the tubular pressure rod form a third object containing space; the internal structure is compact, and the anti-seismic and anti-falling capability is strong.

Description

Buffering packing box structure
Technical Field
The utility model relates to a corrugated paper packing carton field especially relates to a buffering packing box structure.
Background
The packaging of electric oven products with feet basically adopts a corrugated paper packaging box, in order to reduce the floor area of the packaging box, the electric oven is generally placed in a split mode, and the split electric oven comprises a foot main body, four feet, a foot connecting piece, a foot connecting seat for connecting the foot main body, an oven body chassis connected above the foot connecting seat and an oven body placed on the oven body chassis. Because the part of split is more, generally adopts among the prior art to pile up the mode of placing, only separates with the thick corrugated cardboard of monolithic between each part, and just packs the paper group to vacant space, and the defect that such inner structure set up the existence is: the structure is not compact, and the part takes place easily in outer container inside and rocks or the displacement to the antidetonation is prevented falling the ability weak, can not carry out effectual protection to the product. In view of such circumstances, improvement is urgently required.
SUMMERY OF THE UTILITY MODEL
Based on this, the utility model aims at providing a buffering packing box structure, inner structure is compact, and the antidetonation is prevented falling the ability reinforce.
The utility model provides a buffering packing box structure, which comprises an outer box, an inner box arranged in the outer box, a U-shaped stacking pressure-resistant plate A, a U-shaped stacking pressure-resistant plate B, a middle-layer clapboard, a first accessory inner box, a second accessory inner box, a third accessory inner box, a first special-shaped splint, a second special-shaped splint, a middle embedded buffer part, a top guard plate and a four-L-shaped sealing strip;
the U-shaped stacking pressure-resistant plate A and the U-shaped stacking pressure-resistant plate B are respectively and oppositely attached to two opposite inner side walls in the length direction of the outer box;
the inner box is correspondingly embedded at the bottom of the inner cavity of the outer box and is positioned between the U-shaped stacking pressure resisting plate A and the U-shaped stacking pressure resisting plate B;
the middle-layer partition board is correspondingly arranged on the upper surface of the inner box, a first buffer part which is in contact with the inner side wall of the outer box in an adhering manner is arranged on one side of the width direction of the upper surface of the middle-layer partition board, and a second buffer part which is in contact with the U-shaped stacking pressure-resistant plate A in an adhering manner is arranged on one side of the length direction of the upper surface of the middle-layer partition board;
the upper surface of the middle layer partition plate and the first buffer part are opposite, and a first accessory inner box which is in contact with the inner side wall of the outer box in an attached manner is arranged on the other side of the middle layer partition plate; the other side of the upper surface of the middle layer partition board, which is opposite to the second buffer part, is provided with a third accessory inner box which is in contact with the inner side wall of the outer box in an attaching manner;
the middle position of the upper surface of the middle layer clapboard is provided with a middle embedded buffer piece;
the middle-layer partition plate, the first buffer part, the second buffer part, the first accessory inner box, the middle embedded buffer part and the third accessory inner box are arranged in an enclosing mode to form a first object containing space;
a first special-shaped clamping plate and a second special-shaped clamping plate which are in contact with the inner side wall of the outer box in an attached manner are respectively arranged above the first object placing space and on two opposite sides in the width direction; a second object placing space is formed between the first special-shaped clamping plate and the second special-shaped clamping plate; a second accessory inner box used for being placed in the product inner cavity is arranged in the second storage space;
a top guard plate is arranged above the second object containing space;
and L-shaped sealing strips which are contacted with the inner side wall of the outer box in an attaching manner are arranged at the edges of the four sides of the top protection plate.
As a preferred scheme, a first buffer piece, a second buffer piece and a tubular compression bar are arranged in the inner box; the first buffer piece and the second buffer piece are respectively correspondingly arranged on two opposite sides of the width direction of the inner box and are in contact with the inner side wall of the inner box in an attaching manner; the tubular compression bar correspondingly stretches across the upper part between the first buffer part and the second buffer part; the first buffer part, the second buffer part and the tubular pressure rod form a third object containing space.
Preferably, the middle-layer partition plate comprises a first main folding surface formed by paper, one side of the first main folding surface in the width direction is sequentially folded to form a 4-fold surface A, and the 4-fold surface A is sequentially folded inwards by 90 degrees to form a first buffer part; one side of the first main folding face in the length direction is sequentially folded to form a folding face B of 4, and the folding face B is sequentially folded inwards by 90 degrees to form a second buffer part.
Preferably, the middle embedded buffer member comprises a second main folding surface formed by paper, the second main folding surface is divided into 8 folding surfaces C along the length direction of the second main folding surface by folding lines, a folding line is arranged at the middle position of the second main folding surface along the width direction of the second main folding surface, and the 8 folding surfaces C are folded along the width direction and then sequentially folded from two opposite sides of the length direction in opposite directions to form a double-square middle embedded buffer member; the outer side surfaces of the first folded surface C and the third folded surface C are sequentially arranged and are uniformly formed with reinforced folded surfaces; and when 8, after the folded surface C forms the double-clip-shaped middle embedded buffering member, the two reinforcing folded surfaces are correspondingly folded inwards so as to be correspondingly covered on the upper surface of the double-clip-shaped middle embedded buffering member.
Preferably, the first buffer member comprises a third main folding surface, 4 folding surfaces D are integrally formed on two opposite sides of the third main folding surface along the length direction, 4 folding surfaces E are integrally formed on one side of the third main folding surface along the length direction and at a position far away from the folding surfaces D, the 4 folding surfaces D are folded in 90 degrees opposite to each other, and the 4 folding surfaces E are folded in 90 degrees close to one side of the folding surfaces D; and an embedded abdicating groove corresponding to the tubular pressure lever is formed between the third main folding surface and the two adjacent folding surfaces E in a cutting way.
Preferably, the second buffer member comprises a fourth main folding surface, the fourth main folding surface is divided into 6 folding surfaces F by folding lines along the length direction of the fourth main folding surface, and the fourth main folding surface is integrally formed with 4 folding surfaces G along one side of the fourth main folding surface in the length direction; 4, folding the folded surfaces G close to the folded surfaces F for 180 degrees, and sequentially folding the folded surfaces G for 90 degrees to form a rectangular second buffer piece; and the opposite two sides of the upper surface of the second buffer part are provided with embedded yielding grooves corresponding to the tubular pressing rod.
Preferably, a yielding clamp groove corresponding to the product in shape is formed in one side, close to the second special-shaped clamp plate, of the first special-shaped clamp plate, and a yielding clamp groove corresponding to the product in shape is formed in one side, close to the first special-shaped clamp plate, of the second special-shaped clamp plate.
The utility model has the advantages that: including outer container and the inner box of setting in the outer container, U-shaped pile resists clamp plate A, U-shaped pile resists clamp plate B, the middle level baffle, box in the first accessory, box in the second accessory, first special-shaped splint, second special-shaped splint, middle part gomphosis bolster, the top backplate, four L shape sealing strips, thereby form three thing space of putting, effectively closely accomodate the product and protect the product to avoid damaging in the incasement, compact internal structure, the antidetonation is prevented falling the ability reinforce, can satisfy the clamp of 6A test and 2200 pounds and embrace the requirement.
Drawings
Fig. 1 is a perspective view of the present invention in a disassembled state.
Fig. 2 is a perspective view of the inner case in an exploded state.
FIG. 3 is a perspective view and an expanded contrast view of the middle separator.
Fig. 4 is a perspective view and an expanded contrast view of the middle engaging buffer.
Fig. 5 is a perspective view and an expanded contrast view of the first buffer member.
Fig. 6 is a perspective view and an expanded contrast view of the second buffer.
The reference signs are: the outer box 10, the inner box 12, the U-shaped stacking pressure-resistant plate A11, the middle layer partition plate 13, the second buffer part 14, the first buffer part 15, the second accessory inner box 20, the third accessory inner box 17, the first special-shaped clamping plate 19, the second special-shaped clamping plate 18, the middle embedded buffer part 16, the top guard plate 22, the L-shaped sealing strip 21, the first buffer part 23, the second buffer part 24, the tubular pressing rod 25, the U-shaped stacking pressure-resistant plate B26, the first main folding surface 27, the folding surface A28, the folding surface B29, the second main folding surface 30, the reinforcing folding surface 31, the embedded abdicating groove 32, the third main folding surface 33, the folding surface D34, the first accessory inner box 35, the folding surface E36, the fourth main folding surface 37, the abdicating clamping groove 38, the folding surface C39, the folding surface F40 and the folding surface G41.
Detailed Description
For further understanding of the features and technical means of the present invention, as well as the specific objects and functions attained by the present invention, the present invention will be described in further detail with reference to the accompanying drawings and the detailed description thereof.
In the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "connected," "fixed," and the like are to be understood broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Referring to fig. 1-6, the present invention provides a buffer packing box structure, which includes an outer box 10, and further includes an inner box 12, a U-shaped stacking pressure-resistant plate a11, a U-shaped stacking pressure-resistant plate B26, a middle-layer partition plate 13, a first fitting inner box 35, a second fitting inner box 20, a third fitting inner box 17, a first special-shaped clamp plate 19, a second special-shaped clamp plate 18, a middle-portion embedded buffer member 16, a top guard plate 22, and four L-shaped sealing strips 21, which are disposed in the outer box 10;
the U-shaped stacking pressure-resistant plate A11 and the U-shaped stacking pressure-resistant plate B26 are respectively and oppositely attached to two opposite inner side walls in the length direction of the outer box 10;
the inner box 12 is correspondingly embedded at the bottom of the inner cavity of the outer box 10 and is positioned between the U-shaped stacking pressure resisting plate A11 and the U-shaped stacking pressure resisting plate B26;
the middle layer clapboard 13 is correspondingly arranged on the upper surface of the inner box 12, one side of the upper surface of the middle layer clapboard 13 in the width direction is provided with a first buffer part 15 which is in contact with the inner side wall of the outer box 10, and one side of the upper surface of the middle layer clapboard 13 in the length direction is provided with a second buffer part 14 which is in contact with the U-shaped stacking pressure-resistant plate A11;
the other side of the upper surface of the middle layer partition 13 opposite to the first buffer part 15 is provided with a first accessory inner box 35 which is in contact with the inner side wall of the outer box 10; the other side of the upper surface of the middle layer clapboard 13 opposite to the second buffer part 14 is provided with a third accessory inner box 17 which is contacted with the inner side wall of the outer box 10 in a sticking way;
a middle embedded buffer 16 is arranged in the middle of the upper surface of the middle layer clapboard 13;
the middle layer clapboard 13, the first buffer part 15, the second buffer part 14, the first accessory inner box 35, the middle embedded buffer part 16 and the third accessory inner box 17 are arranged in an enclosing way to form a first object placing space;
a first special-shaped clamp plate 19 and a second special-shaped clamp plate 18 which are attached to and contacted with the inner side wall of the outer box 10 are respectively arranged above the first object placing space and at the two opposite sides of the first object placing space in the width direction; a second storage space is formed between the first special-shaped clamping plate 19 and the second special-shaped clamping plate 18; a second accessory inner box 20 which is used for being placed in the product inner cavity is arranged in the second storage space;
a top guard plate 22 is arranged above the second storage space;
the four side edges of the top guard plate 22 are all provided with L-shaped sealing strips 21 which are attached and contacted with the inner side wall of the outer box 10.
A first buffer member 23, a second buffer member 24 and a tubular pressure lever 25 are arranged in the inner box 12; the first buffer member 23 and the second buffer member 24 are respectively correspondingly arranged on two opposite sides of the width direction of the inner box 12 and are contacted with the inner side wall of the inner box 12 in a sticking way; the tubular compression bar 25 correspondingly spans the upper part between the first buffer piece 23 and the second buffer piece 24; the first buffer piece 23, the second buffer piece 24 and the tubular pressing rod 25 form a third accommodating space.
The middle layer partition plate 13 comprises a first main folding surface 27 formed by paper, one side of the first main folding surface 27 in the width direction is sequentially folded to form a 4-fold surface A28, and the 4-fold surface A28 is sequentially folded inwards by 90 degrees to form a first buffer part 15; one side of the first main folding surface 27 in the length direction is sequentially folded to form a 4-folding surface B29, and the 4-folding surface B29 is sequentially folded inwards by 90 degrees to form the second buffer part 14.
The middle embedded buffer 16 comprises a second main folding surface 30 formed by paper, the second main folding surface 30 is divided into 8 folding surfaces C39 along the length direction by folding lines, the second main folding surface 30 is provided with folding lines along the middle position of the width direction, and the 8 folding surfaces C39 are folded along the width direction and then sequentially folded from two opposite sides of the length direction to form the double-square middle embedded buffer 16; the outer side surfaces of the first folded surface C39 and the third folded surface C39 which are sequentially arranged are integrally formed with a reinforcing folded surface 31; when the 8-folded surface C39 forms the double-square middle embedded bumper 16, both the two reinforcing folded surfaces are correspondingly folded inwards to correspondingly cover the upper surface of the double-square middle embedded bumper 16. Through setting up the enhancement folded surface, avoid two shape middle part gomphosis bolster of returning to take place to rock to strengthen the holding power.
The first buffer member 23 comprises a third main folding surface 33, 4 folding surfaces D34 are integrally formed on two opposite sides of the third main folding surface 33 along the length direction, 4 folding surfaces E36 are integrally formed on one side of the third main folding surface 33 along the length direction and at a position far away from the folding surfaces D34, the 4 folding surfaces D34 are folded in 90 degrees opposite to each other, and the 4 folding surfaces E36 are folded in 90 degrees close to one side of the folding surfaces D34; a tabling abdicating groove 32 corresponding to the tubular pressure lever 25 is cut and formed between the third main folding surface 33 and the two adjacent folding surfaces E36.
The second buffer member 24 comprises a fourth main folding surface 37, the fourth main folding surface 37 is divided into 6 folding surfaces F40 along the length direction of the fourth main folding surface by a folding line, and a 4 folding surface G41 is integrally formed on one side of the fourth main folding surface 37 along the length direction of the fourth main folding surface; the 4 folding surfaces G41 are folded by 180 degrees in the direction towards the folding surfaces F40, and are sequentially folded by 90 degrees to form a rectangular second buffer piece 24; opposite sides of the upper surface of the second cushion member 24 are formed with engaging and receding grooves 32 corresponding to the tubular pressing rod 25.
The first special-shaped clamping plate 19 is provided with a yielding clamping groove 38 corresponding to the product in shape on one side close to the second special-shaped clamping plate 18, and the second special-shaped clamping plate 18 is provided with a yielding clamping groove 38 corresponding to the product in shape on one side close to the first special-shaped clamping plate 19.
In the actual use process, the leg main body, the four legs and the leg connecting piece of the electric oven are correspondingly placed in the third storage space, and the leg main body, the four legs and the leg connecting piece are tightly pressed in the inner box 12 through the tubular pressing rod 25; a furnace body chassis is correspondingly placed in the first object placing space, a hollow position at the bottom of the furnace body chassis is filled through a middle embedded buffer piece 16, a furnace body in the second object placing space is supported, and the furnace body is placed in the second object placing space and clamped and fixed through a first special-shaped clamping plate 19 and a second special-shaped clamping plate 18; the second accessory inner box 20 is correspondingly placed in the empty space of the inner cavity of the furnace body, so that the utilization rate of the inner space is improved; the upper surface of the furnace body is protected by a top guard plate 22, and the top of the inner cavity of the outer box is sealed by an L-shaped sealing strip 21, so that the inner product is prevented from shaking; through setting up U-shaped pile and resisting clamp plate A11, U-shaped pile and resisting clamp plate B26, strengthen the hardness of the relative both sides inner wall of outer container inner chamber, promote the antidetonation and prevent falling the ability.
This embodiment includes the outer container and sets up the inner box in the outer container, U-shaped pile resists clamp plate A, U-shaped pile resists clamp plate B, the middle level baffle, box in the first accessory, box in the second accessory, first special-shaped splint, second special-shaped splint, middle part gomphosis bolster, the top backplate, four L shape sealing strips, thereby form three thing space of putting, effectively closely accomodate the product at incasement protection product and avoid damaging, inner structure is compact, the antidetonation is prevented falling the ability reinforce, can satisfy the clamp of 6A test and 2200 pounds and embrace the requirement.
The above-mentioned embodiment only expresses one implementation manner of the present invention, and the description thereof is specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (7)

1. The utility model provides a buffering packing box structure, includes outer container (10), its characterized in that: the box body is characterized by further comprising an inner box (12) arranged in the outer box (10), a U-shaped stacking pressure-resistant plate A (11), a U-shaped stacking pressure-resistant plate B (26), a middle layer partition plate (13), a first accessory inner box (35), a second accessory inner box (20), a third accessory inner box (17), a first special-shaped clamping plate (19), a second special-shaped clamping plate (18), a middle embedded buffer part (16), a top protection plate (22) and a four-L-shaped sealing strip (21);
the U-shaped stacking pressure-resistant plate A (11) and the U-shaped stacking pressure-resistant plate B (26) are respectively and oppositely attached to two opposite inner side walls in the length direction of the outer box (10);
the inner box (12) is correspondingly embedded at the bottom of the inner cavity of the outer box (10) and is positioned between the U-shaped stacking pressure-resistant plate A (11) and the U-shaped stacking pressure-resistant plate B (26);
the middle-layer partition plate (13) is correspondingly arranged on the upper surface of the inner box (12), a first buffer part (15) which is in adhesive contact with the inner side wall of the outer box (10) is arranged on one side of the upper surface of the middle-layer partition plate (13) in the width direction, and a second buffer part (14) which is in adhesive contact with the U-shaped stacking pressure-resistant plate A (11) is arranged on one side of the upper surface of the middle-layer partition plate (13) in the length direction;
the other side of the upper surface of the middle layer clapboard (13) opposite to the first buffer part (15) is provided with a first accessory inner box (35) which is in contact with the inner side wall of the outer box (10) in an attaching way; the other side of the upper surface of the middle layer clapboard (13) opposite to the second buffer part (14) is provided with a third accessory inner box (17) which is attached and contacted with the inner side wall of the outer box (10);
a middle embedded buffer piece (16) is arranged in the middle of the upper surface of the middle layer clapboard (13);
the middle-layer partition plate (13), the first buffer part (15), the second buffer part (14), the first accessory inner box (35), the middle embedded buffer part (16) and the third accessory inner box (17) are arranged in an enclosing mode to form a first object containing space;
a first special-shaped clamping plate (19) and a second special-shaped clamping plate (18) which are attached and contacted with the inner side wall of the outer box (10) are respectively arranged above the first storage space and on the opposite two sides in the width direction; a second storage space is formed between the first special-shaped splint (19) and the second special-shaped splint (18); a second accessory inner box (20) which is used for being placed in the product inner cavity is arranged in the second storage space;
a top guard plate (22) is arranged above the second storage space;
and the four side edges of the top guard plate (22) are provided with L-shaped sealing strips (21) which are attached and contacted with the inner side wall of the outer box (10).
2. The cushioning packaging box structure of claim 1, wherein: a first buffer piece (23), a second buffer piece (24) and a tubular compression bar (25) are arranged in the inner box (12); the first buffer piece (23) and the second buffer piece (24) are respectively correspondingly arranged at two opposite sides of the width direction of the inner box (12) and are in contact with the inner side wall of the inner box (12); the tubular pressure lever (25) correspondingly spans the upper part between the first buffer piece (23) and the second buffer piece (24); the first buffer piece (23), the second buffer piece (24) and the tubular pressing rod (25) form a third object containing space.
3. The cushioning packaging box structure of claim 1, wherein: the middle layer partition board (13) comprises a first main folding face (27) formed by paper, one side of the first main folding face (27) in the width direction is sequentially folded to form a 4-folding face A (28), and the 4-folding face A (28) is sequentially folded inwards by 90 degrees to form a first buffer part (15); one side of the first main folding surface (27) in the length direction is sequentially folded to form a 4-folding surface B (29), and the 4-folding surface B (29) is sequentially folded inwards by 90 degrees to form a second buffer part (14).
4. A cushioning package structure as recited in claim 1, wherein: the middle embedded buffer piece (16) comprises a second main folding surface (30) formed by paper, the second main folding surface (30) is divided into 8 folding surfaces C (39) by folding lines along the length direction of the second main folding surface, the middle position of the second main folding surface (30) along the width direction of the second main folding surface is provided with a folding line, and the 8 folding surfaces C (39) are folded along the width direction and then sequentially folded from two opposite sides of the length direction in opposite directions to form the double-square-shaped middle embedded buffer piece (16); the outer side surfaces of the first folded surface C (39) and the third folded surface C (39) which are sequentially arranged are integrally formed with a reinforced folded surface (31); when 8 the folded surface C (39) forms a double-square middle embedded buffer piece (16), the two reinforced folded surfaces are correspondingly folded inwards so as to be correspondingly covered on the upper surface of the double-square middle embedded buffer piece (16).
5. A cushioning package structure as set forth in claim 2, wherein: the first buffer piece (23) comprises a third main folding surface (33), 4 folding surfaces D (34) are uniformly formed on the opposite two sides of the third main folding surface (33) along the length direction of the third main folding surface, 4 folding surfaces E (36) are integrally formed on one side of the third main folding surface (33) along the length direction of the third main folding surface and far away from the position of the folding surfaces D (34), the 4 folding surfaces D (34) are folded in 90 degrees in opposite directions, and the 4 folding surfaces E (36) are folded in 90 degrees close to one side of the folding surfaces D (34); and an embedding abdicating groove (32) corresponding to the tubular pressure lever (25) is formed between the third main folding surface (33) and the two adjacent folding surfaces E (36) in a cutting way.
6. A cushioning package structure as set forth in claim 2, wherein: the second buffer piece (24) comprises a fourth main folding surface (37), the fourth main folding surface (37) is divided into 6 folding surfaces F (40) by folding lines along the length direction of the fourth main folding surface, and one side of the fourth main folding surface (37) along the length direction of the fourth main folding surface is integrally provided with a 4 folding surface G (41); 4, folding the folded surfaces G (41) at 180 degrees in the direction towards the folded surfaces F (40), and sequentially folding the folded surfaces F (40) at 90 degrees to form a rectangular second buffer material (24); the opposite sides of the upper surface of the second buffer piece (24) are provided with embedding abdicating grooves (32) corresponding to the tubular pressing rods (25).
7. A cushioning package structure as set forth in claim 2, wherein: the first special-shaped clamping plate (19) is close to one side of the second special-shaped clamping plate (18) to form a yielding clamping groove (38) corresponding to the product in shape, and the second special-shaped clamping plate (18) is close to one side of the first special-shaped clamping plate (19) to form a yielding clamping groove (38) corresponding to the product in shape.
CN202222549737.1U 2022-09-23 2022-09-23 Buffering packing box structure Active CN218344245U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222549737.1U CN218344245U (en) 2022-09-23 2022-09-23 Buffering packing box structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222549737.1U CN218344245U (en) 2022-09-23 2022-09-23 Buffering packing box structure

Publications (1)

Publication Number Publication Date
CN218344245U true CN218344245U (en) 2023-01-20

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222549737.1U Active CN218344245U (en) 2022-09-23 2022-09-23 Buffering packing box structure

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CN (1) CN218344245U (en)

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