CN213443548U - Shockproof anti-extrusion packaging box - Google Patents

Shockproof anti-extrusion packaging box Download PDF

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CN213443548U
CN213443548U CN202021143924.4U CN202021143924U CN213443548U CN 213443548 U CN213443548 U CN 213443548U CN 202021143924 U CN202021143924 U CN 202021143924U CN 213443548 U CN213443548 U CN 213443548U
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folded
panel
side panel
folding
plate
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李小波
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Abstract

The utility model discloses an anti extrusion packing carton takes precautions against earthquakes relates to product packaging technical field. The packaging box comprises an accommodating space, wherein a stabilizing device is arranged in the accommodating space and divides the accommodating space into one or more storage spaces with buffer cavities; the stabilizing device comprises one or more first folded plates, wherein a first crease and a second crease are arranged on the first folded plates, the first folded plates are folded to form a first bending part, a second bending part and a third bending part in sequence along the first crease and the second crease, and the first folded plates are folded to form a first buffer cavity. This packing carton structure is exquisite, is rocked in the packing carton by the packing material through the cushion chamber restriction, possesses shockproof anti extrusion function, through expansion or folding first folded plate, packs the packing material or takes out, and convenient and fast has improved the user and has used experience.

Description

Shockproof anti-extrusion packaging box
Technical Field
The utility model belongs to the technical field of the product packaging, concretely relates to shockproof anti extrusion packing carton.
Background
The packing box is a box for containing a product, and a general packing box encloses a packed object in a space by 6 sides, wherein an upper cover is movably opened. The packaging box has the advantages of low manufacturing cost, easiness in printing and the like, high production efficiency and the like, and is generally popularized and applied. However, most of the prior art packaging boxes do not have an internal compression-resistant design, and often deform under the action of external force, so that the internal articles are deformed by compression, or a plurality of internal products are mutually compressed to cause product damage, which is not beneficial to storing or transporting some fragile articles.
In Pu' er tea, the production history of the bowl-shaped compressed mass of tea leaves is long, and in the field of bowl-shaped compressed mass of tea leaves, in order to facilitate the storage and transportation of the bowl-shaped compressed mass of tea leaves, the bowl-shaped compressed mass of tea leaves is generally compressed into a conical socket head shape, and a layer of cotton paper is wrapped on the outer surface of the bowl-shaped compressed mass of tea leaves and then is further placed into a packaging. To the great tuo tea of volume, generally all place one in a packing carton, to the less tuo tea of volume, can place two or more in a packing carton, do not be equipped with shockproof anti extrusion interlayer in the current tuo tea packing carton, rock in the packing carton behind the tuo tea packing, strike or receive the extrusion, lead to the tuo tea to damage.
Disclosure of Invention
The utility model aims at having the above-mentioned problem to current packing carton, providing a structure is exquisite, and packing convenient and fast possesses the packing carton of taking precautions against earthquakes anti extrusion function.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
a shockproof and anti-extrusion packaging box comprises a containing space, wherein a stabilizing device is arranged in the containing space, and the stabilizing device divides the containing space into one or more storage spaces with buffer cavities;
the stabilizing device comprises one or more first folded plates, wherein a first crease and a second crease are arranged on the first folded plates, the first folded plates are folded to form a first bent part, a second bent part and a third bent part in sequence along the first crease and the second crease, and the first folded plates are folded to form a first buffer cavity.
Preferably, the first buffer cavity is in an inverted trapezoid shape or an inverted triangle shape.
Preferably, the solar panel further comprises a bottom plate, a front panel, a right side panel, a rear panel and a left side panel are arranged on the periphery of the bottom plate, and the front panel, the right side panel, the rear panel and the left side panel form an accommodating space around the bottom plate; the first folding plate is one in number, one side edge of the first folding plate, which is far away from the first folding mark, is connected with the upper end edge of the left side panel into a whole, and the third folding part is attached to the bottom plate.
Preferably, the solar panel further comprises a bottom plate, a front panel, a right side panel, a rear panel and a left side panel are arranged on the periphery of the bottom plate, and the front panel, the right side panel, the rear panel and the left side panel form an accommodating space around the bottom plate; the first bending part edge of one of the first folded plates is connected with the upper end edge of the left side panel into a whole, the first bending part edge of the other first folded plate is connected with the upper end edge of the right side panel into a whole, and the third bending parts of the two first folded plates are attached to the bottom plate.
Preferably, the third bending parts of the two flaps are abutted against each other at ends thereof away from the second fold.
Preferably, the first folding plate connected with the upper end edge of the left side panel is of a Z-shaped structure after being folded.
Preferably, the third bending portion is located on one side of the second fold line and extends to form an abutting portion, and the first folding plate abutting portion connected with the upper end edge of the left side panel abuts against the lower end of the left side panel.
Preferably, a notch is formed in one side of the second folding portion, which is located on the second folding line, and the notch can be matched with the abutting portion.
Preferably, the length of the abutting portion is smaller than the length of the first bent portion.
Preferably, the length of the third bending part is equal to or less than half of the length of the bottom plate.
Preferably, one side edge of the third bending part far away from the second folding line is provided with a first arc-shaped opening, and the first arc-shaped opening is convenient for unfolding the first folding plate.
Preferably, the stabilizing device further comprises a second folded plate, the second folded plate is two first folded plates which are symmetrically connected, the two first folded plates which are symmetrically connected are connected into a whole through a first bent part edge, and the first bent part edge is a side edge far away from the first folded mark; the second folded plate divides the accommodating space into two storage spaces.
Preferably, the second folding plate is provided with a second buffer cavity, and the second buffer cavity is in an inverted trapezoid shape or an inverted triangle shape.
Preferably, the upper end of the rear panel is connected with an upper cover panel, and one side of the upper cover panel, which is far away from the rear panel, extends to form a plug tongue; when the packaging box is packaged, the upper cover panel covers the containing space, and the inserting tongue is inserted into a gap between the front panel and the first folding plate.
Preferably, an inner panel extends from the upper end edge of the front panel, the inner panel is folded into the accommodating space along the upper end edge of the front panel and attached to the front panel, and the inner panel is used for clamping and fixing the first folded plate.
Preferably, the packing box is made of paperboard.
Compared with the prior art, the beneficial effects of the utility model reside in that: a shock-proof and extrusion-resistant packaging box comprises a bottom plate, wherein a front panel, a right side panel, a rear panel and a left side panel are arranged on the periphery of the bottom plate, the front panel, the right side panel, the rear panel and the left side panel form an accommodating space around the bottom plate, a stabilizing device is arranged in the accommodating space, and the stabilizing device divides the accommodating space into one or more storage spaces with buffer cavities; the stabilizing device comprises one or more first folded plates, wherein a first crease and a second crease are arranged on the first folded plates, the first folded plates are folded to form a first bent part, a second bent part and a third bent part in sequence along the first crease and the second crease, and the first folded plates are folded to form a first buffer cavity. This packing carton structure is exquisite, it rocks in the packing carton through the cushion chamber restriction, possess shockproof anti extrusion function, prevent to receive external force by the packing material and be damaged, through expansion or folding first folded plate, pack the packing material or take out, convenient and fast, user experience is used has been improved, securing device still includes the second folded plate, the second folded plate separates the accommodation space for a plurality of storing space, can pack a plurality of packing materials simultaneously, can prevent the extrusion between a plurality of packing materials, be convenient for preserve or transport some fragile products.
Drawings
FIG. 1 is an expanded view of an embodiment of the present invention showing a shock-resistant and crush-resistant package;
FIG. 2 is an internal structure view of a shock-proof and anti-squeezing packing box according to an embodiment of the present invention;
FIG. 3 is a view showing an internal structure of a packing box for shock-proof and anti-squeezing packing of an embodiment of the present invention;
FIG. 4 is a cross-sectional view of the packing box of the embodiment of the present invention when the packing material is packed;
FIG. 5 is a folded configuration of a first flap of an embodiment of the present invention;
FIG. 6 is an expanded view of a first flap of a shock and crush resistant packaging box package according to an embodiment of the present invention;
FIG. 7 is a view of the internal structure of a shock and crush resistant package in accordance with another embodiment of the present invention;
in the figure, 10 is a bottom plate, 11 is a right side plate, 12 is a rear plate, 13 is a left side plate, 14 is a front plate, 15 is an upper cover plate, 16 is an inner plate, 17 is a tongue, 18 is a second arc-shaped opening, 20 is a first folding plate, 21 is a first folding part, 22 is a second folding part, 23 is a third folding part, 24 is a first folding line, 25 is a second folding line, 26 is a first arc-shaped opening, 27 is an abutting part, 28 is a first cushion chamber, 29 is a notch, 30 is a second folding plate, 31 is a second cushion chamber, and 40 is a packaged object.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present application more comprehensible, the present application is described in further detail with reference to the accompanying drawings and the detailed description.
In the description of the present application, it is to be understood that the terms "intermediate," "top," "bottom," "inner," "outer," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the present application and simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed in a particular orientation, and be operated in a particular orientation, and thus should not be construed as limiting the present application. The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present application, "a plurality" means two or more unless specifically limited otherwise.
In addition, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are intended to be inclusive and mean, for example, that there may be a fixed connection, a removable connection, or an integral connection; 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 application can be understood by those of ordinary skill in the art as appropriate.
In this application, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may comprise direct contact of the first and second features, or may comprise contact of the first and second features not directly but through another feature in between. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
Example 1:
referring to fig. 1-6, a shock-proof and anti-extrusion packing box comprises a bottom plate 10, wherein a front panel 14, a right side panel 11, a rear panel 12 and a left side panel 13 are arranged around the bottom plate 10, the front panel 14, the right side panel 11, the rear panel 12 and the left side panel 13 form an accommodating space around the bottom plate 10, and a stabilizing device is arranged in the accommodating space and divides the accommodating space into one or more storage spaces with buffer cavities; the fixing device comprises one or more first folding plates 20, the first folding plates 20 are provided with first folding marks 24 and second folding marks 25, the first folding plates 20 are folded along the first folding marks 24 and the second folding marks 25 to form a first bending part 21, a second bending part 22 and a third bending part 23 in sequence, and the first folding plates 20 are folded to form a first buffer cavity 28.
Specifically, the shockproof and anti-extrusion packaging box is made of a paperboard material and comprises a bottom plate 10, a front panel 14, a right side panel 11, a rear panel 12 and a left side panel 13, wherein the front panel 14, the right side panel 11, the rear panel 12 and the left side panel 13 are connected with the periphery of the bottom plate 10; the front panel 14, the right side panel 11, the rear panel 12 and the left side panel 13 around the connecting bottom plate 10 are all rectangular and form a three-dimensional containing space after being folded, and a stabilizing device is arranged in the containing space and divides the containing space into one or more storage spaces with buffer cavities.
In a specific embodiment, the fixing device is a first folding plate 20, the first folding plate 20 is provided with a first folding mark 24 and a second folding mark 25, the first folding plate 20 is folded along the first folding mark 24 and the second folding mark 25 to form a first bending portion 21, a second bending portion 22 and a third bending portion 23, the first folding mark 24 is located between the first bending portion 21 and the second bending portion 22, and the second folding mark 25 is located between the second bending portion 22 and the third bending portion 23; specifically, one side edge of the first bending part 21 away from the first fold 24 is connected with the upper end edge of the left side panel 13 as a whole, the first bending part 21 is movably connected with the left side panel 13 in a folding manner, after the first bending part 20 is bent, the third bending part 23 is attached to the bottom plate 10, the first bending part 20 is in a Z-shaped structure after being folded, the first bending part 21 is connected with the upper end edge of the left side panel 13, the third bending part 23 is attached to the bottom plate 10, after the connection, the left side panel 13, the first bending part 21, the second bending part 22 and the third bending part 23 form a first buffer cavity 28, the cross section of the first buffer cavity 28 is in an inverted trapezoid shape or an inverted triangle shape, when the second fold 25 is attached and overlapped with the left side panel 13, the cross section of the first buffer cavity 28 is in an inverted triangle shape, the first bending part 20, the front panel 14, the right panel, the rear panel 12 and the bottom plate 10 form a trapezoid-, in a specific embodiment, the packaged material 40 is a compressed mass of pu ' er tea, the compressed mass of pu ' er tea is a conical socket-head-shaped compressed tea, and the first folding plate 20 is used for clamping the compressed mass of pu ' er tea in the storage space.
Specifically, the third bending portion 23 is located on one side of the second folding line 25 and extends to form an abutting portion 27, through the abutting portion 27, the distance between the second folding line 25 and the left side panel 13 is controlled, the abutting portion 27 of the first folding line 20 abuts against the lower end of the left side panel 13, the second folding line 30 abuts against the side wall of the packaged object 40, the length of the abutting portion 27 is smaller than that of the first bending portion 21, the first buffer cavity 28 can be inverted trapezoid, the packaged object 40 is prevented from shaking and impacting in the storage space, and the first folding line 20 is convenient to fix the packaged object 40 in the packaging box. In one embodiment, the second bending portion 22 has a cut 29 on one side of the second fold 25, the cut 29 is adapted to cooperate with the abutting portion 27 when the first folding panel 20 is in the unfolded state, as shown in fig. 6, and in another embodiment, a first arc-shaped opening 26 is provided on one side edge of the third bending portion 23 away from the second fold 25, and the first arc-shaped opening 26 facilitates manual unfolding of the first folding panel 20.
Specifically, the first bent portion 21 of the first folding plate 20 is controlled to rotate upward relative to the left side panel 13, so that the second bent portion 22 and the third bent portion 23 move upward, the packaged object 40 can be conveniently put in or taken out, and the operation experience of a user is improved.
In another specific embodiment, the number of the first folding plates 20 is two, wherein the first folding part edge of one of the first folding plates is connected with the upper end edge of the left side panel 13 as a whole, the first folding part edge of the other one of the first folding plates is connected with the upper end edge of the right side panel 11 as a whole, the first folding parts 21 of the two folding plates are both attached to the bottom plate 10, specifically, the first folding part 21 connected with the left side panel 13 is rotatably connected with the upper end edge of the left side panel 13, and the first folding part 21 connected with the right side panel 11 is rotatably connected with the upper end edge of the right side panel 11; the ends of the third bending portions 23 of the two first folding plates 20, which are far away from the second folding line 25, abut against each other, the two first folding plates 20 form two trapezoidal or triangular first buffer cavities 28 in the accommodating space, and a storage space, the two second bending portions 22 stabilize two ends of the packaged object 40 respectively, the length of the third bending portion 23 is equal to or less than half of the length of the bottom plate 10, in a specific embodiment, the length of the third bending portion 23 is equal to half of the length of the bottom plate 10, and the two third bending portions 23 abut against each other and hold the bottom end of the packaged object 40. The abutting portions 27 of the two first flaps 20 abut the lower end edges of the left and right side panels 13, 11, respectively. The first bending part 21 of the two first folding plates 20 is controlled to rotate upwards relative to the left side panel 13 and the right side panel 11, so that the two second bending parts 22 and the third bending part 23 move upwards, the packaged object 40 can be conveniently put in or taken out, and the operation experience of a user is improved.
In a specific embodiment, the end of the front cover panel away from the top cover panel 15 is provided with a tongue 17, when packaging, the top cover panel 15 covers the accommodating space, and the tongue 17 is inserted into a gap between the front panel 14 and the first folding plate 20; an inner panel 16 extends from the upper end edge of the front panel 14, the inner panel 16 is folded into the accommodating space along the upper end edge of the front panel 14 and is attached to the front panel 14, and the inner panel 16 is used for clamping and fixing the first folding plate 20 to prevent the first folding plate 20 from unfolding in the accommodating space. In one embodiment, a second arcuate opening 18 is provided in an edge of the inner panel 16 remote from the front panel 14 to facilitate unfolding of the inner panel 16.
In this embodiment, the packaged material 40 is a bowl-shaped mass of pu' er tea; the packing box and the first folding plate 20 are all made of paper boards.
In a specific embodiment, the packaging box is a three-dimensional structure, in this embodiment, the packaging box is a cuboid, and the packaging box can also be a cube, a hexagonal prism, an octagonal prism or other three-dimensional structures.
A shockproof and anti-extrusion packaging box comprises a bottom plate 10, wherein a front panel 14, a right side panel 11, a rear panel 12 and a left side panel 13 are arranged on the periphery of the bottom plate 10, the front panel 14, the right side panel 11, the rear panel 12 and the left side panel 13 surround the bottom plate 10 to form an accommodating space, a stabilizing device is arranged in the accommodating space, and the accommodating space is divided into one or more storage spaces with buffer cavities by the stabilizing device; the fixing device comprises one or more first folding plates 20, wherein the first folding plates 20 are provided with first folding marks 24 and second folding marks 25, the first folding plates 20 are folded along the first folding marks 24 and the second folding marks 25 to form a first bending part 21, a second bending part 22 and a third bending part 23 in sequence, and the first folding plates 20 are folded to form a first buffer cavity 28. This packing carton structure is exquisite, it is rocked in the packing carton by packing material 40 to restrict through the cushion chamber, possess shockproof anti extrusion function, prevent to receive external force by packing material 40 and be damaged, through expanding or folding first flange 20, to packing or taking out by packing material 40, convenient and fast, user experience of using has been improved, securing device still includes second flange 30, second flange 30 separates the accommodation space for a plurality of storing space, can pack a plurality of packing material 40 simultaneously, can prevent a plurality of extrudees by between packing material 40, be convenient for preserve or transport some fragile products.
Example 2:
referring to fig. 5-7, in other technical features the same as those of embodiment 1, the fixing device further includes a second folding plate 30, where the second folding plate 30 is two symmetrically connected first folding plates 20, the two symmetrically connected first folding plates 20 are connected into a whole by a first bending portion 21, and an edge of the first bending portion 21 is a side edge far from the first fold 24; the second folding plate 30 divides the accommodating space into two storage spaces; in a specific embodiment, the number of the first folding plates 20 is two, the edges of the first bending portions 21 of the two first folding plates 20 are respectively connected with the upper end edges of the left side panel 13 and the right side panel 11 into a whole, the third bending portions 23 of the two first folding plates 20 are both attached to the bottom plate 10, the length of the third bending portions 23 is less than half of the length of the bottom plate 10, and the second folding plate 30 is disposed between the two first folding plates 20.
Specifically, the first bending portions 21 of the two first folding plates 20 are connected to form the second folding plate 30, the abutting portions 27 of the two first folding plates 20 abut against each other, the two first folding plates 20 form a storage space with the front panel 14 and the rear panel 12, the second folding plate 30 forms a second buffer cavity 31, and the second buffer cavity 31 is in an inverted trapezoid shape or an inverted triangle shape. The first bending parts 21 of the two first folding plates 20 are controlled to rotate upwards relative to the left side panel 13 and the right side panel 11 respectively, so that the second bending parts 22 and the third bending parts 23 move upwards, the packaged objects 40 can be conveniently put in or taken out, and the operation experience of users is improved. Meanwhile, two objects to be packaged 40 can be placed in the two storage spaces, and the two first buffer cavities 28 and the first buffer cavity 28 can prevent the objects to be packaged 40 from being extruded and damaged.
In a specific implementation, in the case of increasing the accommodating space, the accommodating space can be divided into a plurality of storage spaces by placing a plurality of second flaps 30.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. A shockproof and anti-extrusion packaging box comprises an accommodating space, and is characterized in that a stabilizing device is arranged in the accommodating space and divides the accommodating space into one or more storage spaces with buffer cavities;
the stabilizing device comprises one or more first folded plates, wherein a first crease and a second crease are arranged on the first folded plates, the first folded plates are folded to form a first bent part, a second bent part and a third bent part in sequence along the first crease and the second crease, and the first folded plates are folded to form a first buffer cavity.
2. The shockproof and anti-extrusion packaging box of claim 1, further comprising a bottom plate, wherein a front panel, a right side panel, a rear panel and a left side panel are arranged around the bottom plate, and the front panel, the right side panel, the rear panel and the left side panel form an accommodating space around the bottom plate; the first folding plate is one in number, one side edge of the first folding plate, which is far away from the first folding mark, is connected with the upper end edge of the left side panel into a whole, and the third folding part is attached to the bottom plate.
3. The shockproof and anti-extrusion packaging box of claim 1, further comprising a bottom plate, wherein a front panel, a right side panel, a rear panel and a left side panel are arranged around the bottom plate, and the front panel, the right side panel, the rear panel and the left side panel form an accommodating space around the bottom plate; the first folded plate quantity is two, and the first kink edge and the left side panel upper end edge of one of them first folded plate are even as an organic whole, and the first kink edge and the right side panel upper end edge of another first folded plate are even as an organic whole, the third kink of two folded plates all with the bottom plate is laminated mutually.
4. A shock and compression resistant package as claimed in claim 3, wherein the third folded portions of the two first flaps are in abutting engagement at ends thereof remote from the second fold.
5. A shock and crush resistant packing box according to any one of claims 2 to 4, wherein the first folding plate connected to the upper end edge of the left side panel is folded in a Z-shaped configuration.
6. A shock and compression resistant package according to claim 5, wherein said third fold extends along an abutment on one side of said second fold, and an abutment of a first flap connected to the upper end edge of the left side panel abuts against the lower end of said left side panel.
7. A shock and compression resistant package according to claim 6, wherein the length of said abutting portion is less than the length of said first folded portion.
8. A shock and compression resistant package according to claim 7, wherein the length of the third bent portion is equal to or less than half of the length of the bottom panel.
9. A shock and compression resistant package as claimed in any one of claims 2 or 3, wherein said securing means further comprises a second folded plate, said second folded plate being two symmetrically connected first folded plates, said two symmetrically connected first folded plates being connected together by a first folded portion edge, said first folded portion edge being a side edge away from said first fold; the second folded plate divides the accommodating space into two storage spaces.
10. A shock and compression resistant package as claimed in claim 9, wherein an upper cover panel is connected to the upper end of the rear panel, and a tongue is extended from a side of the upper cover panel away from the rear panel; when the packaging box is packaged, the upper cover panel covers the containing space, and the inserting tongue is inserted into a gap between the front panel and the first folding plate.
CN202021143924.4U 2020-06-18 2020-06-18 Shockproof anti-extrusion packaging box Active CN213443548U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021143924.4U CN213443548U (en) 2020-06-18 2020-06-18 Shockproof anti-extrusion packaging box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021143924.4U CN213443548U (en) 2020-06-18 2020-06-18 Shockproof anti-extrusion packaging box

Publications (1)

Publication Number Publication Date
CN213443548U true CN213443548U (en) 2021-06-15

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CN202021143924.4U Active CN213443548U (en) 2020-06-18 2020-06-18 Shockproof anti-extrusion packaging box

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Country Link
CN (1) CN213443548U (en)

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