SUMMERY OF THE UTILITY MODEL
Utility model purpose: the utility model aims at providing a not enough to prior art exists, the utility model aims at providing a china bowl packing carton, a fashioned structure of paper need not to adopt the colloid bonding, cuts off the design and can observe the china bowl shape to have buffer structure, protect the china bowl well.
The technical scheme is as follows: in order to realize the purpose of the utility model, the utility model discloses a technical scheme as follows:
the utility model provides a fashioned ceramic bowl buffering packing carton of not gluing of a paper, the packing carton is a paper shaping structure, the packing carton includes bottom, top layer and intermediate level three-layer space.
Further, the bottom layer comprises a bottom plate, a support plate IV and a placing plate II which are sequentially bent and connected, the support plate IV is bent to be vertical, and the bottom plate is positioned below the placing plate II after being bent and is parallel to the placing plate II; the middle layer comprises a supporting plate III and a placing plate I which are sequentially bent and connected to one side of the placing plate II, the supporting plate III is bent to be vertical, and the placing plate I is positioned above the placing plate II after being bent and is parallel to the placing plate II; the top layer comprises a second support plate and a top plate which are sequentially bent and connected to one side of the first placing plate, the second support plate is bent to be vertical, and the top plate is positioned above the first placing plate after being bent and is parallel to the first placing plate;
furthermore, a pair of empty grooves for placing porcelain bowls are respectively formed in the first placing plate and the second placing plate, and the four empty grooves are consistent in size; two sides of the first placing plate are bent and connected with symmetrical side baffles, and the side baffles are bent to be vertical to form side walls of the bottom layer and the middle layer of the packing box.
Furthermore, a plurality of flaps are uniformly arranged on the edge of each empty groove.
Further, 3-5 flaps are arranged in each empty groove.
Furthermore, one side of the top plate is bent and connected with a first supporting plate, and the first supporting plate is bent to be vertical to form the rear wall of the packing box; the first supporting plate, the top plate, the second supporting plate, the first placing plate, the third supporting plate, the second placing plate, the fourth supporting plate and the bottom plate are connected in sequence.
Furthermore, convex inserting tongues are arranged on the first supporting plate and the side baffles on two sides of the first placing plate, inserting holes corresponding to the inserting tongues are formed in the bottom plate, and the inserting tongues are inserted into the corresponding inserting holes after the first supporting plate and the side baffles are bent.
Furthermore, two sides of the first supporting plate are connected with symmetrical fixing plates in a bending mode, and the fixing plates are inserted into the inner sides of the side walls formed by the side baffles after being bent.
Furthermore, the packing box also comprises a reinforcing layer arranged between the second placing plate and the bottom plate, and the reinforcing layer comprises a symmetrical front baffle, an inner baffle and a rocking cover plate which are sequentially connected in a bending manner on the transverse outer side of the side baffle and face the direction of the bottom plate; the front baffle, the inner baffle and the rocking cover plate are sequentially folded inwards to form a reinforcing layer.
Further, the packaging box is made of an E-shaped or F-shaped corrugated board.
Has the advantages that: compared with the prior art, the utility model has the advantages of it is following:
the utility model discloses a paper shaping porcelain bowl buffering packing carton need not to adopt glue and sticky tape fixed, has reduced the use of buffering foam, reduce cost, green, the secondary recycle of being convenient for. The shape of the porcelain bowl can be observed through the three-layer partition design, and the porcelain bowl and the consumer's identification can be conveniently checked. The packaging box has three-layer structure space, the space of bottom is the bottom buffering space of porcelain bowl, and the space of top layer is not only to place the porcelain bowl also for the bowl mouth buffering space of porcelain bowl, and the intermediate level is the bottom of upper porcelain bowl and the buffering space of lower floor's bowl mouth, and the dead slot inward flange sets up a plurality of front of a garment pieces, plays the buffering supporting role to the porcelain bowl, places the porcelain bowl more firm. The design of the first supporting plate can enable the first supporting plate to be in a fixed state when the packaging box is placed into the outer packaging paper box, and the packaging box can not swing in a spring mode. The arrangement of the side wall and the reinforcing layer can effectively support and place the second plate, so that the upper layer and the lower layer are stable in structure, and the buffering task can be effectively completed in the transportation process. After the first supporting plate and the side baffle are bent, the inserting tongue is inserted into the corresponding inserting hole in the bottom plate to form a self-locking structure, and the structure of the packaging box can be more stable.
Detailed Description
The present invention will be further clarified by the following embodiments, which are implemented on the premise of the technical solution of the present invention, with reference to the attached drawings, and it should be understood that these embodiments are only used for illustrating the present invention and are not used for limiting the scope of the present invention.
The utility model discloses a paper-formed non-glue bowl buffering packaging box, the plane structure is shown in figure 1, the packaging box plane structure comprises a supporting plate A, a top plate B, a supporting plate II C, a placing plate D, a supporting plate III E, a placing plate II F, a supporting plate IV and a bottom plate H which are connected in sequence, and two sides of the placing plate I D are connected with symmetrical side baffles J1 and J2; the lateral length of the side guards J1, J2 is equal to the sum of the longitudinal widths of support plate three E and support plate four G; two sides of the first supporting plate A are connected with symmetrical fixing plates I1 and I2.
A pair of empty slots 5 for placing porcelain bowls are respectively formed in the placing plate I D and the placing plate II F, the four empty slots 5 are identical in size, a plurality of flaps 51 are uniformly arranged on the edge of each empty slot 5, and 3-5 flaps 51 in each empty slot 5 can be arranged. Preferably, the utility model discloses leave 4 pieces of front of a garment piece 51 on every dead slot 5, front of a garment piece 51 can play the buffering supporting role to the porcelain bowl.
As shown in fig. 7, the package box forms three layers of spaces, namely a bottom layer 1, a top layer 2 and a middle layer 3 after being folded; the package also includes side walls and a back wall. The method specifically comprises the following steps:
the fourth support plate G is folded downwards to be vertical, and the bottom plate H is positioned below the second placing plate F and is parallel to the first placing plate F to form a bottom layer 1 space;
the third supporting plate E is folded upwards to be vertical, and the first placing plate D is positioned above the second placing plate F, and the two plates are parallel to form a space of the middle layer 3;
the second supporting plate C is folded upwards to be vertical, and the top plate B is positioned above the first placing plate D and is parallel to the first placing plate D to form a top layer 2 space;
the side baffles J1 and J2 are folded to be vertical to form the side walls of the bottom layer 1 and the middle layer 3 of the packing box;
the first supporting plate A is folded downwards to form a vertical shape to form the rear wall of the packing box, and the fixing plates I1 and I2 are folded inwards to form a vertical shape to be inserted into the inner side of the side wall formed by the side baffles J1 and J2.
Two slots 5 can place 2 china bowls on the board D of placing in intermediate level, and two slots 5 can place 2 china bowls on the board two F are placed to the bottom, can place 4 china bowls altogether.
In order to strengthen the stability between the second placing plate F and the bottom plate H, the packing box further comprises a reinforcing layer 4. As shown in fig. 1, front baffles K1 and K2 which are symmetrical are sequentially connected on the lateral outer sides of the side baffles J1 and J2 and face the direction of the bottom plate H; inner baffles L1, L2 and rocking cover plates M1, M2. The transverse widths of the front baffles K1 and K2, the inner baffles L1 and L2 and the rocking cover plates M1 and M2 are half of those of the side baffles, and the front baffles K1 and K2, the inner baffles L1 and L2 and the rocking cover plates M1 and M2 are folded inwards in sequence to form the reinforcing layer 4.
The utility model discloses a packing carton is when placing porcelain bowl, for guaranteeing the stability of intermediate structure, so kept backup pad A, when putting into the extranal packing carton, backup pad A is the stationary state, can make the packing carton can not take place shaking of "spring" formula. The two-layer bowl placed below can cause the second placing plate F to be easily broken due to the self weight, so that the side wall formed by folding the side plates J1 and J2 and the front baffles K1 and K2 are added; the inner baffles L1 and L2 and the rocking cover plates M1 and M2 are folded to form the reinforcing layer 4. The arrangement of the side wall and the reinforcing layer can effectively support the placing plate II F, so that the upper layer and the lower layer are stable in structure, and the buffering task can be effectively completed in the transportation process.
In order to further improve the stability of the packing box, convex inserting tongues are arranged on the first supporting plate A and the side baffles J1 and J2 on the two sides of the first placing plate D, inserting holes corresponding to the inserting tongues are formed in the bottom plate H, the inserting tongues of the first supporting plate A are first inserting tongues 61 and correspond to first inserting holes 71 in the bottom plate H, and the inserting tongues on the side baffles J1 and J2 are second inserting tongues 62 and third inserting tongues 63 and correspond to second inserting holes 72 and third inserting holes 73 in the two sides of the bottom plate H respectively. The supporting plate A and the side baffles J1 and J2 are bent, and the inserting tongues are inserted into the corresponding inserting holes to form a self-locking structure, so that glue and the glue are not needed to be used for fixing, and the structure of the packaging box can be more stable.
The utility model discloses a packing carton adopts E type or F type corrugated container board to make, and E type or F type corrugated container board are slim cardboard, are convenient for bend.
The following detailed description will be given to the folding process of the package, taking a specific schematic diagram as an example:
(1) as shown in fig. 2, the placing plate two F and the supporting plate four G are folded by 90 ° so that the placing plate two F and the supporting plate four G are parallel;
(2) as shown in fig. 3, the side flaps J1 and J2 are folded upwards by 90 degrees, the front flaps K1 and K2, the inner flaps L1 and L2 and the rocking cover panels M1 and M2 are folded inwards the paperboard by 90 degrees in sequence along the dividing line to form a reinforcing layer 4; fig. 3 shows a structural view of the reinforcing layer 4, but a specific folding should be performed after the (3) th step, where the folding is performed in advance to be shown on the drawing sheet in order to show a structural view of the reinforcing layer 4.
(3) As shown in fig. 4, the first placing plate D and the third supporting plate E are folded by 270 degrees, so that the first placing plate D is parallel to the second placing plate F and the bottom plate H; the reinforcing layer 4 at this time is positioned between the second placing plate F and the bottom plate H. The second inserting tongue 62 and the third inserting tongue 63 on the side baffle plates J1 and J2 are respectively inserted into the second inserting hole 72 and the third inserting hole 73 on two sides of the bottom plate H to form an interlocking structure.
(4) As shown in fig. 5, the top board B and the supporting board two C are folded by 90 degrees, so that the top board B is parallel to the placing board one D, the placing board two F and the bottom board H;
(5) as shown in fig. 6, fastening panels I1, I2 are folded 90 ° such that fastening panels I1, I2 are perpendicular to support panel one a and top panel B;
(6) as shown in fig. 7, the first supporting plate a is folded by 90 °, and the fixing plates I1 and I2 are inserted into the package, so that the first supporting plate a is parallel to the second supporting plate C and the fourth supporting plate G, and the first inserting tongue 61 on the first supporting plate a is inserted into the first inserting hole 71 on the bottom plate H, thereby forming an interlocking structure, and completing the folding of the whole package.
Resulting in the final perspective view shown in fig. 7.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.