CN211108489U - Folding bottle type groove buffering packaging structure - Google Patents
Folding bottle type groove buffering packaging structure Download PDFInfo
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- CN211108489U CN211108489U CN201921681737.9U CN201921681737U CN211108489U CN 211108489 U CN211108489 U CN 211108489U CN 201921681737 U CN201921681737 U CN 201921681737U CN 211108489 U CN211108489 U CN 211108489U
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Abstract
The utility model discloses a folding bottle type groove buffer packaging structure, which comprises a packaging box and a bottle type groove unit positioned in the packaging box, wherein the bottle type groove unit comprises a bottom plate and buffer side plates respectively positioned at two sides of the bottom plate, and the two buffer side plates are symmetrically arranged; the vertical both ends of same buffering curb plate inwards extend respectively and are equipped with the crease line, and two crease lines pass through the crossover line and link to each other, and the crease line is equipped with the clearance respectively with the horizontal both ends of the buffering curb plate of place, and the bottle type groove unit of horizontal border and packing carton adaptation is equipped with the connecting plate on the buffering curb plate, and bottle type groove unit expandes the back and is a plane cardboard. The utility model has the advantages that adopt cardboard one shot forming to fold out the inside lining, buffer structure is reliable, can reduce the packing and the cost of transportation of breakable bottle, has brought very big economic benefits.
Description
Technical Field
The utility model belongs to the bottle packing field specifically is a folding bottle type groove buffering packaging structure.
Background
Glass bottles are widely used for liquid containers such as wine, soy sauce, mature vinegar, beverages, etc. due to their excellent corrosion resistance and oxidation resistance, but the brittleness of glass bottles allows sufficient cushioning packaging to be added to the outside of the glass bottles during transportation and storage, and bottles having materials such as ceramic bottles, plastic bottles, etc. are also required during packaging and transportation in addition to the glass bottles. The existing bottle external buffer package usually adopts a spongy cushion or an inflatable bag, the manufacturing cost of the buffer structure is too high, and the packaging and transportation cost of the wine bottle is increased. Chinese patent document CN 209177257U discloses "a wine packaging box" in 2019, 7 and 30, the packaging paper structure is that, including a box body, the inside of the box body is provided with a supporting plate, the top of the supporting plate is provided with a placing groove, and the inner side of the placing groove is filled with a sponge layer, the top of the supporting plate is fixed with a drawstring, the two sides of the top of the supporting plate are sequentially fixed with a first clamping groove and a second clamping groove from back to front, the inner side of the first clamping groove is provided with a first fixing plate, the inside of the first fixing plate is provided with a first limiting hole, the inside of the second clamping groove is provided with a second fixing plate, and the inside of the second fixing plate is provided with a second limiting hole. The application has the disadvantages that the filling sponge layer, the drawstring, the clamping groove and other buffering and fixing structures are applied, the used materials are more, the fixing structure is complex, and the production cost of the packaging box is too high.
SUMMERY OF THE UTILITY MODEL
Based on the problem, the utility model provides a folding bottle type groove buffering packaging structure adopts cardboard one shot forming to fold out the inside lining, and buffer structure is reliable, can reduce the packing and the cost of transportation of breakable bottle, has brought very big economic benefits.
In order to realize the purpose of the invention, the utility model adopts the following technical scheme:
a folding bottle-shaped groove buffer packaging structure comprises a packaging box and a bottle-shaped groove unit positioned in the packaging box, wherein the bottle-shaped groove unit comprises a bottom plate and buffer side plates respectively positioned on two sides of the bottom plate, and the two buffer side plates are symmetrically arranged; the vertical both ends of same buffering curb plate inwards extend respectively and are equipped with the crease line, and two crease lines pass through the crossover line and link to each other, and the crease line is equipped with the clearance respectively with the horizontal both ends of the buffering curb plate of place, and the bottle type groove unit of horizontal border and packing carton adaptation is equipped with the connecting plate on the buffering curb plate, and bottle type groove unit expandes the back and is a plane cardboard.
The air bubble bag and the foaming column are used for buffer packaging, because the buffer is large in size, the size of an outer box is relatively large, five layers of cardboard boxes are needed for containing fragile products, and the packaging cost and the logistics cost are high; the folding bottle-shaped groove buffer packaging structure designed by the technical scheme is applied to fragile bottles such as glass bottles, plastic bottles and ceramic bottles, and is particularly good in buffer effect on bottles with rectangular sections; the arrangement of the gap and the connecting plate ensures that a buffer space is formed between the buffer side plate and the packaging box, and the buffer performance of the bottle-shaped groove unit in the packaging box is good; in addition, the packing box and the bottom plate of the bottle-shaped groove unit can be bonded by a colloid to improve the limiting reliability between the packing box and the bottom plate, and further strengthen the restriction and buffering capacity of the bottle-shaped groove on the bottle; the packing carton inside lining is plane cardboard structure, and the transportation is convenient, has reduced the logistics cost.
Preferably, the two crease lines on the same side buffer plate are parallel, and the transition line obliquely intersects with the two crease lines. The parallel arrangement of crease lines makes the buffering curb plate can automatic molding after turning over from the bottom plate to ensure that the bottom plate can laminate with the packing carton bottom surface is automatic when folding bottle unit shaping, improve bottle type groove unit shock-absorbing capacity's reliability.
Preferably, at least two bottle-shaped groove units are arranged in the packaging box, and the adjacent bottle-shaped groove units are arranged symmetrically about the intersecting line of the two bottle-shaped groove units. The buffer side plates between the adjacent bottle-shaped groove units are arranged at intervals, so that a buffer space is formed after the adjacent bottle-shaped groove units are folded, the plurality of bottle-shaped groove units can be placed at the same time, and the transportation and packaging costs of the bottles are reduced.
Preferably, the connecting plate has a plate-like structure which is attached to the lateral side of the package, and the side of the connecting plate is rectangular. The manufacturing is convenient, the rectangular structure is attached to the transverse side face of the packaging box, and the limiting effect is reliable.
Preferably, the crease lines are provided with elongated holes at uniform intervals. The arrangement of the strip holes enables the crease lines to be more convenient to bend, and is beneficial to forming of the bottle-shaped groove units.
Preferably, the bottle-shaped groove unit is made of corrugated paper. Corrugated container board has certain thickness and cushion capacity to it is convenient to cut the shaping, uses and can improve packaging structure's machining efficiency in this packaging structure, and improves packaging structure's shock-absorbing capacity.
Preferably, the buffer side plate between the adjacent bottle-shaped groove units is of an integral structure. A plurality of bottle type groove units also adopt the processing of coplanar cardboard to make, can accomplish the one shot forming of a plurality of adjacent bottle type groove units simultaneously through folding, reduced packaging structure's manufacturing cost.
Preferably, one end of the packing box is provided with a handle ring. The packaging box is convenient to carry, take and place.
To sum up, the beneficial effects of the utility model are that: an effective limiting structure is provided, a plurality of bottle bodies can be quickly fixed at one time after the bottle bodies are folded into a box, the bearing is safe and reliable, and the use is convenient; low production and assembly cost and good economic benefit.
Drawings
Fig. 1 is a schematic diagram of the present invention.
Fig. 2 is a schematic view of the present invention after a plurality of foldable bottle units are unfolded.
Fig. 3 is an expanded schematic view of the packing box of the present invention.
Wherein: bottle-shaped slot unit 1 bottom plate 11 buffering side plate 12 transition line 121 crease line 122 connecting plate 13 packing box 2 pulling hole 21 handle ring 22 bottom cover plate A1 top cover plate A2 connecting side plate B1 first grade side plate B2 end closing plate B3 matching closing plate B4 second grade side plate C1 connecting ear plate C2 locking ear plate C3 side closing plate D.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description.
As shown in fig. 1, the embodiment is a folding bottle-shaped groove buffer packaging structure, and includes a packaging box 2 and a bottle-shaped groove unit 1 located inside the packaging box 2, and one end of the packaging box 2 is provided with a handle ring 22. Three bottle-shaped groove units 1 are arranged in the packaging box 2, so that the placement of three bottles can be completed at most simultaneously. The bottle-shaped groove unit 1 is made of corrugated paper. The adjacent bottle-shaped trough units 1 are arranged symmetrically about the intersecting line axis of the two. The buffer side plate 12 between the adjacent bottle-shaped trough units 1 adopts an integral structure. The bottle-shaped groove unit 1 comprises a bottom plate 11 and two buffering side plates 12 respectively positioned at two sides of the bottom plate 11, wherein the two buffering side plates 12 are symmetrically arranged; the longitudinal ends of the same side cushioning panel 12 are respectively provided with a crease line 122 extending inwards, and the crease lines 122 are indicated by dashed lines. The two fold lines 122 are connected by a transition line 121, the transition line 121 being indicated by a two-dot chain line. Gaps are respectively formed between the crease lines 122 and the two transverse ends of the buffering side plate 12, and due to the existence of the gaps, an isolation space is formed between the buffering side plate 12 and the adjacent bottle-shaped groove unit 1 after being folded, so that a reliable buffering effect is achieved on the bottle. The bottle-shaped groove unit 1 is a plane paperboard after being unfolded. The two crease lines 122 on the same side bumper panel 12 are parallel, and the transition line 121 obliquely intersects the two crease lines 122.
As shown in fig. 2, the bottle-shaped packaging box comprises three bottle-shaped groove units 1 which are connected in sequence, and a connecting plate 13 is arranged on a buffering side plate 12 of the bottle-shaped groove unit 1, the transverse edge of which is matched with the packaging box 2. The shape of the connecting plate 13 is a plate-like structure attached to the lateral side of the packing box 2, and the side of the connecting plate 13 is rectangular. The bottom plate 11 and the buffer side plate 12 are both rectangular, crease lines 122 are also arranged between the connecting plate 13 and the buffer side plate 12, and the crease lines 122 are provided with strip holes with uniform intervals. The transition line 121 is indicated by a two-dot chain line in the drawing, and the crease line 122 is indicated by a broken line. The adjacent buffer side plates 12 between the adjacent bottle type groove units 1 are of an integral structure, and the buffer side plates 12 between the adjacent bottle type groove units 1 form grooves matched with the shape of the bottle after being folded along the crease lines 122 and the transition lines 121, so that the bottle is placed.
In fig. 3, package 2 includes opposite bottom cover plate a1 and top cover plate a2, bottom cover plate a1 and top cover plate a2 are connected by connecting side plate B1, end closing plate B3 is provided at the end of bottom cover plate a1 far from connecting side plate B1, mating closing plate B4 is provided at the end of top cover plate a2 far from connecting side plate B1, and connecting side plate B1, end closing plate B3 and mating closing plate B4 are congruent rectangles. The both sides of end flap A1 are equipped with the one-level curb plate B2 of congruent rectangle shape, and the tip that end flap A1 was kept away from to one-level curb plate B2 is equipped with second grade curb plate C1, and the both sides of connecting curb plate B1 and tip shrouding B3 are equipped with respectively and connect otic placode C2, and the both sides of cooperation shrouding are equipped with sectorial locking otic placode C3, and the both sides of top shroud A2 are equipped with side shrouding D respectively.
The packaging structure of the present application is assembled by the following steps, which are referred to by the reference numerals for the sake of brevity:
step one, turning up two ends of A1 to B1 and B3, and turning over C2 towards the inner side of A1;
step two, turning up the B2, turning down the C1 by bypassing the C2 from the B2, arranging a flange at the outer end of the C1, arranging a groove between the two sides of the A1 and the B2, and matching the flange with the groove;
step three, folding the folded bottle unit shown in fig. 2 along a crease line 122, putting the folded bottle unit into the box body formed in step 2, attaching the connecting plate 13 to the transverse side surfaces, namely C1, at the two ends of the packing box 2, and bonding the bottom plate 11 with A1;
step four, putting the bottle into the bottle as shown in figure 1;
step five, turning D to the upper side of A2, turning A2 to A1, attaching D between the connecting plates 13 and C1,
and step six, folding B4, inserting C3 between B2 and C2, extending the pull ring 22 from the pull hole 21, and integrally forming the packaging structure.
The packaging structure provides an effective limiting structure for the bottle bodies, the three bottle bodies can be quickly fixed in one step by the package folded into a box, the bearing is safe and reliable, and the use is convenient; the packaging box is formed by folding a single paperboard, the production is convenient, the formed packaging box is mutually restricted by panels, the packaging box can be sealed without adhesive tapes, and the packaging box is convenient to repeatedly open and use; low production and assembly cost and good economic benefit.
Claims (8)
1. A folding bottle-shaped groove buffer packaging structure is characterized by comprising a packaging box and a bottle-shaped groove unit positioned in the packaging box, wherein the bottle-shaped groove unit comprises a bottom plate and buffer side plates respectively positioned at two sides of the bottom plate, and the two buffer side plates are symmetrically arranged; the vertical both ends of same buffering curb plate inwards extend respectively and are equipped with the crease line, and two crease lines pass through the crossover line and link to each other, and the crease line is equipped with the clearance respectively with the horizontal both ends of the buffering curb plate of place, and the bottle type groove unit of horizontal border and packing carton adaptation is equipped with the connecting plate on the buffering curb plate, and bottle type groove unit expandes the back and is a plane cardboard.
2. The structure of claim 1, wherein the two crease lines on the same side buffer plate are parallel, and the transition line obliquely intersects with the two crease lines.
3. The structure of claim 1, wherein at least two bottle-shaped groove units are disposed in the packing box, and adjacent bottle-shaped groove units are disposed symmetrically with respect to an intersection axis of the two.
4. A structure for packing bottles of folding bottle type with buffer as claimed in claim 1, wherein said connecting plate is shaped as a plate structure to be fitted to the lateral side of the packing box, and the side of the connecting plate is rectangular.
5. A structure of a foldable bottle-type slot buffer package as claimed in claim 1 or 2, wherein said crease line is provided with long holes with uniform intervals.
6. The structure of claim 1, wherein the bottle-shaped groove is made of corrugated paper.
7. The structure of claim 3, wherein the buffer side plate between the adjacent bottle-shaped groove units is of an integral structure.
8. A folding bottle type groove buffer packaging structure as claimed in claim 1, 3 or 4, wherein one end of the packaging box is provided with a handle ring.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921681737.9U CN211108489U (en) | 2019-10-09 | 2019-10-09 | Folding bottle type groove buffering packaging structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921681737.9U CN211108489U (en) | 2019-10-09 | 2019-10-09 | Folding bottle type groove buffering packaging structure |
Publications (1)
Publication Number | Publication Date |
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CN211108489U true CN211108489U (en) | 2020-07-28 |
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Family Applications (1)
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CN201921681737.9U Active CN211108489U (en) | 2019-10-09 | 2019-10-09 | Folding bottle type groove buffering packaging structure |
Country Status (1)
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2019
- 2019-10-09 CN CN201921681737.9U patent/CN211108489U/en active Active
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