Disclosure of utility model
The utility model mainly aims to provide a packaging structure, which aims to improve the structural strength of the packaging structure.
In order to achieve the above object, the present utility model provides a packaging structure comprising:
A packaging box;
The package comprises a jacking, a bottom support and a side wall board, wherein the jacking, the bottom support and the side wall board are provided with a containing space for containing packaged articles, and
The corner protectors are respectively arranged at a plurality of edges of the package, and are clamped between the package and the packing box.
In one embodiment, the package is provided with one of the corner protectors at each edge.
In an embodiment, the corner protector comprises a first protector and a second protector which are connected in a bending manner, an included angle is formed between the first protector and the second protector, and the first protector and the second protector are respectively arranged on two sides of an edge of the package.
In an embodiment, the jacking is configured as a flat plate structure, and the corner protector is arranged at the periphery of the jacking so as to form a first groove with the jacking;
The corner protector is arranged at the upper end of the edge of the side coaming, and the avoiding section extends into the first groove.
In an embodiment, the side wall board includes relative first side wall board and the second side wall board that sets up, first side wall board includes first body and certainly the both ends of first body respectively to two first side walls board that the second side wall board extends, the second side wall board includes the second body and certainly the both ends of second body respectively to two second side plates that the first side wall board extends, two have the interval respectively between first side plate and the two second side plate.
In an embodiment, the two first side plates and the two second side plates are respectively provided with an abutting convex part, and the abutting convex parts are used for abutting against the packaged article.
In one embodiment, the plurality of the abutting convex parts have equal heights and/or
The height of the abutting convex part is smaller than that of the first side plate, and/or
The height of the abutting convex part is smaller than that of the second side plate.
In one embodiment, the shoe is configured as a flat plate structure, and the corner protector is arranged on the periphery of the shoe to form a second groove with the shoe, wherein the second groove is used for placing a packaged article.
In one embodiment, the side panel and the corner protector on the side panel are supported on the corner protector on the shoe.
In an embodiment, the materials of the packing box, the packing piece and the corner protectors are all paper;
wherein the corner protector is configured as cardboard and the package are configured as corrugated paper.
According to the technical scheme, a packing box, a packing piece and a plurality of corner protectors are arranged in a packing structure, wherein the packing piece comprises a jacking, a jacking and side surrounding plates, an accommodating space is formed by the jacking, the jacking and the side surrounding plates in a surrounding mode so as to accommodate packing objects, the corner protectors are respectively arranged at a plurality of edges of the packing piece, and the corner protectors are arranged between the packing piece and the packing box. Therefore, compared with the arrangement that no corner protector is arranged at the edge of the package, the corner protector is arranged at the edge of the package and is arranged between the package and the package box, on one hand, the arrangement of the corner protector improves the supporting strength of the edge of the package and the structural strength of the package, and the corner protector also supports the edge of the package box at the outer side of the corner protector while supporting the edge of the package at the inner side of the corner protector, so that the structural strength of the package structure is improved. On the other hand, the gap between the package and the package box can be filled through the arrangement of the corner protector, so that the relative movement between the package and the package box is avoided, and the protection force of the package structure on the packaged articles is further improved.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that, if directional indications (such as up, down, left, right, front, and rear are referred to in the embodiments of the present utility model), the directional indications are merely used to explain the relative positional relationship, movement conditions, and the like between the components in a specific posture, and if the specific posture is changed, the directional indications are correspondingly changed.
In addition, if there is a description of "first", "second", etc. in the embodiments of the present utility model, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, if "and/or" and/or "are used throughout, the meaning includes three parallel schemes, for example," a and/or B "including a scheme, or B scheme, or a scheme where a and B are satisfied simultaneously. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
In order to avoid damage to the articles during transportation, various articles need to be packaged before logistics transportation. The edges of the packaging structure serve as key parts for bearing external pressure, and the mechanical properties of the edges directly influence the impact resistance and stacking stability of the packaging.
The existing package is mostly dependent on the traditional bending and splicing process to form edges, for example, the corners of the box body are bonded by simple folding or seams, so that stress is concentrated in local weak areas. It is counted that about 30% of package breakage during transportation is caused by edge deformation or cracking, and especially in heavy goods transportation scenes, the corner collapse rate can reach more than 40%. In order to reduce the damage rate of the packaged articles, the structural strength of the packaging structure is required to be improved at present.
The utility model provides a packaging structure.
Referring to fig. 1 and 2, in an embodiment of the present utility model, the package structure includes a package box 100, a package 200 and a plurality of corner protectors 300, wherein the package 200 includes a top support 210, a bottom support 220 and side panels 230, and the top support 210, the bottom support 220 and the side panels 230 enclose an accommodating space 201 to accommodate a packaged article 400. The corner protectors 300 are respectively arranged at a plurality of edges of the package 200, and the corner protectors 300 are clamped between the package 200 and the package box 100.
It will be appreciated that articles such as household appliances, construction equipment and the like need to be packaged during logistics transportation to avoid damage during transportation. Among them, common household appliances include, but are not limited to, a dish washer, a refrigerator, a washing machine, and the like. The packaged article 400 is shown in the present figures as an in-line dishwasher.
In one embodiment, the package 200 includes a top support 210, a bottom support 220, and a side wall plate 230, wherein an upper end of the side wall plate 230 is connected to the top support 210, and a lower end of the side wall plate 230 is connected to the bottom support 220, so that the top support 210, the bottom support 220, and the side wall plate 230 enclose an accommodating space 201, and the packaged article 400 is disposed in the accommodating space 201. That is, the package 400 is placed on the bottom bracket 220, the top bracket 210 is placed on top of the package 400, and the side gusset 230 is arranged around the side of the package 400, so that the package 200 is arranged outside the package 400 to protect the package 400. In this way, the package 200 is provided with the split top support 210, the split bottom support 220 and the side gusset 230, thereby facilitating the assembly of the package 200 and improving the packaging convenience of the package 200 for the packaged article 400.
The packaging structure further comprises a packaging box 100, wherein the packaging box 100 is sleeved outside the packaging piece 200, so that the protection force of the packaged article 400 is further improved. It will be appreciated that in one embodiment, the bottom of the package 100 has an opening, and the top of the package 100 is provided with a swing cover that can be folded over. When packaging the packaged article 400, the package 200 is now placed outside the packaged article 400, and the package 100 with the swing cover opened is then placed outside the package 200 from its opening. The swing cover is then closed, and the package strap is used to bind the base 220 and the package box 100 together, thereby completing the packaging of the packaged article 400. So, when the packaging structure needs to be disassembled, the packaging belt can be cut off, and the packaging box 100 is directly taken down from the top, so that the need of moving the packaged article 400 in the unpacking process is avoided, and the inconvenience of moving the packaged article 400 with larger mass is avoided.
It will be appreciated that the package structure has edges, which are critical locations of the package structure to bear external pressure, and that the present utility model provides corner protectors 300 on the outside of the edges of the package 200 in order to increase the support capacity at the edges of the package structure. In this way, on the one hand, the setting of angle bead 300 has improved the supporting force of the edge of packing piece 200, has improved the structural strength of packing piece 200, and angle bead 300 plays the supporting role to the edge of its inboard packing piece 200, also plays the supporting role to the edge of its outside packing box 100 to the structural strength of packaging structure has been improved. On the other hand, the arrangement of the corner protector 300 can fill the gap between the package 200 and the package 100, and avoid the relative movement between the package 200 and the package 100, thereby further improving the protection of the package structure to the packaged articles 400.
It should be noted that the materials of the package 100, the package 200, and the plurality of corner protectors 300 may be the same or different, and the materials may be wood, plastic, or paper, which is not limited to the specific materials of the package structure.
In the embodiment of the present utility model, a corner protector 300 is provided at each edge of the package 200.
It can be appreciated that the jacking 210, the jacking 220 and the side surrounding plates 230 of the package 200 are all provided with edge arrangements, and the outside of all edges of the jacking 210, the jacking 220 and the side surrounding plates 230 are all provided with the corner protectors 300, so that the structural strength of each edge of the package 200 is enhanced, the structural strength of the package structure is ensured, and the protection of the packaged articles 400 is improved.
Referring to fig. 3, in the embodiment of the utility model, the corner protector 300 includes a first protector 310 and a second protector 320 connected in a bending manner, an included angle is formed between the first protector 310 and the second protector 320, and the first protector 310 and the second protector 320 are respectively disposed at two sides of an edge of the package 200.
Specifically, in the embodiment shown in the present utility model, the corner protector 300 includes a first protector 310 and a second protector 320 connected to each other, and an included angle is formed between the first protector 310 and the second protector 320. It will be appreciated that in the packaging structure, the edges are generally right angle edges, and correspondingly, the included angle between the first guard 310 and the second guard 320 is approximately right angle. I.e., corner protector 300 is configured in an "L" type configuration. In this way, compared to the special-shaped structure of the first protector 310 and/or the second protector 320, the arrangement of the present utility model makes the structure of the corner protector 300 simpler, thereby facilitating the processing of the corner protector 300. Of course, the angle between the first guard 310 and the second guard 320 is consistent with the shape of the edge of the package 200 to better fit the edge to provide better support.
In one embodiment, the first guard 310 and the second guard 320 are equal in width and thickness. Thus, the corner protector 300 is convenient to process and mold, and the processing efficiency of the corner protector 300 is facilitated. Of course, in other embodiments, the width and thickness of the first guard 310 and the second guard 320 may also be different to accommodate differently configured packaged articles 400.
In one embodiment, the first guard 310 and the second guard 320 are equal in width and equal in thickness. At this time, the width of the first sheathing body 310 is 55-65mm, and the thickness of the first sheathing body 310 is 4-6mm. In this way, the supporting force of the corner protector 300 to the edge of the package 200 is ensured, the over-wide and over-thick arrangement of the corner protector 300 is avoided, and the light weight and low cost of the package structure are facilitated.
Referring to fig. 1 and 2, in the embodiment of the utility model, the top support 210 is configured as a flat plate structure, the corner protector 300 is disposed at the periphery of the top support 210 to form a first groove (not shown) with the top support 210, and the upper end of the corner protector 300 at the edge of the side wall 230 is provided with an avoiding section 330, where the avoiding section 330 extends into the first groove.
It is understood that the jacking 210 has a flat plate structure, and the corner protector 300 is disposed at the periphery of the jacking 210. In one embodiment, the flat structure of the jacking 210 is configured as a rectangle, and four sides of the rectangle are respectively provided with a corner protector 300. The first protecting bodies 310 of each corner protector 300 are respectively connected with the top of the jacking 210, and a first groove with a downward notch is formed between the four second protecting bodies 320 and the jacking 210. Compared with the jacking 210 configured as a frame structure, the present utility model has the jacking 210 as a flat plate structure, which is beneficial to simplifying the structure of the jacking 210, and the corner protectors 300 are provided on the periphery of the jacking 210, so as to ensure the structural strength of the jacking 210.
It will be appreciated that side wall 230 has edges extending in an up-down direction, each edge being provided on its outside with a corner protector 300. That is, on side gusset 230, corner bead 300 extends in the up-down direction. Wherein corner protector 300 is provided with a relief section 330 at the upper end of the edge of side rail 230. I.e., the top of corner protector 300 is lower than the top of side wall 230. In this way, when the top support 210 is covered on the packaged article 400, the top of the packaged article 400 and the portion of the avoiding section 330 of the side wall 230 extend into the first groove, so as to realize the clamping connection between the top support 210 and the side wall 230. In this way, the relative fixation of side wall panel 230 and jacking 210 is achieved without the use of other connectors.
Referring to fig. 1 and 2, in the embodiment of the present utility model, the side wall 230 includes a first side wall 231 and a second side wall 235 that are disposed opposite to each other, the first side wall 231 includes a first body 232 and two first side walls 233 extending from two ends of the first body 232 toward the second side wall 235, respectively, the second side wall 235 includes a second body 236 and two second side walls 237 extending from two ends of the second body 236 toward the first side wall 231, respectively, and a space is provided between the two first side walls 233 and the two second side walls 237.
It will be appreciated that in the present utility model, the provision of side gusset 230 as opposed first 231 and second 235 side gussets facilitates packaging of side gusset 230 as compared to a unitary structure. When the packaging article 400 is packaged, the mechanical arm can be adopted to push the first side coaming 231 and the second side coaming 235 from two opposite sides of the packaging article 400, so that the side wall of the packaging article 400 is packaged, and the packaging automation is facilitated.
Referring to fig. 2, in an embodiment, the first side wall 231 includes a first body 232 and two first side plates 233 extending from two ends of the first body 232 toward the second side wall 235, that is, a first side plate 233, the first body 232 and another first side plate 233 are sequentially connected and have a substantially "U" shape. The second side wall plate 235 includes a second body 236 and two second side plates 237 extending from two ends of the second body 236 toward the first side wall plate 231, respectively, that is, one second side plate 237, the second body 236 and the other second side plate 237 are sequentially connected and have a substantially "U" shape. Thus, the side coaming 230 is arranged to be two mutually independent structural members, namely the first side coaming 231 and the second side coaming 235, so that the front side, the back side, the left side and the right side of the packaged article 400 can be packaged simultaneously, the side coaming 230 is automatically packaged conveniently, and the arrangement of a plurality of structural members of the side coaming 230 is avoided, so that the side coaming 230 is simplified.
Referring to fig. 1 and 2, in one embodiment, a first side plate 233 and a second side plate 237 are disposed on the same side of the packaged article 400, and the other first side plate 233 and the other second side plate 237 are disposed on the other side of the packaged article 400, with a space between the first side plate 233 and the second side plate 237, respectively. That is, when the first side panel 231 and the second side panel 235 are wrapped around the wrapped article 400, the first side panel 231 and the second side panel 235 do not contact, leaving a space therebetween. In this way, the arrangement of the spacing makes the first side wall plate 231 and the second side wall plate 235 realize simultaneous packaging of the front side, the rear side, the left side and the right side of the packaged article 400, and saves the arrangement of part of the side wall plates 230, which is beneficial to the light weight and the low cost of the packaging structure. It will be appreciated that the distance of the spacing may be adjusted depending on the size and quality of the packaged article 400, etc., and the specific distance of the spacing is not limited herein.
Referring to fig. 2, in the embodiment of the present utility model, the two first side plates 233 and the two second side plates 237 are provided with the abutment protrusions 234, and the abutment protrusions 234 are used for abutting against the packaged article 400.
For convenience of description, it is defined that the first body 232 and the second body 236 are in contact with the left and right sides of the packaged article 400, and the two first side plates 233 and the two second side plates 237 are in contact with the front and rear sides of the packaged article 400. It will be appreciated that there is a spacing between the two first side panels 233 and the two second side panels 237, respectively, i.e., the front and back sides of the packaged article 400 are not fully wrapped packages. In order to ensure the strength of the packaging structure of the side wall plate 230 on the front and rear sides of the packaged article 400, the inner sides of the two first side plates 233 and the two second side plates 237 are respectively provided with an abutting protrusion, and when the side wall plate 230 packages the packaged article 400, the abutting protrusions are respectively contacted and abutted with the front and rear sides of the packaged article 400, so that the supporting force of the side wall plate 230 on the front and rear sides of the packaged article 400 is improved.
In an embodiment of the present utility model, the plurality of abutment protrusions 234 are equal in height, and/or the abutment protrusions 234 are smaller in height than the first side plate 233, and/or the abutment protrusions 234 are smaller in height than the second side plate 237.
In an embodiment, the abutment protrusions on the two first side plates 233 and the two second side plates 237 are disposed at the same position, and the plurality of abutment protrusions 234 are equal in height, so that the first side plates 233 and the second side plates 237 are simplified in structure. In an embodiment, the first side wall 231 and the second side wall 235 are identical or mirror image in structure, which is advantageous in terms of simplification of the structure of the side wall 230 and in terms of machining efficiency of the side wall 230.
In an embodiment, the height of the abutment protrusion 234 is less than the height of the first side plate 233 and/or the second side plate 237. Thus, the protection of the front and rear sides of the packaged article 400 is ensured, and the weight reduction of the packaging structure is facilitated. It will be appreciated that the height of the abutment protrusion 234 may be set according to the structure, size, mass, etc. of the packaged article 400, and the height of the abutment protrusion 234 is not limited herein.
Referring to fig. 2, in the embodiment of the present utility model, the bottom bracket 220 is configured as a flat plate structure, and the corner protector 300 is disposed at the periphery of the bottom bracket 220 to form a second groove 221 with the bottom bracket 220, wherein the second groove 221 is used for placing the package article 400.
It will be appreciated that in one embodiment, the arrangement of the shoe 220 is the same as the arrangement of the top shoe 210, i.e., the shoe 220 is also configured as a flat plate structure with the corner protector 300 provided at the periphery of the shoe 220. In one embodiment, the planar structure of the shoe 220 is configured as a rectangle with a corner protector 300 provided at each of the four sides of the rectangle. The first guard 310 of each corner protector 300 is respectively connected with the bottom of the bottom bracket 220, and the four second guard 320 and the bottom bracket 220 enclose a second groove 221 with an upward notch. Compared with the configuration of the bottom support 220 into the frame structure, the bottom support 220 is in a flat plate structure, so that the simplification of the structure of the bottom support 220 is facilitated, and meanwhile, the corner protectors 300 are arranged on the periphery of the bottom support 220, so that the structural strength of the bottom support 220 is ensured. The second groove 221 is used for placing the packaging article 400, so that the second groove 221 provides guiding for mounting and placing the packaging article 400, and meanwhile, the second groove 221 also provides limiting for the packaging article 400, so that the packaging article 400 is prevented from shaking in the packaging structure.
It will be appreciated that side wall 230 has edges extending in an up-down direction, each edge being provided on its outside with a corner protector 300. That is, on side gusset 230, corner bead 300 extends in the up-down direction. In one embodiment, the bottom end of corner protector 300 is flush with the bottom end of side rail 230. In one embodiment, the side gussets 230 and the corner protectors 300 on the side gussets 230 contact the upper end surface of the corner protectors 300 on the shoe 220. That is, the bottom of the first side fence 231 and the bottom of the corner protector 300 on the first side fence 231, and the bottom of the second side fence 235 and the bottom of the corner protector 300 on the second side fence 235 are both in contact with the upper end surface of the corner protector 300 on the shoe 220. The corner protector 300 on the shoe 220 is used to support the side wall panel 230 and the corner protector 300 on the side wall panel 230.
In packaging the packaged article 400, the corner protector 300 is already provided at the edges of the top bracket 210, the bottom bracket 220, and the side gusset 230. Thus, when packaging the packaged article 400, the packaged article 400 is placed in the second groove 221 of the shoe 220, the packaged article 400 is contacted with the inner wall of the groove of the second groove 221, then the first side wall plate 231 and the second side wall plate 235 are pushed in from two opposite sides of the packaged article 400, the corner protector 300 on the first side wall plate 231, the corner protector 300 on the second side wall plate 235 and the corner protector 300 on the second side wall plate 235 are contacted with the upper end face of the corner protector 300 on the shoe 220, then the top shoe 210 is covered above the packaged article 400, part of the packaged article 400 and the avoiding section 330 of the side wall plate 230 extend into the first groove, then the package box 100 is sleeved outside the package 200 and the corner protector 300 from top to bottom, and finally the package box 100 and the shoe 220 are bound by using the package belt.
When the packaged article 400 needs to be unpacked, the packaging tape is cut off, the packaging box 100 is taken down from the upper side, the jacking 210 is taken down from the upper side, and the first side wall plate 231 and the second side wall plate 235 are taken down from the opposite sides of the packaged article 400, so that the packaged article 400 can be taken out.
In this way, the bottom of the first side wall plate 231 and the bottom of the corner protector 300 on the first side wall plate 231, and the bottom of the second side wall plate 235 and the bottom of the corner protector 300 on the second side wall plate 235 are both in contact with the upper end surface of the corner protector 300 on the bottom bracket 220, so that the packaging structure is convenient to package and dismantle. It should be noted that the corner protector 300 on the shoe 220 and the corner protector 300 on the shoe 210 are different in size at this time.
With the enhancement of global environmental awareness, traditional packaging materials (such as plastics, foam and the like) are gradually eliminated from the market due to the problems of nondegradability, high energy consumption, difficult production and recovery and the like. In this context, paper packaging is an ideal alternative to traditional materials due to its renewable, readily degradable and low environmental load characteristics.
In the embodiment of the present utility model, the materials of the package 100, the package 200 and the plurality of corner protectors 300 are all configured as paper. The use of paper material is favorable to the environmental protection of packaging structure. The provision of the corner protector 300 is advantageous for improving the structural strength of the packaging structure.
In one embodiment, the package 100 and the package 200 are configured as corrugated paper and the corner protector 300 is configured as cardboard. Specifically, the cardboard of the corner protector 300 is made of packaging paper by bonding and compounding, and then by processing and forming, the cardboard with a certain angle is manufactured. In one embodiment, the outer layer paper of the corner protector 300 is kraft liner, the inner layer paper is not limited, and the corner protector 300 uses kraft liner for edge wrapping. Therefore, the arrangement of the corrugated paper can ensure the buffering and vibration reduction effects of the packaging structure, and the arrangement of the hard paper board can ensure the structural strength of the packaging structure. In one embodiment, the paper corner protector 300 is glued to the outside of the edge of the package 200. In this way, the connection between the corner protector 300 and the package 200 is facilitated.
The foregoing description is only exemplary embodiments of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structural changes made by the description of the present utility model and the accompanying drawings or direct/indirect application in other related technical fields are included in the scope of the present utility model.