Supporting plate storage device
Technical Field
The utility model relates to the technical field of storage, in particular to a supporting plate storage device.
Background
With the rapid development of vehicles, people travel frequently by means of public transportation, and in general, passengers carry necessities such as notebook computers, tablet computers, mobile phones, chargers, earphones, passports and purses along with clothes and toiletries, especially when taking planes, trains or long-distance cars.
Of course, clothes and toiletries are generally only required to be packed in a suitcase and placed on a luggage rack, but most of electronic equipment, food and drinking water which are used by hand are carried nearby, or are placed in small bags which are carried with the user, or are hand-held, but the hand taking amount is limited, hands cannot be liberated, if the small bags are taken from the small bags with the user, the taken small bags need to be held or placed on legs, and too much space is occupied on a narrow seat, so that riding comfort of passengers is affected. Although the small table board which can be turned over and flattened to be used or the storage net bag is arranged on the chair back of the existing transportation means (including an airplane and a train), the small table board cannot place articles in a standing state, the storage net bag cannot be used for placing articles in a classified mode, meanwhile, the storage amount is limited, and the practical use requirements of passengers cannot be met.
Disclosure of utility model
The present utility model is directed to a pallet accommodating device, which solves the above-mentioned problems.
In order to achieve the above purpose, the utility model provides a pallet accommodating device comprising:
The sleeving structure comprises a front surface, a shared surface and a back surface, wherein the shared surface is positioned between the front surface and the back surface, two opposite sides of the front surface, the shared surface and the back surface in the horizontal direction are arranged in a side-by-side manner and form a closed side, the back surface and the upper end side of the shared surface are connected together to form a sleeving cavity with one side being an open structure, the front surface and the bottom end side of the shared surface are connected together to form a storage cavity I with one side being an open structure, and the storage cavity I and the sleeving cavity opening are oppositely arranged;
The expansion storage structure detachably connected with the bottom end of the back comprises at least two fabric layers, two sides of the fabric layers opposite to each other in the horizontal direction are arranged in a side-by-side mode and are connected together, and the bottom end sides of the two adjacent fabric layers are connected together to form a storage cavity II with one side being an opening structure.
In a further embodiment, the expansion storage structure comprises three layers of material, namely a back layer, an interlayer and a front layer.
In a further embodiment, a side wall of the front surface layer at the outermost side facing the interlayer is provided with a plurality of first connecting parts connected with the interlayer, the first connecting parts are in linear connection with the interlayer, and a space between two adjacent first connecting parts is an independent cavity.
In a further embodiment, the first extension portion extends from the bottom end of the back surface, the second extension portion extends from the upper end of the back surface layer of the extended storage structure, and the first extension portion is detachably connected with the second extension portion.
In a further embodiment, the first extension part and the second extension part are connected by a hook and loop fastener, a zipper or a hidden button.
In a further embodiment, two opposite sides of the extension part in a horizontal direction are provided with openings.
In a further embodiment, an expansion layer is further arranged between the front face and the shared face, two opposite sides of the expansion layer in the horizontal direction are arranged in a side-by-side mode and are connected together, the front face and the bottom end of the shared face are intersected and are connected together at the side of the bottom end of the expansion layer, and at least two storage cavities III are formed between the front face and the shared face by the expansion layer.
In a further embodiment, a plurality of second connecting portions connected with the shared surface are arranged on the side wall of the side, facing the shared surface, of the expansion layer, the second connecting portions are in linear connection with the shared surface, and a space between two adjacent second connecting portions is an independent cavity.
In a further embodiment, the shell fabric of the sleeving structure and the shell fabric of the expanding storage structure are made of any one of elastic shell fabric, elastic cotton, elastic nylon or rubber fiber blended fabric.
Compared with the prior art, the utility model has the beneficial effects that:
1. The utility model relates to a pallet storage device, which adopts three surfaces, namely a front surface, a shared surface and a back surface to form two chambers, so that manufacturing materials are saved, a sleeve cavity with an opening structure formed by the back surface and the shared surface is sleeved on a pallet in use, the installation is convenient and quick, when the pallet is in a standing state, a storage cavity I formed by the front surface and the shared surface is used as a place for storing personal objects, when the pallet is in a standing state or is turned to a horizontal state, a storage cavity II of a storage structure is expanded to be used as a place for storing the personal objects, the storage place is expanded, and the storage requirement of a user is met.
2. According to the utility model, the expansion containing structure and the sleeving structure can be separated, the sleeving structure is independently used, and a user selects whether to separate according to the demand of containing articles.
3. The utility model has simple integral structure, adopts elastic fabric, is convenient to fold and store, has small space occupation ratio, and is particularly suitable for long-distance travel to carry about.
Drawings
FIG. 1 is a schematic diagram of the main structure of the present utility model;
FIG. 2 is a schematic view of the receiving device of the present utility model sleeved with a pallet in a standing state;
FIG. 3 is a schematic diagram of the receiving device of the present utility model in a sleeved connection with a pallet in a horizontal state;
FIG. 4 is a partial cross-sectional view of a socket structure of the present utility model;
FIG. 5 is a partial cross-sectional view of the expanded storage structure of the present utility model;
FIG. 6 is a schematic structural diagram of a first embodiment of an assembly structure of a socket structure and an expansion housing structure according to the present utility model;
FIG. 7 is a schematic structural diagram of a second embodiment of an assembly structure of a socket structure and an expansion housing structure according to the present utility model;
FIG. 8 is an exploded view of the socket structure and pallet assembly in a three-dimensional state according to the present utility model;
FIG. 9 is a cross-sectional view of a socket structure according to the present utility model;
fig. 10 is a cross-sectional view showing a further modification of the socket structure of the present utility model.
In the figure, 1, the back, 11, the first extension part, 11a, the notch, 2, the front, 3, the interlayer, 4, the front layer, 5, the back layer, 51, the second extension part, 6, the supporting plate, 61, the supporting rod, 7, the shared surface and 8, the extension layer.
Detailed Description
The following description will clearly and fully describe the technical solutions of the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. 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.
Embodiment 1, this embodiment provides a layer board storage device, as shown in fig. 1, and whole storage device comprises socket joint structure and expansion storage structure. The sleeving structure comprises a front surface 2, a common surface 7 and a back surface 1, as shown in fig. 4, the common surface 7 is positioned between the front surface 2 and the back surface 1, two opposite sides of the front surface 2, the common surface 7 and the back surface 1 in the horizontal direction are aligned and form a closed side, the back surface 1 and the upper end side of the common surface 7 are connected together to form a sleeving cavity with an opening structure, the front surface 2, the common surface 7 and the back surface 1 are preferably sewn together by a sewing machine after being aligned, the sleeving cavity is not limited to a sewing mode, a zipper, a hidden buckle or a magic tape mode can be adopted, and from the aspect of durability, the side of the formed sleeving cavity is firmest by sewing, and the accommodating article is not easy to crack.
Simultaneously, the front face 2 and the bottom end side of the shared face 7 are connected together to form a first storage cavity with an opening structure at one side, and the front face 2 and the bottom end of the shared face 7 are sewn together in a sewing mode. The first storage cavity and the second storage cavity are arranged in opposite directions, the first storage cavity is S marked in fig. 4, the opening of the first storage cavity faces upwards, the second storage cavity is S1 shown in fig. 4, and the opening of the second storage cavity faces downwards. The purpose of the above arrangement is to adapt to the pallet 6 on the back of an aircraft or train. For example, in the standing state of the supporting plate 6, the sleeving cavity with the downward opening is sleeved along the supporting plate 6 until the supporting plate 6 is completely wrapped, and the installation is convenient and quick, as shown in the sleeving schematic diagram of fig. 2, at the moment, the opening S of the storage cavity I is positioned at the outer side of the supporting plate 6, the opening S of the storage cavity I is further exposed, and the user can put articles into and take articles from the storage cavity I conveniently.
As shown in fig. 2 and 3, the supporting plate 6 is turned to the horizontal direction around the hinged position with the chair back by using the supporting rod 61, at this time, the front surface 2 is located on the bottom wall of the supporting plate 6, and the back surface 1 is used as a supporting surface located on the upper end surface of the supporting plate 6, so as to separate the article from the upper end surface of the supporting plate 6, ensure the cleanliness of the article, and avoid the article on the supporting plate 6 from being soiled by other people using residual stains.
It should be noted that, the front surface 2, the common surface 7 and the back surface 1 are adopted to form two chambers, so that the manufacturing materials are saved, and the production cost is saved.
In addition, with the expansion storage structure of back 1 bottom detachable connection, expand storage structure and do further expansion on the basis of cup joint structure, the purpose is in order to utilize to expand storage structure and expand the storage space after storage chamber S can't satisfy the user and accomodate article, satisfies the demand of accomodating. Specifically, the expansion storage structure comprises at least two fabric layers, two sides of the fabric layers, which are opposite in the horizontal direction, are arranged in a side-by-side manner and are connected together, and the bottom end sides of the two adjacent fabric layers are connected together to form a storage cavity II with an opening structure on one side. The two-layer material layer is not limited, but at least two-layer material layer can be sewn on two sides and the bottom to form a closed storage place, so that the storage requirement is met. Three, four or more layers can also be provided, and the fabric layer between the two outermost layers can separate more accommodating spaces for accommodating articles.
As shown in fig. 3, the expansion storage structure includes three layers of material layers, namely a back layer 5, an interlayer 3 and a front layer 4, and the two sides of the back layer 5, the interlayer 3 and the front layer 4 in the horizontal direction are aligned and then sewn together, and simultaneously the bottom sides of the back layer 5, the interlayer 3 and the front layer 4 are aligned and then sewn together to form a storage space T and a storage space T1. When the supporting plate 6 is in a standing state or is turned to a horizontal state, the expansion storage structure is always in the vertical direction, and the openings of the storage space T and the storage space T1 are always upwards distributed and used as places for storing personal belongings, so that the storage places are expanded and the storage demands of users are met.
It should be noted that, here, two opposite sides of the first extension 11 in the horizontal direction are provided with slits 11a. As shown in fig. 2, when the downward-opening sleeve cavity S1 is sleeved along the pallet 6 to completely wrap the pallet 6, the position of the notch 11a is exactly at the rotational connection position of the support rod 61 and the pallet 6, and the position of the support rod 61 is avoided by the notch 11a. After the square supporting plate 6 is turned to a horizontal state from a standing state by using the supporting rod 61, the first extension part 11 smoothly bypasses the supporting rod 61 by using the notch 11a, so that the back surface layer 5 of the whole expansion storage structure can be in a vertical state, and no shielding or curling phenomenon exists.
Of course, in order to meet more storage requirements, as shown in fig. 5, a plurality of first connecting parts connected with the interlayer 3 may be further arranged on a side wall of the front layer 4 facing the interlayer 3 at the outermost side, the first connecting parts are in linear connection with the interlayer 3, so-called first connecting parts are connected with the interlayer 3, that is, a plurality of separation points are selected at the middle position of the front layer 4, and the separation points are sewn from top to bottom in a sewing manner, so that a space between two adjacent first connecting parts is an independent chamber for separately storing more objects with smaller volume. Of course, the independent chambers can be provided with the same volume, and the independent chambers with different volumes can be provided, so that more classifying and storing requirements are met.
In the embodiment 2, the expansion storage structure and the sleeving structure can be separated, the sleeving structure is independently used, and a user selects whether to separate according to the demand of storing articles.
The bottom end of the back 1 is extended to form an extension part I11, the upper end of the back layer 5 of the expansion storage structure is extended to form an extension part II 51, the extension part I11 and the extension part II 51 are detachably connected, the extension part I11 and the extension part II 51 are detached, the expansion storage structure and the sleeving structure are detached, and the sleeving structure can be independently used.
The first extension part 11 and the second extension part 51 can be connected by a magic tape, a zipper or a hidden buckle. As shown in fig. 4 and 5, the first extension 11 and the second extension 51 are connected by a zipper, so that the first extension 11 and the second extension 51 are conveniently assembled together, otherwise, the first extension 11 and the second extension 51 can be detached by unzipping the zipper. As shown in fig. 6, the first extension part 11 and the second extension part 51 are adhered by a hook and loop fastener, a rough surface is arranged on the first extension part 11, a hook surface is arranged on the second extension part 51, and the rough surface and the hook surface are adhered to realize the assembly of the first extension part 11 and the second extension part 51. The adhered hair surface and hook surface are forcibly torn, so that the first extension part 11 and the second extension part 51 can be separated. As shown in fig. 7, the first extension 11 and the second extension 51 are connected by a hidden button, and the first extension 11 and the second extension 51 can be assembled together by pressing the male button and the female button with force. The male buckle and the female buckle are pulled open forcefully, and the first extension part 11 and the second extension part 51 are split. Of course, other connection structures that can quickly splice the first extension 11 and the second extension 51 and quickly split the first extension can be used.
When the sleeving structure is used independently, as shown in fig. 8 and 9, the method is that the supporting plate 6 is in a standing state, the downwards-opening sleeving cavity is sleeved along the supporting plate 6 until the supporting plate 6 is completely wrapped, the first S opening of the storage cavity is positioned on the outer side of the supporting plate 6, and a user puts in and takes out articles in the first S opening of the storage cavity. The sleeving structure is not limited to be used on the supporting plate 6 on the seat back of an airplane or a train, the first S of the sleeving cavity of the sleeving structure can be sleeved on the headrest of the automobile seat, the first S of the storage cavity is positioned on the back of the seat, and a user can put in and take out articles in the first S of the storage cavity conveniently. The S-shaped opening of the storage cavity is closed by a hidden button, so that articles are prevented from falling.
As shown in fig. 10, an expansion layer 8 is further arranged between the front surface 2 and the common surface 7, two opposite sides of the expansion layer 8 in the horizontal direction are arranged in a side-by-side manner and are connected together, the bottom ends of the front surface 2 and the common surface 7 are intersected and are connected together at the bottom end side of the expansion layer 8, and the side walls of the expansion layer 8 are also arranged between the front surface 2 and the common surface 7 by adopting a sewing method, so that at least two storage cavities III are formed between the front surface 2 and the common surface 7 by the expansion layer 8. The purpose of the expansion layer 8 is to further expand more independent storage spaces and meet the storage requirement of users for carrying articles with them.
The side wall of one side of the expansion layer 8 facing the shared surface 7 can be provided with a plurality of second connecting parts connected with the shared surface 7, the second connecting parts are in linear connection with the shared surface 7, and the space between two adjacent second connecting parts is an independent cavity. The second connecting parts are a plurality of separation points selected from the middle position of the expansion layer 8, and the separation points are sewn from top to bottom in a sewing mode, so that the space between the two adjacent second connecting parts is an independent cavity for independently storing more objects with smaller volumes. The size of the independent cavity is randomly set during sewing.
The shell fabric of the sleeving structure and the shell fabric of the expanding containing structure are elastic shell fabrics, and the containing cloth bag is made of soft and elastic materials, and is made of any one of elastic cotton, elastic nylon or rubber fiber blended cloth. These materials have good stretchability and wear resistance, and can ensure shape retention and durability throughout storage use. The material can be easily stretched to adapt to articles with different sizes and shapes, and simultaneously can quickly recover to the original shape, so that the articles are stably stored.
In conclusion, the novel portable folding seat has a simple overall structure, is convenient to fold and store by adopting elastic fabric, has small space occupation ratio, and is particularly suitable for being carried about for long-distance travel.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.