Disclosure of Invention
The invention aims to provide a carrier applied to a notebook computer, which is used for bearing the notebook computer through a material bearing cavity formed between two push blocks so as to limit the computer at a fixed position in the transmission process.
Another objective of the present invention is to provide a carrier for a notebook computer, which forms a V-shaped material-holding cavity by two inclined surfaces, so that the computer can be unfolded and placed in the carrier.
In order to achieve the above objects and other advantages and in accordance with the purpose of the invention, there is provided a carrier for a notebook computer, comprising: the material-bearing device comprises two push blocks which are oppositely arranged, wherein a material-bearing cavity for bearing the notebook computer is formed between the two push blocks due to the gap arrangement of the two push blocks, an opening is formed in the upper surface of each push block, and the notebook computer is inserted into the material-bearing cavity from the opening.
Preferably, the corresponding side surfaces of the pushing blocks comprise inclined slope surfaces, so that the slope surfaces on the two pushing blocks form a V-shaped material bearing cavity;
when the notebook computer is inserted into the material bearing cavity, the outer wall of the notebook computer is attached to the slope surface after the notebook computer is unfolded.
Preferably, the included angle formed by the slope surface ranges from 20 degrees to 60 degrees.
Preferably, the device further comprises a base which is positioned below the push block; the push block is fixed on the base.
Preferably, the base is provided with an accessory, and the accessory is matched with an interface on a notebook computer;
the accessories are arranged on two sides of the push block, and when a notebook computer is inserted into the material bearing cavity, the accessories are connected with the interfaces on the side edges of the notebook computer.
Preferably, a power supply is arranged in the base, and the accessory is connected to the notebook computer, so that the power supply is electrically connected with the notebook computer.
In another aspect, the present invention further provides a feeding and conveying mechanism, which includes a conveying line body for conveying the carrier.
Preferably, the method further comprises the following steps:
the feeding assembly is used for conveying the notebook computer; and
the assembling component is used for grabbing a notebook computer to be loaded into the carrier;
the notebook computer is arranged on the carrier, and the assembling component is arranged at the downstream end of the loading component.
Preferably, an unfolding station and a power supply station are sequentially arranged on the transmission line body along the transmission direction, and the folded notebook computer is transmitted on the feeding assembly;
the assembly components comprise a first assembly component and a second assembly component, and the first assembly component and the second assembly component correspond to the unfolding station and the power supply station;
the first assembling component is used for grabbing the folded notebook computer at the feeding station to be transferred into the carrier on the unfolding station and unfolding the folded notebook computer;
the second assembly component is used for grabbing accessories in the carrier at the power supply station and connecting the accessories to a notebook computer.
Preferably, the conveying line body comprises a production line for circulating carriers, the unfolding station and the power supply station are arranged on the production line, and the downstream end of the feeding assembly is arranged close to one side of the unfolding station.
Compared with the prior art, the invention has the beneficial effects that:
the invention provides a carrier applied to a notebook computer, which is used for bearing the notebook computer through a material bearing cavity formed between two push blocks, so that the computer is limited at a fixed position in the transmission process, and the notebook computer is prevented from colliding in the transmission process.
The foregoing description is only an overview of the technical solutions of the present invention, and in order to make the technical solutions of the present invention more clearly understood and to implement them in accordance with the contents of the description, the following detailed description is given with reference to the preferred embodiments of the present invention and the accompanying drawings. The detailed description of the present invention is given in detail by the following examples and the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.
In the drawings, the shape and size may be exaggerated for clarity, and the same reference numerals will be used throughout the drawings to designate the same or similar components.
Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention belongs. The use of "first," "second," and similar language throughout the specification is not intended to imply any order, quantity, or importance, but rather the intention is to distinguish one element from another. Also, the use of the terms "a," "an," or "the" and similar referents do not denote a limitation of quantity, but rather denote the presence of at least one. The word "comprise" or "comprises", and the like, means that the element or item listed before "comprises" or "comprising" covers the element or item listed after "comprising" or "comprises" and its equivalents, and does not exclude other elements or items. "upper", "lower", "left", "right", and the like are used merely to indicate relative positional relationships, and when the absolute position of the object being described is changed, the relative positional relationships may also be changed accordingly.
In the following description, terms such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, etc., are defined with respect to the configurations shown in the respective drawings, and in particular, "height" corresponds to a dimension from top to bottom, "width" corresponds to a dimension from left to right, "depth" corresponds to a dimension from front to rear, which are relative concepts, and thus may be varied accordingly depending on the position in which it is used, and thus these or other orientations should not be construed as limiting terms.
Terms concerning attachments, coupling and the like (e.g., "connected" and "attached") refer to a relationship wherein structures are secured or attached, either directly or indirectly, to one another through intervening structures, as well as both movable or rigid attachments or relationships, unless expressly described otherwise.
According to an embodiment of the present invention, as shown in fig. 1 and 2, it can be seen that a material loading and conveying mechanism includes:
a transmission line body 21 for transmitting a carrier 22, wherein the carrier 22 is used for bearing a notebook computer 4; a feeding assembly 25 for transporting the notebook computer 4; and
a mounting assembly for capturing a notebook computer 4 loaded into the carrier 22;
the loading assembly 25 is provided with a loading station, the loading station is arranged at the downstream end of the loading assembly 25, and the assembly is used for grabbing the notebook computer 4 at the loading station and transferring the notebook computer 4 into the corresponding carrier 22.
After the notebook computer 4 transmitted on the feeding assembly 25 is grabbed by the assembling assembly, the notebook computer is loaded into the carrier 22 circulating on the transmission line body 21 and moves to the next station along with the transmission line body 21, so that the subsequent aging detection step is realized, the automatic test is realized, and the efficiency is improved.
Meanwhile, in order to facilitate stability in the transmission process, the notebook computer 4 is always in a folding state in the transmission process; specifically, the laptop 4 transported on the feeding assembly 25 is in a closed state, and when performing the aging test, because the aging test of the display screen is one of important aging test items, the display screen of the laptop 4 needs to be tested, so that when the laptop 4 is transferred from the feeding assembly 25 to the transport line body 21, the laptop 4 needs to be unfolded and the laptop 4 is ensured to be in a power-on state, so that the testing can be performed, and therefore, the assembly at least needs to be unfolded during the process of grabbing the laptop 4.
In a preferred embodiment, the carrier 22 includes two opposite push blocks 222, and the two push blocks 222 are spaced apart from each other, so that a material receiving cavity is formed between the two push blocks 222, the material receiving cavity is used for receiving the notebook computer 4, and meanwhile, an opening is formed on the upper surface of the two opposite push blocks 222, and the notebook computer 4 is inserted into the material receiving cavity from the opening.
The material bearing cavity formed between the two push blocks 222 is convenient for bearing the notebook computer 4, so that the notebook computer 4 is limited in the carrier 22, the stability of the notebook computer 4 in the transmission process is improved, and meanwhile, the notebook computer 4 is prevented from colliding in the transmission process due to the fact that the notebook computer 4 is arranged in the carrier 22, and the notebook computer 4 is protected.
In the using process, due to the fact that the freedom degree of the two plate-type structures hinged in the notebook computer 4 is large, after the notebook computer 4 is unfolded by the assembling component, the opening angle of the notebook computer 4 is difficult to control accurately, and aging efficiency is easily affected.
Further, the corresponding side surface of the pushing block 222 includes an inclined slope 2221, so that the slope 2221 on the two pushing blocks 222 forms the V-shaped material receiving cavity, and the notebook computer 4 is limited by the pushing block 222;
when the notebook computer 4 is inserted into the material bearing cavity, the outer wall of the notebook computer 4 is attached to the slope 2221 after the notebook computer 4 is unfolded, so that the stability is improved conveniently.
The included angle range formed by the slope 2221 is 20-60 degrees, the notebook computer 4 is received by the V-shaped material bearing cavity, so that the aging step can be realized by the notebook computer 4 expanding at a smaller angle, compared with the expanding angle of the notebook computer 4 in normal use, the volume occupied by the notebook computer 4 in the carrier 22 is smaller, an aging bin can be designed according to the volume of the notebook computer 4 in the carrier 22, the volume of the aging bin is reduced, the volume of the whole testing equipment is reduced, more aging bins can be arranged under the same floor area, more notebook computers 4 can be conveniently tested, and the aging testing efficiency is improved.
The carrier 22 further comprises a base 221, which is located below the push block 222; the pushing block 222 is fixed on the base 221.
An accessory 223 is arranged on the base 221, and the accessory 223 is matched with an interface on the notebook computer 4;
the accessories 223 are arranged on two sides of the push block 222, and when the notebook computer 4 is inserted into the material bearing cavity, the accessories 223 are connected to the interface on the side of the notebook computer 4; because the interface positions on different types of notebook computers 4 are distributed differently, the carrier 22 can meet different types of notebook computers 4 by arranging the accessories 223 on the two sides of the carrier 22, and the application range of the carrier is improved.
Specifically, the accessory 223 includes a first plug-in 2231 and a second plug-in 2232, and one of the first plug-in 2231 and the second plug-in 2232 is inserted into a power port of the notebook computer 4;
the power supply is arranged in the base 221, the notebook computer 4 is connected through the accessory 223, so that the power supply is electrically connected with the notebook computer 4, the power supply block in the notebook computer 4 is difficult to maintain the discharge requirement in the aging process, and the notebook computer 4 is supplied with power through the power supply in the base 221, so that the notebook computer 4 can be ensured to be in a normal working state.
In a preferred embodiment, an unfolding station and a power supply station are sequentially arranged on the transmission line body 21 along a transmission direction, and the folded notebook computer 4 is transmitted on the feeding assembly 25;
in order to realize preparation work before aging, specifically, the assembly components include a first assembly component 23 and a second assembly component 24, and the first assembly component 23 and the second assembly component 24 correspond to the unfolding station and the power supply station;
the first assembling component 23 is used for grabbing the folded notebook computer 4 at the feeding station to move into the carrier 22 at the unfolding station, and unfolding the folded notebook computer 4;
the second mounting assembly 24 is used for grasping the accessory 223 in the carrier at the power supply station and connecting the accessory 223 to the notebook computer 4.
The transmission line body 21 comprises a production line for circulating carriers, the unfolding station and the power supply station are arranged on the production line, and the downstream end of the feeding assembly 25 is arranged close to one side of the unfolding station, so that the layout is optimized, the feeding time of the notebook computer 4 is shortened, and the notebook computer 4 is quickly loaded into the carrier 22.
While embodiments of the invention have been disclosed above, it is not limited to the applications listed in the description and the embodiments, which are fully applicable in all kinds of fields of application of the invention, and further modifications may readily be effected by those skilled in the art, so that the invention is not limited to the specific details without departing from the general concept defined by the claims and the scope of equivalents.