CN210018404U - Novel electric storage rack structure - Google Patents

Novel electric storage rack structure Download PDF

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Publication number
CN210018404U
CN210018404U CN201920143203.4U CN201920143203U CN210018404U CN 210018404 U CN210018404 U CN 210018404U CN 201920143203 U CN201920143203 U CN 201920143203U CN 210018404 U CN210018404 U CN 210018404U
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China
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component
storage rack
motor
cabinet
vertical
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Expired - Fee Related
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CN201920143203.4U
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Chinese (zh)
Inventor
杨瑞链
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Ulike Corp
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Ulike Corp
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Abstract

The utility model is suitable for an accomodate technical field, provide a novel electronic frame structure of accomodating, install in the cabinet internally, including one accomodate frame, the electronic component of a level, one reciprocate the component and a perpendicular electronic component, it connects with the drive to reciprocate the component slip group the internal top space of cabinet, perpendicular electronic component with it connects with the drive to reciprocate the component transmission it is vertical movement to reciprocate the component, accomodate the frame with the electronic component of level is fixed reciprocate on the component, just the electronic component of level with accomodate the frame transmission and connect with the drive accomodate the frame to the external translation of cabinet. Therefore, the utility model discloses can accomodate by make full use of cabinet body top space, solve the user simultaneously and accomodate inconvenient problem to the eminence.

Description

Novel electric storage rack structure
Technical Field
The utility model relates to an accomodate technical field, especially, relate to a novel electronic frame structure of accomodating.
Background
Because of the house price soaring, the cost that the consumer bought the room is higher and higher, and the terrace of purchase is littleer and smaller more and more, in order make full use of indoor space, for example will install the wardrobe in the bedroom, will highly do the height of wardrobe usually and be connected with the ceiling, separate into upper cabinet and lower cabinet or do respectively to be upper cabinet and lower cabinet with the plywood to the wardrobe body again, the upper cabinet is used for accomodating the season (off-season) article like: quilts, clothing, etc.; the lower cabinet is used for accommodating articles such as clothes, ornaments and the like which are worn in daily life in the season, or the wardrobe is divided into a low cabinet and a high cabinet by a layer of plate, and the high cabinet is arranged above the low cabinet; no matter go up the cabinet or be high cabinet, the height of two kinds of cabinets body all is higher than the height that the user lifted up, and when the user accomodate the clothing, must use ladder or stool just can accomodate the clothing in last cabinet or high cabinet, and because of social change old man is more and more, old person is very unsuitable to use ladder or stool to climb up ladder or stool and accomodate the clothing in last cabinet or high cabinet.
In view of the above, the conventional method has disadvantages and drawbacks in practical use, and thus needs to be improved.
SUMMERY OF THE UTILITY MODEL
To foretell defect, the utility model aims to provide a novel electronic storage rack structure can accomodate by make full use of cabinet body top space, has solved the user simultaneously and has accomodate inconvenient problem to the eminence.
In order to achieve the above object, the utility model provides a novel electronic storage rack structure installs in the cabinet is internal, including one storage rack, the electronic component of a level, one reciprocate the component and a perpendicular electronic component, it connects with the drive to reciprocate the component slip group the internal top space of cabinet, perpendicular electronic component with reciprocate the component transmission and connect and do the vertical migration to reciprocate the component, storage rack with the electronic component of level is fixed reciprocate on the component, just the electronic component of level with storage rack transmission is connected with the drive storage rack to the external translation of cabinet.
According to the novel electric storage rack structure, the storage rack comprises two sliding rail pieces, a rack body and at least one bearing piece, the two sliding rail pieces are horizontally fixed on the up-and-down moving component, the rack body and the two sliding rail pieces can be assembled in a sliding mode, and the bearing piece is installed on the rack body; the horizontal electric component is in transmission connection with the frame body; and/or
The horizontal electric component is in transmission connection with the two sliding rail pieces.
According to novel electronic storage rack structure, the electronic component of level including first motor element, locating wheel, annular sawtooth belt and impeller, first motor element with the locating wheel is fixed on reciprocating the component, the both ends of annular sawtooth belt respectively with first motor element with the locating wheel transmission cup joints, the impeller presss from both sides to be located on the annular sawtooth belt just the impeller with the storage rack is connected, first motor element drive annular sawtooth belt is in order to promote the impeller, the impeller level promotes the storage rack stretches out or retracts the cabinet body.
According to novel electronic frame structure of accomodating, first motor element includes first controller and first motor, first controller with first motor electric connection, just the drive wheel of first motor with the transmission of annular sawtooth belt cup joints.
According to novel electronic storage rack structure, perpendicular electronic component including second motor subassembly, two at least fixed hanging wheels, two at least rope spare and two at least perpendicular rail spares, fixed hanging wheel fixed mounting in the interior top of the cabinet body, the one end of rope spare with the transmission of second motor subassembly is connected, just the other end of two at least rope spares is walked around respectively the gyro wheel of two at least fixed hanging wheels and perpendicular with moving part in two at least perpendicular rail spares is connected, the moving part slides the concatenation just on the perpendicular rail spare the moving part with reciprocate component fixed connection, the transmission of second motor subassembly the rope spare is drawn from top to bottom the moving part is in order to drive it reciprocates the component.
According to novel electronic storage rack structure, perpendicular electronic component includes one fixed hanging wheel, four rope spare and four perpendicular rail spare, four perpendicular rail spare install perpendicularly in the internal and rectangle diagonal distribution of cabinet, four fixed hanging wheel distribution corresponds to install the top of perpendicular rail spare, second motor component fixed mounting in the centre at the internal top of cabinet, four the one end of rope spare respectively with the transmission of second motor component is connected, and the other end is walked around respectively fixed hanging wheel with moving part on the perpendicular rail spare is connected perpendicularly.
According to novel electronic storage rack structure, the second motor subassembly including second controller and second motor, the second controller with second motor electric connection, just the one end winding of rope spare is in on the drive wheel of second motor, the drive wheel of second motor is just reversing in order to zoom rope spare.
According to novel electronic storage rack structure, it establishes to the receiver to hold carrier, the support body is established to the rectangle frame structure, the box mouth butt joint of receiver in the lower extreme of support body, just be equipped with an at least opening on the outside gliding front end of receiver.
According to novel electronic storage rack structure, the below of receiver is equipped with one and installs in the internal layering board of cabinet, the horizontal width of layering board is less than the horizontal width of the cabinet body.
According to novel electronic storage rack structure, it establishes to hang the clothing pole to hold carrier, the support body comprises a vertical pole and two transverse rods, the both ends of vertical pole respectively with the one end of two transverse rods is connected, just the vertical pole is located support body gliding one side inwards, hang the both ends of clothing pole and connect respectively on two transverse rods.
Novel electronic frame structure of accomodating, install in the cabinet internal, including one accomodate frame, a horizontal electronic component, one reciprocate component and a perpendicular electronic component, it connects to reciprocate the component slip the internal top space of cabinet, perpendicular electronic component with it connects with the drive to reciprocate the component transmission reciprocate the component and do the vertical migration, accomodate the frame with the electronic component of level is fixed reciprocate on the component, just the electronic component of level with accomodate the frame transmission and connect with the drive accomodate the frame to the external translation of cabinet. Therefore, the utility model discloses can shift out the cabinet body earlier with storage rack by closing the position translation, will store the height that the rack descends to user's convenient storage again, after the user accomodates article, the top space of the cabinet body is got back to original way to storage rack recycling, can accomodate by make full use of cabinet body top space, has solved the user simultaneously and has accomodate inconvenient problem to the eminence.
Drawings
Fig. 1 is a sectional view of the novel electric storage rack structure according to the first embodiment of the present invention, wherein the storage rack is folded in the cabinet body;
fig. 2 is a structural sectional view of the novel electric storage rack structure according to the first embodiment of the present invention, in which the storage rack horizontally extends out of the cabinet body;
fig. 3 is a structural cross-sectional view of the novel electric storage rack structure according to the first embodiment of the present invention, in which the storage rack horizontally extends out of the cabinet body and then vertically descends;
fig. 4 is a sectional view of an assembly structure of the storage rack, the horizontal electric component and the up-down moving component of the novel electric storage rack according to the first embodiment of the present invention;
FIG. 5 is an exploded view of the structure of FIG. 4;
fig. 6 is a sectional view of an assembly structure of the storage rack, the vertical electric component and the up-down moving component of the novel electric storage rack according to the first embodiment of the present invention;
fig. 7 is a sectional view of the novel electric storage rack structure according to the second embodiment of the present invention, wherein the storage rack is folded in the cabinet body;
fig. 8 is a structural sectional view of the novel electric storage rack structure according to the second embodiment of the present invention, in which the storage rack horizontally extends out of the cabinet body;
fig. 9 is a structural sectional view of the novel electric storage rack structure according to the second embodiment of the present invention, in which the storage rack horizontally extends out of the cabinet body and then vertically descends;
fig. 10 is a sectional view of an assembly structure of the storage rack, the horizontal electric component and the up-down moving component of the novel electric storage rack according to the second embodiment of the present invention;
FIG. 11 is an exploded view of the structure of FIG. 10;
fig. 12 is a sectional view of the assembly structure of the storage rack, the vertical electric component and the vertical moving component of the novel electric storage rack according to the second embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Fig. 1-6 show the novel electric storage rack structure 100 according to the first embodiment of the present invention, which is installed in the cabinet 300, and comprises a storage rack 10, a horizontal electric component 20, an up-down moving component 30 and a vertical electric component 40, the up-down moving component 30 is slidably assembled in the space above the cabinet 300, the vertical electric component 40 is in transmission connection with the up-down moving component 30 to drive the up-down moving component 30 to move vertically, the storage rack 10 is fixed on the up-down moving component 30 with the horizontal electric component 20, and the horizontal electric component 20 is in transmission connection with the storage rack 10 to drive the storage rack to translate outside the cabinet. Specifically, the storage rack 10 is moved out of the cabinet 300 from the storage position through the horizontal electric component 20, and then the storage rack 10 is lowered to the height convenient for the user to store through the vertical electric component 40, after the user stores articles, the storage rack 10 returns to the space above the cabinet 300 along the original path, the space above the cabinet 300 can be fully utilized for storage, and meanwhile, the problem that the user is inconvenient to store in the high place is solved.
The storage rack 10 comprises two sliding rail members 11, a rack body 12 and at least one bearing member 13, the two sliding rail members 11 are horizontally fixed on the up-down moving member 30, the rack body 12 and the two sliding rail members 11 can be assembled in a sliding way, and the bearing member 13 is installed on the rack body 12; the horizontal electric component 20 of the present embodiment is in driving connection with the frame body 12. Of course, the horizontal electric component 20 may be in transmission connection with the two slide rail members 11, or the horizontal electric component 20 may be in transmission connection with both the frame body 12 and the two slide rail members 11. Two slide rail spare 11 of this embodiment are installed respectively on the relative both sides board that reciprocates component 30, support body 12 slides to be assembled and is in between two slide rail spare 11, still install the carrier 13 that is used for accomodating on support body 12, support body 12 can be relative promptly two slide rail spare 11 slide, specifically do the slip direction of support body 12 is unanimous with the cabinet door direction of the cabinet body 300, when support body 12 roll-off cabinet body 300 and descend to a take the altitude through perpendicular electronic component 40, the user can accomodate various article on carrier 13.
Preferably, the carrier 13 is a storage box, the frame body 12 is a rectangular frame structure, a box opening of the storage box is butted against a lower end of the frame body 12, and at least one opening is formed at the front end of the storage box, which slides outwards. That is, the front end slot of receiver to the user puts into wherein or places wherein from the box mouth at receiver top with article from the front end slot of receiver. The lower part of receiver is equipped with a layering board 19 of installing in cabinet body 300, the horizontal width of layering board 19 is less than the horizontal width of cabinet body 300. Therefore, the storage box does not touch the front edge of the layered plate 19 when being lifted.
As shown in fig. 4 to 5, the horizontal electric member 20 includes a first motor assembly 21, a positioning wheel 22, an annular sawtooth belt 23, and a pushing member 24, the first motor assembly 21 and the positioning wheel 22 are fixed on the up-down moving member 30, two ends of the annular sawtooth belt 23 are respectively in transmission sleeve connection with the first motor assembly 21 and the positioning wheel 22, the pushing member 24 is clamped on the annular sawtooth belt 23, the pushing member 24 is connected with the storage rack 10, the first motor assembly 21 drives the annular sawtooth belt 23 to push the pushing member 24, and the pushing member 24 horizontally pushes the storage rack 10 to extend out of or retract into the cabinet 300. The first motor assembly 21 includes a first controller 211 and a first motor 212, the first controller 211 is electrically connected to the first motor 212, and a driving wheel of the first motor 212 is in driving connection with the annular sawtooth belt 23. The inner surface of the annular sawtooth belt 23 is of a sawtooth structure, the driving wheel of the first motor 212 and the positioning wheel 22 are respectively connected to two ends of the inner surface of the annular sawtooth belt 23 in a meshed mode, the belt of the annular sawtooth belt 23 rotates through the driving of the driving wheel of the first motor 212, and the pushing piece 24 is clamped and fixed on the belt of the annular sawtooth belt 23 and driven to move, so that the storage rack 10 is pushed to slide inwards or outwards to move in a sliding mode.
The vertical electric component 40 includes a second motor assembly 41, at least two fixed hanging wheels 42, at least two rope members 43 and at least two vertical rail members 44, the fixed hanging wheels 42 are fixedly mounted on the inner top of the cabinet 300, one end of each rope member 43 is in transmission connection with the second motor assembly 41, the other end 431 of each rope member 43 respectively bypasses the rollers of the at least two fixed hanging wheels 42 and is vertically connected with a movable member 441 in the at least two vertical rail members 44, the movable member 411 is slidably assembled on the vertical rail members 44, the movable member 441 is fixedly connected with the up-down moving component 30, and the second motor assembly 41 drives the rope members 43 to pull the movable member 441 up and down to drive the up-down moving component 30 to move up and down. That is, two ends of each rope member 43 are respectively connected to the second motor assembly 41 and each movable member 411, the movable member 411 slides vertically in the vertical rail member 44, and the up-down moving member 30 is fixedly connected to the movable member 411, so that it can move up and down by being driven by the second motor assembly 41.
The vertical electric component 40 of the present embodiment includes the second motor assembly 41, four fixed hanging wheels 42, four rope members 43 and four vertical rail members 44, the four vertical rail members 44 are vertically installed in the cabinet 300 and are distributed in a rectangular diagonal manner, as shown in fig. 6, the four vertical rail members 44 are respectively installed on the inner side plate of the cabinet 300 in a rectangular diagonal manner, the four fixed hanging wheels 42 are correspondingly installed above the vertical rail members 44, that is, a fixed hanging wheel 42 installed on the top plate in the cabinet 300 is installed above each vertical rail member 44, the second motor assembly 41 is fixedly installed in the middle of the top portion in the cabinet 300, one end of each of the four rope members 43 is respectively in transmission connection with the second motor assembly 41, and the other end 431 is respectively in vertical connection with the movable member 441 on the vertical rail member 44 by bypassing the fixed hanging wheel 42.
The second motor assembly 41 includes a second controller 411 and a second motor 412, the second controller 411 is electrically connected to the second motor 412, one end of the rope member 43 is wound on the transmission wheel of the second motor 412, and the transmission wheel of the second motor 412 rotates forward and backward to zoom the rope member 43. The vertical electric member 40 suspends the vertical movement member 30 in the upper space of the cabinet 300 by a rope, and the vertical movement member 30 is controlled to move vertically in the cabinet 300 by pulling the rope.
The specific operation is as follows: the horizontal electric component 20 controls the containing frame 10 to move (from the retracted position) to the outside of the cabinet 300, when the rear end of the containing frame 10 passes the front edge of the layered plate 10 at the bottom end of the containing frame 10 and stops at the first position, then the vertical electric component 40 is started (or by a hand crank), the vertical electric component 40 enables the up-down moving component 30 to move downwards along the highest point of the two pairs of vertical rails 44 to the lowest point (the containing frame 10 descends to the second position from the first position), and then stops, which is convenient for the user to contain the articles on the containing frame 10; according to the reverse movement, the user starts the vertical electric member 40 to move the up-and-down moving member 30 upward along the lowest point (i.e. the storage rack 1 is located at the second position) of the two pairs of vertical rails 44 to the highest point (i.e. the storage rack 10 is located at the first position), and then stops the vertical electric member 20, and continues to start the horizontal electric member 20 to move the storage rack 10 into the cabinet 300 and fold the storage rack at the initial position.
Fig. 7 to 8 show a novel electric storage rack structure 200 according to a second embodiment of the present invention, which is installed in a cabinet 400, and includes a storage rack 50, a horizontal electric component 70, an up-down moving component 60 and a vertical electric component 80, the up-down moving component 60 is slidably assembled in the space above the cabinet 400, the vertical electric component 80 is in transmission connection with the up-down moving component 60 to drive the up-down moving component 60 to move vertically, the storage rack 50 is fixed on the up-down moving component 60 with the horizontal electric component 70, and the horizontal electric component 70 is in transmission connection with the storage rack 50 to drive the storage rack to move horizontally outside the cabinet. Specifically, the storage rack 50 is firstly translated out of the cabinet body 400 from the folding position through the horizontal electric component 70, then the storage rack 50 is descended to the height convenient for the user to store through the vertical electric component 80, after the user stores articles, the storage rack 50 returns to the space above the cabinet body 400 along the original path, the space above the cabinet body 400 can be fully utilized for storage, and meanwhile, the problem that the user is inconvenient to store high places is solved.
The storage rack 50 comprises two sliding rail members 51, a rack body 52 and at least one bearing member 53, the two sliding rail members 51 are horizontally fixed on the up-down moving member 60, the rack body 52 and the two sliding rail members 51 can be assembled in a sliding way, and the bearing member 53 is installed on the rack body 52; the horizontal electric component 70 of this embodiment is in driving connection with the frame body 52. Of course, the horizontal electric component 70 may be in transmission connection with the two slide rail members 51, or the horizontal electric component 70 may be in transmission connection with both the frame body 52 and the two slide rail members 51. The two sliding rail members 51 of this embodiment are respectively installed on two opposite side plates of the up-down moving member 60, the frame body 52 is slidably assembled between the two sliding rail members 51, and the carrier 53 for storage is further installed on the frame body 52, that is, the frame body 52 can slide relative to the two sliding rail members 51, specifically, the sliding direction of the frame body 52 is consistent with the direction of the cabinet door of the cabinet body 400, and when the frame body 52 slides out of the cabinet body 400 and descends to a certain height through the vertical electric member 80, a user can store various articles on the carrier 53.
The difference from the above embodiment is that, as shown in fig. 10, the carrier 53 is a clothes hanging rod, the frame body 52 is composed of a vertical rod and two horizontal rods, two ends of the vertical rod are respectively connected with one end of the two horizontal rods, the vertical rod is arranged on one side of the frame body 52 sliding inwards, and two ends of the clothes hanging rod are respectively connected with the two horizontal rods. The structure can be convenient for a user to hang the clothes hanger on the clothes hanging rod.
As shown in fig. 10 to 11, the horizontal electric member 70 includes a first motor assembly 71, a positioning wheel 72, an annular sawtooth belt 73, and a pushing member 74, the first motor assembly 71 and the positioning wheel 72 are fixed on the up-down moving member 60, two ends of the annular sawtooth belt 73 are respectively in transmission sleeve connection with the first motor assembly 71 and the positioning wheel 72, the pushing member 74 is clamped on the annular sawtooth belt 73, the pushing member 74 is connected with the storage rack 50, the first motor assembly 71 drives the annular sawtooth belt 73 to push the pushing member 74, and the pushing member 74 horizontally pushes the storage rack 50 to extend or retract into the cabinet 400. The first motor assembly 71 includes a first controller 711 and a first motor 712, the first controller 711 is electrically connected to the first motor 712, and a driving wheel of the first motor 712 is in driving connection with the annular toothed belt 73. The inner surface of the annular sawtooth belt 73 is in a sawtooth structure, the driving wheel of the first motor 712 and the positioning wheel 72 are respectively connected to two ends of the inner surface of the annular sawtooth belt 73 in a meshed manner, the belt of the annular sawtooth belt 73 rotates through the driving of the driving wheel of the first motor 712, and the pushing piece 74 is clamped and fixed on the belt of the annular sawtooth belt 73 and is driven to move, so that the storage rack 50 is pushed to slide and translate inwards or outwards.
The vertical electric component 80 includes a second motor component 81, at least two fixed hanging wheels 82, at least two rope pieces 83 and at least two vertical rail pieces 84, the fixed hanging wheels 82 are fixedly installed at the inner top of the cabinet body 400, one end of each rope piece 83 is in transmission connection with the second motor component 81, the other ends 831 of the at least two rope pieces 83 respectively bypass the rollers of the at least two fixed hanging wheels 82 and are vertically connected with a movable piece 841 in the at least two vertical rail pieces 84, the movable piece 411 is slidably assembled on the vertical rail pieces 84 and the movable piece 841 is fixedly connected with the up-down moving component 60, and the second motor component 81 transmits the rope piece 83 to pull the movable piece 841 up and down to drive the up-down moving component 60 to move up and down. That is, two ends of each rope member 83 are respectively connected to the second motor element 81 and each movable member 411, the movable member 411 slides vertically in the vertical rail member 84, and the up-down moving member 60 is fixedly connected to the movable member 411, so that it can move up and down by being driven by the second motor element 81.
The vertical electric component 80 of this embodiment includes the second motor element 81, four fixed hanging wheels 82, four rope elements 83 and four vertical rail elements 84, the four vertical rail elements 84 are vertically installed in the cabinet 400 and are distributed in rectangular diagonal directions, as shown in fig. 12, the four vertical rail elements 84 are respectively installed on the inner side plate of the cabinet 400 in rectangular diagonal directions, the four fixed hanging wheels 82 are correspondingly installed above the vertical rail elements 84 in a distributed manner, that is, a fixed hanging wheel 82 installed on the top plate in the cabinet 400 is installed above each vertical rail element 84, the second motor element 81 is fixedly installed in the middle of the top portion in the cabinet 400, one end of each of the four rope elements 83 is respectively in transmission connection with the second motor element 81, and the other end 831 is respectively in vertical connection with the movable element 841 on the vertical rail element 84 by bypassing the fixed hanging wheel 82.
The second motor assembly 81 includes a second controller 411 and a second motor 412, the second controller 411 is electrically connected to the second motor 412, one end of the rope 83 is wound on the transmission wheel of the second motor 412, and the transmission wheel of the second motor 412 rotates forward and backward to zoom the rope 83. The vertical electric component 80 suspends the vertical moving component 60 in the upper space of the cabinet 400 through a rope, and the vertical moving component 60 is controlled to move vertically in the cabinet 400 through stretching the rope.
To sum up, novel electronic storage rack structure, install in the cabinet internal, including one storage rack, the electronic component of a level, one reciprocate the component and a perpendicular electronic component, it connects with the drive to reciprocate the component slip group the internal top space of cabinet, perpendicular electronic component with it connects with the drive to reciprocate the component transmission reciprocate the component and do the vertical migration, store the frame with the electronic component of level is fixed reciprocate on the component, just the electronic component of level with it connects with the drive to store the frame to the external translation of cabinet. Therefore, the utility model discloses can shift out the cabinet body earlier with storage rack by closing the position translation, will store the height that the rack descends to user's convenient storage again, after the user accomodates article, the top space of the cabinet body is got back to original way to storage rack recycling, can accomodate by make full use of cabinet body top space, has solved the user simultaneously and has accomodate inconvenient problem to the eminence.
Naturally, the present invention can be embodied in many other forms without departing from the spirit or essential attributes thereof, and it should be understood that various changes and modifications can be made by one skilled in the art without departing from the spirit or essential attributes thereof, and it is intended that all such changes and modifications be considered as within the scope of the appended claims.

Claims (10)

1. The utility model provides a novel electronic frame structure of accomodating, its characterized in that installs internally in the cabinet, including one accomodate frame, a horizontal electronic component, one reciprocate the component and a perpendicular electronic component, it connects to reciprocate the component slip the internal top space of cabinet, perpendicular electronic component with reciprocate the component transmission and be connected with the drive reciprocate the component and be the vertical migration, accomodate the frame with horizontal electronic component is fixed reciprocate on the component, just horizontal electronic component with accomodate the frame transmission and be connected with the drive accomodate the frame to the external translation of cabinet.
2. The novel electric storage rack structure as claimed in claim 1, wherein the storage rack comprises two sliding rail members, a rack body and at least one bearing member, the two sliding rail members are horizontally fixed on the up-down moving member, the rack body and the two sliding rail members are slidably assembled, and the bearing member is mounted on the rack body; the horizontal electric component is in transmission connection with the frame body; and/or
The horizontal electric component is in transmission connection with the two sliding rail pieces.
3. The novel electric storage rack structure as claimed in claim 1, wherein the horizontal electric member comprises a first motor assembly, a positioning wheel, an annular sawtooth belt and a pushing member, the first motor assembly and the positioning wheel are fixed on the up-down moving member, two ends of the annular sawtooth belt are respectively in transmission sleeve connection with the first motor assembly and the positioning wheel, the pushing member is clamped on the annular sawtooth belt and connected with the storage rack, the first motor assembly drives the annular sawtooth belt to push the pushing member, and the pushing member horizontally pushes the storage rack to extend out of or retract into the cabinet body.
4. The novel electric storage rack structure as claimed in claim 3, wherein the first motor assembly comprises a first controller and a first motor, the first controller is electrically connected with the first motor, and a transmission wheel of the first motor is in transmission sleeve connection with the annular sawtooth belt.
5. The novel electric storage rack structure as claimed in claim 1, wherein the vertical electric component comprises a second motor component, at least two fixed hanging wheels, at least two rope pieces and at least two vertical rail pieces, the fixed hanging wheels are fixedly mounted at the inner top of the cabinet body, one end of each rope piece is in transmission connection with the second motor component, the other end of each rope piece bypasses the rollers of the at least two fixed hanging wheels and is vertically connected with the movable piece in the at least two vertical rail pieces, the movable piece is in sliding connection with the vertical rail pieces, the movable piece is fixedly connected with the vertical moving component, and the second motor component drives the rope piece to pull the movable piece up and down so as to drive the vertical moving component to move up and down.
6. The novel electric storage rack structure as claimed in claim 5, wherein the vertical electric member comprises one of the second motor assembly, four of the fixed hanging wheels, four of the rope members and four of the vertical rail members, the four of the vertical rail members are vertically installed in the cabinet body and are distributed diagonally in a rectangular shape, the four of the fixed hanging wheels are correspondingly installed above the vertical rail members, the second motor assembly is fixedly installed in the middle of the top portion of the cabinet body, one end of each of the four of the rope members is in transmission connection with the second motor assembly, and the other end of each of the four rope members is in vertical connection with the moving member on the vertical rail member by bypassing the fixed hanging wheel.
7. The novel electric storage rack structure as claimed in claim 5, wherein the second motor assembly comprises a second controller and a second motor, the second controller is electrically connected to the second motor, and one end of the rope member is wound around a transmission wheel of the second motor, and the transmission wheel of the second motor rotates forward and backward to retract and retract the rope member.
8. The novel electric storage rack structure as claimed in claim 2, wherein the carrier is a storage box, the rack is a rectangular frame structure, the box opening of the storage box is butted against the lower end of the rack, and the front end of the storage box sliding outwards is provided with at least one opening.
9. The novel electric storage rack structure as claimed in claim 8, wherein a layered plate is installed in the cabinet body under the storage box, and the layered plate has a transverse width smaller than that of the cabinet body.
10. The novel electric storage rack structure as claimed in claim 2, wherein the supporting member is a clothes hanging rod, the rack body is composed of a vertical rod and two transverse rods, two ends of the vertical rod are respectively connected with one ends of the two transverse rods, the vertical rod is arranged on one side of the rack body sliding inwards, and two ends of the clothes hanging rod are respectively connected with the two transverse rods.
CN201920143203.4U 2019-01-28 2019-01-28 Novel electric storage rack structure Expired - Fee Related CN210018404U (en)

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CN201920143203.4U CN210018404U (en) 2019-01-28 2019-01-28 Novel electric storage rack structure

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112971381A (en) * 2021-02-20 2021-06-18 江西阳光安全设备集团有限公司 Multilayer bookshelf convenient to get and put
CN115462632A (en) * 2022-11-15 2022-12-13 江苏国衡环亚医疗科技有限公司 Intelligent storage consumable cabinet with automatic racking device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112971381A (en) * 2021-02-20 2021-06-18 江西阳光安全设备集团有限公司 Multilayer bookshelf convenient to get and put
CN112971381B (en) * 2021-02-20 2022-09-16 江西阳光安全设备集团有限公司 Multilayer bookshelf convenient to get and put
CN115462632A (en) * 2022-11-15 2022-12-13 江苏国衡环亚医疗科技有限公司 Intelligent storage consumable cabinet with automatic racking device

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