CN107826725B - Layered rack type efficient blank storage machine - Google Patents
Layered rack type efficient blank storage machine Download PDFInfo
- Publication number
- CN107826725B CN107826725B CN201711274644.XA CN201711274644A CN107826725B CN 107826725 B CN107826725 B CN 107826725B CN 201711274644 A CN201711274644 A CN 201711274644A CN 107826725 B CN107826725 B CN 107826725B
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- lifting
- frame
- shelf
- translation
- roller table
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G47/00—Article or material-handling devices associated with conveyors; Methods employing such devices
- B65G47/74—Feeding, transfer, or discharging devices of particular kinds or types
- B65G47/82—Rotary or reciprocating members for direct action on articles or materials, e.g. pushers, rakes, shovels
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G61/00—Use of pick-up or transfer devices or of manipulators for stacking or de-stacking articles not otherwise provided for
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Devices For Post-Treatments, Processing, Supply, Discharge, And Other Processes (AREA)
Abstract
The invention relates to a layered high-efficiency blank storage machine which comprises a frame, a lifting mechanism positioned on the frame, a translation mechanism connected with the lifting mechanism, a propelling mechanism connected with the translation mechanism, a layered roller table, a brick feeding roller table with the same height as the layered roller table, a layered assembly and a cage; the propelling mechanism moves up and down along with the lifting mechanism and moves in a translational way along with the translation mechanism, and at least comprises a push block chain frame; the layer frame roller table at least comprises a plurality of sticks, and the pushing block chain frame stretches into gaps among the sticks so that green bricks enter the pushing block chain frame. The layered high-efficiency green brick storage machine can realize temporary storage and discharge of green bricks through the simple lifting mechanism, the translation mechanism, the pushing mechanism, the layered rack, the cage frame and the brick feeding roller table, the loading and unloading of the green bricks are not limited by the sequence of the loading and unloading of the green bricks, the quality of the fired green bricks is ensured, the manufacturing precision requirement is low, and the production cost is low.
Description
Technical Field
The invention relates to the technical field of ceramic processing equipment, in particular to a layered efficient blank storage machine.
Background
In the preparation process of ceramics, the output of the ceramic blank making process in unit time is larger than that of the firing process, so that in order to reduce the working intensity of operators, a plurality of ceramic blanks are usually stored and are waited for firing, and the ceramic blank storing machine on the market generally has two forms, namely, a blank storing cage is fixed, a lifting roller table and a power arm are used for lifting to finish the storage of the green bricks so as to realize the first-in first-out function of ceramic tiles, but the blank storing cage is required to be matched with a stick and needs bearing connection between the cages, so that the manufacturing precision of the blank storing process can be successfully finished, and the production cost is high.
The other structure realizes the storage of the tile blanks by lifting the blank storage cage, and the tile blanks stored by the structure can only go in and out and go out and then in and out, so that the quality of the firing is reduced in an advanced tile storage time process.
Based on this, it is necessary to propose a novel blank storage machine, which solves the above problems.
The invention provides a layered high-efficiency blank storage machine, which has low equipment precision requirement and low production cost, can realize the functions of first in first out, last in and last out, and ensures the firing quality of tile blanks.
Disclosure of Invention
The invention aims to solve the technical problems of providing a layered high-efficiency blank storage machine, which has low equipment precision requirement and low production cost, can realize the functions of first in, first out, last in and last out, and ensures the firing quality of tile blanks.
In order to solve the technical problems, the invention provides a shelf type efficient blank storage machine, which comprises a frame, a lifting mechanism positioned on the frame, a translation mechanism connected with the lifting mechanism, a pushing mechanism connected with the translation mechanism, a shelf roller table, a brick feeding roller table with the same height as the shelf roller table, a shelf combination body and a cage frame, wherein the lifting mechanism is positioned on the frame;
The propelling mechanism moves up and down along with the lifting mechanism and moves in a translational way along with the translation mechanism, and at least comprises a push block chain frame;
the layer frame roller table at least comprises a plurality of sticks, and the pushing block chain frame stretches into gaps among the sticks so that green bricks enter the pushing block chain frame.
Preferably, the lifting mechanism comprises a lifting motor, a lifting main shaft connected with the lifting motor, lifting bearings arranged on the lifting main shaft, lifting driving sprockets arranged at two ends of the lifting main shaft, lifting movable sprockets connected with the lifting driving sprockets, lifting chains connected with the lifting driving sprockets and the lifting movable sprockets and a lifting frame connected with the lifting chains, and the lifting motor is arranged on the frame and drives the lifting main shaft to rotate.
Preferably, the translation mechanism is connected with the elevating system, and it includes translation motor, with translation frame that translation motor is connected, be located slide rail in the translation frame and with the slider that the elevating system is connected, translation motor is located in the elevating system, it drives translation frame carries out translational motion, the slider with slide rail assorted, and can slide on the slide rail.
Preferably, the pushing mechanism is located at the bottom of the translation frame, and comprises a pushing block chain frame, a pushing motor, a pushing shaft, a pushing bearing, a bevel gear, a pushing chain wheel, a pushing chain connected with the pushing chain wheel and a pushing block located on the pushing chain.
Preferably, a containing cavity is formed between the pushing block chain frame and the translation frame;
The pushing block chain frame consists of a plurality of roller strips.
Preferably, the push block chain frame is also provided with guide angle steel.
Preferably, the layer frame roller table comprises a roller table motor, a roller seat, a roller positioned on the roller seat and a chain connecting the roller table motor and the roller, a gap is arranged between adjacent rollers, and the roller bar stretches into the gap.
Preferably, the brick feeding roller table comprises a brick feeding roller, and the brick feeding roller and the roller on the layer frame roller table are positioned in the same plane.
Preferably, the layer frame assembly is positioned in the accommodating cavity or the cage frame and comprises a layer frame, layer frame connecting plates positioned at two ends of the layer frame, guide wheels connected with the layer frame connecting plates and hooks;
The shelf consists of a plurality of shelf sticks, and the positions of the shelf sticks and the positions of the roller strips are overlapped;
The hook is contacted with the pushing block.
Preferably, the cage comprises cage guide angles, which are identical in structure to the guide angles.
Compared with the prior art, the invention has the beneficial effects that:
the layered high-efficiency green brick storage machine can realize temporary storage and discharge of green bricks through the simple lifting mechanism, the translation mechanism, the pushing mechanism, the layered rack, the cage frame and the brick feeding roller table, the loading and unloading of the green bricks are not limited by the sequence of the loading and unloading, the quality of fired products of the green bricks is ensured, bearing connection is not required, the manufacturing precision requirement is low, and the production cost is low.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a shelf-type efficient blank storage machine provided by the invention;
FIG. 2 is a schematic structural view of another view angle of the shelf-type efficient blank storage machine provided by the invention;
Fig. 3 is a schematic structural view of a cage of the layered efficient blank storage machine provided by the invention;
FIG. 4 is a top view of the shelf-type efficient blank storage machine provided by the invention;
fig. 5 is an enlarged view of a portion a in fig. 1;
Fig. 6 is an enlarged view of the portion B in fig. 2;
Fig. 7 is an enlarged view of a portion C in fig. 3;
fig. 8 is an enlarged view of a portion D in fig. 4.
Detailed Description
In order to better understand the technical solution of the present invention, the present invention will be further described in detail with reference to the accompanying drawings and preferred embodiments.
As shown in fig. 1-8, a shelf type high-efficiency blank storage machine comprises a frame 1, a lifting mechanism 2 positioned on the frame 1, a translation mechanism 3 connected with the lifting mechanism 2, a pushing mechanism 4 connected with the translation mechanism 3, a shelf roller table 5, a brick feeding roller table 6 with the same height as the shelf roller table 5, a shelf combination 7 and a cage 8;
The propulsion mechanism 4 moves up and down along with the lifting mechanism 2 and moves in a translational way along with the translation mechanism 3, and at least comprises a push block chain frame 41;
the layer rack roller stand 5 at least comprises a plurality of sticks 51, and the pushing block chain rack 41 extends into the gaps between the sticks 51 so that green bricks can enter the pushing block chain rack 41.
The frame 1 is used for supporting the lifting mechanism 2, the translation mechanism 3, the pushing mechanism 4 and the layer frame roller table 5, and is convenient for the installation and fixation of the lifting mechanism 2, the translation mechanism 3, the pushing mechanism 4 and the layer frame roller table 5.
The lifting mechanism 2 lifts on the frame 1 to drive the green bricks to lift so as to realize the storage function of the green bricks, and comprises a lifting motor 21, a lifting main shaft 22 connected with the lifting motor 21, lifting bearings 23 positioned on the lifting main shaft 22, lifting driving sprockets 24 positioned at two ends of the lifting main shaft 23, lifting movable sprockets 25 connected with the lifting driving sprockets 24, lifting chains (not shown in the figure) connected with the lifting driving sprockets 24 and the lifting movable sprockets 25 and a lifting frame 26 connected with the lifting chains, wherein the lifting motor 21 is positioned on the frame 1 and drives the lifting main shaft 22 to rotate.
When the lifting device works, the lifting motor 21 drives the lifting main shaft 22 to rotate, the lifting driving sprocket 24 positioned on the lifting main shaft 22 follows the lifting main shaft 22 to rotate, the lifting chain and the lifting movable sprocket 25 are driven to rotate together, the lifting frame 26 connected with the lifting chain follows the lifting chain to move up and down together, and accordingly lifting movement of the lifting frame 26 is achieved.
The translation mechanism 3 is connected with the lifting mechanism 2, so that when the lifting mechanism 2 does lifting motion, the translation mechanism 3 follows the lifting mechanism 2 to do lifting motion together, and the green brick conveying process is realized.
The translation mechanism 3 comprises a translation motor 31, a translation frame 32 connected with the translation motor 31, a sliding rail 33 positioned on the translation frame 32 and a sliding block 34 connected with the lifting frame 26, wherein the translation motor 31 is positioned on the lifting frame 26 and drives the translation frame 32 to perform translation movement, and the sliding block 34 is matched with the sliding rail 33 and can slide on the sliding rail 33 so that the translation mechanism 3 achieves translation effect.
During operation, the lifting mechanism 2 drives the translation mechanism 3to lift to a required position, the translation motor 31 drives the translation frame 32 to move, and the sliding block 34 connected with the lifting frame 26 moves inside the sliding rail 33 positioned on the translation frame 32, so that the translation mechanism 3 moves in a translation manner relative to the lifting frame 2, and the translation movement of the translation mechanism 3 is realized.
The pushing mechanism 4 is located at the bottom of the translation frame 3, and is used for pushing the layer frame assembly 7 to realize the in-out motion of the layer frame assembly 7, and specifically, the pushing mechanism 4 includes a pushing block chain frame 41, a pushing motor 42, a pushing shaft 43, a pushing bearing 44, a bevel gear 45, a pushing chain wheel 46, a pushing chain 47 connected with the pushing chain wheel 46, and a pushing block 48 located on the pushing chain.
The push block chain frame 41 and the translation frame 32 form a containing cavity, so that the layer frame assembly 7 can be conveniently placed, and in particular, the push block chain frame 41 is composed of a plurality of roller strips.
In order to guide the movement direction of the layer frame assembly 7 in the accommodating cavity, the push block chain frame 41 is further provided with a guide angle 411, so that the layer frame assembly 7 moves in the guide angle 411.
The propulsion motor 42 drives the propulsion shaft 43 to rotate, and the propulsion bearing 44, the bevel gear 45 and the propulsion sprocket 46 are respectively positioned at two ends of the propulsion shaft 43, so that the bevel gear 45 and the propulsion sprocket 46 follow the propulsion shaft 43 to move when the propulsion shaft 43 rotates. The pushing block 46 is located on the pushing chain 47, and the pushing chain 47 is connected with the pushing chain wheel 46, so that when the pushing chain 47 rotates, the position of the pushing block 48 changes, and the function of pushing the layer frame assembly 7 by the pushing block 48 is achieved. The pushing block 48 contacts with the layer frame assembly 7, and when the pushing block 48 moves, the layer frame assembly 7 is driven to move together.
During operation, the lifting mechanism 2 is lifted to a required position, the translation mechanism 3 moves towards the direction approaching the cage frame 8, the pushing mechanism 4 positioned at the bottom of the translation frame 32 follows the lifting mechanism 2 and the translation mechanism 3 to approach the cage frame 8, the pushing motor 42 drives the pushing shaft 43 to rotate, the pushing chain wheels 46 positioned at two ends of the pushing shaft 43 follow the pushing shaft 43 to rotate, the pushing chain 47 connected with the pushing chain wheels 46 moves, the position of the pushing block 48 positioned on the pushing chain 47 changes, the pushing block 48 contacts with the cage frame assembly 7, so that the cage frame assembly 7 moves under the action of the pushing block 48, and the transfer of the cage frame assembly 7 between the cage frame and the pushing mechanism 4 is realized.
The layer frame roller table 5 is located at the bottom of the frame 1 and is connected with the frame 1, and comprises a roller table motor 52, a roller seat 53, a roller 51 located on the roller seat 53 and a chain 54 connected with the roller table motor 52 and the roller 51, a gap is formed between adjacent roller 51, the roller strips can conveniently extend into the gap, and when the roller table motor 52 rotates, the chain 54 rotates along with the roller table motor 52, so that the roller 51 is driven to rotate, and the green brick conveying effect is realized.
The brick feeding roller table 6 is used for realizing the transfer of the adobe between the brick feeding roller table 6 and the layer frame roller table 5, and comprises a brick feeding roller 61, wherein the brick feeding roller 61 and the roller on the layer frame roller table 5 are positioned in the same plane, and when the brick feeding roller table is in work, the roller strips extend into the gap, so that the adobe can be conveniently transferred from the brick feeding roller 61 to the roller 51 or reversely transferred, and the brick feeding roller table is particularly transferred according to actual needs.
The layer frame assembly 7 is located in the accommodating cavity or the cage frame and is used for transferring green bricks, and comprises a layer frame 71, layer frame connecting plates 72 located at two ends of the layer frame 71, guide wheels 73 connected with the layer frame connecting plates 72 and hooks 74, wherein the layer frame 71 is composed of a plurality of layer frame sticks, and in order to facilitate the layer frame sticks to extend into gaps of the sticks 51, the positions of the layer frame sticks and the positions of the roller strips are mutually overlapped.
The shelf connection plates 72 are used to achieve a fixed mounting of the shelf 71, and are located at both ends of the shelf 71. The guide wheel 73 is located at the outer side of the shelf connecting plate 72, and slides inside the guide angle 411 to realize movement of the shelf assembly 7.
The hook 74 is in contact with the pushing block, when the pushing block 48 moves, the hook 74 moves along with the pushing block 48 to realize the movement of the layer rack assembly 7, specifically, the hook 74 bends and tilts upwards towards the direction close to the layer rack assembly 7, and when the layer rack assembly 7 on the pushing mechanism 4 needs to be transferred onto the cage rack 8, the pushing block 48 contacts with the outer side of the hook 74 to push the layer rack assembly 7 towards the direction close to the cage rack 8. When the layer frame assembly 7 on the cage frame 8 needs to be transferred to the pushing mechanism 4, the pushing block 48 hooks the inner side of the hook 74, and pulls the hook 74, so that the layer frame assembly 7 is pulled to move towards the direction approaching the pushing mechanism 4.
The cage 8 is used for temporarily storing the layer frame assembly 7, and comprises cage frame guide angle steel 81, wherein the cage frame guide angle steel 81 has the same structure as the guide angle steel 411, so that the guide wheel 73 can roll on the cage frame guide angle steel 81 and the guide angle steel 411, and the layer frame assembly 7 can be transferred between the cage frame 8 and the propulsion mechanism 4.
The working process of the layered efficient Chu Pi provided by the invention is as follows:
The lifting mechanism 2 is lifted, the lifting motor 21 drives the lifting main shaft 22 to rotate, the lifting driving sprocket 24 positioned on the lifting main shaft 22 follows the lifting main shaft 22 to rotate, the lifting chain and the lifting movable sprocket 25 are driven to rotate together, the lifting frame 26 connected with the lifting chain follows the lifting chain to move up and down together, and the guide angle steel 411 in the propulsion mechanism 4 and the cage guide angle steel 81 are positioned in the same plane.
Subsequently, the translation mechanism 3 translates, the translation motor 31 drives the translation frame 32 to move, and the sliding block 34 connected with the lifting frame 26 moves inside the sliding rail 33 positioned on the translation frame 32, so that the translation frame 32 approaches the cage 8, and the guide angle 411 approaches the cage guide angle 81.
Then, the pushing mechanism 4 pulls the layer frame assembly 7, the pushing motor 42 drives the pushing shaft 43 to rotate, the pushing chain wheels 46 at two ends of the pushing shaft 43 rotate along with the pushing shaft 43, the pushing chain 47 connected with the pushing chain wheels 46 moves, the position of the pushing block 48 on the pushing chain 47 changes, the pushing block 48 hangs on the inner side of the hook 74, and pulls the hook 74, so that the layer frame assembly 7 is pulled to move in a direction approaching to the pushing mechanism 4 until the layer frame assembly 7 is completely located in the accommodating cavity of the pushing mechanism 4.
Then the translation mechanism 3 moves away from the cage 8, the lifting mechanism 2 descends, so that the roller strips on the pushing mechanism 4 extend into the gaps of the sticks 51 on the layer frame roller table 5, the brick feeding roller table 6 conveys bricks to the inside of the layer frame assembly 7, each brick is installed, and the lifting mechanism 2 ascends to the position of one brick until the layer frame assembly 7 is filled with bricks.
Finally, the lifting and lowering mechanism 2 is lifted until the guide angle steel 411 of the pushing mechanism 4 is flush with the vacancy on the cage frame 8, the translation mechanism 3 is translated and is close to the cage frame 8, the pushing mechanism 4 pushes the layer frame assembly 7, namely the push block 48 is contacted with the outer wall of the hook 74, the layer frame assembly 7 is completely positioned inside the cage frame 8, the whole process can be completed, the loading and unloading of green bricks are not limited by the sequence of sequential in and out, bearing connection is not required, the manufacturing precision requirement is low, and the production cost is low.
While the foregoing is directed to the preferred embodiments of the present invention, it will be appreciated by those skilled in the art that changes and modifications may be made without departing from the principles of the invention, such changes and modifications are also intended to be within the scope of the invention.
Claims (6)
1. The high-efficiency stacking blank storage machine is characterized by comprising a frame, a lifting mechanism positioned on the frame, a translation mechanism connected with the lifting mechanism, a propelling mechanism connected with the translation mechanism, a stacking roller table, a brick feeding roller table with the same height as the stacking roller table, a stacking combination body and a cage frame;
The propelling mechanism moves up and down along with the lifting mechanism and moves in a translational way along with the translation mechanism, and at least comprises a push block chain frame;
The layer frame roller table at least comprises a plurality of sticks, and the pushing block chain frame extends into gaps among the sticks so that green bricks enter the pushing block chain frame;
The lifting mechanism comprises a lifting motor, a lifting main shaft connected with the lifting motor, lifting bearings positioned on the lifting main shaft, lifting driving sprockets positioned at two ends of the lifting main shaft, lifting movable sprockets connected with the lifting driving sprockets, lifting chains connected with the lifting driving sprockets and the lifting movable sprockets and a lifting frame connected with the lifting chains, wherein the lifting motor is positioned on the frame and drives the lifting main shaft to rotate;
The translation mechanism is connected with the lifting mechanism and comprises a translation motor, a translation rack connected with the translation motor, a sliding rail positioned on the translation rack and a sliding block connected with the lifting rack, wherein the translation motor is positioned on the lifting rack and drives the translation rack to perform translation movement, and the sliding block is matched with the sliding rail and can slide on the sliding rail;
the propelling mechanism is positioned at the bottom of the translation frame;
The propelling mechanism comprises a pushing block chain frame, a propelling motor, a propelling shaft, a propelling bearing, a bevel gear, a propelling chain wheel, a propelling chain connected with the propelling chain wheel and a pushing block positioned on the propelling chain;
an accommodating cavity is formed between the pushing block chain frame and the translation rack;
the pushing block chain frame consists of a plurality of roller strips, and the roller strips extend into gaps among the sticks.
2. The shelf-type efficient blank storage machine according to claim 1, wherein guide angle steel is further arranged on the push block chain shelf.
3. The shelf-type efficient blank storage machine according to claim 1, wherein the shelf roller table comprises a roller table motor, a roller base, a roller arranged on the roller base and a chain connecting the roller table motor and the roller, a gap is arranged between adjacent rollers, and the roller bar stretches into the gap.
4. The shelf-type efficient blank storage machine as claimed in claim 3, wherein the brick feeding roller table comprises brick feeding rollers, and the brick feeding rollers and the rollers on the shelf roller table are located in the same plane.
5. The shelf-type efficient blank storage machine according to claim 1, wherein the shelf assembly is positioned in the accommodating cavity or the cage frame and comprises a shelf, shelf connecting plates positioned at two ends of the shelf, guide wheels connected with the shelf connecting plates and hooks;
The shelf consists of a plurality of shelf sticks, and the positions of the shelf sticks and the positions of the roller strips are overlapped;
The hook is contacted with the pushing block.
6. The shelf-efficient blank holder machine of claim 2, wherein the cage includes cage guide angles that are identical in construction to the guide angles.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201711274644.XA CN107826725B (en) | 2017-12-06 | 2017-12-06 | Layered rack type efficient blank storage machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201711274644.XA CN107826725B (en) | 2017-12-06 | 2017-12-06 | Layered rack type efficient blank storage machine |
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| Publication Number | Publication Date |
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| CN107826725A CN107826725A (en) | 2018-03-23 |
| CN107826725B true CN107826725B (en) | 2024-08-13 |
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| CN201711274644.XA Active CN107826725B (en) | 2017-12-06 | 2017-12-06 | Layered rack type efficient blank storage machine |
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Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| IT201900002051A1 (en) * | 2019-02-13 | 2020-08-13 | Nuova Sima Spa | TILES LOADING / UNLOADING SYSTEM IN / FROM A WAREHOUSE |
| CN110606359A (en) * | 2019-09-02 | 2019-12-24 | 彭其庄 | A kind of transmission lifting type billet storage machine |
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| CN1749131A (en) * | 2004-09-17 | 2006-03-22 | 系统股份公司 | An automatic storing device |
| CN106697750A (en) * | 2016-12-02 | 2017-05-24 | 广州市烨兴融集团有限公司 | Circulating vertical conveyer |
| CN207792031U (en) * | 2017-12-06 | 2018-08-31 | 佛山市德力泰科技有限公司 | A kind of highly efficient tier rack type unfired storing machine |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| DE1802410C3 (en) * | 1968-03-20 | 1975-06-19 | Standard Alliance Industries Inc., Chicago, Ill. (V.St.A.) | Mobile storage and retrieval vehicle |
| JPS60167807A (en) * | 1984-02-06 | 1985-08-31 | Daifuku Co Ltd | Storing equipment with case hooking device |
| DE19532641C2 (en) * | 1995-08-23 | 1998-09-24 | Mannesmann Ag | Pulling device for containers with drawing grooves, in particular for the arrangement on the lifting table of a storage and retrieval unit |
| CN103420315B (en) * | 2013-09-05 | 2016-04-20 | 昆明鼎承科技有限公司 | Automatic unloading warehouse-in material flow line |
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Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1749131A (en) * | 2004-09-17 | 2006-03-22 | 系统股份公司 | An automatic storing device |
| CN106697750A (en) * | 2016-12-02 | 2017-05-24 | 广州市烨兴融集团有限公司 | Circulating vertical conveyer |
| CN207792031U (en) * | 2017-12-06 | 2018-08-31 | 佛山市德力泰科技有限公司 | A kind of highly efficient tier rack type unfired storing machine |
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