Plastic rice workshop storage device
By designing a plastic rice workshop storage device including a storage rack, a testing mechanism, a drying mechanism and a slap mechanism, the problem of plastic rice tons bags being easily offset, tilted and damaged during storage is solved, and a more stable, reliable and efficient storage effect is achieved.
Patent Information
- Application Number
- CN202510413183.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2045-04-03
AI Technical Summary
When the existing plastic rice workshop storage device is used, the plastic rice bags are prone to offset and tilt, and are not stable and reliable enough, and are prone to friction or collision with the edge of the shelf, causing the ton of bags to be damaged and affecting the storage effect. In addition, the bag not closed is easily affected by external moisture and dust.
A plastic rice workshop storage device including a storage rack, a testing mechanism, a drying mechanism and a slap mechanism is designed. The storage rack realizes stability detection and centering adjustment of ton bags through a moving mechanism and an automatic rebound reel. The drying mechanism absorbs and drys the moisture in the air through a moving tube and a desiccant box. The slap mechanism pats the ton bags through a rubber column and a rotating plate to make the plastic rice more even.
The device can effectively prevent tons of bags from tilting or sliding on the shelf, reduce the risk of damage, ensure storage stability and reliability, and improve the storage effect of plastic rice through drying and slapping mechanisms.
Smart Images

Figure CN119911565A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of workshop storage racks, in particular to a plastic rice workshop storage device. Background Art
[0002] Plastic rice refers to a plastic product made from plastic pellets. It looks similar to ordinary rice. Plastic rice is the common name for plastic intermediate raw materials (such as TPEE). It is usually made into granules with color and shape similar to rice. It is mainly used in the production of plastic products. When the produced plastic rice is stored in the workshop, it is usually first packed into ton bags and placed on storage racks for storage.
[0003] However, when the existing plastic rice workshop storage device is in use, after the plastic rice ton bag is placed on the storage shelf, it is easy to deviate and tilt due to the unevenness of the plastic rice and other reasons. It is not easy to be discovered in time and is not stable and reliable. At the same time, it is easy to rub or collide with the edge of the shelf, causing the ton bag to be damaged, affecting its storage effect. Moreover, after storage, in order to facilitate retrieval, the mouth of the ton bag is usually not sealed. At this time, it is easy to be affected by external moisture and impurities such as dust, which will also affect its storage effect. Summary of the invention
[0004] The object of the present invention is to provide a plastic rice workshop storage device to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a plastic rice workshop storage device, comprising a storage rack, and the storage rack comprises a plurality of storage chambers, the side wall of each storage chamber is fixedly connected with two symmetrically arranged fixed blocks, and the side wall of each fixed block is connected with a first movable plate through a reset mechanism, and the side wall of each first movable plate is connected with an inclined plate through a detection component, the top of each fixed block is rotatably connected with an automatic rebound reel, and a protective cloth is fixedly connected between the side wall of the automatic rebound reel and the first movable plate, a plurality of first balls are arranged at the bottom of each storage chamber, and a detection mechanism for detecting the stability of plastic rice ton bags is arranged in each storage chamber, and a drying mechanism for drying the internal air is arranged at the top of each storage chamber; The detection mechanism includes four second movable plates, and the movement of the second movable plates is connected with the inner wall of the storage chamber and the side wall of the first movable plate through the movable mechanism, and the side walls of each of the second movable plates are connected to the third movable plate through a telescopic mechanism, and the side walls of the third movable plate are fixedly connected to two symmetrically arranged first fixed plates, and the opposite side walls of the two first fixed plates are rotatably connected to a rotating rod through a rotating shaft, and the other end of the rotating rod is fixedly connected to an extrusion plate, and the side walls of the extrusion plate are provided with a plurality of second balls, and the side walls of the second movable plate close to the extrusion plate are fixedly connected with a first proximity switch, and the side walls of the extrusion plate are provided with a slapping mechanism for slapping the plastic rice ton bag, and a limiting mechanism for limiting the rotating rod is provided on the top of the third movable plate.
[0006] Preferably, the drying mechanism includes an L-shaped plate fixedly connected to the top of the storage chamber, and the side wall of the L-shaped plate is fixedly connected to a second fixed plate, a plurality of movable tubes are inserted at the top of the second fixed plate, a plurality of air holes arranged in an array are opened on the side wall of the movable tube, and a pointed cone is arranged at the bottom of the movable tube, a desiccant box is fixedly connected to the top of the movable tube, and the desiccant box is lifted and lowered by a pushing mechanism, a telescopic cover is fixedly connected between the desiccant box and the second fixed plate, and the movable tube is located in the telescopic cover.
[0007] Preferably, the limiting mechanism comprises a fixed ring sleeved on the side wall of the rotating rod, the side wall of the fixed ring is sleeved with a movable ring, the movable ring is connected to the top of the third movable plate through a movable assembly, and the end of the movable ring is provided with a conical surface.
[0008] Preferably, the moving mechanism includes four guide assemblies, and one of the guide assemblies is arranged between the second moving plate and the first moving plate, and the other three guide assemblies are arranged between the second moving plate and the inner wall of the storage chamber, each of the guide assemblies includes a plurality of first sets of rods, and the side wall of each first set of rods is sleeved with a first sleeve, the inner wall of the storage chamber is fixedly connected with an oil storage pipe, the inner wall of the storage chamber is fixedly connected with a U-shaped tube, and a connecting tube is fixedly connected between the oil storage pipe and the U-shaped tube, the U-shaped tube and the first sleeve bracket are fixedly connected with a first hose, and a piston is slidably connected in the oil storage pipe through a moving module.
[0009] Preferably, the beating mechanism includes a connecting plate fixedly connected to the top of the extrusion plate, and the bottom of the connecting plate is rotatably connected to a rotating plate via a rotating pin, the top of the rotating pin is fixedly connected to a disc, and the side wall of the rotating pin is sleeved with a torsion spring, the side wall of the rotating plate is fixedly connected to a plurality of rubber columns arranged in an array, the top of the second movable plate is fixedly connected to a mounting plate, and the side wall of the mounting plate is fixedly connected to a plurality of triangular blocks arranged in an array.
[0010] Preferably, the pushing mechanism includes two symmetrically arranged T-shaped guide rods inserted in the side walls of the L-shaped plate, and the ends of the T-shaped guide rods are fixedly connected to pushing blocks, the side walls of the pushing blocks are provided with oblique grooves, and the side walls of the desiccant box are fixedly connected to a first connecting block, the side walls of the first connecting block are fixedly connected to a pushing pin, and the pushing pin is inserted in the oblique groove, a fixed tube is fixedly inserted in the side walls of the L-shaped plate, a moving rod is slidably connected in the fixed tube, the other end of the moving rod is fixed to the side wall of the pushing block, and a second hose is fixedly connected between the fixed tube and the U-shaped tube.
[0011] Preferably, the telescopic mechanism includes two symmetrically arranged second sleeves fixedly connected to the side wall of the second movable plate, and each second sleeve is inserted with a second rod, the other end of the second rod is fixed to the side wall of the third movable plate, and the side wall of each second sleeve is sleeved with a first spring.
[0012] Preferably, the moving component includes an L-shaped block fixedly connected to the top of the third moving plate, and the side wall of the L-shaped block is fixedly connected to two symmetrically arranged third rods, the side wall of each of the third rods is sleeved with a third sleeve, and the other end of the third sleeve is fixedly connected to a second connecting block, the second connecting block is fixed to the side wall of the moving ring, and the side wall of each third sleeve is sleeved with a second spring, the side wall of the second connecting block is fixedly connected to an iron block, and the side wall of the L-shaped block is fixedly connected to an electromagnet.
[0013] Preferably, the reset mechanism includes two symmetrically arranged fourth sleeves fixedly connected to the side walls of each fixed block, and the side walls of the fourth sleeves are sleeved with fourth rods, the other end of the fourth rod is fixed to the side wall of the first movable plate, and the side walls of each fourth sleeve are sleeved with a third spring.
[0014] Preferably, the detection assembly includes two symmetrically arranged fifth rods fixedly connected to the side walls of each first movable plate, and the side walls of the fifth rods are sleeved with a fifth sleeve, the other end of the fifth sleeve is fixed to the side wall of the inclined plate, the side wall of each fifth sleeve is sleeved with a fourth spring, and the side wall of the first movable plate is fixedly connected with a second proximity switch.
[0015] Compared with the prior art, the present invention has the following beneficial effects: (1) This type of plastic rice workshop storage device, by setting a moving mechanism, etc., when it is necessary to store plastic rice, the ton bags are transferred by a forklift, etc. When the fork of the forklift hits the side wall of the inclined plate, it can push the inclined plate to move in the direction close to the first moving plate. At the same time, the fourth spring is compressed and contacts the second proximity switch. When the fourth spring can no longer be compressed, it can push the two first moving plates to move away from each other. At the same time, the third spring is compressed. At the same time, the automatic rebound reel can automatically rebound, so that the protective cloth can be automatically rolled up, and when the first moving plate moves, it can drive one of the second moving plates to move synchronously to avoid, and then the ton bags can be stored in the storage room. Then, the fork is moved out of the storage room. At this time, the two first moving plates can move close to each other under the action of the third spring. At the same time, the protective cloth can be pulled to unfold, so that the storage room can be sealed and protected to avoid the influence of impurities such as dust, thereby ensuring the plastic rice storage room. The storage effect of rice materials is that when the fork is disengaged from the inclined plate, the inclined plate can be reset in the direction away from the first moving plate under the action of the fourth spring and disengaged from the second proximity switch. At this time, the piston is driven downward along the oil storage pipe by the moving module, so that the hydraulic oil temporarily stored in the oil storage pipe can be squeezed, so that the hydraulic oil enters the U-shaped tube through the connecting pipe and enters multiple first sleeves synchronously through the first hose. Under the action of hydraulic pressure, the first sleeve can be pushed to move in the direction away from the first sleeve, and at the same time, the second moving plate can be driven to move, and the third moving plate can be driven to move through the telescopic mechanism, and then the extrusion plate can be driven to move through the limit mechanism, so that the extrusion plate and the ton bag are offset and can be centered, which can prevent the ton bag from tilting or sliding on the shelf, ensure that the bag body remains upright, avoids friction or collision between the ton bag and the edge of the shelf, reduces the risk of bag damage, is more stable and reliable, and is convenient for subsequent loading and unloading, thereby improving storage efficiency and effect.
[0016] (2) This type of plastic rice workshop storage device, by setting a drying mechanism, etc., when the ton bag is centered and limited, when the hydraulic oil enters the U-tube, it can enter the fixed tube through the second hose, and under the action of the hydraulic pressure, push the moving rod to move in the direction away from the fixed tube. When the moving rod moves, it can drive the pushing block to move synchronously, so that the pushing pin can move downward along the inclined groove, thereby driving multiple moving tubes to move downward synchronously through the desiccant box. At the same time, the telescopic cover is compressed, so that the moving tube can be inserted into the plastic rice through the open part of the ton bag. At this time, since the moving tube is filled with desiccant, it can absorb and dry the moisture in the air through the pores to ensure its storage effect. In addition, when the plastic rice is not stored in the storage room, the pores of the moving tube are in the telescopic cover, which can avoid contact with the outside air, thereby ensuring the use effect and life of the desiccant.
[0017] (3) This type of plastic rice workshop storage device, by setting a beating mechanism, etc., when the plastic rice ton bag is centered and limited, when the extrusion plate abuts against the side wall of the ton bag, the first spring is gradually compressed. At this time, the distance between the extrusion plate and the second movable plate gradually decreases. At the same time, it can drive the mounting plate to move in the direction close to the extrusion plate. When the triangular block abuts against the side wall of the rotating plate, it can push the rotating plate to rotate along the rotating pin. At the same time, the torsion spring is deformed. When the triangular block passes over the side wall of the rotating plate, the rotating plate can rotate and reset along the rotating pin under the action of the torsion spring. In this way, the rotating plate can swing back and forth and drive the rubber column to perform a reciprocating beating operation on the ton bag, so that the plastic rice in the ton bag is more uniform, the shaking of the material in the bag is reduced, and it is helpful to adjust the stacking state of the material in the ton bag to avoid the ton bag from tilting or tilting due to uneven distribution of materials, so that the storage effect is better and more stable and reliable.
[0018] (4) This type of plastic rice workshop storage device, by setting up a detection mechanism, etc., after the extrusion plate has completed the centering and patting of the ton bag, the electromagnet can be powered off and no longer attract the iron block. At this time, the second connecting block can move away from the L-shaped block under the action of the second spring, and at the same time, drive the moving ring to move from the fixed ring to the side wall of the rotating rod. At this time, if the plastic rice ton bag is tilted, the extrusion plate can be pushed to rotate clockwise along the rotating shaft and be detected by the first proximity switch, thereby facilitating the detection of the stability of the plastic rice ton bag. When the tilt is detected, the electromagnet can be powered on to attract the iron block. The iron block is guided, and at the same time, the second spring is compressed. At the same time, the movable ring is moved along the conical surface to the side wall of the fixed ring, so that the extrusion plate is straightened. At this time, the rotating rod can be limited, and the piston can be driven to move back and forth in the oil storage pipe by the movable module, so that multiple extrusion plates can be used to perform multiple centering adjustments on the plastic rice ton bag. At the same time, the ton bag is beaten multiple times by the rotating plate and the rubber column to make the plastic rice inside more uniform, and then its stability is tested. When no tilt occurs, the rotating rod is limited by the limiting mechanism. At this time, multiple extrusion plates can be used to limit the ton bag for protection. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the overall structure of the present invention from another perspective; Figure 3 It is a partial cross-sectional structural schematic diagram of the present invention; Figure 4 A partial cross-sectional structural schematic diagram of another viewing angle of the present invention; Figure 5 It is a schematic diagram of the internal structure of the storage chamber in the present invention; Figure 6It is a structural schematic diagram of the detection mechanism in the present invention; Figure 7 It is a schematic diagram of a partial cross-sectional structure of an extruded plate in the present invention; Figure 8 for Figure 2 A schematic diagram of the enlarged structure at A in the middle; Fig. 9 for Figure 3 A schematic diagram of the enlarged structure at B in the middle; Fig.10 for Figure 4 Schematic diagram of the enlarged structure at C in the middle; Fig.11 for Figure 5 Schematic diagram of the enlarged structure at D in the middle; Fig.12 for Figure 6 Schematic diagram of the enlarged structure at E in the middle; Fig.13 for Figure 7 The enlarged structural diagram at F in the middle; Fig.14 for Figure 8 Schematic diagram of the enlarged structure at G in the middle.
[0020] In the figure: 1, storage rack; 101, storage chamber; 201, L-shaped plate; 202, second fixed plate; 203, moving tube; 204, pointed cone; 205, air hole; 206, desiccant box; 207, telescopic cover; 301, connecting plate; 302, rotating pin; 303, rotating plate; 304, rubber column; 305, disc; 306, mounting plate; 307, triangular block; 308, torsion spring; 401, fixing ring; 402, moving ring; 403, conical surface; 501, second sleeve; 502, second rod; 503, first spring; 601, oil storage pipe; 602, U-shaped pipe; 603, connecting pipe; 604, piston; 605, moving module; 606, first sleeve; 607, first rod; 608, first hose; 701, T-shaped guide rod; 702, push block; 703, inclined groove; 704, first connecting block; 705, moving ring; 7 ...4, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first connecting block; 704, first 05, push pin; 706, fixed tube; 707, moving rod; 708, second hose; 801, L-shaped block; 802, third set of rods; 803, third sleeve; 804, second spring; 805, second connecting block; 806, iron block; 807, electromagnet; 901, fourth set of rods; 902, fourth sleeve; 903, third spring; 1001, fifth sleeve; 1002, fifth set of rods; 1003, Fourth spring; 1004, second proximity switch; 11, first movable plate; 12, inclined plate; 13, fixed block; 15, automatic rebound reel; 16, protective cloth; 1701, second movable plate; 1702, third movable plate; 1703, extrusion plate; 1704, second ball; 1705, first fixed plate; 1706, rotating shaft; 1707, rotating rod; 1708, first proximity switch; 18, first ball. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0022] See also Figure 1-Figure 14The present invention provides a technical solution: a plastic rice workshop storage device, comprising a storage rack 1, and the storage rack 1 comprises a plurality of storage chambers 101, the side wall of each storage chamber 101 is fixedly connected with two symmetrically arranged fixed blocks 13, and the side wall of each fixed block 13 is connected with a first movable plate 11 through a reset mechanism, and the side wall of each first movable plate 11 is connected with an inclined plate 12 through a detection component, the top of each fixed block 13 is rotatably connected with an automatic rebound reel 15, and a protective cloth 16 is fixedly connected between the side wall of the automatic rebound reel 15 and the first movable plate 11, a plurality of first balls 18 are arranged at the bottom of each storage chamber 101, and a detection mechanism for detecting the stability of plastic rice ton bags is arranged in each storage chamber 101, and a drying mechanism for drying the internal air is arranged at the top of each storage chamber 101; The detection mechanism includes four second movable plates 1701, and the movement of the second movable plates 1701 is connected to the inner wall of the storage chamber 101 and the side wall of the first movable plate 11 through the moving mechanism, and the side wall of each second movable plate 1701 is connected to the third movable plate 1702 through the telescopic mechanism, and the side wall of the third movable plate 1702 is fixedly connected to two symmetrically arranged first fixed plates 1705, and the opposite side walls of the two first fixed plates 1705 are rotatably connected to the rotating rod 1707 through the rotating shaft 1706, and the other end of the rotating rod 1707 is fixedly connected to the extrusion plate 1703, and the side wall of the extrusion plate 1703 is provided with a plurality of second balls 1704, and the side wall of the second movable plate 1701 close to the extrusion plate 1703 is fixedly connected to the first proximity switch 1708 The side wall of the extrusion plate 1703 is provided with a beating mechanism for beating the plastic rice ton bag, and the top of the third movable plate 1702 is provided with a limiting mechanism for limiting the rotating rod 1707, which can adjust the plastic rice ton bag to the center. At the same time, the ton bag can be reciprocated to make the plastic rice in the ton bag more uniform, which can prevent the ton bag from tilting or sliding on the shelf, making it more stable and reliable, and improving the storage efficiency and effect; it is convenient to detect the stability of the plastic rice ton bag, making it more stable and reliable during storage, facilitating subsequent loading and unloading, and improving the storage efficiency and effect; the plastic rice ton bag can be sealed and protected to avoid the influence of impurities such as dust. At the same time, it can absorb and dry the moisture in the air to ensure its storage effect.
[0023] The drying mechanism includes an L-shaped plate 201 fixedly connected to the top of the storage chamber 101, and a second fixed plate 202 is fixedly connected to the side wall of the L-shaped plate 201, a plurality of moving tubes 203 are inserted on the top of the second fixed plate 202, a plurality of air holes 205 arranged in an array are opened on the side wall of the moving tube 203, and a pointed cone 204 is arranged at the bottom of the moving tube 203, a desiccant box 206 is fixedly connected to the top of the moving tube 203, and the desiccant box 206 is lifted and lowered by a pushing mechanism, a telescopic cover 207 is fixedly connected between the desiccant box 206 and the second fixed plate 202, and the moving tube 203 is located in the telescopic cover 207, When the ton bag is centered, the desiccant box 206 is pushed downward by the pushing mechanism, and at the same time, multiple mobile tubes 203 are driven to move downward synchronously. At the same time, the telescopic cover 207 is compressed, so that the mobile tube 203 can be inserted into the plastic rice through the open part of the ton bag. At this time, since the mobile tube 203 is filled with desiccant, the moisture in the air can be absorbed and dried through the air hole 205 to ensure its storage effect. In addition, when no plastic rice is stored in the storage chamber 101, the air hole 205 of the mobile tube 203 is in the telescopic cover 207, which can avoid contact with the outside air and ensure the use effect and life of the desiccant.
[0024] The limiting mechanism includes a fixed ring 401 sleeved on the side wall of the rotating rod 1707, and the side wall of the fixed ring 401 is sleeved with a movable ring 402. The movable ring 402 is connected to the top of the third movable plate 1702 through a movable component, and the end of the movable ring 402 is provided with a conical surface 403. The movable ring 402 is driven to move by the movable component. When the movable ring 402 moves from the side wall of the fixed ring 401 to the side wall of the rotating rod 1707, the rotating rod 1707 can be rotated along the rotating shaft 1706, that is, the extrusion plate 1703 can be rotated. When the side wall of the rotating rod 1707 of the movable ring 402 moves to the side wall of the fixed ring 401, the rotating rod 1707 can be rotated, so that the extrusion plate 1703 cannot be rotated.
[0025] The moving mechanism includes four guide components, and one of the guide components is arranged between the second moving plate 1701 and the first moving plate 11, and the other three guide components are arranged between the second moving plate 1701 and the inner wall of the storage chamber 101. Each guide component includes a plurality of first sets of rods 607, and the side wall of each first set of rods 607 is sleeved with a first sleeve 606, the first set of rods 607 is fixed to the side wall of the second moving plate 1701, one group of first sleeves 606 is fixed to the first moving plate 11, and the other three groups of first sleeves 606 are fixed to the inner wall of the storage chamber 101, the inner wall of the storage chamber 101 is fixedly connected with an oil storage pipe 601, the inner wall of the storage chamber 101 is fixedly connected with a U-shaped tube 602, and a connecting pipe 603 is fixedly connected between the oil storage pipe 601 and the U-shaped tube 602, the U-shaped tube 602 and the first sleeve 606 bracket are fixedly connected with a first hose 608, and a piston is slidably connected in the oil storage pipe 601 through the moving module 605. 604, the piston 604 is driven by the moving module 605 to move downward along the oil storage pipe 601, so that the hydraulic oil temporarily stored in the oil storage pipe 601 can be squeezed, so that the hydraulic oil enters the U-shaped tube 602 through the connecting pipe 603, and synchronously enters the multiple first sleeves 606 through the first hose 608. Under the action of the hydraulic pressure, the first sleeve rod 607 can be pushed to move away from the first sleeve 606, and at the same time, the second movable plate 1701 is driven to move, and the third movable plate 1702 can be driven to move through the telescopic mechanism, and then the extrusion plate 1703 is driven to move through the limiting mechanism, so that the extrusion plate 1703 is against the ton bag and can be adjusted to the center, which can prevent the ton bag from tilting or sliding on the shelf, ensure that the bag body remains upright, avoid friction or collision between the ton bag and the edge of the shelf, reduce the risk of bag damage, make it more stable and reliable, facilitate subsequent loading and unloading, and improve storage efficiency and effect.
[0026] The flapping mechanism includes a connecting plate 301 fixedly connected to the top of the extrusion plate 1703, and the bottom of the connecting plate 301 is rotatably connected to the rotating plate 303 through a rotating pin 302, the top of the rotating pin 302 is fixedly connected to a disc 305, and the side wall of the rotating pin 302 is sleeved with a torsion spring 308, the side wall of the rotating plate 303 is fixedly connected to a plurality of rubber columns 304 arranged in an array, the top of the second movable plate 1701 is fixedly connected to a mounting plate 306, and the side wall of the mounting plate 306 is fixedly connected to a plurality of triangular blocks 307 arranged in an array, When the extrusion plate 1703 is in the center limit position, when the extrusion plate 1703 is against the side wall of the ton bag, the driving mechanism can push the rotating pin 302 to rotate. At the same time, the rotating pin 302 can rotate and reset under the action of the torsion spring 308, so that the rotating plate 303 can swing back and forth, and drive the rubber column 304 to beat the ton bag back and forth, so that the plastic rice in the ton bag is more uniform, the shaking of the material in the bag is reduced, and it is helpful to adjust the stacking state of the material in the ton bag, avoid the ton bag from tilting or tilting due to uneven distribution of materials, and make the storage effect better and more stable and reliable.
[0027] The pushing mechanism includes two symmetrically arranged T-shaped guide rods 701 inserted into the side wall of the L-shaped plate 201, and the ends of the T-shaped guide rods 701 are fixedly connected with a pushing block 702, and the side wall of the pushing block 702 is provided with an inclined groove 703, and the side wall of the desiccant box 206 is fixedly connected with a first connecting block 704, and the side wall of the first connecting block 704 is fixedly connected with a pushing pin 705, and the pushing pin 705 is inserted in the inclined groove 703, and the side wall of the L-shaped plate 201 is fixedly inserted with a fixed tube 706, and a moving rod 707 is slidably connected in the fixed tube 706, and the other end of the moving rod 707 is connected to the pushing block 702. The side wall is fixed, and a second hose 708 is fixedly connected between the fixed tube 706 and the U-shaped tube 602. When the ton bag is centered and limited, when the hydraulic oil enters the U-shaped tube 602, it can enter the fixed tube 706 through the second hose 708, and under the action of the hydraulic pressure, push the moving rod 707 to move away from the fixed tube 706. When the moving rod 707 moves, it can drive the pushing block 702 to move synchronously, so that the pushing pin 705 can move downward along the inclined groove 703, thereby driving multiple moving tubes 203 to move downward synchronously through the desiccant box 206.
[0028] The telescopic mechanism includes two symmetrically arranged second sleeves 501 fixedly connected to the side walls of the second movable plate 1701, and each second sleeve 501 is inserted with a second rod 502, the other end of the second rod 502 is fixed to the side wall of the third movable plate 1702, and the side wall of each second sleeve 501 is sleeved with a first spring 503. When the plastic rice ton bag is centered and limited, when the extrusion plate 1703 is against the side wall of the ton bag, the first spring 503 is gradually compressed.
[0029] The moving assembly includes an L-shaped block 801 fixedly connected to the top of the third moving plate 1702, and the side wall of the L-shaped block 801 is fixedly connected to two symmetrically arranged third sets of rods 802, the side wall of each third set of rods 802 is sleeved with a third sleeve 803, and the other end of the third sleeve 803 is fixedly connected to a second connecting block 805, the second connecting block 805 is fixed to the side wall of the moving ring 402, and the side wall of each third sleeve 803 is sleeved with a second spring 804, the side wall of the second connecting block 805 is fixedly connected to an iron block 806, and the side wall of the L-shaped block 801 is fixedly connected to an electromagnet 8 07. After the extrusion plate 1703 has centered and tapped the ton bag, the electromagnet 807 can be powered off and no longer attract the iron block 806. At this time, the second connecting block 805 can move away from the L-shaped block 801 under the action of the second spring 804, and at the same time, drive the moving ring 402 to move from the fixed ring 401 to the side wall of the rotating rod 1707. At this time, if the plastic ton bag is tilted, the extrusion plate 1703 can be pushed to rotate clockwise along the rotating shaft 1706 and be detected by the first proximity switch 1708, thereby facilitating the detection of the stability of the plastic ton bag.
[0030] The reset mechanism includes two symmetrically arranged fourth sleeves 902 fixedly connected to the side walls of each fixed block 13, and the side walls of the fourth sleeves 902 are sleeved with fourth rods 901, the other end of the fourth rod 901 is fixed to the side wall of the first movable plate 11, and the side walls of each fourth sleeve 902 are sleeved with third springs 903, which play a guiding and reset role for the movement of the first movable plate 11.
[0031] The detection component includes two symmetrically arranged fifth rods 1002 fixedly connected to the side walls of each first movable plate 11, and the side wall of the fifth rod 1002 is sleeved with a fifth sleeve 1001, the other end of the fifth sleeve 1001 is fixed to the side wall of the inclined plate 12, and the side wall of each fifth sleeve 1001 is sleeved with a fourth spring 1003, and the side wall of the first movable plate 11 is fixedly connected with a second proximity switch 1004. When the plastic rice needs to be stored, the ton bag is transferred by a forklift, etc. When the fork of the forklift hits the side wall of the inclined plate 12, the inclined plate 12 can be pushed to move in the direction close to the first movable plate 11. At the same time, the fourth spring 1003 is compressed and contacts the second proximity switch 1004. When the fourth spring 1003 can no longer be compressed, it can push the two first movable plates 11 to move away from each other. At the same time, the third spring 903 is compressed and automatically rebounds. The reel 15 can rebound automatically, so that the protective cloth 16 can be automatically reeled up, and when the first movable plate 11 moves, it can drive one of the second movable plates 1701 to move synchronously for avoidance, and then the ton bag can be stored in the storage chamber 101. Then, the fork is moved out of the storage chamber 101. At this time, the two first movable plates 11 can move close to each other under the action of the third spring 903. At the same time, the protective cloth 16 can be pulled to unfold, so that the storage chamber 101 can be sealed and protected to avoid the influence of dust and other impurities, thereby ensuring the storage effect of plastic rice. When the fork is disengaged from the inclined plate 12, the inclined plate 12 can be moved and reset in the direction away from the first movable plate 11 under the action of the fourth spring 1003 and disengage from the second proximity switch 1004. At this time, the piston 604 is driven to move downward along the oil storage pipe 601 through the moving module 605.
[0032] Working principle: When the plastic rice needs to be stored, the ton bag is transferred by a forklift. When the fork of the forklift hits the side wall of the inclined plate 12, the inclined plate 12 can be pushed to move toward the first movable plate 11. At the same time, the fourth spring 1003 is compressed and contacts the second proximity switch 1004. When the fourth spring 1003 can no longer be compressed, the two first movable plates 11 can be pushed to move away from each other. At the same time, the third spring 903 is compressed, and the automatic rebound reel 15 can automatically rebound, so that The protective cloth 16 is automatically rolled up, and when the first movable plate 11 moves, it can drive one of the second movable plates 1701 to move synchronously for avoidance, and then the ton bag can be stored in the storage chamber 101. Then, the fork is moved out of the storage chamber 101. At this time, the two first movable plates 11 can move closer to each other under the action of the third spring 903. At the same time, the protective cloth 16 can be pulled to unfold, so that the storage chamber 101 can be sealed and protected to avoid the influence of impurities such as dust, thereby ensuring the storage effect of plastic rice.
[0033] When the fork is separated from the inclined plate 12, the inclined plate 12 can be reset to move away from the first movable plate 11 and separate from the second proximity switch 1004 under the action of the fourth spring 1003. At this time, the piston 604 is driven by the moving module 605 to move downward along the oil storage pipe 601, so that the hydraulic oil temporarily stored in the oil storage pipe 601 can be squeezed, so that the hydraulic oil enters the U-shaped tube 602 through the connecting tube 603, and simultaneously enters the multiple first sleeves 606 through the first hose 608. Under the action of the hydraulic pressure, the first sleeve rod 607 can be pushed away. It moves in the direction away from the first sleeve 606, and at the same time, drives the second movable plate 1701 to move, and can drive the third movable plate 1702 to move through the telescopic mechanism, and then drive the extrusion plate 1703 to move through the limiting mechanism, so that the extrusion plate 1703 is against the ton bag and can be adjusted to the center, which can prevent the ton bag from tilting or sliding on the shelf, ensure that the bag body remains upright, avoid friction or collision between the ton bag and the edge of the shelf, reduce the risk of bag damage, make it more stable and reliable, facilitate subsequent loading and unloading, and improve storage efficiency and effect.
[0034] When the ton bag is centered and limited, when the hydraulic oil enters the U-shaped tube 602, it can enter the fixed tube 706 through the second hose 708, and under the action of the hydraulic pressure, push the moving rod 707 to move away from the fixed tube 706. When the moving rod 707 moves, it can drive the pushing block 702 to move synchronously, so that the pushing pin 705 can move downward along the inclined groove 703, thereby driving multiple moving tubes 203 to move downward synchronously through the desiccant box 206. At the same time, the telescopic cover 207 is compressed, so that the moving tube 203 can be inserted into the plastic rice through the open part of the ton bag. At this time, since the moving tube 203 is filled with desiccant, the moisture in the air can be absorbed and dried through the air hole 205 to ensure its storage effect. In addition, when no plastic rice is stored in the storage chamber 101, the air hole 205 of the moving tube 203 is in the telescopic cover 207, which can avoid contact with the outside air and ensure the use effect and life of the desiccant.
[0035] When the plastic rice ton bag is centered and limited, when the extrusion plate 1703 abuts against the side wall of the ton bag, the first spring 503 is gradually compressed. At this time, the distance between the extrusion plate 1703 and the second movable plate 1701 gradually becomes smaller. At the same time, it can drive the mounting plate 306 to move toward the extrusion plate 1703. When the triangular block 307 abuts against the side wall of the rotating plate 303, it can push the rotating plate 303 to rotate along the rotating pin 302. At the same time, the torsion spring 308 is deformed. When the triangular block 307 abuts against the side wall of the rotating plate 303, the rotating plate 303 can be pushed to rotate along the rotating pin 302. When block 307 passes over the side wall of the rotating plate 303, the rotating plate 303 can be rotated and reset along the rotating pin 302 under the action of the torsion spring 308, and the rotating plate 303 can swing back and forth in this way, and drive the rubber column 304 to beat the ton bag back and forth, so that the plastic rice in the ton bag is more uniform, the shaking of the material in the bag is reduced, and it is helpful to adjust the stacking state of the material in the ton bag, avoid the ton bag from tilting or tilting due to uneven distribution of materials, and make the storage effect better and more stable and reliable.
[0036] After the squeezing plate 1703 has centered the ton bag and has finished beating it, the electromagnet 807 can be powered off and no longer attract the iron block 806. At this time, the second connecting block 805 can move away from the L-shaped block 801 under the action of the second spring 804, and at the same time, drive the moving ring 402 to move from the fixed ring 401 to the side wall of the rotating rod 1707. At this time, if the plastic rice ton bag is tilted, the squeezing plate 1703 can be pushed to rotate clockwise along the rotating shaft 1706 and be detected by the first proximity switch 1708, so as to facilitate the detection of the stability of the plastic rice ton bag. When the tilt is detected, the electromagnet 807 can be powered on to attract the iron block 806. At the same time, the second spring 804 is compressed. Move the movable ring 402 along the conical surface 403 to the side wall of the fixed ring 401, so as to align the extrusion plate 1703. At this time, the rotating rod 1707 can be limited, and the piston 604 can be driven to move back and forth in the oil storage pipe 601 by the movable module 605, so that multiple extrusion plates 1703 can perform multiple centering adjustments on the plastic rice ton bag. At the same time, the ton bag is repeatedly beaten by the rotating plate 303 and the rubber column 304 to make the plastic rice inside more uniform. Then, its stability is tested. When there is no tilt, the rotating rod 1707 is limited by the limiting mechanism. At this time, multiple extrusion plates 1703 can be used to limit and protect the ton bag, which can ensure the stability and effect of subsequent material collection.
[0037] The standard parts used in the present invention can all be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the prior art. Machinery, parts and equipment all adopt conventional models in the prior art, and the circuit connection adopts the conventional connection method in the prior art, which will not be described in detail here. The content not described in detail in this specification belongs to the prior art known to professional and technical personnel in this field.
[0038] The present invention and its embodiments are described above, and such description is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if ordinary technicians in the field are inspired by it, without departing from the purpose of the invention, they can design a structure and embodiment similar to the technical solution without creativity, which should belong to the protection scope of the present invention.
Claims
1. A plastic rice workshop storage device, comprising a storage rack (1), wherein the storage rack (1) comprises a plurality of storage chambers (101), characterized in that: The side wall of each storage chamber (101) is fixedly connected to two symmetrically arranged fixed blocks (13), and the side wall of each fixed block (13) is connected to a first movable plate (11) via a reset mechanism, and the side wall of each first movable plate (11) is connected to an inclined plate (12) via a detection component, the top of each fixed block (13) is rotatably connected to an automatic rebound reel (15), and a protective cloth (16) is fixedly connected between the side wall of the automatic rebound reel (15) and the first movable plate (11), a plurality of first rolling balls (18) are arranged at the bottom of each storage chamber (101), and a detection mechanism for detecting the stability of the plastic rice ton bag is arranged in each storage chamber (101), and a drying mechanism for drying the internal air is arranged at the top of each storage chamber (101); The detection mechanism comprises four second movable plates (1701), and the movement of the second movable plates (1701) is connected to the inner wall of the storage chamber (101) and the side wall of the first movable plate (11) through the movable mechanism, and the side wall of each second movable plate (1701) is connected to the third movable plate (1702) through a telescopic mechanism, and the side wall of the third movable plate (1702) is fixedly connected to two symmetrically arranged first fixed plates (1705), and the opposite side walls of the two first fixed plates (1705) are rotatably connected to a rotating shaft (1706). A movable rod (1707) is provided, and the other end of the rotating rod (1707) is fixedly connected to an extrusion plate (1703), a side wall of the extrusion plate (1703) is provided with a plurality of second balls (1704), and a first proximity switch (1708) is fixedly connected to the side wall of the second movable plate (1701) close to the extrusion plate (1703), a beating mechanism for beating the plastic rice ton bag is provided on the side wall of the extrusion plate (1703), and a limiting mechanism for limiting the rotating rod (1707) is provided on the top of the third movable plate (1702).
2. A plastic rice workshop storage device according to claim 1, characterized in that: The drying mechanism comprises an L-shaped plate (201) fixedly connected to the top of the storage chamber (101), and a second fixed plate (202) is fixedly connected to the side wall of the L-shaped plate (201), a plurality of movable tubes (203) are inserted at the top of the second fixed plate (202), a plurality of air holes (205) arranged in an array are opened on the side wall of the movable tube (203), and a pointed cone (204) is arranged at the bottom of the movable tube (203), a desiccant box (206) is fixedly connected to the top of the movable tube (203), and the desiccant box (206) is lifted and lowered by a pushing mechanism, a telescopic cover (207) is fixedly connected between the desiccant box (206) and the second fixed plate (202), and the movable tube (203) is located in the telescopic cover (207).
3. A plastic rice workshop storage device according to claim 1, characterized in that: The limiting mechanism comprises a fixed ring (401) sleeved on the side wall of the rotating rod (1707); a movable ring (402) is sleeved on the side wall of the fixed ring (401); the movable ring (402) is connected to the top of the third movable plate (1702) via a movable assembly; and a conical surface (403) is provided at the end of the movable ring (402).
4. A plastic rice workshop storage device according to claim 2, characterized in that: The moving mechanism comprises four guide assemblies, one of which is arranged between the second moving plate (1701) and the first moving plate (11), and the other three guide assemblies are arranged between the second moving plate (1701) and the inner wall of the storage chamber (101). Each of the guide assemblies comprises a plurality of first rods (607), and the side wall of each first rod (607) is sleeved with a first sleeve (606). The inner wall of the storage chamber (101) is fixedly connected with an oil storage pipe (601), the inner wall of the storage chamber (101) is fixedly connected with a U-shaped pipe (602), and a connecting pipe (603) is fixedly connected between the oil storage pipe (601) and the U-shaped pipe (602). A first hose (608) is fixedly connected between the U-shaped pipe (602) and a bracket of the first sleeve (606), and a piston (604) is slidably connected in the oil storage pipe (601) via a moving module (605).
5. A plastic rice workshop storage device according to claim 1, characterized in that: The slapping mechanism comprises a connecting plate (301) fixedly connected to the top of the extrusion plate (1703), and the bottom of the connecting plate (301) is rotatably connected to the rotating plate (303) via a rotating pin (302), the top of the rotating pin (302) is fixedly connected to a disc (305), and the side wall of the rotating pin (302) is sleeved with a torsion spring (308), the side wall of the rotating plate (303) is fixedly connected to a plurality of rubber columns (304) arranged in an array, the top of the second movable plate (1701) is fixedly connected to a mounting plate (306), and the side wall of the mounting plate (306) is fixedly connected to a plurality of triangular blocks (307) arranged in an array.
6. A plastic rice workshop storage device according to claim 4, characterized in that: The pushing mechanism comprises two symmetrically arranged T-shaped guide rods (701) inserted into the side wall of the L-shaped plate (201), and the ends of the T-shaped guide rods (701) are fixedly connected to a pushing block (702), the side wall of the pushing block (702) is provided with an inclined groove (703), and the side wall of the desiccant box (206) is fixedly connected to a first connecting block (704), the side wall of the first connecting block (704) is fixedly connected to a pushing pin (705), and the pushing pin (705) is inserted into the inclined groove (703), a fixed tube (706) is fixedly inserted into the side wall of the L-shaped plate (201), a moving rod (707) is slidably connected in the fixed tube (706), the other end of the moving rod (707) is fixed to the side wall of the pushing block (702), and a second hose (708) is fixedly connected between the fixed tube (706) and the U-shaped tube (602).
7. A plastic rice workshop storage device according to claim 1, characterized in that: The telescopic mechanism comprises two symmetrically arranged second sleeves (501) fixedly connected to the side wall of the second movable plate (1701), and each second sleeve (501) is provided with a second sleeve rod (502) inserted therein, the other end of the second sleeve rod (502) is fixed to the side wall of the third movable plate (1702), and the side wall of each second sleeve (501) is provided with a first spring (503).
8. A plastic rice workshop storage device according to claim 3, characterized in that: The moving assembly comprises an L-shaped block (801) fixedly connected to the top of the third moving plate (1702), and the side wall of the L-shaped block (801) is fixedly connected to two symmetrically arranged third sets of rods (802), the side wall of each of the third sets of rods (802) is sleeved with a third sleeve (803), and the other end of the third sleeve (803) is fixedly connected to a second connecting block (805), the second connecting block (805) is fixed to the side wall of the moving ring (402), and the side wall of each of the third sleeves (803) is sleeved with a second spring (804), the side wall of the second connecting block (805) is fixedly connected to an iron block (806), and the side wall of the L-shaped block (801) is fixedly connected to an electromagnet (807).
9. A plastic rice workshop storage device according to claim 1, characterized in that: The reset mechanism comprises two symmetrically arranged fourth sleeves (902) fixedly connected to the side walls of each fixed block (13), and the side walls of the fourth sleeves (902) are sleeved with fourth rods (901), the other end of the fourth rod (901) is fixed to the side wall of the first movable plate (11), and the side walls of each fourth sleeve (902) are sleeved with third springs (903).
10. A plastic rice workshop storage device according to claim 1, characterized in that: The detection assembly comprises two symmetrically arranged fifth sleeve rods (1002) fixedly connected to the side walls of each first movable plate (11), and the side walls of the fifth sleeve rods (1002) are sleeved with a fifth sleeve (1001), the other end of the fifth sleeve (1001) is fixed to the side wall of the inclined plate (12), the side wall of each fifth sleeve (1001) is sleeved with a fourth spring (1003), and the side wall of the first movable plate (11) is fixedly connected with a second proximity switch (1004).
Citation Information
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