CN115159155A - Crossed strip-grid intelligent cache pile dividing system - Google Patents

Crossed strip-grid intelligent cache pile dividing system Download PDF

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Publication number
CN115159155A
CN115159155A CN202210864651.XA CN202210864651A CN115159155A CN 115159155 A CN115159155 A CN 115159155A CN 202210864651 A CN202210864651 A CN 202210864651A CN 115159155 A CN115159155 A CN 115159155A
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Prior art keywords
feed bin
fixed
buffer memory
bin
buffer
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CN202210864651.XA
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CN115159155B (en
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王芳
董宗泉
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Shenzhen Dongyingxunda Electronics Co ltd
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Shenzhen Dongyingxunda Electronics Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G65/00Loading or unloading
    • B65G65/30Methods or devices for filling or emptying bunkers, hoppers, tanks, or like containers, of interest apart from their use in particular chemical or physical processes or their application in particular machines, e.g. not covered by a single other subclass
    • B65G65/32Filling devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G43/00Control devices, e.g. for safety, warning or fault-correcting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G65/00Loading or unloading
    • B65G65/30Methods or devices for filling or emptying bunkers, hoppers, tanks, or like containers, of interest apart from their use in particular chemical or physical processes or their application in particular machines, e.g. not covered by a single other subclass
    • B65G65/34Emptying devices
    • B65G65/40Devices for emptying otherwise than from the top

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Basic Packing Technique (AREA)
  • Feeding Of Articles To Conveyors (AREA)

Abstract

The invention relates to the technical field of buffer conveying equipment, in particular to an intelligent buffer stacking and separating system with crossed belt grids, which comprises a crossed belt sorting machine, the grids, a buffer overturning bin, a bottom wrapping machine and a bin fixing rack, wherein the grids are symmetrically distributed on two sides of the crossed belt sorting machine, the buffer overturning bin is arranged on the outer side of each grid in a supporting manner, the bottom wrapping machine is arranged below the buffer overturning bin, and the buffer overturning bin and the bottom wrapping machine are kept relatively fixed through the bin fixing rack; compared with the traditional sorting process, the cache and stacking system avoids the problems of high-intensity work and fatigue caused by back-and-forth inspection of workers and the situation that the enthusiasm of the workers is not easy to manage, optimizes the working frequency of the conventional non-fixed-point and intermittent bag bundling into the working frequency of the conventional fixed-point continuous bag filling and bundling, plays a role in saving labor, and mainly avoids the problem of low working efficiency of a cross belt caused by low enthusiasm of the labor.

Description

Intelligent cache stack-dividing system with crossing grids
Technical Field
The invention relates to the technical field of cache conveying equipment, in particular to an intelligent cache piling system with crossing grids.
Background
A cross belt sorting system of a distribution center in the express industry is core equipment in a sorting link and is used for efficiently and accurately sorting goods, and the capacity can reach 3 ten thousand pieces/hour. The belt conveyor consists of a main driving belt conveyor and a trolley carrying a small belt conveyor, wherein the main driving belt conveyor and the belt conveyor on the trolley are in a cross shape. When the trolley moves to a designated sorting position, the belt is rotated, and then the goods can be sent into the grids in a designated flow direction. The feed opening of each grid opening is collected by a gunny bag, and converged to the next procedure after being manually bundled and sealed. Traditional collection mode is, and the manual work embolias the sack with the sack and lies in the frame that props of bin gate feed opening on, after the sensor detected the sack full, reminds the staff, and the manual work is got the ribbon and is sealed.
The main problems are that when the peak is in, one person often needs to take care of about 10-15 grids, workers cannot find full sacks in time in the process of round trip inspection, the workers are easy to fatigue after long-time round trip walking, the working efficiency of the workers is not well managed, the crossed belts cannot timely put the packages into corresponding grids, the corresponding packages can continuously occupy the small cross-belt parking spaces, and the next package throwing opportunity is circularly waited on a loop line, so that the efficiency of the cross-belt sorting machine is reduced.
Disclosure of Invention
The invention aims to provide an intelligent cache heap splitting system with cross-band lattices to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a crisscross area bin intelligence buffer memory divides heap system, includes crisscross area sorting machine, bin, buffer memory upset feed bin, bottom collection skin tape unit and the fixed frame of feed bin, the bilateral symmetry distribution of crisscross area sorting machine is provided with the bin, crisscross area sorting machine and bin are the field device among the prior art, the outside of bin is accepted and is provided with buffer memory upset feed bin, the below of buffer memory upset feed bin is provided with bottom collection skin tape unit, buffer memory upset feed bin with bottom collection skin tape unit passes through the fixed frame of feed bin and keeps relatively fixed, the fixed frame of feed bin with crisscross area sorting machine fixed mounting, buffer memory upset feed bin with be provided with upset drive structure between the fixed frame of feed bin, upset drive structure can drive buffer memory upset feed bin and overturn and empty, the inside of buffer memory upset feed bin is close to the below and is provided with buffer structure, buffer structure has the elasticity shake function.
Buffer memory upset feed bin is the fourth cylindric, and inside is the cavity, two mutually perpendicular's rectangular surface openings, buffer memory upset feed bin adopts similar fourth cylindric structure, optimizes the inside volume of feed bin to the biggest, and in the upset in-process, each regional buffer memory upset feed bin can not interfere each other, and required space of dodging is minimum, and buffer memory upset feed bin can reduce feed bin manufacturing cost through die sinking plastic part, has reduced the response speed of weight improvement upset simultaneously, and fixed baffle is higher than buffer memory upset feed bin design, can avoid the parcel to scurry in the adjacent buffer memory upset feed bin when sliding from the check mouth, the direction of delivery of bottom collection skin tape unit is perpendicular with the axis of overturning direction of buffer memory upset feed bin, the check mouth with the position and the quantity one-to-one of buffer memory upset feed bin.
The overturning driving structure comprises a flange seat disc, an overturning shaft rod, a rack rotating sleeve seat, a sleeve seat foot plate, an overturning push seat, a fixed wall plate, a rotating sleeve ring, a folding cylinder, a cylinder fixed base, a rotating seat and a rotating seat lug.
Flange seat dish fixed mounting is in the surface position of buffer memory upset feed bin, the upset axostylus axostyle with flange seat dish fixed mounting, the fixed surface of frame commentaries on classics cover seat is provided with the cover seat sole, the cover seat sole with the fixed surface installation of feed bin fixed rack, the upset axostylus axostyle rotates the inside that sets up at frame commentaries on classics cover seat, the upset pushes away the fixed surface of seat and installs fixed wallboard, fixed wallboard with the fixed surface installation of buffer memory upset feed bin, the fixed surface that the upset pushed away the seat is provided with the protruding axle, the outside rotation cover of protruding axle is equipped with rotatory lasso, receive the telescopic link and the rotatory lasso fixed mounting of receipts cylinder, cylinder unable adjustment base with feed bin fixed rack fixed mounting, cylinder adjustment base's fixed surface installs and rotates the seat, the fixed surface that rotates the seat is provided with the commentaries on classics seat ear, receive the bottom and the transposition ear swing installation of receipts cylinder.
The buffer structure comprises a bottom through hole, a telescopic movable column, a limiting disc, a buffer impact plate, a buffer extrusion spring, an arc-shaped driven elastic plate, an embedded hole position and an electromagnet module.
The bottom through-hole runs through the lower part surface position of seting up at buffer upset feed bin, the inside flexible movable post that is provided with of bottom through-hole, the bottom fixed mounting of flexible movable post has spacing disc, the diameter of spacing disc is greater than the diameter of bottom through-hole, the upper end surface position fixed mounting of flexible movable post has the buffering bullet to hit the board, buffering extrusion spring housing establishes the outside of installing at flexible movable post, is located the buffering bullet and hits between the inside lower surface of board and buffer upset feed bin, the driven elastic plate of arc is the arc bent plate form, and has elasticity, the one end of the driven elastic plate of arc and the side fixed surface installation that the board was hit to the buffering bullet, the other end laminates with the inner wall surface elasticity of buffer upset feed bin, the quantity of the driven elastic plate of arc has a plurality of groups, and is linear array evenly distributed, the lower part surface position of buffer upset feed bin is located the buffering bullet and hits under the board and runs through and has seted up and inlays and establish the hole site, the inside of inlaying establishing is inlayed and is fixed with electromagnet module, electromagnet module can attract the buffering bullet to hit the board and move down.
The check mouth with be provided with the transition deflector between the buffer memory upset feed bin, the transition deflector with feed bin fixed frame fixed mounting, a side fixed surface of buffer memory upset feed bin is provided with fixed stop, fixed stop with feed bin fixed frame fixed mounting, fixed stop with buffer memory upset feed bin cooperation can form an open semi-closed space in top only, the outer fixed surface position of buffer memory upset feed bin installs the sensor mounting panel, the fixed feed bin sensor that is provided with on the sensor mounting panel, fixed stop's the fixed curtain that is provided with in below, the curtain that separates is located buffer memory upset feed bin between two liang, the curtain that separates has the flexibility, and its lower part is array and runs through and has seted up the cut-off groove, when buffer memory upset feed bin upset open blanking, the easy component that wafts of lighter parcel such as letter seal spare that probably exists to produce the compounding with the parcel of other feed bins, the curtain that separates can play the effect, the upper surface of bottom collection skin tape unit is close to bilateral position symmetry and is provided with the side shield, two width between the side shield is greater than the width of buffer memory upset feed bin, the surface of side shield is close to the lower part position and is provided with the location sensor.
The inside of bottom collection skin belt machine rotates and is provided with the belt feeder bearing roller, the belt feeder bearing roller can carry out the bearing to the lower part of the conveyor belt of bottom collection skin belt machine, avoids it to collapse down, the both ends of belt feeder bearing roller are provided with the bearing roller backup pad, the belt feeder bearing roller with the bearing roller backup pad rotates the installation, the bearing roller backup pad with bottom collection skin belt machine fixed mounting, the inside of bottom collection skin belt machine skin is provided with belt driving motor, belt driving motor with be provided with transmission module between the conveyor belt of bottom collection skin belt machine, the inside transmission module constitutes for drive wheel and drive belt, can carry the conveyor belt of bottom collection skin belt machine with belt driving motor's power, makes its rotation.
Compared with the prior art, the invention has the beneficial effects that:
the invention collects the packages sorted to the grid opening by the cross belt sorting machine by the cache turning bin, and according to the full-material condition of the cache turning bin in each area, the invention combines the conveying position of the stacked packages on the bottom bag collecting machine, and intelligently decides the blanking sequence and the timing of the bin, and the bottom bag collecting machine finally conveys the packages after intelligent stacking to the tail end, and the packages are uniformly filled into sacks and bound by people, and compared with the traditional sorting process, the cache stacking system comprises the following steps: the problems of high-strength work and fatigue caused by the fact that workers make rounds back and forth are avoided, the enthusiasm of the workers is not easy to manage are avoided, the original working frequency of fixed-point and intermittent bag binding is optimized to be the working frequency of fixed-point continuous bag bagging and bag binding, the effect of saving labor is achieved, and the problem that the working efficiency of a cross belt is low due to low enthusiasm of the labor is mainly avoided;
when the initial buffer turnover bin is empty, the falling distance of the goods thrown into the buffer turnover bin is longer, the goods falling to the bottom of the buffer turnover bin is lack of buffering, and the impact force of falling when the goods are thrown into the buffer turnover bin can be effectively reduced through the arranged buffering structure, so that the protection effect on the goods is improved;
meanwhile, as the buffer structure has the function of elastic vibration, goods in the cache overturning bin can be stacked more compactly due to elastic vibration when being stacked, and the waste of the internal space of the cache overturning bin caused by an overhead area is avoided; the goods packages can be rubbed and touched through the elastic vibration, so that dust attached to the surfaces in the transportation process is wiped off, and a certain cleaning effect is realized.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an enlarged view of the area A in FIG. 1;
FIG. 3 is an enlarged view of the area B in FIG. 2;
FIG. 4 is a front view of the overall structure of the present invention;
FIG. 5 is an enlarged view of the area C in FIG. 4;
FIG. 6 is a top view of the overall structure of the present invention;
FIG. 7 is an enlarged view of area D of FIG. 6;
FIG. 8 is an enlarged view of area E in FIG. 7;
FIG. 9 is a side view of the overall structure of the present invention;
FIG. 10 is an enlarged view of region F of FIG. 9;
FIG. 11 is a schematic view of a portion of the present invention;
FIG. 12 is a schematic view of a buffer structure according to the present invention;
FIG. 13 is a top view of a cushioning structure according to the present invention;
fig. 14 isbase:Sub>A schematic cross-sectional view taken along linebase:Sub>A-base:Sub>A in fig. 13.
In the figure: 1. a cross belt sorter; 2. grid opening; 3. caching a turnover bin; 4. a bottom wrapping belt collecting machine; 5. the stock bin is fixed on the frame; 301. a flange base plate; 302. turning over the shaft lever; 303. a frame rotating sleeve seat; 304. a base foot plate is sleeved; 305. turning over the pushing seat; 306. fixing the wall plate; 307. rotating the ferrule; 308. a folding cylinder; 309. a cylinder fixing base; 310. a rotating seat; 311. a swivel ear; 312. a bottom through hole; 313. a telescopic movable column; 314. a limiting disc; 315. a buffer impact plate; 316. a buffer compression spring; 317. an arc-shaped driven elastic plate; 318. embedding hole sites; 319. an electromagnet module; 320. a transition guide plate; 321. fixing a baffle plate; 322. a sensor mounting plate; 323. a bin sensor; 324. a curtain; 401. a side dam; 402. a positioning sensor; 403. a belt conveyor roller; 404. a carrier roller support plate; 405. a belt drive motor; 406. and a transmission module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 14, the present invention provides a technical solution: the utility model provides a cross area bin opening intelligence buffer memory divides heap system, including cross area sorting machine 1, the bin opening 2, buffer memory upset feed bin 3, bottom collection foreskin belt machine 4 and feed bin fixed rack 5, cross area sorting machine 1's both sides symmetric distribution is provided with bin opening 2, cross area sorting machine 1 is the field equipment among the prior art with bin opening 2, the outside of bin opening 2 is accepted and is provided with buffer memory upset feed bin 3, the below of buffer memory upset feed bin 3 is provided with bottom collection foreskin belt machine 4, buffer memory upset feed bin 3 keeps relatively fixed through feed bin fixed rack 5 with bottom collection foreskin belt machine 4, 5 and cross area feed bin sorting machine 1 fixed mounting, be provided with the upset drive structure between buffer memory upset feed bin 3 and the feed bin fixed rack 5, the upset drive structure can drive buffer memory upset feed bin 3 and overturn and empty, the inside of buffer memory upset feed bin 3 is close to the below and is provided with buffer structure, buffer structure has the elasticity shake function.
Buffer memory upset feed bin 3 is the fourth cylindric, and inside is the cavity, two mutually perpendicular's rectangular surface opening, buffer memory upset feed bin 3 adopts similar fourth cylindric structure, optimize the inside volume of feed bin to the biggest, and in the upset in-process, buffer memory upset feed bin 3 in each region can not interfere each other, required space of dodging is minimum, buffer memory upset feed bin 3 can reduce feed bin manufacturing cost through the die sinking plastic part, the response speed of weight improvement upset has been reduced simultaneously, fixed stop 321 is higher than buffer memory upset feed bin 3 design, can avoid the parcel to scurry to adjacent buffer memory upset feed bin 3 when following the slide-in of bin 2, the direction of delivery of bottom collection skin tape unit 4 is perpendicular with buffer memory upset feed bin 3's axis of overturning direction, bin 2 and buffer memory upset feed bin 3's position and quantity one-to-one.
The overturning driving structure comprises a flange seat disc 301, an overturning shaft rod 302, a rack rotating sleeve seat 303, a sleeve seat foot plate 304, an overturning push seat 305, a fixed wall plate 306, a rotating collar 307, a folding cylinder 308, a cylinder fixed base 309, a rotating seat 310 and a rotating seat lug 311.
The flange seat disc 301 is fixedly installed at the outer surface position of the cache overturning bin 3, the overturning shaft rod 302 and the flange seat disc 301 are fixedly installed, the surface fixing of the rack rotating sleeve seat 303 is provided with a sleeve seat foot plate 304, the sleeve seat foot plate 304 and the outer surface fixing of the bin fixing rack 5 are installed, the overturning shaft rod 302 is rotatably installed inside the rack rotating sleeve seat 303, the surface fixing of the overturning push seat 305 is provided with a fixed wall plate 306, the fixed wall plate 306 and the outer surface fixing of the cache overturning bin 3 are installed, the surface fixing of the overturning push seat 305 is provided with a convex shaft, the outer part of the convex shaft is rotatably sleeved with a rotating ferrule 307, a telescopic rod and the rotating ferrule 307 of the folding cylinder 308 are fixedly installed, the cylinder fixing base 309 and the bin fixing rack 5 are fixedly installed, the surface fixing of the cylinder fixing base 309 is provided with a rotating seat 310, the surface fixing of the rotating seat 310 is provided with a rotating seat ear 311, and the bottom of the folding cylinder 308 and the rotating ear 311 are installed in a swinging mode.
The buffer structure comprises a bottom through hole 312, a telescopic movable column 313, a limiting disc 314, a buffer impact plate 315, a buffer extrusion spring 316, an arc-shaped driven elastic plate 317, an embedding hole 318 and an electromagnet module 319.
Bottom through-hole 312 runs through the lower part surface position of seting up in buffer upset feed bin 3, the inside flexible movable post 313 that is provided with of bottom through-hole 312, the bottom fixed mounting of flexible movable post 313 has spacing disc 314, the diameter of spacing disc 314 is greater than the diameter of bottom through-hole 312, the upper end surface position fixed mounting of flexible movable post 313 has buffer bullet to hit board 315, buffer extrusion spring 316 cover establishes the outside of installing at flexible movable post 313, be located between buffer bullet hitting board 315 and the inside lower surface of buffer upset feed bin 3, the driven elastic plate 317 of arc is the arc bent plate form, and has elasticity, the one end of the driven elastic plate 317 of arc and the side fixed surface installation that buffer bullet hit board 315, the other end is laminated with the inner wall surface elasticity of buffer upset feed bin 3, the driven elastic plate 317's of arc quantity has a plurality of groups, and be linear array evenly distributed, the lower part surface position of buffer upset feed bin 3 is located and runs through and has seted up and has set up 318 under buffer bullet hitting board 315, set up the inside that set up and be fixed with electro-magnet module 318 that is equipped with electro-magnet hole position, electro-magnet 319 can attract the attraction hole position to move down by module 319, electro-magnet 319, module 319 can attract the move down.
A transition guide plate 320 is arranged between the grid port 2 and the buffer turning bin 3, the transition guide plate 320 is fixedly installed with the bin fixing rack 5, a fixing baffle 321 is fixedly arranged on the surface of one side of the buffer turning bin 3, the fixing baffle 321 is fixedly installed with the bin fixing rack 5, the fixing baffle 321 and the buffer turning bin 3 are matched to form a semi-closed space with only an open top, a sensor installation plate 322 is fixedly installed on the outer surface position of the buffer turning bin 3, a bin sensor 323 is fixedly arranged on the sensor installation plate 322, a separation curtain 324 is fixedly arranged below the fixing baffle 321, the separation curtains 324 are positioned between every two buffer turning bins 3, the separation curtain 324 has flexibility, and the lower part of the separation curtain is provided with a cutting groove in an array penetrating way, when the buffer turning bin 3 is turned to be opened for blanking, light packing pieces such as envelope pieces and the like are easy to float, thereby produce the compounding with the parcel of other feed bins, separation curtain 324 can play the effect of blockking, bottom collection skin belt machine 4's upper surface is close to both sides position symmetry and is provided with side shield 401, width between two side shield 401 is greater than the width of buffer memory upset feed bin 3, side shield 401's surface is close to the lower part position and is provided with positioning sensor 402, multiunit positioning sensor 402 is used for monitoring the parcel by each regional buffer memory upset feed bin 3 blanking, the definite position of carrying on bottom collection skin belt machine 4, and the distribution situation, autonomic decision-making system need be according to parcel position on bottom collection skin belt machine 4, control the open opportunity of each feed bin, guarantee that the parcel in the different position buffer memory upset feed bin 3 falls on bottom collection skin belt machine 4 after, guarantee enough safe interval each other, avoid the compounding.
A belt conveyor carrier roller 403 is rotatably arranged inside the bottom belt collecting machine 4, the belt conveyor carrier roller 403 can support the lower portion of a conveying belt of the bottom belt collecting machine 4 to prevent the belt conveyor carrier roller 403 from collapsing, carrier roller support plates 404 are arranged at two ends of the belt conveyor carrier roller 403, the belt conveyor carrier roller 403 and the carrier roller support plate 404 are rotatably arranged, the carrier roller support plate 404 and the bottom belt collecting machine 4 are fixedly arranged, a belt driving motor 405 is arranged inside the bottom belt collecting machine 4, a transmission module 406 is arranged between the belt driving motor 405 and the conveying belt of the bottom belt collecting machine 4, and the transmission module 406 is composed of a transmission wheel and a transmission belt and can transmit power of the belt driving motor 405 to the conveying belt of the bottom belt collecting machine 4 to enable the conveying belt to rotate.
When the device works, goods packages passing through the grid 2 slide into the cache overturning bin 3 through the transition guide plate 320 for caching, the folding cylinder 308 is in a return stroke state at the moment, the cache overturning bin 3 is closed with the fixed baffle 321, and the cache height of the packages in the cache overturning bin 3 is monitored by the bin sensor 323.
When the depth of a full material to an appointed sensor is reached, and a control system autonomously decides to send a bin opening signal according to the material conveying position on the bottom wrapping machine 4, the folding cylinder 308 is pushed out, the cache turning bin 3 is turned upwards, and the packages fall onto the bottom wrapping machine 4, similarly, when a plurality of cache turning bins 3 are simultaneously full and need to be opened, the autonomous decision making system needs to control the opening time of each bin according to the package positions on the bottom wrapping machine 4, so that after the packages in the bins at different positions fall onto the bottom wrapping machine 4, enough safety intervals are guaranteed to be kept mutually, material mixing is avoided, and the autonomous decision making system is a programming program of equipment such as a PLC (programmable logic controller) or a single chip microcomputer. As shown in fig. 5, 3 sets of bin sensors 323 with different heights at different positions on the side of the cache turnover bin 3 are used for detecting the cache condition of each bin package, and the opening sequence of the cache turnover bin 3 in each area is automatically planned in advance;
in the initial sorting stage, when the inside of the cache overturning bin 3 is in an empty state, the falling distance of the goods thrown into the cache overturning bin 3 is long, the goods falling to the bottom of the cache overturning bin 3 is lack of buffering, and through the arranged buffering structure, when the goods fall to the bottom of the cache overturning bin 3 and hit the surface of the buffering impact plate 315, the buffering impact plate 315 can move downwards in an elastic buffering manner, so that the impact force is removed, and the buffering effect is provided;
intermittent current is introduced into the electromagnet module 319 during working, so that the electromagnet module 319 has intermittent magnetic force and can attract the buffering impact plate 315 to move downwards, after the magnetic force disappears, the buffering impact plate 315 is elastically restored under the elastic force of the buffering extrusion spring 316, and the above-mentioned operation is repeated, so that the buffering impact plate 315 can elastically impact upwards, and the frequency of the elastic movement is the same as the on-off frequency of the current, in practical use, the impact frequency of the buffering impact plate 315 is not too high, otherwise, goods are easily damaged, and only once elastic movement is performed after testing for 1-5 seconds, so that goods in the buffering overturning bin 3 are stacked more compactly due to elastic vibration when stacked, and an overhead area is avoided;
the goods packages can be rubbed and touched through the elastic vibration, so that dust attached to the surfaces in the transportation process is wiped off, and a certain cleaning effect is realized.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a cross area bin mouth intelligence buffer memory divides heap system, includes cross area sorting machine (1), bin mouth (2), buffer memory upset feed bin (3), bottom collection skin tape unit (4) and feed bin fixed frame (5), the bilateral symmetry distribution of cross area sorting machine (1) is provided with bin mouth (2), its characterized in that: the outside of bin mouth (2) is accepted and is provided with buffer memory upset feed bin (3), the below of buffer memory upset feed bin (3) is provided with bottom collection skin tape unit (4), buffer memory upset feed bin (3) with bottom collection skin tape unit (4) keep relatively fixed through feed bin fixed frame (5), feed bin fixed frame (5) with cross area sorting machine (1) fixed mounting, buffer memory upset feed bin (3) with be provided with upset drive structure between feed bin fixed frame (5), upset drive structure can drive buffer memory upset feed bin (3) and overturn and empty, the inside of buffer memory upset feed bin (3) is close to the below position and is provided with buffer structure, buffer structure has the elasticity shake function.
2. The cross-stripe trellis intelligent cache heap system of claim 1, wherein: buffer memory upset feed bin (3) are the quarter cylindricly, and inside is the cavity, two mutually perpendicular's rectangular surface openings, the direction of delivery of bottom collection skin tape unit (4) is perpendicular with the axis of rotation direction of buffer memory upset feed bin (3), grid (2) with the position and the quantity one-to-one of buffer memory upset feed bin (3).
3. The cross-stripe trellis intelligent cache heap system of claim 1, wherein: the overturning driving structure comprises a flange seat disc (301), an overturning shaft rod (302), a rack rotating sleeve seat (303), a sleeve seat foot plate (304), an overturning push seat (305), a fixed wall plate (306), a rotating ferrule (307), a folding cylinder (308), a cylinder fixing base (309), a rotating seat (310) and a rotating seat lug (311).
4. The intelligent cache and heap system with cross-stripe gates of claim 3, wherein: flange seat dish (301) fixed mounting is in the surface position of buffer memory upset feed bin (3), upset axostylus axostyle (302) with flange seat dish (301) fixed mounting, the fixed surface of frame commentaries on classics cover seat (303) is provided with cover seat sole (304), cover seat sole (304) with the fixed surface mounting of feed bin fixed frame (5), upset axostylus axostyle (302) rotate the inside that sets up in frame commentaries on classics cover seat (303), the fixed surface mounting that the upset pushed seat (305) has fixed wallboard (306), fixed wallboard (306) with the fixed surface mounting of buffer memory upset feed bin (3), the fixed surface of upset pushed seat (305) is provided with the protruding axle, the outside rotation cover of protruding axle is equipped with rotatory lasso (307), receive the telescopic link and the rotatory lasso (307) fixed mounting of cylinder (308) of closing.
5. The intelligent cache and heap system with cross-stripe gates according to claim 4, wherein: cylinder unable adjustment base (309) with feed bin fixed rack (5) fixed mounting, the fixed surface of cylinder unable adjustment base (309) installs and rotates seat (310), the fixed surface who rotates seat (310) is provided with swivel mount ear (311), the bottom and swivel mount ear (311) swing installation of receipts cylinder (308).
6. The cross-stripe trellis intelligent cache heap system of claim 1, wherein: the buffer structure comprises a bottom through hole (312), a telescopic movable column (313), a limiting disc (314), a buffer impact plate (315), a buffer extrusion spring (316), an arc-shaped driven elastic plate (317), an embedding hole position (318) and an electromagnet module (319).
7. The intelligent cache and heap system with cross-stripe gates of claim 6, wherein: bottom through-hole (312) run through the lower part surface position of seting up in buffer memory upset feed bin (3), the inside of bottom through-hole (312) is flexible to be provided with flexible movable post (313), the bottom fixed mounting of flexible movable post (313) has spacing disc (314), the diameter of spacing disc (314) is greater than the diameter of bottom through-hole (312), the upper end surface position fixed mounting of flexible movable post (313) has the buffering bullet to hit board (315), buffering extrusion spring (316) cover is established and is installed the outside at flexible movable post (313), is located between the inside lower surface that the buffering bullet hit board (315) and buffer memory upset feed bin (3).
8. The intelligent cache heap system with cross-stripe gates according to claim 7, wherein: the driven bullet board of arc (317) is the arc slabby, and has elasticity, the one end of the driven bullet board of arc (317) and the side fixed surface installation that the board (315) was hit to the buffering bullet, the other end and the laminating of the inner wall surface elasticity of buffering upset feed bin (3), the quantity of the driven bullet board of arc (317) has a plurality of groups, and is linear array evenly distributed, the lower part surface position of buffering upset feed bin (3) is located buffering bullet and hits under board (315) and runs through and has seted up and inlay hole site (318), the inside of inlaying establishing hole site (318) is inlayed and is established and is fixed with electromagnet module (319), electromagnet module (319) can attract buffering bullet to hit board (315) and move down.
9. The cross-stripe trellis intelligent cache heap system of claim 1, wherein: grid (2) with be provided with transition deflector (320) between buffer memory upset feed bin (3), transition deflector (320) with feed bin fixed frame (5) fixed mounting, one side fixed surface of buffer memory upset feed bin (3) is provided with fixed stop (321), fixed stop (321) with feed bin fixed frame (5) fixed mounting, fixed stop (321) with buffer memory upset feed bin (3) cooperation can form the open semi-closed space in only top.
10. The cross-stripe trellis intelligent cache banking system according to claim 9, wherein: the utility model discloses a buffer memory upset feed bin, including buffer memory upset feed bin (3), the outer fixed surface of buffer memory upset feed bin (3) has sensor mounting panel (322), the fixed feed bin sensor (323) that is provided with on sensor mounting panel (322), the below of fixed stop (321) is fixed to be provided with and separates curtain (324), it is located buffer memory upset feed bin (3) between two liang to separate curtain (324), it has the flexibility to separate curtain (324), and its lower part is the array and runs through and has seted up the partition groove, the upper surface of bottom collection skin belt feeder (4) is close to both sides position symmetry and is provided with side shield (401), two width between side shield (401) is greater than the width of buffer memory upset feed bin (3), the surface of side shield (401) is close to the lower part position and is provided with positioning sensor (402).
CN202210864651.XA 2022-07-21 2022-07-21 Intelligent cache stack-separating system with grid ports Active CN115159155B (en)

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