CN203865603U - Easily-layered material storage system - Google Patents

Easily-layered material storage system Download PDF

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Publication number
CN203865603U
CN203865603U CN201420298562.4U CN201420298562U CN203865603U CN 203865603 U CN203865603 U CN 203865603U CN 201420298562 U CN201420298562 U CN 201420298562U CN 203865603 U CN203865603 U CN 203865603U
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China
Prior art keywords
plate
door panel
external door
silo
internal hilar
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Withdrawn - After Issue
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CN201420298562.4U
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Chinese (zh)
Inventor
陈帮军
王震虎
郑帅
马志国
高德峰
陈帮春
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Huanghe Science and Technology College
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Huanghe Science and Technology College
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Abstract

An easily-layered material storage system comprises a base and a cylindrical silo arranged on the base, a scraping plate conveyer is arranged on the top of the cylindrical silo, a packing auger type out-of-storage mechanism is arranged at the bottom of the cylindrical silo, a telescopic plate type material distributing machine is arranged in the cylindrical silo, and comprises four stand columns parallel to the central line of the cylindrical silo, a transverse supporting rod is arranged between every two stand columns at the opposite angles, the four stand columns are arranged along four top points of a square, the central line of the cylindrical silo is arranged in the center of the four stand columns, the upper ends of the four stand columns are provided with a platform frame arranged below the scraping plate conveyor, a lifting device is arranged on the platform frame, the lifting device is connected with outer door plates, and the inner side of each outer door plate is provided with at least two layers of inner door plates. The easily-layered material storage system is reasonable in design, high in automation degree and easy to operate and control, a new chapter that the materials are not layered is created, it is ensured that the easily-layered materials are not layered, and meanwhile a winch lifting system is utilized for achieving structure simplification and reliability.

Description

Easy layering material aggregate-storing system
Technical field
The utility model belongs to grain and oil raw material storage technical field, relates in particular to a kind of easy layering material aggregate-storing system.
Background technology
At present, the general use of the domestic storage for easy layering material directly sent into silo or general depot from top scrapper conveyor.In general Foodgrain and oilseed production enterprise, producing cooking oil is only that all the other are all to the processing of side production dregs of beans and sale greatly as the part in whole Business Economic Benefit source.
Store the warehouse of loose unpacked material.Divide agriculture silo and the large class of industrial silo two.Agricultural silo is used for having grain in reserve, feed even grained and granular material; Industry silo is in order to store the loose unpacked materials such as coke, cement, salt, sugar.The cost of mechanization silo is generally than high 1/3 left and right of the cost of mechanization chamber storehouse, but can shorten the handling flow process of material, reduce operation and service expenditure, eliminate heavy packed operation, be conducive to mechanization, automated job, therefore become one of topmost silo form.
Silo should build in and have a good transport service, under residential architecture and public building the high and dry location of wind direction, possess the possibility being connected with circuits such as water supply, draining, heat supply, power supplies; For preventing steel plate corrosion, the setting of should not bordering on the sea.The design and construction of silo, except guaranteeing that bulkhead intensity meets necessary requirement, also should make silo inwall smooth smooth, is convenient to material handling; Layout should be reasonable, to save floor area.Mechanization silo is installed discharge funnel in bottom, and upper vestibule is provided with the transportation device of charging.When filling with substance, the bulk cargo of discharging pit is transported to upper vestibule and is discharged into horizontal belt conveyer by gig, and belt transporter is discharged to silo grain-entering mouth by bulk cargo and flows into silo.During discharging, bulk cargo is discharged to lower vestibule by discharge funnel, by horizontal belt conveyer, is transported.In addition, before grain warehouse entry, storage period and deliver from godown after also to be dried, weigh, turn over the work such as storehouse, sterilization, cleaning, for this reason, need to be equipped with corresponding equipment and device, to progressively carry out automation mechanized operation.
The aspect of silo has square, rectangle, polygon and circle etc.The bulkhead reasonable stress of round silo, thereby all should be specifically noted that when soil investigation, soil exploration and basic design, materials economy, so most widely used.When the material kind storing is single or reserves hour, by independent chamber or single-row layout.When the material kind storing is more or reserves are large, arrange storehouse in groups.Cheng Xing storehouse, space between silo, also can be for utilizing.
The total length in cylinder group storehouse is generally no more than 60 meters, and the total length in square group storehouse is generally no more than 40 meters.Excessive or the stressed and ground situation of group's storehouse length should take appropriate measures when more complicated, as establishes the impact that expansion joint is produced to eliminate concrete shrink stress and temperature stress; If subsiding crack is to avoid owing to existing or Carrying capacity poor compared with large load to have the impact of the differential settlement that the factors such as significant difference cause between the different piece of structure own; If seismic joint is to alleviate earthquake etc.
The dregs of beans of take in the grain and oil engineering is example.Dregs of beans is a kind of side production obtaining after soybean extracting bean oil.Different according to the method for extracting, can be divided into and soak dregs of beans and two and soak two kinds of dregs of beans.The side production of wherein take after extraction extracting bean oil soaks dregs of beans as one, and first with squeezing, gets oil, then the side production of gained is called two and soaks dregs of beans after oil is got in lixiviate.In the whole course of processing, very important to the control of temperature, excess Temperature can have influence on protein content, thereby is directly connected to quality and the use of dregs of beans; The too low water content that can increase dregs of beans of temperature, water content height can affect the quality of dregs of beans in the storage life.One production technology of soaking dregs of beans is comparatively advanced, and protein content is high, is the principal item circulating on the current spot market of China.
Soybean Meal can produce a very large impact its value.If early stage, Soybean Meal was no problem, but produce physical property lamination in when warehouse-in of being scattered, will to dregs of beans use and sale makes troubles.The silo height that is generally used for storing dregs of beans is 20 meters of left and right, and when dregs of beans is scattered warehouse-in, material lighter in dregs of beans can slowly descend slowly and lightly, and in dregs of beans, heavier material can fall rapidly.When the height of silo is enough high, the dregs of beans lamination of generation will on dregs of beans use and sale brings great impact.The cloth machine that had the easy layering material layering of similar prevention abroad, but because the topical type using, so be not widely used in storage.In grain and oil storage process, need a kind of apparatus for distributing that silo is stored easy layering material that is reliably applicable to reasonable in design badly.
Utility model content
The utility model is in order to solve weak point of the prior art, provide a kind of reasonable in design, reliability strong, be easy to control, prevent that easy layering material is due to the easy layering material aggregate-storing system of the generation lamination of being freely scattered.
For solving the problems of the technologies described above, the utility model adopts following technical scheme: easy layering material aggregate-storing system, comprise pedestal and be located at the silo on pedestal, silo top is provided with slat conveyer, silo bottom is provided with the auger type mechanism that delivers from godown, in described silo, be provided with flexible board-like material distributing machine, flexible board-like material distributing machine comprises four root posts parallel with silo line of centers, between two root posts at diagonal angle, be provided with singletree, four root posts arrange along four summits of square, silo line of centers is positioned at the center of four root posts, four root post upper ends are provided with the platform framework that is positioned at slat conveyer below, platform framework is provided with hoisting device, hoisting device comprises four capstan winch winchs, flat guide wheel group, horizontal reverse wheel, inclination angle reverse wheel, lifting wheel and four steel ropes, between adjacent two root posts, all correspondence is provided with rail groove, one end of four steel ropes is fixed respectively and is wrapped on four capstan winch winchs on a capstan winch, the other end of four steel ropes is walked around flat guide wheel group successively, horizontal reverse wheel, after inclination angle reverse wheel and lifting wheel, be connected with respectively an external door panel, inner side, edge, every external door panel lower end is equipped with outer guide support plate, outside, middle part, edge, external door panel upper end is provided with outside fix plate, each external door panel inner side is equipped with at least two-layer internal hilar plate, inner side, edge, internal hilar plate lower end is equipped with the interior guide support plate being placed on outer guide support plate, outside, middle part, edge, internal hilar plate upper end is equipped with the interior locating plate being placed in external door panel, corresponding being provided with for the slotted eye through steel rope on outside fix plate and interior locating plate, external door panel, outer guide support plate, internal hilar plate, the two ends of interior guide support plate lay respectively in two corresponding rail grooves, four root post outsides are evenly provided with some layers from top to bottom for the positioning plate of support positioning plates, the number of plies of positioning plate equals the summation of internal hilar plate and external door panel, every layer of positioning plate is provided with two on every root post, the length of positioning plate successively increases from top to bottom, the length of interior locating plate is successively dwindled from top to bottom, the length of outside fix plate is less than undermost interior locating plate length.
Described every external door panel outside is equipped with steel wire rope tensioning mechanism, steel wire rope tensioning mechanism comprises two risers that are vertically located in external door panel, between two riser bottoms, level is provided with adapter plate, adapter plate inner side is connected with external door panel, between adapter plate and outside fix plate, be vertically provided with two thread rods, on two thread rods, be equipped with the pipe link that can slide up and down along thread rod, the clamp nut being threaded on thread rod respectively with pipe link upper surface and lower surface force fit, described steel rope is connected with pipe link.
Between four internal hilar plate upper ends of the superiors and the discharging opening of slat conveyer, be provided with feeding cylinder, feeding cylinder top is provided with level sensor, lifting wheel is connected on platform framework by cantilever, cantilever is provided with strain gauge, and platform framework bottom is provided with and contacts the limit switch coordinating with external door panel upper edge.
The principle that adopts technique scheme, the utility model to prevent that easy lamination from occurring is as follows: first, prevent from that greatly highly easily dispersed material is freely scattered just can prevent material generation lamination.Secondly, provide a telescopic pipeline, material is filled in pipeline, then the Contraction Ducts that makes progress gradually, allows material skid off from duct bottom, can prevent like this generation lamination of material.By these two principle of work combinations, first slat conveyer is sent material into pipeline and is filled up that (inevitably there is the generation of material layering phenomenon pipeline the inside, because pipe diameter is less, material layering can be ignored), riser tubing, material flows out from bottom, and in pipeline, material level declines, and controls pipeline ascending velocity and just can control rate of outflow.Pipeline top is as far as possible little because material flows out the space declining, reduce the generation of material spilling lamination, there is no all the time like this layering material in pipeline, can uniform state slippage arrive duct bottom outflow when sending into always.
Feeding cylinder upper end is connected with the discharging opening of slat conveyer, is provided with for monitoring material whether store up full level sensor on feeding cylinder, and level sensor also can judge whether solid accumulation.Singletree between two root posts at four root posts and diagonal angle provides carrying for feeding cylinder, platform framework, hoisting device.Four capstan winch winchs can be separated out four capstan winch positions on the reel of existing simple lay dish winch, steel cable is fixed and be wound around to each capstan winch, after every steel rope commutates by flat guide wheel group, horizontal reverse wheel, inclination angle reverse wheel, lifting wheel, is connected with the steel wire rope tensioning mechanism on external door panel outside.External door panel and some internal hilar plates form multistage door-plate, and internal hilar plate is nested in step by step in the internal hilar plate of lower floor or external door panel and can freely slides up and down along rail groove.Due to locating plate in external door panel upper edge arranged outside outside fix plate and internal hilar plate upper edge arranged outside, and the length of positioning plate successively increases from top to bottom, the length of interior locating plate is successively dwindled from top to bottom, the length of outside fix plate is less than undermost interior locating plate length, four door-plates that the position limiting structure of this uniqueness makes every one deck are corresponding being supported on the positioning plate of one deck respectively, after transferring completely, can form a square pipe structure under the traction of door-plate at steel rope.
Four door-plates of every layer that when steel wire rope tensioning mechanism is used for fine setting installation, rope capacity size mal causes are transferred and are not lined up.Concrete control process is: unclamp clamp nut, move up and down pipe link to correct position, then tighten clamp nut.
Working process of the present utility model is as follows:
The work starting stage, to control four capstan winch winchs and put rope, internal hilar plate and external door panel are transferred step by step, and on the spacing positioning plate between two root posts of interior positioning plate meeting in all outsides, internal hilar plate upper edge, now steel rope is also declined by pulling force step by step.After afterbody external door panel is landed, steel rope is under tension no longer, is now positioned at strain gauge below the cantilever of lifting wheel and cantilever stress is detected and be less than suspention external door panel gravity, judges that external door panel is landed and controlled four capstan winch winchs quit work with this.External door panel and internal hilar plate are encircled into the square tube of sealing.
Slat conveyer endlessly convey materials enters in square tube and fills up square tube.When controlling level buries level sensor, with this, judge that controlling level has arrived specified altitude assignment, when fugitive material spilling, substantially can there is not lamination in this height.Four capstan winch winchs are started working, and by steel rope, pull external door panel upwards slowly to promote, and the material in square tube first flows out from external door panel below, along with material in feed bin injects from bottom to up.When controlling level is during lower than vibration material level sensor, four capstan winch winchs quit work and wait for that controlling level recovers.External door panel upwards promotes first order internal hilar plate again, then promotes second stage internal hilar plate, and this mode of operation is continued until that internal hilar plate packs up and touch the limit switch (travel switch) that is positioned at platform framework bottom completely, and four capstan winch winchs quit work.Now material has filled up silo.
Main design thought of the present utility model prevents material generation lamination by controlling charging bulk cargo height exactly.By promoting the door-plate of board-like material distributing machine, shrink step by step and control to flow out material and control controlling level in pipeline simultaneously.The utility model is reasonable in design, degree of automation is high, be easy to control, and has started the not stratified new page of material, guarantee easy layering material not there is not lamination time, accomplished again the designs simplification and the reliability that utilize winch tackling system to bring.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the utility model when flexible board-like material distributing machine initial condition;
The schematic diagram that Fig. 2 is the utility model when internal hilar plate and external door panel are all launched to form square tube and pack material in square tube;
Fig. 3 is the schematic diagram that in the utility model, external door panel and internal hilar plate material when promoting is distributed into silo process;
Fig. 4 is that in the utility model, flexible board-like material distributing machine is promoted to the schematic diagram that is full of material when the highest in silo;
Fig. 5 is the planar structure schematic diagram of flexible board-like material distributing machine in the utility model;
Fig. 6 is A-A cutaway view in Fig. 5;
Fig. 7 is the birds-eye view of Fig. 5;
Fig. 8 is internal hilar plate and the schematic diagram of external door panel under contraction state of flexible board-like material distributing machine in the utility model;
Fig. 9 is the perspective view of external door panel in Fig. 8;
Figure 10 is the perspective view of flexible board-like material distributing machine in the utility model;
Figure 11 is the enlarged drawing at B place in Figure 10;
Figure 12 is the enlarged drawing at C place in Figure 10;
Figure 13 is the enlarged drawing at D place in Figure 10;
Figure 14 is the enlarged drawing at E place in Fig. 8.
The specific embodiment
As shown in Fig. 1-Figure 14, easy layering material aggregate-storing system of the present utility model, comprise pedestal 1 and be located at the silo 2 on pedestal 1, silo 2 tops are provided with slat conveyer 3, silo 2 bottoms are provided with the auger type mechanism 4 that delivers from godown, in silo 2, be provided with flexible board-like material distributing machine 35, flexible board-like material distributing machine 35 comprises four root posts 5 parallel with silo 2 line of centerss, between two root posts 5 at diagonal angle, be provided with singletree 6, four root posts 5 arrange along four summits of square, silo 2 line of centerss are positioned at the center of four root posts 5, four root post 5 upper ends are provided with the platform framework 7 that is positioned at slat conveyer 3 belows, platform framework 7 is provided with hoisting device, hoisting device comprises four capstan winch winchs 8, flat guide wheel group 9, horizontal reverse wheel 10, inclination angle reverse wheel 11, lifting wheel 12 and four steel ropes 15, between adjacent two root posts 5, all correspondence is provided with rail groove 14, one end of four steel ropes 15 is fixed respectively and is wrapped on four capstan winch winchs 8 on a capstan winch, the other end of four steel ropes 15 is walked around flat guide wheel group 9 successively, horizontal reverse wheel 10, inclination angle reverse wheel 11 and lifting wheel 12 be rear is connected with respectively an external door panel 16, every external door panel 16 inner sides, edge, lower end are equipped with outer guide support plate 17, external door panel 16 outsides, middle part, edge, upper end are provided with outside fix plate 18, each external door panel 16 inner side is equipped with at least two-layer internal hilar plate 19, internal hilar plate 19 inner sides, edge, lower end are equipped with the interior guide support plate 20 being placed on outer guide support plate 17, internal hilar plate 19 outsides, middle part, edge, upper end are equipped with the interior locating plate 21 being placed in external door panel 16, corresponding being provided with for the slotted eye 22 through steel rope 15 on outside fix plate 18 and interior locating plate 21, external door panel 16, outer guide support plate 17, internal hilar plate 19, the two ends of interior guide support plate 20 lay respectively in two corresponding rail grooves 14, four root post 5 outsides are evenly provided with some layers from top to bottom for the positioning plate 23 of support positioning plates, the number of plies of positioning plate 23 equals the summation of internal hilar plate 19 and external door panel 16, every layer of positioning plate 23 is provided with two on every root post 5, the length of positioning plate 23 successively increases from top to bottom, the length of interior locating plate 21 is successively dwindled from top to bottom, the length of outside fix plate 18 is less than undermost interior locating plate 21 length.
Every external door panel 16 outsides are equipped with steel wire rope tensioning mechanism 24, steel wire rope tensioning mechanism 24 comprises two risers 25 that are vertically located in external door panel 16, between two riser 25 bottoms, level is provided with adapter plate 26, adapter plate 26 inner sides are connected with external door panel 16, between adapter plate 26 and outside fix plate 18, be vertically provided with two thread rods 27, on two thread rods 27, be equipped with the pipe link 28 that can slide up and down along thread rod 27, the clamp nut 29 being threaded on thread rod 27 respectively with pipe link 28 upper surfaces and lower surface force fit, described steel rope 15 is connected with pipe link 28.
Between four internal hilar plate 19 upper ends of the superiors and the discharging opening of slat conveyer 3, be provided with feeding cylinder 30, feeding cylinder 30 tops are provided with level sensor 31, lifting wheel 12 is connected on platform framework 7 by cantilever, cantilever is provided with strain gauge 32, and platform framework 7 bottoms are provided with and contact the limit switch 33 coordinating with external door panel 16 upper edges.
Slat conveyer 3 in the middle of the utility model and the auger type mechanism 4 that delivers from godown is existing mature technology, and concrete structure repeats no more.
The utility model prevents that the principle that easy lamination occurs is as follows: first, prevent from that greatly highly easily dispersed material is freely scattered just can prevent material generation lamination.Secondly, provide a telescopic pipeline, material is filled in pipeline, then the Contraction Ducts that makes progress gradually, allows material skid off from duct bottom, can prevent like this generation lamination of material.By these two principle of work combinations, first slat conveyer is sent material into pipeline and is filled up that (inevitably there is the generation of material layering phenomenon pipeline the inside, because pipe diameter is less, material layering can be ignored), riser tubing, material flows out from bottom, and in pipeline, material level declines, and controls pipeline ascending velocity and just can control rate of outflow.Pipeline top is as far as possible little because material flows out the space declining, reduce the generation of material spilling lamination, there is no all the time like this layering material in pipeline, can uniform state slippage arrive duct bottom outflow when sending into always.
Feeding cylinder 30 upper ends are connected with the discharging opening of slat conveyer 3, are provided with for monitoring material whether store up full level sensor 31 on feeding cylinder 30, and level sensor 31 also can judge whether solid accumulation.Singletree 6 between two root posts 5 at four root posts 5 and diagonal angle provides carrying for feeding cylinder 30, platform framework 7, hoisting device.Four capstan winch winchs 8 can be separated out four capstan winch positions on the reel of existing simple lay dish winch, steel cable 15 is fixed and be wound around to each capstan winch, and every steel rope 15 is connected with the steel wire rope tensioning mechanism 24 on external door panel 16 outsides after commutating by flat guide wheel group 9, horizontal reverse wheel 10, inclination angle reverse wheel 11, lifting wheel 12.External door panel 16 and some internal hilar plates 19 form multistage door-plates, and internal hilar plate 19 is nested in step by step in the internal hilar plate 19 of lower floor or external door panel 16 and can freely slides up and down along rail groove 14.Due to locating plate 21 in external door panel 16 upper edge arranged outside outside fix plates 18 and internal hilar plate 19 upper edge arranged outside, and the length of positioning plate 23 successively increases from top to bottom, the length of interior locating plate 21 is successively dwindled from top to bottom, the length of outside fix plate 18 is less than undermost interior locating plate 21 length, four door-plates that the position limiting structure of this uniqueness makes every one deck are corresponding being supported on the positioning plate 23 of one deck respectively, after door-plate is transferred completely under the traction of steel rope 15, can form a square pipe structure.
Four door-plates of every layer that when steel wire rope tensioning mechanism 24 is used for fine setting installation, steel rope 15 length dimension mals cause are transferred and are not lined up.Concrete control process is: unclamp clamp nut 29, move up and down pipe link 28 to correct position, then tighten clamp nut 29.
Working process of the present utility model is as follows:
The work starting stage, control four capstan winch winchs 8 and put rope, internal hilar plate 19 and external door panel 16 are transferred step by step, and on the spacing positioning plate 23 between two root posts 5 of interior positioning plate 23 meeting in all internal hilar plate 19 outsides, upper edge, now steel rope 15 is also declined by pulling force step by step.After afterbody external door panel 16 is landed, steel rope 15 is under tension no longer, now be positioned at strain gauge 32 below the cantilever of lifting wheel 12 and cantilever stress detected and be less than suspention external door panel 16 gravity, with this, judge that external door panel 16 is landed and controlled four capstan winch winchs 8 and quit work.External door panel 16 and internal hilar plate 19 are encircled into the square tube of sealing.
Slat conveyer 3 endlessly convey materials 34 enters in square tube and fills up square tube.When controlling level buries level sensor 31, with this, judge that controlling level has arrived specified altitude assignment, when fugitive material 34 is scattered, substantially can there is not lamination in this height.Four capstan winch winchs 8 are started working, and by steel rope 15, pull external door panel 16 upwards slowly to promote, and the material 34 in square tube first flows out from external door panel 16 belows, along with material in feed bin 34 injects from bottom to up.When controlling level is during lower than vibration material level sensor 31, four capstan winch winchs 8 quit work and wait for that controlling level recovers.External door panel 16 upwards promotes first order internal hilar plate 19 again, then promote second stage internal hilar plate 19, this mode of operation is continued until that internal hilar plate 19 packs up and touch the limit switch 33(travel switch that is positioned at platform framework 7 bottoms completely), four capstan winch winchs 8 quit work.Now material 34 has filled up silo 2.
The present embodiment is not done any pro forma restriction to shape of the present utility model, material, structure etc.; any simple modification, equivalent variations and modification that every foundation technical spirit of the present utility model is done above embodiment, all belong to the protection domain of technical solutions of the utility model.

Claims (3)

1. easy layering material aggregate-storing system, comprise pedestal and be located at the silo on pedestal, silo top is provided with slat conveyer, silo bottom is provided with the auger type mechanism that delivers from godown, it is characterized in that: in described silo, be provided with flexible board-like material distributing machine, flexible board-like material distributing machine comprises four root posts parallel with silo line of centers, between two root posts at diagonal angle, be provided with singletree, four root posts arrange along four summits of square, silo line of centers is positioned at the center of four root posts, four root post upper ends are provided with the platform framework that is positioned at slat conveyer below, platform framework is provided with hoisting device, hoisting device comprises four capstan winch winchs, flat guide wheel group, horizontal reverse wheel, inclination angle reverse wheel, lifting wheel and four steel ropes, between adjacent two root posts, all correspondence is provided with rail groove, one end of four steel ropes is fixed respectively and is wrapped on four capstan winch winchs on a capstan winch, the other end of four steel ropes is walked around flat guide wheel group successively, horizontal reverse wheel, after inclination angle reverse wheel and lifting wheel, be connected with respectively an external door panel, inner side, edge, every external door panel lower end is equipped with outer guide support plate, outside, middle part, edge, external door panel upper end is provided with outside fix plate, each external door panel inner side is equipped with at least two-layer internal hilar plate, inner side, edge, internal hilar plate lower end is equipped with the interior guide support plate being placed on outer guide support plate, outside, middle part, edge, internal hilar plate upper end is equipped with the interior locating plate being placed in external door panel, corresponding being provided with for the slotted eye through steel rope on outside fix plate and interior locating plate, external door panel, outer guide support plate, internal hilar plate, the two ends of interior guide support plate lay respectively in two corresponding rail grooves, four root post outsides are evenly provided with some layers from top to bottom for the positioning plate of support positioning plates, the number of plies of positioning plate equals the summation of internal hilar plate and external door panel, every layer of positioning plate is provided with two on every root post, the length of positioning plate successively increases from top to bottom, the length of interior locating plate is successively dwindled from top to bottom, the length of outside fix plate is less than undermost interior locating plate length.
2. easy layering material aggregate-storing system according to claim 1, it is characterized in that: described every external door panel outside is equipped with steel wire rope tensioning mechanism, steel wire rope tensioning mechanism comprises two risers that are vertically located in external door panel, between two riser bottoms, level is provided with adapter plate, adapter plate inner side is connected with external door panel, between adapter plate and outside fix plate, be vertically provided with two thread rods, on two thread rods, be equipped with the pipe link that can slide up and down along thread rod, the clamp nut being threaded on thread rod respectively with pipe link upper surface and lower surface force fit, described steel rope is connected with pipe link.
3. easy layering material aggregate-storing system according to claim 2, it is characterized in that: between four internal hilar plate upper ends of the superiors and the discharging opening of slat conveyer, be provided with feeding cylinder, feeding cylinder top is provided with level sensor, lifting wheel is connected on platform framework by cantilever, cantilever is provided with strain gauge, and platform framework bottom is provided with and contacts the limit switch coordinating with external door panel upper edge.
CN201420298562.4U 2014-06-06 2014-06-06 Easily-layered material storage system Withdrawn - After Issue CN203865603U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104030053A (en) * 2014-06-06 2014-09-10 黄河科技学院 Storage system for materials with high probability of layering
CN106697987A (en) * 2016-11-27 2017-05-24 申清章 Double-body electric grain unloading granary with more uniform grain distribution

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104030053A (en) * 2014-06-06 2014-09-10 黄河科技学院 Storage system for materials with high probability of layering
CN104030053B (en) * 2014-06-06 2016-01-27 黄河科技学院 Easy layering material aggregate-storing system
CN106697987A (en) * 2016-11-27 2017-05-24 申清章 Double-body electric grain unloading granary with more uniform grain distribution

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