CN106142354A - A kind of dry powder and mortar isolation-proof device - Google Patents

A kind of dry powder and mortar isolation-proof device Download PDF

Info

Publication number
CN106142354A
CN106142354A CN201610734340.6A CN201610734340A CN106142354A CN 106142354 A CN106142354 A CN 106142354A CN 201610734340 A CN201610734340 A CN 201610734340A CN 106142354 A CN106142354 A CN 106142354A
Authority
CN
China
Prior art keywords
sleeve pipe
isolation
sleeve
boss
mortar
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201610734340.6A
Other languages
Chinese (zh)
Other versions
CN106142354B (en
Inventor
董亚伦
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inner Mongolia Third Construction Engineering Co Ltd
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201610734340.6A priority Critical patent/CN106142354B/en
Publication of CN106142354A publication Critical patent/CN106142354A/en
Application granted granted Critical
Publication of CN106142354B publication Critical patent/CN106142354B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28CPREPARING CLAY; PRODUCING MIXTURES CONTAINING CLAY OR CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28C7/00Controlling the operation of apparatus for producing mixtures of clay or cement with other substances; Supplying or proportioning the ingredients for mixing clay or cement with other substances; Discharging the mixture
    • B28C7/16Discharge means, e.g. with intermediate storage of fresh concrete
    • 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
    • B65G69/00Auxiliary measures taken, or devices used, in connection with loading or unloading
    • B65G69/20Auxiliary treatments, e.g. aerating, heating, humidifying, deaerating, cooling, de-watering or drying, during loading or unloading; Loading or unloading in a fluid medium other than air

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Chutes (AREA)

Abstract

The invention discloses a kind of dry powder and mortar isolation-proof device.nullThis dry powder and mortar isolation-proof device includes: including: material bin、Gather materials mouth、Anti-isolation passage、Clematis stem isocon、Mozzle、Motor、Coiler、Cable wire and leading block,Material by passage enter described in gather materials mouth,Uniformly flowed out by clematis stem isocon by described anti-isolation passage and be distributed in material bin,Described anti-isolation passage is set with by three grades of sleeve pipes,Coiler is driven by motor,Anti-isolation passage is pulled to stretch up and down by cable wire,It passes through telescopic anti-isolation passage,The trend that dry powder and mortar scatters rapidly after entering anti-isolation passage is suppressed,The synchronization that can realize dry powder and mortar is fallen,The effect of anti-isolation can not only be reached by anti-isolation passage at mortar,And stretching by anti-isolation passage,Clematis stem isocon is driven to move up and down,Mozzle is made to be always positioned at above mortar,Thus prevent draft tube outlets from blocking,And mortar can be made to be uniformly distributed in material bin.

Description

A kind of dry powder and mortar isolation-proof device
Technical field
The present invention relates to a kind of construction material technical field of processing equipment, particularly relate to a kind of cooked rice mortar anti-isolation dress Put.
Background technology
Dry powder and mortar is the mixture of prose style free from parallelism powdery and granular material, after powdery and granular material mix, due to Its respective attribute is different, storing, transport, use during all it may happen that powder body and the secondary separation of particulate matter, this Phenomenon is exactly " isolation " phenomenon of dry-mixed mortar.If " isolating " phenomenon can not be effectively controlled, dry powder sand will be had a strong impact on The end product quality of slurry and Construction Quality.
And traditional mortar storage facilities does not possess anti-isolation function, or vertical isolation is set in mortar storage facilities Pipe, arranges discharge opening on tube wall, during charging, first from bottom discharge opening discharging, after bottom discharge opening is covered by mortar, successively From the discharging of upper outlet hole, mode in this, owing to the isolation pipe range time is immersed in mortar, easily cause discharge opening to block, difficult To reach preferable anti-isolation effect.
Summary of the invention
In view of this, it is an object of the invention to provide a kind of dry powder and mortar isolation-proof device, its by telescopic prevent from Analysis passage, the trend that dry powder and mortar scatters rapidly after entering anti-isolation passage is suppressed, and the synchronization that can realize dry powder and mortar is fallen, Can not only reach the effect of anti-isolation at mortar by anti-isolation passage, and pass through the flexible of anti-isolation passage, drive is led Flow tube moves up and down, and makes mozzle be always positioned at above mortar, thus prevents draft tube outlets from blocking, and mortar can be made uniform It is distributed in material bin.
Embodiments of the invention provide a kind of dry powder and mortar isolation-proof device, it is characterised in that including: material bin, gather materials Mouth, anti-isolation passage, clematis stem isocon, mozzle, motor, coiler, cable wire and leading block, described material bin top is provided with One charging aperture, material is by transporter input to described material bin, and described material bin bottom has from sidewall to center The inclined-plane tilted, described inclined-plane and described sidewall place perpendicular angle are 45 degree, are provided with discharging opening, institute below described inclined-plane The cross section stating the mouth that gathers materials is the funnel-form being gradually reduced from top to bottom, described in gather materials mouthful upper end by fixed support be connected with described Material bin inwall, described in mouthful top that gathers materials be provided with at least two flash groove, described in mouthful lower end that gathers materials be fixed with described anti-isolation and lead to Road, described anti-isolation passage includes first sleeve, the second sleeve pipe, the 3rd sleeve pipe, described first sleeve, the second sleeve pipe, the 3rd set Pipe diameter increases and mutual sheathing successively, has outside the first sleeve extended laterally along sleeve pipe periphery bottom described first sleeve Side boss, outside outer second casing inner diameter and described first sleeve, boss matches, and described second sleeve bottom has along second Sleeve pipe periphery towards boss inside the second sleeve pipe extended inside the second sleeve pipe and along the second sleeve pipe periphery towards the second sleeve pipe outside Boss inside second sleeve pipe of the extension of side, the circular arc that inside described second sleeve pipe, boss is provided with along the second internal surface of sleeve pipe is downward falls Angle, inside the 3rd casing inner diameter and described second sleeve pipe, boss external diameter matches, inside described second sleeve pipe boss with first The development length of outside of sleeve boss is equal, and described 3rd sleeve bottom has boss inside the 3rd sleeve pipe, and described 3rd set Inside pipe, boss is provided with along the downward circular arc chamfering of the 3rd internal surface of sleeve pipe, inside described 3rd sleeve pipe inside boss and the second sleeve pipe The development length of boss is equal, and described 3rd sleeve pipe is fixedly connected below clematis stem isocon, and described clematis stem isocon includes the first pipe Body and six shunt body being fixed on described first body lower end, described six roots of sensation shunt body is along the first body circumference uniformly row Arranging, and described shunt body is 45 degree with horizontal plane angle, the described each body of clematis stem isocon is all fixed with described mozzle, institute Stating mozzle (2) lower surface to be provided with 3 and be available for the holes that material flows out, the spacing between each hole is equal, and each hole directly etc. In 1/5th of mozzle diameter of section, described material bin, charging aperture is arranged over motor bin and coiler, described motor As in described motor bin, described coiler is symmetricly set in described motor bin both sides, and described motor bin is towards described coiler Both sides be provided with the hole passed through for cable wire, described coiler is fixed on institute by coiler horizontal stand and coiler horizontal stand Stating material bin sidewall and upper wall, described motor is connected with described coiler by drive mechanism, and rotating for coiler provides power, In coiler, cable wire is through the fixing connection of leading block and the 3rd its lower end being fixed on mouthful lower end that gathers materials.
Preferably, described in mouthful lower end that gathers materials be provided with mouthful ring flange that gathers materials, the mouth that gathers materials with anti-isolation passage by gathering materials a mouthful method Blue dish is connected with first sleeve flange plate bolt, and described leading block is fixedly connected on described first sleeve ring flange.
Preferably, in described anti-isolation passage, the 3rd its lower end is provided with the 3rd casing flange dish, described clematis stem isocon Described in the first body upper end be provided with the first body ring flange, described anti-isolation logical with clematis stem shunt conduit by the 3rd tiretube process Blue dish and the first body flange plate bolt connect.
Preferably, the described each shunt body of clematis stem isocon is all connected by flange plate bolt isocon, described shunting Pipe extends to side of described material bin week.
Preferably, described anti-isolation channel internal diameter size is at 8 to 15 centimetres.
Preferably, described discharging opening is provided with Hand-operated butterfly valve switch, is used for being turned on and off described discharging opening.
Preferably, described drive mechanism is belt transmission.
Preferably, described flash groove is located at material bin top, is that distributed locations is arranged along week side, the sum of each flash groove area Cross-sectional area not less than anti-isolation passage.
Preferably, below described discharging opening, there is certain altitude on distance ground, is provided with support and supports outside described material bin.
Preferably, farther including materials vehicle, described materials vehicle can pass in and out at discharging opening underlying space, is used for transporting thing Material.
Accompanying drawing explanation
The present invention is only schematically illustrated and explains by the following drawings, not delimit the scope of the invention.
Fig. 1 is the structural representation of the dry powder and mortar isolation-proof device in the present embodiment.
Fig. 2 is the structural representation of the anti-isolation passage in the present embodiment.
Fig. 3 is the partial enlarged drawing at the A shown in Fig. 2.
Fig. 4 is the structural representation of clematis stem isocon in the present embodiment.
Label declaration:
1 clematis stem isocon
111 shunt body
112 shunt body ring flanges
113 first body ring flanges
2 mozzles
3 anti-isolation passages
31 the 3rd sleeve pipes
Boss inside 311 the 3rd sleeve pipes
312 the 3rd casing flange dishes
32 second sleeve pipes
Boss inside 321 second sleeve pipes
Boss inside 322 second sleeve pipes
33 first sleeve
Boss outside 331 first sleeve
332 first sleeve ring flanges
4 gather materials mouth
5 flash grooves
6 motors
7 coilers
71 coiler horizontal stands
72 coiler horizontal stands
8 cable wires
9 leading blocks
10 transporters
11 material bins
12 discharging openings
13 materials vehicles.
Detailed description of the invention
In order to technical characteristic, purpose and the effect of invention are more clearly understood from, the now comparison accompanying drawing explanation present invention Detailed description of the invention, the most identical label represents identical part.
In this article, " schematically " expression " serves as example, example or explanation ", " should not show being described herein as Meaning property " any diagram, embodiment be construed to a kind of preferred or more advantage technical scheme.
For making simplified form, each figure only schematically show part related to the present invention, and do not represent it Practical structures as product.It addition, so that simplified form readily appreciates, some figure has the portion of identical structure or function Part, only symbolically depicts one of them, or has only marked one of them.
In this article, " level " and " vertically ", it is merely meant that this parts or the substantially bearing of trend on surface, does not means that absolutely To horizontal direction and vertical direction, it can have certain angle with absolute horizontal direction and vertical direction.
In this article, " first ", " second " etc. are only used for differentiation each other, rather than represent significance level and order and The premise etc. existed each other.
Refer to Fig. 1, in one embodiment, it is provided that a kind of dry powder and mortar isolation-proof device, including: material bin 11, Gather materials mouth 4, anti-isolation passage 3, clematis stem isocon 1, mozzle 2, motor 6, coiler 7, cable wire 8 and leading block 9, described thing Feed bin 11 top is provided with a charging aperture, and material is by transporter 10 input to described material bin 11, and charging aperture is positioned at material bin The top of 11 sides, its width is available for transporter 10 and stretches into material bin 11 inside, the open height of charging aperture by charging aperture It is available for transporter 10 and material passes through, have above charging aperture and can accommodate motor 6 and the headspace of coiler 7 work, For ensureing the effective storing area of material bin 11 and the rational external dimensions of entirety, along distance material bin 11 upper wall 20 on charging aperture To 30 centimetres.
Described material bin 11 bottom has the inclined-plane tilted from sidewall, described inclined-plane and described sidewall place to center Perpendicular angle is 45 degree, is provided with discharging opening 12 below described inclined-plane, and the bevel angle of inclination is 40 to 50 degree, thus ensures The storing area of material bin 11, and, after opening discharging opening 12, material can flow out smoothly along sidewall, does not have solid accumulation At sidewall, selecting angle of inclination in the present embodiment is 45 degree.
The cross section of the described mouth 4 that gathers materials is the funnel-form being gradually reduced from top to bottom, described in gather materials mouth 4 upper end by fixing Frame is connected and described material bin 11 inwall, described in mouth 4 top that gathers materials be provided with at least two flash groove 5, gather materials mouth 4 center and discharging Mouthfuls 12 corresponding, in funnel-form, in the present embodiment, sidewall and the mouth 4 that gathers materials is 45 degree along plane angulation, and should Solving, mouth 4 sidewall slope angle of gathering materials determines through leading block 9 angulation also dependent on cable wire 8.Gather materials mouth 4 upper end, On flash groove 5 and the mouth 4 that gathers materials, between edge, part is fixedly connected with fixed support, and the fixed support other end is fixedly connected on material bin On 11 inwalls, fixing connected mode can use welding, and mouth 4 position that gathers materials is fixed by fixed support because gather materials mouth 4 with Anti-isolation passage 3, circulation isocon are sequentially connected with, thus divide fixing also being able to of the mouth 4 that gathers materials to anti-isolation passage 3, clematis stem Flow tube 1 position is fixed, and is being provided with the flash groove 5 along mouth 4 circumference of gathering materials along position, at this on the mouth 4 that gathers materials In embodiment, flash groove 5 quantity is six, is the most uniformly located at the mouth 4 that gathers materials, when material rises to certain position or material biography When the instantaneous delivery that send is bigger, material can temporarily flow out along flash groove 5, when material flows out along six flash grooves 5, can temporarily by point Stream plays the effect of anti-isolation, thus prevents material from flowing out along the mouth 4 that gathers materials, it is ensured that the effect of anti-isolation.
Wherein as in figure 2 it is shown, mouth 4 lower end that gathers materials is fixed with described anti-isolation passage 3, described anti-isolation passage 3 includes Sleeve the 33, second sleeve pipe the 32, the 3rd sleeve pipe 31, described first sleeve the 33, second sleeve pipe the 32, the 3rd sleeve pipe 31 diameter increases successively Big and mutual sheathing, in the present embodiment, anti-isolation passage 3 uses three grades of sleeve pipes, first sleeve 33 upper end to pass through with the mouth 4 that gathers materials Ring flange connects, when material is delivered to material bin 11, by the mouth 4 that gathers materials through anti-isolation passage 3, uniform by clematis stem isocon 1 Flow out, and along with the gradually accumulation of material bin 11 material, the position of clematis stem isocon 1 needs to be gradually increasing, in the present embodiment Three grades of sleeve pipes are by from first to the 3rd, 31 3 diameters of sleeve pipe increase and the sleeve pipe of mutual sheathing successively, thus realize anti-isolation Passage 3 flexible, and then realize clematis stem isocon 1 and remain at material top position.
The most as shown in Figure 2 and referring also to Fig. 3, there is extended laterally along sleeve pipe periphery bottom first sleeve 33 Boss 331 outside sleeve, outside outer second sleeve pipe 32 internal diameter and described first sleeve, boss 331 matches, described second set There is inside the second sleeve pipe extended inside along the second sleeve pipe 32 periphery towards the second sleeve pipe 32 boss 321 and along the bottom pipe 32 Two sleeve pipe 32 peripheries are towards boss 322 inside the second sleeve pipe of the extension outside the second sleeve pipe 32, convex inside described second sleeve pipe Platform 321 is provided with along the downward circular arc chamfering of the second sleeve pipe 32 inwall, boss inside the 3rd sleeve pipe 31 internal diameter and described second sleeve pipe 322 external diameters match, and inside described second sleeve pipe, boss 321 is equal with the development length of boss outside first sleeve 331, institute State and there is bottom the 3rd sleeve pipe 31 boss 311 inside the 3rd sleeve pipe, and inside described 3rd sleeve pipe, boss 311 is provided with along the 3rd set The circular arc chamfering that pipe 31 inwall is downward, the development length of boss 322 inside boss 311 and the second sleeve pipe inside described 3rd sleeve pipe Equal.
Three grades of sleeve pipes suit, and need to stretch up and down in material bin 11, wherein first sleeve the 33, second sleeve pipe 32, 3rd sleeve pipe 31 diameter increases successively, and institute is in case isolation passage 3 is during greatest length is shortened, before this inside the second sleeve pipe Boss 321 is pulled by cable wire 8 and moves up, boss 321 lower edge and the second sleeve pipe 32 lower edge inside the second sleeve pipe During contact, inside the 3rd sleeve pipe, boss 311 contacts with boss 322 inside the second sleeve pipe, by pulling on of cable wire 8, because Position-limiting action between boss 322 inside boss 311 and the second sleeve pipe inside 3rd sleeve pipe, thus drive the second sleeve pipe 32 upwards to move Dynamic, then inside the second sleeve pipe, boss the 321, second sleeve pipe 32 moves up simultaneously, boss 321 and first to the second sleeve pipe Outside of sleeve boss 331 contacts, and makes anti-isolation passage 3 minimize length, it is to be understood that wherein convex inside the 3rd sleeve pipe The development length of platform 311 can extend to boss 321 internal diameter inside the second sleeve pipe, and equally, inside the second sleeve pipe, boss 321 prolongs Elongation can extend to the internal diameter of boss inside first sleeve, in this development length, and boss 321 inside the second sleeve pipe, Inside two sleeve pipes, boss 321 can realize position-limiting action, in the present embodiment, boss 321 inside prioritizing selection the second sleeve pipe, Inside second sleeve pipe, boss 321 is equal with the development length of boss 331 outside the second sleeve pipe 32, first sleeve, and, the 3rd set Inside pipe, inside boss the 311, second sleeve pipe, boss 321 is provided with boss 321 inwall, the second sleeve pipe 32 inside the second sleeve pipe The circular arc chamfering that inwall is downward.
In the present embodiment, inside the second sleeve pipe, inside boss the 321, the 3rd sleeve pipe, the circular arc chamfering of boss 311 is being distinguished Contact inside the second sleeve pipe outside boss 322, first sleeve during boss 331, position-limiting action can be reached, and when material is from anti- When isolation passage 3 falls, it is possible to reduce material accumulation on the boss of inner side, dry powder and mortar isolation-proof device is made to make for a long time With rear, it is not necessary to anti-isolation passage 3 is cleared up, still can ensure that the flexible not by inner side boss material of anti-isolation passage 3 Piling up impact and normally use, it is to avoid device life-time service, inner side boss stacking material thickness increases, and makes anti-isolation passage 3 Shrinking not in place, and in this case, because of not up to contract by distance, coiler 7 may proceed to shrink cable wire 8, thus causes steel Rope 8 is broken.
The most referring also to Fig. 4, inside the second sleeve pipe, boss 321 is fixedly connected below clematis stem isocon 1, institute Stating clematis stem isocon 1 include the first body and be fixed on six shunt body 111 of described first body lower end, the described six roots of sensation is divided Flow tube body 111 is evenly distributed along the first body circumference, and described shunt body 111 is 45 degree with horizontal plane angle, described clematis stem The each body of isocon 1 is all fixed with described mozzle 2, and described mozzle 2 lower surface is provided with 3 and is available for the hole that material flows out, often Spacing between individual hole is equal, and each hole be directly equal to 1/5th of mozzle diameter of section in the present embodiment, for making Material energy dispersed and distributed from anti-isolation passage 3, in material bin 11, connects clematis stem isocon 1 below anti-isolation passage 3, This circulation isocon is welded and the first body bottom by six shunt body 111, and six shunt body 111 are along the first body circumference Being uniformly distributed, the center of circle, each two shunt body 111 cross section becomes 60 degree of angles, and each shunt body with the first body center of circle 111 can be 45 degree with the angle of horizontal plane, it is to be understood that shunt body 111 can control six with the angle of horizontal plane Reduction of fractions to a common denominator flow tube 1 is for the dispersion radius of dispersed material, and its angle is spent 40 to 60 all can realize this effect, in the present embodiment, Using 45 degree of angles, so that clematis stem isocon 1 is simple to manufacture, each shunt body 111 connects outside clematis stem isocon 1 to be had Mozzle 2, each mozzle 2 lower surface is provided with 3 and is available for the hole that material flows out, a diameter of mozzle 2 diameter of section in 3 holes 1/5th, so partial material flows out from the hole of mozzle lower surface, rest materials flows out from mozzle 2, so that thing Material uniformly flows out and is scattered in material bin.
As it is shown in figure 1, charging aperture is arranged over motor bin and coiler 7 in material bin 11, described motor 6 is placed in described electricity In cabin, described coiler 7 is symmetricly set in described motor bin both sides, and described motor bin sets towards the both sides of described coiler 7 The hole passed through for cable wire 8, described coiler 7 is had to be fixed on described by coiler horizontal stand 71 and coiler horizontal stand 72 Material bin 11 sidewall and upper wall, described motor 6 is connected with described coiler 7 by drive mechanism, and rotating for coiler 7 provides dynamic Power, in coiler 7, cable wire 8 boss 321 lower end inside the leading block 9 being fixed on mouth 4 lower end that gathers materials and the second sleeve pipe is solid Fixed connection, in the present embodiment, the flexible offer power that motor 6 is anti-isolation passage 3, motor 6 is placed in motor bin, material bin 11 top dead center position are provided with motor bin, and the opposite sides of motor bin is provided with coiler 7, and motor bin sets towards coiler 7 direction Having the hole passed through for cable wire 8, the position of coiler 7 is positioned at the both sides of motor bin, with the connected leading block 9 of mouth 4 that gathers materials same One perpendicular, motor drives coiler 7 to rotate by actuating device, so that coiler 7 tightens up or loosens cable wire 8, And then making anti-isolation passage 3 shrink or extend, coiler 7 is fixed with vertical rack by horizontal stand, the horizontal stand other end Being connected to material bin 11 sidewall, the vertical rack other end is connected to material bin 11 upper wall, to its fixation of coiler 7.
Further, described in mouth 4 lower end that gathers materials be provided with mouthful ring flange that gathers materials, the mouth 4 that gathers materials with anti-isolation passage 3 by gathering materials Mouth ring flange is connected with first sleeve ring flange 332 bolt, and described leading block 9 is fixedly connected on described first sleeve ring flange 332。
In the present embodiment, the connected mode of gather materials mouth 4 and anti-isolation passage 3 uses ring flange to be connected, and is gathering materials mouth 4 times End is provided with ring flange, and anti-isolation passage 3 first sleeve 33 upper end is provided with ring flange, and two ring flanges are bolted, and guides Pulley 9 is fixedly connected on mouthful ring flange that gathers materials, thus plays the guide effect to cable wire 8.
Further, in described anti-isolation passage 3, the 3rd sleeve pipe 31 lower end is provided with the 3rd sleeve pipe 31 ring flange, described clematis stem First body upper end described in isocon 1 is provided with the first body ring flange 113, and described anti-isolation is logical to be led to clematis stem isocon 1 road Cross the 3rd casing flange dish 312 to be connected with the first body ring flange 113 bolt.
In the present embodiment, anti-isolation passage 3 uses ring flange to be connected with the attachment of clematis stem isocon 1, anti-isolation In passage 3, inside the second sleeve pipe, boss 321 lower end is provided with the 3rd casing flange dish 312, the first body upper end in clematis stem isocon 1 Being provided with the first body ring flange 113, the 3rd casing flange dish 312 is bolted with the first body ring flange 113.
Further, the described each shunt body of clematis stem isocon 1 111 is all connected by flange plate bolt isocon, institute State isocon to extend to 11 weeks sides of described material bin.
Individual shunt body 111 is provided with shunt body ring flange 112, and isocon is connected end with shunt body 111 and is provided with shunting Pipe flange, shunt body ring flange 112 is bolted with isocon ring flange.
Further, described anti-isolation passage 3 internal diameter size is at 8 to 15 centimetres.
First sleeve 33 inside diameter ranges in anti-isolation passage 3 is at 8 to 15 centimetres, and this inside diameter ranges can make dry powder and mortar The trend scattered rapidly after entering anti-isolation passage 3 is suppressed, and the synchronization that can realize dry powder and mortar is fallen, and effectively prevents isolation existing As occurring, its internal diameter can be adjusted according to material bin 11 size, the inlet amount of charging aperture, under ensureing that material is smoothly Falling, in the case of not blocking, select minimum internal diameter size, prioritizing selection internal diameter size is at 10 lis in the present embodiment Rice.
Further, described discharging opening 12 is provided with Hand-operated butterfly valve switch, is used for being turned on and off described discharging opening 12.
Further, described drive mechanism is belt transmission.
In the present embodiment, motor 6 provides power to the work of coiler 7, and it carries out transmission by actuating unit, It is understood that belt transmission, chain drive all can realize this transmission, prioritizing selection belt transmission of the present invention, thus protect Demonstrate,prove the steady of transmission, and belt can reduce manufacturing cost, facilitate type selecting.
Further, described flash groove 5 is located at material bin 11 top, is that distributed locations is arranged along week side, each flash groove 5 Long-pending and not less than anti-isolation passage 3 cross-sectional area.
In the present embodiment, flash groove 5 position sets and more than the midpoint of mouth 4 height that gathers materials, flash groove 5 quantity is six, The most uniformly being located at the mouth 4 that gathers materials, when the instantaneous delivery that material rises to certain position or material transmission is bigger, material can be temporary Time flow out along flash groove 5, when material flows out along six flash grooves 5, the effect of anti-isolation can be played temporarily by shunting, thus prevent Material flows out along the mouth 4 that gathers materials, it is ensured that the effect of anti-isolation, the area of section of each flash groove 5 and should lead to not less than anti-isolation The area of section in road 3, thus ensure that material will not overflow from charging aperture, it is to be understood that the quantity of flash groove 5 is not solid Fixed, its quantity all can reach this effect not less than two.
Further, below described discharging opening 12, there is certain altitude on distance ground, and described material bin 11 is outside is provided with support Support.
Further, farther including materials vehicle 13, described materials vehicle 13 can pass in and out at discharging opening 12 underlying space, is used for Transported material
In the present embodiment, dry powder and mortar isolation-proof device is outside uses support to support, and leaves and be available for thing below its discharging opening 12 The space of truck 13 turnover, thus facilitate feeding and transport.
From the foregoing, it will be observed that the invention provides a kind of dry powder and mortar isolation-proof device, it achieves dry by anti-isolation passage 3 The anti-isolation of powder mortar, and owing to anti-isolation passage 3 is scalable, make material remain under certain altitude and fall within material bin In 11, it is ensured that anti-isolation effect.
Except as otherwise noted, numerical range herein not only includes the gamut in two end points, also includes containing In some subranges therein.
The a series of detailed description of those listed above is only for the feasibility embodiment of the present invention specifically Bright, and and be not used to limit the scope of the invention, all without departing from the skill of the present invention equivalent embodiments made of spirit or Change, as feature combination, split or repeat, should be included within the scope of the present invention.

Claims (10)

1. a dry powder and mortar isolation-proof device, it is characterised in that including: material bin (11), the mouth that gathers materials (4), anti-isolation passage (3), clematis stem isocon (1), mozzle (2), motor (6), coiler (7), cable wire (8) and leading block (9), described material bin (11) top is provided with a charging aperture, and material is by transporter (10) input extremely described material bin (11), described material bin (11) Bottom has the inclined-plane tilted from sidewall to center, and described inclined-plane and described sidewall place perpendicular angle are 45 degree, Be provided with discharging opening (12) below described inclined-plane, described in the gather materials cross section of mouth (4) be the funnel-form being gradually reduced from top to bottom, described Mouth (4) upper end that gathers materials is connected and described material bin (11) inwall by fixed support, described in mouth (4) top that gathers materials be provided with at least two Individual flash groove (5), described in mouth (4) lower end that gathers materials be fixed with described anti-isolation passage (3), described anti-isolation passage (3) includes Sleeve (33), the second sleeve pipe (32), the 3rd sleeve pipe (31), described first sleeve (33), the second sleeve pipe (32), the 3rd sleeve pipe (31) diameter increases and mutual sheathing successively, and described first sleeve (33) bottom has first extended laterally along sleeve pipe periphery Outside of sleeve boss (331), outside outer second sleeve pipe (32) internal diameter and described first sleeve, boss (331) matches, and described Two sleeve pipes (32) bottom has inside along the second sleeve pipe (32) periphery towards the second sleeve pipe of the second sleeve pipe (32) inner side extension convex Platform (321) and along the second sleeve pipe (32) periphery towards the second sleeve pipe (32) outside extension the second sleeve pipe inside boss (322), Inside described second sleeve pipe, boss (321) is provided with along the downward circular arc chamfering of the second sleeve pipe (32) inwall, the 3rd sleeve pipe (31) Inside footpath and described second sleeve pipe, boss (322) external diameter matches, inside described second sleeve pipe boss (321) with and first sleeve The development length in outside boss (331) is equal, and described 3rd sleeve pipe (31) bottom has boss (311) inside the 3rd sleeve pipe, and Inside described 3rd sleeve pipe, boss (311) is provided with along the downward circular arc chamfering of the 3rd sleeve pipe (31) inwall, in described 3rd sleeve pipe Side boss (311) is equal with the development length of boss (322) inside the second sleeve pipe, and described 3rd sleeve pipe (31) is fixedly connected below six Reduction of fractions to a common denominator flow tube (1), described clematis stem isocon (1) includes the first body and is fixed on six isocons of described first body lower end Body (111), described six shunt body (111) are evenly distributed along the first body circumference, and described shunt body (111) and level Face angle is 45 degree, and each body of described clematis stem isocon (1) is all fixed with described mozzle (2), described mozzle (2) lower surface Being provided with 3 and be available for the holes that material flows out, the spacing between each hole is equal, and each hole be directly equal to mozzle diameter of section 1/5th, in described material bin (11), charging aperture is arranged over motor bin and coiler (7), and described motor (6) is as described In motor bin, described coiler (7) is symmetricly set in described motor bin both sides, and described motor bin is towards described coiler (7) Both sides are provided with the hole passed through for cable wire (8), and described coiler (7) passes through coiler horizontal stand (71) and coiler horizontal stand (72) being fixed on described material bin (11) sidewall and upper wall, described motor (6) is by drive mechanism with described coiler (7) even Connecing, rotating for coiler provides power, in coiler cable wire (8) through being fixed on the leading block (9) of the mouth that gathers materials (4) lower end with 3rd sleeve pipe (31) lower end is fixing to be connected.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that described in mouth (4) lower end that gathers materials be provided with Gather materials a mouthful ring flange, and the mouth that gathers materials (4) and anti-isolation passage (3) are by mouthful ring flange and first sleeve ring flange 332 bolt of gathering materials Connecting, described leading block (9) is fixedly connected on described first sleeve ring flange 332.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that in described anti-isolation passage (3) Three sleeve pipes (31) lower end is provided with the 3rd casing flange dish (312), and described in described clematis stem isocon (1), the first body upper end is provided with First body ring flange (113), described anti-isolation is logical passes through the 3rd casing flange dish (312) and first with clematis stem isocon (1) Body ring flange (113) bolt connects.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that each point of described clematis stem isocon (1) Flow tube body (111) is all connected by flange plate bolt isocon, and described isocon extends to described material bin (11) week side.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that in described anti-isolation passage (3) Sleeve internal diameter size is at 8 to 15 centimetres.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that described discharging opening (12) is provided with hands Dynamic butterfly switch, is used for being turned on and off described discharging opening (12).
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that described drive mechanism is that belt passes Dynamic.
Dry powder and mortar isolation-proof device the most according to claim 1, it is characterised in that described flash groove (5) is located at material Storehouse (11) top, is that distributed locations is arranged along week side, each flash groove (5) area and transversal not less than anti-isolation passage (3) Face area.
Dry powder and mortar isolation-proof device the most according to any one of claim 1 to 8, it is characterised in that described discharging opening (12) there is certain altitude on distance ground, lower section, and the outside support that is provided with of described material bin (11) supports.
Dry powder and mortar isolation-proof device the most according to claim 9, it is characterised in that include materials vehicle (13), described thing Truck (13) can pass in and out at discharging opening (12) underlying space, for transported material.
CN201610734340.6A 2016-08-28 2016-08-28 A kind of dry powder and mortar isolation-proof device Active CN106142354B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610734340.6A CN106142354B (en) 2016-08-28 2016-08-28 A kind of dry powder and mortar isolation-proof device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610734340.6A CN106142354B (en) 2016-08-28 2016-08-28 A kind of dry powder and mortar isolation-proof device

Publications (2)

Publication Number Publication Date
CN106142354A true CN106142354A (en) 2016-11-23
CN106142354B CN106142354B (en) 2019-01-04

Family

ID=57343112

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610734340.6A Active CN106142354B (en) 2016-08-28 2016-08-28 A kind of dry powder and mortar isolation-proof device

Country Status (1)

Country Link
CN (1) CN106142354B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106768126A (en) * 2016-12-29 2017-05-31 新疆熙泰石油装备有限公司 Opposite-flushing type collection liquid distributor
CN109275421A (en) * 2018-11-14 2019-01-29 山东商务职业学院 A kind of agricultural robot for picking
CN113511522A (en) * 2021-07-13 2021-10-19 秦皇岛海洋食品有限公司 Material storage device

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3130011A1 (en) * 1981-07-30 1983-02-17 Tubag Trass-, Zement- Und Steinwerke Gmbh, 5473 Kruft Transportable storage container for dry mortar
US4399846A (en) * 1980-04-18 1983-08-23 Petroleo Brasileiro S.A. - Petrobras Mechanism for granulometric distribution of solid particles
SU1479369A1 (en) * 1987-06-22 1989-05-15 Иркутский филиал Всесоюзного научно-исследовательского и проектного института алюминиевой, магниевой и электродной промышленности Hopper for loose materials
CN103523408A (en) * 2013-10-24 2014-01-22 徐州天地重型机械制造有限公司 Anti-separation dry sand silo and method
CN104670740A (en) * 2013-11-27 2015-06-03 贵阳铝镁设计研究院有限公司 Method for preventing material segregation and stock bin structure
CN105645138A (en) * 2016-02-26 2016-06-08 杨志明 Anti-separation device for dry-mixed mortar bin

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4399846A (en) * 1980-04-18 1983-08-23 Petroleo Brasileiro S.A. - Petrobras Mechanism for granulometric distribution of solid particles
DE3130011A1 (en) * 1981-07-30 1983-02-17 Tubag Trass-, Zement- Und Steinwerke Gmbh, 5473 Kruft Transportable storage container for dry mortar
SU1479369A1 (en) * 1987-06-22 1989-05-15 Иркутский филиал Всесоюзного научно-исследовательского и проектного института алюминиевой, магниевой и электродной промышленности Hopper for loose materials
CN103523408A (en) * 2013-10-24 2014-01-22 徐州天地重型机械制造有限公司 Anti-separation dry sand silo and method
CN104670740A (en) * 2013-11-27 2015-06-03 贵阳铝镁设计研究院有限公司 Method for preventing material segregation and stock bin structure
CN105645138A (en) * 2016-02-26 2016-06-08 杨志明 Anti-separation device for dry-mixed mortar bin

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106768126A (en) * 2016-12-29 2017-05-31 新疆熙泰石油装备有限公司 Opposite-flushing type collection liquid distributor
CN109275421A (en) * 2018-11-14 2019-01-29 山东商务职业学院 A kind of agricultural robot for picking
CN113511522A (en) * 2021-07-13 2021-10-19 秦皇岛海洋食品有限公司 Material storage device

Also Published As

Publication number Publication date
CN106142354B (en) 2019-01-04

Similar Documents

Publication Publication Date Title
CN106276306A (en) A kind of dry powder and mortar isolation-proof device
CN106142354A (en) A kind of dry powder and mortar isolation-proof device
FI90852B (en) Apparatus for loading a silo vehicle or the like with leaking bulk material
CN201367752Y (en) Multifunctional large powder body storeroom
CN209739832U (en) Feed raw material's branch material storage device
CN207520955U (en) A kind of powder mix conveying appliance
US20130149081A1 (en) Method and apparatus for efficiently filling and unloading flat and hopper bottom grain bins from the bottom using one conveyor
CN106315056A (en) Anti-isolation device for dry-mixed mortar
CN203598909U (en) Corn feeding production line for feed production
CN109092183B (en) Rice mixed planting device
CN106275919A (en) A kind of dry powder and mortar isolation-proof device
CN202427376U (en) Vertical circular sample mixing equipment
CN206731499U (en) Grain separating machine
CN216753162U (en) Rabbit is bred and feeds and eats system
CN104528212B (en) Storage silo
CN211944627U (en) Special dust suppression bucket of grain
CN108382620B (en) Fish ball split-flow multi-station weighing integrated device and use method thereof
CN106081672A (en) A kind of bulk cargo is closed a position machine
CN213678935U (en) A material loading improves device for saggar raw materials
CN109675458A (en) A kind of agricultural production fertilizer spice equipment
CN205090408U (en) Bear and storehouse at bottom of feeder
CN214778120U (en) Grain storage is with entering storehouse buffering dispenser device
KR100840756B1 (en) Blending silo
CN220411586U (en) Device for preventing fodder layering in material tower
CN209905828U (en) Claw-shaped three-way output trough with sorting structure

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
TA01 Transfer of patent application right

Effective date of registration: 20181114

Address after: 010000 No. 33 Guangming Street, Xincheng District, Hohhot City, Inner Mongolia Autonomous Region

Applicant after: Inner Mongolia Third Construction Engineering Co., Ltd.

Address before: 430065 3 Huang Jia Hu West Road, Hongshan District, Wuhan, Hubei.

Applicant before: Dong Yalun

TA01 Transfer of patent application right
GR01 Patent grant
GR01 Patent grant