CN107442263A - A kind of washed-out sand sand sifter - Google Patents
A kind of washed-out sand sand sifter Download PDFInfo
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- CN107442263A CN107442263A CN201710703648.9A CN201710703648A CN107442263A CN 107442263 A CN107442263 A CN 107442263A CN 201710703648 A CN201710703648 A CN 201710703648A CN 107442263 A CN107442263 A CN 107442263A
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- cylinder
- sifter
- sand
- washed
- screening
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B03—SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
- B03B—SEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
- B03B5/00—Washing granular, powdered or lumpy materials; Wet separating
- B03B5/48—Washing granular, powdered or lumpy materials; Wet separating by mechanical classifiers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B03—SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
- B03B—SEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
- B03B11/00—Feed or discharge devices integral with washing or wet-separating equipment
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B03—SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
- B03B—SEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
- B03B7/00—Combinations of wet processes or apparatus with other processes or apparatus, e.g. for dressing ores or garbage
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- Separation Of Solids By Using Liquids Or Pneumatic Power (AREA)
Abstract
The invention provides a kind of washed-out sand sand sifter, including motor, reductor, shaft coupling, cylinder and the main shaft being arranged among inner barrel, described motor connection reductor, described reductor connection shaft coupling, described shaft coupling connection main shaft, its innovative point are:Screening guider is provided with the cylinder, the screening guider is arranged on barrel tip portion;In the middle part of the cylinder end and end afterbody is separated out two split cavities;The screening guider includes guide cylinder and sifter, and the guide cylinder is arranged on directly over sifter, and both do not contact;The guide cylinder includes the unclosed vertical cylinder in both ends, and the vertical cylinder is provided with sandstone circulation helical system at the unclosed end in barrel tip portion.
Description
Technical field
The present invention relates to sand washer technical field, more particularly to a kind of washed-out sand sand sifter.
Background technology
Sand washer is the washing appliance of artificial sand (including natural sand).Sand washer be widely used in sandstone field, mine, building materials,
To the washing of material in the industries such as traffic, chemical industry, water conservancy and hydropower, concrete mixing plant.Sand washer can be divided into two types:XS types
With XL types.It can remove the impurity on covering sandstone surface, while destroy the steam layer of cladding sand grains, in favor of dehydration, play height
Imitate washed-out sand cleaning action.When XL types sand washer works, motor is slow by impeller after V-belt, reductor, The gear deceleration
Rotate, sandstone has feeder trough to enter in washing trough, is rolled on main shaft under the drive of impeller, and mutual phase grinding, removes covering sandstone
The impurity on surface, while the steam layer of cladding sand grains is destroyed, in favor of dehydration;Add water simultaneously, form powerful current, in time will be miscellaneous
Matter and the small foreign matter of proportion are taken away, and are discharged from overfall washing trough, complete cleaning action.Clean sandstone is taken away by blade, most
Sandstone pours into blow tank from the impeller of rotation afterwards, completes the cleaning action of sandstone.
Such as Chinese patent CN205253328U discloses a kind of twin shaft sand washer, it is characterised in that:Including mixing
Room, filter chamber and base;The mixing ceiling end is provided with charging aperture and water inlet, and the interior that mixes is provided with first
Stirring rod and the second stirring rod, first stirring rod are provided with the first impeller, and second stirring rod is provided with the second impeller,
One end of first stirring rod is connected with the first variable-frequency motor, one end of second stirring rod and the second variable-frequency motor phase
Even, first variable-frequency motor and second variable-frequency motor be positioned at the mixing room right hand external, the filter chamber and
The mixing room is connected by pipeline, and the filter chamber bottom is provided with discharging opening and delivery port, and the base is provided with set
Cylinder, the sleeve are provided with vibration motor, and the sleeve is connected with room is mixed by the first cross bar, the sleeve and filtering
Room is connected by the second cross bar.It is oriented in the technical scheme by blade, easily increases the degree of injury of blade, reduction uses the longevity
Life.
Such as Chinese patent CN104841548A discloses a kind of high intensity sand washer again, it is characterised in that:Incline including one
A pair of the main shafts in washing trough and washing trough tiltedly set, the washing trough is curved, and the top of the side of its long axis direction has one
Charging aperture and an entery and delivery port, another side bottom have a discharging opening;The pair of main axis parallel simultaneously prolongs along the axial direction of washing trough
Setting is stretched, is evenly distributed with some blades on its excircle in the axial direction;The pair of main shaft is by the outside of washing trough
Reductor drives its rotation, and then to being ground cleaning in washing trough;Uniformly divide in a ring on the end face of the blade side
It is furnished with some arc polyurethane lining boards.The technical scheme discloses to be oriented to using blade, in order to avoid blade injury, in leaf
Some arc polyurethane lining boards are distributed with piece, but the thinking that the technical scheme is mainly oriented to using blade does not become, still
Blade, which is oriented to, can also bring a problem, that is, can not be sieved and wash cycles, again resulted in sandstone cleaning process
Sandstone cleaning performance is bad.
The content of the invention
Screening and wash cycles problem can not be carried out present in prior art in sandstone cleaning process to overcome, the present invention
Provide a kind of washed-out sand sand sifter.
The technical solution adopted by the present invention is:A kind of washed-out sand sand sifter, including motor, reductor, shaft coupling, cylinder with
And the main shaft among inner barrel is arranged on, described motor connection reductor, described reductor connects shaft coupling, described
Shaft coupling connects main shaft, and its innovative point is:Screening guider is provided with the cylinder, the screening guider is arranged on
Barrel tip portion;In the middle part of the cylinder end and end afterbody is separated out two split cavities;The screening guider includes being oriented to
Cylinder and sifter, the guide cylinder are arranged on directly over sifter, and both do not contact;The guide cylinder does not seal including both ends
The vertical cylinder closed, the vertical cylinder are provided with sandstone circulation helical system at the unclosed end in barrel tip portion.
In some embodiments, shunting guide plate is additionally provided between the sifter and guide cylinder, the shunting is led
Guide cylinder both sides are arranged on to plate, described shunting guide plate one end is movably fixed on guide cylinder lateral wall, the other end and screening
Device surface contacts.
In some embodiments, the sifter is sieving plate, and the sieving plate is in integrally triangle arced configuration, described
The both ends screening aperture that triangle arced configuration is split is different;The sieving plate of the triangle arced configuration is by triangle top positioned at guiding
Cylinder centre position, realize uniformly screening.
In some embodiments, aperture is provided with two kinds of sizes on the plate of the sieving plate both sides:A kind of aperture is
0.1-0.2nm;Another aperture is 0.2-0.5cm.
In some embodiments, a main shaft is provided with two split cavities, in two split cavities
Between be additionally provided with impurity chamber, the width of the impurity chamber is equal with the width of sieving plate.
In some embodiments, two split cavity and impurity chambers are provided with outlet, the split cavity
Outlet be arranged on cylinder side;The outlet of the impurity chamber is arranged on cylinder body bottom, and outlet is provided with the outlet
Lid.
In some embodiments, water flow pipes are additionally provided with the cylinder, the water flow pipes are arranged on cylinder middle and lower part,
And enter in split cavity, for washing.
In some embodiments, the sandstone circulation helical system includes three sections of pipes of screw feeding and material storage tube, described
Three sections of pipe upper ends of screw feeding connect material storage tubes, and feeding motor is also associated with described three sections of pipes of screw feeding;The material storage tube
It is arranged on above guide cylinder.
In some embodiments, described three sections of pipes of screw feeding include one-level screw conveying pipe, deuterostrophies feed pipe
With three-level screw conveying pipe, it is integrally formed between every grade of screw conveying pipe;First screw conveying pipe is located at bottom,
Three-level screw conveying pipe is located at the top.
In some embodiments, the one-level screw conveying pipe, deuterostrophies feed pipe and three-level screw conveying pipe knot
Structure is identical, is conveyor screw shape feed pipe.
Compared with prior art, the beneficial effects of the invention are as follows:
(1) washed-out sand sand sifter of the invention, screening guider are mainly used for first being oriented to sandstone to be cleaned
Into guide cylinder 61, unified screening is then carried out, goes deimpurity sandstone to respectively fall in split cavity after screening, in addition, this
Two can be carried out using the circulatory system to sieving some not clean enough split cavity by inventing the sandstone circulation helical system set
It is secondary, sieve three times, improve screening effect, and washed-out sand process is simple, significant effect.
(2) washed-out sand sand sifter of the invention, shunt guide plate has concentrated a variety of effects, and first, shunting guide plate is more
The space between guide cylinder and sifter has been mended, not sieved sandstone has been avoided and falls directly into split cavity, improve sandstone matter
Amount and screening efficiency, secondly, shunting guide plate of the invention is movably arranged on guide cylinder lateral wall, and mobilizable scope is determined
Determine to fall the size of sandstone, reached the purpose of screening sandstone size.
(3) washed-out sand sand sifter of the invention, it is contemplated that the aperture of the impurity such as soil, concrete and mud grain is not yet
Together, therefore, it is provided with the screening hole of different pore size on sieving plate, different impurities is screened out with this by different level, using by different level
Screening, the classification processing for later stage impurity have very big benefit, are advantageous to the shape such as resource reutilization or impurity reprocessing
Formula.
(4) washed-out sand sand sifter of the invention, sandstone total amount is divided into two, while sets main shaft 4, while is utilized same
Motor is driven, identical in washing intensity, and under conditions of the sandstone amount for needing to wash reduces half, water can be greatly improved
Effect is washed, more fully, between sandstone mutually phase grinding is also more abundant for upset.
Brief description of the drawings
Fig. 1 is overall structure diagram of the present invention;
Fig. 2 is enlarged drawing at Fig. 1 of the present invention A;
Fig. 3 is the screening plate structure schematic diagram in one embodiment of the present invention;
Fig. 4 is the screening plate structure schematic diagram in another embodiment of the present invention;
Fig. 5 is the screening plate structure schematic diagram in the third embodiment of the invention;
Fig. 6 is sandstone circulation helical system structure diagram of the present invention.
Embodiment
Below in conjunction with drawings and examples, the present invention will be described in further detail.It is it should be appreciated that described herein
Specific embodiment only to explain the present invention, is not intended to limit the present invention.
The present invention discloses a kind of washed-out sand sand sifter, as shown in Figure 1:From top to bottom successively include motor 1, reductor 2,
Shaft coupling 3, cylinder 5 and the main shaft 4 for being arranged on the bosom of cylinder 5, described motor 1 connection reductor 2, described deceleration
Machine 2 connects shaft coupling 3, and described shaft coupling 3 connects main shaft 4, as shown in Figure 2:Screening is provided with the cylinder 5 and is oriented to dress
Put, the screening guider is arranged on the end head of cylinder 5;In the middle part of the end of cylinder 5 and end afterbody is separated out two split cavities,
Respectively left split cavity 51 and right split cavity 52;As shown in Figure 2:The screening guider includes guide cylinder 61 and screening
Device 62, the guide cylinder 61 are arranged on directly over sifter 62, and both do not contact;The guide cylinder 61 does not seal including both ends
The vertical cylinder closed, the vertical cylinder are provided with sandstone circulation helical system at the unclosed end of the end head of cylinder 5.The present invention
In, screening guider is mainly used for first by sandstone to be cleaned be directed in guide cylinder 61, then carries out unified screening,
Deimpurity sandstone is gone to respectively fall in split cavity (left split cavity 51 or right split cavity 52) after screening, in addition, this
Two can be carried out using the circulatory system to sieving some not clean enough split cavity by inventing the sandstone circulation helical system set
It is secondary, sieve three times, improve screening effect, and washed-out sand process is simple, significant effect.
As it is further preferred that the present invention this embodiment in, as shown in Figure 2:The sifter 62 is with being oriented to
Shunting guide plate 63 is additionally provided between cylinder 61, the shunting guide plate 63 is arranged on the both sides of guide cylinder 61, and the shunting is oriented to
The one end of plate 63 is movably fixed on the lateral wall of guide cylinder 61, and the other end contacts with the surface of sifter 62.In the present invention, shunting is led
A variety of effects are concentrated to plate 63, first, shunting guide plate 63 compensate for the space between guide cylinder 61 and sifter 62, keep away
Not sieved sandstone is exempted to fall directly into split cavity, has improved sandstone quality and screening efficiency, secondly, shunting of the invention is led
To plate 63 it is movably arranged on the lateral wall of guide cylinder 61, mobilizable scope determines the size for the sandstone that can fall, and reaches sieve
The purpose of sub-sand stone size.For example, in the present invention, shunting guide plate 63 is movably fixed on the lateral wall of guide cylinder 61, and energy
The angle of enough activities is 10-45 °.In screening process, in first time period, first control shunting guide plate 63 is capable of activity
Angle is 10 °, then the thinner sandstone in aperture is introduced into split cavity (left split cavity 51 or right split cavity 52)
Water-filling is washed, and is washed to the no longer lower backwardness of sandstone;Then, in second time period, regulation shunting guide plate 63 is capable of the angle of activity
Spend for 20 °, then the medium sandstone in aperture, which enters in split cavity (left split cavity 51 or right split cavity 52), enters water-filling
Wash, be washed to the no longer lower backwardness of sandstone;Then, within the 3rd period, the angle that regulation shunting guide plate 63 is capable of activity is
30 °, then the thicker sandstone of aperture ratio, which enters in split cavity (left split cavity 51 or right split cavity 52), enters water-filling
Wash, be washed to the no longer lower backwardness of sandstone;Then, within the 4th period, the angle that regulation shunting guide plate 63 is capable of activity is
45 °, then the maximum sandstone in aperture, which enters in split cavity (left split cavity 51 or right split cavity 52), to be washed, water
It is washed till the no longer lower backwardness of sandstone;Screening terminates.Therefore, the angle that each stage of guide plate 63 is shunted using the present invention is set,
The sandstone of different pore size in 4 can be screened out, screening efficiency is high, is adapted to the various demand operations of the marketization.Certainly, if need not
The carefully size of screening sandstone, directly can be by the angular adjustment of shunting guide plate 63 to maximum, and now, all removes by solarization
The sandstone of impurity can carry out the washing that split cavity (left split cavity 51 or right split cavity 52) carries out second step.This
Invention flexible design degree is high, significant effect.
Specifically, in this embodiment party's mode of the present invention, structure qualification is carried out to sifter 62, to adapt to the present invention
Inventive concept.As shown in Figure 2:The sifter 62 is sieving plate, and the sieving plate is in integrally triangle arced configuration, described three
The both sides screening aperture that angle arced configuration is split can be arranged to identical, can also be arranged to difference;The triangle arced configuration
Sieving plate triangle top is located at the centre position of guide cylinder 61, realize uniformly screening.In the present invention, the main work of sieving plate
With being to screen out the impurity in sandstone, such as the impurity such as soil, sand drift soil, mud grain, concrete surface may be caused to form weakness
Layer, reduce concrete strength.And the particle diameter of these impurity is significantly less than sandstone, therefore, in the present invention, it is necessary to first with screening
Plate carries out screening removing.In the present invention, it is contemplated that the aperture of the impurity such as soil, concrete and mud grain is also different, because
This, be provided with the screening hole of different pore size on sieving plate, different impurities is screened out by different level with this, it is of course also possible to directly
Set large aperture to sieve hole, screen out impurity is hybrid.As it is further preferred that in this embodiment of the invention
In, using sieving by different level, aperture is provided with two kinds on the plate of the sieving plate both sides:One kind screening hole aperture is 0.1-
0.2nm;The aperture in another kind screening hole is 0.2-0.5cm.In the present invention, it is husky to be mainly used to screening for 0.1-0.2nm aperture
Stream soil, 0.2-0.5cm aperture are used for sieving the impurity in slightly larger aperture, such as mud grain and soil grain etc., by different level
Screening, the classification processing for later stage impurity has very big benefit, is advantageous to resource reutilization or impurity and reprocesses etc.
Form.
In the present invention,, can be to the knot of sieving plate in this embodiment of the present invention in order to preferably be sieved
Structure optimizes, as shown in figure 3, sieving plate is straight panel structure, sieving plate includes two straight panels 620, is all provided with two straight panels 620
It is equipped with screening hole 621;Two straight panels 620 are integrally formed in triangle arced configuration, and two kinds are provided with two straight panels 620
Sieve the aperture of hole 621:One kind screening aperture of hole 621 is 0.1-0.2nm;The aperture in another kind screening hole 621 is 0.2-0.5cm.
As it is further preferred that the angle of inclination a of two straight panels 620 between 40-45 degree, test proves that, as angle of inclination a
When being arranged between 40-45 degree, sandstone slides smooth, will not cause congestion while can also carry out sufficiently sieving impurity.When inclining
When rake angle a sets excessive, the gradient of straight panel 620 is bigger, and slip velocity is accelerated, and can influence the time that impurity sieves in straight panel 620
It is too short, cause screening impurity incomplete, be unfavorable for the washing in later stage;When angle of inclination a set it is too small when, the gradient of straight panel 620 compared with
Small, sandstone tumbled slowly, was screened out although sufficient impurity can be carried out, whole process is excessively slow, easily causes sandstone
Whereabouts congestion, without time efficiency.As it is further preferred that as shown in figure 4, sieving plate can include two arch sheets 622,
Arch upward to form arced configuration upwards among the arch sheet 622, the height h that arches upward is 5-8cm;The inclination angle of the arch sheet
B is spent between 30-35 degree.In the present invention, setting is arched upward, and is mainly made in view of height of the sandstone to be cleaned in region of arching upward
Under, sandstone acts on by " climbing ", it is easier to will be mixed in impurity therein and screen out, be needed in order to avoid sandstone rolls
More power conversions, it is 5-8cm to set the height h that arches upward, and such height, sandstone and other impurities quality can be utilized different,
The speed easily rolled by the obtained speed kinetic energy that falls using the potential energy and part kinetic energy of conversion is also different, rolls speed
After degree slows down, by arching upward, region can sufficiently be sieved.Further, it is contemplated that the height that arches upward subtracts to a certain extent
Slow sandstone tumbles speed, therefore is necessarily compensated on angle of inclination, by proving, angle of inclination b be 30-35 degree it
Between, sandstone landing is smooth, will not cause congestion while can also carry out sufficiently sieving impurity.As it is further preferred that at this
In another embodiment of invention, as shown in Figure 5:Sieving plate includes two lower arch sheets 623, among the lower arch sheet 623
Depression forms lower arch shape and structure downwards, and the lower arch depth L is 5-8cm, such depth, sandstone can be utilized miscellaneous with other
Matter quality is different, the speed easily rolled by the obtained speed kinetic energy that falls using the potential energy and part kinetic energy of conversion
Difference, after rolling speed is accelerated, region of being arched upward under can sufficiently be sieved.Further, it is contemplated that under arch upward depth
Degree accelerates the speed that tumbles of sandstone to a certain extent, therefore is necessarily compensated on angle of inclination, by proving, tilts
Between 50-60 degree, sandstone slides smooth angle c.
As it is further preferred that in this embodiment of the present invention, one is provided with two split cavities
Main shaft 4, the setting of main shaft 4 are mainly stirred to the sandstone in split cavity, overturn, mutual phase grinding between sandstone, favorably
Impurity in removing covering sandstone surface, while the steam layer of cladding sand grains is destroyed, in favor of dehydration.It is provided with two disengagement chambers
Room, and a main shaft 4 is respectively provided with each split cavity, primary concern is that, huge sandstone amount is carried out in screening
It is scattered, for example, in the present invention, sandstone total amount is divided into two, while main shaft 4 is set, while driven using same motor
It is dynamic, it is identical in washing intensity, and under conditions of the sandstone amount for needing to wash reduces half, water washing effect can be greatly improved, is turned over
Turn more fully, mutually phase grinding is also more abundant between sandstone.
As it is further preferred that the present invention this embodiment in, as shown in Figure 1:In two split cavities
Between be additionally provided with impurity chamber 7, the width of the impurity chamber 7 is equal with the width of sieving plate.In the present invention, impurity chamber 7 is increased
Setting, the position space between positive two split cavities of good utilisation does compensation making, on the one hand can sieve impurity to miscellaneous
In matter chamber 7, avoid environmental pollution and facilitate later stage impurity treatment, on the other hand can effectively utilize cylinder volume, ingenious stroke
Divide space, be advantageous to screening, the raising of water washing effect.Further, in the present invention, two split cavities and impurity
Chamber 7 is provided with outlet, as shown in Figure 1:The material outlet 510 of left split cavity 51 is arranged on the left bottom of cylinder 5;Right separation
The material outlet 520 of chamber 52 is arranged on the bottom right side of cylinder 5;The impurities outlet 70 of impurity chamber 7 is arranged on 5 middle bottom of cylinder
Portion;Outlet cap is provided with each outlet;Overfall washing trough is additionally provided with described two split cavities (in figure not
Show), discharged for current.The outlet of each chamber is arranged on different zones, is independent of each other, for example, some split cavity
, can be by its corresponding outlet discharge after completing washing work, can be by impurity chamber 7 if impurity intracavitary impurity sieves overfill
Separate outlet ports are discharged, and avoid polluting.
Certainly, in water-washing process, the addition of current is essential, as the preferred embodiment of the present invention, Ke Yi
Water flow pipes 8 are provided with the cylinder, the water flow pipes 8 are arranged on the middle and lower part of cylinder 5, and enter in split cavity, directly use
In washing.Avoid current from passing through long transport channel, cause water flow impact pressure to diminish, in the present invention, can be formed powerful
Current, the small foreign matter of remaining partial impurities and proportion is taken away in time, and discharged from overfall washing trough, complete cleaning action.
As the present invention another inventive point, the present invention this embodiment in, as shown in Figure 6:The sandstone follows
Ring spiral system includes three sections of pipes of screw feeding and material storage tube 90, described three sections of pipe upper end connection material storage tubes 90 of screw feeding, institute
State and be also associated with feeding motor 91 on three sections of pipes of screw feeding;The material storage tube 90 is arranged on the top of guide cylinder 61.Specifically, institute
Stating three sections of pipes of screw feeding includes one-level screw conveying pipe 920, deuterostrophies feed pipe 921 and three-level screw conveying pipe 922, institute
State and be integrally formed between every grade of screw conveying pipe;The one-level screw conveying pipe 920 is located at bottom, three-level screw conveying pipe
922 are located at the top.As it is further preferred that the one-level screw conveying pipe 920, deuterostrophies feed pipe 921 and three-level
The structure of screw conveying pipe 922 is identical, is conveyor screw shape feed pipe;The bottom of one-level screw conveying pipe 920 is provided with suction
Stone mouth 923.In the present invention, sandstone circulation helical system is set, can be secondary to needing the sandstone for carrying out circulating water wash to carry out
Washing.As certain batch of sandstone impurity is especially more, by normally once screening is washed, it is not enough to clean up, then pass through
The sandstone for needing secondary cleaning is delivered to material storage tube by circulation helical system by three sections of pipes of screw feeding, and material storage tube bottom is set
There is stone outlet hole.The feeding motor can select Vertical Vibrating motivation, so that sandstone material carries out vertical transport.
Certainly, when need not carry out carrying out secondary cleaning to sandstone, sandstone circulation helical system pair can be utilized
Conveyed after the suction one-level screw conveying pipe of new sandstone to be cleaned, so as to carry out a series of screening and washing work.
The preferred embodiments of the present invention have shown and described in described above, as previously described, it should be understood that the present invention is not office
Be limited to form disclosed herein, be not to be taken as the exclusion to other embodiment, and available for various other combinations, modification and
Environment, and can be changed in the scope of the invention is set forth herein by the technology or knowledge of above-mentioned teaching or association area
It is dynamic., then all should be appended by the present invention and the change and change that those skilled in the art are carried out do not depart from the spirit and scope of the present invention
In scope of the claims.
Claims (10)
1. a kind of washed-out sand sand sifter, including motor (1), reductor (2), shaft coupling (3), cylinder (5) and it is arranged on cylinder
(5) main shaft (4) of bosom, described motor (1) connection reductor (2), described reductor (2) connection shaft coupling (3),
Described shaft coupling (3) connection main shaft (4), the cylinder (5) is interior to be provided with screening guider, screening guider installation
In cylinder (5) end head;Cylinder (5) end middle part and end afterbody are separated out two split cavities;The screening guider
Including guide cylinder (61) and sifter (62), the guide cylinder (61) is arranged on directly over sifter (62), and both do not contact;
The guide cylinder (61) includes the unclosed vertical cylinder in both ends, it is characterised in that:The sifter (62) is sieving plate, described
Sieving plate is straight panel structure, and sieving plate includes two straight panels (620), and screening hole (621) is provided with two straight panels (620);
Two straight panels (620) are integrally formed in triangle arced configuration.
2. washed-out sand sand sifter according to claim 1, it is characterised in that:It is provided with two straight panels (620)
Two kinds of screening hole (621) apertures:One kind screening hole (621) aperture is 0.1-0.2nm;The aperture of another kind screening hole (621) is
0.2-0.5cm。
3. washed-out sand sand sifter according to claim 1, it is characterised in that:The vertical cylinder close to barrel tip portion not
Sandstone circulation helical system is provided with blind end.
4. washed-out sand sand sifter according to claim 1, it is characterised in that:The sifter (62) and guide cylinder (61) it
Between be additionally provided with shunting guide plate (63), the shunting guide plate (63) is arranged on guide cylinder (61) both sides, and the shunting is oriented to
Plate (63) one end is movably fixed on guide cylinder (61) lateral wall, and the other end contacts with sifter (62) surface.
5. washed-out sand sand sifter according to claim 1, it is characterised in that:One is provided with two split cavities
Main shaft (4), impurity chamber (7), the width of the impurity chamber (7) and the width of sieving plate are additionally provided among two split cavities
Degree is equivalent.
6. washed-out sand sand sifter according to claim 5, it is characterised in that:Two split cavity and impurity chambers
(7) outlet is provided with, the outlet of the split cavity is arranged on cylinder (5) side;The outlet of the impurity chamber (7) is set
In cylinder (5) bottom, outlet cap is provided with the outlet.
7. washed-out sand sand sifter according to claim 1, it is characterised in that:Water flow pipes are additionally provided with the cylinder (5)
(8), the water flow pipes (8) are arranged on cylinder (5) middle and lower part, and enter in split cavity, for washing.
8. washed-out sand sand sifter according to claim 1, it is characterised in that:The sandstone circulation helical system includes spiral
Three sections of pipes of feeding and material storage tube (90), described three sections of pipe upper end connection material storage tubes (90) of screw feeding, three sections of the screw feeding
Feeding motor (91) is also associated with pipe;The material storage tube (90) is arranged on above guide cylinder (61).
9. washed-out sand sand sifter according to claim 8, it is characterised in that:Described three sections of pipes of screw feeding include one-level spiral shell
Feed pipe (920), deuterostrophies feed pipe (921) and three-level screw conveying pipe (923) are revolved, between every grade of screw conveying pipe
It is integrally formed;The one-level screw conveying pipe (920) is located at bottom, and three-level screw conveying pipe (923) is located at the top.
10. washed-out sand sand sifter according to claim 8 or claim 9, it is characterised in that:The one-level screw conveying pipe (920),
Deuterostrophies feed pipe (921) is identical with three-level screw conveying pipe (923) structure, is conveyor screw shape feed pipe.
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CN201710703648.9A CN107442263A (en) | 2017-08-16 | 2017-08-16 | A kind of washed-out sand sand sifter |
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Citations (6)
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JP2007144390A (en) * | 2005-10-24 | 2007-06-14 | Hitachi Plant Technologies Ltd | Sand separating and washing device |
CN104549714A (en) * | 2015-01-14 | 2015-04-29 | 苏州赛胜创机电科技有限公司 | Automatic efficient multi-stage rotating sand washing and screening device and manufacturing method thereof |
CN204352603U (en) * | 2014-12-17 | 2015-05-27 | 张小燕 | Closed Continuous Flow sand filter |
CN104722135A (en) * | 2015-03-16 | 2015-06-24 | 大庆聚三元环保科技开发有限公司 | Micro-flocculation continuous sand filter |
CN204685273U (en) * | 2015-05-20 | 2015-10-07 | 孟永江 | A kind of drum-type sand washer |
CN106975564A (en) * | 2015-04-27 | 2017-07-25 | 乔风成 | A kind of recirculated water log washer |
-
2017
- 2017-08-16 CN CN201710703648.9A patent/CN107442263A/en not_active Withdrawn
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2007144390A (en) * | 2005-10-24 | 2007-06-14 | Hitachi Plant Technologies Ltd | Sand separating and washing device |
CN204352603U (en) * | 2014-12-17 | 2015-05-27 | 张小燕 | Closed Continuous Flow sand filter |
CN104549714A (en) * | 2015-01-14 | 2015-04-29 | 苏州赛胜创机电科技有限公司 | Automatic efficient multi-stage rotating sand washing and screening device and manufacturing method thereof |
CN104722135A (en) * | 2015-03-16 | 2015-06-24 | 大庆聚三元环保科技开发有限公司 | Micro-flocculation continuous sand filter |
CN106975564A (en) * | 2015-04-27 | 2017-07-25 | 乔风成 | A kind of recirculated water log washer |
CN204685273U (en) * | 2015-05-20 | 2015-10-07 | 孟永江 | A kind of drum-type sand washer |
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Application publication date: 20171208 |