CN110153001A - A kind of quick screening plant of Soil K+adsorption - Google Patents

A kind of quick screening plant of Soil K+adsorption Download PDF

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Publication number
CN110153001A
CN110153001A CN201910483099.8A CN201910483099A CN110153001A CN 110153001 A CN110153001 A CN 110153001A CN 201910483099 A CN201910483099 A CN 201910483099A CN 110153001 A CN110153001 A CN 110153001A
Authority
CN
China
Prior art keywords
screening
block
soil
cavity
chamber
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.)
Withdrawn
Application number
CN201910483099.8A
Other languages
Chinese (zh)
Inventor
竺裕东
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.)
Shanghai Tingqi Computer Co Ltd
Original Assignee
Shanghai Tingqi Computer Co Ltd
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 Shanghai Tingqi Computer Co Ltd filed Critical Shanghai Tingqi Computer Co Ltd
Priority to CN201910483099.8A priority Critical patent/CN110153001A/en
Priority to JP2019129256A priority patent/JP6764059B1/en
Publication of CN110153001A publication Critical patent/CN110153001A/en
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C4/00Crushing or disintegrating by roller mills
    • B02C4/10Crushing or disintegrating by roller mills with a roller co-operating with a stationary member
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C4/00Crushing or disintegrating by roller mills
    • B02C4/28Details
    • B02C4/42Driving mechanisms; Roller speed control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/28Moving screens not otherwise provided for, e.g. swinging, reciprocating, rocking, tilting or wobbling screens
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/42Drive mechanisms, regulating or controlling devices, or balancing devices, specially adapted for screens
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/46Constructional details of screens in general; Cleaning or heating of screens
    • B07B1/4609Constructional details of screens in general; Cleaning or heating of screens constructional details of screening surfaces or meshes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B9/00Combinations of apparatus for screening or sifting or for separating solids from solids using gas currents; General arrangement of plant, e.g. flow sheets

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Combined Means For Separation Of Solids (AREA)
  • Disintegrating Or Milling (AREA)

Abstract

A kind of quick screening plant of Soil K+adsorption disclosed by the invention, including pedestal, screening collection device is equipped in the pedestal, the screening block being staggeredly placed there are three being set on the upside of the pedestal, soil screening plant is equipped in the screening block, screening power device is equipped with before and after the soil screening plant between side, it is provided on the upside of the screening block and rolls block, described roll is equipped with installation cavity in block, the rolling device to soil to be sieved of milling is equipped in the installation cavity, it communicates with the outside world on the upside of the installation cavity equipped with feed inlet, soil screening plant structure is identical in single screening block in the present invention, grade is sieved according to the different demarcation of its internal Screening Network mesh size, adjustable soil sieve graduation and specification, it is applied widely, so that this device is easy to carry or mobile, and each screening only is driven with single motor in device Block work, it is energy saving and efficient.

Description

A kind of quick screening plant of Soil K+adsorption
Technical field
The present invention relates to technical field of environmental detection, the quick screening plant of specially a kind of Soil K+adsorption.
Background technique
Screening structure in the screening plant of traditional Soil K+adsorption is fixed, and screening fine grade can not be according to actual needs Screening adjusting is carried out, then it is limited to make screening plant use scope, secondly, traditional screening plant sieves step by step step by step, is increased The process of screening, screening efficiency is low, and manual classification is needed to collect soil after sieving, cumbersome.One kind that the present invention illustrates It can solve the device of the above problem.
Summary of the invention
Technical problem:
Screening structure in the screening plant of traditional Soil K+adsorption is fixed, and screening fine grade can not carry out according to actual needs Screening is adjusted, and causes soil screening range limited, screening efficiency is low.
To solve the above problems, this example devises a kind of quick screening plant of Soil K+adsorption, a kind of soil inspection of this example It surveys and uses quick screening plant, including pedestal, screening collection device is equipped in the pedestal, set that there are three interlock on the upside of the pedestal The screening block of placement, the screening block is interior to be equipped with soil screening plant, is equipped with screening before and after the soil screening plant between side Power device, the screening block upside, which is provided with, rolls block, and described roll is equipped with installation cavity in block, is equipped with use in the installation cavity With the rolling device for soil to be sieved of milling, communicate with the outside world on the upside of the installation cavity equipped with feed inlet, after the installation cavity Side is equipped with power supply device, is connected by power between the rolling device and the power supply device, described pedestal or so end Face is installed with telescopic sleeving rod, telescopic chute is equipped in the telescopic sleeving rod, sliding is equipped with flexible slide bar in the telescopic chute, described to stretch Adjustable spring is installed between contracting the lower end of the slider and the telescopic chute, the telescopic chute upper end extends to the extraneous and described telescopic chute Between be installed with solid plate, the solid plate lower end is abutted with the block that rolls;The screening block is separable, and each screening block The soil fineness of interior soil screening plant screening is different, is placed in the screening block according to the grade of required screening The pedestal and it is described roll between block, three is stably connected with the telescopic sleeving rod by the solid plate, the power supplies The soil screening plant work is driven to device.
It may be preferred that described roll is provided with inserting groove, the screening block upper end in block and the screening block lower end surface Face is installed with the grafting block with the inserting groove grafting, can be by the screening block when grafting block is protruded into the inserting groove Between and the screening block and described roll be stably connected between block.
Wherein, the screening collection device includes symmetrical collection sliding slot, and the collection sliding slot opening is backwards, described It collects sliding in sliding slot and is equipped with collection ware, collection ware opposite side face is installed with slider guide, and the collection sliding slot is with respect to one It is communicated in end wall equipped with guide runner, the slider guide protrudes into the guide runner, and the collection sliding slot in left side communicates with the outside world Equipped with material collecting tank, the collection sliding slot on right side is communicated with the outside world equipped with discharge port;Soil in afterbody screening passes through institute It states material collecting tank and enters collection in the collection ware in left side, remaining soil enters the right side by the discharge port after in screening It is collected in the collection ware of side.
Wherein, the soil screening plant includes cavity, and rotation is equipped with splined shaft, institute between the end wall of front and back in the cavity It states splined shaft front and back end to be connected by power with the screening power device, the splined shaft upper spline is connected with sifting barrel, the sieve Divide cylinder right side to be installed with transition inclined plate, screening chamber is equipped in the sifting barrel, between the screening chamber upside and the cavity Connection is equipped with connection through slot, is equipped with Screening Network be connected between the cavity on the downside of the screening chamber, on the right side of the cavity and outside Connection, which is equipped with, between boundary contains sliding slot, and described contain in sliding slot is slided equipped with ware is contained, and the sky is protruded into the ware left end that contains The intracavitary and described ware that contains is located at the transition inclined plate lower position, and the ware right side that contains is installed with guide block, described to contain It communicating in sliding slot right end wall equipped with guide groove, the guide block protrudes into the guide groove and the guide block is slidably connected with the guide groove, The sliding slot front end that contains is installed with magnetic patch, and the ware front end that contains is connect with the magnetic patch magnetic, described to contain runner rear end Wall, which communicates, is equipped with sealing turn trough, and rotation is equipped with sealing plate, the sealing plate and the sealing turn trough front end in the sealing turn trough Torsional spring is installed between wall;The sifting barrel is moved forward and backward the intracavitary soil of the screening screening, reaches the soil particle of standard It is discharged by the Screening Network, and is collected by being contained in ware described in transition inclined plate entrance, below standard soil particle enters Next screening sieved in block is intracavitary to be sieved again.
It may be preferred that the Screening Network mesh in each screening block is of different sizes, to define each sieve The different screening grades of piecemeal are cross-linked between the screening block so that on the once screening block lower end be inserted into it is next In the connection through slot of a screening block, the screening chamber is inclined to set, and avoids soil obstructing problem, and the screening Stable connection between block.
Wherein, the screening power device includes that front and back is symmetrical and the cam that communicates with the cavity turns chamber, the cam Turn intracavitary and cam is equipped with by cam shaft rotation, first bevel gear is installed on the upside of the cam, the first bevel gear is left Side engagement is connected with second bevel gear, and the second bevel gear left side is installed with rotary gear shaft, the rotary gear shaft of front and back Between be connected by power by synchronous belt, the cam close to one end face of cavity abut have push plate, the push plate is mutually leaned on Nearly one end and the cam turn to be installed with compression spring between chamber, and the splined shaft front and back end extends respectively to the described convex of front and back It rotates intracavitary and is connected with the push plate, the cam of rear side turns to communicate on the downside of chamber equipped with belt chamber, under the cam shaft End is rotatablely connected with the belt chamber lower end wall, and the intracavitary right side of belt is equipped with spline housing, the spline housing and the cam It is connected by power, is communicated on the downside of the belt chamber equipped with driving groove, the spline housing lower end is stretched by synchronous toothed belt between shaft Enter in the driving groove, and the spline housing lower end can be connect with cam shaft upper end spline;The cam of front and back turns It is dynamic, it may make sifting barrel front and back high-frequency mobile, the soil intracavitary to the screening to sieve by the push plate.
Wherein, the rolling device includes the fixing axle of end wall before and after being fixedly arranged on the installation cavity, is slided in the fixing axle Dynamic be equipped with rolls cylinder, it is described roll to be equipped in cylinder roll chamber, it is described to roll intracavitary rotation and be equipped with rolling wheel, the rolling axle It is installed at the heart and rolls shaft, the shaft front and back end of rolling is installed with lead screw, the lead screw front end of front side and the installation The rotation connection of chamber front bulkhead, the lead screw rear end and the power supply device of rear side be connected by power, the lead screw with it is described It rolls and is threadedly coupled respectively between cylinder;It is described to roll the shaft rotation drive rolling wheel rotation, intracavitary soil is rolled to described Earth rolls, and the lead screw rotation may make the cylinder that rolls to be moved forward and backward, so that the rolling wheel rolls sufficiently.
Wherein, the power supply device includes the power cavity communicated with the installation cavity, and the lead screw rear end extends to In the power cavity and it is installed with third hand tap gear, engagement is connected with the 4th bevel gear on the left of the third hand tap gear, and described the Be installed with mandrel at four bevel gear axle center, be installed with motor in the power cavity right end wall, the mandrel right end be connected by power in The motor communicates on the left of the power cavity and is equipped with engagement chamber, and it is intracavitary and be installed with that the mandrel left end extends to the engagement 5th bevel gear, the 5th bevel gear downside engagement are connected with the 6th bevel gear, and the 6th bevel gear is far from the described 5th One end face of bevel gear is installed with spline tube, communicates on the downside of the engagement chamber equipped with link slot, the spline tube lower end extends to institute It states in link slot, the cam shaft upper end can be connect with the spline tube spline;The motor work can drive single unit system In the soil screening plant work.
It may be preferred that the spline housing can be connect with the spline tube with the cam shaft spline, then it is described to roll Power can be stably connected between block and the screening block and between the screening block.
The beneficial effects of the present invention are: soil screening plant structure is identical in single screening block in the present invention, according to it The different demarcation of internal Screening Network mesh size sieves grade, can adjust soil screening by the increase and reduction of screening block Grade and specification, it is applied widely, so that this device is easy to carry or mobile, and only drives each sieve with single motor in device Piecemeal work, it is energy saving and efficient.
Detailed description of the invention
The present invention is described in detail by following specific embodiments and drawings for ease of explanation,.
Fig. 1 is a kind of overall structure diagram of the quick screening plant of Soil K+adsorption of the invention;
The structural schematic diagram that " A " that Fig. 2 is Fig. 1 amplifies;
Fig. 3 is the structural schematic diagram in direction " B-B " of Fig. 1;
Fig. 4 is the structural schematic diagram in direction " C-C " of Fig. 2;
Fig. 5 is the structural schematic diagram in direction " D-D " of Fig. 3;
Fig. 6 is the structural schematic diagram in direction " E-E " of Fig. 1.
Specific embodiment
Below with reference to Fig. 1-Fig. 6, the present invention is described in detail, for sake of convenience, now provides to hereafter described orientation As follows: hereafter described front-rear direction up and down is consistent with the front-rear direction up and down of Fig. 1 projection relation itself.
The present invention relates to a kind of quick screening plant of Soil K+adsorption, the soil screener being mainly used in Soil K+adsorption Make, below in conjunction with attached drawing of the present invention, the present invention will be further described:
A kind of quick screening plant of Soil K+adsorption of the present invention, including pedestal 10, the pedestal 10 is interior to be equipped with screening receipts Acquisition means 601 are set on the upside of the pedestal 10 there are three the screening block 42 being staggeredly placed, and are equipped with soil screening in the screening block 42 Device 602 is equipped with screening power device 603 between the 602 front and back side of soil screening plant, is arranged on the upside of the screening block 42 Block 23 is rolled, described roll is equipped with installation cavity 25, is equipped in the installation cavity 25 to soil to be sieved of milling in block 23 Rolling device 604, communicate with the outside world on the upside of the installation cavity 25 equipped with feed inlet 24, be equipped with power on rear side of the installation cavity 25 Feedway 605 is connected by power between the rolling device 604 and the power supply device 605, and the pedestal 10 or so is held Face is installed with telescopic sleeving rod 18, telescopic chute 19 is equipped in the telescopic sleeving rod 18, sliding is equipped with flexible slide in the telescopic chute 19 Bar 21, is installed with adjustable spring 20 between 21 lower end of flexible slide bar and the telescopic chute 19,19 upper end of telescopic chute is prolonged It extends to and is installed with solid plate 22 between the extraneous and described telescopic chute 19,22 lower end of solid plate is abutted with the block 23 that rolls;It is described It sieves block 42 to separate, and the soil fineness of the soil screening plant 602 screening in each screening block 42 is different, According to the grade of required screening by the screening block 42 be placed in the pedestal 10 and it is described roll between block 23, by described solid Three is stably connected with by plate 22 with the telescopic sleeving rod 18, and the power supply device 605 drives the soil screening plant 602 Work.
Valuably, described roll in block 23 and 42 lower end surface of screening block is provided with inserting groove 49, the screening block 42 upper surfaces are installed with the grafting block 50 with 49 grafting of inserting groove, when the grafting block 50 is protruded into the inserting groove 49, It can will be between the screening block 42 and the screening block 42 and described roll are stably connected between block 23.
According to embodiment, screening collection device 601 is described in detail below, the screening collection device 601 includes Symmetrical collection sliding slot 11, backwards, sliding is equipped with collection ware 12 to the opening of collection sliding slot 11 in the collection sliding slot 11, The 12 opposite side face of collection ware is installed with slider guide 15, communicates in the 11 opposite side wall of collection sliding slot equipped with guide runner 14, the slider guide 15 protrudes into the guide runner 14, and the collection sliding slot 11 in left side is communicated with the outside world equipped with material collecting tank 16, The collection sliding slot 11 on right side is communicated with the outside world equipped with discharge port 17;Soil in afterbody screening passes through the material collecting tank It is collected in the collection ware 12 in 16 entrance left sides, remaining soil enters right side by the discharge port 17 after screening is interior The collection ware 12 in collect.
According to embodiment, soil screening plant 602 is described in detail below, (with first sieve from top to bottom Illustrating for the soil screening plant 602 in piecemeal 42) the soil screening plant 602 includes cavity 43, the cavity Rotation is equipped with splined shaft 51,51 front and back end of splined shaft and 603 power of screening power device between the end wall of front and back in 43 Connection, 51 upper spline of splined shaft are connected with sifting barrel 44, and 44 right side of sifting barrel is installed with transition inclined plate 48, described Be equipped with screening chamber 45 in sifting barrel 44,45 upside of screening chamber be connected between the cavity 43 equipped with connecting through slot 46, institute It states screening chamber 45 downside and is equipped with Screening Network 47 be connected between the cavity 43, set on the right side of the cavity 43 with being connected between the external world Sliding slot 65 is contained, described contain in sliding slot 65 is slided equipped with ware 66 is contained, and the cavity 43 is protruded into 66 left end of ware that contains The interior and described ware 66 that contains is located at 48 lower position of transition inclined plate, and 66 right side of ware that contains is installed with guide block 69, institute It states to contain and be communicated in 65 right end wall of sliding slot equipped with guide groove 68, the guide block 69 protrudes into the interior and described guide block 69 of the guide groove 68 and institute It states guide groove 68 to be slidably connected, 65 front end of sliding slot that contains is installed with magnetic patch 70, described to contain 66 front end of ware and the magnetic patch 70 Magnetic connection, 65 aft bulkhead of sliding slot that contains are communicated equipped with sealing turn trough 71, and the interior rotation of the sealing turn trough 71, which is equipped with, to be sealed Plate 72 is installed with torsional spring 73 between the sealing plate 72 and 71 front bulkhead of sealing turn trough;The sifting barrel 44 is moved forward and backward The soil in the screening chamber 45 is sieved, the soil particle for reaching standard is discharged by the Screening Network 47, and passes through the mistake It crosses to contain in ware 66 described in the entrance of inclined plate 48 and collect, below standard soil particle enters the sieve in next screening block 42 Divide in chamber 45 and is sieved again.
Valuably, 47 mesh of the Screening Network in each screening block 42 is of different sizes, to define each described Sieve the different screening grades of block 42, be cross-linked between the screening block 42 so that on the once lower end for sieving block 42 It is inserted into the connection through slot 46 of next screening block 42, the screening chamber 45 is inclined to set, and soil is avoided to block Problem, and stable connection between the screening block 42.
According to embodiment, screening power device 603 is described in detail below, the screening power device 603 includes Front and back is symmetrical and the cam that communicates with the cavity 43 turns chamber 52, and the cam turns to be equipped in chamber 52 by the rotation of cam shaft 56 Cam 55 is installed with first bevel gear 57 on the upside of the cam 55, and engagement is connected with the second cone on the left of the first bevel gear 57 Gear 58,58 left side of second bevel gear are installed with rotary gear shaft 59, pass through between the rotary gear shaft 59 of front and back same Step belt 60 is connected by power, and the cam 55 is abutted close to 43 1 end face of cavity push plate 53, and the push plate 53 is mutually leaned on Nearly one end and the cam turn to be installed with compression spring 54 between chamber 52, and 51 front and back end of splined shaft extends respectively to front and back The cam turns to be connected in chamber 52 and with the push plate 53, and the cam of rear side turns to communicate on the downside of chamber 52 equipped with belt chamber 62, 56 lower end of cam shaft and 62 lower end wall of belt chamber are rotatablely connected, and right side is equipped with spline housing in the belt chamber 62 63, it is connected by power between the spline housing 63 and the cam shaft 56 by synchronous toothed belt 61,62 downside of belt chamber It communicates and is equipped with driving groove 64,63 lower end of spline housing is protruded into the driving groove 64, and 63 lower end of the spline housing can be with institute State the connection of 56 upper end spline of cam shaft;The cam 55 of front and back rotates, and may make the sifting barrel by the push plate 53 44 front and back high-frequency mobiles sieve the soil in the screening chamber 45.
According to embodiment, rolling device 604 is described in detail below, the rolling device 604 includes being fixedly arranged on institute The fixing axle 28 of 25 front and back end wall of installation cavity is stated, is slidably fitted in the fixing axle 28 and rolls cylinder 26, it is described to roll in cylinder 26 It is described to roll rotation in chamber 27 and be equipped with rolling wheel 30 equipped with rolling chamber 27, it is installed at 30 axle center of rolling wheel and rolls shaft 29,29 front and back end of shaft of rolling is installed with lead screw 31,31 front end of the lead screw of front side and 25 front bulkhead of installation cavity Rotation connection, 31 rear end of the lead screw and the power supply device 605 of rear side are connected by power, the lead screw 31 and the stone roller It is threadedly coupled respectively between pressure cylinder 26;The rotation drive of shaft 29 rolling wheel 30 that rolls rotates, and rolls chamber 27 to described Interior soil rolls, and the rotation of lead screw 31 may make the cylinder 26 that rolls to be moved forward and backward, so that the rolling wheel 30 is rolled and filled Point.
According to embodiment, power supply device 605 is described in detail below, the power supply device 605 includes The power cavity 32 communicated with the installation cavity 25,31 rear end of lead screw extend in the power cavity 32 and are installed with third cone Gear 33, engagement is connected with the 4th bevel gear 35 on the left of the third hand tap gear 33, fixed at 35 axle center of the 4th bevel gear There is mandrel 36, motor 34 is installed in the 32 right end wall of power cavity, 36 right end of mandrel is connected by power in the motor 34, It is communicated on the left of the power cavity 32 and is equipped with engagement chamber 38, it is interior and be installed with that 36 left end of mandrel extends to the engagement chamber 38 Five bevel gears 37, engagement is connected with the 6th bevel gear 40 on the downside of the 5th bevel gear 37, and the 6th bevel gear 40 is far from institute It states 37 1 end face of the 5th bevel gear and is installed with spline tube 39, communicate on the downside of the engagement chamber 38 equipped with link slot 41, the spline 39 lower ends of cylinder extend in the link slot 41, and 56 upper end of cam shaft can be connect with 39 spline of spline tube;It is described The work of motor 34 can drive the soil screening plant 602 in single unit system to work.
Valuably, the spline housing 63 can be connect with the spline tube 39 with 56 spline of cam shaft, then described It rolls between block 23 and the screening block 42 and power can be stably connected between the screening block 42.
It is carried out in detail below in conjunction with use step of the Fig. 1 to Fig. 6 to one of this paper quick screening plant of Soil K+adsorption It describes in detail bright:
When screening installation, according to the required screening block 42 for choosing different stage, the maximum screening block 42 of 47 mesh of Screening Network is put It is placed on pedestal 10, the screening block 42 of next stage is placed in existing 42 upper side position of screening block, and in the screening block 42 of downside Grafting block 50 protrude into upside screening block 42 in inserting groove 49 in so that two screening blocks 42 are stably connected with, at this point, upside 42 lower end of screening block protrude into downside screening block 42 in connection through slot 46 in, downside screening block 42 in cam shaft 56 63 spline of spline housing in the screening block 42 of top and upside connects, at this point, two screening blocks 42 are installed, with same peace Dress operates mountable required several screening blocks 42 and is installed together, then, from feed inlet 24 by land fill to be sieved To rolling in chamber 27, thereafter, 42 upper end of screening block block 23 will be rolled be installed on top side, flexible slide bar 21 and telescopic sleeving rod 18 Between telescopic action by solid plate 22 can will roll block 23 and screening block 42 stablize installation connection, at this point, solid plate 22 will feed Mouth 24 seals, and cam shaft 56 is connect with 39 spline of spline tube;
Soil sieve timesharing, motor 34 work, and driving mandrel 36 rotates, then the rotation of lead screw 31 drives rolling wheel 30 to rotate, to soil Roll, lead screw 31 rotate when, may make roll cylinder 26 back-and-forth motion so that roll it is uniform and comprehensive, mandrel 36 rotation may make The rotation of 6th bevel gear 40, then spline tube 39 drives cam shaft 56 to rotate, so that cam 55 rotates, so that sifting barrel 44 It is moved forward and backward screening soil, makes the synchronous high-frequency mobile of whole sifting barrels 44 to sieve soil by synchronous toothed belt 61, It is sized to 47 downside of Screening Network with the 47 matched soil of mesh size of Screening Network, by containing ware in next screening block 42 66 collect, and unmatched soil particle then enters in the screening chamber 45 of downside, are sieved again, until soil screener finishs At remaining soil is collected by the collection ware 12 on right side.
The beneficial effects of the present invention are: soil screening plant structure is identical in single screening block in the present invention, according to it The different demarcation of internal Screening Network mesh size sieves grade, can adjust soil screening by the increase and reduction of screening block Grade and specification, it is applied widely, so that this device is easy to carry or mobile, and only drives each sieve with single motor in device Piecemeal work, it is energy saving and efficient.
In the above manner, those skilled in the art can be made within the scope of the invention according to operating mode it is various Change.

Claims (9)

1. a kind of Soil K+adsorption quick screening plant, including pedestal;
It is equipped with screening collection device in the pedestal, sets that there are three the screening block being staggeredly placed, the screenings on the upside of the pedestal It is equipped with soil screening plant in block, is equipped between side before and after the soil screening plant and sieves power device, on the screening block Side, which is provided with, rolls block, and described roll is equipped with installation cavity in block, is equipped in the installation cavity to soil to be sieved of milling Rolling device, the installation cavity upside are communicated with the outside world equipped with feed inlet, and power supply device, institute are equipped on rear side of the installation cavity It states and is connected by power between rolling device and the power supply device;
The pedestal or so end face is installed with telescopic sleeving rod, and telescopic chute, sliding in the telescopic chute are equipped in the telescopic sleeving rod Equipped with flexible slide bar, adjustable spring is installed between the flexible slide bar lower end and the telescopic chute, the telescopic chute upper end is prolonged It extends to and is installed with solid plate between the extraneous and described telescopic chute, the solid plate lower end is abutted with the block that rolls;
The screening block is separable, and the soil fineness of the soil screening plant screening in each screening block is not Together, according to the grade of required screening by the screening block be placed in the pedestal and it is described roll between block, pass through the solid plate Three is stably connected with the telescopic sleeving rod, the power supply device drives the soil screening plant work.
2. the quick screening plant of a kind of Soil K+adsorption as described in claim 1, it is characterised in that: the block and described of rolling Screening is provided with inserting groove in block lower end surface, and the screening block upper surface is installed with the grafting block with the inserting groove grafting.
3. a kind of quick screening plant of Soil K+adsorption as described in claim 1, it is characterised in that: the screening collection device Including symmetrical collection sliding slot;
Backwards, sliding is equipped with collection ware to the collection sliding slot opening in the collection sliding slot, and the collection ware opposite side face is solid Equipped with slider guide;
It communicates in the collection sliding slot opposite side wall equipped with guide runner, the slider guide protrudes into the guide runner;
The collection sliding slot in left side is communicated with the outside world equipped with material collecting tank, and the collection sliding slot on right side, which communicates with the outside world, to be equipped with Material mouth.
4. a kind of quick screening plant of Soil K+adsorption as described in claim 1, it is characterised in that: the soil screening plant Including cavity;
Rotation is equipped with splined shaft between the end wall of front and back in the cavity, and the splined shaft front and back end and the screening power device are dynamic Power connection, the splined shaft upper spline are connected with sifting barrel, and the sifting barrel right side is installed with transition inclined plate, the sifting barrel It is interior to be equipped with screening chamber, through slot is connected be connected to be equipped between the cavity on the upside of the screening chamber, the screening chamber downside and institute It states connection between cavity and is equipped with Screening Network;
Sliding slot is contained be connected to be equipped between the external world on the right side of the cavity, it is described to contain in sliding slot sliding equipped with containing ware, it is described Contain that ware left end is protruded into the cavity and the ware that contains is located at the transition inclined plate lower position, it is described to contain ware right side It is installed with guide block, described contain communicates in sliding slot right end wall equipped with guide groove, and the guide block protrudes into the guide groove and the guide block It is slidably connected with the guide groove, the sliding slot front end that contains is installed with magnetic patch, described to contain ware front end and magnetic patch magnetic company It connects;
The runner rear end wall that contains is communicated equipped with sealing turn trough, and the interior rotation of the sealing turn trough is equipped with sealing plate, the sealing Torsional spring is installed between plate and the sealing turn trough front bulkhead.
5. a kind of quick screening plant of Soil K+adsorption as claimed in claim 4, it is characterised in that: in each screening block The Screening Network mesh it is of different sizes, be cross-linked between the screening block so that on once it is described screening block lower end insert In the connection through slot for entering next screening block, the screening chamber is inclined to set.
6. a kind of quick screening plant of Soil K+adsorption as described in claim 1, it is characterised in that: the screening power device Turn chamber including the cam that front and back is symmetrical and communicates with the cavity;
The cam turns intracavitary and is equipped with cam by cam shaft rotation, is installed with first bevel gear on the upside of the cam, described Engagement is connected with second bevel gear on the left of first bevel gear, and the second bevel gear left side is installed with rotary gear shaft, front and back It is connected by power between the rotary gear shaft by synchronous belt, the cam is abutted close to one end face of cavity push plate, institute It states push plate one end close to each other and the cam turns to be installed with compression spring between chamber, the splined shaft front and back end extends respectively to The cam of front and back turns intracavitary and is connected with the push plate;
The cam of rear side turns to communicate on the downside of chamber equipped with belt chamber, and the cam shaft lower end and the belt chamber lower end wall turn Dynamic connection, the intracavitary right side of belt are equipped with spline housing, pass through synchronous toothed belt between the spline housing and the cam shaft It is connected by power;
It communicates on the downside of the belt chamber equipped with driving groove, the spline housing lower end is protruded into the driving groove, and the spline housing Lower end can be connect with cam shaft upper end spline.
7. the quick screening plant of a kind of Soil K+adsorption as described in claim 1, it is characterised in that: the rolling device includes It is fixedly arranged on the fixing axle of installation cavity front and back end wall;
Be slidably fitted in the fixing axle and roll cylinder, it is described roll to be equipped in cylinder roll chamber;
It is described to roll intracavitary rotation and be equipped with rolling wheel, be installed at the rolling wheel axle center and roll shaft, it is described roll shaft before Rear end is installed with lead screw, and the lead screw front end of front side and the installation cavity front bulkhead are rotatablely connected, after the lead screw of rear side End is connected by power with the power supply device, and the lead screw is threadedly coupled between cylinder respectively with described roll.
8. a kind of quick screening plant of Soil K+adsorption as described in claim 1, it is characterised in that: the power supply device Including the power cavity communicated with the installation cavity;
The lead screw rear end extends in the power cavity and is installed with third hand tap gear, and engagement connects on the left of the third hand tap gear It is connected to the 4th bevel gear, mandrel is installed at the 4th bevel gear axle center, is installed with motor in the power cavity right end wall, institute Mandrel right end is stated to be connected by power in the motor;
It is communicated on the left of the power cavity and is equipped with engagement chamber, it is intracavitary and be installed with the 5th cone that the mandrel left end extends to the engagement Gear, the 5th bevel gear downside engagement are connected with the 6th bevel gear, and the 6th bevel gear is far from the 5th bevel gear One end face is installed with spline tube;
It communicates on the downside of the engagement chamber equipped with link slot, the spline tube lower end extends in the link slot, and the cam turns Axis upper end can be connect with the spline tube spline.
9. the quick screening plant of a kind of Soil K+adsorption as claimed in claim 8, it is characterised in that: the spline housing with it is described Spline tube can be connect with the cam shaft spline.
CN201910483099.8A 2019-06-04 2019-06-04 A kind of quick screening plant of Soil K+adsorption Withdrawn CN110153001A (en)

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