CN205569894U - Moving plate belt vacuum dehydration machine - Google Patents

Moving plate belt vacuum dehydration machine Download PDF

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Publication number
CN205569894U
CN205569894U CN201620342867.XU CN201620342867U CN205569894U CN 205569894 U CN205569894 U CN 205569894U CN 201620342867 U CN201620342867 U CN 201620342867U CN 205569894 U CN205569894 U CN 205569894U
Authority
CN
China
Prior art keywords
cylinder
gripper shoe
kun
frame
vacuum
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.)
Expired - Fee Related
Application number
CN201620342867.XU
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Chinese (zh)
Inventor
李建
张恒
裴虎成
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.)
Sichuan Heng Wo Environmental Engineering Co Ltd
Original Assignee
Sichuan Heng Wo Environmental Engineering 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.)
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Publication date
Application filed by Sichuan Heng Wo Environmental Engineering Co Ltd filed Critical Sichuan Heng Wo Environmental Engineering Co Ltd
Priority to CN201620342867.XU priority Critical patent/CN205569894U/en
Application granted granted Critical
Publication of CN205569894U publication Critical patent/CN205569894U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a moving plate belt vacuum dehydration machine, including first frame, second frame and real empty tray, the first backup pad of fixedly connected with in the first frame is fixed in the second frame and is provided with electromagnetic adjustable speed motor, second backup pad and fourth backup pad, real empty tray of fixedly connected with and third backup pad between first frame and the second frame, the fixed kun section of thick bamboo that is provided with in the first backup pad. This moving plate belt vacuum dehydration machine utilizes the chain between the kun section of thick bamboo to carry out the transmission, drives the through -put hydroextractor, and dewaters. According to feeding volume automatically regulated chain speed, messenger's equipment remains best working condition throughout. Be equipped with the vacuum valve in the second hose, the mobile speed of adjustable gas to the control load.

Description

A kind of mobile dribbling vacuum hydroextractor
Technical field
This utility model relates to engineering goods technical field, is specially the mobile dribbling vacuum hydroextractor of one.
Background technology
Bend-band formula vacuum hydroextractor is electromechanical integration vacuum filter, it is adaptable to granularity is little, is difficult to precipitation, the material of concrete general granularity, and filtrate is thick up to more than 3mm, is carried out continuously suction strainer and the filtration machinery being dried under vacuum.And there is the feature such as automatic liquid surface control, filter cloth automatic deflection adjusting.Bend-band formula vacuum hydroextractor is made up of hollow rotary drum and axle gas system, actuating device, agitating device, body etc..Hollow rotary drum is partially immersed in sludge sump, and rotary drum is made up of segment compartment that is many and that connect, and surface covers one layer of filter medium filter cloth, and each interval is connected on dispensing head with a pipe.
During drum rotating, due to vacuum action, making rotary drum inside and outside formation pressure differential, promote sludge absorption on filter cloth, liquid flows to gas water separation tank by filter cloth along vacuum pipe, and by continuous evacuation, make absorption mud on rotary drum be dried, form filter cake, make filter cake come off from filter cloth by doctor blade device, complete a cyclic process, enter next one circulation.
Utility model content
The purpose of this utility model is to provide a kind of mobile dribbling vacuum hydroextractor, with the problem solving to propose in above-mentioned background technology.
For achieving the above object, this utility model provides following technical scheme: one moves dribbling vacuum hydroextractor, including the first frame, the second frame and vacuum pan, it is fixedly connected with the first gripper shoe in described first frame, electromagnetic adjustable speed motor, the second gripper shoe and the 4th gripper shoe it is fixedly installed in second frame, it is fixedly connected with vacuum pan and the 3rd gripper shoe between first frame and the second frame, the first gripper shoe is fixedly installed a Kun cylinder;Arranging connection in described first frame has tuningout cylinder block pin, tuningout cylinder block pin to connect the first cylinder, the first cylinder and the connection of the 2nd Kun cylinder, and the 2nd Kun cylinder is flexibly connected with runner block, and runner block is fixedly connected in the 3rd gripper shoe;It is fixedly installed net washing device in described 4th gripper shoe;Described vacuum pan is while being provided with the 3rd Kun cylinder and cloth bucket;It is provided with actively Kun cylinder and doctor blade device in described second gripper shoe, is actively connected by single strand chain between Kun cylinder and electromagnetic adjustable speed motor;It is fixedly connected with the 5th gripper shoe in described 3rd gripper shoe, connect between 5th gripper shoe and the 4th gripper shoe and have the 6th gripper shoe, arranging connection between 6th gripper shoe and the 3rd gripper shoe and have the 7th gripper shoe, connecting between the 5th gripper shoe and the first frame has the 8th gripper shoe;Connect in described 7th gripper shoe and have the 3rd cylinder, the 3rd cylinder is connected with tensioning frame, tensioning frame and the 4th gripper shoe and is flexibly connected, the 6th gripper shoe is provided with tensioning Kun cylinder;Connection is set on described tensioning frame and has the 4th Kun cylinder;It is provided with subnetting Kun in described 5th gripper shoe;Being provided with the second cylinder in described 8th gripper shoe, the second cylinder connects piston rod set, and piston rod set connects vacuum pan and moves cylinder pin, and vacuum pan moves cylinder pin and is connected with vacuum pan;Arranging connection in described 3rd frame has transverse slat, transverse slat to be provided with baffle device for water, and baffle device for water bottom connects has the first flexible pipe, the first flexible pipe to connect with vacuum tank, and vacuum tank is connected with vacuum pump by the second flexible pipe;It is provided with vacuum valve in described second flexible pipe.
Preferably, between a described Kun cylinder and the 3rd Kun cylinder, the 3rd Kun cylinder and actively between Kun cylinder, actively between Kun cylinder and tensioning Kun cylinder, between tensioning Kun cylinder and the 4th Kun cylinder, between the 4th Kun cylinder and subnetting Kun, between subnetting Kun and the 2nd Kun cylinder and between the 2nd Kun cylinder and a Kun cylinder between all connected by belt.
Preferably, in the cavity of described runner block, offer chute, during the output shaft straight reciprocating motion of the first cylinder, the 2nd Kun cylinder can be driven to move in runner block.
Preferably, described cloth bucket is charging aperture;Discharging opening is offered in the upper end of described second gripper shoe, the most just to conveyer, the material after dehydration is delivered to destination.
Compared with prior art, the beneficial effects of the utility model are:
This moves dribbling vacuum hydroextractor, utilizes the chain between Kun cylinder to carry out transmission, drives material to pass through dewaterer, and is dehydrated.It is automatically adjusted speed chain according to inlet amount, makes equipment remain optimum working state.Vacuum valve it is provided with in second flexible pipe, the flowing velocity of adjustable gas, thus control load.
Accompanying drawing explanation
Fig. 1 is overall structure schematic diagram of the present utility model;
Fig. 2 is vacuum pump overall structure schematic diagram of the present utility model.
In figure: 1 first frame;2 first gripper shoes;3 the 3rd Kun cylinders;4 cloth buckets;5 tuningout cylinder block pins;6 runner blocks;7 piston rod sets;8 vacuum pans move cylinder pin;9 vacuum pans;10 electromagnetic adjustable speed motors;11 active Kun cylinders;12 doctor blade devices;13 net washing devices;14 tensioning frames;141;4th Kun cylinder;15 tensioning Kun cylinders;16 subnetting Kun;17 vacuum tanks;18 baffle device for water;19 the oneth Kun cylinders;20 first cylinders;21 the 2nd Kun cylinders;22 second cylinders;23 the 3rd cylinders;24 single strand chains;25 filter screens;26 first flexible pipes;261 second flexible pipes;27 vacuum valves;28 transverse slats;29 second frames;30 second gripper shoes;31 the 3rd gripper shoes;32 the 4th gripper shoes;33 the 5th gripper shoes;34 the 6th gripper shoes;35 the 7th gripper shoes;36 the 8th gripper shoes;37 the 3rd frames.
Detailed description of the invention
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is clearly and completely described, it is clear that described embodiment is only a part of embodiment of this utility model rather than whole embodiments.Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art are obtained under not making creative work premise, broadly fall into the scope of this utility model protection.
Refer to Fig. 1-2, this utility model provides a kind of technical scheme: one moves dribbling vacuum hydroextractor, including the first frame the 1, second frame 29 and vacuum pan 9, the first gripper shoe 2 it is fixedly connected with in first frame 1, electromagnetic adjustable speed motor the 10, second gripper shoe 30 and the 4th gripper shoe 32 it is fixedly installed in second frame 29, it is fixedly connected with vacuum pan 9 and the 3rd gripper shoe 31 between first frame 1 and the second frame 29, the first gripper shoe 2 is fixedly installed a Kun cylinder 19;Between oneth Kun cylinder 19 and the 3rd Kun cylinder 3, the 3rd Kun cylinder 3 and actively between Kun cylinder 11, actively between Kun cylinder 11 with tensioning Kun cylinder 15, between tensioning Kun cylinder 15 and the 4th Kun cylinder 141, between the 4th Kun cylinder 141 and subnetting Kun 16, be all connected by belt between a Kun cylinder 19 with the 2nd Kun cylinder 21 between subnetting Kun 16 and the 2nd Kun cylinder 21;Connection is set in the first frame 1 and has tuningout cylinder block pin 5, tuningout cylinder block pin 5 connects the first cylinder 20, first cylinder 20 is connected with the 2nd Kun cylinder 21,2nd Kun cylinder 21 is flexibly connected with runner block 6, runner block 6 is fixedly connected in the 3rd gripper shoe 31, offer chute in the cavity of runner block 6, during the output shaft straight reciprocating motion of the first cylinder 20, the 2nd Kun cylinder 21 can be driven to move in runner block 6;Being fixedly installed net washing device 13 in 4th gripper shoe 32, filter screen 25 can be cleaned by net washing device 13, makes filter screen 25 to reuse;Vacuum pan 9 is while being provided with the 3rd Kun cylinder 3 and cloth bucket 4, and cloth bucket 4 is charging aperture;While second gripper shoe 30 is support member, it offers discharging opening, the most just to conveyer, the material after dehydration is delivered to destination;It is provided with actively Kun cylinder 11 and doctor blade device 12 in second gripper shoe 30, is actively connected by single strand chain 24 between Kun cylinder 11 with electromagnetic adjustable speed motor 10;It is fixedly connected with the 5th gripper shoe 33 in 3rd gripper shoe 31, connect between 5th gripper shoe 33 and the 4th gripper shoe 32 and have the 6th gripper shoe 34, arranging connection between 6th gripper shoe 34 and the 3rd gripper shoe 31 and have the 7th gripper shoe 35, connecting between the 5th gripper shoe 33 and the first frame 1 has the 8th gripper shoe 36;Connecting in 7th gripper shoe 35 and have the 3rd cylinder 23, the 3rd cylinder 23 is connected with tensioning frame 14, tensioning frame 14 is flexibly connected with the 4th gripper shoe 32, and the 6th gripper shoe 34 is provided with tensioning Kun cylinder 15;Connection is set on tensioning frame 14 and has the 4th Kun cylinder 141;It is provided with subnetting Kun 16 in 5th gripper shoe 33;Being provided with the second cylinder 22 in 8th gripper shoe 36, the second cylinder 22 connects and has piston rod set 7, piston rod set 7 connection vacuum pan moves cylinder pin 8, and vacuum pan moves cylinder pin 8 and is connected with vacuum pan 9;Arranging connection in 3rd frame 37 has transverse slat 38, transverse slat 38 to be provided with baffle device for water 18, and baffle device for water 18 bottom connects has the first flexible pipe 26, the first flexible pipe 26 to connect with vacuum tank 17, and vacuum tank 17 is connected with vacuum pump by the second flexible pipe 261;It is provided with vacuum valve 27 in second flexible pipe 261, the flowing velocity of adjustable gas, thus control load;This moves dribbling vacuum hydroextractor, utilizes the chain between Kun cylinder to carry out transmission, drives material to pass through dewaterer, and is dehydrated.
Embodiment the most of the present utility model, for the ordinary skill in the art, being appreciated that in the case of without departing from principle of the present utility model and spirit and these embodiments can carry out multiple change, revise, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.

Claims (4)

1. a mobile dribbling vacuum hydroextractor, including the first frame (1), second frame (29), vacuum pan (9), 3rd frame (37) and vacuum tank (17), it is characterized in that: on described first frame (1), be fixedly connected with the first gripper shoe (2), electromagnetic adjustable speed motor (10) it is fixedly installed in second frame (29), second gripper shoe (30) and the 4th gripper shoe (32), vacuum pan (9) and the 3rd gripper shoe (31) it is fixedly connected with between first frame (1) and the second frame (29), a Kun cylinder (19) it is fixedly installed in first gripper shoe (2);On described first frame (1), connection is set and has tuningout cylinder block pin (5), tuningout cylinder block pin (5) connects the first cylinder (20), first cylinder (20) is connected with the 2nd Kun cylinder (21), 2nd Kun cylinder (21) is flexibly connected with runner block (6), and runner block (6) is fixedly connected in the 3rd gripper shoe (31);It is fixedly installed net washing device (13) in described 4th gripper shoe (32);Described vacuum pan (9) is while being provided with the 3rd Kun cylinder (3) and cloth bucket (4);It is provided with actively Kun cylinder (11) and doctor blade device (12) on described second gripper shoe (30), is actively connected by single strand chain (24) between Kun cylinder (11) with electromagnetic adjustable speed motor (10);It is fixedly connected with the 5th gripper shoe (33) in described 3rd gripper shoe (31), connect between 5th gripper shoe (33) and the 4th gripper shoe (32) and have the 6th gripper shoe (34), arranging connection between 6th gripper shoe (34) and the 3rd gripper shoe (31) and have the 7th gripper shoe (35), connecting between the 5th gripper shoe (33) and the first frame (1) has the 8th gripper shoe (36);The upper connection of described 7th gripper shoe (35) has the 3rd cylinder (23), and the 3rd cylinder (23) is connected with tensioning frame (14), and tensioning frame (14) is flexibly connected with the 4th gripper shoe (32), and the 6th gripper shoe (34) is provided with tensioning Kun cylinder (15);Connection is set on described tensioning frame (14) and has the 4th Kun cylinder (141);It is provided with subnetting Kun (16) in described 5th gripper shoe (33);Being provided with the second cylinder (22) in described 8th gripper shoe (36), the upper connection of the second cylinder (22) has piston rod set (7), and piston rod set (7) connects vacuum pan and moves cylinder pin (8), and vacuum pan moves cylinder pin (8) and is connected with vacuum pan (9);In described 3rd frame (37), connection is set and has transverse slat (38), transverse slat (38) is provided with baffle device for water (18), baffle device for water (18) bottom connects the first flexible pipe (26), first flexible pipe (26) connects with vacuum tank (17), and vacuum tank (17) is connected with vacuum pump by the second flexible pipe (261);It is provided with vacuum valve (27) in described second flexible pipe (261).
A kind of mobile dribbling vacuum hydroextractor the most according to claim 1, it is characterised in that: between a described Kun cylinder (19) and the 3rd Kun cylinder (3), between the 3rd Kun cylinder (3) and active Kun cylinder (11), actively between Kun cylinder (11) with tensioning Kun cylinder (15), between tensioning Kun cylinder (15) and the 4th Kun cylinder (141), between the 4th Kun cylinder (141) and subnetting Kun (16), be all connected by belt between a Kun cylinder (19) with the 2nd Kun cylinder (21) between subnetting Kun (16) and the 2nd Kun cylinder (21).
A kind of mobile dribbling vacuum hydroextractor the most according to claim 1, it is characterized in that: in the cavity of described runner block (6), offer chute, during the output shaft straight reciprocating motion of the first cylinder (20), the 2nd Kun cylinder (21) can be driven to move in runner block (6).
A kind of mobile dribbling vacuum hydroextractor the most according to claim 1, it is characterised in that: described cloth bucket (4) is charging aperture;Discharging opening is offered in the upper end of the second gripper shoe (30), the most just to conveyer, the material after dehydration is delivered to destination.
CN201620342867.XU 2016-04-22 2016-04-22 Moving plate belt vacuum dehydration machine Expired - Fee Related CN205569894U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620342867.XU CN205569894U (en) 2016-04-22 2016-04-22 Moving plate belt vacuum dehydration machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620342867.XU CN205569894U (en) 2016-04-22 2016-04-22 Moving plate belt vacuum dehydration machine

Publications (1)

Publication Number Publication Date
CN205569894U true CN205569894U (en) 2016-09-14

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ID=56860579

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620342867.XU Expired - Fee Related CN205569894U (en) 2016-04-22 2016-04-22 Moving plate belt vacuum dehydration machine

Country Status (1)

Country Link
CN (1) CN205569894U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109621527A (en) * 2019-01-03 2019-04-16 湖州核源机械设备有限公司 A kind of rubber belt type vacuum filter

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109621527A (en) * 2019-01-03 2019-04-16 湖州核源机械设备有限公司 A kind of rubber belt type vacuum filter

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160914

CF01 Termination of patent right due to non-payment of annual fee