CN108049913A - A kind of coal mine underground sump digs clearly standby - Google Patents

A kind of coal mine underground sump digs clearly standby Download PDF

Info

Publication number
CN108049913A
CN108049913A CN201810038492.1A CN201810038492A CN108049913A CN 108049913 A CN108049913 A CN 108049913A CN 201810038492 A CN201810038492 A CN 201810038492A CN 108049913 A CN108049913 A CN 108049913A
Authority
CN
China
Prior art keywords
plate
inclined plate
discharge
groove body
iii
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810038492.1A
Other languages
Chinese (zh)
Other versions
CN108049913B (en
Inventor
梁吉军
安田
史晓晖
姬伟
周广宇
郇恒现
李秀
王聪
杨震
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.)
Shandong Laiwu Coal Mining Machinery Co Ltd
Original Assignee
Shandong Laiwu Coal Mining Machinery 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 Shandong Laiwu Coal Mining Machinery Co Ltd filed Critical Shandong Laiwu Coal Mining Machinery Co Ltd
Priority to CN201810038492.1A priority Critical patent/CN108049913B/en
Publication of CN108049913A publication Critical patent/CN108049913A/en
Application granted granted Critical
Publication of CN108049913B publication Critical patent/CN108049913B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21FSAFETY DEVICES, TRANSPORT, FILLING-UP, RESCUE, VENTILATION, OR DRAINING IN OR OF MINES OR TUNNELS
    • E21F16/00Drainage
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/04Combinations of filters with settling tanks

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Geology (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filtration Of Liquid (AREA)
  • Separation Of Solids By Using Liquids Or Pneumatic Power (AREA)

Abstract

It is dug clearly the present invention relates to a kind of coal mine underground sump standby, belongs to coal mine underground sump and dig equipment technical field clearly;The equipment includes tilting groove body (2), horizontal groove body (5), transmission device (7), PLC control cabinet (14);It is characterized in that:Further include I device of discharge (1), II device of discharge (3), I plate of backgauge (4), III device of discharge (6), II plate of backgauge (8), feeding device (9), I device of inclined plate (10), II device of inclined plate (11), III device of inclined plate (12), drainage arrangement (13);Discharge scraper plate is by the material of more than diameter 4mm and is mingled with the thin material in part and is expelled to raw coal belt from I device of discharge (1);Part fine granular materials are discharged from the discharge flange of II device of discharge (3);Overflow water is recycled by drainage arrangement (13) to circulating water pool;Advantageous effect:Reduce the frequency of dibhole digging, shorten the disposable clear digging time, improve the quality dug clearly.

Description

A kind of coal mine underground sump digs clearly standby
Technical field
It is dug clearly the present invention relates to a kind of coal mine underground sump standby, belongs to coal mine underground sump and dig equipment technical field clearly.
Background technology
Mine water disaster is one of four big disasters of coal production, and shaft sump is to prevent mine water disaster, ensure that colliery is pacified The critical facility produced entirely.Dibhole digging problem is always to perplex a great problem of Safety of Coal Mine Production, in recent years, with adopting depth Increase, inflow rate of mine water increase, the frequency of dibhole digging is higher and higher, and the threat degree brought to mine is increasing, such as What reduces the frequency of dibhole digging, shortens and disposably dig the time clearly, improve the quality dug clearly, is the problem that a needs solve.
At present, coal mine underground sump digs clearly standby be mainly the following:
(1) manually spade digs clearly method, loading machine digs clearly method, main deficiency:Labor intensity is big, work efficiency is low, digs clearly Frequency height, the time length dug clearly, coal slime are in transportational process to the seriously polluted of environment.
(2) scrapper conveyor digs clearly method, bucket machine digs clearly method, main deficiency:Transport mine car leakage is serious, work efficiency is low, clear The frequency height of digging, the time length dug clearly, coal slime are in transportational process to the seriously polluted of environment.
(3) utility model patent of Patent No. 200420092004.9《Water position slurry clearing and dugging machine》, authorized announcement date On November 2nd, 2005;The utility model patent of Patent No. 200920163415.5《A kind of clear digging conveyer》, authorized announcement date On April 14th, 2010;This two patents realize dibhole digging machineryization, reduce labor strength, improve work effect Rate;It is primarily present deficiency:The frequency dug clearly is high, digs clearly time is long, coal slime in transportational process to the seriously polluted of environment.
(4) patent of invention of Patent No. 200510038944.9《Mine water sump duff fluid automatic cleaning and treating method and Equipment》, publication date on October 5th, 2005, it is primarily present deficiency:Coal mine underground sump black water has bulky grain, and filter cloth abrasion is tight Weight;Sediment is squeezed into filter press by pumping, feed thickness is low and uneven, poor filtration effect;The frequency dug clearly is high, digs clearly Time is long.
(5) vibrating screen and filter press Combined Treatment method, thick material (+0.8mm) are exhausted directly to using vibrating screen on belt, are remained Remaining thin material enters sedimentation basin, is filtered by filter press, and the problem of being primarily present is:When vibrating screen 24 is small continuous, high energy consumption and Special messenger is needed to keep an eye on;Sediment is squeezed into filter press by pumping, feed thickness is low and uneven, poor filtration effect;The frequency dug clearly The time that rate is high, digs clearly is long.
The present invention is to reduce the frequency of dibhole digging, shorten the skills such as disposable clear digging time, the quality that raising is dug clearly Art problem provides a kind of coal mine underground sump and digs process clearly.
The content of the invention
It is an object of the invention in place of overcome the deficiencies in the prior art, disclose a kind of coal mine underground sump and dig clearly It is standby.
A kind of coal mine underground sump of the present invention dig clearly it is standby, including tilt groove body 2, horizontal groove body 5, transmission device 7th, PLC control cabinet 14;Groove body 2 is tilted to be connected using flange bolt with horizontal groove body 5;Transmission device 7 includes motor reducer, master Transmission shaft, driven shaft, driving-chain etc.;It is characterized in that:Further include I device 1 of discharge, II device 3 of discharge, I plate 4 of backgauge, discharge III Device 6, II plate 8 of backgauge, feeding device 9, I device 10 of inclined plate, II device 11 of inclined plate, III device 12 of inclined plate, drainage arrangement 13;Row Expect that I device 1 includes being mounted on the discharge chute for tilting 2 left end of groove body, be scraped with several width for the discharge of 4~6mm long slot bores Plate, both ends and the driving-chain of discharge scraper plate are bolted, and the driving-chain in transmission device 7 drives the movement of discharge scraper plate, the row of realization Expect function;II device 3 of discharge, which is included in, tilts the chute body of 2 trough floor opening of groove body welding, on the downside of chute body Several spray headers in face are installed mounted on chute body the lowermost discharge flange, sieve plate, the screen frame of mounted sieve, screen frame It is on the inside of chute body and concordant with tilting plane in 2 trough floor of groove body;I plate of backgauge, 4 rear and front end is with tilting 2 both side plate of groove body Inside is welded, and the upper end of I plate 4 of backgauge is higher by overflow liquid level N line 200mm~300mm, and the lower end of I plate 4 of backgauge is higher by high concentration liquid Face M lines 200mm~300mm;III device 6 of discharge is mounted on two outside of front end of horizontal groove body 5, below high concentration liquid level M lines At 200mm~300mm;With being welded on the inside of horizontal 5 both side plate of groove body, the upper end of II plate 8 of backgauge is higher by for II plate of backgauge, 8 rear and front end Overflow liquid level N line 200mm~300mm, the lower end of II plate 8 of backgauge are higher by high concentration liquid level M lines 200mm~300mm;Feeding device 9 include the feeding pipe mounted on two outside of the middle part of horizontal groove body 5, vertical the dividing mounted on two inside of the middle part of horizontal groove body 5 Chute and inclination diversion channel;The rear and front end of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate is with tilting groove body Welding on the inside of 2 both side plates;The upper end of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate is higher by overflow liquid level N lines 200mm~300mm, the lower end of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate are higher by high concentration liquid level M lines 200mm~300mm;Drainage arrangement 13 includes the discharge nozzle mounted on two outside of the rear end of horizontal groove body 5, mounted on horizontal groove body The vertical-overflow slot of 5 two inside of rear end, the downflow weir of vertical-overflow slot are concordant with overflow liquid level N lines;I plate 4 of backgauge, backgauge II The inner cavity of horizontal groove body 5 is divided into four areas, I plate 4 of backgauge and backgauge II by plate 8, I device 10 of inclined plate and III device 12 of inclined plate Space between plate 8 is high concentration material area, and the space between I device 10 of II plate 8 of backgauge and inclined plate is pan feeding decanting zone, inclined plate Space between III device 12 of I device 10 and inclined plate is inclined plate sedimentation area, III device of inclined plate, 12 right side to horizontal 5 right end side of groove body Space between plate medial surface is low concentration material area;Black water is entered by feeding device 9 in horizontal groove body 5, through PLC control cabinet 14 control and detection, when the height of horizontal 5 inside bottom sediment of groove body is more than high concentration liquid level M lines, transmission device 7 opens It is dynamic, discharge scraper plate is driven, to left movement, by the material of more than diameter 4mm and to be mingled with part carefully in the bottom of horizontal groove body 5 Material is expelled to raw coal belt from I device 1 of discharge;When discharge scraper plate drives partial material by II device 3 of discharge, in discharge II Under the action of several spray headers of device 3, part fine granular materials are discharged from the discharge flange of II device 3 of discharge;Discharge is scraped Plate is in the bottom of horizontal groove body 5 to left movement, and the material concentration of horizontal 5 bottom left end of groove body is higher and higher, horizontal 5 bottom of groove body The material concentration of right end is more and more lower, and after the large granular materials discharge in black water, the thin material of part high concentration is stored in height Concentration material area is discharged by III device 6 of discharge;The inclined plate of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate Settlement action, overflow water from the upper end of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate respectively overflow to the right to Low concentration material area is recycled by drainage arrangement 13 to circulating water pool.
The bottom surface of inclination groove body 2 and the angle α of horizontal plane is 40 °~50 °, and main function is:
Discharge scraper plate is by the material of more than diameter 4mm and is mingled with the thin material in part and is moved upwards along angle α, is convenient for Dehydration makes material more than diameter 4mm and is mingled with the thin material in part convenient for belt-conveying.
The upper end of I plate 4 of backgauge is higher by overflow liquid level N line 200mm~300mm, and main function is:Discharge scraper plate In the bottom of horizontal groove body 5 to left movement, the left side concentration of I plate 4 of backgauge is higher and higher, and the material on discharge scraper plate will not be by water Influence and come off, improve discharge efficiency.
The main function of II device 3 of discharge is:Under the action of several spray headers of II device 3 of discharge, portion The discharge flange of fine granular materials from II device 3 of discharge is divided to be expelled to agitator, is filtered by Pulp pump directly into filter press, filter Cake drains into raw coal belt, and filtrate water to circulating water pool recycles, and further improves clear digging efficiency.
The main function of III device 6 of discharge is:Discharge scraper plate in the bottom of horizontal groove body 5 to left movement, it is horizontal The material concentration of 5 bottom left end of groove body is higher and higher, the material of more than diameter 4mm and is mingled with the thin material in part and passes through discharge I device 1 is discharged, and the thin material of part high concentration is stored in high concentration material area, and agitator is expelled to by III device 6 of discharge, It is filtered by Pulp pump directly into filter press, filter cake drains into raw coal belt, and filtrate water to circulating water pool is recycled, further carried High definition digs efficiency.
The angle β of I device 10 of inclined plate, II device 11 of inclined plate and III device 12 of inclined plate and horizontal plane for 55 °~ 65 °, principle is settled using inclined-plane, further speeds up material sedimentation.
The stainless steel that I device 10 of inclined plate includes inclined plate body I and is bolted mounted on upper end filters Net I, the height of stainless steel filter screen I is convenient for adjusting, and the aperture of stainless steel filter screen I is 0.2~0.3mm, stainless steel filter screen I Percent of pass be 20%;The main function of stainless steel filter screen I is:Coarse granule material is effectively prevented by the way that it is heavy to further improve Effect drops.
II device 11 of inclined plate includes inclined plate body II and stainless steel mistake mounted on upper end is bolted Strainer II, the height of stainless steel filter screen II is convenient for adjusting, and the aperture of stainless steel filter screen II is 0.1~0.2mm, stainless steel mistake The percent of pass of strainer II is 30%;The main function of stainless steel filter screen II is:Coarse granule material is effectively prevented by further Improve effect of settling.
III device 12 of inclined plate includes inclined plate body III and stainless steel mistake mounted on upper end is bolted Strainer III, the height of stainless steel filter screen III is convenient for adjusting, and the aperture of stainless steel filter screen III is 0.005~0.1mm, stainless steel The percent of pass of filter screen III is 40%;The main function of stainless steel filter screen III is:Coarse granule material is effectively prevented by into one Step improves effect of settling.
I plate 4 of backgauge, II plate 8 of backgauge, the material of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate Expect for stainless steel.
The upper surface of I device 10 of inclined plate is higher 20mm~30mm than the upper surface of II device 11 of inclined plate.
The upper surface of II device 11 of inclined plate is higher 20mm~30mm than the upper surface of III device 12 of inclined plate.
Further, the bottom sediment of horizontal groove body 5 is more, when discharge scraper plate is immovable, using high-pressure blast or high pressure water Stir bottom.
The beneficial effects of the invention are as follows:
(1) using three-level discharge, clear digging efficiency is improved, the first order is by the material of more than diameter 4mm and is mingled with portion Thin material is divided to be expelled to raw coal belt from I device 1 of discharge;The second level, in the effect of several spray headers of II device 3 of discharge Under, the discharge flange of part fine granular materials from II device 3 of discharge is expelled to agitator, by Pulp pump directly into filter press mistake Filter, filter cake drain into raw coal belt, and filtrate water to circulating water pool recycles, and further improve clear digging efficiency;The third level, part are high The thin material of concentration is stored in high concentration material area, agitator is expelled to by III device 6 of discharge, by Pulp pump directly into pressure Filter filters, and filter cake drains into raw coal belt, and filtrate water to circulating water pool recycles, and further improves clear digging efficiency, shortens one Secondary property digs clearly the time.
(2) I plate 4 of backgauge, II plate 8 of backgauge, I device 10 of inclined plate and III device 12 of inclined plate divide the inner cavity of horizontal groove body 5 Four areas are divided into, settles and handles convenient for material.
(3) III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate is equipped in horizontal 5 inside of groove body, using oblique Face settles principle, further speeds up the sedimentation of ore pulp, improves treatment effeciency.
(4) black water is entered by feeding device 9 in horizontal groove body 5, and level is worked as in control and detection through PLC control cabinet 14 When the height of 5 inside bottom sediment of groove body is more than high concentration liquid level M lines, transmission device 7 just starts, and reduces the frequency of dibhole digging Rate.
(5) the equipment non-secondary pollution, improves the quality dug clearly.
(6) equipment is existing scrapes the effect of mud discharge, and plays the role of first stage precipitation tank, reduces the clear of postorder sedimentation basin Dig number.
Description of the drawings
It in order to illustrate the technical solutions in the embodiments of the present application or in the prior art more clearly, below will be to embodiment or existing There is attached drawing needed in technology description to be briefly described, it should be apparent that, the accompanying drawings in the following description is only this Some embodiments described in application, for those of ordinary skill in the art, without creative efforts, It can also be obtained according to these attached drawings other attached drawings.
Attached drawing 1 is that a kind of coal mine underground sump of the present invention digs clearly standby front view;
Attached drawing 2 is that a kind of coal mine underground sump of the present invention digs clearly standby top view;
Attached drawing 3 is that a kind of coal mine underground sump of the present invention digs clearly standby middle horizontal 5 front view left end of groove body amplification Figure;
Attached drawing 4 is that a kind of coal mine underground sump of the present invention digs clearly standby middle horizontal 5 front view right end of groove body amplification Figure;
Attached drawing 5 is that a kind of coal mine underground sump of the present invention digs clearly A-A sectional views in standby front view;
Attached drawing 6 is that a kind of coal mine underground sump of the present invention digs clearly B-B sectional views in standby front view;
Attached drawing 7 is that a kind of coal mine underground sump of the present invention digs clearly C-C sectional views in standby front view;
Attached drawing 8 is that a kind of coal mine underground sump of the present invention digs clearly enlarged drawing at I in standby front view;In figure:
1-discharge, I device 2-tilt, 3-discharge of groove body, II 4-backgauge of device, I plate 5-horizontal 6-discharge of groove body III 7-transmission device of device, 8-backgauge, II 9-feeding device of plate, 10-inclined plate, I 11-inclined plate of device, II device 12- III device 13-drainage arrangement, 14-PLC control cabinet of inclined plate
Specific embodiment
Below in conjunction with the attached drawing in the embodiment of the present invention, the technical solution in the embodiment of the present invention is carried out clear, complete Site preparation describes, it is clear that described embodiment is only some embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, those of ordinary skill in the art are obtained every other without making creative work Embodiment belongs to the scope of protection of the invention.
As shown in Figure 1, Figure 2, shown in Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8, a kind of coal mine underground sump of the present invention is clear Dig it is standby, including tilt groove body 2, horizontal groove body 5, transmission device 7, PLC control cabinet 14;Groove body 2 is tilted to use with horizontal groove body 5 Flange bolt connects;Transmission device 7 includes motor reducer, final drive shaft, driven shaft, driving-chain etc.;It is characterized in that:It further includes I device 1 of discharge, II device 3 of discharge, I plate 4 of backgauge, III device 6 of discharge, II plate 8 of backgauge, feeding device 9, I device 10 of inclined plate, II device 11 of inclined plate, III device 12 of inclined plate, drainage arrangement 13;I device 1 of discharge includes being mounted on the discharge for tilting 2 left end of groove body Chute, with the discharge scraper plate that several width are 4~6mm long slot bores, both ends and the driving-chain of discharge scraper plate be bolted, transmission Driving-chain in device 7 drives the movement of discharge scraper plate, realizes discharge function;II device 3 of discharge, which is included in, tilts 2 trough floor of groove body Be open welding chute body, mounted on several spray headers of chute body downside, mounted on chute body the lowermost Discharge flange, sieve plate, the screen frame of mounted sieve, screen frame are mounted on the inside of chute body and with tilting plane in 2 trough floor of groove body Concordantly;I plate of backgauge, 4 rear and front end is welded with tilting on the inside of 2 both side plate of groove body, and the upper end of I plate 4 of backgauge is higher by overflow liquid level N lines 200mm~300mm, the lower end of I plate 4 of backgauge are higher by high concentration liquid level M lines 200mm~300mm;III device 6 of discharge is mounted on water It rises as high as the banks the outside of front end two of body 5, below the high concentration liquid level M lines at 200mm~300mm;II plate of backgauge, 8 rear and front end and level Welding on the inside of 5 both side plate of groove body, the upper end of II plate 8 of backgauge are higher by overflow liquid level N line 200mm~300mm, under II plate 8 of backgauge End is higher by high concentration liquid level M lines 200mm~300mm;Feeding device 9 includes entering mounted on two outside of the middle part of horizontal groove body 5 Expects pipe, the vertical diversion channel on the inside of the middle part of horizontal groove body 5 two and inclination diversion channel;I device 10 of inclined plate, inclined plate II fill It puts the rear and front end of 11 and III device 12 of inclined plate and tilts welding on the inside of 2 both side plate of groove body;I device 10 of inclined plate, inclined plate II fill Put 11 and the upper end of III device 12 of inclined plate be higher by overflow liquid level N line 200mm~300mm, I device 10 of inclined plate, II device of inclined plate 11 and the lower end of III device 12 of inclined plate be higher by high concentration liquid level M lines 200mm~300mm;Drainage arrangement 13 includes being mounted on water Rise as high as the banks body 5 the outside of rear end two discharge nozzle, the vertical-overflow slot mounted on two inside of the rear end of horizontal groove body 5, vertical-overflow The downflow weir of slot is concordant with overflow liquid level N lines;I plate 4 of backgauge, II plate 8 of backgauge, I device 10 of inclined plate and III device 12 of inclined plate will The inner cavity of horizontal groove body 5 is divided into four areas, and the space between II plate 8 of I plate 4 of backgauge and backgauge is high concentration material area, backgauge Space between I device 10 of II plate 8 and inclined plate is pan feeding decanting zone, the space between III device 12 of I device 10 of inclined plate and inclined plate For inclined plate sedimentation area, III device of inclined plate, 12 right side to the space between horizontal 5 right end side plate interior sides face of groove body is low concentration material Area;Black water is entered by feeding device 9 in horizontal groove body 5, control and detection through PLC control cabinet 14, when horizontal 5 inside of groove body When the height of bottom sediment is more than high concentration liquid level M lines, transmission device 7 starts, and drives discharge scraper plate at the bottom of horizontal groove body 5 Portion by the material of more than diameter 4mm and is mingled with the thin material in part and is expelled to raw coal belt from I device 1 of discharge to left movement; When discharge scraper plate drives partial material by II device 3 of discharge, under the action of several spray headers of II device 3 of discharge, portion Fine granular materials is divided to be discharged from the discharge flange of II device 3 of discharge;Discharge scraper plate is in the bottom of horizontal groove body 5 to left movement, water Rise as high as the banks 5 bottom left end of body material concentration it is higher and higher, the material concentration of horizontal 5 bottom right end of groove body is more and more lower, black water In large granular materials discharge after, the thin material of part high concentration is stored in high concentration material area, passes through III device of discharge, 6 row Go out;The inclined plate sedimentation effect of III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate, overflow water is from I device of inclined plate 10th, overflow to the right to low concentration material area, passes through drainage arrangement respectively for the upper end of III device 12 of II device 11 of inclined plate and inclined plate 13 to circulating water pool recycle.
The main function of II device 3 of discharge is:Under the action of several spray headers of II device 3 of discharge, portion The discharge flange of fine granular materials from II device 3 of discharge is divided to be expelled to agitator, is filtered by Pulp pump directly into filter press, filter Cake drains into raw coal belt, and filtrate water to circulating water pool recycles, and further improves clear digging efficiency.
The main function of III device 6 of discharge is:Discharge scraper plate in the bottom of horizontal groove body 5 to left movement, it is horizontal The material concentration of 5 bottom left end of groove body is higher and higher, the material of more than diameter 4mm and is mingled with the thin material in part and passes through discharge I device 1 is discharged, and the thin material of part high concentration is stored in high concentration material area, and agitator is expelled to by III device 6 of discharge, It is filtered by Pulp pump directly into filter press, filter cake drains into raw coal belt, and filtrate water to circulating water pool is recycled, further carried High definition digs efficiency.
III device 12 of I device 10 of inclined plate, II device 11 of inclined plate and inclined plate settles principle, into one using inclined-plane Step accelerates material sedimentation.

Claims (9)

1. a kind of coal mine underground sump dig clearly it is standby, including tilt groove body (2), horizontal groove body (5), transmission device (7), PLC control Cabinet (14) processed;Groove body (2) is tilted to be connected using flange bolt with horizontal groove body (5);Transmission device (7) include motor reducer, Final drive shaft, driven shaft, driving-chain etc.;It is characterized in that:Further include I device of discharge (1), II device of discharge (3), I plate of backgauge (4), III device of discharge (6), II plate of backgauge (8), feeding device (9), I device of inclined plate (10), II device of inclined plate (11), inclined plate III Device (12), drainage arrangement (13);I device of discharge (1), which includes being mounted on, tilts the discharge chute of groove body (2) left end, with number A width is the discharge scraper plate of 4~6mm long slot bores, and both ends and the driving-chain of discharge scraper plate are bolted, in transmission device (7) Driving-chain drives the movement of discharge scraper plate, realizes discharge function;II device of discharge (3), which is included in, tilts groove body (2) trough floor opening The chute body of welding, mounted on several spray headers of chute body downside, mounted on chute body the lowermost discharge Flange, sieve plate, the screen frame of mounted sieve, screen frame are mounted on the inside of chute body and are put down with tilting plane in groove body (2) trough floor Together;I plate of backgauge (4) rear and front end is welded with tilting on the inside of groove body (2) both side plate, and the upper end of I plate of backgauge (4) is higher by overflow liquid level N line 200mm~300mm, the lower end of I plate of backgauge (4) are higher by high concentration liquid level M lines 200mm~300mm;III device of discharge (6) is pacified Mounted in the outside of the front end of horizontal groove body (5) two, below the high concentration liquid level M lines at 200mm~300mm;II plate of backgauge (8) is front and rear With being welded on the inside of horizontal groove body (5) both side plate, the upper end of II plate of backgauge (8) is higher by overflow liquid level N line 200mm~300mm at both ends, The lower end of II plate of backgauge (8) is higher by high concentration liquid level M lines 200mm~300mm;Feeding device (9) includes being mounted on horizontal groove body (5) feeding pipe, the vertical diversion channel mounted on two inside of the middle part of horizontal groove body (5) and the inclination in two outside of middle part shunt Slot;The rear and front end of I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) is with tilting groove body (2) both sides Welding on the inside of plate;The upper end of I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) is higher by overflow liquid level N Line 200mm~300mm, the lower end of I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) are higher by high concentration Liquid level M lines 200mm~300mm;Drainage arrangement (13) includes the discharge nozzle mounted on two outside of the rear end of horizontal groove body (5), peace Vertical-overflow slot mounted in two inside of the rear end of horizontal groove body (5), the downflow weir of vertical-overflow slot are concordant with overflow liquid level N lines; I plate of backgauge (4), II plate of backgauge (8), I device of inclined plate (10) and III device of inclined plate (12) separate the inner cavity of horizontal groove body (5) For four areas, the space between I plate of backgauge (4) and II plate of backgauge (8) is high concentration material area, and II plate of backgauge (8) is filled with inclined plate I The space between (10) is put as pan feeding decanting zone, the space between I device of inclined plate (10) and III device of inclined plate (12) sinks for inclined plate Area drops, and III device of inclined plate (12) right side to the space between horizontal groove body (5) right end side plate interior sides face is low concentration material area;Coal Muddy water is by feeding device (9) interior, control and detection through PLC control cabinet (14), when horizontal groove body (5) into horizontal groove body (5) When the height of inside bottom sediment is more than high concentration liquid level M lines, transmission device (7) starts, and drives discharge scraper plate in level trough The bottom of body (5) by the material of more than diameter 4mm and is mingled with the thin material in part from I device of discharge (1) discharge to left movement To raw coal belt;When discharge scraper plate drives partial material by II device of discharge (3), in several sprays of II device of discharge (3) Under the action of water pipe, part fine granular materials are discharged from the discharge flange of II device of discharge (3);Discharge scraper plate is in horizontal groove body (5) bottom is to left movement, and the material concentration of horizontal groove body (5) bottom left end is higher and higher, horizontal groove body (5) bottom right end Material concentration is more and more lower, and after the large granular materials discharge in black water, the thin material of part high concentration is stored in high concentration object Expect area, discharged by III device of discharge (6);I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) it is oblique Plate settlement action, overflow water from the upper end of I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) respectively to Right overflow is recycled to low concentration material area by drainage arrangement (13) to circulating water pool.
2. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:The inclination groove body (2) bottom surface and the angle α of horizontal plane is 40 °~50 °.
3. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:I plate of backgauge (4) Upper end be higher by overflow liquid level N lines 200mm~300mm.
4. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:I device of inclined plate (10) include inclined plate body I and stainless steel filter screen I mounted on upper end is bolted, the height of stainless steel filter screen I Degree is convenient for adjusting, and the aperture of stainless steel filter screen I is 0.2~0.3mm, and the percent of pass of stainless steel filter screen I is 20%.
5. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:II device of inclined plate (11) wraps It includes inclined plate body II and stainless steel filter screen II mounted on upper end is bolted, the height of stainless steel filter screen II is just In adjusting, the aperture of stainless steel filter screen II is 0.1~0.2mm, and the percent of pass of stainless steel filter screen II is 30%.
6. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:III device of inclined plate (12) include inclined plate body III and stainless steel filter screen III mounted on upper end is bolted, stainless steel filter screen III Highly convenient for adjusting, the aperture of stainless steel filter screen III is 0.005~0.1mm, and the percent of pass of stainless steel filter screen III is 40%.
7. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:I plate of backgauge (4), the material of II plate of backgauge (8), I device of inclined plate (10), II device of inclined plate (11) and III device of inclined plate (12) is stainless steel.
8. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:I device of inclined plate (10) upper surface is higher 20mm~30mm than the upper surface of II device of inclined plate (11).
9. a kind of coal mine underground sump according to claim 1 digs clearly standby, it is characterised in that:II device of inclined plate (11) upper surface is higher 20mm~30mm than the upper surface of III device of inclined plate (12).
CN201810038492.1A 2018-01-13 2018-01-13 Underground coal mine sump dredging equipment Active CN108049913B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810038492.1A CN108049913B (en) 2018-01-13 2018-01-13 Underground coal mine sump dredging equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810038492.1A CN108049913B (en) 2018-01-13 2018-01-13 Underground coal mine sump dredging equipment

Publications (2)

Publication Number Publication Date
CN108049913A true CN108049913A (en) 2018-05-18
CN108049913B CN108049913B (en) 2024-05-10

Family

ID=62126730

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810038492.1A Active CN108049913B (en) 2018-01-13 2018-01-13 Underground coal mine sump dredging equipment

Country Status (1)

Country Link
CN (1) CN108049913B (en)

Citations (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB254735A (en) * 1925-07-06 1927-11-01 Rembrandt Peale Improved means for conveying and loading material, particularly in mines
GB508339A (en) * 1938-07-26 1939-06-29 Clifton Walter Livingston Improvements in and relating to mineral classifier machines
US2277053A (en) * 1936-08-31 1942-03-24 Delaware Chemical Engineering Apparatus for recovery of liquids from solids
SU1742422A1 (en) * 1990-11-19 1992-06-23 Государственный Проектный Институт "Южгипрошахт" System of mine water control at drainage level
CN1676879A (en) * 2005-04-15 2005-10-05 中国矿业大学 Mine water sump duff fluid automatic cleaning and treating method and apparatus
CN2737840Y (en) * 2004-10-29 2005-11-02 单衍刚 Water sump coal mud dredger
KR100714092B1 (en) * 2006-07-21 2007-05-04 삼창기업 주식회사 Sedment guider for total water treatment system, and device for removing the sink sedment of total water treatment system
CN101070762A (en) * 2007-06-13 2007-11-14 暴万林 Coal-mine water-house coal mud clearing and conveying apparatus
CN101109286A (en) * 2007-08-24 2008-01-23 中国矿业大学 System for cleaning water sump settling down well
CN101173522A (en) * 2006-11-03 2008-05-07 北京中矿机电工程技术研究所 Down-hole water warehouse coal slurry digging device
CN101200905A (en) * 2006-12-16 2008-06-18 平顶山煤业(集团)有限责任公司 Method for cleaning mine sump deposit and sump silt cleaner
CN201090242Y (en) * 2007-09-04 2008-07-23 中国矿业大学 Floatage type output pipe for cleaning mine underground water storehouse
CN101486012A (en) * 2008-12-30 2009-07-22 辽宁天安矿山科技有限公司 Underground mechanical movable sieve jig
CN101496964A (en) * 2009-02-02 2009-08-05 河南理工大学 Concentrating and precipitating device under mine and water well
CN101503965A (en) * 2009-03-06 2009-08-12 徐州天科机械制造有限公司 Coal slurry excavating and processing method for coal mine water warehouse
CN201437600U (en) * 2009-07-10 2010-04-14 北京中矿环保科技股份有限公司 Dredging conveyer
RU2009125944A (en) * 2009-07-06 2011-01-20 Василий Витаутасович Сенкус (RU) TECHNOLOGY FOR CLEANING INDUSTRIAL DISCHARGES AND SEWAGE
CN201810346U (en) * 2010-10-09 2011-04-27 永城煤电控股集团有限公司 Real-time automatic dredging device for coal-mine underground water sump
KR101234470B1 (en) * 2012-07-06 2013-02-18 현대아산 주식회사 System for processing dredged
KR20130047883A (en) * 2011-11-01 2013-05-09 한국과학기술연구원 Apparatus and method for sewer overflows treatment
CN203603980U (en) * 2013-12-13 2014-05-21 西安钧泰环保设备工程有限公司 Continuous and automatic desilting system under water body of underground huge water bins
CN206033341U (en) * 2016-08-16 2017-03-22 宁夏鑫睿通矿山机械设备有限公司 Coal slime water treatment system deposits device with circulation
CN208057161U (en) * 2018-01-13 2018-11-06 山东莱芜煤矿机械有限公司 A kind of coal mine underground sump digs clearly standby

Patent Citations (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB254735A (en) * 1925-07-06 1927-11-01 Rembrandt Peale Improved means for conveying and loading material, particularly in mines
US2277053A (en) * 1936-08-31 1942-03-24 Delaware Chemical Engineering Apparatus for recovery of liquids from solids
GB508339A (en) * 1938-07-26 1939-06-29 Clifton Walter Livingston Improvements in and relating to mineral classifier machines
SU1742422A1 (en) * 1990-11-19 1992-06-23 Государственный Проектный Институт "Южгипрошахт" System of mine water control at drainage level
CN2737840Y (en) * 2004-10-29 2005-11-02 单衍刚 Water sump coal mud dredger
CN1676879A (en) * 2005-04-15 2005-10-05 中国矿业大学 Mine water sump duff fluid automatic cleaning and treating method and apparatus
KR100714092B1 (en) * 2006-07-21 2007-05-04 삼창기업 주식회사 Sedment guider for total water treatment system, and device for removing the sink sedment of total water treatment system
CN101173522A (en) * 2006-11-03 2008-05-07 北京中矿机电工程技术研究所 Down-hole water warehouse coal slurry digging device
CN101200905A (en) * 2006-12-16 2008-06-18 平顶山煤业(集团)有限责任公司 Method for cleaning mine sump deposit and sump silt cleaner
CN101070762A (en) * 2007-06-13 2007-11-14 暴万林 Coal-mine water-house coal mud clearing and conveying apparatus
CN101109286A (en) * 2007-08-24 2008-01-23 中国矿业大学 System for cleaning water sump settling down well
CN201090242Y (en) * 2007-09-04 2008-07-23 中国矿业大学 Floatage type output pipe for cleaning mine underground water storehouse
CN101486012A (en) * 2008-12-30 2009-07-22 辽宁天安矿山科技有限公司 Underground mechanical movable sieve jig
CN101496964A (en) * 2009-02-02 2009-08-05 河南理工大学 Concentrating and precipitating device under mine and water well
CN101503965A (en) * 2009-03-06 2009-08-12 徐州天科机械制造有限公司 Coal slurry excavating and processing method for coal mine water warehouse
RU2009125944A (en) * 2009-07-06 2011-01-20 Василий Витаутасович Сенкус (RU) TECHNOLOGY FOR CLEANING INDUSTRIAL DISCHARGES AND SEWAGE
CN201437600U (en) * 2009-07-10 2010-04-14 北京中矿环保科技股份有限公司 Dredging conveyer
CN201810346U (en) * 2010-10-09 2011-04-27 永城煤电控股集团有限公司 Real-time automatic dredging device for coal-mine underground water sump
KR20130047883A (en) * 2011-11-01 2013-05-09 한국과학기술연구원 Apparatus and method for sewer overflows treatment
KR101234470B1 (en) * 2012-07-06 2013-02-18 현대아산 주식회사 System for processing dredged
CN203603980U (en) * 2013-12-13 2014-05-21 西安钧泰环保设备工程有限公司 Continuous and automatic desilting system under water body of underground huge water bins
CN206033341U (en) * 2016-08-16 2017-03-22 宁夏鑫睿通矿山机械设备有限公司 Coal slime water treatment system deposits device with circulation
CN208057161U (en) * 2018-01-13 2018-11-06 山东莱芜煤矿机械有限公司 A kind of coal mine underground sump digs clearly standby

Also Published As

Publication number Publication date
CN108049913B (en) 2024-05-10

Similar Documents

Publication Publication Date Title
CN210145564U (en) Sedimentation tank for sewage treatment
CN108266224A (en) A kind of coal mine underground sump digs clearly process and its equipment
CN108978750A (en) A kind of hydraulic engineering river corridor restoration Accrete clearing device
CN208057161U (en) A kind of coal mine underground sump digs clearly standby
CN107261635A (en) A kind of sewage classification cleaning environmental protecting device
CN208267902U (en) A kind of coal mine underground sump digs clearly the equipment combination of process
CN215310773U (en) Integrated multifunctional solid-liquid separator
CN110448940B (en) Mud water treatment system and mud water treatment method for water purification plant
CN106703104B (en) Automatic dredging system for water sump
CN201510782U (en) Settling pond with sludge discharge device
CN201678502U (en) Efficient scraper inclined-tube settling tank
CN108049913A (en) A kind of coal mine underground sump digs clearly standby
CN116747996A (en) Automatic large coal floating and sinking device and method
CN116282319A (en) Impurity separation equipment for innocent treatment of river sediment
CN214809128U (en) Mine underworkings sewage deposits filtration system
CN115387418B (en) Method for dredging river channel and drying silt
CN112314986B (en) Agricultural product processing sweet potato cleaning device capable of recycling moisture
CN111359304B (en) Slag water recovery system and recovery method for waste incineration slag separation plant
CN206828172U (en) A kind of equipment for washed-out sand sewage treatment process
US2309002A (en) Apparatus for sewage treatment
CN111470675A (en) Water diversion device for mining equipment
CN219764573U (en) Underground coal slime water dredging machine for coal mine
CN216629996U (en) A washing wastewater filters recovery system for concrete mixing plant
CN219363437U (en) Ceramic wastewater treatment system
CN216837377U (en) Underground coal slurry water concentration and filtration device for coal mine and coal water separation system

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant