CN203489611U - Vacuum siphoning type wringing machine - Google Patents
Vacuum siphoning type wringing machine Download PDFInfo
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- CN203489611U CN203489611U CN201320624703.2U CN201320624703U CN203489611U CN 203489611 U CN203489611 U CN 203489611U CN 201320624703 U CN201320624703 U CN 201320624703U CN 203489611 U CN203489611 U CN 203489611U
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- squeeze roll
- slide rail
- water
- rail column
- pump
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Abstract
Provided is a vacuum siphoning type wringing machine. For overcoming the existing shortcomings of cleaning and rust preventing of metallurgical plates, a metal roller core shaft body is changed into a sieve-shaped cavity roller core shaft body, a plurality of through holes are uniformly formed in the surface of the shaft body, the shaft body is sleeved with a roller shell, non-woven fabric porous absorption is carried out firstly, vacuum negative pressure is utilized for sucking gas and water solution in the inner cavity of the sieve-shaped cavity roller core shaft body, the gas and water solution flows back to a gas and water separator through a pipeline, gas and water of impurity sewage of the gas and water solution are separated, pure water flows back into a water ring vacuum pump and is utilized again, the redundant water is drained through an overflow valve, and therefore the optimum wringing effect of the plates can be achieved. The mechanical principle of the vacuum siphoning type wringing machine is simple, the mechanical mode is mainly adopted in the transmission mode, the power comes from a motor, and an upper roller and a lower roller are directly driven, and roll and carry out extrusion in opposite directions. The wringing machine is small in model, convenient to use and high in practical value.
Description
Technical field
The utility model belongs to plant equipment manufacturing technology field, be specifically related to a kind of vacuum siphon formula squeezing machine, for cold rolling unit, pickling line, copper material shear line, sheet material process, clean and antirust processing line, and the fields such as water squeezing, glass work water squeezing and roller class manufacturing industry before weaving adhesive-bonded fabric drying section.
Background technology
In metallurgy strip production process, when strip is removed oxide layer after rolling, all use alkalescence, neutrality or acid solution clean plate face until finished product all adopts wet-treating at present, have the drawbacks such as strip remained on surface solution layer, strip vestige and rust staining.At home, scarfing cinder after rolling metal plate and tape, cleaning and antirust, adopt traditional wet processing process always, until Introduced From Abroad roller shell in the latter stage nineties (nonwoven), be synthetic fibers and abrasive, through polymeric adhesives, be bonded as one, form and to there is cleaning toughness, Nai Hua Fu Erosion, long-acting stability and extract material, be characterized in thering is high roll surface coefficient of friction; Environment for use is PH3-10; Operating pressure 30-100Pa; Running temperature 40-200F(Fahrenheit temperature); In addition inner loose structure promotes and cleans and extract effect, and does not damage plate surface quality.Preparation method is, first nonwoven made to roller shell with mould pressing process, is sleeved on the roller core axis body that metal makes, and with the pressure of given parameters, makes roller shell surface reach technological requirement hardness, is squeeze roll; Squeeze roll in use, when roll body surface nonwoven is inhaled erosion saturation state, can cause cleaning fluid outflow, plate face to leave the defects such as vestige and decorative pattern rust class.Above-mentioned defect, has restricted the further use of squeeze roll, is therefore necessary to improve.
Utility model content
The technical problem that the utility model solves: a kind of vacuum siphon formula squeezing machine is provided, for existing metallurgical plate face, clean and antirust weak point, by metallic roll mandrel structural reform, it is cavity sieve shape roller core axis body, the uniform some through holes in axis body surface, again roller shell is sleeved on axis body, first by nonwoven porous, adsorbed, and then aspirate by negative pressure of vacuum the air water solution that cavity sieves shape roller core shaft intracoelomic cavity, via pipeline, be back in moisture trap, its impurity dirt gas-water separation is gone out, water purification is got back in water ring vacuum pump and is again utilized, unnecessary water is drained through overflow valve, thereby plate face is extracted and reached optimum efficiency.
The technical solution adopted in the utility model: vacuum siphon formula squeezing machine, there is frame and buncher, both sides, described frame upper surface are respectively equipped with slide rail column I and slide rail column II, initiatively squeeze roll two ends are supported on bottom between slide rail column I and slide rail column II by frame bearing bracket stand I, passive squeeze roll two ends are supported on top between slide rail column I and slide rail column II by frame bearing bracket stand II, between described active squeeze roll and passive squeeze roll, leave the gap and both roller core shafts that for strip, pass through and be all shaped with cavity, on the cavity wall of described roller core shaft, be shaped with the through hole that a plurality of profits by roller shell absorption flow into cavity, described buncher output shaft is provided with drive sprocket, described active squeeze roll one end is provided with by movable sprocket, described drive sprocket is driven initiatively squeeze roll to rotate by chain drive by movable sprocket, and described active squeeze roll then drives passive squeeze roll that the two reverse rotation is completed and extracts action, connecting hose I arrival end is communicated with active squeeze roll cavity by being arranged on the initiatively swivel joint I of the squeeze roll other end, connecting hose II arrival end is communicated with passive squeeze roll cavity by being arranged on the swivel joint II of passive squeeze roll end, after described connecting hose I and the connecting hose II port of export collect, entering a mouthful arrival end with pump is connected, described pump enters hole exits end and is communicated with water ring vacuum pump, on described water ring vacuum pump, be also provided with pump discharge, the described pump discharge port of export is connected with moisture trap arrival end, the water out end of described moisture trap is flowed into water ring vacuum pump or is flowed into water tank by overflow valve by return duct.
Further, described roller shell inner chamber wall is shaped with a plurality of projections, is shaped with a plurality of grooves and suitable with projection on described roller core shaft excircle.
Further, described frame upper end is also provided with protects window frame, described in protect window frame upper end and be provided with slide rail column I, slide rail column II, protective cover that initiatively squeeze roll and passive squeeze roll cover.
Further, described slide rail column I and slide rail column II upper surface are equipped with fine-tuning frame bearing bracket stand I and frame bearing bracket stand II gap and reach and adjust the initiatively manual adjustment wheel of squeeze roll and passive squeeze roll gap.
Further, described frame upper end lower surface is provided with drip tray, and described drip tray is communicated with water tank.
Further, described connecting hose I enters a mouthful arrival end by check-valves and pump after collecting with the connecting hose II port of export and is connected.
Further, cold water access port is communicated with water ring vacuum pump by magnetic valve.
The utility model advantage compared with prior art:
1, compression roller is with itself porous and vacuum suction dual-use function, can be easily that the solution suction on plate face is clean, complete polished and cleaned and antirust effect;
2, as long as roll surface contacts with plate face, squeeze roll just can provide good sealing and squeezing effect;
3, porous and the elasticity of jacking (nonwoven), the interactive effect of auxiliary vacuum draw makes the extra raising of effect;
4, when squeeze roll disengaging plate zone face contacts, those are compressed and by liquid, filled up surface portion and just can expand, and in this state, empty part can discharge absorption again, and is repeatedly to discharge, repeatedly absorb, continuously remove part surplus solution;
5, squeeze roll surface is sheared metal plate burr and scratches, and due to group water solution effect, makes more soft roll surface scratch the effect that has self-healing, extends squeeze roll service life;
6, can resist the corrosion of various chemical reagent, the roller shell of only making with a kind of material, just can meet varying environment, the different use functions that require, and versatility is high.
Accompanying drawing explanation
Fig. 1 is the utility model structural front view;
Fig. 2 is the utility model structure left view;
Fig. 3 is squeeze roll structural representation of the present utility model;
Fig. 4 is roller core shaft structural representation of the present utility model;
Fig. 5 is roller shell structural representation of the present utility model.
The specific embodiment
Below in conjunction with accompanying drawing 1-5, a kind of embodiment of the present utility model is described.
Vacuum siphon formula squeezing machine, there is frame 1 and buncher 2, described frame 1 both sides, upper surface are respectively equipped with slide rail column I 3 and slide rail column II 4, initiatively squeeze roll 6 two ends are supported on bottom between slide rail column I 3 and slide rail column II 4 by frame bearing bracket stand I 5, passive squeeze roll 7 two ends are supported on top between slide rail column I 3 and slide rail column II 4 by frame bearing bracket stand II 8, between described active squeeze roll 6 and passive squeeze roll 7, leave the gap and both roller core shafts 14 that for strip, pass through and be all shaped with cavity 36, on the cavity wall of described roller core shaft 14, be shaped with the through hole 26 that a plurality of profits by roller shell 25 absorption flow into cavity 36, described roller shell 25 inner chamber walls are shaped with a plurality of protruding 27, are shaped with a plurality of grooves 28 and suitable with projection 27 on described roller core shaft 14 excircles, above-mentioned frame 1 upper end is also provided with protects window frame 29, described in protect window frame 29 upper ends and be provided with slide rail column I 3, slide rail column II 4, protective cover 30 that initiatively squeeze roll 6 and passive squeeze roll 7 cover, described slide rail column I 3 and slide rail column II 4 upper surfaces are equipped with fine-tuning frame bearing bracket stand I 5 and frame bearing bracket stand II 8 gaps reach the manual adjustment wheel 31 of adjusting active squeeze roll 6 and passive squeeze roll 7 gaps.
Described buncher 2 output shafts are provided with drive sprocket 9, described active squeeze roll 6 one end are provided with by movable sprocket 10, described drive sprocket 9 is driven by movable sprocket 10 and is driven initiatively squeeze roll 6 rotations by chain 11, and described active squeeze roll 6 then drives passive squeeze roll 7 that the two reverse rotation is completed and extracts action, connecting hose I 16 arrival ends are communicated with active squeeze roll 6 cavitys by being arranged on the initiatively swivel joint I 12 of squeeze roll 6 other ends, connecting hose II 17 arrival ends are communicated with passive squeeze roll 7 cavitys by being arranged on the swivel joint II 13 of passive squeeze roll 7 ends, described connecting hose I 16 enters mouthful 18 arrival ends by check-valves 33 and pump after collecting with connecting hose II 17 ports of export and is connected, described pump enters hole 18 ports of export and is communicated with water ring vacuum pump 19, on described water ring vacuum pump 19, be also provided with pump discharge 20, described pump discharge 20 ports of export are connected with moisture trap 21 arrival ends, the water out end of described moisture trap 21 is flowed into water ring vacuum pump 19 or is flowed into water tank 24 by overflow valve 23 by return duct 22, cold water access port 35 is communicated with water ring vacuum pump 19 by magnetic valve 34, described frame 1 upper end lower surface is provided with drip tray 32, and described drip tray 32 is communicated with water tank 24.
Operation principle: start power supply, buncher 2 drives drive sprocket 9 to rotate, by chain 11, drive and be arranged on being rotated by movable sprocket 10 on active squeeze roll 6 again, at the passive squeeze roll 7 of the parallel installation of active squeeze roll 6 upper position, when the passive squeeze roll 7 of active squeeze roll 6 pushes mutually, two roller rightabouts have rotated the action of extracting to strip.
Initiatively squeeze roll 6 and passive squeeze roll 7 are arranged on slide rail column by frame bearing bracket stand, manual adjustment wheel 31 is under compression spring effect, freely finely tune frame bearing bracket stand spacing and then reach the spacing of adjusting the passive squeeze roll 7 of active squeeze roll 6, be adjusted to setting pressure parameter, meet technological requirement.
When starting Water-ring vacuum pump motor 19, driven by motor is arranged on eccentric impeller in the pump housing, during starting to the water that injects certain altitude in pump.When vane rotary, water is subject to the pump housing inwall that acts on of centrifugal force to form rotation water ring, water ring lower inner surface and wheel hub are tangent, in rotary course, in water ring, table departs from wheel hub gradually, therefore between impeller blade, form enclosure space with water ring, impeller does not stop rotation, and space expands gradually, space gas pressure reduces, and gas self-priming gas port is inhaled into; At rotation certain hour, water ring inner surface is close with wheel hub gradually, and interlobate gas is discharged from from exhaust outlet.So wheel rotation, goes round and begins again and works without cessation, and pump just continuously aspirates or force feed gas.
Connecting hose I 16 arrival ends are communicated with active squeeze roll 6 cavitys by being arranged on the initiatively swivel joint I 12 of squeeze roll 6 other ends, connecting hose II 17 arrival ends are communicated with passive squeeze roll 7 cavitys by being arranged on the swivel joint II 13 of passive squeeze roll 7 ends, after described connecting hose I 16 and connecting hose II 17 ports of export collect, entering mouth 18 arrival ends with pump is connected, during for anti-shutdown, water in pump is in blast pipe pressure-acting retrieval system, check-valves 33 is housed in air inlet pipe, under water ring vacuum pump 19 duties, pump enters mouth 18 by the air water suction pump housing of squeeze roll inner chamber, through the pump discharge 20 of water ring vacuum pump 19, discharge again.
When the gas of water ring vacuum pump 19 discharges does not recycle, moisture trap 21 is installed on pump discharge 20, waste gas and with the remaining water of part enter after moisture trap 21, gas-water separation, gas is discharged by separator outlet, separated water, is discharged to water tank 24 for continue remaining water to pump from overflow valve 23 through water return pipeline.Along with the working time extends, in pump, water temperature constantly raises, now need be from cold water access port 35 supply cold water, and coolant-temperature gage when reducing work, guarantees performance and the technical indicator of water ring vacuum pump 19.
Strip is inputted between counterrotating active squeeze roll 6 and passive squeeze roll 7 through automatic driven unwind machine, and the lip-deep air water solution of strip is together brought in roller, the utlity model has dual use function; Be porous, flexible interactive effect, have again vacuum draw function in its dual-interaction effect, good sealing and squeezing effect is provided.
The utility model patent theory of mechanics is simple, the kind of drive be take machinery as main, and power resources motor, directly drives up-down rollers, and rightabout rolling extrusion is extracted type small but excellent and easy to use, has very high practical value.
Above-described embodiment, is preferred embodiment of the present utility model, is not used for limiting the utility model practical range, and the equivalence of being done with content described in the utility model claim therefore all changes, within all should being included in the utility model claim scope.
Claims (7)
1. vacuum siphon formula squeezing machine, there is frame (1) and buncher (2), it is characterized in that: described frame (1) both sides, upper surface are respectively equipped with slide rail column I (3) and slide rail column II (4), initiatively squeeze roll (6) two ends are supported on bottom between slide rail column I (3) and slide rail column II (4) by frame bearing bracket stand I (5), passive squeeze roll (7) two ends are supported on top between slide rail column I (3) and slide rail column II (4) by frame bearing bracket stand II (8), between described active squeeze roll (6) and passive squeeze roll (7), leave the gap and both roller core shafts (14) that for strip, pass through and be all shaped with cavity (36), on the cavity wall of described roller core shaft (14), be shaped with the through hole (26) that a plurality of profits by roller shell (25) absorption flow into cavity (36), described buncher (2) output shaft is provided with drive sprocket (9), described active squeeze roll (6) one end is provided with by movable sprocket (10), described drive sprocket (9) is driven by movable sprocket (10) and is driven initiatively squeeze roll (6) rotation by chain (11), and described active squeeze roll (6) then drives passive squeeze roll (7) that the two reverse rotation is completed and extracts action, connecting hose I (16) arrival end is communicated with active squeeze roll (6) cavity by being arranged on the initiatively swivel joint I (12) of squeeze roll (6) other end, connecting hose II (17) arrival end is communicated with passive squeeze roll (7) cavity by being arranged on the swivel joint II (13) of passive squeeze roll (7) end, after described connecting hose I (16) and connecting hose II (17) port of export collect, entering mouth (18) arrival end with pump is connected, described pump enters hole (18) port of export and is communicated with water ring vacuum pump (19), on described water ring vacuum pump (19), be also provided with pump discharge (20), described pump discharge (20) port of export is connected with moisture trap (21) arrival end, the water out end of described moisture trap (21) is flowed into water ring vacuum pump (19) or is flowed into water tank (24) by overflow valve (23) by return duct (22).
2. vacuum siphon formula squeezing machine according to claim 1, is characterized in that: described roller shell (25) inner chamber wall is shaped with a plurality of projections (27), is shaped with a plurality of grooves (28) and suitable with projection (27) on described roller core shaft (14) excircle.
3. vacuum siphon formula squeezing machine according to claim 1 and 2, it is characterized in that: described frame (1) upper end is also provided with protects window frame (29), described in protect window frame (29) upper end and be provided with slide rail column I (3), slide rail column II (4), protective cover (30) that initiatively squeeze roll (6) and passive squeeze roll (7) cover.
4. vacuum siphon formula squeezing machine according to claim 3, is characterized in that: described slide rail column I (3) and slide rail column II (4) upper surface are equipped with fine-tuning frame bearing bracket stand I (5) and frame bearing bracket stand II (8) gap reaches the manual adjustment wheel (31) of adjusting active squeeze roll (6) and passive squeeze roll (7) gap.
5. vacuum siphon formula squeezing machine according to claim 4, is characterized in that: described frame (1) upper end lower surface is provided with drip tray (32), and described drip tray (32) is communicated with water tank (24).
6. vacuum siphon formula squeezing machine according to claim 5, is characterized in that: described connecting hose I (16) with by check-valves (33) and pump, enter mouth (18) arrival end after connecting hose II (17) port of export collects and be connected.
7. vacuum siphon formula squeezing machine according to claim 6, is characterized in that: cold water access port (35) is communicated with water ring vacuum pump (19) by magnetic valve (34).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320624703.2U CN203489611U (en) | 2013-10-08 | 2013-10-08 | Vacuum siphoning type wringing machine |
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CN201320624703.2U CN203489611U (en) | 2013-10-08 | 2013-10-08 | Vacuum siphoning type wringing machine |
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CN203489611U true CN203489611U (en) | 2014-03-19 |
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CN201320624703.2U Withdrawn - After Issue CN203489611U (en) | 2013-10-08 | 2013-10-08 | Vacuum siphoning type wringing machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103542702A (en) * | 2013-10-08 | 2014-01-29 | 咸阳大田机械有限责任公司 | Vacuum hydrocone type squeezing machine |
-
2013
- 2013-10-08 CN CN201320624703.2U patent/CN203489611U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103542702A (en) * | 2013-10-08 | 2014-01-29 | 咸阳大田机械有限责任公司 | Vacuum hydrocone type squeezing machine |
CN103542702B (en) * | 2013-10-08 | 2016-03-09 | 咸阳大田机械有限责任公司 | Vacuum hydrocone type squeezing machine |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20140319 Effective date of abandoning: 20160309 |
|
AV01 | Patent right actively abandoned |
Granted publication date: 20140319 Effective date of abandoning: 20160309 |
|
C25 | Abandonment of patent right or utility model to avoid double patenting |