CN218554880U - Oil removing machine for steel strand - Google Patents

Oil removing machine for steel strand Download PDF

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Publication number
CN218554880U
CN218554880U CN202223001453.5U CN202223001453U CN218554880U CN 218554880 U CN218554880 U CN 218554880U CN 202223001453 U CN202223001453 U CN 202223001453U CN 218554880 U CN218554880 U CN 218554880U
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China
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oil
side plate
roller shaft
outlet
inlet
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CN202223001453.5U
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付鹏
金航华
金国喜
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Zhejiang Zhongqiao Prestress Equipment Co ltd
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Zhejiang Zhongqiao Prestress Equipment Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Abstract

The utility model discloses a steel strand wires deoiling machine, include: the oil removing device comprises a wire inlet pipe, a wire outlet pipe, an oil outlet roller shaft, an oil inlet roller shaft and an oil removing agent nozzle; the inlet pipes are horizontally arranged on the front side plate; the wire outlet pipes are horizontally arranged on the rear side plate, the wire inlet pipes and the wire outlet pipes are coaxially arranged, and the outlets of the wire inlet pipes and the inlets of the wire outlet pipes are spaced by a certain distance; the lower oil roller shaft and the upper oil roller shaft are parallel to each other and are arranged between the left side plate and the right side plate in a manner of being vertical to the axes of the wire inlet pipe and the wire outlet pipe, the lower oil roller shaft and the upper oil roller shaft respectively comprise an oil removing brush, the oil removing brush on the upper oil roller shaft is arranged in a tangent manner with the oil removing brush on the lower oil roller shaft, and the tangent point of the oil removing brush on the upper oil roller shaft and the oil removing brush on the lower oil roller shaft is just fallen on the central axis of the wire inlet pipe and the central axis of the wire outlet pipe and is positioned between the outlet of the wire inlet pipe and the inlet of the wire outlet pipe; the oil removing agent nozzle is arranged on the inner wall of the front side plate and is positioned right above the outlet of the wire inlet pipe. Can automatically and quickly remove the rust-proof grease on the steel strand.

Description

Oil removing machine for steel strand
Technical Field
The utility model relates to a construction field about pressure type prestressing without bondn anti-floating anchor rod, especially about a pressure type prestressing without bondn steel strand wires deoiling machine.
Background
At the construction earlier stage of pressure type prestressing force anti-floating anchor rod that does not have bonding, need earlier get rid of the crust of one section distance of bonding-free steel strand wires one end, because fat liquoring rust-resistant grease between steel strand wires and the crust, this layer of rust-resistant grease will influence the combination of steel strand wires and concrete, and then influences the seepage prevention effect that drains of the anchor end of whole anchor rod, consequently, must get rid of the rust-resistant grease on this section of steel strand wires totally in construction earlier stage.
The oil removal method in the prior art has many types, the most traditional oil removal method adopts manual oil removal, manual oil removal is realized by manually brushing facial yarn or a hairbrush dipped with an oil removal agent by a worker, and the manual oil removal method has the defects of huge labor cost, time and labor waste and low working efficiency, and particularly cannot meet the large-scale construction requirement; and the steel strand is easy to stab the hands of workers, and the wound is easily infected with the mixture of the degreasing agent and the antirust grease to cause wound infection. More importantly, the environment is easily polluted by the degreasing agent and the antirust oil in the degreasing process, the recovery rate of the mixture of the degreasing agent and the antirust oil is low, and the waste of the degreasing cost is large.
In addition, a professional oil removing machine can be purchased, but the oil removing machine is high in purchasing cost, high in maintenance cost and long in maintenance period, and cannot meet large-scale construction requirements. Therefore, the development of the steel strand oil removing equipment which has the advantages of simple structure, convenience in use, firmness, durability, low use and maintenance cost and contribution to recycling and utilizing the mixture of the oil removing agent and the antirust grease is urgently needed.
The information disclosed in this background section is only for enhancement of understanding of the general background of the invention and should not be taken as an acknowledgement or any form of suggestion that this information forms the prior art that is already known to a person skilled in the art.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a steel strand wires deoiling machine, it can clear away the rust-resistant grease on the steel strand wires automatically and fast, reduces environmental pollution moreover, improves the repeated reuse rate of rust-resistant grease.
In order to achieve the purpose, the utility model provides a steel strand deoiling machine, which comprises a front side plate, a rear side plate, a left side plate, a right side plate and a top plate which are arranged on a base and are mutually vertical and connected end to end; the oil removing device comprises at least two oil inlet pipes, at least two oil outlet pipes, a lower oil roller shaft, an upper oil roller shaft and at least two oil removing agent nozzles; at least two inlet pipes are horizontally arranged on the front side plate; at least two outlet pipes are horizontally arranged on the rear side plate, each inlet pipe is coaxial with one outlet pipe, and the outlet of each inlet pipe is a certain distance away from the inlet of each outlet pipe; the oil removing brushes on the upper oil roller shaft and the oil removing brushes on the lower oil roller shaft are arranged in a tangent mode, and tangent points of the oil removing brushes on the upper oil roller shaft and the oil removing brushes on the lower oil roller shaft just fall on the central axis of the wire inlet pipe and the central axis of the wire outlet pipe and are located between the outlet of the wire inlet pipe and the inlet of the wire outlet pipe; at least two degreaser nozzles set up on the inner wall of preceding curb plate, and are located two at least wire inlet pipe's export directly over.
In a preferred embodiment, the steel strand can enter from the wire inlet pipe and pass through the tangent position of the oil removing brush on the upper oil roller shaft and the oil removing brush of the lower oil roller shaft and then pass out from the wire outlet pipe.
In a preferred embodiment, the stranded wire oil remover further comprises a limit adjusting rod and a limit plate; one end of the limiting adjusting rod is arranged on the outer wall of the rear side plate and is positioned on two sides of the at least two outlet pipes; the limiting plate and the rear side plate are arranged at the other end of the limiting adjusting rod in parallel; wherein the distance of limiting plate distance between the axis of oily roller axle and the last oil roller axle down is equivalent with the length that steel strand wires need be deoiled, and the distance of limiting plate distance between the axis of oily roller axle and the last oil roller axle down can adjust through spacing adjusting lever.
In a preferred embodiment, the steel strand oil remover further comprises a front oil leakage hopper, a rear oil leakage hopper and oil absorption cotton; the front oil leakage hopper is arranged on the outer wall of the front side plate and is positioned below the inlets of the at least two inlet pipes; the rear oil leakage hopper is arranged on the outer wall of the rear side plate and is positioned below the outlets of the at least two outlet pipes; the oil absorption cotton is arranged at the upper openings of the front oil leakage bucket and the rear oil leakage bucket and is used for scraping the oil removing agent adhered to the steel strand.
In a preferred embodiment, the steel strand oil remover further comprises a sedimentation tank, a circulation tank, a filter screen, a circulation pump, a front oil leakage port and a rear oil leakage port; the sedimentation tank is arranged at the bottom of the base and is positioned below the outlet of the wire inlet pipe and the inlet of the wire outlet pipe; the circulating tank is arranged on the outer side of one side wall of the base, and the upper part of the circulating tank is communicated with the upper part of the sedimentation tank; the filter screen is arranged at the communication part of the sedimentation tank and the circulation tank and is used for filtering out impurities falling into the degreasing agent in the sedimentation tank; an oil suction port of the circulating pump is arranged in the circulating pool, and the circulating pump is used for conveying the degreasing agent to the at least two degreasing agent nozzles through the degreasing agent pipeline; the front oil leakage opening and the rear oil leakage opening are respectively arranged at the joint of the bottom of the front oil leakage hopper and the front side plate and the joint of the bottom of the rear oil leakage hopper and the rear side plate, and the front oil leakage opening and the rear oil leakage opening are used for scraping the oil removing agent from the steel strand to flow back into the sedimentation tank.
In a preferred embodiment, the steel strand oil remover further comprises an adjusting mechanism, the adjusting mechanism is arranged at the joint of the two ends of the oiling roller shaft and the left side plate and the right side plate, and the adjusting mechanism is used for adjusting the distance between the oiling roller shaft and the oiling roller shaft; the adjusting mechanism comprises a sliding seat, a screw rod and an adjusting wheel; the sliding seats are respectively arranged in the mounting grooves at the upper parts of the left side plate and the right side plate, the middle position of the upper part of the sliding seat is provided with a vertical threaded hole, and the bearing seats and the bearings at the two ends of the oiling roller shaft are arranged on the sliding seats; the lower end of the screw rod is connected with the threaded hole, and the upper part of the screw rod is pivoted with the top plate; the adjusting wheel is fixedly connected with the top end of the screw rod; wherein the screw rod is driven to rotate by the rotary adjusting wheel, so that the sliding seat, the bearing seat and the oiling roller shaft can be driven to move up and down.
In a preferred embodiment, the oiling roller shaft and the oiling roller shaft respectively comprise a left main shaft, a right main shaft and an oil brush shaft; one end of the left main shaft is pivoted with the bearing seat on the left side plate; one end of the right main shaft is pivoted with the bearing seat on the right side plate; two ends of the oil brush shaft are fixedly connected with the other ends of the left main shaft and the right main shaft respectively; wherein at least two oil removing brushes are detachably fixed on the oil brush shaft.
In a preferred embodiment, the steel strand deoiling machine further comprises a driving motor which is arranged on the outer wall of the right side plate through a motor support, and the driving motor jointly drives the upper oil feeding roller shaft and the lower oil feeding roller shaft to rotate through a belt pulley, a belt, a transition wheel and a transition wheel shaft.
In a preferred embodiment, the steel strand oil remover further comprises a caster and a control box; the trundles are arranged at four corners of the bottom surface of the base; the control box sets up on the outer wall of left side board, and the control box is used for controlling driving motor and circulating pump.
In a preferred embodiment, the oil removing machine for the steel strands further comprises an inlet wire wide-mouth and an outlet wire wide-mouth which are respectively arranged at the inlets of the inlet wire pipe and the outlet wire pipe, and the inlet wire wide-mouth and the outlet wire wide-mouth are used for guiding the steel strands to smoothly penetrate into the inlet wire pipe and the outlet wire pipe.
Compared with the prior art, the utility model discloses a steel strand wires deoiling machine has following beneficial effect: this scheme is through setting up the inlet wire pipe, go out the spool, deoiling roller and deoiling agent injection pipe, can remove oil roller and drive roller through motor drive and carry out automatic deoiling to steel strand wires, the device labour saving and time saving, deoiling efficiency is swift, and the sedimentation tank that sets up can be retrieved and the loop filter deoiling agent moreover to can make the deoiling agent that removes oil be used for the rust-resistant of other equipment, reduce the pollution of environment, improve the cycle recycle of antirust grease and deoiling agent, practice thrift the cost. The oil removing machine is small in size, is provided with the trundles to facilitate walking and transportation, and can meet the requirements of wider field construction.
Drawings
Fig. 1 is a schematic front view of an oil removing agent according to an embodiment of the present invention;
fig. 2 is a schematic left-view structural diagram of an oil removing agent according to an embodiment of the present invention;
fig. 3 is a schematic diagram of a right-view partial structure of an oil removing agent according to an embodiment of the present invention;
fig. 4 is a schematic structural view of an oil removing mechanism according to an embodiment of the present invention;
fig. 5 is a schematic front view of a right spindle according to an embodiment of the present invention;
fig. 6 is a schematic side view of a right spindle according to an embodiment of the present invention;
fig. 7 is a schematic front view of a left main shaft according to an embodiment of the present invention;
fig. 8 is a schematic side view of a left spindle according to an embodiment of the present invention;
fig. 9 is a front view schematically illustrating a structure of a brush shaft according to an embodiment of the present invention.
Description of the main reference numerals:
100-oil removing machine, 1-base, 101-caster, 2-left side plate, 3-oil discharging roller shaft, 4-bearing cover, 5-front oil leaking hopper, 501-front oil leaking port, 6-oil absorbing cotton, 7-control box, 8-front side plate, 9-oil removing brush, 10-line inlet pipe, 1001-line inlet wide mouth, 11-right side plate, 12-bearing seat, 13-belt pulley, 1301-tension pulley, 14-oil discharging roller shaft, 15-driving motor, 16-motor bracket, 17-circulating pump, 18-circulating pool, 19-filter screen, 20-sedimentation pool, 21-dirt removing port, 22-top plate, 23-oil removing agent nozzle, 24-oil removing agent pipeline, 25-rear side plate, 26-rear oil leaking hopper, 2601-rear oil leaking port, 27-line outlet pipe, 2701-line outlet wide mouth, 28-limit plate, 29-limit adjusting rod, 30-sliding seat, 31-lead screw, 32-adjusting wheel, 33-fixed side plate, 34-tension wheel, 35-tension pulley, 35-transition wheel, 36-right spindle shaft, 37-main shaft and 200-twisted steel wire.
Detailed Description
The following detailed description of the present invention is provided in conjunction with the accompanying drawings, but it should be understood that the scope of the present invention is not limited by the following detailed description.
Throughout the specification and claims, unless explicitly stated otherwise, the word "comprise", or variations such as "comprises" or "comprising", will be understood to imply the inclusion of a stated element or component but not the exclusion of any other element or component.
As shown in fig. 1 to 4, a strand de-oiling machine 100 according to a preferred embodiment of the present invention includes a front side plate 8, a rear side plate 25, a left side plate 2, a right side plate 11, and a top plate 22, which are disposed on a base 1 and are perpendicular to each other; at least two inlet pipes 10, at least two outlet pipes 27, a lower oil roller shaft 3, an upper oil roller shaft 14 and at least two oil removing agent nozzles 23; at least two inlet pipes 10 are horizontally arranged on the front side plate 8; at least two outlet pipes 27 are horizontally arranged on the rear side plate 25, each inlet pipe 10 and one outlet pipe 27 are coaxially arranged, and the outlet of the inlet pipe 10 is a certain distance away from the inlet of the outlet pipe 27; the lower oil roller shaft 3 and the upper oil roller shaft 14 are parallel to each other and are arranged between the left side plate 2 and the right side plate 11 perpendicularly to the axes of the wire inlet pipe 10 and the wire outlet pipe 27, the lower oil roller shaft 3 and the upper oil roller shaft 14 respectively comprise at least two oil removing brushes 9, the oil removing brushes 9 on the upper oil roller shaft 14 are arranged in a tangent mode with the oil removing brushes 9 of the lower oil roller shaft 3, and the tangent points of the oil removing brushes 9 on the upper oil roller shaft 14 and the oil removing brushes 9 of the lower oil roller shaft 3 are just fallen on the central axes of the wire inlet pipe 10 and the wire outlet pipe 27 and are positioned between the outlet of the wire inlet pipe 10 and the inlet of the wire outlet pipe 27; at least two oil removing agent nozzles 23 are arranged on the inner wall of the front side plate 8 and are positioned right above the outlets of the at least two inlet pipes 10, and the oil removing agent nozzles 23 are used for spraying oil removing agent on the steel strand 200 between the outlet of the inlet pipe 10 and the inlet of the outlet pipe 27.
In some embodiments, the steel strand 200 can enter from the inlet pipe 10 and pass through the tangent position of the oil removing brush 9 on the upper oil roller shaft 14 and the oil removing brush 9 of the lower oil roller shaft 3 and then exit from the outlet pipe 27. In the embodiment, only two inlet pipes 10 and two sets of oil removing brushes 9 are shown, but the present invention is not limited thereto, and may be added as needed.
In some embodiments, the strand de-oiling machine 100 further comprises a limit adjusting rod 29 and a limit plate 28; one end of the limiting adjusting rod 29 is arranged on the outer wall of the rear side plate 25 and is positioned at two sides of the at least two outlet pipes 27; the limit plate 28 is arranged at the other end of the limit adjusting rod 29 in parallel with the rear side plate 25; wherein the distance between the axis of limiting plate 28 apart from lower oil roller axle 3 and last oil roller axle 14 is equivalent to the length that steel strand wires 200 need be deoiled, and the distance between the axis of limiting plate 28 apart from lower oil roller axle 3 and last oil roller axle 14 can be adjusted through spacing adjusting lever 29. The distance between the limiting plate 28 and the outlet of the inlet pipe 10 should be slightly larger than the distance between the limiting plate 28 and the axes of the lower oil roller shaft 3 and the upper oil roller shaft 14, so that the parts of the steel strand 200 needing to be deoiled can be cleaned.
In some embodiments, the steel strand deoiler 100 further comprises a front oil drain bucket 5, a rear oil drain bucket 26, and an oil absorption cotton 6; the front oil leakage hopper 5 is arranged on the outer wall of the front side plate 8 and is positioned below the inlets of the at least two inlet pipes 10; the rear oil leakage bucket 26 is arranged on the outer wall of the rear side plate 25 and is positioned below the outlets of the at least two outlet pipes 27; the oil absorption cotton 6 is arranged at the upper openings of the front oil leakage bucket 5 and the rear oil leakage bucket 26, and the oil absorption cotton 6 is used for scraping the oil removing agent adhered to the steel strand 200. The upper openings of the front oil leakage bucket 5 and the rear oil leakage bucket 26 can be generally provided with oil leakage plates (not shown) with meshes, the oil absorption cotton 6 is placed on the oil leakage plates, and the oil absorption cotton 6 can be replaced at any time. The arrangement of the front oil leakage bucket 5, the rear oil leakage bucket 26 and the oil absorption cotton 6 can ensure that the steel strand 200 does not bring the degreasing agent to the degreasing machine 100, and environment pollution is avoided.
In some embodiments, the strand de-oiling machine 100 further comprises a sedimentation tank 20, a circulation tank 18, a filter screen 19, a circulation pump 17, and a front oil drain 501 and a rear oil drain 2601; the sedimentation tank 20 is arranged at the bottom of the base 1 and is positioned below the outlet of the wire inlet pipe 10 and the inlet of the wire outlet pipe 27; the circulating tank 18 is arranged outside one side wall of the base 1, and the upper part of the circulating tank 18 is communicated with the upper part of the sedimentation tank 20; the filter screen 19 is arranged at the communication part of the sedimentation tank 20 and the circulation tank 18 and is used for filtering out impurities in the degreasing agent falling into the sedimentation tank 20; an oil suction port of the circulating pump 17 is arranged in the circulating pool 18, and the circulating pump 17 is used for conveying the degreasing agent to at least two degreasing agent nozzles 23 through a degreasing agent pipeline; the front oil leakage opening 501 and the rear oil leakage opening 2601 are respectively arranged at the joint of the bottom of the front oil leakage bucket 5 and the front side plate 8 and the joint of the bottom of the rear oil leakage bucket 26 and the rear side plate 25, and the front oil leakage opening 501 and the rear oil leakage opening 2601 are used for scraping the oil removing agent from the steel strand 200 to the oil absorbent cotton 6 and then flowing the oil removing agent back into the sedimentation tank 20. The bottom of the sedimentation tank 20 can be provided with a sewage cleaning port 21.
In some embodiments, the oil removing brush 9 is generally a fine steel wire brush, some small fine steel wires fall off into the sedimentation tank 20 during oil removing, and are mixed with other impurities and then are precipitated at the bottom of the sedimentation tank, and the oil removing agent on the upper portion of the sedimentation tank is relatively clean. Kerosene was used as the oil removing agent in this example. The upper portion intercommunication of circulation pond 18 and sedimentation tank 20, the lower part does not communicate, has set up filter screen 19 in the middle of moreover, and the benefit of design like this is, in the impurity of first sedimentation tank 20 can not run into circulation pond 18, second filter screen 19 filters once more, avoids thin steel wire class impurity to enter into in the circulation pond 18 by circulating pump 17 suction and damaged. The height of the filter screen is generally not less than half of the effective depth of the sedimentation tank, so that the utilization rate of the oil removing agent in the sedimentation tank can be ensured to be higher.
In some embodiments, the strand deoiler 100 further comprises an adjusting mechanism disposed at a connection between both ends of the oiling roller shaft 14 and the left side plate 2 and the right side plate 11, and the adjusting mechanism is configured to adjust a distance between the oiling roller shaft 14 and the oiling roller shaft 3; the adjusting mechanism comprises a sliding seat 30, a screw rod 31 and an adjusting wheel 32; the sliding seat 30 is respectively arranged in the mounting grooves at the upper parts of the left side plate 2 and the right side plate 11, a vertical threaded hole is formed in the middle position of the upper part of the sliding seat 30, and the bearing blocks 12 and the bearings at the two ends of the oiling roller shaft 14 are arranged on the sliding seat 30; the lower end of the screw rod 31 is connected with the threaded hole, and the upper part of the screw rod is pivoted with the top plate 22; the adjusting wheel 32 is fixedly connected with the top end of the screw rod 31; wherein rotating the adjustment wheel 32 to rotate the lead screw 31 can move the slide 30, and thus the bearing housing 12 and the oil roller shaft 14, up and down.
In some embodiments, the sliding base 30 of the present embodiment is embedded in the mounting grooves of the upper portions of the left side plate 2 and the right side plate 11, a sliding mechanism is formed by the pressing plates (not shown) and screws on both sides, the bolts of the pressing plates are loosened during adjustment, the adjustment is performed by the hand wheel and the screw rod 31, and the pressing plates are screwed and fixed again after the adjustment. The purpose of setting up guiding mechanism is because the brush 9 that removes oil has certain wearing and tearing at the deoiling in-process, and the distance between brush axle and the lower brush axle that removes oil can be guaranteed to the deoiling dynamics of brush 9 pair steel strand wires 200 that removes oil, reduces the change number of times of brush 9 that removes oil simultaneously.
As shown in fig. 5-9, in some embodiments, the upper and lower oil roller shafts 14, 14 each include a left main shaft 37, a right main shaft 36, and a brush shaft 38; one end of the left main shaft 37 is pivoted with the bearing seat 12 on the left side plate 2; one end of the right main shaft 36 is pivoted with the bearing seat 12 on the right side plate 11; two ends of the oil brush shaft 38 are fixedly connected with the other ends of the left main shaft 37 and the right main shaft 36 respectively; wherein at least two oil-removing brushes 9 are detachably fixed on the brush shaft 38.
The right end of the right main shaft 36 of this embodiment is installed in the bearing housing 12 and connected to the pulley 13, and the left end is inserted by the oil brush shaft 38 and fixed by a bolt. The left end of the left main shaft 37 is installed in the bearing housing 12, and the right end is inserted by the oil brush shaft 38 and fixed by a bolt. The middle position of the oil brush shaft 38 is provided with a key groove for installing the oil removing brushes 9, the plurality of oil removing brushes 9 are separated by spacer bushes, and the two ends of the oil removing brushes are locked by locknuts. When the oil removing brush 9 is replaced, the oil brush shaft 38 needs to be detached, and the oil removing brush 9 is replaced and then installed, so that the method is simple and convenient.
In some embodiments, the strand de-oiling machine 100 further includes a driving motor 15, the driving motor 15 is disposed on the outer wall of the right side plate 11 through a motor bracket 16, and the driving motor 15 drives the upper oiling roller shaft 14 and the lower oiling roller shaft 14 to rotate together through a belt pulley 13, a belt, a transition wheel 34 and a transition wheel shaft (not shown). This embodiment has still set up a plurality of belt tight pulley settings on the take-up pulley installation portion 35 of right side board, and the tensioning dynamics of tight pulley can be adjusted.
In some embodiments, the steel strand deoiler 100 further comprises a caster 101 and a control box 7; the caster wheels 101 are arranged at four corners of the bottom surface of the base 1; a control box 7 is provided on the outer wall of the left side plate 2, the control box 7 being used to control a drive motor 15 and a circulation pump 17. The caster 101 is arranged to facilitate the movement of the oil removing machine 100, so that the requirement of the site construction environment can be better met.
In some embodiments, the steel strand deoiling machine 100 further includes an inlet wire wide-mouth 1001 and an outlet wire wide-mouth 2701, which are respectively disposed at the inlets of the inlet pipe 10 and the outlet pipe 27, and the inlet wire wide-mouth 1001 and the outlet wire wide-mouth 2701 are used for guiding the steel strand 200 to smoothly penetrate into the inlet pipe 10 and the outlet pipe 27.
To sum up, the utility model discloses a steel strand wires deoiling machine has following advantage: this scheme is through setting up the inlet wire pipe, go out the spool, deoiling roller and deoiling agent injection pipe, can remove oil roller and drive roller through motor drive and carry out automatic deoiling to steel strand wires, the device labour saving and time saving, deoiling efficiency is swift, and the sedimentation tank that sets up can be retrieved and the loop filter deoiling agent moreover to can make the deoiling agent that removes oil be used for the rust-resistant of other equipment, reduce the pollution of environment, improve the cycle recycle of antirust grease and deoiling agent, practice thrift the cost. The oil removing machine is small in size, is provided with the trundles to facilitate walking and transportation, and can meet the requirements of wider field construction.
The foregoing descriptions of specific exemplary embodiments of the present invention have been presented for purposes of illustration and description. It is not intended to limit the invention to the precise form disclosed, and obviously many modifications and variations are possible in light of the above teaching. The exemplary embodiments were chosen and described in order to explain certain principles of the invention and its practical application to enable one skilled in the art to make and use various exemplary embodiments of the invention and various alternatives and modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the claims and their equivalents.

Claims (10)

1. The steel strand oil remover is characterized by comprising a front side plate, a rear side plate, a left side plate, a right side plate and a top plate which are arranged on a base and are mutually vertical and connected end to end;
at least two inlet pipes, which are horizontally arranged on the front side plate;
the at least two outlet pipes are horizontally arranged on the rear side plate, each inlet pipe is coaxially arranged with one outlet pipe, and an outlet of each inlet pipe is away from an inlet of each outlet pipe by a certain distance;
the oil removing brush on the upper oil roller shaft is arranged in a tangent mode with the oil removing brush on the lower oil roller shaft, and the tangent point of the oil removing brush on the upper oil roller shaft and the oil removing brush on the lower oil roller shaft is just positioned on the central axis of the inlet pipe and the outlet pipe and is positioned between the outlet of the inlet pipe and the inlet of the outlet pipe; and
and the at least two oil removing agent nozzles are arranged on the inner wall of the front side plate and are positioned right above the outlets of the at least two inlet pipes.
2. The strand oil remover of claim 1, wherein the strand can enter from the incoming line pipe and exit from the outgoing line pipe after passing through the tangent position of the oil removing brush on the upper oil roller shaft and the oil removing brush of the lower oil roller shaft.
3. The strand de-oiling machine of claim 1, further comprising:
one end of the limiting adjusting rod is arranged on the outer wall of the rear side plate and is positioned on two sides of the at least two outlet pipes; and
the limiting plate is arranged at the other end of the limiting adjusting rod in parallel with the rear side plate;
wherein the limiting plate is apart from the distance between the axis of lower oil roller axle with the last oil roller axle with the length that steel strand wires need be deoiled is equivalent, just the limiting plate distance the distance between the axis of lower oil roller axle with last oil roller axle can pass through spacing adjusting lever adjusts.
4. The strand de-oiling machine of claim 1, further comprising:
the front oil leakage hopper is arranged on the outer wall of the front side plate and is positioned below the inlets of the at least two inlet wire pipes;
the rear oil leakage hopper is arranged on the outer wall of the rear side plate and is positioned below the outlets of the at least two outlet pipes; and
the oil absorption cotton is arranged at the upper openings of the front oil leakage hopper and the rear oil leakage hopper and used for scraping the degreasing agent adhered to the steel strand.
5. The steel strand oil remover as claimed in claim 4, further comprising:
the sedimentation tank is arranged at the bottom of the base and is positioned below the outlet of the inlet pipe and the inlet of the outlet pipe;
the circulating tank is arranged on the outer side of one side wall of the base, and the upper part of the circulating tank is communicated with the upper part of the sedimentation tank;
the filter screen is arranged at the communication part of the sedimentation tank and the circulating tank and is used for filtering out impurities falling into the degreasing agent in the sedimentation tank;
the oil suction port of the circulating pump is arranged in the circulating pool, and the circulating pump is used for conveying the degreasing agent to the at least two degreasing agent nozzles through the degreasing agent pipeline; and
the front oil leakage port and the rear oil leakage port are respectively arranged at the joint of the bottom of the front oil leakage bucket and the front side plate and the joint of the bottom of the rear oil leakage bucket and the rear side plate, and the front oil leakage port and the rear oil leakage port are used for enabling the oil absorption cotton to scrape the oil removal agent from the steel strand and flow back to the sedimentation tank.
6. The strand oil removing machine as claimed in claim 5, further comprising an adjusting mechanism disposed at a connection between both ends of the oiling roller shaft and the left and right side plates, the adjusting mechanism being configured to adjust a distance between the oiling roller shaft and the oiling roller shaft; the adjustment mechanism includes:
the sliding seats are respectively arranged in the mounting grooves in the upper parts of the left side plate and the right side plate, the middle position of the upper part of the sliding seat is provided with a vertical threaded hole, and the bearing seats and the bearings at the two ends of the oiling roller shaft are arranged on the sliding seats;
the lower end of the screw rod is connected with the threaded hole, and the upper part of the screw rod is pivoted with the top plate; and
the adjusting wheel is fixedly connected with the top end of the screw rod;
wherein rotate the adjustment wheel drives the lead screw rotates and can enough drive the slide and the bearing frame with the oiling roller axle reciprocates.
7. The strand de-oiling machine of claim 6, wherein the oiling roller shaft and the oiling roller shaft each comprise:
one end of the left main shaft is pivoted with the bearing seat on the left side plate;
one end of the right main shaft is pivoted with the bearing seat on the right side plate; and
two ends of the oil brush shaft are fixedly connected with the other ends of the left main shaft and the right main shaft respectively;
wherein at least two oil removing brushes are detachably fixed on the oil brush shaft.
8. The strand oil remover as claimed in claim 6, further comprising a driving motor disposed on the outer wall of the right side plate through a motor bracket, wherein the driving motor drives the upper oil roller shaft and the lower oil roller shaft to rotate together through a pulley, a belt, a transition wheel and a transition wheel shaft.
9. The steel strand oil removing machine as claimed in claim 8, further comprising:
the trundles are arranged at the four corners of the bottom surface of the base; and
and the control box is arranged on the outer wall of the left side plate and is used for controlling the driving motor and the circulating pump.
10. The steel strand oil removing machine as claimed in claim 4, further comprising an inlet wire wide mouth and an outlet wire wide mouth, which are respectively arranged at the inlets of the inlet wire pipe and the outlet wire pipe, wherein the inlet wire wide mouth and the outlet wire wide mouth are used for guiding the steel strand to smoothly penetrate into the inlet wire pipe and the outlet wire pipe.
CN202223001453.5U 2022-11-11 2022-11-11 Oil removing machine for steel strand Active CN218554880U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223001453.5U CN218554880U (en) 2022-11-11 2022-11-11 Oil removing machine for steel strand

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223001453.5U CN218554880U (en) 2022-11-11 2022-11-11 Oil removing machine for steel strand

Publications (1)

Publication Number Publication Date
CN218554880U true CN218554880U (en) 2023-03-03

Family

ID=85324432

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223001453.5U Active CN218554880U (en) 2022-11-11 2022-11-11 Oil removing machine for steel strand

Country Status (1)

Country Link
CN (1) CN218554880U (en)

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