CN222524689U - Pickling device for phosphating steel wire production - Google Patents

Pickling device for phosphating steel wire production Download PDF

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Publication number
CN222524689U
CN222524689U CN202421358947.5U CN202421358947U CN222524689U CN 222524689 U CN222524689 U CN 222524689U CN 202421358947 U CN202421358947 U CN 202421358947U CN 222524689 U CN222524689 U CN 222524689U
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China
Prior art keywords
cleaning
pickling
tank
treatment box
steel wire
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CN202421358947.5U
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Chinese (zh)
Inventor
张西德
钱文伟
刘聪
张怡波
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Hangzhou Shuangyi Photoelectric Material Co ltd
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Hangzhou Shuangyi Photoelectric Material Co ltd
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Abstract

The utility model relates to the technical field of steel wire production, in particular to a pickling device for phosphating steel wires, which comprises a treatment box, a support plate, a spray pipe, a neutralizer box and a water removing mechanism, wherein a first partition plate is vertically arranged in the treatment box and divides the treatment box into a pickling tank and a cleaning tank, two first guide rollers are arranged at the bottom of the pickling tank, two second guide rollers are arranged on the side wall of the treatment box above the pickling tank, the support plate is arranged on the side wall of the treatment box in front of the pickling tank, a plurality of feeding holes are formed in the support plate at intervals, a cleaning mechanism arranged on the support plate is used for cleaning steel wires in the feeding holes, the spray pipe is horizontally arranged on the side wall of the treatment box above the cleaning tank and provided with a plurality of spray heads, and the water removing mechanism is arranged on the side wall of the treatment box at the rear side of the cleaning tank and is used for removing clear water on the surface of the steel wires. The utility model has the advantages of good pickling effect, capability of effectively removing pickling solution on the surface of the steel wire, and the like.

Description

Pickling device for phosphating steel wire production
Technical Field
The utility model relates to the technical field of steel wire production, in particular to an acid pickling device for phosphating steel wires.
Background
Compared with the common steel wire, the phosphating steel wire has a layer of phosphating layer on the surface, so that the phosphating steel wire has better corrosion resistance, and before phosphating, an oxide layer is formed on the surface of the phosphating steel wire, so that the effective permeation and reaction of phosphating solution on the surface of the steel wire are reduced, the corrosion resistance is affected, and therefore, a pickling device is required to carry out pickling on the steel wire.
In the prior art, china utility model with the application number 202321077844.7 discloses a stainless steel wire pickling and phosphating device, after pickling is completed in a pickling tank, steel wires enter a treatment box to be washed by water, residual pickling solution on the surfaces of the steel wires can be dissolved in clear water in the treatment box, so that the acidity of the clear water is improved, acid solution is still attached to the surfaces of the steel wires, the subsequent phosphating effect of the phosphating solution on the steel wires is affected, dust is attached to the surfaces of the steel wires before pickling, the pickling effect is weakened, the pickling effect is poor, and the cleanliness of the surfaces of the steel wires is affected.
Disclosure of utility model
In view of the above, the utility model provides a pickling device for producing phosphating steel wires, which aims to solve the problems of poor pickling effect and acid solution attached to the surface of the steel wires in the prior art.
In order to achieve the purpose, the utility model is realized by the following technical scheme that the acid pickling device for producing the phosphating steel wire comprises:
The treatment box is divided into a pickling tank and a cleaning tank by a first partition board vertically arranged in the treatment box, two first guide rollers are arranged at the bottom of the pickling tank, and two second guide rollers are arranged on the side wall of the treatment box above the pickling tank;
The supporting plate is arranged on the side wall of the treatment box in front of the pickling tank, a plurality of feeding holes are formed in the supporting plate at intervals, and a cleaning mechanism arranged on the supporting plate is used for cleaning steel wires in the feeding holes;
The spray pipe is horizontally arranged on the side wall of the treatment box above the cleaning tank, a plurality of spray heads are arranged on the spray pipe, and one end of the spray pipe is communicated with the bottom of the cleaning tank through a water inlet pipe;
The neutralizing agent box is communicated with the cleaning tank through a first liquid inlet pipe, two stirring shafts are arranged at the bottom of the cleaning tank, one end of each stirring shaft is connected with a rotating shaft of the cleaning tank and penetrates through the rotating shaft of the cleaning tank, and then is connected with the driving mechanism and rotates in opposite directions under the action of the driving mechanism;
The water removing mechanism is arranged on the side wall of the treatment box at the rear side of the cleaning tank and is used for removing clean water on the surface of the steel wire.
A further improvement of the present utility model is that the cleaning mechanism comprises:
the cleaning cylinders are respectively and rotatably arranged in the feeding holes, and bristles are arranged on the inner walls of the cleaning cylinders;
And the rotating assembly is arranged on the supporting plate and used for simultaneously driving a plurality of cleaning cylinders to rotate.
A further improvement of the present utility model is that the rotating assembly includes:
the first gears are respectively arranged on the cleaning cylinders;
The first rack is slidably arranged in a first slideway on the supporting plate and meshed with the plurality of first gears;
The output end of the first motor is provided with a first rotating rod, the free end of the first rotating rod is provided with a first sliding rod, and the first sliding rod is in sliding connection with a first guide groove arranged at the end part of the first rack.
A further improvement of the present utility model is that the drive mechanism includes:
the two second gears are respectively arranged at the end parts of the two stirring shafts;
the two second slide ways are respectively arranged on the cleaning tanks on the upper side and the lower side of the second gear, a slide seat is arranged in each second slide way in a sliding manner, and the two slide seats are connected through a connecting rod;
The two second racks are respectively arranged on the two sliding seats and meshed with the two second gears respectively, and the installation directions of the two second racks are opposite;
The adjusting component is arranged on the cleaning tank, connected with one of the sliding seats and used for driving the sliding seat to reciprocate.
A further improvement of the utility model is that the adjustment assembly comprises:
The adjusting rod is arranged on one of the sliding seats, and a second guide groove is vertically formed in the adjusting rod;
The second motor is arranged on the cleaning tank, a second rotating rod is arranged at the output end of the second motor, and a second sliding rod arranged at the free end of the second rotating rod is slidably arranged in the second guide groove.
The utility model further improves that the water removing mechanism comprises:
The fixed plate is arranged on the side plate of the treatment box at the rear side of the cleaning tank;
And the lifting plate is arranged above the fixed plate in a lifting manner under the action of the lifting assembly, and wiping pieces are arranged on the opposite sides of the fixed plate and the lifting plate.
A further improvement of the present utility model is that the lifting assembly comprises:
The top plate is arranged on the side wall of the treatment box above the lifting plate, and the upper end of the first guide rod which is vertical to the upper part of the lifting plate is connected with the top plate in a sliding manner and penetrates through the top plate;
The first screw rod is arranged above the lifting plate in parallel with the first guide rod;
The first bevel gear is rotatably arranged on the top plate, and the first screw is in threaded connection with the middle part of the first bevel gear and penetrates through the middle part of the first bevel gear;
and a second bevel gear arranged at the output end of the third motor is meshed with the first bevel gear.
A further development of the utility model is that the wiper is a water-absorbing sponge.
The utility model further improves that a plurality of guide wheels are arranged on the first guide roller and the second guide roller at intervals, and the guide wheels are respectively in one-to-one correspondence with the feed holes.
By adopting the technical scheme, the utility model has the following technical progress:
The utility model provides a pickling device for producing phosphating steel wires, which is characterized in that after the steel wires pass through a feeding hole, dust on the surfaces of the steel wires can be cleaned under the action of a cleaning mechanism, then the steel wires are immersed into pickling solution in a pickling tank under the guidance of a first guide roller and a second guide roller, so that the surfaces of the steel wires are pickled, after the pickling is finished, the steel wires are washed away by clean water sprayed by a spray pipe in the subsequent advancing process, the sprayed clean water falls into a cleaning tank, waste is reduced, and finally the clean water on the surfaces of the steel wires can be removed under the action of a dewatering mechanism, so that the steel wires are prevented from being corroded.
The technical progress is mainly realized by the following detailed technical improvements:
1. When the first motor drives the first rotating rod to rotate, the first sliding rod can drive the first rack to slide back and forth in the first slideway, and then a plurality of first gears meshed with the first rack can rotate positively and negatively alternately, so that the cleaning barrel is driven to rotate positively and negatively alternately, and the bristles in the cleaning barrel clean dust on the surface of the steel wire, so that the cleaning effect is good.
2. The third motor can be started to drive the first bevel gear to rotate through the second bevel gear, then the first screw rod is driven to lift, the lifting plate can be driven to lift after the first screw rod lifts, and the two wiping pieces wipe clean water on the surface of the steel wire through the cooperation of the lifting plate and the fixed plate.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the description of the embodiments will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort to a person skilled in the art.
FIG. 1 is a schematic diagram of a pickling device for producing phosphating steel wires;
FIG. 2 is a schematic view of a cleaning mechanism according to the present utility model;
FIG. 3 is a schematic diagram of a water removal mechanism according to the present utility model;
FIG. 4 is a schematic structural view of the stirring shaft according to the present utility model;
FIG. 5 is a schematic diagram of a driving mechanism according to the present utility model;
Reference numerals illustrate:
10-treatment tank, 11-first partition, 12-pickling tank, 13-washing tank, 14-first guide roller, 15-second guide roller, 20-support plate, 21-feed hole, 22-cleaning mechanism, 221-cleaning drum, 222-first gear, 223-first rack, 224-first slide, 225-first motor, 227-first rotating lever, 228-first slide bar, 229-first guide groove, 30-shower pipe, 31-water inlet pipe, 32-neutralizer tank, 33-first liquid inlet pipe, 40-stirring shaft, 41-driving mechanism, 411-second gear, 412-second slide, 413-slide, 414-connecting rod, 415-adjusting lever, 416-second guide groove, 417-second motor, 418-second rotating lever, 419-second slide bar, 50-dewatering mechanism, 51-fixed plate, 52-lifting plate, 53-wiper, 54-top plate, 55-first guide lever, 56-first screw, 57-first motor, 58-third bevel gear, 60-second guide wheel.
Detailed Description
Technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it should be apparent that in the following description, specific details are set forth such as the specific system structure, technology, etc. for the purpose of illustration rather than limitation, in order to provide a thorough understanding of the embodiments of the present utility model. It will be apparent, however, to one skilled in the art that the present utility model may be practiced in other embodiments that depart from these specific details. In other instances, detailed descriptions of well-known systems, devices, circuits, and methods are omitted so as not to obscure the description of the present utility model with unnecessary detail.
The utility model provides a pickling device for producing phosphating steel wires, which is known from the accompanying drawings 1 to 5 of the specification, and mainly comprises the following parts or components, namely a treatment box 10, a support plate 20, a spray pipe 30, a neutralizer box 32 and a water removal mechanism 50, wherein the connection relation of the parts or components is as follows:
The treatment tank 10 is divided into a pickling tank 12 and a cleaning tank 13 by a first partition plate 11 vertically arranged in the treatment tank 10, two first guide rollers 14 are arranged at the bottom of the pickling tank 12, two second guide rollers 15 are arranged on the side wall of the treatment tank 10 above the pickling tank 12, a supporting plate 20 is arranged on the side wall of the treatment tank 10 in front of the pickling tank 12, a plurality of feeding holes 21 are formed in the supporting plate 20 at intervals, a cleaning mechanism 22 arranged on the supporting plate 20 is used for cleaning steel wires in the feeding holes 21, a spray pipe 30 is horizontally arranged on the side wall of the treatment tank 10 above the cleaning tank 13, a plurality of spray heads are arranged on the spray pipe 30, one end of the spray pipe 30 is communicated with the bottom of the cleaning tank 13 through a water inlet pipe 31, a neutralizer tank 32 is communicated with the cleaning tank 13 through a first liquid inlet pipe 33, two stirring shafts 40 are arranged at the bottom of the cleaning tank 13, one end of each stirring shaft 40 is connected with a rotating shaft of the cleaning tank 13 and penetrates through the cleaning tank 13 and then is connected with a driving mechanism 41 and rotates in the opposite direction under the action of the driving mechanism 41, a water removing mechanism 50 is arranged on the side wall of the treatment tank 10 on the rear side of the cleaning tank 13 for removing steel wires.
After the steel wire passes through the feeding hole 21, dust on the surface of the steel wire can be cleaned under the action of the cleaning mechanism 22, then the steel wire can be immersed into pickling solution in the pickling tank 12 under the guidance of the first guide roller 14 and the second guide roller 15, so that the surface of the steel wire is pickled, after pickling is finished, the steel wire can be washed out of the pickling solution on the surface of the steel wire in the follow-up advancing process, and after the pickling solution on the surface of the steel wire is washed out by clean water sprayed out of the spray pipe 30, the sprayed clean water can fall into the cleaning tank 13, so that waste is reduced.
And the neutralizer in the neutralizer box 32 can flow into the cleaning tank 13 along the first liquid inlet pipe 33, the neutralization is carried out through the neutralizer and the pickling solution in the clean water, the pickling solution is usually hydrochloric acid, the neutralizer is sodium hydroxide, the reaction between the neutralizer and the pickling solution produces sodium chloride and water, the clean water in the cleaning tank 13 is neutral, the clean water in the cleaning tank 13 can be recycled, the clean water flows into the spray pipe 30 through the water inlet pipe 31 again, the recycling is realized, the waste of water resources is effectively reduced, the pickling solution on the surface of the steel wire can be flushed out by the neutral clean water sprayed out by the spray pipe 30, the pickling solution on the surface of the steel wire is replaced, the phosphating effect of the steel wire can be influenced by the pickling solution on the surface of the steel wire, the clean water on the surface of the steel wire can be removed finally under the action of the water removing mechanism 50, and the corrosion of the steel wire is prevented.
As an example, as shown in fig. 2 of the drawings, the cleaning mechanism 22 includes a plurality of cleaning cylinders 221 rotatably disposed in the plurality of feeding holes 21, bristles disposed on the inner walls of the cleaning cylinders 221, and a rotating assembly disposed on the support plate 20 for simultaneously rotating the plurality of cleaning cylinders 221. The steel wire can pass through the inside of the cleaning barrel 221, and when the cleaning barrel 221 is driven to rotate by the rotating component, the brush hair on the inner wall of the cleaning barrel 221 can brush the surface of the steel wire, so that dust on the surface of the steel wire can be cleaned, and the effect of the dust on pickling solution on the steel wire is prevented from being influenced.
In this embodiment, as shown in fig. 2 of the drawings, the rotating assembly includes a plurality of first gears 222 respectively disposed on a plurality of cleaning drums 221, a first rack 223 slidably disposed in a first slide 224 on the support plate 20 and engaged with the plurality of first gears 222, a first rotating rod 227 disposed at an output end of the first motor 225, a first sliding rod 228 disposed at a free end of the first rotating rod 227, and a first guiding slot 229 disposed at an end of the first rack 223 and slidably connected to the first sliding rod 228.
When the first motor 225 drives the first rotating rod 227 to rotate, the first sliding rod 228 can drive the first rack 223 to slide reciprocally in the first slideway 224, so that the plurality of first gears 222 meshed with the first rack 223 can rotate positively and negatively alternately, and further drive the cleaning barrel 221 to rotate positively and negatively alternately, so that the bristles in the cleaning barrel 221 clean the steel wires, and the cleaning effect is good.
As an embodiment, as shown in fig. 4 and fig. 5 of the specification, the driving mechanism 41 includes two second gears 411 respectively disposed at ends of the two stirring shafts 40, two second slides 412 respectively disposed on the cleaning tanks 13 on upper and lower sides of the second gears 411, each second slide 412 is provided with a sliding seat 413 in a sliding manner, the two sliding seats 413 are connected by a connecting rod 414, two second racks respectively disposed on the two sliding seats 413 and respectively meshed with the two second gears 411, and the mounting directions of the two second racks are opposite, and an adjusting assembly disposed on the cleaning tank 13 and connected with one of the sliding seats 413 for driving the sliding seats 413 to reciprocate.
When the adjusting component drives the corresponding sliding seat 413 to slide reciprocally in the corresponding second sliding way 412, the connecting rod 414 can drive the two sliding seats 413 to slide in the same direction in the corresponding two sliding ways, the second racks on the two sliding seats 413 can drive the two gears meshed with the second racks to rotate in opposite directions, so that the two stirring shafts 40 rotate in opposite directions, the pickling solution and the neutralizer can be accelerated to fully react in the rotating process of the two stirring shafts 40, the reaction efficiency is improved, and the clean water in the cleaning tank 13 tends to be neutral, so that the clean water can be recycled.
In this embodiment, as can be seen from fig. 5 of the specification, the adjusting assembly includes an adjusting lever 415 disposed on one of the sliding carriages 413, on which a second guiding slot 416 is vertically disposed, a second motor 417 disposed on the cleaning tank 13, an output end of which is provided with a second rotating rod 418, and a second sliding rod 419 disposed at a free end of the second rotating rod 418 is slidably disposed in the second guiding slot 416.
After the second motor 417 is started, the second rotating rod 418 at the output end of the second motor rotates, and the second sliding rod 419 slides back and forth in the second guiding groove 416, so that the sliding seat 413 is driven to slide back and forth in the sliding way through the adjusting rod 415.
As an example, as shown in fig. 1 of the specification, the water removing mechanism 50 includes a fixing plate 51 disposed on a side plate of the treatment tank 10 at a rear side of the cleaning tank 13, a lifting plate 52 disposed above the fixing plate 51 in a lifting manner under the action of a lifting assembly, and a wiper 53 disposed at an opposite side of the fixing plate 51 from the lifting plate 52. The lifting plate 52 is driven to lift through the lifting assembly, and the two wiping pieces 53 wipe clean water on the surface of the steel wire through the cooperation of the lifting plate 52 and the fixed plate 51, so that the surface of the steel wire is cleaned.
In this embodiment, as shown in fig. 3 of the drawings, the lifting assembly comprises a top plate 54 disposed on a side wall of the processing box 10 above the lifting plate 52, a first guide rod 55 vertically above the lifting plate 52 and slidably connected to and penetrating through the top plate 54, a first screw 56 disposed above the lifting plate 52 in parallel with the first guide rod 55, a first bevel gear 57 rotatably disposed on the top plate 54, the first screw 56 threadedly connected to and penetrating through a middle portion of the first bevel gear 57, and a second bevel gear 59 disposed at an output end of the third motor 58 engaged with the first bevel gear 57.
The third motor 58 can be started to drive the first bevel gear 57 to rotate through the second bevel gear 59, so that the first screw rod 56 is driven to lift, the lifting plate 52 can be driven to lift after the first screw rod 56 is lifted, the threaded connection has self-locking property, and when the first bevel gear 57 stops rotating, the first screw rod 56 can be kept stationary, so that the lifting plate 52 is more stable. The wipe 53 is a water absorbing sponge.
In this embodiment, as can be seen from fig. 1 of the specification, a plurality of guide wheels 60 are disposed on each of the first guide roller 14 and the second guide roller 15 at intervals, and the plurality of guide wheels 60 are respectively in one-to-one correspondence with the plurality of feeding holes 21. When a plurality of steel wires are pickled at the same time, the guide wheels 60 can guide the running of the steel wires, so that the steel wires are prevented from being entangled in the running process.
It should be noted that in this patent application, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus, does not include, without limitation, additional elements that are defined by the term "include" an.
The foregoing embodiments are merely for illustrating the technical solution of the present utility model, but not for limiting the same, and although the present utility model has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that the technical solution described in the foregoing embodiments may be modified or substituted for some of the technical features thereof, and that these modifications or substitutions should not depart from the spirit and scope of the technical solution of the embodiments of the present utility model and should be included in the protection scope of the present utility model.

Claims (9)

1. Acid dip pickle is used in production of phosphating steel wire, characterized by includes:
The treatment box is divided into a pickling tank and a cleaning tank by a first partition board vertically arranged in the treatment box, two first guide rollers are arranged at the bottom of the pickling tank, and two second guide rollers are arranged on the side wall of the treatment box above the pickling tank;
The supporting plate is arranged on the side wall of the treatment box in front of the pickling tank, a plurality of feeding holes are formed in the supporting plate at intervals, and a cleaning mechanism arranged on the supporting plate is used for cleaning steel wires in the feeding holes;
The spray pipe is horizontally arranged on the side wall of the treatment box above the cleaning tank, a plurality of spray heads are arranged on the spray pipe, and one end of the spray pipe is communicated with the bottom of the cleaning tank through a water inlet pipe;
The neutralizing agent box is communicated with the cleaning tank through a first liquid inlet pipe, two stirring shafts are arranged at the bottom of the cleaning tank, one end of each stirring shaft is connected with a rotating shaft of the cleaning tank and penetrates through the rotating shaft of the cleaning tank, and then is connected with the driving mechanism and rotates in opposite directions under the action of the driving mechanism;
The water removing mechanism is arranged on the side wall of the treatment box at the rear side of the cleaning tank and is used for removing clean water on the surface of the steel wire.
2. A pickling device for producing phosphating steel wires according to claim 1, wherein the cleaning mechanism comprises:
the cleaning cylinders are respectively and rotatably arranged in the feeding holes, and bristles are arranged on the inner walls of the cleaning cylinders;
And the rotating assembly is arranged on the supporting plate and used for simultaneously driving a plurality of cleaning cylinders to rotate.
3. A pickling apparatus for producing phosphated steel wire according to claim 2, wherein the rotating assembly comprises:
the first gears are respectively arranged on the cleaning cylinders;
The first rack is slidably arranged in a first slideway on the supporting plate and meshed with the plurality of first gears;
The output end of the first motor is provided with a first rotating rod, the free end of the first rotating rod is provided with a first sliding rod, and the first sliding rod is in sliding connection with a first guide groove arranged at the end part of the first rack.
4. A pickling device for producing a phosphated steel wire according to claim 1, wherein the driving mechanism comprises:
the two second gears are respectively arranged at the end parts of the two stirring shafts;
the two second slide ways are respectively arranged on the cleaning tanks on the upper side and the lower side of the second gear, a slide seat is arranged in each second slide way in a sliding manner, and the two slide seats are connected through a connecting rod;
The two second racks are respectively arranged on the two sliding seats and meshed with the two second gears respectively, and the installation directions of the two second racks are opposite;
The adjusting component is arranged on the cleaning tank, connected with one of the sliding seats and used for driving the sliding seat to reciprocate.
5. A pickling device for producing phosphated steel wire as claimed in claim 4, wherein the adjusting assembly comprises:
The adjusting rod is arranged on one of the sliding seats, and a second guide groove is vertically formed in the adjusting rod;
The second motor is arranged on the cleaning tank, a second rotating rod is arranged at the output end of the second motor, and a second sliding rod arranged at the free end of the second rotating rod is slidably arranged in the second guide groove.
6. A pickling device for producing a phosphated steel wire according to claim 1, characterized in that the water removal mechanism comprises:
The fixed plate is arranged on the side plate of the treatment box at the rear side of the cleaning tank;
And the lifting plate is arranged above the fixed plate in a lifting manner under the action of the lifting assembly, and wiping pieces are arranged on the opposite sides of the fixed plate and the lifting plate.
7. A pickling apparatus for producing phosphated steel wire as claimed in claim 6 wherein the lifting assembly comprises:
The top plate is arranged on the side wall of the treatment box above the lifting plate, and the upper end of the first guide rod which is vertical to the upper part of the lifting plate is connected with the top plate in a sliding manner and penetrates through the top plate;
The first screw rod is arranged above the lifting plate in parallel with the first guide rod;
The first bevel gear is rotatably arranged on the top plate, and the first screw is in threaded connection with the middle part of the first bevel gear and penetrates through the middle part of the first bevel gear;
and a second bevel gear arranged at the output end of the third motor is meshed with the first bevel gear.
8. The pickling device for producing phosphating steel wires according to claim 6, wherein the wiping member is a water-absorbing sponge.
9. The pickling device for producing phosphatized steel wires according to any one of claims 1 to 8, wherein a plurality of guide wheels are arranged on the first guide roller and the second guide roller at intervals, and the guide wheels are respectively in one-to-one correspondence with the plurality of feed holes.
CN202421358947.5U 2024-06-14 2024-06-14 Pickling device for phosphating steel wire production Active CN222524689U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421358947.5U CN222524689U (en) 2024-06-14 2024-06-14 Pickling device for phosphating steel wire production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421358947.5U CN222524689U (en) 2024-06-14 2024-06-14 Pickling device for phosphating steel wire production

Publications (1)

Publication Number Publication Date
CN222524689U true CN222524689U (en) 2025-02-25

Family

ID=94683645

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421358947.5U Active CN222524689U (en) 2024-06-14 2024-06-14 Pickling device for phosphating steel wire production

Country Status (1)

Country Link
CN (1) CN222524689U (en)

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