Stainless steel wire winding equipment
Technical Field
The invention belongs to the technical field of steel wire winding, and particularly relates to stainless steel wire winding equipment.
Background
The steel wire winding machine is a key device in the field of metal wire processing and is widely applied to industries such as steel, automobiles, buildings and the like. The automatic winding machine is based on an automatic control technology, realizes high-efficiency and accurate winding of steel wires, has the functions of automatically adjusting tension, keeping constant winding speed and intelligent winding displacement, can greatly improve production efficiency, ensures that winding finished products are compact and tidy, and is an essential device in modern metal calendaring and wire rod product production.
One patent with publication number CN215946349U discloses a stainless steel wire winding device, which comprises a base and a movable frame; the utility model uses the motor shaft to drive the turntable and the wire collecting roller to synchronously start rotating, and uses the rotation of the wire collecting roller to pull the stainless steel wire to start winding on the surface of the wire collecting roller, and at the same time, the stainless steel wire slides along the wire guiding roller, the motion trail of the stainless steel wire is limited, and due to the action of the damping rod, the connecting plate and the movable frame are pushed to turn over towards the wire winding roller, the stainless steel wire wrapped outside the wire winding roller is clamped by the outer wall of the press roller matched with the wire winding roller, and meanwhile, the damping rod enables the press roller to dynamically compensate the diameter change of the stainless steel wire coil by shrinkage along with the diameter increase of the stainless steel wire coil.
However, in the existing steel wire winding device, the steel wire is required to be straightened before being stranded to eliminate internal stress, but the process is easy to cause microscopic tearing on the surface or inside of the steel wire, and because of mechanical friction, tension fluctuation or guide wheel design defects in a straightening link, local stress concentration of the steel wire can be caused, especially microcracks are more easily formed on the steel wire with uneven materials or higher hardness, the microcracks can be expanded due to repeated bending and interlayer extrusion during subsequent stranding and winding, so that the steel wire rope structure is loose and the bearing capacity is reduced, and more seriously, quality fluctuation often occurs in different batches or the same winding steel wire rope due to lack of real-time monitoring means of tearing degree, the fatigue resistance is large, the service life is unstable, and in addition, the existing equipment is controlled by a plurality of fixed parameters, and the straightening tension cannot be dynamically adjusted according to the material characteristics of the steel wire.
To this end, the invention provides a stainless steel wire winding device.
Disclosure of Invention
In order to overcome the deficiencies of the prior art, at least one technical problem presented in the background art is solved.
The technical scheme includes that the stainless steel wire winding device comprises a bottom plate, wherein the upper surface of the bottom plate is fixedly connected with a fixed motor, the output end of the fixed motor is in transmission connection with a driving wheel, one side of the driving wheel is in transmission connection with a winding roller, the upper surface of the bottom plate is further provided with a limiting assembly, the limiting assembly comprises a supporting table fixedly connected to the upper surface of the bottom plate, the upper surface of the supporting table is rotatably connected with a reciprocating screw, the circumference surface of the reciprocating screw is slidably connected with a rotating disc, the rotation is used for limiting steel wires, and the steel wires penetrate through the bottom end of the rotating disc and are wound on the circumference surface of the winding roller;
one side of rolling disc is provided with detection component, detection component includes the locating frame of rigid coupling at the rolling disc lower surface, one side rigid coupling of locating frame has the locating lever, the one end rigid coupling of locating lever has the fixed frame, the spacing groove has been seted up in the fixed frame, sliding connection has the sliding frame in the spacing groove, the inner wall rigid coupling of sliding frame has a plurality of tooth, the upper surface rigid coupling of bottom plate has the locating rack, the middle part rigid coupling of locating rack has the fixed axle, the rigid coupling has fixed gear on the periphery of fixed axle, fixed gear meshes with tooth mutually, the upper surface rigid coupling of sliding frame has the roof, the roof has been seted up to the position that the fixed frame corresponds the roof, the roof carries out upper and lower sliding operation along the roof, one side rigid coupling of roof has the detection head.
Preferably, the upper surface of bottom plate still rigid coupling has two locating plates, two one side rigid coupling of locating plate has limiting plate and spacing ring, the lower surface rigid coupling of locating lever has the slide, the position rigid coupling that the bottom plate corresponds the slide has first guide rail, the spout has been seted up to first guide rail inside, the locating lever carries out reciprocating sliding along the spout through the slide.
Preferably, when the wire rope passes through the positioning frame, the positioning frame and the rotating disc are used for limiting, then the wire rope is fixed on the winding roller, after the fixing is completed, the fixed motor and the reciprocating screw rod are started, the fixed motor and the reciprocating screw rod rotate at the same frequency, the wire is wound, the rotating disc on the circumferential surface of the reciprocating screw rod drives the positioning frame to slide when limiting the wire, the sliding driving positioning rod of the positioning frame and the fixed frame slide, the sliding driving of the fixed frame drives the sliding frame inside the sliding frame, teeth on the inner wall of the sliding frame perform long annular track movement under the limiting of the fixed gear, and the ejector block on the upper surface of the sliding frame can be used for driving the sliding frame to perform long annular track movement under the limiting of the limiting plate and the limiting ring during movement, because the detection head can only slide along the inner parts of the limiting plate and the limiting ring, the teeth on the inner wall of the sliding frame are forced to move under the limiting of the fixed gear, and the positioning block can also perform periodic up-down movement, so that the detection position is adjusted.
Preferably, the constant head tank has been seted up to the tip of locating lever, the diapire rigid coupling of constant head tank has the pressure spring, the top rigid coupling of pressure spring has the auxiliary block, the arc recess has been seted up to the upper surface of auxiliary block, and arc recess inner wall rigid coupling has a plurality of auxiliary brush, and auxiliary brush spiral array distributes, is the same with the steel wire transposition direction, the diapire rigid coupling of constant head tank has the electricity permanent magnetism piece, and the auxiliary piece is inhaled to electricity permanent magnetism piece magnetism, the both sides of locating frame all rigid coupling has coupling hose.
Preferably, after the steel wire passes through the positioning frame, the electric permanent magnet block is powered off, so that magnetism of the electric permanent magnet block is lost, the adsorption to the auxiliary block is relieved, the auxiliary block moves upwards to limit and squeeze the steel wire, meanwhile, holes on two sides of the auxiliary block are aligned with two connecting hoses on the outer wall of the positioning frame, the connecting hoses are externally connected, cleaning agents are introduced into the auxiliary block, an auxiliary brush is used for cleaning, the electric permanent magnet block is powered on after the steel wire is wound, the electric permanent magnet block adsorbs the auxiliary block to move downwards until the holes on two sides of the auxiliary block are staggered with the connecting hoses, and the cleaning agents are not introduced.
Preferably, one side rigid coupling of fixed frame has the traveller, the position rigid coupling that the bottom plate corresponds the traveller has the link, the traveller runs through the link, the one end rigid coupling of traveller has the connecting rod, the one end rigid coupling of connecting rod has the connecting plate, the top of bottom plate is provided with the connection box, the inside storage of connection box has lubricating oil, first cell body has been seted up to the bottom of connection box, the inner wall rigid coupling of first cell body has the spring, the one end and the connecting plate rigid coupling of spring, a plurality of locating hole has been seted up to the upper surface of connecting plate.
Preferably, when the fixed frame slides back and forth under the drive of the rotating disc, the sliding column on one side of the fixed frame can slide back and forth at the limiting frame of the connecting frame, the sliding of the sliding column drives the connecting rod at one end of the sliding column, the connecting rod drives the connecting plate at the end of the connecting rod to slide back and forth in the connecting box body, and the locating holes of the surface of the connecting plate are periodically aligned with the holes of the bottom wall of the connecting box body, so that lubricating oil in the connecting box body drops on the surface of the steel wire after winding.
Preferably, one side of fixed frame still is provided with adjusting part, adjusting part includes the lead screw of rigid coupling at the bottom plate upper surface, the circumference spiral shell sliding connection of lead screw has the fixed block, the circumference rigid coupling of lead screw has the rotation gear, one side rigid coupling of fixed frame has the rack board, rack board and rotation gear meshing, the rack board is spacing by the deflector of organism upper surface rigid coupling, the one end rigid coupling of fixed block has the riser, electric guide rail has been seted up to one side of riser, electric guide rail's inside sliding connection has electric guide block, one side rotation of electric guide block is connected with the guide arm.
Preferably, the fixed frame slides back and forth and can drive the rack board of its one side, the rotation gear of the setting of the slip drive bottom plate upper surface of rack board, the rotation of rotation gear drives the lead screw and rotates, the rotation drive fixed block of lead screw slides from top to bottom along the lead screw, the electric guide rail of fixed frame one end rigid coupling is driven in the upper and lower slip of lead screw, electric guide block of electric guide rail one side sliding connection also can drive the baffle and slide from top to bottom this moment, carry out tension adjustment work to wire rope, electric guide rail is the electric control simultaneously, can carry out the individual adjustment slip, make tension between the steel wire obtain adjusting.
Preferably, the circumference of the rotating disc is fixedly connected with a plurality of arc-shaped blocks, and the arc-shaped blocks are distributed on two sides of the rotating disc in a circumferential array.
The beneficial effects of the invention are as follows:
1. According to the stainless steel wire winding equipment, the steel wire is accurately limited through the positioning frame and the rotating disc and is fixed on the winding roller, the fixed motor and the reciprocating screw rotating at the same frequency are started to realize stable winding, the reciprocating screw drives the positioning frame to slide, the positioning rod, the fixed frame and the sliding frame are linked, teeth on the inner wall of the sliding frame move in a long annular track under the limit of the fixed gear, the detection head accurately slides by matching with the ejector block and the limiting structure, the positioning block periodically moves up and down, the detection position is effectively adjusted, and the detection accuracy is improved.
2. According to the stainless steel wire winding equipment, the magnetic characteristics of the electro-permanent magnet blocks are utilized to realize efficient operation and accurate control, the electro-permanent magnet blocks lose magnetism when the power is off, the auxiliary blocks are removed from being adsorbed, the auxiliary blocks move upwards to limit and squeeze steel wires, the positions of the steel wires are ensured to be stable, meanwhile, the open holes are aligned with the connecting hose, a cleaning agent can be introduced, the steel wires are effectively cleaned by matching with the auxiliary brushes, the power is supplied after winding is completed, the electro-permanent magnet blocks adsorb the auxiliary blocks to move downwards, the open holes and the hose stop liquid supply in a staggered mode, the automation degree of the whole process is high, the stability and cleaning during winding of the steel wires are guaranteed, the cleaning operation can be stopped in time after the winding is finished, the waste of resources is avoided, and the working efficiency and the working quality are improved.
Drawings
The invention is further described below with reference to the accompanying drawings.
FIG. 1 is a perspective view of a first embodiment of the present invention;
FIG. 2 is a schematic view of the structure of the body of the present invention;
FIG. 3 is a schematic diagram of the structure of the detection assembly of the present invention;
FIG. 4 is a schematic view of the cleaning assembly of the present invention;
FIG. 5 is a schematic diagram showing the connection relationship between the detection head and the fixed gear;
FIG. 6 is a schematic view of the construction of the spray coating assembly of the present invention;
FIG. 7 is a cross-sectional view of the connection box of the present invention;
FIG. 8 is a schematic view of the structure of the adjustment assembly of the present invention;
In the figure, 1, a bottom plate;
2. Fixing a motor; 21, a driving wheel, 22, a wind-up roll;
3. The device comprises a supporting table, 31, a rotating disc, 32, an arc-shaped block, 33, a reciprocating screw, 34, a positioning frame, 35, a positioning rod, 36, a positioning groove, 37, a pressure spring, 38, an auxiliary block, 39, an auxiliary brush, 310, a connecting hose, 311, a first guide rail, 312, a sliding groove, 313, a sliding plate, 314, a fixed frame, 315, a sliding frame, 316, teeth, 317, a top plate, 318, a detection head, 319, a positioning frame, 320, a fixed shaft, 321, a fixed gear, 322, a positioning plate, 323, a limiting plate, 324, a limiting ring, 325, a limiting groove, 326, a top groove, 327, a connecting frame, 328, a sliding column, 329, a connecting rod, 330, a connecting plate, 331, a connecting box, 332, a first groove, 333, a spring, 334 and a positioning hole;
4. rack plate 41, screw rod 42, rotary gear 43, fixed block 44, vertical plate 45, electric guide rail 46, electric guide block 47, guide rod 48 and guide plate.
Detailed Description
The invention is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
1-8, The stainless steel wire winding device comprises a bottom plate 1, wherein the upper surface of the bottom plate 1 is fixedly connected with a fixed motor 2, the output end of the fixed motor 2 is in transmission connection with a driving wheel 21, one side of the driving wheel 21 is in transmission connection with a winding roller 22, the upper surface of the bottom plate 1 is further provided with a limiting component, the limiting component comprises a supporting table 3 fixedly connected to the upper surface of the bottom plate 1, the upper surface of the supporting table 3 is rotatably connected with a reciprocating screw 33, the circumferential surface of the reciprocating screw 33 is slidably connected with a rotating disc 31, the rotating disc is used for limiting steel wires, and the steel wires penetrate through the bottom end of the rotating disc 31 and are wound on the circumferential surface of the winding roller 22; one side of the rotating disc 31 is provided with a detection component, the detection component comprises a positioning frame 34 fixedly connected to the lower surface of the rotating disc 31, one side of the positioning frame 34 is fixedly connected with a positioning rod 35, one end of the positioning rod 35 is fixedly connected with a fixed frame 314, one side of the fixed frame 314 is fixedly connected with a limit groove 325, a sliding frame 315 is connected in a sliding manner in the limit groove 325, the inner wall of the sliding frame 315 is fixedly connected with a plurality of teeth 316, the upper surface of the bottom plate 1 is fixedly connected with a positioning frame 319, the middle part of the positioning frame 319 is fixedly connected with a fixed shaft 320, the circumferential surface of the fixed shaft 320 is fixedly connected with a fixed gear 321, the fixed gear 321 is meshed with the teeth 316, the upper surface of the sliding frame 315 is fixedly connected with a top plate 317, the position of the fixed frame 314 corresponding to the top plate 317 is provided with a top groove 326, the top plate 317 slides up and down along the top groove 326, one side of the top plate 317 is fixedly connected with a detection head 318, the upper surface of the bottom plate 1 is fixedly connected with two positioning plates 322, one side of the two positioning plates 322 is fixedly connected with a limit plate 323 and a limit ring 324, the lower surface of the positioning rod 35 is fixedly connected with a sliding plate 313, the position of the bottom plate 1 corresponding to the sliding plate 313 is fixedly connected with a first guide rail 311, the first guide rail 311 is provided with a sliding groove 312 inside, the positioning rod 35 slides reciprocally along the sliding groove 312 through a sliding plate 313, the circumference surface of the rotating disc 31 is fixedly connected with a plurality of arc-shaped blocks 32, and the arc-shaped blocks 32 are distributed on two sides of the rotating disc 31 in a circumferential array.
Specifically, however, in the existing steel wire winding device, since the steel wire is subjected to straightening treatment before twisting to eliminate internal stress, microscopic tearing is easily generated on the surface or inside of the steel wire in the process, and because of mechanical friction, tension fluctuation or guide wheel design defects in the straightening link, local stress concentration of the steel wire can be caused, especially microcracks are more easily formed on the steel wire with uneven materials or higher hardness, the microcracks can be expanded due to repeated bending and interlayer extrusion during subsequent twisting and winding, so that the steel wire rope structure is loose and the bearing capacity is reduced, and more seriously, quality fluctuation often occurs in different batches or the same coil of steel wire rope due to lack of real-time monitoring means of tearing degree, the fatigue resistance is large, the service life is unstable, and in addition, the existing equipment is controlled by multiple dependent fixed parameters, and the straightening tension cannot be dynamically adjusted according to the material characteristics of the steel wire;
Therefore, the invention sets up the corresponding structure to solve according to the above-mentioned problem, first when the wire rope passes the locating frame 34, limit by locating frame 34 and rotating disc 31, then fix on wind-up roll 22, after finishing fixing, start fixed electrical machinery 2 and reciprocating screw 33, fixed electrical machinery 2 and reciprocating screw 33 rotate with the same frequency, wind up the wire, the rotating disc 31 on the circumference of reciprocating screw 33 is while limiting the wire, drive the locating frame 34 to slide, the slide of locating frame 34 drives locating rod 35 and fixed frame 314 to slide, the slide of fixed frame 314 drives its inner sliding frame 315, make the tooth 316 of the inner wall of sliding frame 315 carry on the long circular orbit movement under the limit of fixed gear 321, the ejector block of the upper surface of sliding frame 315 will drive the long circular orbit movement under the limit of limit plate 323 and limit ring 324 at the same time of movement, because the detecting head 318 is in limit plate 323 and limit ring 324, therefore the detecting head 318 can only slide along the inside of limit plate 323 and limit ring 324, just force the tooth 316 of inner wall of sliding frame to move under the limit of fixed gear 321, can also detect the periodic movement;
Through locating frame 34 and rolling disc 31 to the accurate spacing of steel wire and be fixed in wind-up roll 22, start fixed motor 2 and the reciprocal screw rod 33 realization of same frequency pivoted and stabilize the rolling, reciprocal screw rod 33 drive locating frame 34 slides, linkage locating lever 35, fixed frame 314 and slip frame 315, make slip frame 315 inner wall tooth 316 do long annular orbit motion under fixed gear 321 is spacing, cooperation kicking block and limit structure, let detect head 318 accurate slip, the periodic upper and lower removal of locating piece, effectively adjust the testing position, promote and detect the precision.
As shown in fig. 4, a positioning groove 36 is formed at the end of the positioning rod 35 in this embodiment, a pressure spring 37 is fixedly connected to the bottom wall of the positioning groove 36, an auxiliary block 38 is fixedly connected to the top end of the pressure spring 37, an arc-shaped groove is formed on the upper surface of the auxiliary block 38, a plurality of auxiliary brushes 39 are fixedly connected to the inner wall of the arc-shaped groove, the auxiliary brushes 39 are distributed in a spiral array, the direction of the auxiliary brushes is the same as the direction of twisting the steel wires, an electric permanent magnet block is fixedly connected to the bottom wall of the positioning groove 36, an electric permanent magnet block magnetic auxiliary block 38 is fixedly connected to the two sides of the positioning frame 34, and connecting hoses 310 are fixedly connected to the two sides of the positioning frame 34.
Specifically, after the steel wire passes through the positioning frame 34, the electric permanent magnet block is powered off to lose magnetism, the adsorption of the auxiliary block 38 is removed, the auxiliary block 38 moves upwards to limit and squeeze the steel wire, meanwhile, openings at two sides of the auxiliary block 38 are aligned with two connecting hoses 310 on the outer wall of the positioning frame 34, the connecting hoses 310 are externally connected, a cleaning agent is introduced into the auxiliary block 38, the auxiliary brush 39 is assisted to clean, after the steel wire is wound, the electric permanent magnet block is powered on, so that the electric permanent magnet block adsorbs the auxiliary block 38 to move downwards until the openings at two sides of the auxiliary block 38 are misplaced with the connecting hoses 310, and the cleaning agent is not introduced;
The high-efficiency operation and the accurate control are realized by utilizing the magnetic characteristics of the electro-permanent magnet blocks, the electro-permanent magnet blocks lose magnetism when the power is cut off, the adsorption to the auxiliary blocks 38 is removed, the auxiliary blocks 38 move upwards to limit and squeeze the steel wires, the position stability of the steel wires is ensured, meanwhile, the holes are aligned with the connecting hose 310, cleaning agents can be introduced, the auxiliary brushes 39 are matched for effectively cleaning the steel wires, the power is supplied after the winding is completed, the electro-permanent magnet blocks adsorb the auxiliary blocks 38 to move downwards, the holes and the hose stop supplying liquid in a staggered manner, the automation degree of the whole process is high, the stability and the cleaning during the winding of the steel wires are ensured, the cleaning operation can be stopped in time after the winding is finished, the waste of resources is avoided, and the working efficiency and the working quality are improved.
In a second embodiment, as shown in fig. 1 to 8, in a first comparative embodiment, a sliding column 328 is fixedly connected to one side of a fixed frame 314, a connecting frame 327 is fixedly connected to a position of a bottom plate 1 corresponding to the sliding column 328, the sliding column 328 penetrates through the connecting frame 327, a connecting rod 329 is fixedly connected to one end of the sliding column 328, a connecting plate 330 is fixedly connected to one end of the connecting rod 329, a connecting box 331 is arranged above the bottom plate 1, lubricating oil is stored in the connecting box 331, a first groove 332 is formed in the bottom of the connecting box 331, a spring 333 is fixedly connected to the inner wall of the first groove 332, one end of the spring 333 is fixedly connected with the connecting plate 330, and a plurality of positioning holes 334 are formed in the upper surface of the connecting plate 330.
Specifically, when the fixed frame 314 slides back and forth under the driving of the rotating disc 31, the sliding column 328 at one side of the fixed frame 314 slides back and forth on the limiting frame of the connecting frame 327, the sliding of the sliding column 328 drives the connecting rod 329 at one end of the sliding column, the connecting rod 329 drives the connecting plate 330 at the end of the connecting rod to slide back and forth in the connecting box 331, and the sliding of the connecting plate 330 drives the positioning hole 334 on the surface of the connecting plate to be aligned with the hole on the bottom wall of the connecting box 331 periodically, so that lubricating oil in the connecting box 331 drops on the surface of the rolled steel wire;
The sliding of the fixed frame 314 drives the sliding column 328 to reciprocate in the limiting frame, and then the connecting plate 330 is made to slide back and forth in the connecting box 331 through the connecting rod 329, the positioning holes 334 are utilized to be periodically aligned with holes on the bottom wall of the connecting box 331, accurate dripping of lubricating oil is achieved, lubricating oil can be automatically and uniformly smeared on the surface of a steel wire in the process of winding the steel wire, friction among the steel wires is effectively reduced, abrasion is reduced, the service life of the steel wire is prolonged, smooth winding work is guaranteed, and the overall operation efficiency and quality are improved.
As shown in fig. 8, an adjusting component is further disposed on one side of the fixing frame 314, the adjusting component includes a screw rod 41 fixedly connected to the upper surface of the base plate 1, a fixing block 43 is slidably connected to the circumferential surface of the screw rod 41, a rotating gear 42 is fixedly connected to the circumferential surface of the screw rod 41, a rack plate 4 is fixedly connected to one side of the fixing frame 314, the rack plate 4 is meshed with the rotating gear 42, the rack plate 4 is limited by a guide plate 48 fixedly connected to the upper surface of the machine body, a riser 44 is fixedly connected to one end of the fixing block 43, an electric guide rail 45 is disposed on one side of the riser 44, an electric guide block 46 is slidably connected to the inside of the electric guide rail 45, and a guide rod 47 is rotatably connected to one side of the electric guide block 46.
Specifically, the fixed frame 314 slides back and forth while driving the rack plate 4 at one side thereof, the sliding of the rack plate 4 drives the rotating gear 42 arranged on the upper surface of the bottom plate 1, the rotation of the rotating gear 42 drives the screw rod 41 to rotate, the rotation of the screw rod 41 drives the fixed block 43 to slide up and down along the screw rod 41, the up and down sliding of the screw rod 41 drives the electric guide rail 45 fixedly connected with one end of the fixed frame 314, at this time, the electric guide block 46 slidingly connected with one side of the electric guide rail 45 also drives the guide rail to slide up and down, tension adjustment work is performed on the steel wire rope, and meanwhile, the electric guide rail 45 is electrically controlled, and independent adjustment sliding can be performed, so that the tension between steel wires is adjusted;
the rack plate 4 is driven by sliding through the fixed frame 314, the screw rod 41 is driven to rotate through the rotating gear 42, the fixed block 43 and the electric guide rail 45 slide up and down, the guide plate moves along with the electric guide block 46, dynamic adjustment of the tension of the steel wire rope is achieved, the electric control of the electric guide rail 45 can be independently adjusted, the tension in the process of winding the steel wire can be accurately controlled, uniform and stable tension of the steel wire is ensured, the problems of wire breakage, abrasion and the like caused by uneven tension are effectively avoided, and the use safety and the whole operation quality of the steel wire are improved.
According to the working principle, firstly, when a steel wire rope passes through the positioning frame 34 and is limited by the positioning frame 34 and the rotating disc 31, and then the steel wire rope is fixed on the wind-up roll 22, after the fixing is completed, the fixed motor 2 and the reciprocating screw 33 are started, the fixed motor 2 and the reciprocating screw 33 rotate at the same frequency to wind up the steel wire, the rotating disc 31 on the circumferential surface of the reciprocating screw 33 drives the positioning frame 34 to slide while limiting the steel wire, the sliding of the positioning frame 34 drives the positioning rod 35 and the fixed frame 314 to slide, the sliding of the fixed frame 314 drives the sliding frame 315 to enable teeth 316 on the inner wall of the sliding frame 315 to move in a long annular track under the limit of the fixed gear 321, and the ejector block on the upper surface of the sliding frame 315 can drive the sliding frame 315 to move in a long annular track under the limit of the limit plate 323 and the limit ring 324 at the same time, because the detection head 318 only slides along the inside of the limit plate 323 and the limit ring 324, the teeth 316 on the inner wall of the sliding frame 315 can also move in a periodic mode under the limit of the fixed gear 321, and the detection position can be adjusted;
The steel wire is precisely limited by the positioning frame 34 and the rotating disc 31 and is fixed on the wind-up roll 22, the fixed motor 2 and the reciprocating screw 33 rotating at the same frequency are started to realize stable winding, the reciprocating screw 33 drives the positioning frame 34 to slide, the positioning rod 35, the fixed frame 314 and the sliding frame 315 are linked, teeth 316 on the inner wall of the sliding frame 315 move along a long annular track under the limit of the fixed gear 321, the detection head 318 slides precisely by matching with the ejector block and the limiting structure, the positioning block moves up and down periodically, the detection position is effectively adjusted, and the detection precision is improved;
After the steel wire passes through the positioning frame 34, the electric permanent magnet block is powered off to lose magnetism, the adsorption of the auxiliary block 38 is removed, the auxiliary block 38 moves upwards to limit and squeeze the steel wire, meanwhile, openings on two sides of the auxiliary block 38 are aligned with two connecting hoses 310 on the outer wall of the positioning frame 34, the connecting hoses 310 are externally connected, a cleaning agent is introduced into the auxiliary block 38, the auxiliary brush 39 is assisted to clean, the electric permanent magnet block is powered on after the steel wire is wound, the electric permanent magnet block adsorbs the auxiliary block 38 to move downwards until the openings on two sides of the auxiliary block 38 are misplaced with the connecting hoses 310, and the cleaning agent is not introduced;
meanwhile, the holes are aligned with the connecting hose 310, cleaning agents can be introduced, the steel wires are effectively cleaned by matching with the auxiliary brushes 39, the electric permanent magnet blocks absorb the auxiliary blocks 38 to move downwards, the holes and the hose misplace to stop liquid supply, the automation degree of the whole process is high, the stability and the cleaning during the winding of the steel wires are ensured, the cleaning operation can be stopped in time after the winding is finished, the waste of resources is avoided, and the working efficiency and the quality are improved;
When the fixed frame 314 slides back and forth under the drive of the rotating disc 31, the sliding column 328 on one side of the fixed frame 314 slides back and forth on the limiting frame of the connecting frame 327, the sliding of the sliding column 328 drives the connecting rod 329 on one end of the sliding column, the connecting rod 329 drives the connecting plate 330 on the end of the connecting rod to slide back and forth in the connecting box 331, and the sliding of the connecting plate 330 drives the positioning holes 334 on the surface of the connecting plate 330 to be aligned with the holes on the bottom wall of the connecting box 331 periodically, so that lubricating oil in the connecting box 331 drops on the surface of the rolled steel wire;
The sliding column 328 is driven to reciprocate in the limiting frame through the sliding of the fixed frame 314, the connecting plate 330 is further driven to slide back and forth in the connecting box 331 through the connecting rod 329, the positioning holes 334 are aligned with holes in the bottom wall of the connecting box 331 periodically, accurate dripping of lubricating oil is achieved, lubricating oil can be automatically and uniformly smeared on the surface of the steel wire in the process of rolling the steel wire, friction among the steel wires is effectively reduced, abrasion is reduced, the service life of the steel wire is prolonged, smooth rolling work is guaranteed, and overall operation efficiency and quality are improved;
The fixed frame 314 slides back and forth and simultaneously drives the rack plate 4 at one side, the sliding of the rack plate 4 drives the rotating gear 42 arranged on the upper surface of the bottom plate 1, the rotation of the rotating gear 42 drives the screw rod 41 to rotate, the rotation of the screw rod 41 drives the fixed block 43 to slide up and down along the screw rod 41, the up and down sliding of the screw rod 41 drives the electric guide rail 45 fixedly connected with one end of the fixed frame 314, at the moment, the electric guide block 46 which is connected with one side of the electric guide rail 45 also drives the guide plate to slide up and down, tension adjustment work is carried out on a steel wire rope, and meanwhile, the electric guide rail 45 is electrically controlled and can carry out independent adjustment sliding, so that the tension between steel wires is adjusted;
the rack plate 4 is driven by sliding through the fixed frame 314, the screw rod 41 is driven to rotate through the rotating gear 42, the fixed block 43 and the electric guide rail 45 slide up and down, the guide plate moves along with the electric guide block 46, dynamic adjustment of the tension of the steel wire rope is achieved, the electric control of the electric guide rail 45 can be independently adjusted, the tension in the process of winding the steel wire can be accurately controlled, uniform and stable tension of the steel wire is ensured, the problems of wire breakage, abrasion and the like caused by uneven tension are effectively avoided, and the use safety and the whole operation quality of the steel wire are improved.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.