Structure-adjustable winding drum for metal wire drawing machine and method
By adjusting the guide wheel spacing and using a hydraulic-pneumatic system to realign the distribution of the metal wire coils, the problem of uneven distribution of metal wire coils in the adjustable winding cylinder of the wire drawing machine was solved, achieving convenient packaging and reduced damage.
Patent Information
- Application Number
- CN202511257882.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2025-11-18
AI Technical Summary
The existing adjustable winding cylinder used in metal wire drawing machines results in uneven distribution of metal wire coils after drawing, which easily scatter and tangle, leading to inconvenience in packaging and product damage.
By adjusting the spacing of the regular guide wheels, universal joint, and arc-shaped guide wheels, and combining the output operation of the hydraulic telescopic arm and pneumatic telescopic column, the electric rotating seat and active guide wheels are driven to eliminate the stress in the metal wire ring and redistribute it in a regular manner.
It effectively prevents the metal wire coils from scattering during transfer, reduces tangling, improves packaging efficiency, and reduces product damage.
Smart Images

Figure CN120961650A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of metal wire drawing, and in particular to a structure-adjustable winding cylinder for a metal wire drawing machine and a method. BACKGROUND
[0002] The metal wire drawing machine is mainly formed of an old pulley wire drawing machine, and coexists with a double drum type, a straight type, a live lap type, a tuning roller linear type, a combined type and various water tank wire drawing machines. The inverted wire drawing machine is a metal drawing equipment mainly used in the standard part industry, the shelf manufacturing industry and the steel wire processing enterprise. The motor drives the belt pulley and the three-stage gear transmission to drive the drum to rotate. The wire is guided into the inverted wire falling frame by the lead-in roller after drawing, so as to realize non-slip drawing and large-disk heavy wire collection.
[0003] The existing structure-adjustable winding cylinder is used, such as the application number CN202110081712.0 related to the technical field of metal wire drawing auxiliary matching, in particular to a structure-adjustable winding cylinder for a metal wire drawing machine, comprising an external installation main support and a bottom driving motor. The structure-adjustable winding cylinder for a metal wire drawing machine of the present application is composed of an external installation main support, a rotating winding mechanism installed on the upper end of the external installation main support and a longitudinal reciprocating guide mechanism. The bottom driving motor can drive two mechanisms at the same time, and synchronous operation is adopted, so that the transmission efficiency is very high and the cost is low. The side guide plate can limit and guide the longitudinal reciprocating guide mechanism, and the inner thread lifting seat is extruded to control the adjustment gear switching transmission, so as to automatically change the direction and make the inner thread lifting seat automatically reciprocate. The adjustable external telescopic rod can freely change the maximum contractible radius of the winding outer frame according to the needs, so that the winding quantity of the metal wire can be adjusted, and the application range is wider. However, in the above-mentioned technology, the product formed after the wire drawing is not uniformly distributed, and the metal wire coil has a certain stress inside. When packing and transferring, the metal wire coil is easy to scatter, and the knot is easy to occur, which is not convenient for packing. It is very tedious to handle, and the product is easy to scratch. Therefore, we propose a structure-adjustable winding cylinder for a metal wire drawing machine and a method to solve the above problems. SUMMARY
[0004] In view of the above problems, the application provides a structure-adjustable winding cylinder for a metal wire drawing machine and a method, which mainly utilizes regular guide wheels, universal connecting shafts and arc-shaped guide wheels to be adjusted to appropriate spacing positions, and cooperates with the output operation of a hydraulic telescopic arm and a pneumatic telescopic column to drive the output operation of an electric rotating seat, so that the wheel box seat is rotated to an appropriate position, and the output power of a rotating motor is operated to drive the active guide wheel to cooperate with the regular guide wheels, the universal connecting shafts and the arc-shaped guide wheels to eliminate the stress of the metal wire coil and readjust the distribution of the metal wire coil.
[0005] To achieve the above object, the application provides the following technical scheme. A structure-adjustable winding cylinder for a metal wire drawing machine, comprising a displacement transportation assembly and a winding cylinder adjusting mechanism, one end of the displacement transportation assembly is provided with a bolted feeding flow guide component above, the inner side of both ends of the feeding flow guide component is provided with an active force elimination component, the inner side of the top end of the feeding flow guide component is provided with a bolted driving mechanism, the upper side of the displacement transportation assembly is provided with the winding cylinder adjusting mechanism, and the outer side of the winding cylinder adjusting mechanism is provided with an auxiliary shearing assembly in meshing and sliding connection.
[0006] As a further technical scheme, the displacement transportation assembly comprises a base pad, a groove pool, a track strip, a sliding frame, an electric track wheel, a car plate, an assembly disc, a bearing base disc, a bottom rotating column and an end lifting strip, the inner side of the base pad is provided with the groove pool above, the inner top side of the groove pool is provided with the track strip, the track strip is slidingly connected with the sliding frame, the output end of the sliding frame is provided with the electric track wheel, the upper side of the sliding frame is provided with the car plate, the upper side of the middle part of the car plate is provided with the assembly disc, the middle part of the assembly disc is provided with the bearing base disc in bearing connection, the upper side of the bearing base disc is provided with the bottom rotating column, and the side side of the bottom rotating column is provided with the end lifting strip above.
[0007] As a further technical scheme, the feeding flow guide component comprises a bolt end frame, a back shell plate, a top plate, a guide pulley, a limiting guide rod, a side shell plate, an electric sliding block and an opening and closing door plate, the bolt end frame is bolted to one end of the base pad, the upper side of the bolt end frame is provided with the back shell plate, the top end of the back shell plate is provided with the top plate, the inner side of the top plate is provided with the guide pulley below, the outer side of the top plate is provided with the limiting guide rod below, both ends of the back shell plate are provided with the side shell plate, and the front side of the side shell plate is provided with the electric sliding block, and the output end of the electric sliding block is provided with the opening and closing door plate in threaded connection.
[0008] As a further technical scheme, the feeding guide component further comprises a bolt inclined frame, a front storage bin, an incoming line guide wheel, a rear storage bin, a threading bin, a sleeving cylinder, a wheel set frame and a movable pulley, one side above the side shell plate is provided with the bolt assembled bolt inclined frame, the top side of the bolt inclined frame is provided with the front storage bin, the inner side of the front storage bin is provided with the incoming line guide wheel, the rear end of the front storage bin is provided with the rear storage bin, the inner side of the rear storage bin is provided with the threading bin, the middle inner side of the side shell plate is provided with the sleeving cylinder which is sleeved and installed, the output end of the sleeving cylinder is provided with the wheel set frame, and the inner side of the wheel set frame is provided with the movable pulley.
[0009] As a further technical scheme, the active force dissipating component comprises a hydraulic lifting column, a lifting connecting frame, a hydraulic telescopic arm, a pneumatic telescopic column, an electric rotating seat, a wheel box seat, a rotating motor and an active guide wheel, the hydraulic lifting column is arranged on the lower inner side of the side shell plate, the output end of the hydraulic lifting column is provided with the lifting connecting frame, the lower end of one end of the lifting connecting frame is provided with the hydraulic telescopic arm, the output end of the hydraulic telescopic arm is provided with the pneumatic telescopic column, the output end of the pneumatic telescopic column is provided with the electric rotating seat, the output end of the electric rotating seat is provided with the wheel box seat, the upper end of one end of the wheel box seat is provided with the rotating motor, and the output end of the rotating motor is provided with the active guide wheel.
[0010] As a further technical scheme, the driving mechanism comprises a top base plate, a transmission box, a belt pulley set, a driving motor, a top rotating frame, a shaping cylinder and a plug-in rod, the top base plate is bolted to the top end of the top plate, the top base plate is provided with the transmission box above, one end of the transmission box is provided with the belt pulley set, the inner side of one end of the belt pulley set is provided with the driving motor output end, the output end of the transmission box is provided with the top rotating frame, the outer side of the top rotating frame is provided with the shaping cylinder, and the middle inner side of the top rotating frame is provided with the plug-in rod which is distributed in a ring shape.
[0011] As a further technical scheme, the winding drum adjusting mechanism comprises a six-groove base, a gear ring, a transmission motor, a driving gear column, a driven gear, a pneumatic spline shaft, a lead screw, a sliding base block, an inner lining column and an electric inclined strip, the six-groove base is arranged at the top end of the end lifting strip, the outer side of the six-groove base is provided with the gear ring, the middle lower part of the six-groove base is provided with the transmission motor, the output end of the transmission motor is provided with the driving gear column, the output end of the driving gear column is provided with the driven gear, the inner side of the driven gear is provided with the pneumatic spline shaft, the output end of the pneumatic spline shaft is provided with the lead screw, the output end of the lead screw is threadedly connected with the sliding base block, the upper part of the sliding base block is provided with the inner lining column, and the upper inner side of the inner lining column is provided with the electric inclined strip.
[0012] As a further technical scheme, the winding drum adjusting mechanism further comprises a central screw rod, a lifting base, a hydraulic lifting column, a slot block, a sliding groove arm, a pulley groove box, a hydraulic connecting frame, a regular guide wheel, a universal connecting shaft and an arc-shaped guide wheel, the output end of the driving gear column is connected with the central screw rod penetrating the six-slot base, the output end of the central screw rod is threadedly connected with the lifting base, the side of the lifting base is provided with the hydraulic lifting column, the output end of the hydraulic lifting column is provided with the slot block, the outer side of the lifting base is provided with the bolted sliding groove arm, the upper side of the sliding groove arm is slidingly connected with the pulley groove box, one end of the pulley groove box is provided with the output end of the hydraulic connecting frame, the inner side of both ends of the pulley groove box is provided with the regular guide wheel, the inner end of the regular guide wheel is provided with the universal connecting shaft, and the inner end of the universal connecting shaft is provided with the arc-shaped guide wheel.
[0013] As a further technical scheme, the auxiliary shearing assembly comprises a circumferential groove, an electric gear, a hydraulic lifting arm, an electric rotating frame, a first electric clamp, a hydraulic cutter, a second electric clamp and an electric banding device, the circumferential groove is slidingly connected to the inner side of the outer edge of the six-slot base, the output end of the circumferential groove is provided with the electric gear, the outer end of the circumferential groove is provided with the hydraulic lifting arm above, the upper output end of the hydraulic lifting arm is provided with the electric rotating frame, one end of the electric rotating frame is provided with the first electric clamp outside, one end of the electric rotating frame is provided with the hydraulic cutter inside, the other end of the electric rotating frame is provided with the second electric clamp outside, and the other end of the electric rotating frame is provided with the electric banding device inside.
[0014] As a further technical scheme, in use, the output end of the electric sliding block on the inner side of one end of the side shell plate is operated to make the output end operate, so that the side shell plate is opened after the opening and closing door plate slides and operates, then the output end of the sliding frame is operated to make the output end of the sliding frame drive the electric track wheel to operate, so that the sliding frame operates to make the car plate drive the winding cylinder adjusting mechanism to operate to the position suitable for the setting of the back shell plate and the top plate, when winding is needed, the transmission motor is operated to make the driving gear column output operate to drive the central lead screw to output operate to make the lifting base adjust to the suitable height position, and the output end of the hydraulic lifting column on the side of the lifting base is operated to drive the output end to operate, so that the plug-in block is plugged on the plug-in rod, when threading is needed, the wire guide on the inner side of the front storage is operated to pass through the threading warehouse on the inner side of the rear storage, so that the fixed guide pulley on the inner side of the top plate is wound and connected, the limiting guide rod is operated to limit the effect, then the output end of the sleeve air cylinder is operated to make the wheel set frame inner side movable pulley fit on the shaping cylinder, so that the metal wire falls, then the pneumatic spline shaft is operated to connect, the output end above the driving gear column is disconnected, then the output end is operated to make the transmission motor operate to drive the driving gear column and the driven gear to engage and transmit, the lead screw is operated to make the sliding base block slide to adjust the inner lining column and the electric inclined strip to the suitable position, then the output power of the hydraulic connecting frame on the side of the lifting base is operated to make the sliding groove arm and the pulley groove box slide, the regular guide wheel, the universal shaft and the arc guide wheel are adjusted to the suitable interval position, then the electric gear on the circumference groove is operated to make the circumference groove slide to the suitable position, the output power of the hydraulic lifting arm is operated to drive the output end to operate, the electric rotating frame is operated to the suitable angle position, and the second electric clamp and the electric binding belt cooperate to bind the falling metal wire end, then the output power of the driving motor is operated to make the belt pulley set output operate to drive the transmission box to output operate to drive the top rotating frame, the shaping cylinder and the inner lining column to be wound and formed, after the winding and forming, the output power of the hydraulic lifting column is operated to make the lifting connecting frame output to the suitable height, the output power of the hydraulic telescopic arm and the pneumatic telescopic column is operated to make the electric rotating seat output to rotate to the suitable position, and the output power of the rotating motor is operated to make the driving guide wheel cooperate with the regular guide wheel, the universal shaft and the arc guide wheel to eliminate the stress of the metal wire ring, readjust the distribution of the metal wire ring, facilitate packaging and prevent knotting.When winding into shape, the electric gear on the circumferential groove is used to slide the circumferential groove to the appropriate position, and the hydraulic lifting arm is used to drive the output end to operate, so that the electric rotating frame is operated to the appropriate angle position, and the first electric clamp and the hydraulic cutter are cooperated to cut the upper part of the wire, so that the winding drum adjusting mechanism is separated from the driving mechanism to achieve the effect of discharging and transferring.
[0015] Compared with the prior art, the beneficial effects of the present application are: The device mainly adjusts the regular guide wheel, universal connecting shaft and arc-shaped guide wheel to the appropriate spacing position, cooperates the output operation of the hydraulic telescopic arm and the pneumatic telescopic column, drives the wheel box seat to rotate to the appropriate position, drives the main guide wheel to cooperate with the regular guide wheel, universal connecting shaft and arc-shaped guide wheel to eliminate the stress of the wire coil, and readjusts the distribution of the wire coil, so that the wire coil is not easy to scatter during subsequent transfer, is convenient for packaging, prevents knotting, reduces the damage of the wire coil, and improves the packaging efficiency of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structural schematic view of a winding drum with adjustable structure for a metal wire drawing machine and a method. Figure 2 It is a structural schematic view from below in the present application. Figure 3 It is a structural schematic view of a section in the present application. Figure 4 It is a structural schematic view of a displacement transportation assembly in the present application. Figure 5 It is a structural schematic view of a main active force elimination component in the present application. Figure 6 It is a structural schematic view of a driving mechanism in the present application. Figure 7 It is a structural schematic view of a winding drum adjusting mechanism in the present application. Figure 8 It is a structural schematic view of a main gear column and a driven gear in the present application. Figure 9 It is a structural schematic view of an auxiliary shearing assembly in the present application.
[0017] Figure 10 It is a structural schematic view of a top rotating frame and a plug-in rod in the present application.
[0018] In the figure: 1, displacement transport assembly; 101, base pad; 102, groove pool; 103, track strip; 104, sliding frame; 105, electric track wheel; 106, car plate; 107, assembly disc; 108, bearing base disc; 109, bottom rotating column; 1010, end lifting strip; 2, feeding flow guide component; 201, bolt end frame; 202, back shell plate; 203, top plate; 204, fixed guide pulley; 205, limiting guide rod; 206, side shell plate; 207, electric sliding block; 208, opening and closing door plate; 209, bolt inclined frame; 2010, front warehouse; 2011, wire guide wheel; 2012, rear warehouse; 2013, threading warehouse; 2014, sleeving cylinder; 2015, wheel set frame; 2016, movable pulley; 3, active flow resistance component; 301, hydraulic lifting column; 302, lifting connecting frame; 303, hydraulic telescopic arm; 304, pneumatic telescopic column; 305, electric rotating seat; 306, wheel box seat; 307, rotating motor; 308, active guide wheel; 4, driving mechanism; 401, top base disc; 402, speed change machine box; 403, belt pulley set; 404, driving motor; 405, top rotating frame; 406, shaping cylinder; 407, plug-in rod; 5, winding cylinder adjusting mechanism; 501, six-slot base; 502, gear ring; 503, transmission motor; 504, driving gear column; 505, driven gear; 506, pneumatic spline shaft; 507, lead screw; 508, sliding base block; 509, inner lining column; 5010, electric inclined strip; 5011, central screw; 5012, lifting base; 5013, hydraulic lifting column; 5014, slot block; 5015, sliding slot arm; 5016, pulley slot box; 5017, hydraulic connecting frame; 5018, regular guide wheel; 5019, universal connecting shaft; 5020, arc guide wheel; 6, auxiliary shearing assembly; 601, circumferential groove; 602, electric gear; 603, hydraulic lifting arm; 604, electric rotating frame; 605, first electric clamp; 606, hydraulic cutter; 607, second electric clamp; 608, electric banding device. DETAILED DESCRIPTION
[0019] In the description of the present application, it needs to be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" and the like are only for the purpose of description and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" and the like can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise stated, the meaning of "a plurality of" is two or more.
[0020] In the description of the present application, it needs to be understood that unless otherwise explicitly specified and limited, the terms "installation", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood through specific circumstances.
[0021] The technical solutions in the embodiments of the present application will be described clearly and completely in the following with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0022] Please refer to Figures 1-10 In the embodiments of the present application, a structure-adjustable winding drum for a metal wire drawing machine comprises a displacement conveying assembly 1 and a winding drum adjusting mechanism 5. A bolted feeding flow guide component 2 is arranged above one end of the displacement conveying assembly 1. A driven flow resistance component 3 is arranged inside both ends of the feeding flow guide component 2. A bolted driving mechanism 4 is arranged inside the top end of the feeding flow guide component 2. The displacement conveying assembly 1 is provided above the winding drum adjusting mechanism 5. An auxiliary shearing assembly 6 is arranged on the outer side of the winding drum adjusting mechanism 5 in meshing sliding connection.
[0023] The displacement conveying assembly 1 comprises a base pad 101, a groove pool 102, a track strip 103, a sliding frame 104, an electric track wheel 105, a car plate 106, an assembly disc 107, a bearing base disc 108, a bottom rotating column 109 and an end lifting strip 1010, the inner side of the base pad 101 is provided with the groove pool 102, the inner top side of the groove pool 102 is provided with the track strip 103, the track strip 103 is slidably connected with the sliding frame 104, the output end of the sliding frame 104 is provided with the electric track wheel 105, the upper side of the sliding frame 104 is provided with the car plate 106, the upper side of the middle part of the car plate 106 is provided with the assembly disc 107, the middle part of the assembly disc 107 is provided with the bearing-connected bearing base disc 108, the upper side of the bearing base disc 108 is provided with the bottom rotating column 109, and the side side of the bottom rotating column 109 is provided with the end lifting strip 1010.
[0024] In the embodiment of the application, after the sliding frame 104 output end is output and runs, the sliding frame 104 output end can drive the electric track wheel 105 to run, and after running, the sliding frame 104 drives the car plate 106 to drive the winding cylinder adjusting mechanism 5 to run to the position where the back shell plate 202 and the top plate 203 are arranged.
[0025] The feeding flow guide component 2 comprises a bolt end frame 201, a back shell plate 202, a top plate 203, a guide pulley 204, a limiting guide rod 205, a side shell plate 206, an electric sliding block 207 and an opening and closing door plate 208, the bolt end frame 201 is bolted on one end of the upper side of the base pad 101, the upper side of the bolt end frame 201 is provided with the back shell plate 202, the top end of the back shell plate 202 is provided with the top plate 203, the inner side of the top plate 203 is provided with the guide pulley 204, the outer side of the top plate 203 is provided with the limiting guide rod 205, both ends of the back shell plate 202 are provided with the side shell plate 206, the front side of the side shell plate 206 is provided with the electric sliding block 207, and the output end of the electric sliding block 207 is provided with the opening and closing door plate 208 which is screwed.
[0026] In the embodiment of the application, after the electric sliding block 207 on the inner side of one end of the side shell plate 206 is output and runs through the output end, the output end runs, the opening and closing door plate 208 slides and runs, and then the side shell plate 206 is opened.
[0027] The feeding guide component 2 further comprises a bolt inclined frame 209, a front storage 2010, a wire feeding guide wheel 2011, a rear storage 2012, a wire threading storage 2013, a sleeving cylinder 2014, a wheel set frame 2015 and a movable pulley 2016. The bolt inclined frame 209 is arranged on one side of the upper portion of the side shell plate 206 and is assembled by bolts. The front storage 2010 is arranged on the top side of the bolt inclined frame 209. The wire feeding guide wheel 2011 is arranged on the inner side of the front storage 2010. The rear storage 2012 is arranged at the rear end of the front storage 2010. The wire threading storage 2013 is arranged on the inner side of the rear storage 2012. The sleeving cylinder 2014 is arranged on the inner side of the middle portion of the side shell plate 206 and is sleeved and mounted. The wheel set frame 2015 is arranged on the output end of the sleeving cylinder 2014. The movable pulley 2016 is arranged on the inner side of the wheel set frame 2015.
[0028] In the embodiment of the present application, when the wire needs to be fed, the wire feeding guide wheel 2011 arranged on the inner side of the front storage 2010 is used to feed the wire, and then the wire is threaded through the wire threading storage 2013 arranged on the inner side of the rear storage 2012. The wire is threaded through the wire threading storage 2013 and then is wound around the guide pulley 204 arranged on the inner side of the top plate 203. After the wire is output, the limiting guide rod 205 is used to achieve the limiting effect. Then, the sleeving cylinder 2014 is used to output power to drive the output end to perform telescopic operation, so that the movable pulley 2016 arranged on the inner side of the wheel set frame 2015 is attached to the shaping cylinder 406.
[0029] The active force dissipating component 3 comprises a hydraulic lifting column 301, a lifting connecting frame 302, a hydraulic telescopic arm 303, a pneumatic telescopic column 304, an electric rotating seat 305, a wheel box seat 306, a rotating motor 307 and an active guide wheel 308. The hydraulic lifting column 301 is arranged on the lower inner side of the side shell plate 206. The output end of the hydraulic lifting column 301 is provided with the lifting connecting frame 302. One end of the lifting connecting frame 302 is provided with the hydraulic telescopic arm 303 below. The output end of the hydraulic telescopic arm 303 is provided with the pneumatic telescopic column 304 above. The output end of the pneumatic telescopic column 304 is provided with the electric rotating seat 305. The output end of the electric rotating seat 305 is provided with the wheel box seat 306. One end of the wheel box seat 306 is provided with the rotating motor 307 above. The output end of the rotating motor 307 is provided with the active guide wheel 308.
[0030] When the winding forming is completed, the hydraulic lifting column 301 is used to drive the output end to run, so that the lifting connecting frame 302 is output to a suitable height, and the hydraulic telescopic arm 303 and the pneumatic telescopic column 304 are output to run, so that the electric rotating seat 305 is output to run, so that the wheel box seat 306 is rotated to a suitable position, and the rotating motor 307 is output to run, so that the active guide wheel 308 cooperates with the regular guide wheel 5018, the universal connecting shaft 5019 and the arc-shaped guide wheel 5020 to eliminate the wire coil stress, readjust the wire coil distribution, facilitate packaging and prevent knotting.
[0031] The driving mechanism 4 comprises a top base disc 401, a transmission box 402, a belt pulley set 403, a driving motor 404, a top rotating frame 405, a shaping cylinder 406 and a plug-in rod 407, the top base disc 401 is bolted to the top end of the top plate 203, the transmission box 402 is arranged above the top base disc 401, one end of the transmission box 402 is provided with the belt pulley set 403, the inner side of one end of the belt pulley set 403 is provided with the output end of the driving motor 404, the output end of the transmission box 402 is provided with the top rotating frame 405, the outer side of the top rotating frame 405 is provided with the shaping cylinder 406, and the middle inner side of the top rotating frame 405 is provided with the plug-in rod 407 which is distributed in a ring shape.
[0032] In the embodiment of the application, the driving motor 404 is used to drive the output end to run, so that the driving motor 404 is output to run, the belt pulley set 403 is output to run, the transmission box 402 is output to run, the top rotating frame 405 and the shaping cylinder 406 are output to run and the inner lining column 509 is wound and formed.
[0033] The winding cylinder adjusting mechanism 5 comprises a six-groove base 501, a gear ring 502, a transmission motor 503, a driving gear column 504, a driven gear 505, a pneumatic spline shaft 506, a lead screw 507, a sliding base block 508, an inner lining column 509 and an electric inclined strip 5010, the six-groove base 501 is arranged at the top end of the end lifting strip 1010, the outer side of the six-groove base 501 is provided with the gear ring 502, the middle lower part of the six-groove base 501 is provided with the transmission motor 503, the output end of the transmission motor 503 is provided with the driving gear column 504, the output end of the driving gear column 504 is provided with the driven gear 505, the inner side of the driven gear 505 is provided with the pneumatic spline shaft 506, the output end of the pneumatic spline shaft 506 is provided with the lead screw 507, the output end of the lead screw 507 is threadedly connected with the sliding base block 508, the upper part of the sliding base block 508 is provided with the inner lining column 509, and the upper inner side of the inner lining column 509 is provided with the electric inclined strip 5010.
[0034] In the embodiment of the present application, the pneumatic spline shaft 506 is used to output operation to achieve the effect of switching on, and the upper output end of the driving gear column 504 is disconnected, and then the output power is used to drive the output end to operate so that the transmission motor 503 operates to drive the driving gear column 504 and the driven gear 505 to engage transmission, and after the engagement transmission, the lead screw 507 is output to operate so that the sliding base block 508 is slid to operate to drive the inner lining column 509 and the electric inclined strip 5010 to adjust to the appropriate position.
[0035] The winding cylinder adjusting mechanism 5 further comprises a central screw 5011, a lifting base 5012, a hydraulic lifting column 5013, a slot block 5014, a sliding groove arm 5015, a pulley groove box 5016, a hydraulic connecting frame 5017, a regular guide wheel 5018, a universal connecting shaft 5019 and an arc-shaped guide wheel 5020. The output end of the driving gear column 504 penetrates through the six-groove base 501 and is connected with the central screw 5011, and the output end of the central screw 5011 is threadedly connected with the lifting base 5012. The side upper part of the lifting base 5012 is provided with the hydraulic lifting column 5013, and the output end of the hydraulic lifting column 5013 is provided with the slot block 5014. The outer side of the lifting base 5012 is provided with the bolted sliding groove arm 5015, and the upper part of the sliding groove arm 5015 is slidingly connected with the pulley groove box 5016. One end of the pulley groove box 5016 is provided with the output end of the hydraulic connecting frame 5017, and the inner side of both ends of the pulley groove box 5016 is provided with the regular guide wheel 5018, and the inner end of the regular guide wheel 5018 is provided with the universal connecting shaft 5019, and the inner end of the universal connecting shaft 5019 is provided with the arc-shaped guide wheel 5020.
[0036] In the embodiment of the present application, when winding is needed, the transmission motor 503 is used to output operation to make the driving gear column 504 output operation to drive the central screw 5011 to output operation to make the lifting base 5012 adjust to the appropriate height position, and the output power of the hydraulic lifting column 5013 on the side upper part of the lifting base 5012 is used to drive the output end to operate to make the slot block 5014 plug the plug rod 407. The output power of the hydraulic connecting frame 5017 on the side of the lifting base 5012 is used to operate to make the sliding groove arm 5015 and the pulley groove box 5016 slide to operate, and after the sliding operation, the regular guide wheel 5018, the universal connecting shaft 5019 and the arc-shaped guide wheel 5020 are adjusted to the appropriate interval position.
[0037] The auxiliary shearing assembly 6 comprises a circumferential groove 601, an electric gear 602, a hydraulic lifting arm 603, an electric rotating frame 604, a first electric clamp 605, a hydraulic cutter 606, a second electric clamp 607 and an electric banding device 608, the circumferential groove 601 is slidably connected to the inner side of the outer edge of the six-groove base 501, the output end of the circumferential groove 601 is provided with the electric gear 602, the outer end of the circumferential groove 601 is provided with the hydraulic lifting arm 603 above, the upper output end of the hydraulic lifting arm 603 is provided with the electric rotating frame 604, one end of the electric rotating frame 604 is provided with the first electric clamp 605 outside, one end of the electric rotating frame 604 is provided with the hydraulic cutter 606 inside, the other end of the electric rotating frame 604 is provided with the second electric clamp 607 outside, and the other end of the electric rotating frame 604 is provided with the electric banding device 608 inside.
[0038] In the embodiment of the present application, the electric gear 602 on the circumferential groove 601 is used to output operation, so that the circumferential groove 601 slides to the appropriate position, the hydraulic lifting arm 603 is driven to output power to drive the output end to operate, the electric rotating frame 604 is driven to output to the appropriate angle position, and the second electric clamp 607 and the electric banding device 608 are cooperated to bind the falling wire end, when the wire is wound and formed, the electric gear 602 on the circumferential groove 601 is used to output operation, so that the circumferential groove 601 slides to the appropriate position, the hydraulic lifting arm 603 is driven to output power to drive the output end to operate, the electric rotating frame 604 is driven to output to the appropriate angle position, and the first electric clamp 605 and the hydraulic cutter 606 are cooperated to cut the upper part of the wire.
[0039] The method of the structure-adjustable winding cylinder for a metal wire drawing machine is as follows: when in use, the output end of the electric sliding block 207 at one end of the side shell plate 206 is operated to make the output end operate, the opening and closing door plate 208 is operated to make the side shell plate 206 open, then the output end of the sliding frame 104 is operated to make the output end of the sliding frame 104 drive the electric track wheel 105 to operate, the sliding frame 104 is operated to make the car plate 106 drive the winding cylinder adjusting mechanism 5 to operate to the position where the back shell plate 202 and the top plate 203 are arranged, to the appropriate position, when winding is needed, the transmission motor 503 is operated to make the driving gear column 504 operate to drive the central lead screw 5011 to operate, the lifting base 5012 is adjusted to the appropriate height position, the hydraulic lifting column 5013 on the side of the lifting base 5012 is operated to drive the output end to operate, the slot block 5014 is inserted on the insertion rod 407, when threading is needed, the threading guide wheel 2011 arranged on the inner side of the front storage 2010 is operated to pass through the threading storage 2013 on the inner side of the rear storage 2012, then the fixed guide pulley 204 on the inner side below the top plate 203 is wound and connected, the limiting guide rod 205 is operated to limit, then the output end of the sleeve cylinder 2014 is operated to drive the wheel set frame 2015 to stretch and contract, the movable pulley 2016 on the inner side of the wheel set frame 2015 is attached to the shaping cylinder 406, the metal wire falls, then the output end of the pneumatic spline shaft 506 is operated to connect, the output end above the driving gear column 504 is disconnected, then the output end is operated to drive the transmission motor 503 to drive the driving gear column 504 and the driven gear 505 to engage and transmit, the lead screw 507 is operated to drive the sliding base block 508 to slide, the inner lining column 509 and the electric inclined strip 5010 are adjusted to the appropriate position, then the output power of the hydraulic connecting frame 5017 on the side of the lifting base 5012 is operated to make the sliding groove arm 5015 and the pulley groove box 5016 slide, the regular guide wheel 5018, the universal connecting shaft 5019 and the arc-shaped guide wheel 5020 are adjusted to the appropriate interval position, then the electric gear 602 on the circumferential groove 601 is operated to make the circumferential groove 601 slide to the appropriate position, the output power of the hydraulic lifting arm 603 is operated to drive the output end to operate, the electric rotating frame 604 is operated to the appropriate angle position, the second electric clamp 607 and the electric binding device 608 are cooperated to bind the end of the falling metal wire, then the output power of the driving motor 404 is operated to drive the output end to operate,After the driving motor 404 outputs power to run, the pulley set 403 outputs to run, the transmission box 402 outputs to run, the top rotating frame 405, the shaping cylinder 406 and the inner lining column 509 are wound and formed, after winding and forming, the hydraulic lifting column 301 outputs power to drive the output end to run, the lifting connecting frame 302 outputs to the appropriate height, the hydraulic telescopic arm 303 and the pneumatic telescopic column 304 output to run, the electric rotating seat 305 outputs to run to drive the wheel box seat 306 to rotate to the appropriate position, the rotating motor 307 outputs power to run, the main guide pulley 308 cooperates with the regular guide pulley 5018, the universal connecting shaft 5019 and the arc-shaped guide pulley 5020 to eliminate the stress of the wire coil, readjust the distribution of the wire coil, facilitate packaging and prevent knotting, after winding and forming, the electric gear 602 on the circumferential groove 601 outputs to run, the circumferential groove 601 slides to the appropriate position, the hydraulic lifting arm 603 outputs power to drive the output end to run, the electric rotating frame 604 outputs to run to the appropriate angle position, and the first electric clamp 605 and the hydraulic cutter 606 cooperate to cut off the upper part of the wire, so that the wire winding cylinder adjusting mechanism 5 is separated from the driving mechanism 4 to achieve the effect of discharging and transferring.
[0040] It will be obvious to a person skilled in the art that, without departing from the spirit or essential characteristics of the application, the present application can be implemented in other specific forms. The present examples are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the description given above, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the scope of the claims.
[0041] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.
Claims
1. An adjustable winding drum for a metal wire drawing machine, comprising a displacement transport assembly (1) and a winding drum adjustment mechanism (5), characterized in that: The displacement transport assembly (1) is provided with a feed guide component (2) with bolts mounted on one end, and active force-absorbing components (3) are provided on the inner sides of both ends of the feed guide component (2). The feed guide component (2) is provided with a drive mechanism (4) with bolts sleeved on the inner side of the top end. The displacement transport assembly (1) is provided with a winding cylinder adjustment mechanism (5), and the winding cylinder adjustment mechanism (5) is provided with an auxiliary shearing component (6) with meshing and sliding connection on the outer side of the outer side.
2. The adjustable winding cylinder for a metal wire drawing machine according to claim 1, characterized in that: The displacement transport assembly (1) includes a base pad (101), a trough (102), a track bar (103), a sliding frame (104), an electric track wheel (105), a platform (106), an assembly tray (107), a bearing base plate (108), a bottom rotating column (109), and an end lifting bar (1010). The trough (102) is provided on the upper inner side of the base pad (101), and the track bar (103) is provided on the inner top side of the trough (102). The track bar (103) is slidably connected to a sliding frame. The sliding frame (104) is provided with an electric track wheel (105) at its output end. A car plate (106) is provided above the sliding frame (104). An assembly plate (107) is provided above the middle part of the car plate (106). A bearing base plate (108) with bearing connection is provided above the middle part of the assembly plate (107). A bottom rotating column (109) is provided above the bearing base plate (108). An end lifting bar (1010) is provided above the side of the bottom rotating column (109).
3. The adjustable winding cylinder for a metal wire drawing machine according to claim 2, characterized in that: The feed guide component (2) includes a bolt end frame (201), a back shell plate (202), a top plate (203), a fixed guide pulley (204), a limiting guide rod (205), a side shell plate (206), an electric sliding block (207), and an opening and closing door plate (208). The bolt end frame (201) is bolted to one end of the base pad (101). The back shell plate (202) is provided above the bolt end frame (201), and the back shell plate (203) is... The top of the 02) is provided with a top plate (203), and a fixed guide pulley (204) is provided on the lower inner side of the top plate (203). A limit guide rod (205) is provided on the lower outer side of the top plate (203). Side shell plates (206) are provided at both ends of the back shell plate (202), and an electric sliding block (207) is provided on the front side of the side shell plate (206). The output end of the electric sliding block (207) is provided with a threaded opening and closing door plate (208).
4. The adjustable winding cylinder for a metal wire drawing machine according to claim 3, characterized in that: The feed guide component (2) further includes a bolt slant bracket (209), a front chamber (2010), a wire guide wheel (2011), a rear chamber (2012), a wire threading chamber (2013), a set cylinder (2014), a wheel set frame (2015), and a movable pulley (2016). A bolt slant bracket (209) for bolt assembly is provided on one side above the side shell plate (206), and a front chamber (2010) is provided on the top side of the bolt slant bracket (209). The inner side of the front compartment (2010) is provided with a wire guide wheel (2011), the rear end of the front compartment (2010) is provided with a rear compartment (2012), and the inner side of the rear compartment (2012) is provided with a wire threading compartment (2013). The inner side of the middle part of the side shell plate (206) is provided with a sleeve cylinder (2014), and the output end of the sleeve cylinder (2014) is provided with a wheel set frame (2015). The inner side of the wheel set frame (2015) is provided with a movable pulley (2016).
5. The adjustable winding cylinder for a metal wire drawing machine according to claim 3, characterized in that: The active power dissipation component (3) includes a hydraulic lifting column (301), a lifting frame (302), a hydraulic telescopic arm (303), a pneumatic telescopic column (304), an electric rotating seat (305), a wheel box seat (306), a rotary motor (307), and an active guide wheel (308). The hydraulic lifting column (301) is located on the inner side below the side shell plate (206). The output end of the hydraulic lifting column (301) is provided with a lifting frame (302), and the lifting frame (302) A hydraulic telescopic arm (303) is provided below one end of the device. A pneumatic telescopic column (304) is provided above the output end of the hydraulic telescopic arm (303). An electric rotating seat (305) is provided at the output end of the pneumatic telescopic column (304). A wheel box seat (306) is provided at the output end of the electric rotating seat (305). A rotary motor (307) is provided above one end of the wheel box seat (306). An active guide wheel (308) is provided at the output end of the rotary motor (307).
6. The adjustable winding cylinder for a metal wire drawing machine according to claim 3, characterized in that: The drive mechanism (4) includes a top base plate (401), a gearbox (402), a pulley assembly (403), a drive motor (404), a top rotating frame (405), a shaping cylinder (406), and plug-in rods (407). The top base plate (401) is bolted to the top of the top plate (203). The gearbox (402) is located above the top base plate (401), and a pulley assembly (403) is located at one end of the gearbox (402). The output end of the drive motor (404) is located on the inner side of one end of the pulley assembly (403). The top rotating frame (405) is located at the output end of the gearbox (402), and the shaping cylinder (406) is located on the outer side of the top rotating frame (405). Plug-in rods (407) are arranged in a ring on the inner side of the middle part of the top rotating frame (405).
7. The adjustable winding cylinder for a metal wire drawing machine according to claim 2, characterized in that: The winding drum adjusting mechanism (5) includes a six-slot base (501), a gear ring (502), a transmission motor (503), a drive gear column (504), a driven gear (505), a pneumatic spline shaft (506), a lead screw (507), a sliding base block (508), an inner liner column (509), and an electric inclined bar (5010). The six-slot base (501) is located at the top of the end lifting bar (1010). A gear ring (502) is provided on the outer side of the six-slot base (501). A transmission motor (503) is provided below the middle part of the six-slot base (501). The output end of the transmission motor (503) is provided with a drive gear column (504), the output end of the drive gear column (504) is provided with a driven gear (505), and the inner side of the driven gear (505) is provided with a pneumatic spline shaft (506). The output end of the pneumatic spline shaft (506) is provided with a lead screw (507), and the output end of the lead screw (507) is threadedly connected to a sliding base block (508). An inner liner column (509) is provided above the sliding base block (508), and an electric inclined bar (5010) is provided on the inner side above the inner liner column (509).
8. The adjustable winding cylinder for a metal wire drawing machine according to claim 7, characterized in that: The winding cylinder adjustment mechanism (5) also includes a central screw (5011), a lifting base (5012), a hydraulic lifting column (5013), a slot block (5014), a sliding arm (5015), a pulley box (5016), a hydraulic connecting frame (5017), a regular guide wheel (5018), a universal joint (5019), and an arc-shaped guide wheel (5020). The output end of the drive gear column (504) passes through the six-slot base (501) and is connected to the central screw (5011). The output end of the central screw (5011) is threadedly connected to the lifting base (5012). A hydraulic lifting column is provided above the side of the lifting base (5012). 5013), and the output end of the hydraulic lifting column (5013) is provided with a slot block (5014), the outer side of the lifting base (5012) is provided with a bolt-assembled sliding arm (5015), and a pulley box (5016) is slidably connected above the sliding arm (5015). The output end of the hydraulic connecting frame (5017) is provided below one end of the pulley box (5016), and regular guide wheels (5018) are provided on the inner sides of both ends of the pulley box (5016). A universal joint (5019) is provided on the inner end of the regular guide wheel (5018), and an arc-shaped guide wheel (5020) is provided on the inner end of the universal joint (5019).
9. The adjustable winding cylinder for a metal wire drawing machine according to claim 7, characterized in that: The auxiliary shearing assembly (6) includes a circumferential groove (601), an electric gear (602), a hydraulic lifting arm (603), an electric rotating frame (604), a first electric clamp (605), a hydraulic cutter (606), a second electric clamp (607), and an electric strapping device (608). The circumferential groove (601) is slidably connected to the inner side of the outer edge of the six-groove base (501). An electric gear (602) is provided at the output end of the circumferential groove (601). Above the outer end of the circumferential groove (601) A hydraulic lifting arm (603) is provided, and an electric rotating frame (604) is provided at the upper output end of the hydraulic lifting arm (603). A first electric clamp (605) is provided on the outer side of one end of the electric rotating frame (604), a hydraulic cutter (606) is provided on the inner side of one end of the electric rotating frame (604), a second electric clamp (607) is provided on the outer side of the other end of the electric rotating frame (604), and an electric strapping device (608) is provided on the inner side of the other end of the electric rotating frame (604).
10. A method for using an adjustable winding drum for a metal wire drawing machine, comprising using the adjustable winding drum for a metal wire drawing machine as described in any one of claims 1-8, characterized in that: In use, the electric sliding block (207) on the inner side of one end of the side shell (206) is driven by the output end, which causes the opening and closing door (208) to slide and open the side shell (206). Then, the output end of the sliding frame (104) is driven by the electric track wheel (105) to run. After running, the sliding frame (104) causes the car plate (106) to drive the winding drum adjustment mechanism (5) to run to the back shell (202) and top plate (203) to the appropriate position. When winding is required, the transmission motor (503) is driven by the output end, which causes the drive gear to run. After the column (504) outputs and runs, it drives the central screw (5011) to output and run, which adjusts the lifting base (5012) to a suitable height position. Then, the hydraulic lifting column (5013) above the side of the lifting base (5012) outputs power to drive the output end to run, which causes the slot block (5014) to insert the plug-in rod (407). When it is necessary to feed the wire, the wire feed guide wheel (2011) set on the inner side of the front compartment (2010) is used for output. After output, it passes through the wire threading compartment (2013) on the inner side of the rear compartment (2012). After passing through the thickness, the fixed guide pulley (204) on the inner side of the top plate (203) is wound around the output. After output, the limiting guide rod (205) reaches the limit. After reaching the limit position, the set cylinder (2014) outputs power to drive the output end to extend and retract, causing the movable pulley (2016) on the inner side of the wheel frame (2015) to fit against the shaping cylinder (406), facilitating the falling of the metal wire. Then, the pneumatic spline shaft (506) outputs power to achieve the connection effect, and causes the output end above the drive gear column (504) to disconnect. Then, the output power drives the output end to run, causing the transmission motor (503) to run and drive the drive gear column (504) and driven gear (505) to mesh and transmit power. After meshing and transmitting power, it can drive the lead screw (507) to output power, causing the sliding block (508) to slide and drive the inner liner column (508). 09) and the electric inclined bar (5010) are adjusted to a suitable position. Then, the hydraulic connecting frame (5017) on the side of the lifting base (5012) outputs power to run, causing the sliding arm (5015) and the pulley box (5016) to slide. After sliding, the regular guide wheel (5018), universal joint (5019) and arc guide wheel (5020) are adjusted to a suitable spacing position. Then, the electric gear (602) on the circumferential groove (601) outputs power to run, causing the circumferential groove (601) to slide to a suitable position. The hydraulic lifting arm (603) outputs power to drive the output end to run, causing the electric rotating frame (604) to output to run to a suitable angle position.The second electric clamp (607) and the electric strapping device (608) work together to bind the end of the falling metal wire. Then, the drive motor (404) outputs power to drive the output end to run, so that after the drive motor (404) outputs power, the pulley group (403) outputs power to drive the gearbox (402) to drive the top rotating frame (405), the shaping cylinder (406) and the inner liner column (509) to wind and form. After winding and forming, the hydraulic lifting column (301) outputs power to drive the output end to run, so that the lifting frame (302) outputs to a suitable height. After the hydraulic telescopic arm (303) and the pneumatic telescopic column (304) output power to run, the electric rotating seat (305) outputs power to drive the wheel box seat (306) to rotate to a suitable position, and so that the rotating... After the rotary motor (307) outputs power and runs, the active guide wheel (308), in conjunction with the regular guide wheel (5018), universal joint (5019), and arc-shaped guide wheel (5020), eliminates the stress on the metal wire ring, re-regulates the distribution of the metal wire ring, and makes fine adjustments to facilitate packaging and prevent knotting. After winding and forming, the electric gear (602) on the circumferential groove (601) outputs power and runs, causing the circumferential groove (601) to slide to a suitable position. The hydraulic lifting arm (603) outputs power to drive the output end to run, causing the electric rotating frame (604) to run to a suitable angle position. The first electric clamp (605) and the hydraulic cutter (606) work together to cut off the upper part of the metal wire, so that the winding drum adjustment mechanism (5) can be disengaged from the drive mechanism (4) to achieve the effect of material transfer.
Citation Information
Patent Citations
Structure-adjustable winding barrel for metal wire drawing machine
CN112916631A