Transfer equipment for wind-up roller replacement
By designing a limit structure in the transfer equipment for retracting roller replacement, limiting the lowering and winding process of conveying steel cables, the problem of damage to the coiling roller caused by the shaking of the steel cable in existing equipment is solved, and a more stable conveying and transfer process is achieved.
Patent Information
- Application Number
- CN202510150113.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-11
AI Technical Summary
The existing coiling roller conveying and transfer equipment lacks a limit structure during the use of conveying steel cables, which causes the steel cable to shake, affects the conveying and transfer process of the coiling rollers, and easily causes surface damage.
A transfer device for replacing coil rollers is designed. By installing transfer components and guide components inside the cable winding machine, the lowering and winding process of the conveying cable is limited by using structures such as hinge arms, slide barrels and positioning grooves to prevent the cable from shaking.
It effectively avoids the shaking of the conveying steel cable during the conveying and transfer process, prevents damage to the winding roller, and improves the stability and efficiency of the conveying and transfer.
Smart Images

Figure CN119976630A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of winding roller conveying and transfer, and more specifically, to a transfer device for replacing a winding roller. Background Art
[0002] The winding roller in the winder is the material receiving part of the coil processing production line. It mechanically winds the raw materials into coils. It is widely used in paper rolls, cloth rolls, plastic rolls, and metal coil processing production lines. It has diversified designs according to actual process requirements. Common ones include simple winders and hydraulic winders. Winders generally have strict requirements on the inner diameter, outer diameter, thickness, and width of the material.
[0003] At present, the transfer equipment for winding roller replacement on the market often has the following problems when transferring some winding rollers that are too heavy and too wide: The existing winding roller conveying and transferring equipment lacks the necessary conveying cable limiting structure during the lowering and winding process through the conveying cable, which causes the conveying cable to shake due to external force during use, thereby affecting the conveying, transferring and replacing process of the winding roller, and easily causing collision damage to the surface of the winding roller to be transferred and replaced during the conveying, transferring and replacing process. Summary of the invention
[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a transfer device for replacing a winding roller, which can limit the lowering and winding process of the conveying steel cable wound inside a steel cable winding machine, so as to avoid the shaking of the conveying steel cable due to external forces during the later clamping, conveying, transfer and replacement process of the winding roller, and prevent the shaking of the conveying steel cable from damaging the surface of the winding roller.
[0005] To achieve the above object, the present invention provides the following technical solutions: A transfer device for replacing a winding roller comprises a mounting plate, a transfer assembly is rotatably matched at the bottom of the mounting plate, a guide assembly is arranged at the bottom of the mounting plate, and a winding roller is detachably placed inside the transfer assembly.
[0006] The transfer assembly includes a top plate, and three groups of symmetrically distributed steel cable winding machines are fixed to the bottom of the top plate. The number of the steel cable winding machines in each group is two and they are symmetrically distributed.
[0007] A U-shaped plate is fixed on the bottom of the top plate below the wire rope winding machine. A conveying wire rope is wound inside the wire rope winding machine. One end of the conveying wire rope passes through the U-shaped plate and extends downward.
[0008] The guide assembly includes a T-shaped plate, with rectangular frames fixed at both ends of the T-shaped plate, rectangular grooves are penetrated through the opposite side surfaces of the rectangular frame, and two symmetrical movable plates are slidably matched inside the rectangular grooves, and a number of side plates are fixed to the opposite side surfaces of the two movable plates in a linear array, a first hinge seat and a second hinge seat are respectively fixed to one side of the side plate, a number of sleeve tubes are fixed to the other opposite side surfaces of the rectangular frame, a positioning tube is fixed to the sleeve tube, and a first slide tube and a second slide tube are slidably matched at the upper and lower ends of the inner wall of the sleeve tube, a third hinge seat is fixed to the outer peripheral side surface of the first slide tube, and a fourth hinge seat is fixed to the outer peripheral side surface of the second slide tube, and a first hinge arm and a second hinge arm are respectively hingedly matched inside the third hinge seat and the fourth hinge seat; the first hinge arm is hingedly matched with the first hinge seat, and the second hinge arm is hingedly matched with the second hinge seat.
[0009] The present invention is further configured as follows: a forward and reverse motor is fixed to the inner wall of the rectangular frame, a bidirectional threaded screw is fixed to the output shaft of the forward and reverse motor, the bidirectional threaded screw penetrates the T-shaped plate, and the bidirectional threaded screw rotates in cooperation with the T-shaped plate.
[0010] The two opposite side surfaces of the movable plate are fixed with limiting blocks respectively fitted with the two opposite outer side surfaces of the rectangular frame, and the two movable plates are respectively threadedly rotated with the bidirectional threaded screw.
[0011] The present invention is further configured as follows: two symmetrical plug-in frames are fixed to the bottom of the top plate.
[0012] A connecting plate is fixed on the top of the T-shaped plate, and a plug-in plate which is respectively plugged and matched with the two plug-in frames is fixed on the top of the connecting plate.
[0013] The present invention is further configured as follows: the outer bottom of the U-shaped plate is located on the outer peripheral side of the conveying steel cable and is connected to a first cylinder, a plurality of rotating shafts are fixed to the inner wall of the first cylinder, two symmetrical circular baffle rings are fixed to the peripheral side of the rotating shaft, a positioning bead is rotatably engaged with the peripheral side of the rotating shaft located between the two circular baffle rings, and a circular ring groove is opened at one end of the first cylinder to be plugged into and engaged with the top of the first sliding cylinder.
[0014] The present invention is further configured as follows: two symmetrical U-shaped frames are fixed to the circumferential side surface of the first cylinder, the circumferential side surfaces of the two U-shaped frames are rotatably matched with a rotating plate, an arc-shaped folding plate is fixed to the bottom of the rotating plate, a positioning ball is fixed to one side of the rotating plate, and grooves that are engaged with the positioning ball are provided on the opposite sides of the U-shaped plate, and an arc spring is fixed between one side of the rotating plate and the outer circumferential side surface of the first cylinder.
[0015] A conical cover is fixed on the peripheral side surface of the first slide tube near the top.
[0016] The present invention is further configured as follows: a first lifting ring is provided at the bottom of a plurality of the conveying steel cables, a second lifting ring is inserted inside the first lifting ring, and a rectangular plate is fixed to the outer peripheral side surfaces of a plurality of the second lifting rings.
[0017] The present invention is further configured as follows: two symmetrical first positioning grooves are provided at the bottom of the second slide cylinder, and two symmetrical second positioning grooves are provided at the bottom of the second slide cylinder between the two first positioning grooves, the first positioning groove is clip-fitted with the first lifting ring, and the second positioning groove is clip-fitted with the second lifting ring.
[0018] The present invention is further configured as follows: a first semicircular plate is fixed between the two rectangular plates, one end of the first semicircular plate is hingedly matched with a second semicircular plate, the other end surfaces of the first semicircular plate and the second semicircular plate are both fixed with connecting ear plates, and the two connecting ear plates are fixedly connected by bolts.
[0019] The present invention is further configured as follows: an arc-shaped protective pad is fixed inside the arc-shaped support plate cover; The first and second semicircular plates are respectively fixed with a first vertical plate and a second vertical plate on their inner walls. The first and second vertical plates are both fixed with an arc-shaped clamping plate on one opposite end face. The inner walls of the arc-shaped clamping plate are in contact with the peripheral side of the winding roller.
[0020] The present invention is further configured as follows: a mounting groove is opened on the top of the mounting plate, a mounting frame is fixed to the inner wall of the mounting groove, a driving motor is fixed to the center position of the bottom of the mounting frame, the output shaft of the driving motor passes through the mounting frame and extends downward, and the output shaft of the driving motor is rotatably matched with the mounting frame.
[0021] A plurality of mounting holes are provided on the top of the mounting plate.
[0022] A fixing cylinder is fixed on the top of the top plate, and the fixing cylinder is fixedly installed with the output shaft of the driving motor.
[0023] The advantages of the present invention are: 1. The present invention drives the first slide cylinder and the second slide cylinder to slide up and down respectively on the inner wall of the positioning cylinder fixed to the inner wall of the sleeve cylinder through the relative expansion or contraction movement between the first articulated arm and the second articulated arm, so as to limit the lowering and winding process of the conveying steel cable wound inside the steel cable winding machine, avoid the shaking of the conveying steel cable due to external forces during the later clamping, conveying, transferring and replacing process, prevent the shaking of the conveying steel cable from affecting the later clamping, conveying, transferring and replacing process of the winding roller, and avoid the surface of the winding roller being damaged by the shaking of the conveying steel cable.
[0024] 2. The present invention causes the first slide cylinder to slide upward on the conveying steel cable, so that the conical cover applies a mutual force to the two arc-shaped folding plates, thereby driving the two rotating plates to perform relative expansion movements on the two U-shaped frames respectively, until the positioning ball and the groove are engaged with each other, and the second slide cylinder and the annular groove are engaged and fixed with each other, thereby limiting and fixing the starting end of the conveying steel cable to prevent the starting end of the conveying steel cable from shaking due to other external forces during the later conveying and transfer process, thereby avoiding the shaking from affecting the later installation process.
[0025] 3. The present invention achieves further guiding and positioning by the mutual contact between the outer surface of the positioning bead and the surface of the conveying cable, while also reducing the contact area between the starting end of the conveying cable and the inner wall of the first cylinder, thereby reducing the friction between the conveying cable and the inner wall of the first cylinder, preventing the starting end of the conveying cable from getting stuck during the later conveying and transfer process, and increasing the efficiency of the clamping, conveying and transfer process.
[0026] 4. The present invention fixes the first locating groove and the second locating groove to the first hanging ring and the second hanging ring respectively, so as to prevent the first hanging ring and the second hanging ring from shaking due to other external factors during the transportation and transfer process, avoid shaking at the connection between the first hanging ring and the second hanging ring, and prevent the subsequent replacement and installation process from being affected. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 The present invention is a schematic structural diagram of a transfer device for replacing a winding roller.
[0028] Figure 2 It is a structural schematic diagram of the mounting plate of the present invention.
[0029] Figure 3 It is a side view of the mounting plate of the present invention.
[0030] Figure 4 It is a schematic diagram of the structure of the transfer component of the present invention.
[0031] Figure 5 For the present invention Figure 4 Schematic diagram of the enlarged structure at point A in the middle.
[0032] Figure 6 It is a side view of the transfer assembly of the present invention.
[0033] Figure 7 For the present invention Figure 6 Schematic diagram of the enlarged structure at point B in the middle.
[0034] Figure 8 It is a front view of the transfer assembly of the present invention.
[0035] Fig. 9It is a schematic diagram of the cross-sectional structure of the transfer assembly of the present invention.
[0036] Fig.10 For the present invention Fig. 9 Front view of .
[0037] Fig.11 For the present invention Fig.10 Schematic diagram of the enlarged structure at point C in the middle.
[0038] Fig.12 It is a schematic structural diagram of the guide assembly of the present invention.
[0039] Fig.13 It is a side view of the guide assembly of the present invention.
[0040] Fig.14 It is a front view of the guide assembly of the present invention.
[0041] In the figure: 1, mounting plate; 2, transfer assembly; 3, guide assembly; 4, rotary drill bit; 101, mounting groove; 102, mounting frame; 103, drive motor; 104, mounting hole; 201, top plate; 202, wire rope winding machine; 203, U-shaped plate; 204, conveying wire rope; 205, plug-in frame; 206, first cylinder; 207, rotating shaft; 208, circular retaining ring; 209, positioning bead; 210, circular ring groove; 211, U-shaped frame; 212, rotating plate; 213, arc folding plate; 214, positioning ball; 215, arc spring; 216, first lifting ring; 217, second lifting ring; 218, rectangular plate; 219, first semicircular plate; 220, second semicircular plate; 221, connecting ear plate ; 222, first vertical plate; 223, second vertical plate; 224, arc-shaped clamping plate; 225, fixed cylinder; 301, T-shaped plate; 302, rectangular frame; 303, rectangular groove; 304, movable plate; 305, side plate; 306, first hinge seat; 307, second hinge seat; 308, sleeve cylinder; 309, positioning cylinder; 310, first slide cylinder; 311, second slide cylinder; 312, third hinge seat; 313, fourth hinge seat; 314, first articulated arm; 315, second articulated arm; 316, forward and reverse motor; 317, bidirectional threaded screw; 318, limit block; 319, connecting plate; 320, plug-in plate; 321, first positioning groove; 322, second positioning groove; 323, conical cover. DETAILED DESCRIPTION
[0042] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application may be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0043] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meanings as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0044] In the present invention, unless otherwise specified, the directions used, such as "up" and "down", usually refer to the directions shown in the drawings, or to the vertical, perpendicular or gravity directions; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the drawings; "inside" and "outside" refer to the inside and outside relative to the outline of each component itself, but the above-mentioned directions are not used to limit the present invention.
[0045] For example, see Figure 1-14 , the present invention provides the following technical solutions: A transfer device for replacing a winding roller, specifically, comprising a mounting plate 1, a transfer assembly 2 is rotatably matched at the bottom of the mounting plate 1, a guide assembly 3 is arranged at the bottom of the mounting plate 1, and a winding roller is detachably placed inside the transfer assembly 2; the transfer assembly 2 comprises a top plate 201, three groups of symmetrically distributed steel cable winding machines 202 are fixed at the bottom of the top plate 201, and the number of each group of steel cable winding machines 202 is two and symmetrically distributed; a U-shaped plate 203 is fixed at the bottom of the top plate 201 below the steel cable winding machines 202, and a steel cable winding machine 202 is wound inside The conveying steel cable 204 has one end that penetrates the U-shaped plate 203 and extends downward; the guide assembly 3 includes a T-shaped plate 301, and rectangular frames 302 are fixed at both ends of the T-shaped plate 301. Rectangular grooves 303 are penetrated on both opposite sides of the rectangular frame 302. Two symmetrical moving plates 304 are slidably matched inside the rectangular grooves 303. A plurality of side plates 305 are fixed in a linear array on one side of the two moving plates 304. A first hinge seat 306 and a second hinge seat 307 are fixed on one side of the side plate 305. The rectangular frame 302 is provided with a plurality of side plates 305, and the first hinge seat 306 and the second hinge seat 307 are fixed on one side of the side plate 305. A plurality of sleeve tubes 308 are fixed to the other two opposite sides, and a positioning tube 309 is fixed inside the sleeve tube 308. The upper and lower ends of the inner wall of the sleeve tube 308 are respectively slidably matched with a first slide tube 310 and a second slide tube 311. A third hinge seat 312 is fixed to the outer peripheral side of the first slide tube 310, and a fourth hinge seat 313 is fixed to the outer peripheral side of the second slide tube 311. The third hinge seat 312 and the fourth hinge seat 313 are respectively hingedly matched with a first hinge arm 314 and a second hinge arm 315. The first hinge arm 314 and the first hinge seat 306 is hingedly matched, and the second hinged arm 315 is hingedly matched with the second hinged seat 307; a forward and reverse motor 316 is fixed to the inner wall of the rectangular frame 302, and a bidirectional threaded screw 317 is fixed to the output shaft of the forward and reverse motor 316, the bidirectional threaded screw 317 passes through the T-shaped plate 301, and the bidirectional threaded screw 317 is rotationally matched with the T-shaped plate 301; the movable plate 304 is fixed with limit blocks 318 on the opposite sides thereof, which are respectively fitted with the opposite outer sides of the rectangular frame 302; the two movable plates 304 are respectively rotationally matched with the bidirectional threaded screw 317.
[0046] The specific application of the first embodiment is as follows: in the later stage, when the winding roller is clamped, conveyed, replaced and transferred, the forward and reverse motors 316 are started in the forward direction to drive the bidirectional threaded screw 317 to rotate inside the rectangular frame 302. When the bidirectional threaded screw 317 rotates inside the rectangular frame 302, the threaded rotation cooperation between the two movable plates 304 and the bidirectional threaded screw 317, and the sliding cooperation between the rectangular groove 303 and the two movable plates 304 are used to perform axial rotation limiting, thereby driving the two movable plates 304 to move away from each other. In the process of moving away from each other, the first articulated arm 314 articulated between the first articulated seat 306 and the third articulated seat 312 and the second articulated arm 315 articulated between the second articulated seat 307 and the fourth articulated seat 313 work together to drive the first articulated arm 314 and the second articulated arm 315 to move relative to each other, thereby driving the first slide cylinder 310 and the second slide cylinder 311 to move respectively in the positioning cylinder 309 fixed on the inner wall of the sleeve cylinder 308. When the first slide cylinder 310 and the second slide cylinder 311 slide upward and downward on the inner wall of the positioning cylinder 309 fixed to the inner wall of the sleeve cylinder 308, two symmetrical limiting grooves are arranged on the inner wall of the positioning cylinder 309, and two symmetrical limiting rails are arranged on the outer walls of the first slide cylinder 310 and the second slide cylinder 311 to prevent the first slide cylinder 310 and the second slide cylinder 311 from rotating when the positioning cylinder 309 slides upward and downward respectively (in the above process, the limiting rails and the limiting grooves are not rotated). The sliding fit between them is a prior art and is not shown in the figure), so as to limit the position of the conveying steel cable 204 wound inside the steel cable winding machine 202 during the lowering process, realize the preparation work before the winding roller is clamped and positioned, avoid the shaking of the conveying steel cable 204 caused by external force factors during the later clamping, conveying, replacement and transfer process of the winding roller, prevent it from affecting the later clamping, conveying, replacement and transfer process of the winding roller, and avoid the winding roller being damaged by the shaking of the conveying steel cable 204. After the winding roller is clamped and positioned in the later stage, and when the clamped winding roller needs to be transported and transferred, the forward and reverse motor 316 is started in the reverse direction to drive the bidirectional threaded screw 317 to rotate in the opposite direction inside the rectangular frame 302. When the bidirectional threaded screw 317 rotates in the opposite direction inside the rectangular frame 302, the axial rotation limit can be achieved through the threaded rotation cooperation between the two movable plates 304 and the bidirectional threaded screw 317, and the sliding cooperation between the rectangular groove 303 and the two movable plates 304, thereby driving the two movable plates 304 to approach each other. In the process of approaching each other, the first articulated arm 314 articulated between the first articulated seat 306 and the third articulated seat 312 and the second articulated seat 307 and the third articulated seat 314 can be used to move the two movable plates 304 closer to each other. The joint action of the second articulated arm 315 articulated between the four articulated seats 313 drives the first articulated arm 314 and the second articulated arm 315 to perform relative contraction movement, thereby driving the first slide cylinder 310 and the second slide cylinder 311 to slide downward and upward on the inner wall of the positioning cylinder 309 fixed to the inner wall of the sleeve cylinder 308, respectively, so as to limit the winding process of the conveying steel cable 204 wound inside the steel cable winding machine 202, and avoid the conveying steel cable 204 from shaking due to external forces during the later clamping, conveying, replacement and transfer process of the winding roller, and prevent it from affecting the later clamping, conveying, replacement and transfer process of the winding roller, and avoid the winding roller from being damaged by collision with the surface of the winding roller due to the shaking of the conveying steel cable 204.
[0047] For example 2, please refer to Figure 1-14, the second embodiment of the present invention is improved as follows on the basis of the first embodiment. Specifically, two symmetrical plug-in frames 205 are fixed at the bottom of the top plate 201; a connecting plate 319 is fixed at the top of the T-shaped plate 301, and a plug-in plate 320 that is respectively plugged and matched with the two plug-in frames 205 is fixed on the top of the connecting plate 319; the outer bottom of the U-shaped plate 203 is located on the outer peripheral side of the conveying steel cable 204 and is connected to the first cylinder 206, and a plurality of rotating shafts 207 are fixed on the inner wall of the first cylinder 206, and two symmetrical circular baffle rings 208 are fixed on the peripheral side of the rotating shaft 207, and a positioning bead 209 is rotatably matched between the two circular baffle rings 208 on the peripheral side of the rotating shaft 207, and an annular groove 210 that is plugged and matched with the top of the first sliding cylinder 310 is opened at one end of the first cylinder 206; two symmetrical U-shaped frames 211 are fixed on the peripheral side of the first cylinder 206, and the peripheral sides of the two U-shaped frames 211 are rotatably matched with rotating plates 212, and the rotating plates 212 An arc-shaped folding plate 213 is fixed at the bottom, a positioning ball 214 is fixed at one side of the rotating plate 212, grooves that are snap-fitted with the positioning ball 214 are provided on the opposite sides of the U-shaped plate 203, and an arc spring 215 is fixed between one side of the rotating plate 212 and the outer peripheral side of the first cylinder 206; a conical cover 323 is fixed to the outer side of the first slide 310 near the top; a first lifting ring 216 is provided at the bottom of several conveying steel cables 204, a second lifting ring 217 is inserted inside the first lifting ring 216, and a rectangular plate 218 is fixed to the outer peripheral side of several second lifting rings 217; two symmetrical first positioning grooves 321 are provided at the bottom of the second slide 311, and two symmetrical second positioning grooves 322 are provided at the bottom of the second slide 311 between the two first positioning grooves 321, the first positioning groove 321 is snap-fitted with the first lifting ring 216, and the second positioning groove 322 is snap-fitted with the second lifting ring 217.
[0048] The specific application of the second embodiment is: in the later stage, during the process of clamping, conveying, replacing and transferring the winding roller, the first slide cylinder 310 slides upward on the conveying cable 204, so that the conical cover 323 fixed on the side surface of the first slide cylinder 310 near the top gradually contacts with the arc-shaped folded plate 213 fixed at the bottom of the rotating plate 212 that rotates and cooperates with the side surface of the U-shaped frame 211. When the conical cover 323 fixed on the side surface of the first slide cylinder 310 near the top gradually contacts with the arc-shaped folded plate 213 fixed at the bottom of the rotating plate 212 that rotates and cooperates with the side surface of the U-shaped frame 211, as the first slide cylinder 310 continues to move upward, its conical cover 323 will exert a mutual force on the two arc-shaped folded plates 213, thereby The two rotating plates 212 are driven to expand relative to each other on the two U-shaped frames 211, and at the same time, the arc spring 215 connected and fixed between one side of the rotating plate 212 and the outer peripheral side of the first cylinder 206 can be compressed until the positioning ball 214 fixed on one side of the rotating plate 212 is engaged with the groove provided on the U-shaped plate 203, and the top of the second sliding cylinder 311 is engaged and fixed with the annular groove 210 provided on one end of the first cylinder 206, so as to limit and fix the starting end of the conveying cable 204, to prevent the starting end of the conveying cable 204 from shaking due to other external forces during the later conveying, replacement and transfer process, and to avoid the shaking during the transfer process from affecting the later installation process; In the later stage, during the process of clamping, conveying, replacing and transferring the winding roller, when the conveying cable 204 is lowered and wound, the circumferential side surface of the conveying cable 204 will be in cooperation with the circumferential side surface of the rotating shaft 207, and the outer surfaces of the positioning beads 209 located between the two circular retaining rings 208 will contact each other, which not only plays a role in further guiding and positioning, but also reduces the contact area between the conveying cable 204 and the inner wall of the first cylinder 206, thereby reducing the friction between the conveying cable 204 and the inner wall of the first cylinder 206, preventing the starting end of the conveying cable 204 from getting stuck during the later conveying, transferring and replacing process, thereby increasing the efficiency of the winding roller in the process of clamping, conveying, replacing and transferring; When the second slide 311 slides downward on the side surface of the conveying steel cable 204, the first positioning groove 321 and the second positioning groove 322 can be respectively clamped and fixed to the first lifting ring 216 and the second lifting ring 217 as the second slide 311 slides downward, thereby preventing the connection between the first lifting ring 216 and the second lifting ring 217 from shaking due to other external forces during the process of conveying, transferring and replacing, thereby avoiding shaking at the connection between the first lifting ring 216 and the second lifting ring 217 and affecting the subsequent installation process.
[0049] For example 3, please refer to Figure 1-14, the third embodiment is improved as follows on the basis of the first embodiment. Specifically, a first semicircular plate 219 is fixed between the two rectangular plates 218, one end of the first semicircular plate 219 is hingedly matched with a second semicircular plate 220, and the other end faces of the first semicircular plate 219 and the second semicircular plate 220 are fixed with connecting ear plates 221, and the two connecting ear plates 221 are fixedly connected by bolts; the inner walls of the first semicircular plate 219 and the second semicircular plate 220 are respectively fixed with a first vertical plate 222 and a second vertical plate 223, and the first vertical plate 222 and the second vertical plate 223 are fixed with an arc-shaped clamp on the opposite end faces Plate 224, the inner wall of the arc-shaped clamping plate 224 fits with the side surface of the winding roller; a mounting groove 101 is opened on the top of the mounting plate 1, and a mounting frame 102 is fixed on the inner wall of the mounting groove 101, and a driving motor 103 is fixed at the bottom center position of the mounting frame 102, and the output shaft of the driving motor 103 passes through the mounting frame 102 and extends downward, and the output shaft of the driving motor 103 rotates with the mounting frame 102; a plurality of mounting holes 104 are opened on the top of the mounting plate 1, and a fixing cylinder 225 is fixed on the top of the top plate 201, and the fixing cylinder 225 is fixedly installed with the output shaft of the driving motor 103.
[0050] The specific application of the third embodiment is: before the winding roller is clamped, conveyed, replaced and transferred, the plurality of mounting holes 104 opened on the top of the mounting plate 1 are sequentially connected and fixed to the lifting conveyor by external bolts (the lifting conveyor is a prior art, not shown in the figure, and will not be described in detail here), so as to carry out the subsequent clamping, conveying, transferring and installing operation, and facilitate the staff to replace and install the winding roller after the clamping, conveying and transferring to the winding end of the winding machine (the winding machine is a prior art, not shown in the figure, and will not be described in detail here); During the later installation process, first, the bolts connected and fixed between the two connecting ear plates 224 are removed, and then the second semicircular plate 220 that is hingedly matched is rotated, so that the first semicircular plate 219 and the second semicircular plate 220 that are hingedly matched with each other are in a relatively open and closed state, and then the first semicircular plate 219 and the second semicircular plate 220 that are hingedly matched with each other are synchronously sleeved on the peripheral side surface of the winding roller, so that the arc-shaped clamping plate 224 fixed to one end surface of the first vertical plate 222 and the second vertical plate 223 are clamped and positioned on the peripheral side surface of the winding roller. After clamping and positioning, the first semicircular plate 219 and the second semicircular plate 220 that are hingedly matched are rotated in the opposite direction, so that the two connecting ear plates 224 are in a state of being in contact with each other. After being in contact with each other, the two connecting ear plates 224 are connected and fixed to each other by bolts, so as to perform the clamping, conveying and positioning before the installation of the winding roller to be installed and replaced; When the winding roller is clamped, conveyed and transferred later, the driving motor 103 fixed at the bottom center position of the mounting frame 102 is started, so that the fixed cylinder 225 fixed to the output shaft of the driving motor 103 is adjusted in angle at the bottom of the mounting plate 1 at the same time, so that the winding roller after clamping and conveying can be replaced and installed in time later.
[0051] Obviously, the above-described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.
[0052] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.
[0053] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein.
[0054] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
[0055] The above is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions under the concept of the present invention belong to the protection scope of the present invention. It should be pointed out that for ordinary technicians in this technical field, some improvements and modifications without departing from the principle of the present invention should also be regarded as the protection scope of the present invention.
Claims
1. A transfer device for replacing a winding roller, comprising a mounting plate (1), characterized in that: The bottom of the mounting plate (1) is rotatably matched with a transfer assembly (2), the bottom of the mounting plate (1) is provided with a guide assembly (3), and a removable winding roller is placed inside the transfer assembly (2); The transfer assembly (2) comprises a top plate (201), and three groups of symmetrically distributed steel cable winding machines (202) are fixed to the bottom of the top plate (201), and each group of the steel cable winding machines (202) has two steel cable winding machines (202) that are symmetrically distributed; A U-shaped plate (203) is fixed to the bottom of the top plate (201) below the steel cable winding machine (202), a conveying steel cable (204) is wound inside the steel cable winding machine (202), and one end of the conveying steel cable (204) passes through the U-shaped plate (203) and extends downward; The guide assembly (3) comprises a T-shaped plate (301), a rectangular frame (302) being fixed at both ends of the T-shaped plate (301), a rectangular groove (303) being penetrated through two opposite side surfaces of the rectangular frame (302), two symmetrical movable plates (304) being slidably fitted inside the rectangular groove (303), a plurality of side plates (305) being fixed in a linear array on opposite side surfaces of the two movable plates (304), a first hinge seat (306) and a second hinge seat (307) being fixed on one side of the side plates (305), a plurality of sleeve tubes (308) being fixed on the other two opposite side surfaces of the rectangular frame (302), the sleeve tubes (308) being provided with a plurality of sleeve tubes (308) inside. A positioning cylinder (309) is fixed thereto, and the upper and lower ends of the inner wall of the sleeve cylinder (308) are respectively slidably matched with a first slide cylinder (310) and a second slide cylinder (311); a third hinge seat (312) is fixed to the outer peripheral side of the first slide cylinder (310), and a fourth hinge seat (313) is fixed to the outer peripheral side of the second slide cylinder (311); the third hinge seat (312) and the fourth hinge seat (313) are respectively hingedly matched with a first hinge arm (314) and a second hinge arm (315) inside; the first hinge arm (314) is hingedly matched with the first hinge seat (306), and the second hinge arm (315) is hingedly matched with the second hinge seat (307).
2. The transfer device for replacing the winding roller according to claim 1, characterized in that: A forward and reverse motor (316) is fixed to the inner wall of the rectangular frame (302); a bidirectional threaded screw rod (317) is fixed to the output shaft of the forward and reverse motor (316); the bidirectional threaded screw rod (317) penetrates the T-shaped plate (301), and the bidirectional threaded screw rod (317) is rotatably matched with the T-shaped plate (301); The movable plate (304) is fixed with limit blocks (318) on two opposite side surfaces thereof, respectively fitted with two opposite outer side surfaces of the rectangular frame (302). The two movable plates (304) are respectively threadedly rotatably matched with the bidirectional threaded screw rod (317).
3. The transfer device for replacing the winding roller according to claim 2, characterized in that: Two symmetrical plug-in frames (205) are fixed at the bottom of the top plate (201); A connecting plate (319) is fixed on the top of the T-shaped plate (301), and a plug-in plate (320) is fixed on the top of the connecting plate (319) for plugging and matching with the two plug-in frames (205) respectively.
4. The transfer device for replacing the winding roller according to claim 3, characterized in that: The outer bottom of the U-shaped plate (203) is located on the outer peripheral side of the conveying steel cable (204) and is connected to a first cylinder (206); a plurality of rotating shafts (207) are fixed to the inner wall of the first cylinder (206); two symmetrical circular retaining rings (208) are fixed to the peripheral side of the rotating shaft (207); a positioning bead (209) is rotatably engaged with the peripheral side of the rotating shaft (207) located between the two circular retaining rings (208); and a circular groove (210) is provided at one end of the first cylinder (206) and is plugged into and engaged with the top of the first sliding cylinder (310).
5. The transfer device for replacing the winding roller according to claim 4, characterized in that: Two symmetrical U-shaped frames (211) are fixed on the circumferential side of the first cylinder (206); the circumferential side of the two U-shaped frames (211) are rotatably matched with a rotating plate (212); an arc-shaped folding plate (213) is fixed on the bottom of the rotating plate (212); a positioning ball (214) is fixed on one side of the rotating plate (212); grooves for engaging with the positioning ball (214) are formed on the opposite sides of the U-shaped plate (203); and an arc-shaped spring (215) is fixed between one side of the rotating plate (212) and the outer circumferential side of the first cylinder (206); A conical cover (323) is fixed on the peripheral side surface of the first sliding cylinder (310) near the top.
6. The transfer device for replacing the winding roller according to claim 5, characterized in that: A first lifting ring (216) is provided at the bottom of a plurality of the conveying steel cables (204), a second lifting ring (217) is inserted into the interior of the first lifting ring (216), and a rectangular plate (218) is fixed to the outer peripheral side surface of a plurality of the second lifting rings (217).
7. The transfer device for replacing the winding roller according to claim 6, characterized in that: Two symmetrical first positioning grooves (321) are formed at the bottom of the second slide cylinder (311), and two symmetrical second positioning grooves (322) are formed at the bottom of the second slide cylinder (311) between the two first positioning grooves (321). The first positioning groove (321) is snap-fitted with the first lifting ring (216), and the second positioning groove (322) is snap-fitted with the second lifting ring (217).
8. The transfer device for replacing the winding roller according to claim 7, characterized in that: A first semicircular plate (219) is fixed between the two rectangular plates (218); one end of the first semicircular plate (219) is hingedly matched with a second semicircular plate (220); the other end surfaces of the first semicircular plate (219) and the second semicircular plate (220) are both fixed with connecting ear plates (221); the two connecting ear plates (221) are fixedly connected by bolts.
9. The transfer device for replacing the winding roller according to claim 8, characterized in that: A first vertical plate (222) and a second vertical plate (223) are fixed to the inner walls of the first semicircular plate (219) and the second semicircular plate (220), respectively; an arc-shaped clamping plate (224) is fixed to opposite end surfaces of the first vertical plate (222) and the second vertical plate (223); the inner walls of the arc-shaped clamping plates (224) are in contact with the peripheral side surfaces of the winding roller.
10. The transfer device for replacing the winding roller according to claim 9, characterized in that: The top of the mounting plate (1) is provided with a mounting groove (101), the inner wall of the mounting groove (101) is fixed with a mounting frame (102), a driving motor (103) is fixed at the center of the bottom of the mounting frame (102), an output shaft of the driving motor (103) passes through the mounting frame (102) and extends downward, and the output shaft of the driving motor (103) is rotatably matched with the mounting frame (102); A plurality of mounting holes (104) are formed on the top of the mounting plate (1); A fixing cylinder (225) is fixed to the top of the top plate (201), and the fixing cylinder (225) is fixedly mounted to the output shaft of the driving motor (103).
Citation Information
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