Auxiliary installation device for aluminum-magnesium-manganese plate
By designing an auxiliary installation device for aluminum-magnesium-manganese plates and adjusting the height and position of the conical pressure roller, the problem of poor adaptability of electric edge-locking machines to different plate types was solved, achieving efficient edge-locking effects for various plate types.
Patent Information
- Application Number
- CN202411766542.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2044-12-04
AI Technical Summary
Existing electric overlock machines perform well on aluminum-magnesium-manganese sheets of specific specifications, but are not ideal for other sheet types. They also tend to cause the interlocking edges to not be properly engaged, affecting the overlocking quality and resulting in poor versatility.
An auxiliary installation device for aluminum-magnesium-manganese plates was designed, including a frame, a lifting frame, a mounting frame, a drive mechanism, a clutch mechanism, and an adjustment mechanism. By adjusting the height and position of the conical pressure roller, it can adapt to different plate edge thicknesses, ensure effective contact of the interlocking edges, and achieve edge locking by rotating the roller.
It improves the versatility and quality of edge locking, prevents the conical pressure roller from disengaging from the interlocking edge, is suitable for various plate types, and ensures the stability and consistency of edge locking effect.
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Figure CN119332887B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of aluminum-magnesium-manganese plate installation, in particular to an auxiliary installation device for aluminum-magnesium-manganese plates. BACKGROUND
[0002] The aluminum-magnesium-manganese roof plate is a roof material with high cost performance, has the advantages of corrosion resistance, beauty, light weight, high strength, easy processing and the like, and is widely applied to buildings such as airport terminals, aircraft maintenance hangars, stations and large traffic hubs, conference and exhibition centers, stadiums, display halls, large public entertainment facilities, public service buildings, large shopping centers, commercial facilities and civil residences. The roof plate usually has a standing edge and a bite edge structure, the bite edge is usually perpendicular to the standing edge, two high and low standing edges on two adjacent plates are aligned, two bite edges are arranged one above the other, the two bite edges are bent to be attached to the standing edge by using a locking machine, a wrapped and buckled state is formed, and the locking installation of the two plates is realized. The locking equipment such as the electric locking machine and the manual clamp is usually used on the market to perform the locking processing. The manual clamp has the defects of high labor intensity, low working efficiency and poor locking quality. The electric locking machine drives the bite edge to bend by using a plurality of conical pressure wheels with different conical angles. However, the electric locking machine can only perform the locking processing on the plates of specific specifications, and is difficult to be applied to other plate types, has poor overall versatility, and the conical pressure wheels at the front end of the electric locking machine are easily lifted up by the reaction force of the bite edge on the conical pressure wheels, so that the conical gear parts at the rear end are separated from the bite edge, that is, the tail part of the locking equipment is lifted up, and the bite edge is not buckled in place, which affects the working quality of the locking. SUMMARY
[0003] The application aims at the above-mentioned problems in the prior art, and provides an auxiliary installation device for aluminum-magnesium-manganese plates.
[0004] The application provides an auxiliary installation device for aluminum-magnesium-manganese plates, which comprises:
[0005] A rack, a plurality of rollers are rotatably arranged on the rack, and a walking mechanism for driving the plurality of rollers to rotate is arranged on the rack;
[0006] A lifting frame, the lifting frame is movably arranged at each of the four top corners of the rack, a supporting wheel is rotatably arranged on the lifting frame, and a fastener for fixing the lifting frame is arranged on the rack;
[0007] A mounting frame is movably mounted on the rack, and a distance adjusting mechanism is arranged on the rack for adjusting the position of the mounting frame relative to the rack. A plurality of conical surface pressing rollers are rotatably arranged on the mounting frame. The conical angles of the plurality of conical surface pressing rollers gradually decrease in the advancing direction of the walking mechanism. A limiting ring is movably arranged on each of the conical surface pressing rollers. The side end of the limiting ring abuts against the standing edge of the plate, and the upper end of the limiting ring abuts against the biting edge of the plate. An adjusting mechanism for adjusting the position of the limiting ring relative to the conical surface pressing roller is arranged at each of the limiting rings.
[0008] A driving mechanism is drivingly connected with the adjusting mechanisms and used for driving the adjusting mechanisms to work.
[0009] A clutch mechanism is arranged at each of the adjusting mechanisms, and the clutch mechanism adjusts the transmission state between the driving mechanism and the adjusting mechanisms.
[0010] Preferably, a lifting rod is connected to the limiting ring, and a through hole is arranged on the conical surface pressing roller for the lifting rod to pass through. A connecting table is movably arranged on the mounting frame, and the connecting table is rotatably connected with the lifting rod and used for driving the lifting rod to move up and down. The adjusting mechanism is drivingly connected with the connecting table and adjusts the height position of the connecting table.
[0011] Preferably, the adjusting mechanism comprises a screw rod and a driving bevel gear. The driving bevel gear is rotatably mounted on the mounting frame, and the driving bevel gear is coaxially connected with the screw rod. A screw hole matched with the screw rod is arranged on the mounting frame. The driving mechanism is drivingly connected with the driving bevel gear and drives the driving bevel gear to rotate. The clutch mechanism is used for adjusting the transmission state between the driving mechanism and the driving bevel gear.
[0012] Preferably, the driving mechanism comprises a driving motor and a rotating rod. The driving motor is arranged on the mounting frame, and the driving motor is drivingly connected with the rotating rod and drives the rotating rod to rotate. The clutch mechanism is used for adjusting the transmission state between the rotating rod and the driving bevel gear.
[0013] Preferably, the clutch mechanism comprises a mounting cylinder, a sliding seat, a driven bevel gear, a spring and an electromagnet, the mounting cylinder is coaxially arranged on the rotating rod, the sliding seat is movably arranged on the mounting cylinder and rotates with the mounting cylinder, the driven bevel gear is rotatably arranged on the mounting frame, the driven bevel gear is engaged with the driving bevel gear, the sliding seat is provided with a transmission bevel gear and an iron ring, the driven bevel gear is provided with a bevel gear slot for engaging the transmission bevel gear, the spring is arranged on the mounting cylinder, the spring pushes the sliding seat to drive the transmission bevel gear away from the bevel gear slot, and the electromagnet is arranged on the mounting frame and used for attracting the iron ring to drive the transmission bevel gear to engage with the bevel gear slot.
[0014] Preferably, the inner cavity of the mounting cylinder is movably provided with a sliding block, the side wall of the mounting cylinder is provided with a plurality of mounting grooves, the sliding block is provided with a plurality of connecting portions which are slidably connected with the mounting grooves, the plurality of connecting portions are respectively arranged through the plurality of mounting grooves and connected with the sliding seat, and the spring is arranged in the inner cavity of the mounting cylinder and pushes the sliding block to drive the transmission bevel gear away from the bevel gear slot.
[0015] Preferably, the limiting ring is provided with a plurality of connecting blocks connected with the lifting rod, and the conical surface pressing roller is provided with a plurality of sliding grooves for slidably arranging the plurality of connecting blocks.
[0016] Preferably, the walking mechanism comprises a driving motor, a chain and a plurality of transmission gears, each roller is coaxially connected with the transmission gear, the chain surrounds the outer periphery of the plurality of transmission gears and drives the plurality of transmission gears to rotate synchronously, and the driving motor is in transmission connection with one of the transmission gears and drives the transmission gear to rotate.
[0017] Preferably, the fastener is a bolt, the bolt is provided with a handle, the rack is provided with a screw hole for threadedly arranging the bolt, the bolt is arranged through the screw hole and abuts against the lifting frame.
[0018] Preferably, the distance adjusting mechanism comprises a threaded rod and a handle, the threaded rod is rotatably arranged on the rack, the handle is connected with the threaded rod, and the mounting frame is provided with a screw hole matched with the threaded rod.
[0019] Compared with the prior art, the present application has the following beneficial effects:
[0020] The height of the lifting frame is adjusted by fasteners, so that the height positions of the conical pressure rollers relative to the standing edges of the plates are adjusted. The device is suitable for plates with different standing edge heights. The driving mechanism, the clutch mechanism and the adjusting mechanism cooperate. The driving mechanism adjusts the height positions of the limiting rings. The distance adjusting mechanism drives the limiting rings and the rollers to abut against the two sides of the standing edge of the plate. The walking mechanism drives the rollers to rotate, so that the whole device moves along the standing edge and performs the bending and engaging work on the engaged edge. The device is suitable for edge locking work of plates with different standing edge thicknesses. The operator can adjust the height positions of the limiting rings at the conical pressure rollers according to the size of the engaged edge of the plate, so that the limiting rings at the conical pressure rollers can abut against the engaged edge of the plate, preventing the conical pressure rollers from separating from the engaged edge. The device is suitable for edge locking work of various plates and has good versatility. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only preferred embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0022] Figure 1 Structure diagram of an embodiment of the present application;
[0023] Figure 2 Sectional view of an embodiment of the present application;
[0024] Figure 3 Structure diagram of the walking mechanism in an embodiment of the present application;
[0025] Figure 4 Structure diagram of the distance adjusting mechanism and the mounting frame in an embodiment of the present application;
[0026] Figure 5 Structure diagram of the mounting frame in an embodiment of the present application;
[0027] Figure 6 Structure diagram of the adjusting mechanism and the clutch mechanism in an embodiment of the present application.
[0028] In the figure, 1 - rack; 11 - roller; 12 - fastener; 2 - walking mechanism; 21 - drive motor; 22 - chain; 23 - transmission gear; 3 - lifting frame; 31 - support wheel; 4 - mounting frame; 41 - conical compression roller; 42 - sliding groove; 5 - limiting ring; 51 - lifting rod; 52 - connecting table; 53 - connecting block; 6 - distance adjusting mechanism; 61 - threaded rod; 62 - handle; 7 - adjusting mechanism; 71 - screw rod; 72 - drive bevel gear; 8 - drive mechanism; 81 - drive motor; 82 - rotating rod; 9 - clutch mechanism; 91 - mounting cylinder; 911 - sliding block; 912 - mounting groove; 913 - connecting part; 92 - sliding seat; 921 - transmission bevel gear; 922 - iron ring; 93 - driven bevel gear; 931 - bevel gear slot; 94 - spring; 95 - electromagnet. DETAILED DESCRIPTION
[0029] This part will describe the specific embodiments of the present application in detail, the preferred embodiments of the present application are shown in the accompanying drawings, the role of the drawings is to supplement the description of the text part of the description, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the present application, but it cannot be understood as a limitation on the protection scope of the present application.
[0030] Example 1:
[0031] Reference Figures 1 to 6 The present application provides an auxiliary installation device for aluminum magnesium manganese plate, comprising:
[0032] The rack 1 is provided with a plurality of rollers 11 rotating thereon, and the rack 1 is provided with a walking mechanism 2 for driving the plurality of rollers 11 to rotate;
[0033] The lifting frame 3 is movably arranged at the four corners of the rack 1, and the lifting frame 3 is provided with a support wheel 31 rotating thereon, and the rack 1 is provided with a fastener 12 for fixing the lifting frame 3;
[0034] The mounting frame 4 is movably mounted on the rack 1, and the rack 1 is provided with a distance adjusting mechanism 6 for adjusting the position of the mounting frame 4 relative to the rack 1, and the mounting frame 4 is provided with a plurality of conical compression rollers 41 rotating thereon, and the conical angles of the plurality of conical compression rollers 41 gradually decrease along the advancing direction of the walking mechanism 2, and each conical compression roller 41 is movably provided with a limiting ring 5, the side end of the limiting ring 5 abuts against the vertical edge of the plate, and the upper end of the limiting ring 5 abuts against the biting edge of the plate, and each limiting ring 5 is provided with an adjusting mechanism 7 for adjusting the position of the limiting ring 5 relative to the conical compression roller 41;
[0035] The drive mechanism 8 is in transmission connection with the plurality of adjusting mechanisms 7 respectively and is used for driving the plurality of adjusting mechanisms 7 to work respectively;
[0036] Clutch mechanism 9, each adjusting mechanism 7 is provided with a clutch mechanism 9, the clutch mechanism 9 adjusts the transmission state between the driving mechanism 8 and the several adjusting mechanisms 7.
[0037] The height of the lifting frame 3 is adjusted by the fastener 12, so as to adjust the height position of the several conical pressure rollers 41 relative to the standing edge of the plate. The device is suitable for plates with different standing edge heights. The driving mechanism 8 adjusts the height position of the several limiting rings 5, and cooperates with the distance adjusting mechanism 6 to drive the several limiting rings 5 and the several rollers 11 to abut against the two sides of the standing edge of the plate. The walking mechanism 2 drives the several rollers 11 to rotate, so as to drive the entire device to move along the standing edge. The distance between the mounting frame 4 and the rack 1 is adjusted according to the thickness of the standing edge of the plate and the bending degree of the locking edge of the plate, so as to adjust the distance between the several conical pressure rollers 41 and the standing edge and the locking edge. The device can be used for locking edge work of various plates, and has good universal performance. Since the conical angles of the several conical pressure rollers 41 gradually decrease along the advancing direction of the walking mechanism 2, that is, the conical angle of the conical pressure roller 41 at the front end of the mounting frame 4 is the smallest, and the conical angle of the conical pressure roller 41 at the end of the mounting frame 4 is the largest. The locking edge work of the locking edge is carried out by gradually pressing the locking edge with the conical surface of the conical pressure roller 41. The operator can adjust the height position of the limiting ring 5 at each conical pressure roller 41 according to the size of the locking edge of the plate, so that the limiting ring 5 at each conical pressure roller 41 can be kept in abutment with the locking edge of the plate, which can effectively prevent the conical pressure roller 41 from separating from the locking edge, thereby ensuring the locking effect of the locking edge and improving the working quality of the locking work.
[0038] Specifically, the limiting ring 5 is connected with a lifting rod 51, the conical pressure roller 41 is provided with a through hole for the lifting rod 51 to pass through, the mounting frame 4 is movably provided with a connecting table 52, the connecting table 52 is rotationally connected with the lifting rod 51 and is used to drive the lifting rod 51 to move up and down, and the adjusting mechanism 7 is in transmission connection with the connecting table 52 and adjusts the height position of the connecting table 52.
[0039] The adjusting mechanism 7 adjusts the height position of the connecting table 52, so as to drive the limiting ring 5 to move relative to the conical pressure roller 41 through the lifting rod 51, thereby adjusting the height position of the limiting ring 5 relative to the conical pressure roller 41.
[0040] Embodiment 2:
[0041] Reference Figures 1 to 6, in combination with the technical solutions of embodiment 1, in the embodiment, the adjusting mechanism 7 comprises a screw rod 71 and a driving bevel gear 72, the driving bevel gear 72 is rotatably installed on the mounting frame 4, the driving bevel gear 72 is coaxially connected with the screw rod 71, the mounting frame 4 is provided with a screw hole matched with the screw rod 71, the driving mechanism 8 is in transmission connection with the driving bevel gear 72 and drives the driving bevel gear 72 to rotate, and the clutch mechanism 9 is used for adjusting the transmission state between the driving mechanism 8 and the driving bevel gear 72.
[0042] The operator adjusts the transmission state between the driving mechanism 8 and the driving bevel gear 72 through the clutch mechanism 9 according to needs, when the driving mechanism 8 drives the driving bevel gear 72 to rotate, the driving bevel gear 72 drives the screw rod 71 to rotate, the screw rod 71 is matched with the screw hole on the connecting table 52 to drive the connecting table 52 to move in the vertical direction, the lifting table drives the limiting ring 5 to move through the connecting block 53 to adjust the height position of the limiting ring 5 relative to the conical surface compression roller 41, so that the upper end of the limiting ring 5 at each conical surface compression roller 41 can abut against the bite edge of the plate, and the conical surface compression roller 41 can be effectively prevented from separating from the bite edge, thereby ensuring the bite effect of the bite edge.
[0043] Specifically, the driving mechanism 8 comprises a driving motor 81 and a rotating rod 82, the driving motor 81 is arranged on the mounting frame 4, the driving motor 81 is in transmission connection with the rotating rod 82 and drives the rotating rod 82 to rotate, and the clutch mechanism 9 is used for adjusting the transmission state between the rotating rod 82 and the driving bevel gear 72.
[0044] The driving motor 81 drives the rotating rod 82 to transmit, the clutch mechanism 9 adjusts the transmission state between the driving bevel gear 72 and the rotating rod 82, the driving motor 81 drives the limiting ring 5 at different positions to move through the rotating rod 82, so that the upper end of the limiting ring 5 at each conical surface compression roller 41 can abut against the bite edge of the plate.
[0045] Specifically, the clutch mechanism 9 comprises a mounting cylinder 91, a sliding seat 92, a driven bevel gear 93, a spring 94 and an electromagnet 95, the mounting cylinder 91 is coaxially arranged on the rotating rod 82, the sliding seat 92 is movably arranged on the mounting cylinder 91 and rotates with the mounting cylinder 91, the driven bevel gear 93 is rotatably installed on the mounting frame 4, the driven bevel gear 93 is in mesh with the driving bevel gear 72, the sliding seat 92 is provided with a transmission bevel gear 921 and an iron ring 922, the driven bevel gear 93 is provided with a bevel gear slot 931 matched with the transmission bevel gear 921, the spring 94 is arranged on the mounting cylinder 91, the spring 94 pushes the sliding seat 92 to drive the transmission bevel gear 921 to move away from the bevel gear slot 931, and the electromagnet 95 is arranged on the mounting frame 4, the electromagnet 95 is used for attracting the iron ring 922 to drive the transmission bevel gear 921 to mesh with the bevel gear slot 931.
[0046] When the height of the limiting ring 5 at a certain conical surface compression roller 41 needs to be adjusted, the corresponding electromagnet 95 at the conical surface compression roller 41 is energized, the electromagnet 95 attracts the iron ring 922 to drive the sliding seat 92 to move, at this time the spring 94 is in a compressed state, the transmission bevel gear 921 on the sliding seat 92 is engaged with the bevel gear slot 931, at this time the rotating rod 82 is in transmission connection with the driving bevel gear 72 corresponding to the conical surface compression roller 41 and drives the driving bevel gear 72 to rotate, the driving bevel gear 72 drives the screw rod 71 to rotate, the screw rod 71 is matched with the screw hole on the connecting table 52 to drive the connecting table 52 to move in the vertical direction, the lifting table drives the limiting ring 5 to move through the connecting block 53 to adjust the height position of the limiting ring 5 relative to the conical surface compression roller 41, so that the upper end of the limiting ring 5 at each conical surface compression roller 41 can abut against the bite edge of the plate, which can effectively prevent the conical surface compression roller 41 from separating from the bite edge, thereby ensuring the bite effect of the bite edge; when the height of the limiting ring 5 at a certain conical surface compression roller 41 does not need to be adjusted, the corresponding electromagnet 95 at the conical surface compression roller 41 is de-energized, the spring 94 is reset and pushes the sliding seat 92 to move to drive the transmission bevel gear 921 away from the bevel gear slot 931, cutting off the transmission state of the rotating rod 82 to the driving bevel gear 72 at this place.
[0047] Specifically, the inner cavity of the mounting cylinder 91 is movably provided with a sliding block 911, the side wall of the mounting cylinder 91 is provided with a plurality of mounting grooves 912, the sliding block 911 is provided with a plurality of connecting portions 913 in sliding fit with the mounting grooves 912, the plurality of connecting portions 913 respectively pass through the plurality of mounting grooves 912 and are connected with the sliding seat 92, and the spring 94 is arranged in the inner cavity of the mounting cylinder 91. The spring 94 pushes the sliding block 911 to drive the transmission bevel gear 921 away from the bevel gear slot 931.
[0048] The connecting portion 913 on the sliding block 911 passes through the mounting groove 912 on the side wall of the mounting cylinder 91 and is connected with the sliding seat 92. This special structure design enables the rotating rod 82 to drive the sliding seat 92 to rotate, and based on the sliding connection fit between the connecting portion 913 and the mounting groove 912, the sliding seat 92 can move relative to the rotating rod 82, which is beneficial to adjusting the transmission state of the rotating rod 82 and each driving bevel gear 72 in cooperation with the pushing action of the electromagnet 95 and the spring 94.
[0049] Specifically, the limiting ring 5 is provided with several connecting blocks 53 connected to the lifting rod 51, and the conical pressure roller 41 is provided with several sliding grooves 42 for the sliding installation of the several connecting blocks 53. This special structural design enables the limiting ring 5 to be raised and lowered relative to the conical pressure roller 41 and rotate with the conical pressure roller 41. When the drive motor 81 drives the several rollers 11 to rotate relative to the vertical edge of the plate, because the limiting ring 5 and the rollers 11 are respectively pressed against the sides of the vertical edge, the several rollers 11 drive the entire frame 1 to move along the vertical edge. Under the action of friction, the limiting ring 5 rotates and drives the conical pressure roller 41 to rotate, so that the side of the conical pressure roller 41 can rotate and squeeze the interlocking edge of the plate, facilitating the smooth locking of the edge.
[0050] Example 3:
[0051] Reference Figures 1 to 6 Combining the technical solutions of Example 1 and Example 2, in this embodiment, the walking mechanism 2 includes a driving motor 21, a chain 22 and several transmission gears 23. A transmission gear 23 is coaxially connected to each roller 11. The chain 22 is arranged around the outer periphery of several transmission gears 23 and drives several transmission gears 23 to rotate synchronously. The driving motor 21 is connected to one of the transmission gears 23 and drives the transmission gear 23 to rotate.
[0052] The driving motor 21 drives one of the transmission gears 23 to rotate, and the transmission gear 23 drives the other transmission gears 23 to rotate synchronously through the chain 22. That is, the driving motor 21 drives several rollers 11 to rotate synchronously through several transmission gears 23, which can reduce the situation where the frame 1 cannot move relative to the vertical edge of the plate due to the slippage of individual rollers 11, which is conducive to the smooth progress of the locking work.
[0053] Specifically, the fastener 12 is a bolt, a turning handle is provided on the bolt, a screw hole for threaded installation of the bolt is provided on the frame 1 , and the bolt passes through the screw hole and abuts against the lifting frame 3 .
[0054] When the position of the lifting frame 3 needs to be adjusted, the bolt is turned to release the tight state between the bolt and the lifting frame 3, and the lifting frame 3 is manually moved. After moving to the specified position, the bolt is turned in the direction to drive the bolt to tighten on the lifting frame 3 to fix it, and the lifting frame 3 can be adjusted.
[0055] Specifically, the distance adjustment mechanism 6 includes a threaded rod 61 and a handle 62 . The threaded rod 61 is rotatably mounted on the frame 1 . The handle 62 is connected to the threaded rod 61 . The mounting frame 4 is provided with a screw hole that matches the threaded rod 61 .
[0056] By rotating the handle 62 to drive the threaded rod 61 to rotate, the threaded rod 61 cooperates with the screw hole on the mounting frame 4 to drive the mounting frame 4 to move relative to the rack 1, so as to adjust the distance between the mounting frame 4 and the rack 1 according to the thickness of the standing edge of the plate and the bending degree of the locking edge of the engaged edge of the plate, thereby adjusting the distance between the conical surface pressing roller 41 and the standing edge and the engaged edge, which can be used for locking edge work of various plates and has good universal performance.
[0057] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Any skilled person in the art can make many possible changes and modifications to the technical solution of the present application or modify it into equivalent embodiments with equivalent changes without departing from the scope of the technical solution of the present application. Therefore, any modification, equivalent change and modification of the above embodiments made according to the technology of the present application without departing from the content of the technical solution of the present application shall fall within the protection scope of the technical solution.
Claims
1. An aluminum magnesium manganese sheet auxiliary mounting device characterized by, The utility model provides a kind of plate bending machine, including: Frame, several rollers are rotationally arranged on the frame, and a walking mechanism for driving the several rollers to rotate is arranged on the frame; Lifting frame, the lifting frame is movably arranged at the four top corners of the frame, a supporting wheel is rotationally arranged on the lifting frame, and a fastener for fixing the lifting frame is arranged on the frame; Mounting frame, the mounting frame is movably mounted on the frame, a distance adjusting mechanism for adjusting the position of the mounting frame relative to the frame is arranged on the frame, several conical surface compression rollers are rotationally arranged on the mounting frame, the cone angles of the several conical surface compression rollers gradually decrease along the advancing direction of the walking mechanism, a limit ring is movably arranged on each of the conical surface compression rollers, the side end of the limit ring abuts against the vertical edge of the plate, the upper end of the limit ring abuts against the bite edge of the plate, and an adjusting mechanism for adjusting the position of the limit ring relative to the conical surface compression roller is arranged at each of the limit rings; Driving mechanism, the driving mechanism is respectively drivingly connected with the several adjusting mechanisms and is used for respectively driving the several adjusting mechanisms to work; Clutch mechanism, the clutch mechanism is arranged at each of the adjusting mechanisms, and the clutch mechanism adjusts the transmission state between the driving mechanism and the several adjusting mechanisms; The limit ring is connected with a lifting rod, the conical surface compression roller is provided with a perforation for the lifting rod to pass through, a connecting table is movably arranged on the mounting frame, the connecting table is rotationally connected with the lifting rod and is used to drive the lifting rod to move up and down, the adjusting mechanism is drivingly connected with the connecting table and adjusts the height position of the connecting table; The adjusting mechanism includes a screw rod and a driving bevel gear, the driving bevel gear is rotationally mounted on the mounting frame, the driving bevel gear is coaxially connected with the screw rod, the mounting frame is provided with a screw hole matched with the screw rod, the driving mechanism is drivingly connected with the driving bevel gear and drives the driving bevel gear to rotate, and the clutch mechanism is used to adjust the transmission state between the driving mechanism and the driving bevel gear; The driving mechanism includes a driving motor and a rotating rod, the driving motor is arranged on the mounting frame, the driving motor is drivingly connected with the rotating rod and drives the rotating rod to rotate, and the clutch mechanism is used to adjust the transmission state between the rotating rod and the driving bevel gear; The clutch mechanism includes a mounting cylinder, a sliding seat, a driven bevel gear, a spring and an electromagnet, the mounting cylinder is coaxially arranged on the rotating rod, the sliding seat is movably mounted on the mounting cylinder and rotates with the mounting cylinder, the driven bevel gear is rotationally mounted on the mounting frame, the driven bevel gear is engaged with the driving bevel gear, the sliding seat is provided with a transmission bevel gear and an iron ring, the driven bevel gear is provided with a bevel gear slot for the transmission bevel gear to engage, the spring is arranged on the mounting cylinder, the spring pushes the sliding seat to drive the transmission bevel gear away from the bevel gear slot, and the electromagnet is arranged on the mounting frame, the electromagnet is used to attract the iron ring to drive the transmission bevel gear to engage with the bevel gear slot.
2. The auxiliary installation device for aluminum magnesium manganese plates according to claim 1, characterized in that: The inner cavity of the installation cylinder is movably provided with a sliding block, the lateral wall of the installation cylinder is provided with a plurality of installation grooves, the sliding block is provided with a plurality of connecting portions in sliding fit with the installation grooves, the connecting portions are respectively inserted through the installation grooves and connected with the sliding seat, and the spring is arranged in the inner cavity of the installation cylinder.
3. The auxiliary installation device for aluminum magnesium manganese plates according to claim 1, characterized in that: The limiting ring is provided with a plurality of connecting blocks connected with the lifting rods, and the conical surface pressing roller is provided with a plurality of sliding grooves for sliding installation of the connecting blocks.
4. The auxiliary installation device for aluminum magnesium manganese plates according to claim 1, characterized in that: The walking mechanism comprises a driving motor, a chain and a plurality of transmission gears, the transmission gears are coaxially connected to the roller wheels, the chain surrounds the outer peripheries of the transmission gears and drives the transmission gears to synchronously rotate, and the driving motor is in transmission connection with one of the transmission gears and drives the transmission gear to rotate.
5. The auxiliary installation device for aluminum magnesium manganese plates according to claim 1, characterized in that: The fastener is a bolt, the bolt is provided with a handle, the rack is provided with a threaded hole for threaded installation of the bolt, and the bolt is inserted through the threaded hole and abuts against the lifting frame.
6. The auxiliary installation device for aluminum magnesium manganese plates according to claim 1, characterized in that: The distance adjusting mechanism comprises a threaded rod and a handle, the threaded rod is rotatably installed on the rack, the handle is connected with the threaded rod, and the installation frame is provided with a threaded hole matched with the threaded rod.
Citation Information
Patent Citations
Profile overlock machine
CN113523044A
A type of aluminum-magnesium-manganese roofing panel edge locking machine
CN218843560U