A turnover tool for large equipment
By designing a return-to-position active detection and center of gravity offset reminder device for large equipment flipping fixtures, the problems of unstable fixation and center of gravity offset during the flipping process of large equipment were solved, and safe and reliable flipping operation was achieved.
Patent Information
- Application Number
- CN202511375156.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-09-25
AI Technical Summary
When tilting large equipment, existing 90-degree tilting machines are unable to effectively secure the equipment, leading to equipment slippage, center of gravity shift, and safety hazards, and can also cause wear on bearings and couplings.
A large equipment flipping fixture was designed, including a return active detection device, a deformation positioning device, and a center of gravity offset reminder device. By detecting the deformation of the equipment mounting plate and the offset of the center of gravity, the fixture can promptly remind the staff and lock and adjust the equipment.
This effectively prevents equipment from slipping and shifting its center of gravity, reduces wear on bearings and couplings, and improves the safety and reliability of the overturning process.
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Figure CN120886214B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of turnover tooling, in particular to a turnover tooling for large equipment. BACKGROUND
[0002] In industrial production, space utilization is a key issue. Many times, we need to turn over or rotate large or irregularly shaped objects in order to better utilize space. At this time, the ninety-degree turnover machine becomes a weapon to solve the problem. The ninety-degree turnover machine can rotate the object in the vertical and horizontal directions, improving space utilization and reducing costs.
[0003] It should be noted that when the ninety-degree turnover machine turns over the large equipment, the large equipment is fixed on the equipment mounting plate of the ninety-degree turnover machine, and then the equipment is turned over by starting the ninety-degree turnover machine. However, due to the large size and mass of the large equipment, if the operation is not proper, the equipment mounting plate is prone to deformation when the large equipment is fixed on the equipment mounting plate, which in turn causes the large equipment to slide off when the ninety-degree turnover machine turns over the large equipment again, or the center of gravity of the large equipment cannot accurately coincide with the center of gravity of the ninety-degree turnover machine. The offset of the center of gravity will cause centrifugal force during rotation, aggravate the wear of the bearing and coupling, and even cause breakage, which will not only damage the equipment, but also easily cause safety accidents. SUMMARY
[0004] The purpose of the present application is to provide a turnover tooling for large equipment to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0006] A turnover tooling for large equipment, comprising a machine base, a ninety-degree turnover seat rotatably installed in the machine base, an equipment mounting plate installed on the ninety-degree turnover seat, and a support bottom plate installed on the bottom side of the machine base.
[0007] Further comprising a return active detection device installed on the machine base, the return active detection device is used for detecting the equipment mounting plate; the return active detection device comprises four return lower pressing frames, two return lower pressing frames on the same side are movably installed on one side of the machine base, and a front prompt light is installed on the return lower pressing frame; two adapter horizontal moving frames are movably installed on one side of the machine base, two side edge detection frames are movably installed on the two adapter horizontal moving frames, the two side edge detection frames are respectively located on the two sides of the equipment mounting plate, and a side prompt light is installed on the adapter horizontal moving frame.
[0008] The deformation positioning device is used for locking the equipment mounting plate; the deformation positioning device comprises four rotating positioning frames, both sides of the machine base are provided with two mounting supports, and the rotating positioning frames located on the same side are rotatably mounted on the two mounting supports;
[0009] The gravity center deflection reminding device is installed on the bottom side of the support bottom plate, and is used for reminding the gravity center deflection of the support bottom plate; the gravity center deflection reminding device comprises a support base, two gravity center insertion grooves are formed in the bottom side of the support base, two lower pressing insertion blocks are installed on the bottom side of the support bottom plate, the two lower pressing insertion blocks are respectively inserted into the two gravity center insertion grooves, and the gravity center of the support bottom plate is detected.
[0010] Further, in the preferred embodiment of the application, one side of the adapter horizontal moving frame is provided with an adapter driving plate, one side of the reset lower pressing frame is movably provided with an adapter push rod, and an adapter push shaft is rotatably installed on the adapter push rod; an inclined push groove is formed in the adapter driving plate, and the adapter push shaft is movably installed in the inclined push groove.
[0011] Two vertical limiting grooves are formed in one side of the machine base, and a vertical moving rod is slidably installed in the vertical limiting groove, and the vertical moving rod is installed on the reset lower pressing frame.
[0012] Further, in the preferred embodiment of the application, one side of the reset lower pressing frame is provided with a reset groove, the adapter push rod is slidably installed in the reset groove, and a front switch is installed on the bottom side of the reset groove; the front switch is electrically connected with the front prompt lamp.
[0013] A buffer spring is installed on the top side inner wall of the reset groove, and the buffer spring is installed on the adapter push rod.
[0014] Further, in the preferred embodiment of the application, one side of the adapter horizontal moving frame is provided with a horizontal push sliding groove, a horizontal push sliding block is slidably installed in the horizontal push sliding groove, the horizontal push sliding block is installed on the side edge detection frame, and a side switch is installed on the inner wall of one side of the horizontal push sliding groove; the side switch is electrically connected with the side prompt lamp.
[0015] A supporting spring is installed on one side of the horizontal push sliding block, and the supporting spring is installed on the inner wall of the horizontal push sliding groove.
[0016] Further, in the preferred embodiment of the application, the deformation positioning device further comprises four integrated rotating shafts, and the four integrated rotating shafts are rotatably installed on the four mounting supports.
[0017] The rotating positioning frame is installed on one end of the integrated rotating shaft, the other end of the integrated rotating shaft is installed with a rotating gear, and the rotating gear is meshed with a rotating gear plate.
[0018] Further, in the preferred embodiment of the present application, a rebound torsion groove is formed on the mounting support, and the integrated rotating shaft is rotatably installed in the rebound torsion groove.
[0019] A rebound torsion spring is installed on the inner wall of the rebound torsion groove, and the rebound torsion spring is installed on the integrated rotating shaft.
[0020] Further, in the preferred embodiment of the present application, an L-shaped rotating frame is installed on the bottom side of the side edge detection frame, and the L-shaped rotating frame is installed on the rotating gear plate.
[0021] A horizontal moving push-pull plate is installed on one side of the rotating gear plate, a horizontal moving limiting hole is formed on one side of the machine base, and the horizontal moving push-pull plate is slidably installed in the horizontal moving limiting hole.
[0022] Further, in the preferred embodiment of the present application, the gravity center deflection reminding device further comprises a plurality of gravity center deflection seats, and the plurality of gravity center deflection seats are installed on the bottom side of the supporting bottom plate.
[0023] A connecting belt driving seat is movably installed on one side of the gravity center deflection seat, and a connecting belt driving shaft is rotatably installed between the gravity center deflection seat and the connecting belt driving seat.
[0024] Further, in the preferred embodiment of the present application, a plurality of deflection bases are installed on the bottom side of the supporting base, a deflection pull rod is movably installed in each of the plurality of deflection bases, and the plurality of deflection pull rods are respectively installed on the plurality of connecting belt driving seats.
[0025] A deflection pull plate is installed on the bottom side of the deflection pull rod, and the deflection pull rod moves vertically in the deflection base through the deflection pull plate.
[0026] Further, in the preferred embodiment of the present application, a deflection pull spring is installed on the top side and the bottom side of the deflection pull plate, and the two deflection pull springs are respectively installed on the top side and the bottom side inner wall of the deflection base.
[0027] The large-scale equipment turnover tooling has the beneficial effects that:
[0028] In the application, through the setting of the reset active detection device, when the large equipment is turned over, the extrusion reset lower press frame moves down, the reset lower press frame moving down drives the adapter push rod to move, so that the adapter push rod moves in the inclined push groove through the adapter push shaft, and then drives the adapter horizontal moving frame to move to the direction of the equipment mounting plate; when the front of the equipment mounting plate deforms, the reset lower press frame is extruded to move excessively, so that the reset lower press frame extrudes the front switch, and then the front prompt light is turned on, and when the side detection frame moves horizontally, if the side of the equipment mounting plate deforms, the side detection frame is extruded to move horizontally by the equipment mounting plate, and then the horizontal push sliding block is extruded to trigger the side switch, so that the side prompt light is turned on, which can timely remind the staff of the deformation of the equipment mounting plate, and avoid the influence of the deformation of the equipment mounting plate on the turning over of the large equipment.
[0029] Further, in the application, through the setting of the deformation positioning device, if the side of the equipment mounting plate deforms and the side detection frame is extruded to move horizontally by the equipment mounting plate, the L-shaped adapter frame is driven to move, the L-shaped adapter frame drives the adapter toothed plate to move, and then the adapter toothed plate drives the adapter gear to rotate, the adapter gear rotates to drive the rotating positioning frame to rotate through the integrated rotating shaft, so that the rotating positioning frame is clamped on the equipment mounting plate, which can play the role of auxiliary locking and reminding.
[0030] Further, in the application, through the setting of the reset active detection device, when the large equipment is turned over, the extrusion reset lower press frame moves down, the reset lower press frame moving down drives the adapter push rod to move, so that the adapter push rod moves in the inclined push groove through the adapter push shaft, and then drives the adapter horizontal moving frame to move to the direction of the equipment mounting plate; when the front of the equipment mounting plate deforms, the reset lower press frame is extruded to move excessively, so that the reset lower press frame extrudes the front switch, and then the front prompt light is turned on, and when the side detection frame moves horizontally, if the side of the equipment mounting plate deforms, the side detection frame is extruded to move horizontally by the equipment mounting plate, and then the horizontal push sliding block is extruded to trigger the side switch, so that the side prompt light is turned on, which can timely remind the staff of the deformation of the equipment mounting plate, and avoid the influence of the deformation of the equipment mounting plate on the turning over of the large equipment. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 A three-dimensional structure schematic diagram of a large equipment turning over tool is provided for the embodiment of the application;
[0032] Figure 2 A structure schematic diagram of a reset lower press frame and a rotating positioning frame of a large equipment turning over tool is provided for the embodiment of the application;
[0033] Figure 3 A structure schematic diagram of a reset lower press frame and a vertical moving rod of a large equipment turning over tool is provided for the embodiment of the application;
[0034] Figure 4A large equipment overturning tool provided by the embodiment of the present application Figure 3 A structural schematic diagram of the A part in the middle;
[0035] Figure 5 A cross-sectional structural schematic diagram of the connection between the transfer horizontal moving frame and the side detection frame of the large equipment overturning tool provided by the embodiment of the present application;
[0036] Figure 6 A local structural schematic diagram of the connection between the side detection frame and the L-shaped transfer frame of the large equipment overturning tool provided by the embodiment of the present application;
[0037] Figure 7 A structural schematic diagram of the connection between the rotating positioning frame and the mounting support of the large equipment overturning tool provided by the embodiment of the present application;
[0038] Figure 8 A local cross-sectional structural schematic diagram of the connection between the transfer gear and the transfer toothed plate of the large equipment overturning tool provided by the embodiment of the present application;
[0039] Figure 9 A local cross-sectional structural schematic diagram of the connection between the mounting support and the transfer gear of the large equipment overturning tool provided by the embodiment of the present application;
[0040] Figure 10 A structural schematic diagram of the connection between the supporting base and the downward pressing insertion block of the large equipment overturning tool provided by the embodiment of the present application;
[0041] Figure 11 A local cross-sectional structural schematic diagram of the connection between the deflection pull rod and the deflection base of the large equipment overturning tool provided by the embodiment of the present application.
[0042] In the figure: 1 - machine base; 2 - ninety-degree turnover seat; 3 - equipment mounting plate; 4 - support bottom plate; 5 - return active detection device; 501 - return lower pressing frame; 502 - vertical moving rod; 503 - vertical limiting groove; 504 - adapter horizontal moving frame; 505 - side detection frame; 506 - horizontal pushing sliding groove; 507 - horizontal pushing sliding block; 508 - supporting spring; 509 - adapter driving plate; 510 - adapter pushing rod; 511 - inclined pushing groove; 512 - adapter pushing shaft; 513 - retraction groove; 514 - buffer spring; 515 - front switch; 516 - front prompt light; 517 - side prompt light; 518 - side switch; 6 - deformation positioning device; 601 - rotating positioning frame; 602 - mounting support; 603 - adapter gear; 604 - adapter gear plate; 605 - L-shaped adapter frame; 606 - horizontal moving limiting hole; 607 - horizontal moving push-pull plate; 608 - integrated rotating shaft; 609 - rebound torsion groove; 610 - rebound torsion spring; 7 - gravity center deflection reminding device; 701 - supporting base; 702 - lower pressing insertion block; 703 - gravity center insertion groove; 704 - gravity center deflection seat; 705 - connecting driving seat; 706 - connecting driving shaft; 707 - deflection pull rod; 708 - deflection base; 709 - deflection pull plate; 710 - deflection pulling spring. DETAILED DESCRIPTION
[0043] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0044] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative labor are within the scope of protection of the present application.
[0045] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.
[0046] In addition, in the description of the present application, it should be noted that the terms "gravity center", "upper", "lower", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the application is usually placed during use, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" and the like are only used for differentiation in description and cannot be understood as indicating or implying relative importance.
[0047] In addition, the terms "horizontal", "vertical", "perpendicular" and the like do not mean that the components must be absolutely vertical, but can be slightly inclined. For example, "vertical" only means that it is more vertical relative to "horizontal", and does not mean that the structure must be completely vertical, but can be slightly inclined.
[0048] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "arrangement", "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; 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 according to the specific circumstances.
[0049] Please refer to the accompanying drawings of the specification Figures 1-11 The large equipment turnover tool provided by the embodiment of the present application comprises a machine base 1, a ninety-degree turnover seat 2 is rotatably installed in the machine base 1, an equipment mounting plate 3 is installed on the ninety-degree turnover seat 2, and a supporting bottom plate 4 is installed on the bottom side of the machine base 1.
[0050] Further, please refer to the accompanying drawings of the specification Figures 2-5 The large equipment turnover tool provided by the embodiment of the present application further comprises a return active detection device 5, the return active detection device 5 is installed on the machine base 1, and the return active detection device 5 is used for detecting the equipment mounting plate 3; specifically, the return active detection device 5 comprises four return lower pressing frames 501, two return lower pressing frames 501 located on the same side are movably installed on one side of the machine base 1, a front prompt lamp 516 is installed on the return lower pressing frame 501, two adapter horizontal moving frames 504 are movably installed on one side of the machine base 1, side detection frames 505 are movably installed on the two adapter horizontal moving frames 504, the two side detection frames 505 are respectively located on the two sides of the equipment mounting plate 3, and side prompt lamps 517 are installed on the adapter horizontal moving frames 504.
[0051] It should be noted that, in the embodiment of the present application, when the large equipment is turned over, the large equipment is fixed on the equipment mounting plate 3, and then the equipment mounting plate 3 is turned over by the ninety-degree turning seat 2, thereby realizing the turning over of the large equipment, and when the equipment mounting plate 3 is turned over to any side of the machine base 1, the two reset downward pressing frames 501 on the corresponding side are extruded to move, and the adapter transverse moving frame 504 is moved to drive the side detection frame 505 to move towards the direction of the equipment mounting plate 3, at this time, if the front surface of the equipment mounting plate 3 is deformed, the reset downward pressing frame 501 is extruded to press the front surface switch 515, thereby making the front surface prompt lamp 516 light up; in addition, when the side detection frame 505 moves transversely, if the side surface of the equipment mounting plate 3 is deformed, the side surface prompt lamp 517 is lighted up, which can timely remind the staff of the deformation of the equipment mounting plate 3, thereby avoiding the influence of the deformation of the equipment mounting plate 3 on the turning over of the large equipment.
[0052] Further specifically, in the embodiment of the present application, the reset active detection device 5 is drivingly connected with a deformation positioning device 6, and the deformation positioning device 6 is used for locking the equipment mounting plate 3; the deformation positioning device 6 comprises four rotating positioning frames 601, two installation supports 602 are installed on each side of the machine base 1, and the two rotating positioning frames 601 located on the same side are rotatably installed on the two installation supports 602, respectively. It should be noted that, in the embodiment of the present application, if the side surface of the equipment mounting plate 3 is deformed, the rotating positioning frame 601 is clamped on the equipment mounting plate 3, which can not only play an auxiliary locking role, but also play a reminding role, and the integrated rotating shaft 608 rotates in the rebound torsion groove 609, while driving the rebound torsion spring 610 to bear stress.
[0053] More specifically, in the embodiment of the present application, the gravity center deflection reminding device 7 is installed on the bottom side of the support bottom plate 4, and the gravity center deflection reminding device 7 is used for reminding the gravity center deflection of the support bottom plate 4; the gravity center deflection reminding device 7 comprises a support base 701, two gravity center insertion grooves 703 are formed on the bottom side of the support base 701, two downward insertion blocks 702 are installed on the bottom side of the support bottom plate 4, the two downward insertion blocks 702 are respectively inserted into the two gravity center insertion grooves 703, and are used for detecting the gravity center of the support bottom plate 4. It should be noted that, in the embodiment of the present application, when the large equipment is installed on the equipment mounting plate 3, the ninety-degree turning seat 2 drives the machine base 1 to move downward, the machine base 1 drives the support bottom plate 4 to move downward, and when the gravity center of the large equipment falls on the gravity center position of the equipment mounting plate 3, the support bottom plate 4 drives the two downward insertion blocks 702 to be inserted into the two gravity center insertion grooves 703, otherwise the support bottom plate 4 is deflected in the left-right direction, which can effectively remind the staff to adjust the position of the large equipment, thereby avoiding the problem of safety accidents caused by the deflection of the gravity center when the large equipment is turned over.
[0054] Please continue to refer to the description of the drawings Figures 2-5 Further, the large equipment turnover tool provided by the embodiment of the present application is characterized in that one side of the adapter horizontal moving frame 504 is provided with an adapter driving plate 509, one side of the reset downward pressing frame 501 is movably provided with an adapter push rod 510, and the adapter push rod 510 is rotatably provided with an adapter pushing shaft 512, and the adapter driving plate 509 is provided with an inclined pushing groove 511, and the adapter pushing shaft 512 is movably arranged in the inclined pushing groove 511.
[0055] In addition, two vertical limiting grooves 503 are formed on one side of the machine base 1, and a vertical moving rod 502 is slidably arranged in the vertical limiting groove 503, and the vertical moving rod 502 is arranged on the reset downward pressing frame 501. It should be noted that in the embodiment of the present application, when the equipment mounting plate 3 is turned to any side of the machine base 1, the two reset downward pressing frames 501 on the corresponding side are pressed to move, so that the reset downward pressing frame 501 moves vertically in the vertical limiting groove 503 through the vertical moving rod 502, and when the reset downward pressing frame 501 moves downward, it first drives the adapter push rod 510 to move, so that the adapter push rod 510 moves in the inclined pushing groove 511 through the adapter pushing shaft 512, thereby driving the adapter horizontal moving frame 504 to move, so as to realize the purpose of moving the side edge detection frame 505 to the direction of the equipment mounting plate 3 through the movement of the adapter horizontal moving frame 504, and detecting the side edge of the equipment mounting plate 3.
[0056] Further specifically, in the embodiment of the present application, a retraction groove 513 is formed on one side of the reset downward pressing frame 501, the adapter push rod 510 is slidably arranged in the retraction groove 513, and a front surface switch 515 is arranged on the bottom side of the retraction groove 513, and the front surface switch 515 is electrically connected with a front surface prompt lamp 516; in addition, a buffer spring 514 is arranged on the inner wall of the top side of the retraction groove 513, and the buffer spring 514 is arranged on the adapter push rod 510. It should be noted that in the embodiment of the present application, if the front surface of the equipment mounting plate 3 is deformed, the reset downward pressing frame 501 is excessively moved, so that the reset downward pressing frame 501 presses the front surface switch 515, and then the front surface prompt lamp 516 is turned on, so as to realize the purpose of timely reminding the worker when the front surface of the equipment mounting plate 3 is deformed.
[0057] More specifically, in the embodiment of the present application, a horizontal pushing sliding groove 506 is formed on one side of the adapter horizontal moving frame 504, a horizontal pushing sliding block 507 is slidably arranged in the horizontal pushing sliding groove 506, the horizontal pushing sliding block 507 is arranged on the side edge detection frame 505, and a side surface switch 518 is arranged on the inner wall of one side of the horizontal pushing sliding groove 506, and the side surface switch 518 is electrically connected with a side surface prompt lamp 517.
[0058] Further, the side of the horizontal pushing sliding block 507 is provided with a supporting spring 508, which is installed on the inner wall of the horizontal pushing sliding groove 506.
[0059] Please refer to the drawings in the specification Figures 6-9 Further, the shape positioning device 6 of the large equipment turnover tool further comprises four integrated rotating shafts 608, which are respectively rotatably installed on the four mounting supports 602.
[0060] Further, the rotating positioning frame 601 is installed on one end of the integrated rotating shaft 608, the other end of the integrated rotating shaft 608 is provided with a transfer gear 603, and the transfer gear 603 is meshed with a transfer gear plate 604. It should be noted that in the embodiment of the present application, when the transfer gear plate 604 moves, the transfer gear 603 rotates, the transfer gear 603 rotates through the integrated rotating shaft 608 to drive the rotating positioning frame 601 to rotate, thereby realizing the synchronous rotation of the rotating positioning frame 601.
[0061] Further specifically, in the embodiment of the present application, the mounting support 602 is provided with a rebound torsion groove 609, and the integrated rotating shaft 608 is rotatably installed in the rebound torsion groove 609; the rebound torsion spring 610 is installed on the inner wall of the rebound torsion groove 609, and the rebound torsion spring 610 is installed on the integrated rotating shaft 608. It should be noted that in the embodiment of the present application, when the transfer gear plate 604 moves, the transfer gear 603 rotates, the transfer gear 603 rotates through the integrated rotating shaft 608 to drive the rotating positioning frame 601 to rotate, so that the rotating positioning frame 601 is clamped on the equipment mounting plate 3, and the integrated rotating shaft 608 rotates in the rebound torsion groove 609, at the same time, the rebound torsion spring 610 is driven, so that under the rebound force of the rebound torsion spring 610, the rotating positioning frame 601 can be reset.
[0062] Please refer to the drawings in the specification Figures 6-9Further, further specifically, in the embodiment of the present application, the bottom side of the side detection frame 505 is provided with an L-shaped adapter frame 605, the L-shaped adapter frame 605 is installed on the adapter tooth plate 604; one side of the adapter tooth plate 604 is provided with a horizontal moving push-pull plate 607, one side of the machine base 1 is provided with a horizontal moving limiting hole 606, and the horizontal moving push-pull plate 607 is slidingly installed in the horizontal moving limiting hole 606. It should be noted that in the embodiment of the present application, when the side detection frame 505 is squeezed to move horizontally by the equipped mounting plate 3, the L-shaped adapter frame 605 is driven to move, so that the L-shaped adapter frame 605 drives the adapter tooth plate 604 to move, thereby achieving the purpose of horizontal movement of the adapter tooth plate 604 in the horizontal moving limiting hole 606 through the horizontal moving push-pull plate 607.
[0063] Further, please refer to the drawings of the specification Figure 2 and Figures 10-11 Further, the gravity center deflection reminding device 7 of the large equipment turnover tool provided by the embodiment of the present application further comprises a plurality of gravity center deflection seats 704, and the plurality of gravity center deflection seats 704 are all installed on the bottom side of the supporting bottom plate 4.
[0064] In addition, one side of the gravity center deflection seat 704 is movably provided with a connecting driving seat 705, and a connecting driving shaft 706 is rotatably installed between the gravity center deflection seat 704 and the connecting driving seat 705. It should be noted that in the embodiment of the present application, when the supporting bottom plate 4 is deflected in the left-right direction, the supporting bottom plate 4 drives the plurality of gravity center deflection seats 704 to rotate, and then the gravity center deflection seat 704 rotates on the connecting driving seat 705 through the connecting driving shaft 706.
[0065] Further specifically, in the embodiment of the present application, the bottom side of the supporting base 701 is provided with a plurality of deflection bases 708, a deflection pull rod 707 is movably installed in each of the plurality of deflection bases 708, and the plurality of deflection pull rods 707 are respectively installed on the plurality of connecting driving seats 705; in addition, the bottom side of the deflection pull rod 707 is provided with a deflection pull plate 709, and the deflection pull rod 707 moves vertically in the deflection base 708 through the deflection pull plate 709. It should be noted that in the embodiment of the present application, when the supporting bottom plate 4 is deflected, the plurality of gravity center deflection seats 704 rotate on the plurality of connecting driving seats 705, and pull the deflection pull rod 707 to move, and the deflection pull rod 707 moves vertically in the deflection base 708 through the deflection pull plate 709.
[0066] Please continue to refer to the drawings of the specification Figure 2 and Figures 10-11Further, in the embodiment of the present application, the top side and the bottom side of the deflection pull plate 709 are both installed with deflection pull springs 710, and the two deflection pull springs 710 are respectively installed on the inner walls of the top side and the bottom side of the deflection base 708. It should be noted that, in the embodiment of the present application, when the large-scale equipment mounting plate 3 is unstable in the center of gravity, the supporting bottom plate 4 is deflected in the left-right direction, and then the supporting bottom plate 4 is rotated on the plurality of connecting driving seats 705 through the plurality of center-of-gravity deflection seats 704, and the deflection pull rod 707 is moved, the deflection pull rod 707 moves in the deflection base 708 through the deflection pull plate 709, and the two deflection pull springs 710 are stressed, so that the over-turning of the ninety-degree turning seat 2 is avoided through the rebound force and supporting force of the deflection pull springs 710.
[0067] In summary, the working principle of the turning tool for large-scale equipment provided by the embodiment of the present application is as follows:
[0068] When the large-scale equipment is turned over, the large-scale equipment is fixed on the equipment mounting plate 3, and then the equipment mounting plate 3 is turned over through the ninety-degree turning seat 2, so as to realize the turning of the large-scale equipment, and when the equipment mounting plate 3 is turned to any side of the machine base 1, the two reset downward frames 501 on the corresponding side are pressed to move, so that the reset downward frame 501 moves vertically in the vertical limiting groove 503 through the vertical moving rod 502. It should be noted that, when the reset downward frame 501 moves downward, the adapter push rod 510 is first moved, so that the adapter push rod 510 moves in the inclined push groove 511 through the adapter push shaft 512, thereby driving the adapter transverse frame 504 to move, the side detection frame 505 moves to the direction of the equipment mounting plate 3, and after the equipment mounting plate 3 is moved to the position, the reset downward frame 501 moves on the adapter push rod 510 through the retraction groove 513, and the buffer spring 514 is stressed, at this time, if the front surface of the equipment mounting plate 3 is deformed, the reset downward frame 501 is excessively moved, so that the reset downward frame 501 presses the front surface switch 515, thereby making the front surface prompt lamp 516 light up;
[0069] It should be further noted that, when the side detection frame 505 moves horizontally, if the side surface of the equipment mounting plate 3 is deformed, the side detection frame 505 is pressed and moved horizontally by the equipment mounting plate 3, at this time, the side detection frame 505 slides horizontally in the horizontal push sliding groove 506 through the horizontal push sliding block 507, and the supporting spring 508 is stressed, so that the horizontal push sliding block 507 presses and triggers the side surface switch 518, thereby making the side surface prompt lamp 517 light up, so as to timely remind the worker of the deformation of the equipment mounting plate 3, and avoid the influence of the deformation of the equipment mounting plate 3 on the turning of the large-scale equipment;
[0070] Further, if the side of the equipment mounting plate 3 is deformed, so that the side detection frame 505 is squeezed by the equipment mounting plate 3, the L-shaped adapter frame 605 is driven to move, so that the L-shaped adapter frame 605 drives the adapter tooth plate 604 to move, the adapter tooth plate 604 moves horizontally in the horizontal movement limiting hole 606 through the horizontal movement push-pull plate 607, and then the adapter tooth plate 604 drives the adapter gear 603 to rotate, the adapter gear 603 rotates through the integrated rotating shaft 608 to drive the rotating positioning frame 601 to rotate, so that the rotating positioning frame 601 is clamped on the equipment mounting plate 3, thereby playing a role of auxiliary locking and reminding.
[0071] Further, when the large equipment is mounted on the equipment mounting plate 3, the ninety-degree turnover seat 2 drives the machine base 1 to move downward, and the machine base 1 drives the support bottom plate 4 to move downward, when the center of gravity of the large equipment falls on the center of gravity position of the equipment mounting plate 3, the support bottom plate 4 drives the two downward insertion blocks 702 to be inserted into the two center of gravity insertion grooves 703, otherwise the support bottom plate 4 is deflected in the left-right direction, so that the support bottom plate 4 rotates on the multiple connection driven seats 705 through the multiple center of gravity deflection seats 704, and pulls the deflection pull rod 707 to move, the deflection pull rod 707 moves in the deflection base 708 through the deflection pull plate 709, and the two deflection pull springs 710 are stressed, so that the rebounding force and supporting force of the deflection pull spring 710 avoid the ninety-degree turnover seat 2 from being excessively turned over, and the two downward insertion blocks 702 cannot be inserted into the two center of gravity insertion grooves 703, which can effectively remind the staff to adjust the position of the large equipment, and avoid the problem of safety accidents caused by the shift of the center of gravity when the large equipment is turned over.
[0072] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A roll-over tool for large equipment, characterized by, It include machine base, ninety degree turnover seat is rotatably installed in machine base, equipment mounting plate is installed on ninety degree turnover seat, support base is installed on bottom side of machine base; It also include reset active detection device, reset active detection device is installed on machine base, reset active detection device is used for detecting equipment mounting plate, reset active detection device includes four reset down pressure frame, two reset down pressure frames on same side are movably installed on one side of machine base, positive prompt lamp is installed on reset down pressure frame, two transfer cross moving frames are movably installed on one side of machine base, side detection frame is movably installed on two transfer cross moving frames, two side detection frames are respectively located on both sides of equipment mounting plate, and side prompt lamp is installed on transfer cross moving frame; Active connection is established between reset active detection device and deformation positioning device, deformation positioning device is used for locking equipment mounting plate, deformation positioning device includes four rotating positioning frames, two mounting supports are installed on both sides of machine base, two rotating positioning frames on same side are respectively rotatably installed on two mounting supports; It also include gravity deflection reminding device, gravity deflection reminding device is installed on bottom side of support base, gravity deflection reminding device is used for reminding gravity deflection of support base; Gravity deflection reminding device includes support base, two gravity insertion grooves are formed in bottom side of support base, two down pressure insertion blocks are installed on bottom side of support base, two down pressure insertion blocks are respectively inserted into two gravity insertion grooves, and gravity of support base is detected; Transfer drive plate is installed on one side of transfer cross moving frame, transfer push rod is movably installed on one side of reset down pressure frame, transfer push rod is rotatably installed on transfer push shaft, inclined push groove is formed in transfer drive plate, transfer push shaft is movably installed in inclined push groove; Two vertical limiting grooves are formed in one side of machine base, vertical moving rod is slidably installed in vertical limiting groove, vertical moving rod is installed on reset down pressure frame; Recession groove is formed in one side of reset down pressure frame, transfer push rod is slidably installed in recession groove, positive switch is installed on bottom side of recession groove, positive switch is electrically connected with positive prompt lamp; Buffer spring is installed on inner wall of top side of recession groove, buffer spring is installed on transfer push rod; Horizontal push sliding slot is formed in one side of transfer cross moving frame, horizontal push sliding block is slidably installed in horizontal push sliding slot, horizontal push sliding block is installed on side detection frame, side switch is installed on one side of inner wall of horizontal push sliding slot, side switch is electrically connected with side prompt lamp; Support spring is installed on one side of horizontal push sliding block, support spring is installed on inner wall of horizontal push sliding slot.
2. A roll-over tooling for large equipment as claimed in claim 1, wherein, Deformation positioning device also includes four integrated rotating shafts, four integrated rotating shafts are respectively rotatably installed on four mounting supports; The rotating positioning frame is mounted on one end of the integrated rotating shaft, the other end of the integrated rotating shaft is mounted with a rotating gear, and the rotating gear is meshed with a rotating gear plate.
3. A roll-over tooling for large equipment as defined in claim 2, wherein A rebound torsion groove is formed in the mounting support, and the integrated rotating shaft is rotatably mounted in the rebound torsion groove. A rebound torsion spring is mounted on the inner wall of the rebound torsion groove, and the rebound torsion spring is mounted on the integrated rotating shaft.
4. A roll-over tooling for large equipment as defined in claim 3, wherein An L-shaped rotating frame is mounted on the bottom side of the side edge detection frame, and the L-shaped rotating frame is mounted on the rotating gear plate. A horizontal moving push-pull plate is mounted on one side of the rotating gear plate, and a horizontal moving limiting hole is formed in one side of the machine base, and the horizontal moving push-pull plate is slidably mounted in the horizontal moving limiting hole.
5. A roll-over tooling for large equipment as defined in claim 1, wherein, The gravity center deflection reminding device further comprises a plurality of gravity center deflection seats, and the gravity center deflection seats are mounted on the bottom side of the supporting bottom plate. A connecting belt driving seat is movably mounted on one side of the gravity center deflection seat, and a connecting belt driving shaft is rotatably mounted between the gravity center deflection seat and the connecting belt driving seat.
6. A roll-over tooling for large equipment as defined in claim 5, wherein, A plurality of deflection bases are mounted on the bottom side of the supporting base, a deflection pull rod is movably mounted in each of the deflection bases, and the deflection pull rods are mounted on the connecting belt driving seats. A deflection pull plate is mounted on the bottom side of the deflection pull rod, and the deflection pull rod moves vertically in the deflection base through the deflection pull plate.
7. A roll-over tooling for large equipment as defined in claim 6, wherein, Deflection pull springs are mounted on the top side and the bottom side of the deflection pull plate, and the deflection pull springs are mounted on the inner walls of the top side and the bottom side of the deflection base.
Citation Information
Patent Citations
Strip cigarette arc detection device warp
CN208377230U
Tipper
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Safety detection device for construction hoist
CN218595821U