Material transfer device for finishing plastic lining plate of single-rope winding type elevator
By designing a material transfer device, the automated transfer and processing of plastic liners for single-rope winding elevators was realized, solving the problem of low efficiency in existing technologies and improving processing efficiency and automation.
Patent Information
- Application Number
- CN202422875070.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-25
AI Technical Summary
In the existing technology, the processing efficiency of plastic liners for single-rope winding hoists is low, mainly because the plastic liners are long and heavy, requiring operators to carry and turn them over long distances, resulting in labor-intensive and inefficient operation.
Design a material transfer device, including a support block, a rotary drive mechanism and a lifting drive mechanism. The lifting drive mechanism enables the support block and the plastic liner to rise and fall synchronously, the rotary drive mechanism enables the plastic liner to rotate to a vertical state, and the automatic transfer is achieved by using rollers and motor drive, reducing manual operation.
It improves the processing efficiency of plastic liners, reduces the labor intensity of operators, and increases the automation level of material transfer and processing.
Smart Images

Figure CN223604120U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to single rope winding type elevator technical field, specifically speaking is a kind of single rope winding type elevator plastic lining plate finishing uses material transfer device. BACKGROUND
[0002] Single rope winding type elevator, usually also be called single rope winding type elevator, by a main steel wire rope winding on the drum of elevator, when drum rotates, steel wire rope drives lifting container to move along shaft up and down, to realize the lifting of material or the lifting of personnel. In order to avoid the damage of steel wire rope to the surface of drum due to friction for a long time, plastic lining plate is arranged on the circumference of drum to separate steel wire rope and drum, to avoid direct contact.
[0003] When installing plastic lining plate, multiple plastic lining plates need to be evenly distributed around the circumferential direction of drum, in order to ensure installation accuracy, the width of each plastic lining plate needs to be consistent, and due to the influence of factors such as mold precision in production process, the width of plastic lining plate is difficult to keep uniform, so the operator will trim the plastic lining plate with inconsistent width.
[0004] In the prior art, due to the long length and large mass of plastic lining plate, the plastic lining plate is generally stacked on the side of planer, to avoid occupying a large processing space. Two operators need to lift the plastic lining plate from both ends and turn the direction during processing, and the operator moves a long distance during this process, so that the processing efficiency is low. UTILITY MODEL CONTENTS
[0005] In order to solve the problem of low processing efficiency of plastic lining plate in the prior art, the utility model provides a kind of material transfer device for trimming plastic lining plate of single rope winding type elevator, to improve processing efficiency.
[0006] The utility model provides a kind of material transfer device for trimming plastic lining plate of single rope winding type elevator, to improve processing efficiency.
[0007] The bearing block is provided with a containing groove for containing plastic lining plate, the bottom of the containing groove is rotatably provided with a plurality of rollers, the axis of the roller is perpendicular to the length direction of the plastic lining plate, and the side wall of the bearing block is fixedly provided with a first motor for driving one of the rollers to rotate;
[0008] The rotating drive mechanism includes a mounting block, a rotating shaft rotatably arranged on the mounting block and fixedly connected with the bottom of the bearing block, and a second motor for driving the rotating shaft to rotate;
[0009] The lifting driving mechanism is used for driving synchronous lifting of the rotating driving mechanism and the bearing block.
[0010] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the first circular groove and the second circular groove are communicated with each other on the mounting block, the inner diameter of the first circular groove is larger than that of the second circular groove, the rotating shaft is rotatably arranged in the first circular groove, one end of the rotating shaft extending out of the first circular groove is fixedly connected with the bottom of the bearing block, and the second motor is fixedly arranged in the second circular groove.
[0011] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the rotating shaft is fixedly connected with the first circular groove through the bearing.
[0012] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the mounting block is fixedly provided with a baffle, the rotating shaft is fixedly provided with a limiting block, and the limiting block can contact the baffle in the rotating process of the rotating shaft.
[0013] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the lifting driving mechanism is fixedly arranged in the placing box.
[0014] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the mounting block is provided with a guide block, the placing box is provided with a fixed block, the guide block and the fixed block are located on the same straight line, a guide rod is slidably arranged on the guide block, and the guide rod is fixedly connected with the fixed block.
[0015] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, one end of the guide rod extending out of the guide block is fixedly provided with an anti-falling disc, and the diameter of the anti-falling disc is larger than that of the guide rod.
[0016] As further optimization of the material transfer device for plastic lining plate trimming of the single-rope winding hoist, the bearing block is fixedly provided with a placing plate for placing the first motor.
[0017] Compared with the prior art, the material transfer device has the beneficial effects that:
[0018] 1) The utility model discloses a lifting driving mechanism is used for driving rotary driving mechanism and the synchronous lifting of bearing block, changes the height of bearing block and ground, so that in initial state, plastic lining board need not carry up too high can be placed in the containing groove of bearing block, avoid the more hard work of operator in the carrying process, after plastic lining board is placed in the containing groove, lifting driving mechanism can lift plastic lining board to the suitable height.
[0019] 2) The utility model discloses a rotating shaft that is fixedly connected with the bottom of bearing block and a second motor that is used for driving the rotation of rotating shaft, the second motor drives the rotation of rotating shaft, and rotating shaft drives bearing block and plastic lining board to rotate together to make plastic lining board rotate to the state perpendicular to initial in the rotation process, and the operator need not turn plastic lining board.
[0020] 3) The utility model discloses a plurality of rollers that are rotatably arranged at the bottom of containing groove, the axis of roller is perpendicular to the length direction of plastic lining board, and the side wall of bearing block is fixedly provided with a first motor that is used for driving the rotation of one of the rollers, and the output shaft of first motor makes the roller connected with the output shaft roll together in the working process, and the roller can move plastic lining board to the direction of planer cutter in the rolling process, and does not affect the work of subsequent lifting mechanism and second motor. DRAWINGS
[0021] Fig. 1 It is the schematic diagram of plastic lining board not being placed on planer;
[0022] Fig. 2 It is the schematic diagram of plastic lining board being placed on planer;
[0023] Fig. 3 It is the schematic diagram of lifting driving mechanism and mounting block cooperation;
[0024] Mark in drawing: 1, plastic lining board, 2, bearing block, 3, containing groove, 4, roller, 5, rotating shaft, 6, baffle, 7, limiting block, 8, mounting block, 9, placing box, 10, planer, 11, bearing, 12, first motor, 13, second motor, 14, first circular groove, 15, second circular groove, 16, placing plate, 17, guide block, 18, fixed block, 19, guide rod, 20, anti-drop disc, 21, lifting driving mechanism. DETAILED DESCRIPTION
[0025] The technical scheme of the utility model will be further described in detail in combination with specific embodiments. The parts not described and disclosed in the following embodiments of the utility model should be understood as the prior art known or should be known by the person skilled in the art, such as the model and specific structure of the air cylinder and the hydraulic cylinder, the model, working principle and specific structure of the planer 10, the model of the first motor 12 and the second motor 13, how the roller shaft 4 is rotatably arranged at the bottom of the accommodating groove 3, how the controller senses the plastic lining plate 1 through the sensor, and how the controller controls the first motor 12, the second motor 13 and the lifting driving mechanism 21 to work.
[0026] Embodiment 1
[0027] A material transfer device for trimming a plastic lining plate of a single-rope winding type hoist, as shown in the accompanying drawings, comprises a bearing block 2, a rotary driving mechanism and a lifting driving mechanism 21. Figs. 1-3 The accommodating groove 3 is provided with a plurality of roller shafts 4 rotatably arranged at the bottom thereof, the axis of the roller shaft 4 is perpendicular to the length direction of the plastic lining plate 1, the sidewall of the bearing block 2 is fixedly provided with a first motor 12 for driving one of the roller shafts 4 to rotate, and the bearing block 2 is fixedly provided with a placing plate 16 for placing the first motor 12. The rotary driving mechanism comprises a mounting block 8, a rotating shaft 5 rotatably arranged on the mounting block 8 and fixedly connected with the bottom of the bearing block 2, and a second motor 13 for driving the rotating shaft 5 to rotate. The lifting driving mechanism 21 is used for driving the rotary driving mechanism and the bearing block 2 to synchronously lift, and the output end of the lifting driving mechanism 21 is connected with the mounting block 8.
[0028] In the initial state, the lifting driving mechanism 21 is in the original state, so that the height of the bearing block 2 is low, and the operator can easily place the plastic lining plate 1 in the accommodating groove 3 after lifting the plastic lining plate 1 by a small height, thereby avoiding the labor of the operator during the carrying process; after the controller senses the plastic lining plate 1 through the sensor, the controller drives the lifting driving mechanism 21 to work, at this time, the lifting driving mechanism 21 lifts the bearing block 2 upwards until the height of the lifting is enough for the plastic lining plate 1 to fall on the planer 10, wherein the lifting driving mechanism 21 can be provided as a pneumatic cylinder or a hydraulic cylinder; during the lifting process of the lifting driving mechanism 21, the controller controls the second motor 13 of the rotary driving mechanism to work, the second motor 13 drives the rotating shaft 5 to rotate, and the rotating shaft 5 drives the bearing block 2 and the plastic lining plate 1 to rotate together during the rotating process, so that the plastic lining plate 1 is rotated to the state perpendicular to the initial state; after reaching the state, the controller controls the first motor 12 to rotate, and the roller shaft 4 fixedly connected with the output shaft of the first motor 12 rotates under the driving of the first motor 12, and the plastic lining plate 1 moves to the direction of the planer knife of the planer 10 under the rotation of the roller shaft 4, and the remaining roller shafts 4 rotate together; when the plastic lining plate 1 reaches the planer 10, the operator responsible for grinding the plastic lining plate 1 can grind, and the specific grinding process is a conventional prior art in the art, which will not be described in detail here, and at the same time, the lifting driving mechanism 21 and the rotary driving mechanism are reset to start the next round of the above process, thereby improving the processing efficiency.
[0029] The above is the basic embodiment of the utility model, which can be further improved, optimized and limited on the basis of the above, so as to obtain the following embodiments:
[0030] Embodiment 2
[0031] This embodiment is an improved scheme based on embodiment 1, and the main structure is the same as that of embodiment 1, and the improvement point is that: in order to protect the second motor 13 and not affect the working effect of the second motor 13, a first circular groove 14 and a second circular groove 15 are formed in the mounting block 8 and are in communication with each other, the inner diameter of the first circular groove 14 is greater than that of the second circular groove 15, the rotating shaft 5 is rotatably arranged in the first circular groove 14, one end of the rotating shaft 5 extending out of the first circular groove 14 is fixedly connected with the bottom of the bearing block 2, and the second motor 13 is fixedly arranged in the second circular groove 15. The rotating shaft 5 is fixedly connected with the first circular groove 14 through the bearing 11.
[0032] Embodiment 3
[0033] The embodiment is an improved scheme made on the basis of the embodiment 2, and the main body structure is same with the embodiment 2, and the improvement lies in that: in order to limit the rotation of the rotating shaft 5, the baffle 6 is fixedly arranged on the mounting block 8, the limiting block 7 is fixedly arranged on the rotating shaft 5, and the limiting block 7 can contact the baffle 6 in the rotating process of the rotating shaft 5.
[0034] Embodiment 4
[0035] The embodiment is an improved scheme made on the basis of the embodiment 2, and the main body structure is same with the embodiment 2, and the improvement lies in that: in order to protect the lifting driving mechanism 21, the lifting driving mechanism 21 is fixedly arranged in the placing box 9.
[0036] Embodiment 5
[0037] The embodiment is an improved scheme made on the basis of the embodiment 4, and the main body structure is same with the embodiment 4, and the improvement lies in that: in order to enhance the stability of the lifting process of the lifting driving mechanism 21, and meanwhile, the rotation of the bearing block 2 and the plastic lining plate 1 is not affected, the guide block 17 is arranged on the mounting block 8, the fixing block 18 is arranged on the placing box 9, the guide block 17 and the fixing block 18 are located on the same straight line, the guide rod 19 is slidably arranged on the guide block 17, the guide rod 19 is fixedly connected with the fixing block 18, the anti-falling disc 20 is fixedly arranged on one end of the guide rod 19 which extends out of the guide block 17, and the diameter of the anti-falling disc 20 is greater than the diameter of the guide rod 19. When the lifting driving mechanism 21 lifts up the mounting block 8, the fixing block 18 moves together, since the guide rod 19 is fixedly connected with the fixing block 18, and the guide rod 19 is slidably arranged on the guide block 17, therefore, the guide rod 19 moves up together with the fixing block 18, and the anti-falling disc 20 avoids the guide rod 19 from falling off the guide block 17.
[0038] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A material transfer device for plastic liner conditioning of a single-rope winding hoist, characterized in that: The bearing block (2), the rotary drive mechanism and the lifting drive mechanism (21) are included. A receiving groove (3) for accommodating the plastic lining plate (1) is formed on the bearing block (2), and a plurality of rollers (4) are rotatably arranged at the bottom of the receiving groove (3), the axis of the roller (4) is perpendicular to the length direction of the plastic lining plate (1), and a first motor (12) for driving one of the rollers (4) to rotate is fixedly arranged on the side wall of the bearing block (2). The rotary drive mechanism includes a mounting block (8), a rotating shaft (5) rotatably arranged on the mounting block (8) and fixedly connected with the bottom of the bearing block (2), and a second motor (13) for driving the rotating shaft (5) to rotate. The lifting drive mechanism (21) is used for driving the rotary drive mechanism and the bearing block (2) to synchronously lift, and the output end of the lifting drive mechanism (21) is connected with the mounting block (8).
2. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 1, characterized in that: A first circular groove (14) and a second circular groove (15) are formed on the mounting block (8) and are in communication with each other, the inner diameter of the first circular groove (14) is larger than that of the second circular groove (15), the rotating shaft (5) is rotatably arranged in the first circular groove (14), one end of the rotating shaft (5) extending out of the first circular groove (14) is fixedly connected with the bottom of the bearing block (2), and the second motor (13) is fixedly arranged in the second circular groove (15).
3. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 2, characterized in that: The rotating shaft (5) is fixedly connected with the first circular groove (14) through a bearing (11).
4. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 2, characterized in that: A baffle (6) is fixedly arranged on the mounting block (8), a limiting block (7) is fixedly arranged on the rotating shaft (5), and the limiting block (7) can contact the baffle (6) during the rotation of the rotating shaft (5).
5. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 2, characterized in that: The lifting drive mechanism (21) is fixedly arranged in a placing box (9).
6. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 5, characterized in that: A guide block (17) is arranged on the mounting block (8), a fixed block (18) is arranged on the placing box (9), the guide block (17) and the fixed block (18) are located on the same straight line, a guide rod (19) is slidably arranged on the guide block (17), and the guide rod (19) is fixedly connected with the fixed block (18).
7. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 6, characterized in that: A anti-dropping disc (20) is fixedly arranged on one end of the guide rod (19) extending out of the guide block (17), and the diameter of the anti-dropping disc (20) is larger than that of the guide rod (19).
8. The material transfer device for plastic liner conditioning of a single-rope winding hoist according to claim 1, characterized in that: A placing plate (16) for placing the first motor (12) is fixedly arranged on the bearing block (2).