Rotating disc type workbench for machining pump body of mining pump

The mineral pump processing turntable workstation addresses mechanical abrasion issues by stabilizing pump body positioning and debris removal through a control and placement mechanism with magnetic arc seats and a rotating disk system, improving efficiency and reducing manual cleanup.

CN120307032APending Publication Date: 2025-07-15WUXI HUALENG MACHINERY
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Patent Information

Application Number
CN202510634414.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

During the processing of the pump body for mining pump body, repeated clamping of the pump body by the robot arm can easily lead to wear at the contact point between the pump body and the robot arm, and it is difficult to clean impurities and debris on the surface of the pump body after processing.

Method used

A turntable workbench for mining pump body processing is designed. By setting up a control mechanism, processing mechanism and placement mechanism, the positioning component is used to fix the pump body position, and combined with an adjustable telescopic pipeline and magnetic deck, the stable fixation of the pump body and the effective removal of impurity debris are achieved.

Benefits of technology

It solves the problem of pump body wear, improves processing efficiency, reduces the workload of workers to clean impurities and debris, and simplifies the installation and disassembly of pump body.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a rotating disc type workbench for machining a pump body of a mining pump, and relates to the technical field of pump body machining. Comprising a workbench, and the middle of the workbench is hollowed out; the center plate is mounted in the workbench, and a control mechanism is mounted at the top of the center plate; the machining mechanism is arranged at the top of the workbench; the placement mechanism is arranged at the top of the workbench, the placement mechanism comprises a placement plate, and a clamping assembly is mounted at the top of the placement plate; the clamping assembly comprises an elastic rod, a flitch plate is installed outside the elastic rod, a suction strip is installed outside the flitch plate, and the elastic rod, the flitch plate and the suction strip are used for making contact with the pump body in a matched mode. And the control mechanism, the placement mechanism and the machining mechanism are used for cooperatively controlling the clamping assembly to move in the vertical direction or the horizontal direction, and the purpose of improving the use efficiency of equipment is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of pump body processing, and specifically to a rotary table workbench for processing a mining pump body. Background Art

[0002] A mining pump is a type of pump equipment specifically designed for mining operations, mainly used for pumping groundwater or accumulated water to ensure the safety and dryness of the mining operation area. Mining pumps are widely used in various mining environments, including gold mines, tunnels, vertical shafts, etc., and have the characteristics of high efficiency, reliability, and durability.

[0003] In the invention patent with the publication number CN118768938A, a rotary table workbench for processing an oil pump body is disclosed. Through the processing method of the rotary workbench, the process of integrating multi-station drilling and tapping is realized, reducing the inconvenience and tediousness of continuous repeated positioning in the traditional process; by using an even number of working devices, sufficient balance force can be provided for the entire processing turntable, improving the processing life of the entire device. However, during processing, the position of the pump body is repeatedly clamped and controlled by the robotic arm, which easily causes wear at the contact between the pump body and the robotic arm. Summary of the Invention

[0004] To overcome the problem that during processing, the position of the pump body is repeatedly clamped and controlled by the robotic arm, which easily causes wear at the contact between the pump body and the robotic arm, the present invention provides a rotary table workbench for processing a mining pump body, including a workbench with a hollow middle part;

[0005] A central plate installed inside the workbench, with a control mechanism installed on the top of the central plate;

[0006] A processing mechanism arranged on the top of the workbench;

[0007] A placement mechanism arranged on the top of the workbench, the placement mechanism including a placement plate, with a clamping component installed on the top of the placement plate;

[0008] The clamping component includes an elastic rod, with an attaching plate installed outside the elastic rod, and a suction strip installed outside the attaching plate. The elastic rod, attaching plate, and suction strip are used to cooperate and contact the pump body;

[0009] The control mechanism, placement mechanism, and processing mechanism are used to cooperate and control the clamping component to move in the vertical or horizontal direction.

[0010] Preferably, it further includes:

[0011] A connecting plate installed at the bottom of the workbench;

[0012] The first motor box, inside which there is a first motor, the connecting plate is connected to the output end of the first motor, and the bottom of the first motor box is equipped with a base.

[0013] Preferably, the control mechanism includes:

[0014] The second motor box, which is installed above the center plate and inside which there is a second motor;

[0015] The first push rod, which is connected to the output end of the second motor;

[0016] The disc, which is installed on the top of the first push rod, and on the top of the disc there is a suction cup, and there are multiple suction cups which are evenly arranged;

[0017] The fixed groove, which is opened inside the disc, and inside the fixed groove there is a second push rod, and on the top of the second push rod there is a round plate.

[0018] Preferably, the processing mechanism includes:

[0019] The third push rod, which is installed outside the workbench, and there are three third push rods;

[0020] The mounting plate, which is installed outside the third push rod, and on the top of the mounting plate there is a processing component;

[0021] The slideway, which is opened inside the workbench, and inside the slideway there is a first slider which is slidably connected to the placing mechanism.

[0022] Preferably, the processing component includes:

[0023] The mounting seat, which is arranged above the mounting plate, and on the top of the mounting seat there is a turntable;

[0024] The fixed frame, which is installed on the top of the turntable, and inside the fixed frame there is a second slider which is slidably connected, and outside the second slider there is a processor.

[0025] Preferably, the processing component further includes:

[0026] The fixed ring, which is installed outside the fixed frame, and there are two fixed rings;

[0027] The fourth push rod, which is installed outside the fixed ring, and outside the fourth push rod there is a moving ring;

[0028] The telescopic pipe, one end of which is installed inside the fixed ring and the other end of which is installed inside the moving ring.

[0029] Preferably, the placing mechanism further includes:

[0030] A moving plate, which is connected to the first slider. A channel is provided at the bottom of the moving plate, and a placing plate is arranged on the top of the moving plate;

[0031] A surrounding plate, which is installed on the top of the moving plate, and a groove is provided inside the surrounding plate;

[0032] A fifth push rod, which is installed inside the groove. An angle plate is installed outside the fifth push rod, and an arc-shaped clamping seat is installed outside the angle plate. A plurality of arc-shaped clamping seats are provided.

[0033] Preferably, the clamping component includes:

[0034] Arc-shaped blocks, which are installed outside the placing plate. A plurality of arc-shaped blocks are provided;

[0035] A backing plate, which is installed on the top of the placing plate. Two backing plates are provided and are symmetrically arranged.

[0036] Preferably, the clamping component further includes:

[0037] A sixth push rod, which is installed outside the backing plate. A cross plate is installed outside the sixth push rod;

[0038] A connecting rod, which is installed outside the cross plate and is connected to an elastic rod.

[0039] The present invention provides a rotary workbench for processing a pump body of a mine pump. It has the following beneficial effects:

[0040] 1. For the rotary workbench for processing the pump body of the mine pump, by setting a control mechanism, a processing mechanism and a placing mechanism, the position of the pump body is controlled. During processing, repeatedly clamping and controlling the position of the pump body by the robotic arm easily causes wear at the contact between the pump body and the robotic arm. Therefore, the control mechanism, the processing mechanism and the placing mechanism are set. The position of the pump body is fixed by the clamping component in the placing mechanism, the position of the placing plate is controlled by the processing mechanism and the placing mechanism, and the control mechanism controls the angle of the placing plate and the pump body, so that the pump body is always in the initial angle to solve the above problems.

[0041] 2. The rotary table for processing the pump body of the mine pump, by setting a processing mechanism and a treatment component, uses three processors, including two drillers and one grinder, to drill and grind the pump body. The two types of processors are on the same rotating workbench, improving the processing efficiency. After drilling and grinding, there are a large number of impurity debris at the processed part of the pump body, which requires workers to spend a lot of time cleaning up later. By setting two telescopic pipes with adjustable and different opening directions, it is convenient to conduct air extraction on the side and top of the pump body, promoting most of the impurity debris to break away from the pump body and reducing the workload of workers cleaning the pump body later.

[0042] 3. The rotary table for processing the pump body of the mine pump, by setting a placement mechanism and a clamping component, is convenient for placing the pump body. And since most of the lower part of the pump body is of irregular shape, during the process of processing the pump body, the position of the pump body is likely to change and the fixation is complex. Therefore, elastic rods that can deform are set on both sides of the pump body, and a pasting plate and a suction strip are set outside the elastic rods to suck and fix the pump body from different heights and positions. And a magnetic arc-shaped clamping seat is set to cooperate with the magnetic arc-shaped block, facilitating the control of the installation and disassembly of the pump body.

[0043] 4. The rotary table for processing the pump body of the mine pump, by setting a control mechanism, controls the positions of the placement plate and the pump body. During the process of processing the pump body, the processors on the workbench move one station in a rotational manner each time. Therefore, a disk controlled by a second motor to rotate and a suction cup are set to control the positions of the placement plate and the pump body, so that the pump body is always in the initial angle, facilitating multiple processors to rotate to different stations for simultaneous processing, and at the same time avoiding using multiple robotic arms to clamp, adjust and fix the pump body multiple times. And when the treatment component conducts air extraction and dust removal on the pump body, during the process of the disk hitting the bottom of the placement plate, the placement plate drives the pump body to vibrate, promoting the impurity debris to break away from the pump body. Description of the Drawings

[0044] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0045] Figure 2 It is a schematic diagram of the bottom structure of the present invention;

[0046] Figure 3 It is a schematic diagram of the control mechanism structure of the present invention;

[0047] Figure 4 It is a schematic diagram of the processing mechanism structure of the present invention;

[0048] Figure 5 It is a schematic diagram of the treatment component structure of the present invention;

[0049] Figure 6 of the present invention Figure 5Schematic diagram of the structure at location A in

[0050] Figure 7 Schematic diagram of the placement mechanism structure of the present invention;

[0051] Figure 8 The present invention Figure 7 Schematic diagram of the structure at location B in

[0052] Figure 9 Schematic diagram of the clamping component structure of the present invention;

[0053] Figure 10 The present invention Figure 9 Schematic diagram of the structure at location C in

[0054] In the figure: 1, workbench; 2, central plate; 3, control mechanism; 301, second motor box; 302, first push rod; 303, disc; 304, suction cup; 305, fixing groove; 306, second push rod; 307, circular plate; 4, processing mechanism; 401, third push rod; 402, mounting plate; 403, processing component; 4031, mounting seat; 4032, turntable; 4033, fixing frame; 4034, second slider; 4035, processor; 4036, fixing ring; 4037, fourth push rod; 4038, moving ring; 4039, telescopic pipe; 404, slideway; 405, first slider; 5, placement mechanism; 501, moving plate; 502, enclosing plate; 503, groove; 504, placement plate; 505, clamping component; 5051, arc-shaped block; 5052, backing plate; 5053, sixth push rod; 5054, cross plate; 5055, connecting rod; 5056, elastic rod; 5057, attaching plate; 5058, suction strip; 506, fifth push rod; 507, angle plate; 508, arc-shaped clamping seat; 6, connecting plate; 7, first motor box; 8, base. Detailed implementation manners

[0055] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation manners. The embodiments of the present invention are given for the purpose of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations will be obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

[0056] As Figures 1 - 10 shown, the present invention provides a technical solution: including a workbench 1, with the middle of the workbench 1 hollowed out;

[0057] The central plate 2 is installed inside the workbench 1 and at the hollow position in the middle of the workbench 1. A control mechanism 3 is installed on the top of the central plate 2;

[0058] The processing mechanism 4 is arranged on the top of the workbench 1;

[0059] The placing mechanism 5 is arranged on the top of the workbench 1. The placing mechanism 5 includes a placing plate 504, and a clamping component 505 is installed on the top of the placing plate 504;

[0060] The clamping component 505 includes an elastic rod 5056. A pasting plate 5057 is installed on the outside of the elastic rod 5056. The pasting plate 5057 is made of rubber. A suction strip 5058 is installed on the outside of the pasting plate 5057. There are multiple suction strips 5058. The elastic rod 5056, the pasting plate 5057 and the suction strip 5058 are used to cooperate with and contact the pump body;

[0061] The control mechanism 3, the placing mechanism 5 and the processing mechanism 4 are used to cooperate to control the clamping component 505 to move in the vertical direction or the horizontal direction;

[0062] The connecting plate 6 is installed at the bottom of the workbench 1;

[0063] The first motor box 7 is internally provided with a first motor. The connecting plate 6 is connected to the output end of the first motor. A base 8 is installed at the bottom of the first motor box 7.

[0064] Before using the equipment, adjust the processing mechanism 4 and the placing mechanism 5. Manually place the pump body in the placing mechanism 5, and use the clamping component 505 to fix the position of the pump body. Then adjust the processing mechanism 4 and the placing mechanism 5 to make the pump body in the center position of the workbench 1. Adjust the control mechanism 3 and the placing mechanism 5, and use the control mechanism 3 to control the direction of the pump body. Turn on the first motor. The first motor drives the workbench 1 to rotate, and then drives the processing mechanism 4 to rotate, so as to adjust the processing station. At the same time, adjust the control mechanism 3 to make the pump body always in the initial direction, and the processing mechanism 4 processes the pump body. After the work is completed, adjust the control mechanism 3, the processing mechanism 4 and the placing mechanism 5, and then the processed pump body can be manually disassembled.

[0065] The processing mechanism 4 includes:

[0066] The third push rod 401 is installed outside the workbench 1. There are three third push rods 401;

[0067] The mounting plate 402 is installed outside the third push rod 401. A processing component 403 is arranged on the top of the mounting plate 402. There are three mounting plates 402;

[0068] Slideway 404 is provided inside the workbench 1. There are two slideways 404. A first slider 405 is slidably connected to the inside of each of the two slideways 404. A first power system is provided inside the first slider 405. The first slider 405 is connected to the placement mechanism 5.

[0069] Before using the device, turn on the first power system in the first slider 405. The first slider 405 starts to move inside the slideway 404. The two first sliders 405 drive the placement mechanism 5 to move away from the workbench 1. At this time, the placement and fixation of the pump body are completed by adjusting the placement mechanism 5.

[0070] Subsequently, adjust the first power system. The first slider 405 drives the placement mechanism 5 to return to its original position. Use the control mechanism 3 to control the angle of the pump body. Adjust the processing component 403 to process the pump body.

[0071] After the work is completed, adjust the first power system in the first slider 405 again. The first slider 405 drives the placement mechanism 5 to move away from the workbench 1. Adjust the placement mechanism 5 to complete the disassembly of the pump body.

[0072] The processing component 403 includes:

[0073] Mounting seat 4031 is arranged above the mounting plate 402. A third motor is provided inside the mounting seat 4031. A turntable 4032 is arranged on the top of the mounting seat 4031. The turntable 4032 is connected to the output end of the third motor;

[0074] Fixed frame 4033 is installed on the top of the turntable 4032. A second slider 4034 is slidably connected to the inside of the fixed frame 4033. A second power system is provided inside the second slider 4034. A processor 4035 is installed outside the second slider 4034. There are three fixed frames 4033 and three second sliders 4034. There are three processors 4035, and the three processors 4035 are set as two drill bits and one grinder;

[0075] Fixed ring 4036 is installed outside the fixed frame 4033. There are two fixed rings 4036;

[0076] Fourth push rod 4037 is installed outside the fixed ring 4036. A moving ring 4038 is installed outside the fourth push rod 4037;

[0077] The telescopic pipe 4039, one end of the telescopic pipe 4039 is installed inside the fixed ring 4036, and the other end of the telescopic pipe 4039 is installed inside the moving ring 4038. The telescopic pipe 4039 externally conveys the air supply pipe, and the air supply pipe is externally connected to a fan. There are two telescopic pipes 4039. The telescopic pipe 4039 located above is set as a bent pipe, and the opening direction is in the vertical direction. The telescopic pipe 4039 located below is set as a straight pipe, and the opening direction is in the horizontal direction.

[0078] During processing, the third push rod 401 is opened to the specified stroke. The third push rod 401 controls the positions of the mounting plate 402 and the processing component 403, and thus controls the position of the processor 4035. The second power system inside the second slider 4034 is adjusted, and thus the height of the processor 4035 is adjusted to process the pump body. After processing, the fourth push rod 4037 is opened. The fourth push rod 4037 stretches the telescopic pipe 4039, so that the opening directions of the two telescopic pipes 4039 correspond to the side and top of the pump body. The external fan is opened to the air extraction mode to absorb most of the impurities outside the pump body.

[0079] By setting the processing mechanism 4 and the processing component 403, three processors 4035 are used, including two drill bits and one grinder to drill and grind the pump body. The two processors 4035 are on the same rotating workbench 1, improving the processing efficiency. After drilling and grinding work, there are a large amount of impurity chips at the processed part of the pump body, which requires workers to spend a lot of time cleaning up later. By setting two telescopic pipes 4039 with adjustable and different opening directions, it is convenient to perform air extraction on the side and top of the pump body, promoting most of the impurity chips to break away from the pump body and reducing the workload of workers cleaning the pump body later.

[0080] The placing mechanism 5 further includes:

[0081] The moving plate 501, the moving plate 501 is connected to the first slider 405. A channel is opened at the bottom of the moving plate 501, and a placing plate 504 is arranged at the top of the moving plate 501;

[0082] The enclosing plate 502, the enclosing plate 502 is installed on the top of the moving plate 501, and a groove 503 is opened inside the enclosing plate 502;

[0083] The fifth push rod 506, the fifth push rod 506 is installed inside the groove 503. A corner plate 507 is installed outside the fifth push rod 506, and an arc-shaped clamping seat 508 is installed outside the corner plate 507. There are multiple arc-shaped clamping seats 508, and the arc-shaped clamping seats 508 are made of magnetic materials.

[0084] The positioning component 505 includes:

[0085] Arc-shaped block 5051, the arc-shaped block 5051 is installed outside the placement plate 504, there are multiple arc-shaped blocks 5051, and the arc-shaped block 5051 is made of magnetic material;

[0086] Back plate 5052, the back plate 5052 is installed on the top of the placement plate 504, there are two back plates 5052, and they are symmetrically arranged;

[0087] Sixth push rod 5053, the sixth push rod 5053 is installed outside the back plate 5052, a cross plate 5054 is installed outside the sixth push rod 5053, there are multiple groups of the sixth push rod 5053 and the cross plate 5054, and they are arranged from top to bottom;

[0088] Connecting rod 5055, the connecting rod 5055 is installed outside the cross plate 5054, the connecting rod 5055 is connected to the elastic rod 5056, two connecting rods 5055 are connected outside each cross plate 5054, the two connecting rods 5055 are symmetrically arranged, and the connecting rod 5055 is slidably connected inside the back plate 5052.

[0089] Before using the device, the fifth push rod 506 is in the open state. At this time, the arc-shaped clamping seat 508 is attracted and fixed to the arc-shaped block 5051, and then the position of the placement plate 504 connected to the arc-shaped block 5051 is fixed. Manually place the pump body on the placement plate 504. According to the shape of the pump body, adjust multiple sixth push rods 5053 to the corresponding stroke. The sixth push rod 5053 drives the cross plate 5054, the connecting rod 5055, the elastic rod 5056 and the attaching plate 5057 to move until the suction strip 5058 outside the attaching plate 5057 is attracted and fixed to the outside of the pump body. At this time, the elastic rod 5056 undergoes corresponding deformation.

[0090] By setting the placement mechanism 5 and the clamping component 505, it is convenient to place the pump body. And since most of the lower part of the pump body is of special shape, during the processing of the pump body, the position of the pump body is likely to change and the fixation is complex. Therefore, elastic rods 5056 that can deform are arranged on both sides of the pump body, an attaching plate 5057 and a suction strip 5058 are arranged outside the elastic rod 5056, and the pump body is attracted and fixed from different heights and different positions. And an arc-shaped clamping seat 508 with magnetism is provided to cooperate with the magnetic arc-shaped block 5051, which is convenient to control the installation and disassembly of the pump body.

[0091] The control mechanism 3 includes:

[0092] Second motor box 301, the second motor box 301 is installed above the center plate 2, and a second motor is arranged inside the second motor box 301;

[0093] First push rod 302, the first push rod 302 is connected to the output end of the second motor;

[0094] The disc 303 is installed on the top of the first push rod 302. A suction cup 304 is installed on the top of the disc 303. There are multiple suction cups 304, and they are evenly arranged.

[0095] The fixed groove 305 is opened inside the disc 303. A second push rod 306 is installed inside the fixed groove 305. A round plate 307 is installed on the top of the second push rod 306.

[0096] With the placement plate 504 in the center position of the workbench 1, the first push rod 302 is turned on. The first push rod 302 drives the disc 303 and the suction cup 304 to move upward. The disc 303 gradually passes through the channel at the bottom of the moving plate 501 until the suction cup 304 is suction-fixed to the bottom of the placement plate 504. At this time, the fifth push rod 506 is adjusted to the initial state, and the arc-shaped clamping seat 508 is separated from the arc-shaped block 5051. By turning on the second motor, the second motor drives the first push rod 302 to rotate, and then drives the disc 303 and the suction cup 304 to rotate. The suction cup 304 drives the placement plate 504 to rotate, and then drives the pump body to rotate, so that the pump body is always in the initial angle.

[0097] When the pump body needs to be disassembled, the second push rod 306 is turned on. The second push rod 306 drives the angle plate 507 and the arc-shaped clamping seat 508 to move until the arc-shaped clamping seat 508 is suction-fixed to the arc-shaped block 5051 again. The first push rod 302 is adjusted to the initial state, and the suction cup 304 is gradually separated from the bottom of the mounting plate 402.

[0098] The second push rod 306 is turned on. The second push rod 306 drives the round plate 307 to move upward. The round plate 307 continuously impacts the bottom of the placement plate 504, drives the placement plate 504 to vibrate, and then drives the pump body to vibrate, promoting the movement of debris on the surface of the pump body.

[0099] By setting the control mechanism 3, the positions of the placement plate 504 and the pump body are controlled. During the processing of the pump body, the processor 4035 on the workbench 1 moves one station in a rotational manner each time. Therefore, the disc 303 and the suction cup 304 controlled by the second motor are set to control the positions of the placement plate 504 and the pump body, so that the pump body is always in the initial angle, which is convenient for multiple processors 4035 to rotate to different stations for simultaneous processing, and at the same time avoids using multiple robotic arms to perform multiple clamping, adjustment, and fixing operations on the pump body.

[0100] Working principle: Before using the equipment, adjust the processing mechanism 4 and the placement mechanism 5. Manually place the pump body in the placement mechanism 5, and use the positioning component 505 to fix the position of the pump body.

[0101] Before using the device, the fifth push rod 506 is in the open state. At this time, the arc-shaped clamping seat 508 is suction-fixed to the arc-shaped block 5051, thereby fixing the position of the placement plate 504 connected to the arc-shaped block 5051. Turn on the first power system in the first slider 405, and the first slider 405 starts to move inside the slideway 404. The two first sliders 405 drive the placement mechanism 5 to move away from the workbench 1. Manually place the pump body on the placement plate 504. According to the shape of the pump body, adjust multiple sixth push rods 5053 to the corresponding stroke. The sixth push rods 5053 drive the cross plate 5054, the connecting rod 5055, the elastic rod 5056, and the attaching plate 5057 to move until the suction strips 5058 outside the attaching plate 5057 are suction-fixed to the outside of the pump body. At this time, the elastic rod 5056 undergoes corresponding deformation.

[0102] Adjust the first power system in the first slider 405. The first slider 405 starts to move inside the slideway 404. The two first sliders 405 drive the placement mechanism 5 to move until the pump body is at the center position of the workbench 1.

[0103] As the placement plate 504 is at the center position of the workbench 1, turn on the first push rod 302. The first push rod 302 drives the disc 303 and the suction cup 304 to move upward. The disc 303 gradually passes through the channel at the bottom of the moving plate 501 until the suction cup 304 is suction-fixed to the bottom of the placement plate 504. At this time, adjust the fifth push rod 506 to the initial state, and the arc-shaped clamping seat 508 is separated from the arc-shaped block 5051. By turning on the second motor, the second motor drives the first push rod 302 to rotate, thereby driving the disc 303 and the suction cup 304 to rotate. The suction cup 304 drives the placement plate 504 to rotate, thereby driving the pump body to rotate, so that the pump body is always at the initial angle.

[0104] Turn on the first motor. The first motor drives the workbench 1 to rotate, thereby driving the processing mechanism 4 to rotate, and then adjusting the processing station. At the same time, adjust the control mechanism 3 so that the pump body is always in the initial direction, and the processing mechanism 4 processes the pump body.

[0105] During processing, turn on the third push rod 401 to the specified stroke. The third push rod 401 controls the positions of the mounting plate 402 and the processing component 403, thereby controlling the position of the processor 4035. Adjust the second power system in the second slider 4034, and then adjust the height of the processor 4035 to process the pump body. After processing, turn on the fourth push rod 4037. The fourth push rod 4037 stretches the telescopic pipeline 4039 so that the opening directions of the two telescopic pipelines 4039 correspond to the side and top of the pump body. Turn on the external blower to the exhaust mode to absorb most of the impurities outside the pump body.

[0106] After the work is completed, the control mechanism 3, the processing mechanism 4, and the placement mechanism 5 are adjusted, and the processed pump body can be manually disassembled.

[0107] When the pump body needs to be disassembled, the second push rod 306 is opened. The second push rod 306 drives the angle plate 507 and the arc-shaped clamping seat 508 to move until the arc-shaped clamping seat 508 is suction-fixed to the arc-shaped block 5051 again. The first push rod 302 is adjusted to the initial state, and the suction cup 304 gradually separates from the bottom of the mounting plate 402. The first power system in the first slider 405 is adjusted again, and the placement mechanism 5 is driven by the first slider 405 to move away from the workbench 1. The sixth push rod 5053 in the clamping component 505 is adjusted to complete the disassembly work of the pump body.

[0108] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A rotary table workbench for processing a pump body of a mine pump, comprising a workbench (1), characterized in that: The middle part of the workbench (1) is hollowed out; A central plate (2), the central plate (2) is installed inside the workbench (1), and a control mechanism (3) is installed on the top of the central plate (2); A processing mechanism (4), the processing mechanism (4) is arranged on the top of the workbench (1); A placing mechanism (5), the placing mechanism (5) is arranged on the top of the workbench (1), the placing mechanism (5) includes a placing plate (504), and a clamping component (505) is installed on the top of the placing plate (504); The clamping component (505) includes an elastic rod (5056), an attaching plate (5057) is installed on the outside of the elastic rod (5056), a suction strip (5058) is installed on the outside of the attaching plate (5057), and the elastic rod (5056), the attaching plate (5057) and the suction strip (5058) are used to cooperate with the contact pump body; The control mechanism (3), the placing mechanism (5) and the processing mechanism (4) are used to cooperate to control the clamping component (505) to move in the vertical direction or the horizontal direction.

2. The rotary table for processing the pump body of the mine pump according to claim 1, wherein: It further includes: A connecting plate (6), the connecting plate (6) is installed at the bottom of the workbench (1); A first motor box (7), a first motor is arranged inside the first motor box (7), the connecting plate (6) is connected to the output end of the first motor, and a base (8) is installed at the bottom of the first motor box (7).

3. The rotary workbench for processing the pump body of a mining pump according to claim 1, characterized in that: The control mechanism (3) includes: A second motor box (301), the second motor box (301) is installed above the central plate (2), and a second motor is arranged inside the second motor box (301); A first push rod (302), the first push rod (302) is connected to the output end of the second motor; A disc (303), the disc (303) is installed on the top of the first push rod (302), a suction cup (304) is installed on the top of the disc (303), and a plurality of suction cups (304) are provided and are evenly arranged; A fixing groove (305), the fixing groove (305) is opened inside the disc (303), a second push rod (306) is installed inside the fixing groove (305), and a round plate (307) is installed on the top of the second push rod (306).

4. The rotary workbench for processing the pump body of a mining pump according to claim 1, characterized in that: The processing mechanism (4) includes: A third push rod (401), the third push rod (401) is installed outside the workbench (1), and three third push rods (401) are provided; A mounting plate (402), the mounting plate (402) is installed outside the third push rod (401), and a processing component (403) is arranged on the top of the mounting plate (402); A slideway (404), the slideway (404) is opened inside the workbench (1), a first slider (405) is slidably connected inside the slideway (404), and the first slider (405) is connected to the placing mechanism (5).

5. The rotary table for processing the pump body of a mine pump according to claim 4, characterized in that: The processing component (403) includes: A mounting base (4031), the mounting base (4031) is arranged above the mounting plate (402), and a turntable (4032) is arranged on the top of the mounting base (4031); A fixing frame (4033), the fixing frame (4033) is installed on the top of the turntable (4032), a second slider (4034) is slidably connected inside the fixing frame (4033), and a processor (4035) is installed outside the second slider (4034).

6. The rotary table for processing the pump body of a mine pump according to claim 5, characterized in that: The processing component (403) further includes: A fixing ring (4036), the fixing ring (4036) is installed outside the fixing frame (4033), and there are two fixing rings (4036); A fourth push rod (4037), the fourth push rod (4037) is installed outside the fixing ring (4036), and a moving ring (4038) is installed outside the fourth push rod (4037); A telescopic pipe (4039), one end of the telescopic pipe (4039) is installed inside the fixing ring (4036), and the other end of the telescopic pipe (4039) is installed inside the moving ring (4038).

7. The rotary table for processing the pump body of a mine pump according to claim 4, characterized in that: The placing mechanism (5) further includes: A moving plate (501), the moving plate (501) is connected to the first slider (405), a channel is opened at the bottom of the moving plate (501), and a placing plate (504) is arranged on the top of the moving plate (501); A surrounding plate (502), the surrounding plate (502) is installed on the top of the moving plate (501), and a groove (503) is opened inside the surrounding plate (502); A fifth push rod (506), the fifth push rod (506) is installed inside the groove (503), a corner plate (507) is installed outside the fifth push rod (506), and an arc-shaped clamping seat (508) is installed outside the corner plate (507), and there are multiple arc-shaped clamping seats (508).

8. The rotary table for processing the pump body of a mine pump according to claim 7, characterized in that: The clamping component (505) includes: Arc-shaped blocks (5051), the arc-shaped blocks (5051) are installed outside the placing plate (504), and there are multiple arc-shaped blocks (5051); Support plates (5052), the support plates (5052) are installed on the top of the placing plate (504), there are two support plates (5052), and they are symmetrically arranged.

9. The rotary table for processing the pump body of a mine pump according to claim 8, characterized in that: The clamping component (505) further includes: A sixth push rod (5053), the sixth push rod (5053) is installed outside the support plate (5052), and a cross plate (5054) is installed outside the sixth push rod (5053); Connecting rod (5055), the connecting rod (5055) is installed outside the cross plate (5054), and the connecting rod (5055) is connected to the elastic rod (5056).

Citation Information

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