Computer-aided equipment convenient to overhaul

By designing dust blowing components and vacuuming components in computer-aided equipment, dust is collected into the treatment box and treated by water, the problem of secondary drifting of dust is solved, the quality of the working environment is maintained and the treatment efficiency is improved.

CN120205538AInactive Publication Date: 2025-06-27SHIJIAZHUANG ZHANMA TECH CO LTD
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Patent Information

Application Number
CN202510305580.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing computer-aided equipment is prone to secondary drifting when dealing with dust, affecting the quality of the working environment.

Method used

A computer-aided device is designed for easy maintenance. It uses dust blowing components to blow items. The vacuum cleaner component collects dust and sends it to the treatment box through the air extraction pipe. The dust is dipped in the treatment box by water treatment to prevent secondary drifting.

Benefits of technology

It effectively solves the problem of secondary drifting of dust, maintains the quality of the working environment, and improves the uniformity and efficiency of dust treatment through stirring and filtration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of computer auxiliary equipment, in particular to computer auxiliary equipment convenient to overhaul, which comprises a lifting table arranged on a bottom plate in parallel, the lifting table is driven by a lifting assembly to ascend and descend, an operation table is arranged on the lifting table, the operation table is driven by a first driving source to rotate, and a first clamping assembly is arranged on the operation table; the two second clamping assemblies are oppositely arranged on the two sides of the operation table and connected with the lifting table through the two lifting elements correspondingly, and the two lifting elements drive the two second clamping assemblies to ascend and descend synchronously. The dust blowing assembly is arranged on a support of the lifting table and located above the portion, between the two second clamping assemblies, of the operation table. The two dust collection assemblies are symmetrically arranged on the two sides of the dust blowing assembly and connected with the dust blowing assembly. The treatment box is arranged on one side of the lifting table, a water inlet is formed in the treatment box, and the treatment box communicates with the two dust collection assemblies. The dust removal device has the advantages that secondary drifting is avoided during dust removal, and the like.
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Description

Technical Field

[0001] The present invention relates to the technical field of computer-aided devices, and particularly to a computer-aided device convenient for maintenance and repair. Background Art

[0002] A computer, commonly known as a computer, is a modern electronic computing device used for high-speed computing. It can perform numerical calculations, logical calculations, and also has a storage and memory function. It is a modern intelligent electronic device that can run according to a program and automatically and rapidly process a large amount of data. It has entered people's lives, and people cannot do without a computer in daily work or entertainment. As we use computers more and more, computers need maintenance and repair, and also need some auxiliary devices for maintenance and repair.

[0003] For this reason, the patent literature discloses a computer-aided device convenient for maintenance and repair (application number: CN201910954832.X), which includes a frame and a workbench. A workbench is provided above the frame, and it also includes a dust cleaning unit. The dust cleaning unit includes a mounting column, an electric push rod, a mounting plate, a dust blowing assembly, a gas supply assembly, and a dust suction assembly. The dust suction assembly includes a dust suction member, a suction nozzle, and a vacuum cleaner. The gas supply assembly includes a hair dryer and a gas supply pipeline. A regulating unit is connected between the workbench and the frame, and the regulating unit includes a lifting assembly and a rotating assembly.

[0004] The treatment method for the blown dust in the above patent literature is that after the dust is blown into the air, it is sucked into the dust suction member through the suction nozzle, and then enters the vacuum cleaner through the suction pipe. Although this method can temporarily collect the dust, when the dust reaches a certain amount, the dust in the vacuum cleaner needs to be cleaned to the outside for treatment. When the vacuum cleaner is opened, because the dust is relatively dry and light, it is extremely easy to occur the situation of secondary dispersion, which affects the quality of the working environment. Summary of the Invention

[0005] In view of this, the present invention provides a computer-aided device convenient for maintenance and repair, aiming to solve the technical problem of extremely easy secondary dispersion when dealing with dust.

[0006] To achieve the above object, the present invention is realized through the following technical solutions: A computer-aided device convenient for maintenance and repair includes, a bottom plate, on which a lifting table is arranged in parallel. The lifting table is lifted and lowered under the drive of a lifting assembly. An operating table is arranged on the lifting table, and the operating table rotates under the drive of a first driving source. A first clamping assembly is arranged on the operating table; two second clamping assemblies, which are oppositely arranged on both sides of the operating table. The two second clamping assemblies are respectively connected to the lifting table through two lifting elements, and the two lifting elements drive the two second clamping assemblies to lift synchronously; A dust blowing assembly is provided on the bracket of the lifting table and above the operating table between two second clamping assemblies. Two dust suction assemblies are symmetrically arranged on both sides of the dust blowing assembly and are respectively connected to the dust blowing assembly. A treatment tank is provided on one side of the lifting table. It is provided with a water inlet, and the treatment tank is communicated with the two dust suction assemblies. The treatment tank is used to treat impurities entering the treatment tank.

[0007] A further improvement of the present invention is that the treatment tank includes: A partition is horizontally arranged in the treatment tank and divides the treatment tank into a stirring chamber and a filtering chamber from top to bottom. The stirring chamber is provided with a water inlet, a dust inlet, and an air outlet. The dust inlet is communicated with the two dust suction assemblies through a suction pipe. A discharge port is provided on the partition, and a first valve that can be opened and closed is provided on the discharge port. A stirring assembly is provided in the stirring chamber. A filter plate is horizontally arranged in the filtering chamber, and a water distributor is arranged between the discharge port and the filter plate.

[0008] A further improvement of the present invention is that the stirring assembly includes: A stirring shaft is provided in the stirring chamber, and stirring blades are arranged on it. A first driving unit is provided on the treatment tank. A swing arm is composed of a main rod and two symmetrically arranged support rods connected thereto. A runner is rotatably arranged on the inner side of each support rod. The runner is in rolling contact with a first groove provided on the circumferential surface of the upper end of the stirring shaft that penetrates the top of the treatment tank. The first end of the main rod is connected to the output end of the first driving unit, and the swing arm swings up and down under the drive of the first driving unit. A rotating assembly is connected to the stirring shaft and is used to drive the stirring shaft to rotate.

[0009] A further improvement of the present invention is that the rotating assembly includes: A first gear is arranged on the stirring shaft. A second gear meshes with the first gear and rotates under the drive of a second driving unit. The tooth width of the first gear is greater than the tooth width of the second gear. When the stirring shaft moves up and down, the first gear and the second gear always remain meshed.

[0010] A further improvement of the present invention is that the dust blowing assembly includes: A first screw rod is horizontally arranged on the bracket and rotates under the drive of a third driving unit. The moving frame is threadedly connected to and penetrates through the upper end of the first screw rod. A rotatable air jet pipe is horizontally arranged at the lower end of the moving frame. The air jet pipe is perpendicular to the first screw rod. A plurality of air jet nozzles are arranged on the air jet pipe. The end of the air jet pipe is connected to the air inlet pipe of the air supply device through a rotary joint. The first rack is horizontally arranged on the moving frame in a slidable manner. The first rack meshes with the third gear on the air jet pipe. The fourth driving unit is arranged on the moving frame. A disc is arranged at the output end of the fourth driving unit. A guide post is eccentrically arranged on the disc. The guide post is slidably connected to the long slot hole on the first rack.

[0011] A further improvement of the present invention is that the dust suction assembly includes a dust suction frame, which is arranged on one side of the moving frame and connected thereto. A dust suction cover is arranged at the lower end of the dust suction frame. The lower end of the dust suction cover faces the air jet nozzles. The dust suction cover is connected to the end of the air extraction pipe.

[0012] A further improvement of the present invention is that the lifting assembly includes: Two second screw rods are symmetrically arranged below the lifting platform. The upper ends of the two second screw rods are respectively connected to the lifting platform. Two first bevel gears are symmetrically and rotatably arranged on the bottom plate and are threadedly connected to and penetrate through the corresponding second screw rods. A double-shaft motor is arranged on the bottom plate. Two second bevel gears are respectively arranged at the two output ends of the double-shaft motor. The first bevel gear meshes with the corresponding second bevel gear.

[0013] A further improvement of the present invention is that the first clamping assembly includes: Two clamping plates are oppositely arranged on the operating table. A first rotating shaft is horizontally and rotatably arranged on the operating table. Two threaded sections with opposite helix directions arranged thereon are respectively threadedly connected to and penetrate through the two clamping plates. A hand wheel is arranged at the end of the first rotating shaft.

[0014] A further improvement of the present invention is that the lifting element includes a first hydraulic cylinder vertically arranged on the lifting platform. A support plate is arranged at the end of the piston rod of the first hydraulic cylinder.

[0015] A further improvement of the present invention is that the second clamping assembly includes a fifth driving unit, which is horizontally arranged on the support plate and horizontally moves under the drive of a second hydraulic cylinder. A pneumatic claw is arranged at the output end of the fifth driving unit.

[0016] Due to the adoption of the above technical solutions, the technical progress achieved by the present invention is: A computer-aided device that is convenient for maintenance in the present invention blows dust on an object through a dust blowing assembly. Two dust suction assemblies collect the blown dust and send it to a processing box through a suction pipe. Water enters the processing box through a water inlet, and the dust entering the processing box is processed. The wetted dust will not scatter again during transportation, maintaining the quality of the working environment.

[0017] A computer-aided device that is convenient for maintenance in the present invention drives a stirring shaft to rotate through a rotating assembly. The stirring shaft stirs materials through stirring blades. At the same time, a first driving unit drives a swing arm to swing, and the swing arm drives the stirring shaft to lift, so that the stirring shaft stirs materials while lifting and rotating. This can not only break the bubbles generated in the water, but also continuously change the position of the stirring blades in the vertical direction, allowing the stirring blades to contact materials at different heights, bringing the upper-layer materials to the lower layer and turning the lower-layer materials to the upper layer, enabling the materials to be more fully mixed in three-dimensional space and greatly enhancing the uniformity of stirring.

[0018] A computer-aided device that is convenient for maintenance in the present invention can evenly drop the evenly stirred materials in the stirring chamber onto a filter plate through a water distributor, enabling the filter plate to filter evenly and avoiding filtering only in a part of the area on the filter plate, thereby maintaining the filtering efficiency.

[0019] A computer-aided device that is convenient for maintenance in the present invention can blow away the dust on the surface of an object through the air jet head of the dust blowing assembly. And the first screw drives the air jet pipe and the air jet head to move horizontally through a moving frame, which can clean a specific area more concentratedly. And the fourth driving unit can make the first rack move horizontally through the cooperation of the guiding column on the wheel disc and the long slot hole. The first rack drives the air jet pipe to swing through a third gear, so as to change the direction when the air jet head reaches the edge of the object, enabling deeper cleaning.

[0020] A computer-aided device that is convenient for maintenance in the present invention can collect the blown dust through two dust suction covers in the two dust suction assemblies. And because it is connected to the moving frame, it can move along with the air jet pipe, making dust suction more convenient.

[0021] A computer-aided device that is convenient for maintenance in the present invention can drive a lifting platform to lift through a lifting assembly, effectively adapting to people of different heights for operation.

[0022] A computer-aided device that is convenient for maintenance in the present invention can conveniently clamp objects of different sizes through a first clamping assembly.

[0023] A computer-aided device that is convenient for maintenance in the present invention can conveniently clamp an object through a second clamping assembly, and then the dust blowing assembly blows dust on the object.

[0024] In the present invention, a computer-aided device convenient for maintenance can easily transport the second clamping assembly to the operating table or the dust blowing assembly through a lifting element. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0026] Figure 1 It is a schematic diagram of the overall structure of the computer-aided device described in the present invention; Figure 2 It is a schematic diagram of the internal structure of the processing box of the computer-aided device described in the present invention; Figure 3 It is a schematic diagram of the structure of the stirring assembly of the computer-aided device described in the present invention; Figure 4 It is a schematic diagram of the structure of the dust blowing assembly of the computer-aided device described in the present invention; Figure 5 It is a schematic diagram of the structure of the dust suction assembly of the computer-aided device described in the present invention; Figure 6 It is a schematic diagram of the structure of the lifting assembly of the computer-aided device described in the present invention; Figure 7 It is a schematic diagram of the structure of the second clamping assembly of the computer-aided device described in the present invention; Figure 8 It is a schematic diagram of the structure of the first clamping assembly of the computer-aided device described in the present invention.

[0027] Description of the reference numerals: 10 - Bottom plate, 11 - Lifting platform, 12 - Operating platform, 121 - First driving source, 20 - Processing box, 21 - Partition, 211 - Discharge port, 212 - Water inlet, 22 - Filter plate, 23 - Water distributor, 30 - Stirring assembly, 31 - Stirring shaft, 311 - Stirring blades, 32 - Swing arm, 321 - Main rod, 322 - Support rod, 323 - Runner, 33 - First groove, 34 - First driving unit, 35 - First gear, 36 - Second driving unit, 361 - Second gear, 40 - Dust blowing assembly, 41 - First screw rod, 42 - Third driving unit, 43 - Moving frame, 44 - Air jet pipe, 441 - Air jet head, 45 - Rotary joint, 46 - Air inlet pipe, 47 - First rack, 471 - Long slot hole, 48 - Fourth driving unit, 481 - Disk, 482 - Guide post, 50 - Dust suction assembly, 51 - Dust suction frame, 52 - Dust suction hood, 53 - Suction pipe, 60 - Lifting assembly, 61 - Second screw rod, 62 - First bevel gear, 63 - Biaxial motor, 631 - Second bevel gear, 70 - First clamping assembly, 71 - Clamping plate, 72 - First rotating shaft, 73 - Handwheel, 80 - Lifting element, 81 - First hydraulic cylinder, 82 - Support plate, 90 - Second clamping assembly, 91 - Fifth driving unit, 92 - Second hydraulic cylinder, 93 - Air gripper. Detailed implementation manner

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, in the following description, specific details such as specific system structures and technologies are proposed for the purpose of illustration rather than limitation, so as to thoroughly understand the embodiments of the present invention. However, those skilled in the art should understand that the present invention can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present invention.

[0029] The present invention provides a computer - aided device that is convenient for maintenance. According to the attached Figures 1 to 8 description, a computer - aided device that is convenient for maintenance mainly includes the following parts or components: bottom plate 10, second clamping assembly 90, dust blowing assembly 40, dust suction assembly 50, and processing box 20.

[0030] In the present invention, a lifting table 11 is arranged in parallel on a bottom plate 10. The lifting table 11 is lifted and lowered under the drive of a lifting assembly 60. An operating table 12 is arranged on the lifting table 11. The operating table 12 rotates under the drive of a first drive source 121. A first clamping assembly 70 is arranged on the operating table 12; two second clamping assemblies 90 are arranged oppositely on both sides of the operating table 12. The two second clamping assemblies 90 are respectively connected to the lifting table 11 through two lifting elements 80. The two lifting elements 80 drive the two second clamping assemblies 90 to lift and lower synchronously; a dust blowing assembly 40 is arranged on the bracket of the lifting table 11 and above the operating table 12 between the two second clamping assemblies 90; two dust suction assemblies 50 are symmetrically arranged on both sides of the dust blowing assembly 40 and are respectively connected to the dust blowing assembly 40; a processing box 20 is arranged on one side of the lifting table 11. A water inlet 212 is arranged thereon. The processing box 20 is communicated with the two dust suction assemblies 50. The processing box 20 is used for processing impurities entering the processing box 20.

[0031] By driving the lifting of the lifting table 11 through the lifting assembly 60, it can adapt to personnel of different heights. Place the article on the operating table 12. The first clamping assembly 70 clamps the article to prevent the article from falling during maintenance. The first drive source 121 can drive the operating table 12 to rotate, which can facilitate maintenance personnel to maintain different positions of the article and also facilitate the clamping of the second clamping assembly 90. When dust removal needs to be performed on the article, the two lifting elements 80 send the two second clamping assemblies 90 to the article on the operating table 12. After the two second clamping assemblies 90 clamp the article, the two lifting elements 80 bring the second clamping assemblies 90 and the article to the dust blowing assembly 40. The dust blowing assembly 40 blows dust on the article. The two dust suction assemblies 50 collect the blown dust and send it to the processing box 20 through a suction pipe 53. Water enters the processing box 20 through the water inlet 212, and the dust entering the processing box 20 is processed. The wetted dust will not be scattered secondarily during transportation, maintaining the quality of the working environment.

[0032] As an embodiment, according to the specification appendix Figures 1 to 2 As can be seen, the processing box 20 includes a partition 21, which is horizontally and fixedly arranged in the processing box 20 and divides the processing box 20 into a stirring chamber and a filtering chamber from top to bottom. The stirring chamber is provided with a water inlet 212, a dust inlet (not marked in the figure), and an air outlet (not marked in the figure). The dust inlet is communicated with the two dust suction assemblies 50 through a suction pipe 53. A discharge port 211 is arranged on the partition 21. A first valve (not shown in the figure) that can be opened and closed is arranged on the discharge port 211; a stirring assembly 30 is arranged in the stirring chamber; a filter plate 22 is horizontally and fixedly arranged in the filtering chamber. A water distributor 23 is fixedly arranged between the discharge port 211 and the filter plate 22.

[0033] The dust inlet is located below the water inlet 212. Water enters the mixing chamber through the water inlet 212, and dust enters the mixing chamber from the dust inlet. The dust is sent into the water, and the mixing assembly 30 mixes the material formed by the water and the dust to make them fully blend. Mixing can increase the turbulence of the water, which helps to break up the larger agglomerates formed by dust particles and disperse them into smaller particles. It can also break the bubbles generated when the dust enters the water in the treatment tank 20. Then, the first valve is opened to allow the material to fall into the filtration chamber through the discharge port 211. The evenly mixed material in the mixing chamber can be evenly dropped onto the filter plate 22 through the water distributor 23, enabling the filter plate 22 to filter evenly and avoiding filtration only in a partial area of the filter plate 22, thereby maintaining the filtration efficiency. The water falling to the bottom after filtration can be recycled. When the wet dust on the filter plate 22 is being processed, it will not scatter again, maintaining the quality of the working environment.

[0034] In this embodiment, according to the appended drawings of the specification Figure 3 As can be seen, the mixing assembly 30 includes a mixing shaft 31 disposed in the mixing chamber, on which mixing blades 311 are fixedly arranged; a first driving unit 34 is fixedly arranged on the treatment tank 20; the swing arm 32 is composed of a main rod 321 and two symmetrically arranged support rods 322 connected thereto. A runner 323 is rotatably arranged on the inner side of each support rod 322, and the runner 323 is in rolling contact with a first groove 33 provided on the circumferential surface of the upper end of the mixing shaft 31 passing through the top of the treatment tank 20. The first end of the main rod 321 is connected to the output end of the first driving unit 34, and the swing arm 32 swings up and down under the drive of the first driving unit 34; the rotating assembly is connected to the mixing shaft 31 for driving the mixing shaft 31 to rotate.

[0035] In this embodiment, according to the appended drawings of the specification Figure 3 As can be seen, the rotating assembly includes a first gear 35 fixedly arranged on the mixing shaft 31; a second gear 361 meshes with the first gear 35 and rotates under the drive of a second driving unit 36. The tooth width of the first gear 35 is greater than the tooth width of the second gear 361. When the mixing shaft 31 moves up and down, the first gear 35 and the second gear 361 always remain meshed.

[0036] The second driving unit 36 drives the second gear 361 to rotate. The second gear 361 drives the first gear 35 to rotate, and the first gear 35 drives the mixing shaft 31 to rotate. Since the tooth width of the first gear 35 is greater than the tooth width of the second gear 361, when the mixing shaft 31 moves up and down, the second gear 361 can always drive the first gear 35 to rotate, and the fact that the tooth width of the first gear 35 is greater than the tooth width of the second gear 361 can disperse the contact stress during the meshing process, thereby reducing the tooth profile wear of the gears and extending the service life of the gears.

[0037] The rotation component drives the stirring shaft 31 to rotate. The stirring shaft 31 stirs the materials through the stirring blades 311. At the same time, the first driving unit 34 drives the swing arm 32 to swing, and the swing arm 32 drives the stirring shaft 31 to move up and down, so that the stirring shaft 31 stirs the materials while moving up and down and rotating. This can not only break the bubbles generated in the water, but also make the stirring blades 311 continuously change their positions in the vertical direction, enabling the stirring blades 311 to contact the materials at different heights, bringing the upper-layer materials to the lower layer and turning the lower-layer materials to the upper layer, so that the materials are more fully mixed in three-dimensional space, greatly enhancing the uniformity of stirring.

[0038] Specifically, when the swing arm 32 moves, the first driving unit 34 drives the main rod 321 to swing, the main rod 321 drives the two support rods 322 to swing, and the rotating wheels 323 on the support rods 322 also swing. When the rotating wheels 323 swing upward, since the rotating wheels 323 always abut against the top of the first groove 33, the first groove 33 can drive the stirring shaft 31 to rise. When the rotating wheels 323 swing downward, since the rotating wheels 323 always abut against the bottom of the first groove 33, the first groove 33 drives the stirring shaft 31 to descend. Since the rotating wheels 323 and the first groove 33 are in rolling friction, wear can be reduced.

[0039] Specifically, the first valve is in a closed state when stirring the materials, and is in an open state when the materials need to fall into the filtering cavity. The bottoms of the stirring cavities on both sides of the discharge port 211 are inclined, which can accelerate the speed of the materials falling into the filtering cavity. And the first valve is relatively common in practical applications, so it will not be elaborated too much.

[0040] Specifically, there will be excess gas after the bubbles are broken, which will go out from the air outlet. An activated carbon filter plate is installed at the air outlet, which can adsorb a small amount of dust in the gas, making the gas emission more standard.

[0041] Specifically, the water distributor 23 is composed of two symmetrically arranged material dropping plates, and there are multiple water dropping grooves on the material dropping plates, which can effectively make the materials fall evenly on the filter plate 22.

[0042] As an embodiment, according to the attached instructions Figure 4It can be seen that the dust blowing assembly 40 includes a first screw rod 41, which is horizontally arranged on a bracket (not shown in the figure) and rotates under the drive of a third drive unit 42; the upper end of a moving frame 43 is threadedly connected to and penetrates through the first screw rod 41. A rotatable air jet pipe 44 is horizontally arranged at the lower end of the moving frame 43. The air jet pipe 44 is perpendicular to the first screw rod 41. A plurality of air jet nozzles 441 are arranged on the air jet pipe 44. The end of the air jet pipe 44 is connected to an air inlet pipe 46 of a gas supply device (not shown in the figure) through a rotary joint 45; a first rack 47 is horizontally arranged on the moving frame 43 in a slidable manner. The first rack 47 meshes with a third gear (not shown in the figure) on the air jet pipe 44; a fourth drive unit 48 is fixedly arranged on the moving frame 43. A disc 481 is fixedly arranged at the output end of the fourth drive unit 48. A guide post 482 is eccentrically arranged on the disc 481. The guide post 482 is slidably connected to a long slot hole 471 on the first rack 47.

[0043] The gas supply device supplies gas to the air jet pipe 44 through the air inlet pipe 46 and the rotary joint 45. The third drive unit 42 drives the first screw rod 41 to rotate. The first screw rod 41 drives the moving frame 43 to move horizontally back and forth. The moving frame 43 drives the air jet pipe 44 to move synchronously. When it is necessary to reverse the air jet nozzles 441, the fourth drive unit 48 drives the disc 481 to rotate. The disc 481 drives the guide post 482 to rotate. The guide post 482 cooperates with the long slot hole 471 to drive the first rack 47 to slide horizontally. The first rack 47 drives the air jet pipe 44 to swing through the third gear. The air jet pipe 44 drives the air jet nozzles 441 to reverse, that is, the reversal can make the orientation of the air jet nozzles 441 always consistent with the advancing direction of the air jet pipe 44.

[0044] Specifically, the dust on the surface of an article can be blown away by the air jet nozzles 441 of the dust blowing assembly 40. Moreover, the first screw rod 41 drives the air jet pipe 44 and the air jet nozzles 441 to move horizontally through the moving frame 43, so that a specific area can be cleaned more concentratedly. And through the cooperation of the guide post 482 on the disc 481 and the long slot hole 471 of the fourth drive unit 48, the first rack 47 can be horizontally moved. The first rack 47 drives the air jet pipe 44 to swing through the third gear, so as to reverse when the air jet nozzles 441 reach the edge of the article, and deeper cleaning can be achieved.

[0045] Specifically, the air inlet pipe 46 is a flexible pipe, and the movement of the air jet pipe 44 will not cause damage to the air inlet pipe 46.

[0046] In this embodiment, according to the appended drawings of the specification Figure 5 It can be seen that the dust suction assembly 50 includes a dust suction frame 51, which is fixedly arranged on one side of the moving frame 43 and is connected thereto. A dust suction hood 52 is arranged at the lower end of the dust suction frame 51. The lower end of the dust suction hood 52 faces the air jet nozzles 441. The dust suction hood 52 is connected to the end of an air extraction pipe 53.

[0047] The blown dust can be collected by the two dust suction covers 52 in the two dust suction components 50, and since it is connected to the moving frame 43, it can move along with the air jet pipe 44, making dust suction more convenient.

[0048] Specifically, the air jet head 441 faces the dust suction cover 52 for operation, and the end parts of the air extraction pipes 53 are respectively connected to the two dust suction covers 52. Therefore, there are two air extraction fans between the bifurcation of the air extraction pipes 53 and the dust suction covers 52, which can operate separately to reduce power waste.

[0049] Specifically, air extraction devices such as air extraction fans are installed at the air extraction pipes 53, enabling the dust suction covers 52 to suck dust.

[0050] As an embodiment, according to the attached instructions Figure 6 It can be known that the lifting component 60 includes two second screw rods 61 symmetrically arranged below the lifting platform 11, and the upper ends of the two second screw rods 61 are respectively connected to the lifting platform 11; two first bevel gears 62 are symmetrically and rotatably arranged on the bottom plate 10, threadedly connected to and penetrating through the corresponding second screw rods 61; the double-shaft motor 63 is fixedly arranged on the bottom plate 10, and two second bevel gears 631 are respectively fixedly arranged at its two output ends, and the first bevel gear 62 meshes with the corresponding second bevel gear 631.

[0051] The double-shaft motor 63 drives the two second bevel gears 631 to rotate forward and backward alternately. The two second bevel gears 631 drive the two first bevel gears 62 to rotate forward and backward alternately. The two first bevel gears 62 drive the two second screw rods 61 to lift and lower, and the two second screw rods 61 drive the lifting platform 11 to lift and lower.

[0052] The lifting component 60 can drive the lifting platform 11 to lift and lower, effectively adapting to people of different heights for operation.

[0053] Specifically, a guiding component is arranged between the lifting platform 11 and the bottom plate 10. The guiding component includes multiple guiding rods, which are vertically and fixedly arranged on the lower surface of the lifting platform 11. Multiple guiding cylinders correspond to the multiple guiding rods one by one. The multiple guiding cylinders are vertically and fixedly arranged on the bottom plate 10, and the guiding cylinders are slidably sleeved on the guiding rods. When the lifting platform 11 lifts and lowers, the guiding rods slide in the guiding cylinders, effectively guiding the lifting platform 11.

[0054] As an embodiment, according to the attached instructions Figures 7 to 8 It can be known that the first clamping component 70 includes two clamping plates 71, which are relatively arranged on the operating table 12; the first rotating shaft 72 is horizontally and rotatably arranged on the operating table 12, and two thread segments with opposite helix directions arranged thereon are respectively threadedly connected to and penetrate through the two clamping plates 71, and a hand wheel 73 is arranged at the end of the first rotating shaft 72.

[0055] Rotate the handwheel 73, the handwheel 73 drives the first rotating shaft 72 to rotate, the first rotating shaft 72 drives the two clamping plates 71 to clamp the article, and different-sized articles can be conveniently clamped through the first clamping assembly 70.

[0056] Specifically, rubber pads can be arranged on the opposite sides of the two clamping plates 71, which can effectively reduce the risk of damage when the clamping plates 71 come into contact with the article.

[0057] As an embodiment, according to the attached drawings of the specification Figure 7 As can be seen, the lifting element 80 includes a first hydraulic cylinder 81 vertically arranged on the lifting table 11, and a support plate 82 is arranged at the end of its piston rod. The second clamping assembly 90 includes a fifth driving unit 91, which is horizontally arranged on the support plate 82 and horizontally moves under the drive of the second hydraulic cylinder 92, and a pneumatic claw 93 is arranged at the output end of the fifth driving unit 91.

[0058] The two first hydraulic cylinders 81 drive the support plate 82 to lift synchronously, the support plate 82 drives the second clamping assembly 90 to lift, and the second clamping assembly 90 can be conveniently transported to the operating table 12 or the dust blowing assembly 40 through the lifting element 80. When it is sent to the operating table 12, the piston rods of the two second hydraulic cylinders 92 drive the two pneumatic claws 93 to approach the article through the two fifth driving units 91 until the pneumatic claws 93 grip the article. Then, after arriving at the dust blowing assembly 40, the dust blowing assembly 40 blows dust on the article, and the fifth driving unit 91 drives the pneumatic claws 93 to rotate, so that dust can be blown on multiple sides of the article. The dust blowing assembly 40 can conveniently blow dust on the article after clamping the article through the second clamping assembly 90.

[0059] Specifically, the first driving source 121, the second driving unit 36, the fourth driving unit 48, and the fifth driving unit 91 can be one-way motors or reversible motors, the first driving unit 34 is a stepping motor, and the third driving unit 42 is a reversible motor.

[0060] The present invention provides a computer-aided device convenient for maintenance. When in use, the specific operation process is as follows: By driving the lifting of the lifting table 11 through the lifting component 60, it can adapt to personnel of different heights. After adjusting the lifting table 11, when the inspector first gets the item, the surface of the item generally has a lot of dust, so it needs to be cleaned first. The item can be placed between the two second clamping components 90 first, and the two second clamping components 90 clamp the item. Subsequently, the dust blowing component 40 blows dust on the item. The fifth driving unit 91 in the second clamping component 90 drives the item to rotate through the air claw 93, so that the item can be dusted more comprehensively. The dust suction component 50 sucks dust from the item. After the surface of the item is cleaned, it is placed on the operating table 12, and the first clamping component 70 clamps the item. The first driving source 121 drives the operating table 12 to rotate, so that different positions of the item can be repaired. When it is necessary to blow dust inside the item after the repair, the first driving source 121 drives the operating table 12 to rotate, so that the two clamping plates 71 of the first clamping component 70 are perpendicular to the air claw 93, thus facilitating the second clamping component 90 to clamp the item. Under the action of the lifting element 80, the second clamping component 90 sends the item on the operating table 12 to the dust blowing component 40 for dust blowing, and the dust suction component 50 sucks dust. After the item is dust-removed, the item on the second clamping component 90 can be placed at the operating table 12 through the lifting element 80 for final assembly.

[0061] After the dust suction component 50 sucks dust, it will be sent to the treatment box 20 through the suction pipe 53. The dust enters the stirring cavity from the dust inlet, and the dust is sent into the water. The stirring component 30 stirs the material formed by the water and the dust to make it fully blend. Subsequently, the first valve is opened, and the material falls into the filtering cavity through the discharge port 211. The evenly stirred material in the stirring cavity can be evenly dropped on the filter plate 22 through the water separator 23. The water that falls to the bottom after filtration can be recycled. When the wet dust on the filter plate 22 is being treated, it will not occur the situation of secondary dispersion, maintaining the quality of the working environment.

[0062] It should be noted that in this patent application, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without more limitations, the element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.

[0063] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention, and should all be included within the protection scope of the present invention.

Claims

1. A computer-aided device that is easy to repair, characterized in that: include, A bottom plate, on which a lifting platform is arranged in parallel, the lifting platform is lifted and lowered under the drive of the lifting assembly, an operating platform is arranged on the lifting platform, the operating platform is rotated under the drive of the first driving source, and a first clamping assembly is arranged on the operating platform; Two second clamping assemblies are arranged on both sides of the operating table, and the two second clamping assemblies are connected to the lifting table through two lifting elements respectively, and the two lifting elements drive the two second clamping assemblies to rise and fall synchronously; A dust blowing assembly is arranged on the bracket of the lifting platform and is located above the operating platform between the two second clamping assemblies; Two dust suction components are symmetrically arranged on both sides of the dust blowing component and are respectively connected to the dust blowing components; A processing box is arranged on one side of the lifting platform and is provided with a water inlet. The processing box is connected with two dust collecting components and is used for processing impurities entering the processing box.

2. A computer-aided device for easy maintenance according to claim 1, characterized in that: The processing box includes: A partition is transversely arranged in the processing box and divides the processing box from top to bottom into a stirring chamber and a filtering chamber. The stirring chamber is provided with a water inlet, a dust inlet, and an air outlet. The dust inlet is connected to two dust suction components through an air suction pipe. A discharge port is provided on the partition, and a first valve that can be opened and closed is provided on the discharge port. A stirring assembly, disposed in the stirring chamber; The filter plate is transversely arranged in the filter cavity, and a water separator is arranged between the discharge port and the filter plate.

3. A computer-aided device for easy maintenance according to claim 2, characterized in that: The stirring assembly comprises: A stirring shaft is arranged in the stirring chamber and is provided with stirring blades; A first driving unit, disposed on the processing box; A swing arm, composed of a main rod and two symmetrically arranged supporting rods connected thereto, a rotating wheel rotatably arranged inside each supporting rod, the rotating wheel rollingly contacts with a first groove arranged on the circumferential surface of the upper end of the stirring shaft and penetrating the top of the processing box, the first end of the main rod is connected to the output end of the first driving unit, and the swing arm swings up and down under the drive of the first driving motor; The rotating assembly is connected to the stirring shaft and is used to drive the stirring shaft to rotate.

4. A computer-aided device for easy maintenance according to claim 3, characterized in that: The rotating assembly comprises: A first gear, disposed on the stirring shaft; The second gear is meshed with the first gear and rotates under the drive of the second driving unit. The tooth width of the first gear is greater than the tooth width of the second gear. When the stirring shaft is raised or lowered, the first gear and the second gear are always kept in mesh.

5. The computer-aided device for easy maintenance according to claim 1, characterized in that: The dust blowing assembly comprises: A first screw rod is horizontally arranged on the bracket and rotates under the drive of the third driving unit; A movable frame, the upper end of which is threadedly connected to and penetrates the first screw rod, a rotatable air injection pipe is horizontally arranged at the lower end of the movable frame, the air injection pipe is perpendicular to the first screw rod, a plurality of air injection heads are arranged on the air injection pipe, and the end of the air injection pipe is connected to the air inlet pipe of the air supply device through a rotating joint; A first rack is slidably disposed horizontally on the moving frame, and the first rack is meshed with a third gear on the air injection pipe; The fourth driving unit is arranged on the mobile frame, and a wheel disc is arranged on the output end thereof. A guide column is eccentrically arranged on the wheel disc, and the guide column is slidably connected with the long slot hole on the first rack.

6. A computer-aided device for easy maintenance according to claim 5, characterized in that: The dust collection assembly includes a dust collection frame, which is arranged on one side of the mobile frame and connected thereto. A dust collection hood is arranged at the lower end of the dust collection frame, the lower end of the dust collection hood faces the jet head, and the dust collection hood is connected to the end of the exhaust pipe.

7. The computer-aided device for easy maintenance according to claim 1, characterized in that: The lifting assembly comprises: Two second screw rods are symmetrically arranged below the lifting platform, and the upper ends of the two second screw rods are respectively connected to the lifting platform; Two first bevel gears are symmetrically and rotatably arranged on the bottom plate and are threadedly connected to and penetrate the corresponding second screw rods; The dual-axis motor is arranged on the bottom plate, and two second bevel gears are respectively arranged at two output ends thereof, and the first bevel gears are meshed with the corresponding second bevel gears.

8. The computer-aided device for easy maintenance according to claim 1, characterized in that: The first clamping assembly comprises: Two clamping plates are arranged opposite to each other on the operating table; The first rotating shaft is horizontally and rotatably arranged on the operating table. Two threaded sections with opposite rotation directions arranged on the first rotating shaft are respectively threadedly connected with and penetrate the two clamping plates. A hand wheel is arranged at the end of the first rotating shaft.

9. The computer-aided device for easy maintenance according to claim 1, characterized in that: The lifting element comprises a first hydraulic cylinder vertically arranged on the lifting platform, and a support plate is arranged at the end of the piston rod of the first hydraulic cylinder.

10. A computer-aided device for easy maintenance according to claim 9, characterized in that: The second clamping assembly includes a fifth driving unit, which is horizontally arranged on the supporting plate and moves horizontally under the drive of the second hydraulic cylinder. The output end of the fifth driving unit is provided with an air claw.

Citation Information

Patent Citations

  • A computer-aided device that is easy to maintain

    CN110721960B