A worktable with multi-directional adjusting type static electricity removing mechanism
The operating table of the multi-directional adjustable static electricity removal mechanism solves the problems of inconvenient operation and unadjustable structure, and realizes flexible static electricity removal operation and rational use of space.
Patent Information
- Application Number
- CN202310836087.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-07
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-07-07
AI Technical Summary
The existing static electricity removal methods are inconvenient to operate and the operating table structure cannot be adjusted, resulting in limited functionality and adaptability.
An operating table with a multi-directional adjustable static electricity removal mechanism was designed, which included an electrically controlled lifting platform, a multi-angle flow guide device, and an infrared distance sensor controller. The multi-directional adjustment of the operating table and the flexible control of the static electricity removal direction were achieved through hydraulic support rods and an electronic control device.
It realizes flexible adjustment of the operating table area and the static elimination range, simplifies the static elimination operation of workpieces and human bodies, improves the convenience and applicability of operation, and the hidden design of the equipment does not take up additional space.
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Figure CN116833963B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of anti-static equipment, in particular to an operation table with a multi-directional adjusting type static electricity removing mechanism. BACKGROUND
[0002] Static electricity is a kind of charge in a static state. The harm of static electricity to industrial production and manufacturing is inevitable. It can cause many hazards, which can be divided into static electricity discharge and static electricity attraction. The hazards caused by static electricity discharge include electromagnetic interference, electronic equipment failure and misoperation, static electricity breakdown of electronic components or integrated circuits, electric shock caused by high-voltage static electricity discharge, and inflammable explosion and fire caused by static electricity discharge; static electricity attraction causes industrial product pollution, uneven rolling of films and plastics, dust pollution and quality influence of films and optical discs.
[0003] Therefore, it is necessary to remove static electricity from workpieces during processing. The current static electricity removing methods mainly include two independent methods of human body static electricity removing and article static electricity removing. The efficiency of the two methods cannot be integrated, and they are realized by static electricity removing devices installed at different positions of the operation table. The operation is very inconvenient. In addition, the structure of the operation table surface cannot be adjusted according to needs, resulting in relatively single functionality and adaptability. SUMMARY
[0004] The technical problem to be solved by the present application is that the current static electricity removing method is inconvenient to operate, and the structure of the operation table surface cannot be adjusted according to needs, resulting in relatively single functionality and adaptability.
[0005] The technical scheme adopted by the present application to solve the technical problem is an operation table with a multi-directional adjusting type static electricity removing mechanism, which comprises a main frame, a workbench surface installed on the upper end of the main frame, a negative ion generator, and a hydraulic support rod. An upper transmission groove is formed in the rear side of the upper surface of the workbench surface. A split type electric conveying device is installed inside the upper transmission groove. An electric control type lifting table controlled by the hydraulic support rod is arranged at the opening position of the upper end of the upper transmission groove on the workbench surface. A multi-angle flow guide device is installed on the lower surface of the electric control type lifting table. The negative ion generator is fixedly installed inside the multi-angle flow guide device.
[0006] The split type electric conveying device comprises a first electric control conveying belt movably assembled on the left side inside the upper transmission groove, a second electric control conveying belt movably assembled on the right side inside the upper transmission groove, a bottom adjusting disc movably assembled inside the upper transmission groove, a bottom adjusting motor fixedly installed on the top surface of the main frame, an upper assembly frame fixedly installed on the upper end of the bottom adjusting disc, and a third electric control conveying belt movably assembled inside the upper assembly frame.
[0007] The side wall at the rear of the main bench is provided with a lateral assembly groove for mounting a hydraulic support rod, and the bottom of the electrically-controlled lifting platform is fixed with a bottom assembly shaft cylinder.
[0008] The bottom surface of the electrically-controlled lifting platform is provided with a bottom circular mounting groove and a bottom flow guide groove connected with the bottom circular mounting groove, the multi-angle flow guide device comprises a disc cover fixedly inserted into the bottom circular mounting groove, a side-mounted adjusting motor fixed to one side of the bottom circular mounting groove, a side-mounted flow guide cover and an electrically-controlled flow guide fan mounted in the bottom flow guide groove, a strip-shaped overturning groove provided on one side of the lower end of the disc cover, an electrically-controlled adjusting support rod movably assembled in the strip-shaped overturning groove, and an overturning flow guide nozzle controlled by the electrically-controlled adjusting support rod.
[0009] The inner bottom surface of the upper transmission groove is provided with a sunken assembly groove for assembling a bottom adjusting disc, and the inner side surface of the sunken assembly groove is provided with a side adjusting groove for internally mounting a first adjusting gear, the first adjusting gear is axially sleeved on the outer side of the adjusting shaft of the bottom adjusting motor, and the bottom adjusting motor is in meshing transmission with the outer tooth surface of the bottom adjusting disc through the first adjusting gear.
[0010] The upper end of the disc cover is provided with an upper assembly hole, the lower surface of the side-mounted flow guide cover is provided with a lateral recess at the assembly end of the disc cover, the lateral recess has an integral structure flow guide pipe protruding downward, and the side-mounted flow guide cover is movably connected with the disc cover by inserting the flow guide pipe into the upper assembly hole.
[0011] The lower surface of the disc cover is fixedly provided with an infrared distance sensing controller.
[0012] The flow guide pipe is fixedly provided with a magnetic control adjusting valve controlled by the infrared distance sensing controller.
[0013] The upper surface of the workbench is provided with a front overturning groove for conveniently overturning the upper assembly frame.
[0014] The front overturning groove is movably provided with a lifting support plate controlled by the hydraulic support rod.
[0015] The beneficial effects of the present application are:
[0016] (1) The operating table with the multi-direction adjusting type static electricity removing mechanism can change the supportable area of the upper surface of the whole operating table according to needs by adopting the electrically-controlled lifting platform design, so that the single plane is changed into a three-dimensional structure design, and the application scenarios are more diverse.
[0017] (2) The multi-angle flow guide device is mounted on the bottom surface of the electrically-controlled lifting platform, the direction of static electricity removal can be changed by multi-angle adjustment, and the static electricity removal range is improved.
[0018] (3) The multi-angle guide device is automatically controlled by using the infrared distance sensor controller, the static electricity removing operation can be performed on the workpiece in different states, and the static electricity removing operation can be performed on the contact positions of the workpiece and the human body respectively, and the operation is more simple and convenient;
[0019] (4) The split type electric conveying equipment is internally installed on the upper surface of the workbench, the conveying angle and direction of the split type electric conveying equipment are changed, the position of the workpiece is adjusted, the operator can take and place the workpiece at a close distance, and the use is more convenient;
[0020] (5) The entire static electricity removing equipment adopts a hidden structure design, no additional use space is occupied, the space layout is more reasonable, and the storage is more convenient and safe. BRIEF DESCRIPTION OF DRAWINGS
[0021] The application will be further described below in combination with the drawings and embodiments.
[0022] Figure 1 is a structural schematic view of the application.
[0023] Figure 2 is a lateral partial sectional view of the application at the position of the upper transmission groove.
[0024] Figure 3 is a structural schematic view of the internal structure of the electric control type lifting platform. DETAILED DESCRIPTION
[0025] The application will be further described below in combination with the drawings and embodiments. These drawings are all simplified schematic views, and only illustrate the basic structure of the application in a schematic manner, and therefore only show the components related to the application.
[0026] In the description of the application, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or integrally connected, can be mechanically connected, or can be electrically connected, can be directly connected, or indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0027] Figure 1 、 Figure 2 and Figure 3The operating platform with multi-directional adjusting type static electricity removing mechanism shown comprises a main frame 1, a workbench 2 mounted on the upper end of the main frame 1, a negative ion generator 3 and a hydraulic support rod 4, an upper transmission groove 5 is formed on the upper surface of the workbench 2, a split type electric conveying device is mounted in the upper transmission groove 5, an electric control type lifting platform 6 controlled by the hydraulic support rod 4 is arranged on the upper end opening position of the upper transmission groove 5, a multi-angle flow guide device is mounted on the lower surface of the electric control type lifting platform 6, and the negative ion generator 3 is fixedly mounted in the multi-angle flow guide device.
[0028] The negative ion generator 3 and the hydraulic support rod 4 are prior arts, the negative ion generator 3 is used for generating negative ions to neutralize positive ions of static electricity, and the hydraulic support rod 4 is used for controlling the lifting of the electric control type lifting platform 6.
[0029] In order to cooperate with conveying adjustment, the split type electric conveying device comprises a first electric control conveying belt 7 movably assembled on the left side in the upper transmission groove 5, a second electric control conveying belt 8 movably assembled on the right side in the upper transmission groove 5, a bottom adjusting disc 9 movably assembled in the bottom of the upper transmission groove 5, a bottom adjusting motor 10 fixed on the top surface of the main frame 1, an upper assembling frame 11 fixed on the upper end of the bottom adjusting disc 9, and a third electric control conveying belt 12 movably assembled in the upper assembling frame 11.
[0030] The bottom adjusting motor 10 is a prior art, which is used for driving the bottom adjusting disc 9 to rotate and adjust, thereby driving the upper assembling frame 11 and the third electric control conveying belt 12 located on the upper end to overturn.
[0031] In order to cooperate with lifting assembly, a lateral assembling groove for mounting the hydraulic support rod 4 is formed on the rear wall of the main frame 1, a bottom assembling shaft cylinder is bolted on the bottom of the electric control type lifting platform 6, and the upper end telescopic rod of the hydraulic support rod 4 is connected with the electric control type lifting platform 6 by inserting into the bottom assembling shaft cylinder.
[0032] In order to cooperate with lifting and flow guide, a bottom circular mounting groove 13 and a bottom flow guide groove 14 communicated with the bottom circular mounting groove 13 are formed on the lower surface of the electric control type lifting platform 6, the multi-angle flow guide device comprises a disc type cover 15 inserted and fixed in the bottom circular mounting groove 13, a side adjusting motor 16 fixed on one side of the bottom circular mounting groove 13, a side flow guide cover 17 and an electric flow guide fan 18 mounted in the bottom flow guide groove 14, a strip type overturning groove 19 formed on one side of the lower end of the disc type cover 15, an electric control adjusting support rod 20 movably assembled in the strip type overturning groove 19, and an overturning flow guide nozzle 21 controlled by the electric control adjusting support rod 20.
[0033] The side adjusting motor 16 and the electric flow guide fan 18 are prior arts, the side adjusting motor 16 is used for adjusting the rotation of the disc type cover 15, and the electric control adjusting support rod 20 is used for controlling the overturning adjustment of the overturning flow guide nozzle 21.
[0034] The inner walls on both sides of the strip-shaped overturning groove 19 are provided with lateral assembly holes communicating with the interior of the disc-shaped cover 15, the overturning flow guide nozzle 21 is inserted into the lateral assembly holes through the two-side communicating pipes to communicate with the interior of the disc-shaped cover 15, the electric control adjusting support rod 20 is inserted into the mounting blind hole on the inner side of the strip-shaped overturning groove 19 through the assembly shafts on both sides of the connecting end to movably assemble with the strip-shaped overturning groove 19, and the top of the telescopic section of the electric control adjusting support rod 20 is movably connected with the side wall of the overturning flow guide nozzle 21.
[0035] In order to cooperate with the bottom adjustment, the inner bottom surface of the upper transmission groove 5 is provided with a sunken assembly groove for assembling the bottom adjustment disc 9, the inner side surface of the sunken assembly groove is provided with a side-mounted adjustment groove for internally mounting the first adjustment gear 22, the first adjustment gear 22 is axially sleeved on the outer side of the upper end adjustment shaft of the bottom adjustment motor 10, and the bottom adjustment motor 10 is in meshing transmission with the outer side tooth surface of the bottom adjustment disc 9 through the first adjustment gear 22.
[0036] In order to cooperate with the assembly and not affect the rotation adjustment, the upper end middle part of the disc-shaped cover 15 is provided with an upper assembly hole, the lower surface of the side-mounted flow guide cover 17 is provided with a lateral recess at the assembly end of the disc-shaped cover 15, the lateral recess has an integral structure flow guide pipe 23 protruding downward, and the side-mounted flow guide cover 17 is movably connected with the disc-shaped cover 15 by inserting the flow guide pipe into the upper assembly hole.
[0037] The side-mounted flow guide cover 17 is movably connected with the disc-shaped cover 15 by inserting the flow guide pipe into the upper assembly hole.
[0038] In order to cooperate with the control, the disc-shaped cover 15 is fixedly provided with an infrared distance sensing controller 24 on the lower surface.
[0039] The infrared distance sensor controller 24 is a prior art that monitors the position of the workpiece by monitoring the distance change of the bottom, thereby controlling the opening and closing of the negative ion generator 3, the bottom adjusting motor 10, the side adjusting motor 16, and the electrically operated guide fan 18. When the workpiece is conveyed from right to left by the first electrically controlled conveying belt 7, it first passes through the right infrared distance sensor controller 24, which starts the electrically controlled adjusting support rod 20 and the left electrically operated guide fan 18. The electrically controlled adjusting support rod 20 drives the turnover guide nozzle 21 to turn down, and the electrically operated guide fan 18 generates airflow to blow out the air with negative ions, thereby eliminating the static electricity that may exist on the workpiece. Then, when the workpiece leaves the right infrared distance sensor controller 24 from below, it is transferred from the first electrically controlled conveying belt 7 to the third electrically controlled conveying belt 12. At this time, the right infrared distance sensor controller 24 controls the bottom adjusting motor 10 to drive the bottom adjusting disc 9 to rotate, so that the third electrically controlled conveying belt 12 is turned over to move the workpiece on its surface to the near operation point position of the people. After the third electrically controlled conveying belt 12 moves, the bottom adjusting motor 10 is controlled to be closed through the press switch on the side wall, and then the side adjusting motor 16 drives the disc-shaped cover 15 to rotate, so that the two turnover guide nozzles 21 are aligned with the operation position. At this time, the workpiece and the human body at the operation position can be subjected to negative ion static electricity elimination.
[0040] After the operation is completed, the third electrically controlled conveying belt 12 is controlled to run by using the switch at the front end of the main rack 1, and the bottom adjusting motor 10 drives the bottom adjusting disc 9 to rotate in the reverse direction to reset. The side adjusting motor 16 drives the disc-shaped cover 15 to rotate to reset, so that the workpiece is conveyed from the third electrically controlled conveying belt 12 to the second electrically controlled conveying belt 8. Then, the left infrared distance sensor controller 24 is activated, and the left infrared distance sensor controller 24 controls the third electrically controlled conveying belt 12 to be closed. When the workpiece leaves the monitoring range of the left infrared distance sensor controller 24, the negative ion generator 3, the electrically operated guide fan 18, and the electrically controlled adjusting support rod 20 are closed.
[0041] In order to cooperate with independent control, the magnetic control adjusting valve 25 is fixedly installed inside the guide pipe 23 and is controlled by the infrared distance sensor controller 24.
[0042] The magnetic control adjusting valve 25 is a prior art that can be closed by starting the magnetic control adjusting valve 25, thereby facilitating control.
[0043] In order to facilitate turnover, the front turnover groove 26 is opened on the upper surface of the workbench top 2 in front of the upper transmission groove, which facilitates the turnover of the upper assembly frame 11.
[0044] In order to facilitate turnover while not affecting daily use, the lifting support plate 27 is movably assembled inside the front turnover groove 26 and is linked and controlled by the hydraulic support rod 4.
[0045] The bottom control support is installed between the front overturning groove 26 and the lateral assembly groove at the bottom of the workbench 2, the synchronous hydraulic cylinder is installed inside the bottom control support, the inside of the synchronous hydraulic cylinder is communicated with the inside of the hydraulic support rod 4 through the lateral oil guide pipe, when the hydraulic support rod 4 stretches upward, the hydraulic oil in the upper chamber inside is extruded into the upper chamber inside the synchronous hydraulic cylinder through the lateral oil guide pipe, the air at the lower end inside the synchronous hydraulic cylinder is discharged to the outside of the synchronous hydraulic cylinder, so as to drive the lifting support plate 27 to descend to the bottom surface inside the front overturning groove 26; similarly, when the hydraulic support rod 4 contracts downward, the hydraulic oil in the upper chamber inside is drawn back from the upper chamber inside the synchronous hydraulic cylinder through the lateral oil guide pipe, the air at the lower end inside the synchronous hydraulic cylinder is drawn into the synchronous hydraulic cylinder, so as to drive the lifting support plate 27 to lift to the upper opening position of the front overturning groove 26.
[0046] The above is the ideal embodiment according to the present application, through the above description, the related staff can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content of the specification, and must be determined according to the scope of the claims.
Claims
1. An operating table with a multi-directional adjustable static removal mechanism, comprising a main frame (1), a work surface (2) mounted on the upper end of the main frame (1), a negative ion generator (3) and a hydraulic support rod (4), characterized in that: An upper transmission groove (5) is provided on the rear side of the upper surface of the work surface (2), and a split electric conveying device is installed inside the upper transmission groove (5). An electric-controlled lifting platform (6) controlled by a hydraulic support rod (4) is provided on the work surface (2) at the upper end opening of the upper transmission groove (5). A multi-angle guide device is installed on the lower surface of the electric-controlled lifting platform (6), and the negative ion generator (3) is fixedly installed inside the multi-angle guide device. The split-type electric conveying equipment comprises a first electric-controlled conveying belt (7) movably mounted on the left side of the upper transmission trough (5), a second electric-controlled conveying belt (8) movably mounted on the right side of the upper transmission trough (5), a bottom adjustment disk (9) movably mounted on the inner surface of the upper transmission trough (5), a bottom adjustment motor (10) fixed on the inner top surface of the main frame (1), an upper assembly frame (11) fixed on the upper end of the bottom adjustment disk (9), and a third electric-controlled conveying belt (12) movably mounted on the inner surface of the upper assembly frame (11); A lateral assembly groove for mounting a hydraulic support rod (4) is provided on the rear side wall of the main frame (1); a bottom assembly shaft cylinder is fixed to the bottom bolt of the electric-controlled lifting platform (6); and the top of the telescopic rod at the upper end of the hydraulic support rod (4) is connected to the electric-controlled lifting platform (6) by inserting the bottom assembly shaft cylinder; The lower surface of the electrically controlled lifting platform (6) is provided with a bottom circular mounting groove (13) and a bottom guide groove (14) connected to the bottom circular mounting groove (13), and the multi-angle guide device includes a disc cover (15) inserted and fixed in the bottom circular mounting groove (13), a side adjustment motor (16) fixed on one side of the bottom circular mounting groove (13), a side guide cover (17) and an electric guide fan (18) installed inside the bottom guide groove (14), a strip-shaped flip groove (19) provided on one side of the lower end of the disc cover (15), an electrically controlled adjustment support rod (20) movably assembled inside the strip-shaped flip groove (19), and a flip guide nozzle (21) controlled by the electrically controlled adjustment support rod (20).
2. The operating table with a multi-directional adjustable static elimination mechanism according to claim 1, characterized in that: A sunken assembly groove for assembling a bottom adjustment disk (9) is provided on the inner bottom surface of the upper transmission groove (5), and a side adjustment groove for mounting a first adjustment gear (22) is provided on the inner side surface of the sunken assembly groove. The first adjustment gear (22) is axially sleeved on the outer side of the adjustment shaft at the upper end of the bottom adjustment motor (10), and the bottom adjustment motor (10) is meshed with the outer tooth surface of the bottom adjustment disk (9) for transmission through the first adjustment gear (22).
3. The operating table with a multi-directional adjustable static elimination mechanism according to claim 1, characterized in that: An upper assembly hole is provided at the middle of the upper end of the disc-type cover (15), and a lateral groove is provided on the lower surface of the side air guide cover (17) at the assembly end of the disc-type cover (15). The lateral groove has an integral structure air guide pipe (23) protruding downward, and the side air guide cover (17) is inserted into the upper assembly hole through the air guide pipe (23) to be movably connected to the disc-type cover (15).
4. The operating table with a multi-directional adjustable static elimination mechanism according to claim 3, characterized in that: An infrared distance sensor controller (24) is fixedly mounted on the lower surface of the disc-type cover (15).
5. The operating table with a multi-directional adjustable static elimination mechanism according to claim 4, characterized in that: A magnetically controlled regulating valve (25) controlled by an infrared distance sensor controller (24) is fixedly mounted inside the flow guide tube (23).
6. The operating table with a multi-directional adjustable static elimination mechanism according to claim 1, characterized in that: The upper surface of the work table (2) is provided with a front flip groove (26) on the front side of the upper transmission groove (5) for facilitating the flipping of the upper assembly frame (11).
7. The operating table with a multi-directional adjustable static elimination mechanism according to claim 6, characterized in that: The front flip groove (26) is internally movably equipped with a lifting support plate (27) controlled by a hydraulic support rod (4).
Citation Information
Patent Citations
Modular conveying apparatus
CN1050705A
Electrostatic protection device for electrical test
CN213368201U