Intelligent GIS installation mobile track type dust-free workshop equipment
By setting up a filter cloth in the dustproof shed installed by GIS equipment and setting up a foot cleaning mechanism in the air shower room, the problem of large loads in the fresh air system purification device and difficulty in cleaning foot dust in the air shower room is solved, and the service life of the filter element is extended and the cleanliness is improved.
Patent Information
- Application Number
- CN202510356488.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-05-06
AI Technical Summary
The fresh air system purification device in the dustproof shed installed in the existing GIS equipment has a large load, which leads to a short service life of the filter element and it is difficult for the air shower room to effectively clean the dust of the staff's footsteps.
An intelligent GIS-mounted mobile track-type dust-free workshop equipment is designed, including setting up a filter cloth at the air inlet pipe opening and setting up a foot cleaning mechanism in the air shower room. The filter cloth is quickly replaced by the mounting frame and the winding roller, and the compression mechanism ensures the filter cloth is in close contact; the foot cleaning mechanism achieves 360-degree cleaning through the rotating foot standing disc and bristles.
It effectively reduces the load of the fresh air purification device, extends the service life of the filter element, and achieves all-round cleaning of staff's footsteps, improving cleanliness.
Smart Images

Figure CN119933420A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a GIS installation, and in particular to an intelligent GIS installation mobile track type dust-free workshop equipment. Background Art
[0002] Mobile GIS equipment has high requirements for the environment during installation and operation. A special dust-proof shed will be set up to protect it. The dust-proof shed will also be equipped with a fresh air system to maintain the cleanliness of the internal air.
[0003] The existing fresh air system purification device generally includes an air inlet pipe connected to the outside and an air outlet pipe for extracting the air in the dustproof shed. The rear end of the air inlet pipe is connected to the air purification device, and the air can enter the dustproof shed only after being purified.
[0004] This type of mobile GIS equipment is generally installed at construction sites, where there is a lot of dust in the air. The air entering through the air inlet duct will actually produce a large load on the air purification device, which will result in a shorter service life of the filter element of the purification device. It is often necessary to replace the filter element several times within a construction cycle. This type of purification device is generally large and medium-sized equipment, and its filter element replacement is inconvenient and costly. Therefore, it is necessary to increase the service life of the filter element of the purification equipment.
[0005] In addition, an air shower room will be set up at the entrance and exit of the dustproof shed, wherein the air shower room is equipped with a purification system, the air shower device is equipped with an automatic control device, and an air shower port is set to ensure full body cleaning of the staff. However, this type of air shower room is still difficult to achieve optimal cleaning of the dust on the staff's feet. Although there is also an automatic shoe cover machine set up in the locker room in the prior art, it is still difficult to meet actual needs relying solely on shoe covers. For example, the shoe covers of the staff may fall off or be damaged while they are working and walking in the dustproof shed, and the cleanliness of their feet is difficult to ensure. In addition, the shoe cover machine requires regular maintenance, and frequent replacement of shoe covers will also increase costs. Therefore, shoe cover machines are rarely used to ensure foot cleanliness in actual work.
[0006] Based on this, it is necessary to propose a device that can fully meet the various requirements of GIS equipment installation and operation. Summary of the invention
[0007] The present invention aims at the problems existing in the fresh air system purification device of the GIS installed dustproof shed in the prior art and provides an air intake filter component and a mobile GIS installed fresh air system purification device.
[0008] In order to solve the above technical problems, the present invention is solved by the following technical solutions: Intelligent GIS is installed with mobile track-type dust-free workshop equipment, including a track, a dust shed is slidably installed on the track, a fresh air purification device whose air outlet is connected to the inside of the dust shed is installed at the dust shed, an air inlet pipe is installed at the air inlet end of the fresh air purification device, an air inlet filter assembly is provided at the inlet end of the air inlet pipe, and the air inlet filter assembly includes a filter cloth mounting frame that can be installed at the air inlet pipe orifice, and a filter cloth that can cover the air inlet pipe orifice is installed on the filter cloth mounting frame; The dustproof shed is provided with a personnel entrance and exit, at which a modular mobile warehouse is installed, the modular mobile warehouse comprises a mobile warehouse body, in which a changing room and an air shower room are integrated, a footstep cleaning mechanism is installed on the bottom surface of the air shower room, the footstep cleaning mechanism comprises a rotatable footstep standing disc and a first brush arranged below the footstep standing disc, and the upper end portion of the first brush can extend above the footstep standing disc.
[0009] Preferably, it also includes an air-conditioning component arranged in the dustproof shed for adjusting the temperature and humidity in the dustproof shed, the air-conditioning component includes an air-conditioning bracket, the air-conditioning bracket includes a placement base plate, and a vertical mounting frame arranged perpendicular to the placement base plate, a lower part of one side of the vertical mounting frame is provided with an external unit mounting frame for fixedly mounting an air-conditioning external unit, and the other side is provided with an internal unit mounting frame for placing an air-conditioning indoor unit, and a through hole is also provided in the vertical mounting frame for the air-conditioning pipeline to pass through, the air-conditioning component also includes an air-conditioning external unit installed in the external unit mounting frame, an air-conditioning indoor unit installed in the internal unit mounting frame, and an air-conditioning pipeline connected to the air-conditioning external unit and the air-conditioning indoor unit at both ends, and the air-conditioning pipeline passes through the through hole.
[0010] By placing the bottom plate in the present invention, a stable supporting foundation is provided to ensure the stability of the indoor and outdoor units of the air conditioner and the entire bracket. Due to the limited space of the dustproof shed, the vertical mounting frame is used as the main structure of the bracket. The vertical arrangement facilitates the layered installation of the indoor and outdoor units of the air conditioner and saves space.
[0011] The external unit installation frame and the internal unit installation frame of the present invention provide special installation positions for the external unit and the internal unit of the air conditioner respectively. The integrated design makes it easy to move and reuse the internal and external units of the air conditioner at the GIS equipment installation site, thereby reducing costs.
[0012] Preferably, the filter cloth mounting frame includes two mounting frame assemblies that can be clamped at the air inlet pipe opening, the two mounting frame assemblies are provided with a filter cloth winding chamber, the filter cloth winding chamber is provided with a filter cloth winding roller, and the two mounting frame assemblies are provided with filter cloth extension ports connected to the filter cloth winding chamber on opposite sides, and the two ends of the filter cloth extend into the filter cloth winding chamber through the two filter cloth extension ports and are wound on the filter cloth winding roller. The filter cloth is wound and pulled out by the filter cloth winding roller, so that the filter cloth can be replaced quickly and stably.
[0013] Preferably, the mounting frame assembly is further provided with a filter cloth pressing mechanism for pressing the filter cloth against the end face of the air inlet pipe orifice, the filter cloth pressing mechanism comprising a pressing ring assembly for pressing the filter cloth and a pressing frame for driving the pressing ring assembly to move toward the filter cloth, the pressing frame being slidably arranged on the outer side of the mounting frame assembly and the sliding direction being arranged along the axial direction of the air inlet pipe. The setting of the pressing frame can provide sufficient pressure for the pressing ring assembly, ensuring that the pressing ring assembly can stably press the filter cloth against the end face of the air inlet pipe orifice.
[0014] Preferably, the pressure ring assembly includes a plurality of circular rings that are coaxially arranged and can be separated from each other, and the adjacent circular rings are connected internally and externally by threads, and the end faces of the plurality of circular rings facing the filter cloth can be on the same plane; the end face of the inner circular ring facing away from the filter cloth is provided with a stopper block that can axially limit the end face of the adjacent circular ring facing away from the filter cloth. The setting of the stopper block can ensure that different circular rings can be on the same plane, and then the plurality of circular rings can jointly press the edge of the filter cloth at the air inlet pipe opening.
[0015] Preferably, the foot cleaning mechanism comprises a cleaning shell detachably mounted on the bottom surface of the air shower room, the first bristles are integrated in the cleaning shell, and the foot standing disc is rotatably connected to the upper end surface of the cleaning shell. The setting of the cleaning shell makes the foot cleaning mechanism independent of the air shower room, which is convenient for the installation and removal of the foot cleaning mechanism.
[0016] The foot-standing disc comprises an annular wall, on the inner wall of which a plurality of rotatable sole cleaning rollers are arranged at intervals, and on the outer wall of the sole cleaning roller are connected cleaning convex strips evenly arranged around the central axis of the sole cleaning roller, on which second bristles are arranged, and the first bristles extend to the top of the foot-standing disc through the interval area between adjacent sole cleaning rollers. The sole cleaning roller and the second bristles thereon can clean the supporting position of the sole, thereby achieving comprehensive cleaning of the sole.
[0017] Preferably, a cleaning roller mounting seat is provided on the inner wall of the annular wall, the cleaning roller mounting seat is in an elongated shape and has an elongated circular arc groove formed on the upper end surface, the sole cleaning roller is installed in the elongated circular arc groove, the upper end surface of the sole cleaning roller protrudes from the elongated circular arc groove and a gap is left between the outer wall of the sole cleaning roller and the inner wall of the elongated circular arc groove, and the lower end of the cleaning roller mounting seat is provided with an elongated through hole connected to the elongated circular arc groove. The provision of the elongated circular arc groove and the elongated through hole enables dust or foreign matter generated by the cleaning roller to be discharged in a timely manner, thereby increasing the cleaning effect.
[0018] A flap is provided on the upper end surface of the cleaning roller mounting seat and on both sides of the foot cleaning roller in the length direction and along the axial direction of the foot cleaning roller. The flap can be flipped over to overlap the upper end surface of the cleaning roller mounting seat and the flap surface constitutes a foot support surface; both ends of the flap are hinged on the cleaning roller mounting seat and a torsion spring is provided at the hinge to keep the flap in an upward tilted folded state. The flap can support the foot and keep it clean after the foot leaves, reduce the force on the cleaning roller, and ensure the smooth rotation of the cleaning roller.
[0019] Preferably, a disc driving mechanism is also provided in the cleaning shell, and the disc driving mechanism includes a disc driving motor arranged in the cleaning shell, and a driving wheel arranged at the lower part of one side of the footstep standing disc is connected to the motor shaft of the disc driving motor, and driving teeth are arranged on the outer side surface of the driving wheel, and driving tooth holes corresponding to the driving teeth are arranged on the edge of the footstep standing disc. When the driving wheel rotates, the driving teeth can be inserted into the driving tooth holes one by one from bottom to top to drive the footstep standing disc to rotate.
[0020] A brush installation mechanism is also provided in the cleaning housing, and the brush installation mechanism includes two parallel and rotatable conveying rollers connected to the inner wall of the cleaning housing, a conveyor belt is connected between the two conveying rollers, the first brush is connected to the outer surface of the conveyor belt, and also includes a pulley connected to the motor shaft of the disc drive motor, and the pulley drives one of the conveying rollers to rotate through the belt. The brush installation mechanism can realize the linear movement of the first brush relative to the foot standing disc, further enhancing the cleaning effect of the foot.
[0021] Preferably, the vertical mounting frame is arranged on one side of the first mounting cross frame, the first horizontal support rod is arranged perpendicular to the first mounting cross frame, and the external unit mounting frame includes a first transverse reinforcement rod arranged above the first mounting cross frame, a first vertical reinforcement rod arranged at an end of the first mounting cross frame away from the protective plate, a first horizontal reinforcement rod arranged above the first horizontal support rod, and a first diagonal reinforcement rod arranged between the vertical mounting frame and the first mounting cross frame. The first mounting cross frame, the first horizontal support rod, the first transverse reinforcement rod, the first vertical reinforcement rod, the first horizontal reinforcement rod and the first diagonal reinforcement rod together constitute a first installation interval for placing the air conditioner outdoor unit.
[0022] The first mounting cross frame, the first horizontal support rod, the first transverse reinforcement rod, the first vertical reinforcement rod, the first horizontal reinforcement rod and the first diagonal reinforcement rod in the present invention together constitute a first mounting interval for placing the air-conditioning outdoor unit, thereby ensuring the safety of the air-conditioning outdoor unit. The reinforced structure makes the bracket more sturdy and reduces the maintenance cost caused by shaking or damage of the equipment.
[0023] The present invention has significant technical effects due to the adoption of the above technical solution: The present invention pre-treats the air entering the dustproof shed by arranging a filter cloth at the air inlet pipe opening, which can effectively reduce the load of the fresh air purification device and increase the service life of its filter element; by arranging a footstep cleaning mechanism in the air shower room, not only can all-round cleaning of the staff be achieved, but also effective cleaning of the footsteps and even the soles of the feet can be achieved, ensuring better cleanliness. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the structure of embodiment 1 of the present invention.
[0025] Figure 2 yes Figure 1 Installation diagram of the middle air inlet filter assembly.
[0026] Figure 3 yes Figure 2 Schematic diagram of the structure of the middle air inlet filter assembly.
[0027] Figure 4 yes Figure 3 Schematic diagram of the structure of the mounting frame assembly.
[0028] Figure 5 yes Figure 4 Schematic diagram of the internal structure.
[0029] Figure 6 yes Figure 5 A partial enlarged view of part A.
[0030] Figure 7 yes Figure 3 Schematic diagram of the structure of the middle clamping frame.
[0031] Figure 8 yes Figure 3 Schematic diagram of the structure of the medium pressure ring assembly.
[0032] Fig. 9 It is a schematic diagram of the structure of the mobile warehouse body of the present invention.
[0033] Fig.10 It is a schematic diagram of the internal structure of the mobile warehouse body of the present invention.
[0034] Fig.11 yes Fig. 9 Schematic diagram of the structure of the mid-step cleaning mechanism.
[0035] Fig.12 yes Fig.11 Half-section diagram of .
[0036] Fig.13 It is a schematic diagram of the position arrangement of the foot standing disc and the first brush of the present invention.
[0037] Fig.14 yes Fig.13Enlarged view of part A.
[0038] Fig.15 It is a schematic diagram of the interior of the cleaning shell of the present invention.
[0039] Fig.16 This is a schematic diagram of the air conditioner bracket in Example 3.
[0040] Fig.17 This is a rear view of the air conditioner bracket in Example 3.
[0041] Fig.18 This is a schematic diagram of the air conditioner bracket in Example 4.
[0042] Fig.19 This is an oblique right side view of the air conditioner bracket in Example 4.
[0043] Fig. 20 This is a front view of the air conditioner bracket in Example 4. DETAILED DESCRIPTION
[0044] The present invention is further described in detail below in conjunction with the accompanying drawings and embodiments.
[0045] Example 1 This embodiment provides an intelligent GIS installation mobile track type dust-free workshop equipment, such as Figure 1-Figure 8 As shown, it includes a track, on which a dustproof shed is slidably installed, a fresh air purification device 5 is installed at the dustproof shed, and the air outlet is connected to the inside of the dustproof shed. An air inlet pipe 1 is installed at the air inlet end of the fresh air purification device 5, and an air inlet filter assembly is provided at the inlet end of the air inlet pipe 1. The fresh air purification device 5 is used to purify the air sucked in by the air inlet pipe 1 before it flows into the dustproof shed 4. An air inlet filter assembly is provided at the front end of the air inlet pipe 1, that is, at the pipe mouth of the air inlet pipe 1. The air inlet filter assembly includes a filter cloth mounting frame 101 that can be installed at the pipe mouth of the air inlet pipe 1, and a filter cloth 102 that can cover the pipe mouth of the air inlet pipe 1 is installed on the filter cloth mounting frame 101.
[0046] The air inlet filter assembly is used to pre-treat the air entering the air inlet pipe 1, so that the air entering the air inlet pipe 1 is filtered by the filter cloth 102 before entering, so that the dust content in the air entering the air inlet pipe 1 is reduced, so as to reduce the fresh air purification device and increase the practical life of the filter element in the fresh air purification device. The filter cloth 102 can be made of non-woven fabrics, polyester fibers or polypropylene fibers.
[0047] In this embodiment, in order to facilitate the installation and quick replacement of the filter cloth 102, the filter cloth mounting frame 101 is structurally designed, specifically: The filter cloth mounting frame 101 includes two mounting frame assemblies 103 that can be clamped at the pipe mouth of the air inlet pipe 1, and the two mounting frame assemblies 103 are each provided with a filter cloth winding chamber 104, and the filter cloth winding chamber 104 is provided with a filter cloth winding roller 105, and the opposite sides of the two mounting frame assemblies 103 are each provided with a filter cloth extension port 106 connected to the filter cloth winding chamber 104, and the two ends of the filter cloth 102 are respectively extended into the filter cloth winding chamber 104 through the two filter cloth extension ports 106 and wound on the filter cloth winding roller 105.
[0048] The filter cloth mounting frame 101 is clamped at the pipe mouth of the air inlet pipe 1 by two mounting frame assemblies 103 and a mounting frame connecting rod, wherein an elastic rubber pad can be provided on the clamping side to ensure the clamping stability; a mounting frame connecting rod 107 for connecting the two mounting frame assemblies 103 is provided between the two mounting frame assemblies 103, and a connecting rod mounting seat 108 is provided on the two mounting frame assemblies 103, and both ends of the mounting frame connecting rod 107 pass through the connecting rod mounting seats 108 on the two mounting frame assemblies 103 respectively and are fastened to the connecting rod mounting seats 108 by fastening nuts 109.
[0049] Both ends of the mounting frame connecting rod pass through the connecting rod mounting seat 108 on the mounting frame assembly 103 and are fastened by the fastening nut 109, and then the distance between the two mounting frame assemblies 103 can be adjusted through the mounting frame connecting rod. On the one hand, it can ensure that the two mounting frame assemblies 103 can be clamped and installed on the pipe mouth of the air inlet pipe 1, and on the other hand, it can also enable the filter cloth mounting frame 101 to be clamped on the air inlet pipe 1 of different diameters, so that it can be used more flexibly.
[0050] In addition, the filter cloth 102 is installed through the filter cloth winding rollers 105 on both sides, so that the unused filter cloth 102 can be wound on the filter cloth winding roller 105 on one side, and after using it for a period of time, the used filter cloth 102 can be wound on the filter cloth winding roller 105 on the other side according to actual conditions, thereby enabling the filter cloth 102 to be quickly replaced.
[0051] In this embodiment, the winding roller includes a roller body 110 located in the filter cloth winding cavity 104 and a roller end 111 extending out of the filter cloth winding cavity 104. A winding roller limiting mechanism is provided at the roller end 111. The winding roller limiting mechanism includes a rotation limiting ring 112 sleeved on the roller end 111. The rotation limiting ring 112 can move axially along the roller end 111 and form a rotation limit with the roller end 111. A limiting rod 113 axially arranged along the axial direction of the winding roller is provided on the end surface of the rotation limiting ring 112 facing the mounting frame assembly 103. A limiting hole 114 is provided on the outer surface of the mounting frame assembly 103. The limiting rod 113 can be inserted into the limiting hole 114 under the action of the limiting ring moving along the axial direction of the winding roller.
[0052] The winding roller limiting mechanism further includes two axial limiting rings 115 threadedly connected to the roller body 110 , and the filter cloth 102 is limited between the two axial limiting rings 115 .
[0053] The winding roller limiting mechanism plays two limiting roles. The first one realizes the rotation limiting of the filter cloth winding roller 105 through the cooperation of the limiting rod 113 and the limiting hole 114. Specifically, a square hole can be opened on the side wall of the circular hole in the middle of the rotation limiting ring 112, and a convex block inserted into the square hole is arranged on the outer side wall of the roller end 111. Then, when the rotation limiting ring 112 is limited in the limiting hole 114 and cannot rotate by the limiting rod 113, the filter cloth winding roller 105 cannot rotate, and the filter cloth 102 on the filter cloth winding roller 105 can work stably in this state. When the filter cloth 102 needs to be replaced, it is only necessary to move the rotation limit ring 112 axially and away from the limit hole 114, so that the limit rod 113 is separated from the limit hole. At this time, the rotation limit ring 112 can be rotated, and then the filter cloth winding roller 105 is driven to rotate, so that the used filter cloth 102 is wound on another filter cloth winding roller 105 from the air inlet pipe 1, and the unused filter cloth 102 is re-covered at the air inlet pipe 1. At the same time, in order to facilitate the rotation of the rotation limit ring 112, a protrusion is also provided on the outer surface of the rotation limit ring 112 to increase friction and facilitate the rotation operation.
[0054] The second one is to limit the position of the filter cloth 102 on the winding roller through the axial limiting ring 115, which can ensure that the filter cloth 102 on the winding roller is better wound and that the filter cloth 102 can smoothly enter or extend from the filter cloth extension port 106.
[0055] During use of this embodiment, although the filter cloth 102 is tightened by the winding rollers on both sides and is in a taut state, due to the lack of axial force and the possible uneven end face of the air inlet pipe 1, it is still difficult for the filter cloth 102 to be completely pressed against the end face of the air inlet pipe 1. If a gap is left between the filter cloth 102 and the air inlet pipe 1, it will inevitably affect the pre-filtration effect at that location. Therefore, a filter cloth pressing mechanism is provided in this embodiment.
[0056] Specifically, the mounting frame assembly 103 is also provided with a filter cloth pressing mechanism for pressing the filter cloth 102 onto the end face of the air inlet pipe 1. The filter cloth pressing mechanism includes a pressing ring assembly 116 for pressing the filter cloth 102 and a pressing frame 117 for driving the pressing ring assembly 116 to move toward the filter cloth 102. The pressing frame 117 is slidably arranged on the outer side of the mounting frame assembly 103 and the sliding direction is arranged along the axial direction of the air inlet pipe 1.
[0057] Among them, the clamping frame 117 includes a U-shaped connecting plate 118 and an L-shaped movable plate 119. The two ends of the connecting plate 118 are respectively clamped on the two opposite side surfaces of the mounting frame assembly 103 and can slide linearly on the side surface of the mounting frame along the clamping direction of the filter cloth 102. When specifically set, a sliding groove with a circular arc cross-section and arranged longitudinally can be set on the side surface of the mounting frame, and convex strips with a circular arc cross-section that are inserted into the sliding groove are set at both ends of the connecting plate 118. In this way, the connecting plate 118 can slide up and down on the mounting frame assembly 103, and the connection position of the connecting plate 118 on the mounting frame can be limited to prevent it from falling off from the mounting frame assembly 103.
[0058] Among them, one end of the movable plate 119 is connected to the connecting plate 118, and the other end is provided with a pushing column 120 axially arranged along the pressing direction of the filter cloth 102. The end surface of the pressure ring assembly 116 facing away from the filter cloth 102 is provided with a pushing countersunk hole 121 for inserting the pushing column 120.
[0059] It also includes a clamping frame limiting assembly, which includes a buckle 124 hinged to the upper end of the connecting plate 118 and a slot 125 located on the upper end surface of the mounting frame assembly 103 for the buckle 124 to be inserted into. When the buckle 124 is inserted into the slot 125, the pressure ring assembly 116 presses the filter cloth 102 onto the end surface of the air inlet pipe.
[0060] During the working process, the entire pressing frame 117 is manually driven to move toward the end of the air inlet pipe 1. During this process, the pushing column 120 on the moving plate 119 is always inserted in the pushing countersunk hole 121 of the pressing ring assembly 116, so that the pressing ring assembly 116 can press the filter cloth 102 at the end of the air inlet pipe 1.
[0061] In this embodiment, considering that different dustproof sheds are of different sizes, they will be equipped with fresh air purification devices with different functions, and different fresh air purification devices will be equipped with air inlet pipes 1 and air outlet pipes 2 of different diameters. Therefore, the structure of the pressure ring assembly 116 is designed so that it can flexibly match air inlet pipes 1 of different diameters. Specifically, the pressure ring assembly 116 includes a plurality of coaxially arranged and separable circular ring members 122, adjacent circular ring members 122 are connected internally and externally by threads, and the end faces of the plurality of circular ring members 122 facing the filter cloth 102 can be in the same plane; a limit block 123 is provided on the end face of the inner circular ring member 122 facing away from the filter cloth 102, which can axially limit the end face of the adjacent circular ring member 122 facing away from the filter cloth 102.
[0062] When in use, the corresponding circular ring 122 can be rotated toward the orifice of the air inlet pipe 1 according to the orifice of the air inlet pipe 1, and the circular ring 122 that exceeds the outer diameter of the air inlet pipe 1 can be removed, so that the matching circular ring 122 is at the outermost side and slightly protrudes from the other circular rings 122. At this time, it is still connected with the inner circular ring 122, and then the pressing ring assembly 116 is further pushed through the filter cloth clamping mechanism, so that the outermost circular ring 122 presses the filter cloth 102 against the end face of the orifice of the air inlet pipe 1, and the inner circular ring 122 does not exert force on the filter cloth 102, thereby ensuring the stability of the filter cloth 102 in use.
[0063] And because the circular rings 122 can move to the same plane, when the thickness of the nozzle is greater than the width of a single circular ring 122, the two circular rings 122 can be moved upward to press the filter cloth 102, further improving the pressing stability. At the same time, a handle groove is provided on the circular ring 122, which can facilitate the rotation operation of the circular ring, and a limit block 123 is provided to limit and position multiple limit rings to keep the same plane. When the inner circular ring 122 rotates until the limit block 123 abuts against the end face of the adjacent outer circular ring 122, the other end faces of the inner and outer circular rings 122 are exactly on the same plane.
[0064] Example 2 Same as Example 1, Figure 9-Figure 15 As shown, the difference is that in this embodiment, the dustproof shed 4 is also provided with a personnel entrance and exit, and a modular mobile warehouse is installed at the personnel entrance and exit. The modular mobile warehouse includes a mobile warehouse body, and a dressing room 6 and an air shower room 7 are integrated in the mobile warehouse body. An entrance 8 is provided on one side of the mobile warehouse body, and the interior is divided into a dressing room 6 and an air shower room 7 by a partition. A connecting door 9 connecting the dressing room 6 and the air shower room 7 is provided on the partition, and an exit is provided on the side wall of the air shower room 7 away from the connecting door, and the exit of the mobile warehouse body is connected to the dustproof shed.
[0065] A purification system is arranged in the air shower room 7, and the purification system comprises an air shower port 701 for blowing air and an exhaust port 702 for exhausting air. The air shower port 701 and the exhaust port 702 are both arranged on the side wall of the air shower room 7, and the air shower port 701 is arranged on the upper part of the exhaust port 702. Air is supplied through the air shower port 701 to make the dust on the surface of the body fall off into the environment of the air shower room 7, and then the dust is extracted through the exhaust port 702, so as to clean the dust on the body of the staff.
[0066] A footstep cleaning mechanism 3 is installed on the bottom surface of the air shower room 7. The footstep cleaning mechanism 3 includes a rotatable footstep standing disc 301 and a first brush 302 arranged below the footstep standing disc 301. The upper end of the first brush 302 can extend to the top of the footstep standing disc 301, so that it can not only clean the sole of the foot, but also clean the instep to a certain extent.
[0067] After entering the air shower room 7, the staff member stands on the footstep standing disc 301 and slowly rotates with the footstep standing disc 301, so that the staff member rotates 360 degrees, so that all sides of the body are cleaned by the air shower port 701. During the rotation process, the first bristles 302 at the bottom will clean the sole of the foot, and because the foot is rotating, the first bristles 302 can clean the patterns and anti-skid grooves extending in all directions of the sole of the foot when the sole of the foot rotates.
[0068] In this embodiment, the footstep cleaning mechanism 3 is a separate modular component, which includes a detachable cleaning shell 303 installed on the bottom surface of the air shower room 7. The cleaning shell 303 can be installed by simply opening a rectangular groove on the bottom surface of the air shower room 7. It can be fixed directly by bolts. After removing the cleaning shell 303, the entire footstep cleaning mechanism 3 can be disassembled in the air shower room 7.
[0069] The first bristles 302 are integrated into the cleaning shell 303 , and the foot-standing disc 301 is rotatably connected to the upper end surface of the cleaning shell 303 .
[0070] Specifically, in this embodiment, a disc driving mechanism is also provided in the cleaning shell 303, and the disc driving mechanism includes a disc driving motor 311 arranged in the cleaning shell 303, and the motor shaft of the disc driving motor 311 is connected to a driving wheel 312 arranged at the lower part of one side of the footstep standing disc 301, and a driving tooth 314 is provided on the outer surface of the driving wheel 312, and a driving tooth hole 319 corresponding to the driving tooth 314 is provided on the edge of the footstep standing disc 301. When the driving wheel 312 rotates, the driving teeth 314 can be inserted into the driving tooth holes 319 one by one from bottom to top to drive the footstep standing disc 301 to rotate.
[0071] A bristle installation mechanism is also provided in the cleaning shell 303, and the bristle installation mechanism includes two parallel and rotatable conveying rollers 315 connected to the inner wall of the cleaning shell 303, a conveyor belt 316 is connected between the two conveying rollers 315, the first bristles 302 are connected to the outer surface of the conveyor belt 316, and also includes a pulley 317 connected to the motor shaft of the disc drive motor 311, and the pulley 317 drives one of the conveying rollers 315 to rotate through a belt.
[0072] When the disc drive motor 311 is started, it will drive the drive wheel 312 and the pulley 317 to rotate. When the drive wheel 312 rotates, the drive teeth 314 thereon will be inserted into the drive tooth holes 319 at the edge of the disc one by one, and then drive the foot standing disc 301 to rotate. In order to facilitate the foot standing disc 301 to rotate more smoothly, a roller can be set on the rotating surface of the cleaning shell 303 for the foot standing disc 301 to rotate. When the pulley 317 rotates, it will drive one of the transmission rollers to rotate through the belt. After the transmission roller rotates, the conveyor belt 316 and the other conveyor roller 315 can be rotated, and then the first bristles 302 on the conveyor belt 316 can be driven to move under the foot standing disc 301 along the moving direction of the conveyor belt 316, so that the foot can rotate relative to the first brush, and the first brush can move linearly relative to the foot, so that the first brush can clean the sole of the foot in all directions, and at the same time, it can also prevent dust accumulation on the brush from affecting the cleaning effect, which plays a role in further strengthening the cleaning of the sole of the foot.
[0073] Specifically, the foot standing disc 301 includes an annular wall 318, and a plurality of rotatable sole cleaning rollers 304 are arranged at intervals on the inner wall of the annular wall 318. The outer wall of the sole cleaning roller 304 is connected with cleaning ridges 305 evenly spaced around the central axis of the sole cleaning roller 304, and the cleaning ridges 305 are provided with second bristles. The first bristles 302 extend through the interval area between adjacent sole cleaning rollers 304 to the top of the foot standing disc 301.
[0074] In this embodiment, the first bristles 302 and the second bristles are neatly arranged on the conveyor belt 316 or the cleaning ridges 305 using conventional processes, and the whole is in a long strip shape. Hard bristles are generally used so that they can clean dust or foreign matter in the gaps of the soles.
[0075] The setting of the sole cleaning roller 304 enables it to clean the part of the sole that contacts the foot standing disc 301, and also includes a cleaning roller driving mechanism that is arranged one by one corresponding to multiple sole cleaning rollers 304. The cleaning roller driving mechanism includes a motor mounting seat 312 fixedly mounted on the end face of the annular wall 318, and a cleaning roller driving motor 313 is installed on the motor mounting seat 312. The cleaning roller driving motor 313 drives the sole cleaning roller 304 to rotate through a belt.
[0076] That is, when the sole of the foot stands on the foot standing disc 301, a part for supporting the sole of the foot needs to be set on the foot standing disc 301, that is, it can be a support part set at intervals. The support part and the sole of the foot will be in contact with the support part all the time, which will cause the part of the sole of the foot that is in contact with the support part to be unable to be cleaned. Therefore, in this embodiment, a sole cleaning roller 304 is set to serve as the sole supporting part. Through the rotation of the sole cleaning roller 304 and the second brush set thereon, the position of the sole of the foot that is in contact with the support part can also be cleaned.
[0077] Taking into account that the sole cleaning roller 304 directly serving as a supporting part will be subject to large forces and will be difficult to rotate, as well as insufficient structural strength under large loads, and other problems, a cleaning roller mounting seat 306 is provided on the inner wall of the annular wall 318. The cleaning roller mounting seat 306 is in an elongated shape and has an elongated circular arc groove 307 formed on the upper end surface. The sole cleaning roller 304 is installed in the elongated circular arc groove 307. The upper end surface of the sole cleaning roller 304 protrudes from the elongated circular arc groove 307 and a distance is left between the outer wall of the sole cleaning roller 304 and the inner wall of the elongated circular arc groove 307. The lower end portion of the cleaning roller mounting seat 306 is provided with an elongated through hole 308 connected to the elongated circular arc groove 307.
[0078] A flap 309 is provided on the upper end surface of the cleaning roller mounting seat 306 and on both sides of the sole cleaning roller 304, and is arranged along the axial direction of the sole cleaning roller 304 in the length direction. The flap 309 can be flipped over so that the plate surface overlaps the upper end surface of the cleaning roller mounting seat 306 and the plate surface of the flap 309 constitutes a foot support surface; both ends of the flap 309 are hinged to the cleaning roller mounting seat 306 and a torsion spring 310 is provided at the hinge for keeping the flap 309 in an upward tilted and folded state.
[0079] When the staff is not standing, the flap 309 is in an inclined upward folded state; in the cleaning state, the foot steps on the flap 309 to overlap the upper end surface of the cleaning roller mounting seat 306. At this time, the cleaning roller mounting seat 306 is subjected to force, and the two ends of the cleaning roller mounting seat 306 can be directly fixed on the side walls of the cleaning shell 303 to ensure that it has a large load-bearing capacity; the height of the foot support surface can be slightly higher than the outer diameter of the cleaning roller when the second bristles are not set, so that the cleaning roller 304 at the bottom of the foot basically does not bear weight, which can enable it to rotate smoothly to clean the footsteps, and has better structural stability.
[0080] In addition, the arrangement of the long arc groove 307 and the long through hole 308 in the cleaning roller mounting seat 306 enables the dust cleaned by the foot cleaning roller to fall into the long arc groove 307 and be discharged to the bottom of the foot standing disc 301 in time through the long through hole 308, without being accumulated on the outer surface of the foot cleaning roller or on the first bristles 302 on both sides of the foot cleaning roller. After the staff leaves, the flap 309 is lifted up under the action of the torsion spring 310, so that the dust on the foot support surface can be discharged. At the same time, since the first brush moves relative to the cleaning roller mounting seat 306, it will be bent to the flap 309 during the movement and clean the foot support surface, so that the soles of the operator's feet will not be in contact with the dust left over from the previous use when the operator uses it next time.
[0081] In this embodiment, in order to ensure the stability of the staff standing on the foot-standing disc 301, handrails are provided on the side walls of the air shower room 7. In addition, the cleaning roller drive mechanisms are arranged in groups of two, and the cleaning roller drive motors 313 in the same group of cleaning roller drive mechanisms rotate synchronously in opposite directions.
[0082] A blowing outlet is also provided on the upper end surface of the cleaning shell 303, which is adjacent to the foot standing disc 301 and close to the outlet of the air shower room 7. A foot standing grille 316 is provided at the air outlet. A blowing device 317 connected to the air outlet duct is provided at the bottom of the foot standing grille 316. If connected to the air supply equipment of the purification system, dust still attached to the soles, insteps, trouser legs, etc. after cleaning with a brush can be blown away. The blown dust will be sucked out through the exhaust port 702 of the purification system, thereby playing a further cleaning role.
[0083] Example 3 Same as in Example 1 or 2, Fig.16 , Fig.17 As shown, the difference is that this embodiment also includes an air conditioning component arranged at the dustproof shed for adjusting the temperature and humidity in the dustproof shed, the air conditioning component includes an air conditioning bracket, the air conditioning bracket includes a placement base plate 100, and a vertical mounting frame 200 arranged vertically on the placement base plate 100, the placement base plate 100 includes a first mounting horizontal frame 201 fixedly connected to the front and rear sides of the lower part of the vertical mounting frame 200 and vertically connected to the vertical mounting frame 200, and a plurality of first horizontal support rods 202 arranged vertically with the first mounting horizontal frame 201; an external unit mounting frame 300 for fixedly mounting an air conditioner external unit is provided at the lower part of one side of the vertical mounting frame 200, and a first limiting member 203 for limiting the position of the air conditioner external unit is provided at the external unit mounting frame 300; An indoor unit mounting frame 400 for placing the indoor unit of the air conditioner is provided on the other side of the vertical mounting frame 200, and a second limiting member 410 for limiting the indoor unit of the air conditioner is provided on the indoor unit mounting frame 400; a protective plate 210 is provided inside the vertical mounting frame 200, and a through hole 211 for the air conditioning pipeline to pass through is provided on the protective plate 210, and the through hole 211 is set on the upper part of the protective plate 210.
[0084] In this embodiment, the base plate 100 is placed to provide a stable support foundation, ensuring the stability of the indoor and outdoor units of the air conditioner and the entire bracket. Due to the limited space in the dustproof shed, the vertical mounting frame 200 serves as the main structure of the bracket. The vertical setting facilitates the layered installation of the indoor and outdoor units of the air conditioner and saves space.
[0085] The air conditioning assembly also includes an air conditioning outdoor unit 500 installed in an outdoor unit installation frame 300, an air conditioning indoor unit 600 installed in an indoor unit installation frame 400, and an air conditioning pipeline 510 connected to the air conditioning outdoor unit 500 and the air conditioning indoor unit 600 at both ends, and the air conditioning pipeline 510 passes through the perforation 211.
[0086] In this embodiment, the external unit installation frame 300 and the internal unit installation frame 400 provide dedicated installation positions for the air conditioner external unit and the internal unit respectively. The integrated design makes the air conditioner internal and external units easy to move and reuse at the GIS equipment installation site, reducing costs.
[0087] In this embodiment, the vertical mounting frame 200 is arranged on one side of the first mounting cross frame 201, the first horizontal support rod 202 is arranged perpendicular to the first mounting cross frame 201, and the outdoor unit mounting frame 300 includes a first horizontal reinforcement rod 320 arranged above the first mounting cross frame 201, a first vertical reinforcement rod 330 arranged at an end of the first mounting cross frame 201 away from the protective plate 210, a first horizontal reinforcement rod 340 arranged above the first horizontal support rod 202, and a first oblique reinforcement rod 350 arranged between the vertical mounting frame 200 and the first mounting cross frame 201. The first mounting cross frame 201, the first horizontal support rod 202, the first horizontal reinforcement rod 320, the first vertical reinforcement rod 330, the first horizontal reinforcement rod 340 and the first oblique reinforcement rod 350 together constitute a first installation interval for placing the air conditioner outdoor unit.
[0088] In this embodiment, the first mounting cross frame 201, the first horizontal support rod 202, the first transverse reinforcement rod 320, the first vertical reinforcement rod 330, the first horizontal reinforcement rod 340 and the first oblique reinforcement rod 350 together constitute a first mounting interval for placing the air-conditioning outdoor unit, thereby ensuring the safety of the air-conditioning outdoor unit. The reinforced structure makes the bracket more sturdy and reduces the maintenance cost caused by shaking or damage of the equipment.
[0089] In this embodiment, the indoor unit installation frame 400 includes a second installation horizontal frame 420 which is arranged on the front and rear sides of the inner upper part of the vertical installation frame 200 and is vertically connected to the vertical installation frame 200. A plurality of second horizontal support rods 430 which are vertically arranged with the second installation horizontal frame 420 are connected between the second installation horizontal frames 420. A second horizontal reinforcement rod 440 is arranged above the second installation horizontal frame 420. A second vertical reinforcement rod 450 is arranged at the end of the second installation horizontal frame 420 away from the protective plate 210. A second horizontal reinforcement rod 460 is arranged above the second horizontal support rod 430. The second installation horizontal frame 420, the second horizontal support rod 430, the second horizontal reinforcement rod 440, the second vertical reinforcement rod 450 and the second horizontal reinforcement rod 460 together constitute a second installation interval for placing the air conditioner indoor unit.
[0090] In this embodiment, the second mounting cross frame 420, the second horizontal support rod 430, the second transverse reinforcement rod 440, the second vertical reinforcement rod 450 and the second horizontal reinforcement rod 460 together constitute a second mounting interval for placing the air-conditioning indoor unit, providing a more stable support for the air-conditioning indoor unit and preventing noise and damage caused by equipment vibration.
[0091] In this embodiment, the first stopper 203 includes a mounting hole 204 disposed on the first horizontal support rod 202, and the mounting hole 204 is connected to the air conditioner outdoor unit bolt. The second stopper 410 includes a first stopper 411 vertically disposed at a position of the second vertical reinforcement rod 450 close to the second horizontal support rod 430, and a second stopper 412 disposed between the first stopper 411 and the second horizontal reinforcement rod 460 along both sides of the middle of the second horizontal support rod 430, and vertically connected to the first stopper 411 and the second horizontal reinforcement rod 460.
[0092] In this embodiment, the first stopper 203 and the second stopper 410 are connected by bolts and provided with a stopper, thereby ensuring the stable position of the indoor and outdoor units of the air conditioner on the bracket, preventing the equipment from shifting during transportation or use, effectively preventing the air conditioner from falling or colliding, and ensuring the safety of personnel and equipment. The first stopper 411 is provided at the upper part of the indoor unit of the air conditioner, and does not block the opening of the air conditioner when the air conditioner is turned on, providing a blowing area.
[0093] In this embodiment, the inner unit installation frame 400, the outer unit installation frame 300, the first limit member 203, the second limit member 410 and the placement base plate 100 are all fixedly connected to the vertical installation frame 200 by welding.
[0094] The use of the welding connection method in this embodiment ensures a firm connection and stability between the various components, thereby improving the overall strength and durability of the bracket.
[0095] The present embodiment also provides an environmental control device equipped with an air-conditioning bracket, including an air-conditioning outdoor unit 500 installed in an outdoor unit installation frame 300, an air-conditioning indoor unit 600 installed in an indoor unit installation frame 400, and an air-conditioning pipeline 510 connected to the air-conditioning outdoor unit 500 and the air-conditioning indoor unit 600 at both ends, respectively, and the air-conditioning pipeline 510 passes through the perforation 211.
[0096] Through the environmental control equipment in this embodiment, the temperature, humidity and other conditions in the dustproof shed can be controlled. Stable environmental control helps to maintain the insulation performance and operational stability of GIS equipment, reducing the risk of safety accidents caused by environmental factors.
[0097] Example 4 Same as Example 3, Figure 18-20 As shown, the difference is that in this embodiment, the air-conditioning bracket includes a placement base plate 100, the vertical mounting frame 200 is arranged in the middle of the placement base plate 100, the first horizontal support rod 202 is arranged parallel to the first mounting cross frame 201, the bottom of the protective plate 210 in the vertical mounting frame 200 is provided with a through hole 211, and the front and rear sides of the top of the vertical mounting frame are provided with hanging points 220, the first limiting member 203 includes a first transverse limiting rod 205 arranged on the upper part of the first mounting cross frame 201, and a first horizontal limiting rod 206 arranged on the upper part of the first horizontal support rod 202, and the second limiting member 410 includes a second transverse limiting rod 413 arranged on the upper part of the first mounting cross frame 201, and a second horizontal limiting rod 414 arranged on the upper part of the first horizontal support rod 202.
[0098] The provision of the hanging point 220 in this embodiment facilitates the hoisting and movement of the bracket, especially when the position of the GIS equipment needs to be frequently changed at the installation site, the provision of the hanging point 220 greatly improves the work efficiency.
[0099] Through the arrangement of the first limit member 203 and the second limit member 410 in this embodiment (the first transverse limit rod 205, the first horizontal limit rod 206, the second transverse limit rod 413, and the second horizontal limit rod 414), more stable support and limitation are provided for the air conditioner outdoor unit and the indoor unit to prevent shaking or falling off during movement or use.
[0100] In this embodiment, the external unit installation frame 300 includes a third transverse reinforcement rod 321 and a fourth transverse reinforcement rod 322 which are sequentially arranged above the first transverse limit rod 205, a third vertical reinforcement rod 331 and a fourth vertical reinforcement rod 332 are sequentially arranged above the end of the first transverse limit rod 205 away from the protective plate 210, a third horizontal reinforcement rod 341 and a fourth horizontal reinforcement rod 342 are sequentially arranged above the first horizontal limit rod 206, a second oblique reinforcement rod 351 is provided between the vertical mounting frame 200 and the first transverse limit rod 205, and the third transverse reinforcement rod 321 and the fourth transverse reinforcement rod 322 are vertically connected to a fixing rod 323 at positions close to the protective plate.
[0101] Through the reinforcement rod setting of the external unit installation frame in this embodiment (the third transverse reinforcement rod 321, the fourth transverse reinforcement rod 322, the third vertical reinforcement rod 331, the fourth vertical reinforcement rod 332, the third horizontal reinforcement rod 341, the fourth horizontal reinforcement rod 342, and the second oblique reinforcement rod 351), the bearing capacity and stability of the external unit installation frame 300 are improved, ensuring that the air-conditioning external unit can be safely and firmly placed in the frame, and the air-conditioning external unit is further fixed by the fixing rod 323.
[0102] In this embodiment, the internal machine installation frame 400 includes a fifth transverse reinforcement rod 441 and a sixth transverse reinforcement rod 442 which are sequentially arranged above the second transverse limit rod 413, a fifth vertical reinforcement rod 451 and a sixth vertical reinforcement rod 452 are sequentially arranged above the end of the second transverse limit rod 413 away from the protective plate 210, a fifth horizontal reinforcement rod 461, a sixth horizontal reinforcement rod 462 and a seventh horizontal reinforcement rod 463 are sequentially arranged above the second horizontal limit rod 414, and a third oblique reinforcement rod 470 is arranged between the vertical mounting frame 200 and the second transverse limit rod 413.
[0103] By setting the reinforcement rods (the fifth transverse reinforcement rod 441, the sixth transverse reinforcement rod 442, the fifth vertical reinforcement rod 451, the sixth vertical reinforcement rod 452, the fifth horizontal reinforcement rod 461, the sixth horizontal reinforcement rod 462, the seventh horizontal reinforcement rod 463, and the third oblique reinforcement rod 470) of the indoor unit mounting frame 400 in this embodiment, a more stable supporting platform is provided for the air-conditioning indoor unit, ensuring the stable operation of the air-conditioning indoor unit.
[0104] In this embodiment, the indoor unit installation frame 400 also includes a third baffle rod 480 vertically arranged between the second horizontal limit rod 414 and the third horizontal reinforcement rod 341, and two vertical rods 490 vertically arranged between the third horizontal reinforcement rod 341 and the fourth horizontal reinforcement rod 342. Two horizontal rods 491 arranged in sequence are horizontally connected between the fourth baffle rods. The vertical rod 490 and the horizontal rod 491 together constitute an operating range for operating the indoor unit of the air conditioner.
[0105] By setting the third baffle bar 480 in this embodiment, safety protection is provided for the air-conditioning indoor unit. The wind blown out by the air-conditioning indoor unit can pass through the third baffle bar 480, thereby controlling the ambient temperature in the dustproof shed. The setting of the vertical bar 490 and the horizontal bar 491 makes it easy for the operator to quickly find the air-conditioning operation panel through the operation area and adjust the temperature and humidity of the air-conditioning.
[0106] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application to obtain other embodiments based on one or several embodiments provided in the present application, and these embodiments do not exceed the protection scope of the present application.
[0107] In conclusion, the above is only a preferred embodiment of the present invention, and all equivalent changes and modifications made according to the scope of the patent application of the present invention should fall within the scope of the patent of the present invention.
Claims
1. Intelligent GIS is installed with mobile track-type dust-free workshop equipment, including a track, on which a dustproof shed is slidably installed, characterized by: A fresh air purification device (5) is installed at the dustproof shed, the air outlet of which is connected to the interior of the dustproof shed; an air inlet pipe (1) is installed at the air inlet end of the fresh air purification device (5); an air inlet filter assembly is provided at the inlet end of the air inlet pipe (1); the air inlet filter assembly comprises a filter cloth mounting frame (101) that can be mounted at the pipe opening of the air inlet pipe (1); a filter cloth (102) that can cover the pipe opening of the air inlet pipe (1) is mounted on the filter cloth mounting frame (101); A personnel entrance and exit is provided on the dustproof shed, and a modular mobile warehouse is installed at the personnel entrance and exit. The modular mobile warehouse comprises a mobile warehouse body, and a dressing room (6) and an air shower room (7) are integrated in the mobile warehouse body. A footstep cleaning mechanism (3) is installed on the bottom surface of the air shower room (7). The footstep cleaning mechanism (3) comprises a rotatable footstep standing disc (301) and a first brush (302) arranged below the footstep standing disc (301), and the upper end of the first brush (302) can extend above the footstep standing disc (301).
2. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 1 is characterized by: Also included is an air conditioning assembly arranged in the dustproof shed for adjusting the temperature and humidity in the dustproof shed, the air conditioning assembly comprising an air conditioning bracket, the air conditioning bracket comprising a base plate (100) for placement, and a vertical mounting frame (200) arranged vertically to the base plate (100), an external unit mounting frame (300) for fixedly mounting an external unit of the air conditioner is provided at a lower portion of one side of the vertical mounting frame (200), and an internal unit mounting frame (400) for placing an indoor unit of the air conditioner is provided at the other side, and a through hole (211) for the air conditioning pipeline to pass through is also provided in the vertical mounting frame (200), The air conditioning assembly further comprises an air conditioning outdoor unit (500) installed in the outdoor unit installation frame (300), an air conditioning indoor unit (600) installed in the indoor unit installation frame (400), and an air conditioning pipeline (510) connected at both ends to the air conditioning outdoor unit (500) and the air conditioning indoor unit (600), respectively, and the air conditioning pipeline (510) passes through the perforated opening (211).
3. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 1 is characterized by: The filter cloth mounting frame (101) comprises two mounting frame assemblies (103) capable of being clamped at the pipe opening of the air inlet pipe (1), the two mounting frame assemblies (103) are each provided with a filter cloth winding chamber (104), the filter cloth winding chamber (104) is provided with a filter cloth winding roller (105), and the two mounting frame assemblies (103) are each provided with a filter cloth extension opening (106) communicating with the filter cloth winding chamber (104) on opposite sides thereof, and the two ends of the filter cloth (102) are respectively extended into the filter cloth winding chamber (104) through the two filter cloth extension openings (106) and wound on the filter cloth winding roller (105).
4. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 1 is characterized by: The mounting frame assembly (103) is also provided with a filter cloth pressing mechanism for pressing the filter cloth (102) onto the end surface of the air inlet pipe (1), the filter cloth pressing mechanism comprising a pressing ring assembly (116) for pressing the filter cloth (102) and a pressing frame (117) for driving the pressing ring assembly (116) to move toward the filter cloth (102), the pressing frame (117) being slidably arranged on the outer surface of the mounting frame assembly (103) and the sliding direction being arranged along the axial direction of the air inlet pipe (1).
5. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 4 is characterized by: The pressure ring assembly (116) comprises a plurality of circular ring members (122) which are coaxially arranged and can be separated from each other, wherein adjacent circular ring members (122) are connected internally and externally by threads, and the end faces of the plurality of circular ring members (122) facing the filter cloth (102) can be located on the same plane; a limit block (123) which can axially limit the end face of the adjacent circular ring member (122) facing the filter cloth (102) is provided on the end face of the inner circular ring member (122) which faces away from the filter cloth (102); and a pressing frame limit assembly is also included, wherein the pressing frame limit assembly comprises a buckle (124) hinged to the upper end of the connecting plate (118) and a slot (125) located on the upper end face of the mounting frame assembly (103) for the buckle (124) to be snapped into; when the buckle (124) is snapped into the slot (125), the pressure ring assembly (116) presses the filter cloth (102) onto the end face of the air inlet pipe.
6. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 1 is characterized by: The footstep cleaning mechanism (3) comprises a cleaning shell (303) detachably mounted on the bottom surface of the air shower chamber (7), the first bristles (302) being integrated in the cleaning shell (303), and the footstep standing disc (301) being rotatably connected to the upper end surface of the cleaning shell (303); The foot-standing disc (301) comprises an annular wall (318), a plurality of rotatable sole cleaning rollers (304) are arranged at intervals on the inner wall of the annular wall (318), cleaning convex strips (305) evenly spaced around the central axis of the sole cleaning roller (304) are connected to the outer wall of the sole cleaning roller (304), second bristles are arranged on the cleaning convex strips (305), and the first bristles (302) extend to the top of the foot-standing disc (301) through the interval area between adjacent sole cleaning rollers (304).
7. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 6 is characterized by: A cleaning roller mounting seat (306) is provided on the inner wall of the annular wall (318); the cleaning roller mounting seat (306) is in an elongated shape and has an elongated circular arc groove (307) formed on its upper end surface; the sole cleaning roller (304) is mounted in the elongated circular arc groove (307); the upper end surface of the sole cleaning roller (304) protrudes from the elongated circular arc groove (307) and a distance is left between the outer wall of the sole cleaning roller (304) and the inner wall of the elongated circular arc groove (307); and a elongated through hole (308) communicating with the elongated circular arc groove (307) is provided at the lower end of the cleaning roller mounting seat (306); A flap (309) is provided on the upper end surface of the cleaning roller mounting seat (306) and on both sides of the sole cleaning roller (304) and is arranged along the axial direction of the sole cleaning roller (304) in the length direction. The flap (309) can be flipped over so that the flap surface overlaps the upper end surface of the cleaning roller mounting seat (306) and the flap surface of the flap (309) forms a foot support surface. Both ends of the flap (309) are hinged to the cleaning roller mounting seat (306) and a torsion spring (310) is provided at the hinge for keeping the flap (309) in an upwardly tilted and folded state.
8. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 5 is characterized by: A disc drive mechanism is also provided in the cleaning housing (303), and the disc drive mechanism comprises a disc drive motor (311) provided in the cleaning housing (303); a drive wheel (312) provided at a lower portion of one side of the foot-standing disc (301) is connected to the motor shaft of the disc drive motor (311); a drive tooth (314) is provided on the outer surface of the drive wheel (312); a drive tooth hole (319) corresponding to the drive tooth (314) is provided on the edge of the foot-standing disc (301); when the drive wheel (312) rotates, the drive teeth (314) can be inserted into the drive tooth holes (319) one by one from bottom to top to drive the foot-standing disc (301) to rotate; A bristle installation mechanism is also provided in the cleaning shell (303), the bristle installation mechanism comprising two parallelly arranged conveying rollers (315) rotatably connected to the inner wall of the cleaning shell (303), a conveying belt (316) being connected between the two conveying rollers (315), the first bristles (302) being connected to the outer surface of the conveying belt (316), and a pulley (317) connected to the motor shaft of the disc drive motor (311), the pulley (317) driving one of the conveying rollers (315) to rotate via a belt.
9. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 2 is characterized by: The placement base plate (100) comprises a first installation horizontal frame (201) fixedly connected to the front and rear sides of the lower part of the vertical installation frame (200) and vertically connected to the vertical installation frame (200), and a plurality of first horizontal support rods (202) arranged in the first installation horizontal frame (201); A first limiting member (310) for limiting the position of the air conditioner outdoor unit is provided at the outdoor unit installation frame (300); a second limiting member (410) for limiting the position of the air conditioner indoor unit is provided at the indoor unit installation frame (400); a protective plate (210) is provided inside the vertical installation frame (200), and a perforated opening (211) is provided at the protective plate (210).
10. The intelligent GIS installation mobile track type dust-free workshop equipment according to claim 9 is characterized in that: The vertical mounting frame (200) is arranged on one side of the first mounting cross frame (201); the first horizontal support rod (202) is arranged perpendicular to the first mounting cross frame (201); the outdoor unit mounting frame (300) comprises a first horizontal reinforcement rod (320) arranged above the first mounting cross frame (201); a first vertical reinforcement rod (330) arranged at an end of the first mounting cross frame (201) away from the protective plate (210); a first horizontal reinforcement rod (340) arranged above the first horizontal support rod (202); and a first oblique reinforcement rod (350) arranged between the vertical mounting frame (200) and the first mounting cross frame (201); the first mounting cross frame (201), the first horizontal support rod (202), the first horizontal reinforcement rod (320), the first vertical reinforcement rod (330), the first horizontal reinforcement rod (340) and the first oblique reinforcement rod (350) together constitute a first mounting interval for placing the outdoor unit of the air conditioner.