Distribution box with mounting structure
Through the installation device and the supporting uniform, anti-deposition and snow-shielding devices, the problems of deformation and high-temperature cooling, moisture accumulation, and rain and snow coverage of the distribution box during the installation process are solved, and the stability and reliability of the equipment are achieved.
Patent Information
- Application Number
- CN202510820007.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-08-15
AI Technical Summary
The existing distribution box is prone to damage to the equipment due to extrusion deformation during installation, and the equipment is easily damaged when cooling at high temperatures, gas accumulation, moisture accumulation and rain and snow cover.
The installation device of support plates, support columns, L-shaped plates and bidirectional electric telescopic rods is adopted, combined with uniform, anti-deposition and snow-shielding devices, including round shells, motors, circular filters, cross rods, L-shaped rods, fan plates, arc springs, arc plates, round rods, circular sliders, paper frames, long rods, snowboards, strip boxes, drive modules, U-shaped sweeping boards, snow scrapers and sponge rollers, etc., to achieve stable installation of the chassis, uniform distribution of gas, impurity removal and rain and snow protection.
Effectively prevent the distribution box from deforming and vibrating during installation, avoid uneven accumulation and corrosion of gas during high temperature cooling, prevent moisture accumulation and damage to the equipment and rain and snow cover, and ensure stable operation of the equipment.
Smart Images

Figure CN120497782A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of distribution boxes, in particular to a distribution box with an installation structure. Background Art
[0002] A distribution box is a protective electrical device. It is usually made of metal or plastic and has a mounting structure that can be fixed to a wall or other supporting structure. It is used to install and protect various electrical equipment to ensure the safe and reliable operation of the power system. The distribution box with a mounting structure can better fix and protect electrical equipment and improve the stability and reliability of the power system.
[0003] Patent number CN210273222U discloses a distribution box with an auxiliary mounting structure, including a mounting frame and a cabinet, the bottom of the cabinet is in contact with the bottom of the inner wall of the mounting frame, both sides of the mounting frame are fixedly connected with a first threaded block, and the internal thread of the first threaded block is connected with a first threaded rod. The distribution box with an auxiliary mounting structure described in this patent is provided with a fixing plate, a second threaded rod and an arc-shaped clamping block, which can fix the cabinet to maintain stability between the cabinet and the mounting frame, and can adapt to cabinets of different sizes, thereby improving the versatility of the device, facilitating widespread promotion and use, and facilitating its subsequent disassembly. The overall height of the cabinet can be adjusted to adapt to different usage situations, avoiding water accumulation in the cabinet, etc., and can also prevent the second threaded rod from rotating, affecting the stability of the device, bringing better prospects for use.
[0004] However, the current distribution box with an auxiliary installation structure has the following problems: when the distribution box with an auxiliary installation structure is in use, since the distribution box is fixedly installed by clamping during the installation process, it is very easy to cause the outer shell of the distribution box to be squeezed and deformed during the installation process, thereby causing the distribution box to be squeezed and deformed during the installation process and causing damage to the equipment. Therefore, we propose a distribution box with an installation structure. Summary of the Invention
[0005] In view of the deficiencies in the prior art, the present invention provides a distribution box with an installation structure, which solves the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a distribution box with an installation structure, comprising a chassis, a controller, several cables and a wire management box, the air inlet of the chassis being opened in the middle of the bottom surface of the chassis, the air outlet of the chassis being opened in the middle of the top surface of the chassis, the door of the chassis being hinged on the right side of the front surface of the chassis, the controller being fixedly mounted on the top of the inner wall of the chassis, several of the cables being rotated and fixedly mounted on the bottom of the front surface of the controller, several of the cables being respectively passed through and slidably mounted on the bottom of the back surface of the chassis, the wire management box comprising a box body and a cover plate, the box body of the wire management box being fixedly mounted on the bottom of the back surface of the chassis, the cover plate being hinged on the right side of the back surface of the box body, the several cables being respectively arranged inside the wire management box, and further comprising an installation device, an air uniformity device, an anti-deposition device and a snow shield device, the installation device being arranged on the bottom surface of the chassis, the air uniformity device being arranged on the inner wall of the air inlet of the chassis, the anti-deposition device being arranged on the outer wall of the air uniformity device, and the snow shield device being arranged on both sides of the bottom surface of the installation device; The two L-shaped plates are respectively fixed to the four sides of the bottom surface of the support plate, and the circular holes of the two L-shaped plates are respectively opened in the middle of the opposite surfaces of the two L-shaped plates. The two-way electric telescopic rod is fixed to the bottom end of the chassis, and the two telescopic ends of the two-way electric telescopic rod respectively penetrate and are slidably installed on the bottom left and right sides of the chassis. The two telescopic ends of the two-way electric telescopic rod are respectively slidably installed in the circular holes of the two L-shaped plates. The installation process of the chassis is quick and easy, and the L-shaped plate firmly limits the displacement of the chassis to avoid damage to the equipment caused by squeezing and deformation of the distribution box during installation.
[0007] According to the above technical solution, the installation device also includes four concave strips, four arc-shaped spring pieces and four top arc plates. The four concave strips are respectively fixed on both sides of the opposite surfaces of the two L-shaped plates, the four arc-shaped spring pieces are respectively embedded in the inner walls of the four concave strips, and the four top arc plates are respectively fixed on the opposite surfaces of the four arc-shaped spring pieces. The four top arc plates are respectively arranged at the bottom of the left and right sides of the chassis, and the top arc plates are tightly pressed against the chassis. The top arc plates buffer the chassis to prevent the distribution box from vibrating and damaging the internal electronic components during installation.
[0008] According to the above technical solution, the gas uniformity device includes a circular shell, an electric motor, a circular filter and a cross rod. The circular shell is fixed on the inner wall of the air inlet of the chassis, and the circular shell is arranged in the circular hole of the support plate. The several air inlets of the circular shell are respectively opened on the left and right sides of the circular shell. The motor is fixedly installed at the bottom end of the inner part of the circular shell, and the circular filter is fixed on the top of the inner wall of the circular shell. The circular hole of the circular filter is opened in the middle of the top surface of the circular filter. The rotating shaft of the motor is rotatably set in the circular hole of the circular filter. The cross rod is fixed on the top of the outer wall of the motor shaft. The cross rod is arranged under the bidirectional electric telescopic rod. The cross rod evenly stirs the gas into the chassis to avoid uneven accumulation of gas in the chassis when the distribution cabinet is cooled at high temperature, causing the equipment to be corroded by gas accumulation.
[0009] According to the above technical solution, the air uniforming device also includes four hollow columns, four mesh cylinders and four cylindrical dehumidification blocks. The four hollow columns are respectively fixed on the front of the cross rod, and the outer walls of the four hollow columns are respectively provided with four air grooves. The four mesh cylinders are respectively fixed on the inner walls of the four hollow columns, and the four cylindrical dehumidification blocks are respectively fixed on the front and back sides of the four mesh cylinders. During the forward rotation of the cylindrical dehumidification blocks, the contact area with the gas is increased to avoid moisture accumulation in the distribution box and cause the equipment to get damp.
[0010] According to the above technical solution, the anti-deposition device includes four L-shaped levers, two vertical frames, two fan plates and four arc-shaped spring sheets. The four L-shaped levers are respectively fixed on the right side of the outer wall of the cross rod, the two vertical frames are respectively fixed on the bottom end of the inside of the chassis, the two vertical frames are respectively arranged on the front and back of the two-way electric telescopic rod, the two fan plates are respectively rotatably installed on the inner walls of the two vertical frames, the four arc-shaped spring sheets are respectively fixed on the left sides of the two vertical frames, and the ends of the four arc-shaped spring sheets away from the two vertical frames are respectively fixed on the left sides of the two fan plates. The two fan plates are respectively located on the movement trajectories of the four L-shaped levers, and the fan plates reciprocate left and right to fan the gas in the chassis to prevent the gas in the distribution box from accumulating under the chassis and causing the aging speed of the bottom of the chassis to be too fast.
[0011] According to the above technical solution, the anti-deposition device also includes two arc-shaped plates, two round rods and two circular sliders. The two arc-shaped plates are respectively fixed on the bottom left side of the two fan plates, the two round rods are respectively fixed on the bottom surfaces of the two arc-shaped plates, the two circular sliders are respectively fixed on the bottom surfaces of the two round rods, and the two circular sliders are respectively slidably set on the top surface of the circular filter. The circular filter vibrates and shakes off impurities to avoid clogging of the circular filter in the distribution box, which causes poor cooling effect of the equipment.
[0012] According to the above technical solution, the snow guard device includes two arched frames, four long rods, snow guards, strip boxes, drive modules and U-shaped sweeping plates. The two arched frames are respectively fixed on both sides of the bottom surface of the support plate. The four long rods pass through and are fixed on the bottom and top surfaces of the two arched frames respectively. The snow guards are fixed on the top surfaces of the four long rods. The snow guards are arranged above the chassis. The strip boxes are fixed on the bottom surface of the snow guards. The slide groove of the strip box is opened in the middle of the front surface of the strip box. The square groove of the strip box is opened in the middle of the bottom surface of the strip box. The drive module The dynamic module includes a servo motor and a roller. The driving module is slidably installed at the bottom end of the strip box, the roller is fixedly installed on the front of the servo motor, and the roller is rotatably installed on the inner wall of the slide groove of the strip box. The U-shaped sweeping plate is fixedly installed on the bottom surface of the servo motor, and the U-shaped sweeping plate is slidably set inside the square groove of the strip box. The U-shaped sweeping plate is set on the top surface of the snow guard. The snow guard prevents rain and snow from covering the chassis. The U-shaped sweeping plate moves back and forth to sweep away the snow on the snow guard to prevent rain and snow from accumulating on the distribution box and causing damage to the equipment due to rain and snow immersion.
[0013] According to the above technical solution, the snow-blocking device also includes two snow scrapers, two U-shaped frames and two sponge rollers. The two snow scrapers are respectively fixed on the top of the left and right sides of the U-shaped sweeping plate. The two snow scrapers are arranged in an eight-shape. The two U-shaped frames are respectively fixed on the top surfaces of the two snow scrapers. The two sponge rollers are respectively rotatably installed on the inner walls of the two U-shaped frames. The two sponge rollers are respectively rotatably set on the top surfaces of the snow guards. The snow scrapers scrape off the ice on the snow guards during the reciprocating movement left and right, and the sponge rollers roll to wipe off the snow water on the snow guards to prevent the ice on the distribution box from melting and seeping into the chassis, causing the equipment to be damaged by rain and snow.
[0014] The present invention provides a distribution box with an installation structure. It has the following beneficial effects: (1) The present invention arranges the mounting device so that the support plate, support column, L-shaped plate, bidirectional electric telescopic rod, concave strip block and arc-shaped spring piece cooperate with the top arc plate, and the two telescopic ends of the bidirectional electric telescopic rod move into the circular hole of the L-shaped plate, so that the chassis is quick and easy to install. The L-shaped plate firmly limits the displacement of the chassis, preventing the distribution box from being squeezed and deformed during the installation process to cause damage to the equipment. The arc-shaped spring piece deforms under the action of elastic force, and the arc-shaped spring piece buffers the top arc plate, so that the top arc plate is tightly pressed against the chassis. The top arc plate buffers the chassis, preventing the distribution box from vibrating and damaging the internal electronic components during the installation process.
[0015] (2) The present invention uses the arrangement of an air-uniform device to coordinate the circular shell, the motor, the circular filter, the cross rod, the hollow column and the mesh tube with the cylindrical dehumidification block. The air in the circular shell is then screened by the circular filter to prevent dust from entering the chassis. The gas enters the chassis to cool the temperature of the controller. The motor shaft drives the cross rod to rotate forward, so that the cross rod stirs the gas into the chassis evenly, preventing the uneven accumulation of gas in the chassis during high-temperature cooling of the distribution cabinet, causing the equipment to be corroded by the accumulation of gas. The mesh tube drives the cylindrical dehumidification block to rotate forward, increasing the contact area with the gas during the forward rotation of the cylindrical dehumidification block, preventing moisture from accumulating in the distribution box and causing the equipment to be damp.
[0016] (3) The present invention sets an anti-deposition device so that the L-shaped lever, vertical frame, fan plate, arc-shaped spring sheet, arc-shaped plate and round rod cooperate with the circular slider. The fan plate is restricted by the arc-shaped spring sheet. The arc-shaped spring sheet resets the fan plate under the action of elastic force, so that the fan plate fans the gas in the chassis back and forth, preventing the gas in the distribution box from accumulating under the chassis and causing the chassis to age too quickly. The circular slider transmits vibration to the circular filter net, causing the circular slider to vibrate when moving on the circular filter net. The circular filter net vibrates and shakes off impurities, preventing the circular filter net of the distribution box from being blocked and causing poor cooling effect of the equipment.
[0017] (4) The present invention arranges the snow-blocking device so that the circular frame, the long pole, the snow-blocking plate, the strip box, the driving module, the U-shaped sweeping plate, the snow scraper and the U-shaped frame cooperate with the sponge roller. The long pole supports the snow-blocking plate, and the snow-blocking plate blocks rain and snow from covering the chassis. The servo motor of the driving module drives the U-shaped sweeping plate to move back and forth, so that the U-shaped sweeping plate can move back and forth to sweep away the snow on the snow-blocking plate, thereby preventing rain and snow from accumulating on the distribution box and causing the equipment to be damaged by rain and snow. In addition, the snow scraper can scrape away ice on the snow-blocking plate during the reciprocating movement, and the sponge roller can roll to wipe away snow water on the snow-blocking plate, thereby preventing ice on the distribution box from melting and seeping into the chassis and causing the equipment to be damaged by rain and snow. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A schematic diagram of the present invention as a whole; Figure 2 A schematic diagram of the back side of the present invention as a whole; Figure 3 It is a schematic diagram of the overall cross-section of the present invention; Figure 4 A schematic cross-sectional view of the installation device of the present invention; Figure 5 A partially enlarged schematic diagram of the installation device of the present invention; Figure 6 Schematic diagram of a cross-section of the gas homogenizing device of the present invention; Figure 7 It is a partially enlarged schematic diagram of the gas homogenizing device of the present invention; Figure 8 is a schematic cross-sectional view of the anti-deposition device of the present invention; Figure 9 A partially enlarged schematic diagram of the anti-deposition device of the present invention; Figure 10 A schematic cross-sectional view of a snow blocking device according to the present invention; Figure 11 This is a partially enlarged schematic diagram of the snow blocking device of the present invention.
[0019] Figure: 1, chassis; 2, controller; 3, cables; 4, cable management box; 5, mounting device; 6, air distribution device; 7, anti-deposition device; 8, snow shield; 51, support plate; 52, support column; 53, L-shaped plate; 54, two-way electric telescopic rod; 55, concave strip block; 56, arc-shaped spring piece; 57, top arc plate; 61, round shell; 62, motor; 63, round filter; 64, cross rod ; 65. Hollow column; 66. Mesh cylinder; 67. Columnar dehumidification block; 71. L-shaped lever; 72. Vertical frame; 73. Fan plate; 74. Arc-shaped spring sheet; 75. Arc-shaped plate; 76. Round rod; 77. Round slider; 81. Ring frame; 82. Long rod; 83. Snow guard; 84. Bar box; 85. Drive module; 86. U-shaped sweeping plate; 87. Snow scraper; 88. U-shaped frame; 89. Sponge roller. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0021] See also Figure 1-11One embodiment of the present invention is: a distribution box with an installation structure, including a chassis 1, a controller 2, a plurality of cables 3 and a wire management box 4, the air inlet of the chassis 1 is opened in the middle of the bottom surface of the chassis 1, the air outlet of the chassis 1 is opened in the middle of the top surface of the chassis 1, the door of the chassis 1 is hinged on the right side of the front of the chassis 1, the controller 2 is fixedly installed on the top of the inner wall of the chassis 1, the plurality of cables 3 are respectively rotated and fixedly installed on the bottom of the front of the controller 2, the plurality of cables 3 are respectively passed through and slidably installed on the bottom of the back of the chassis 1, and the wire management box 4 includes a box body and a cover plate The body of the cable management box 4 is fixedly installed at the bottom of the back of the chassis 1, and the cover is hinged on the right side of the back of the box. Several cables 3 are respectively arranged inside the cable management box 4. The chassis 1 supports the controller 2. The cover of the cable management box 4 is rotated to open and the cables 3 are placed in the cable management box 4. The cable management box 4 plays a role in protecting the cables 3. Then the cables 3 are installed on the controller 2. It also includes a mounting device 5. The mounting device 5 is arranged on the bottom surface of the chassis 1. The mounting device 5 includes a support plate 51, four support columns 52, two L-shaped plates 53 and a bidirectional electric telescopic rod 54, the support plate 51 is set on the bottom surface of the chassis 1, the chassis 1 is placed on the support plate 51, the circular hole of the support plate 51 is opened in the middle of the top surface of the support plate 51, the four support columns 52 are respectively fixed on the four sides of the bottom surface of the support plate 51, the mounting plates of the four support columns 52 are respectively fixed on the bottom surfaces of the support columns 52, the support columns 52 support the support plate 51, the two L-shaped plates 53 are respectively fixed on both sides of the top surface of the support plate 51, the circular holes of the two L-shaped plates 53 are respectively opened in the middle of the opposite surfaces of the two L-shaped plates 53, and the support plate 51 supports the L-shaped Plate 53, the two-way electric telescopic rod 54 is fixed at the bottom end of the inside of the chassis 1, the two telescopic ends of the two-way electric telescopic rod 54 respectively penetrate and are slidably installed on the bottom of the left and right sides of the chassis 1, and the two telescopic ends of the two-way electric telescopic rod 54 are respectively slidably installed in the circular holes of the two L-shaped plates 53. The two telescopic ends of the two-way electric telescopic rod 54 move into the circular holes of the L-shaped plates 53, making the installation of the chassis 1 quick and easy. The L-shaped plate 53 firmly limits the displacement of the chassis 1, thereby preventing the distribution box from being squeezed and deformed during installation and causing damage to the equipment.
[0022] The mounting device 5 also includes four concave strip blocks 55, four arc-shaped spring pieces 56 and four top arc plates 57. The four concave strip blocks 55 are respectively fixed on both sides of the opposite surfaces of the two L-shaped plates 53. The L-shaped plates 53 support the concave strip blocks 55. The four arc-shaped spring pieces 56 are respectively embedded in the inner walls of the four concave strip blocks 55. The concave strip blocks 55 support the arc-shaped spring pieces 56. The four top arc plates 57 are respectively fixed on the opposite surfaces of the four arc-shaped spring pieces 56. The four top arc plates 57 are respectively arranged at the bottom of the left and right sides of the chassis 1. The arc-shaped spring pieces 56 support the top arc plates 57. When the chassis 1 moves downward, the arc-shaped spring pieces 56 are deformed under the action of elastic force. The arc-shaped spring pieces 56 buffer the top arc plates 57, so that the top arc plates 57 are tightly against the chassis 1. The top arc plates 57 buffer the chassis 1, thereby preventing the distribution box from vibrating and damaging the internal electronic components during installation.
[0023] When in use, the chassis 1 supports the controller 2, and the staff turns to open the cover of the wire management box 4 and places the cable 3 into the wire management box 4. The wire management box 4 plays a role in protecting the cable 3, and then the cable 3 is installed on the controller 2. When installation is required, the mounting plate of the support column 52 is first installed to the position where it needs to be fixed. The staff places the chassis 1 above the support plate 51, and the support column 52 supports the support plate 51, and the support plate 51 supports the L-shaped plate 53. At the same time, the two-way electric telescopic rod 54 in the chassis 1 is activated with an electric wire, and the two telescopic ends of the two-way electric telescopic rod 54 move to both sides, and the two telescopic ends of the two-way electric telescopic rod 54 move to the circular holes of the L-shaped plate 53, making the chassis 1 quick and easy to install. The L-shaped plate 53 firmly limits the displacement of the chassis 1 to prevent the chassis 1 shell from being squeezed and deformed during the installation process, thereby avoiding the problem of equipment damage caused by squeezing and deformation of the distribution box during installation.
[0024] When the chassis 1 is placed on top of the support plate 51, the L-shaped plate 53 supports the concave block 55, the concave block 55 supports the arc-shaped spring piece 56, and the arc-shaped spring piece 56 supports the top arc plate 57. When the chassis 1 moves downward, the arc-shaped spring piece 56 is deformed under the action of elastic force, and the arc-shaped spring piece 56 buffers the top arc plate 57, so that the top arc plate 57 is tightly against the chassis 1. The top arc plate 57 buffers the chassis 1 to prevent the chassis 1 from vibrating during the installation process and causing damage to the equipment, thereby avoiding the problem of the distribution box vibrating and damaging the internal electronic components during the installation process.
[0025] See also Figure 1-11, based on the above embodiment, another embodiment of the present invention further includes an air uniforming device 6, an anti-deposition device 7 and a snow blocking device 8, wherein the air uniforming device 6 is arranged on the inner wall of the air inlet of the chassis 1, and the air uniforming device 6 includes a round shell 61, a motor 62, a round filter 63 and a cross rod 64, the round shell 61 is fixed on the inner wall of the air inlet of the chassis 1, the round shell 61 is arranged in the round hole of the support plate 51, and several air inlets of the round shell 61 are respectively opened on the left and right sides of the round shell 61, the chassis 1 supports the round shell 61, the motor 62 is fixedly installed at the bottom end of the round shell 61, the round shell 61 supports the motor 62, the round filter 63 is fixed to the top of the inner wall of the round shell 61, the round shell 61 supports the round filter 63, and the round The circular hole of the circular filter 63 is opened in the middle of the top surface of the circular filter 63, the rotating shaft of the motor 62 is rotatably set in the circular hole of the circular filter 63, the cross rod 64 is fixed on the top of the outer wall of the rotating shaft of the motor 62, and the cross rod 64 is set below the bidirectional electric telescopic rod 54. The gas enters the circular shell 61 from the air inlet of the circular shell 61, and the air in the circular shell 61 is filtered through the circular filter 63 to prevent dust from entering the chassis 1. The gas enters the chassis 1 to cool the temperature of the controller 2. The rotating shaft of the motor 62 drives the cross rod 64 to rotate forward, so that the cross rod 64 evenly stirs the gas into the chassis 1, thereby avoiding uneven accumulation of gas in the chassis 1 when the distribution cabinet is cooled at high temperature, causing the equipment to be corroded by gas accumulation.
[0026] The air uniforming device 6 also includes four hollow columns 65, four mesh cylinders 66 and four cylindrical dehumidification blocks 67. The four hollow columns 65 are respectively fixed on the front of the cross rod 64, and the cross rod 64 drives the hollow columns 65 to rotate forward. The outer walls of the four hollow columns 65 are respectively provided with four air grooves. The four mesh cylinders 66 are respectively fixed on the inner walls of the four hollow columns 65. The hollow columns 65 drive the mesh cylinder 66 to rotate forward. The four cylindrical dehumidification blocks 67 are respectively fixed on the front and back sides of the four mesh cylinders 66. The mesh cylinder 66 drives the cylindrical dehumidification blocks 67 to rotate forward. During the forward rotation of the cylindrical dehumidification blocks 67, the contact area with the gas is increased, thereby avoiding moisture accumulation in the distribution box and causing the equipment to get damp.
[0027] The anti-deposition device 7 is arranged on the outer wall of the uniform air device 6. The anti-deposition device 7 includes four L-shaped levers 71, two vertical frames 72, two fan plates 73 and four arc-shaped spring pieces 74. The four L-shaped levers 71 are respectively fixed to the right side of the outer wall of the cross rod 64, and the two vertical frames 72 are respectively fixed to the bottom end of the inside of the chassis 1. The chassis 1 supports the vertical frames 72. The two vertical frames 72 are respectively arranged on the front and back of the two-way electric telescopic rod 54. The two fan plates 73 are respectively rotatably mounted on the inner walls of the two vertical frames 72. The vertical frames 72 support the fan plates 73. The four arc-shaped spring pieces 74 are respectively fixed to the left side of the two vertical frames 72. The ends of the arc-shaped spring pieces 74 away from the two vertical frames 72 are fixed to the left sides of the two fan plates 73. The two fan plates 73 are respectively located on the movement trajectories of the four L-shaped levers 71. The cross rod 64 drives the L-shaped lever 71 to rotate forward. The L-shaped lever 71 shifts the fan plate 73 during the forward rotation. The fan plate 73 rotates to the left in the vertical frame 72. The fan plate 73 is restricted by the arc-shaped spring piece 74. The arc-shaped spring piece 74 resets the fan plate 73 under the action of elastic force, so that the fan plate 73 reciprocates left and right to fan the gas in the chassis 1, thereby preventing the gas in the distribution box from accumulating under the chassis 1 and causing the aging speed below the chassis 1 to be too fast.
[0028] The anti-deposition device 7 also includes two arc-shaped plates 75, two round rods 76 and two round sliders 77. The two arc-shaped plates 75 are respectively fixed to the left bottom of the two fan plates 73. The fan plates 73 drive the arc-shaped plates 75 to move back and forth. The two round rods 76 are respectively fixed to the bottom surfaces of the two arc-shaped plates 75. The arc-shaped plates 75 drive the round rods 76 to move back and forth. The two round sliders 77 are respectively fixed to the bottom surfaces of the two round rods 76. The round rods 76 drive the round sliders 77 to move back and forth. The two round sliders 77 are respectively slidably set on the top surface of the circular filter 63. The round sliders 77 moves back and forth on the circular filter 63. During the reciprocating movement of the fan plate 73, a certain vibration amplitude will be generated. The fan plate 73 transmits the vibration to the curved plate 75, the curved plate 75 transmits the vibration to the round rod 76, the round rod 76 transmits the vibration to the circular slider 77, and the circular slider 77 transmits the vibration to the circular filter 63, so that the circular slider 77 vibrates when moving on the circular filter 63, and the circular filter 63 vibrates to shake off impurities, thereby avoiding clogging of the circular filter 63 of the distribution box and causing poor cooling effect of the equipment.
[0029] The snow guard device 8 is arranged on both sides of the bottom surface of the mounting device 5. The snow guard device 8 includes two arched frames 81, four long rods 82, snow guards 83, strip boxes 84, a driving module 85 and a U-shaped sweeping plate 86. The two arched frames 81 are fixed on both sides of the bottom surface of the support plate 51 respectively. The support plate 51 supports the arched frames 81. The four long rods 82 pass through and are fixed to the bottom and top surfaces of the two arched frames 81 respectively. The arched frames 81 support the long rods 82. The snow guards 83 are fixed to the top surfaces of the four long rods 82. The long rods 82 support the snow guards 83. The snow guards 83 are arranged above the chassis 1. The snow guards 83 prevent rain and snow from covering the chassis 1. The strip box 84 is fixed to the bottom surface of the snow guards 83. The snow guards 83 support the strip box 84. The slide of the strip box 84 is opened in the middle of the front of the strip box 84. The square groove of the strip box 84 is opened in the middle of the bottom surface of the strip box 84. The driving module 8 The servo motor 85 includes a servo motor and a roller. The driving module 85 is slidably mounted on the bottom end of the inner portion of the bar box 84. The roller is fixedly mounted on the front face of the servo motor. The roller is rotatably mounted on the inner wall of the slide groove of the bar box 84. The servo motor shaft of the driving module 85 drives the roller to rotate back and forth. The roller rotates back and forth in the slide groove of the bar box 84. Under the action of friction, the roller moves back and forth in the slide groove of the bar box 84. The roller drives the servo motor to move back and forth. The U-shaped sweeping plate 86 is fixedly mounted on the bottom surface of the servo motor. The servo motor of the driving module 85 drives the U-shaped sweeping plate 86 to move back and forth. The U-shaped sweeping plate 86 is slidably mounted inside the square groove of the bar box 84. The U-shaped sweeping plate 86 is arranged on the top surface of the snow guard 83, so that the U-shaped sweeping plate 86 can sweep away the snow on the snow guard 83 back and forth, thereby preventing the equipment from being damaged by rain and snow caused by the accumulation of rain and snow on the distribution box.
[0030] The snow blocking device 8 also includes two snow scrapers 87, two U-shaped frames 88 and two sponge rollers 89. The two snow scrapers 87 are respectively fixed on the top of the left and right sides of the U-shaped sweeping plate 86. The U-shaped sweeping plate 86 drives the snow scrapers 87 to move back and forth left and right. The two snow scrapers 87 are arranged in an eight-shaped shape. The two U-shaped frames 88 are respectively fixed on the top surfaces of the two snow scrapers 87. The snow scrapers 87 drive the U-shaped frames 88 to move back and forth left and right. The two sponge rollers 89 are respectively rotatably installed on the inner walls of the two U-shaped frames 88. The two sponge rollers 89 are respectively rotatably set on the top surfaces of the snow guards 83. The U-shaped frames 88 drive the sponge rollers 89 to move back and forth left and right. During the reciprocating movement of the snow scrapers 87, the ice on the snow guards 83 is scraped off, and the sponge rollers 89 roll to wipe off the snow water on the snow guards 83, thereby preventing the ice on the distribution box from melting and seeping into the chassis 1, causing the equipment to be damaged by rain and snow.
[0031] When the distribution box is installed, the chassis 1 supports the round shell 61, the round shell 61 supports the motor 62, and the round shell 61 supports the circular filter 63. During daily use, the gas enters the round shell 61 from the air inlet of the round shell 61, and the air in the round shell 61 is filtered through the circular filter 63 to prevent dust from entering the chassis 1. The gas enters the chassis 1 to cool the temperature of the controller 2. At the same time, the motor 62 is started with an electric wire, and the shaft of the motor 62 starts to rotate forward. The shaft of the motor 62 drives the cross rod 64 to rotate forward, so that the cross rod 64 evenly stirs the gas into the chassis 1 to prevent uneven accumulation of gas in the chassis 1, thereby avoiding the problem of uneven accumulation of gas in the chassis 1 when the distribution cabinet is cooled at high temperature, causing the equipment to be corroded by gas accumulation.
[0032] While the shaft of the motor 62 drives the cross rod 64 to rotate forward, the cross rod 64 drives the hollow column 65 to rotate forward, the hollow column 65 drives the mesh tube 66 to rotate forward, and the mesh tube 66 drives the columnar dehumidification block 67 to rotate forward. During the forward rotation of the columnar dehumidification block 67, the contact area with the gas is increased to prevent moisture in the gas from accumulating in the chassis 1, thereby avoiding the problem of moisture accumulation in the distribution box causing the equipment to become damp.
[0033] While the motor 62 shaft drives the cross rod 64 to rotate forward, the chassis 1 supports the vertical frame 72, the vertical frame 72 supports the fan plate 73, and the cross rod 64 drives the L-shaped lever 71 to rotate forward. The L-shaped lever 71 shifts the fan plate 73 during the forward rotation, and the fan plate 73 rotates to the left in the vertical frame 72. The fan plate 73 is restricted by the arc-shaped spring sheet 74. The arc-shaped spring sheet 74 resets the fan plate 73 under the action of elastic force, so that the fan plate 73 fans the gas in the chassis 1 back and forth, preventing the gas from accumulating under the chassis 1, thereby avoiding the problem of gas accumulation under the chassis 1 in the distribution box causing the bottom of the chassis 1 to age too quickly.
[0034] As the fan plate 73 flaps back and forth left and right, the fan plate 73 drives the curved plate 75 to move back and forth left and right, the curved plate 75 drives the round rod 76 to move back and forth left and right, the round rod 76 drives the circular slider 77 to move back and forth left and right, and the circular slider 77 moves back and forth left and right on the circular filter screen 63. In the process of the reciprocating fan plate 73 flapping left and right, a certain vibration amplitude will be generated, and the fan plate 73 transmits the vibration to the curved plate 75, the curved plate 75 transmits the vibration to the round rod 76, the round rod 76 transmits the vibration to the circular slider 77, and the circular slider 77 transmits the vibration to the circular filter screen 63, causing the circular slider 77 to vibrate when moving on the circular filter screen 63, and the circular filter screen 63 vibrates to shake off impurities, preventing the circular filter screen 63 from being blocked and causing poor air intake effect of the equipment, thereby avoiding the problem of poor cooling effect of the equipment caused by blockage of the circular filter screen 63 of the distribution box.
[0035] The servo motor of the driving module 85 drives the U-shaped sweeping plate 86 to move back and forth, so that the U-shaped sweeping plate 86 sweeps the snow on the snow guard 83 back and forth to prevent the snow from accumulating on the snow guard 83, thereby avoiding the problem of rain and snow accumulating on the distribution box and causing the equipment to be damaged by rain and snow.
[0036] While the servo motor of the driving module 85 drives the U-shaped sweeping plate 86 to move back and forth, the U-shaped sweeping plate 86 drives the snow scraper 87 to move back and forth, the snow scraper 87 drives the U-shaped frame 88 to move back and forth, and the U-shaped frame 88 drives the sponge roller 89 to move back and forth. After rain and snow, snow water will freeze on the snow guard 83. During the reciprocating movement of the snow scraper 87, the ice on the snow guard 83 is scraped off, and the sponge roller 89 rolls to wipe off the snow water on the snow guard 83 to prevent the ice on the snow guard 83 from melting and penetrating into the chassis 1, thereby avoiding the problem of ice on the distribution box melting and penetrating into the chassis 1, causing the equipment to be damaged by rain and snow.
[0037] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A distribution box with an installation structure, comprising a chassis (1), a controller (2), a plurality of cables (3) and a wire management box (4), wherein the controller (2) is fixedly installed on the top of the inner wall of the chassis (1), a plurality of the cables (3) are respectively rotatably and fixedly installed on the bottom of the front of the controller (2), a plurality of the cables (3) are respectively passed through and slidably installed on the bottom of the back of the chassis (1), and the wire management box (4) is located at the bottom of the back of the chassis (1), characterized in that: It also includes a mounting device (5), an air-leveling device (6), an anti-deposition device (7) and a snow-blocking device (8), wherein the mounting device (5) is arranged on the bottom surface of the chassis (1), the air-leveling device (6) is arranged on the inner wall of the air inlet of the chassis (1), the anti-deposition device (7) is arranged on the outer wall of the air-leveling device (6), and the snow-blocking device (8) is arranged on both sides of the bottom surface of the mounting device (5); The mounting device (5) comprises a support plate (51), four support columns (52), two L-shaped plates (53) and a bidirectional electric telescopic rod (54), wherein the support plate (51) is arranged on the bottom surface of the chassis (1), the circular hole of the support plate (51) is opened in the middle of the top surface of the support plate (51), the four support columns (52) are respectively fixed on the four sides of the bottom surface of the support plate (51), the mounting plates of the four support columns (52) are respectively fixed on the bottom surface of the support columns (52), the two L-shaped plates (53) are respectively fixed on both sides of the top surface of the support plate (51), and the bidirectional electric telescopic rod (54) is fixed at the bottom end inside the chassis (1).
2. The distribution box with a mounting structure according to claim 1, characterized in that: The mounting device (5) further comprises four concave strip blocks (55), four arc-shaped spring pieces (56) and four top arc plates (57), wherein the four concave strip blocks (55) are respectively fixed on both sides of the opposite surfaces of the two L-shaped plates (53), the four arc-shaped spring pieces (56) are respectively embedded in the inner walls of the four concave strip blocks (55), and the four top arc plates (57) are respectively fixed on the opposite surfaces of the four arc-shaped spring pieces (56).
3. The distribution box with a mounting structure according to claim 2, characterized in that: The air homogenizing device (6) comprises a circular shell (61), a motor (62), a circular filter (63) and a cross rod (64), wherein the circular shell (61) is fixed to the inner wall of the air inlet of the chassis (1), the motor (62) is fixedly mounted on the bottom end of the inner side of the circular shell (61), the circular filter (63) is fixed to the top of the inner wall of the circular shell (61), the cross rod (64) is fixed to the top of the outer wall of the rotating shaft of the motor (62), and the cross rod (64) is arranged below the bidirectional electric telescopic rod (54).
4. The distribution box with a mounting structure according to claim 3, characterized in that: The gas homogenizing device (6) further comprises four hollow columns (65), four mesh cylinders (66) and four columnar dehumidification blocks (67). The four hollow columns (65) are respectively fixed on the front side of the cross rod (64), the four mesh cylinders (66) are respectively fixed on the inner walls of the four hollow columns (65), and the four columnar dehumidification blocks (67) are respectively fixed on the front and back sides of the four mesh cylinders (66).
5. The distribution box with a mounting structure according to claim 4, characterized in that: The anti-deposition device (7) comprises four L-shaped levers (71), two vertical frames (72), two fan plates (73) and four arc-shaped spring sheets (74). The four L-shaped levers (71) are respectively fixed to the right side of the outer wall of the cross bar (64), the two vertical frames (72) are respectively fixed to the bottom end of the inside of the chassis (1), the two fan plates (73) are respectively rotatably mounted on the inner walls of the two vertical frames (72), the four arc-shaped spring sheets (74) are respectively fixed to the left side of the two vertical frames (72), and the ends of the four arc-shaped spring sheets (74) away from the two vertical frames (72) are respectively fixed to the left side of the two fan plates (73), and the two fan plates (73) are respectively located on the movement tracks of the four L-shaped levers (71).
6. The distribution box with a mounting structure according to claim 5, characterized in that: The anti-deposition device (7) further comprises two arc-shaped plates (75), two round rods (76) and two round sliders (77), wherein the two arc-shaped plates (75) are respectively fixed to the left bottom of the two fan plates (73), the two round rods (76) are respectively fixed to the bottom surfaces of the two arc-shaped plates (75), the two round sliders (77) are respectively fixed to the bottom surfaces of the two round rods (76), and the two round sliders (77) are respectively slidably arranged on the top surface of the circular filter screen (63).
7. The distribution box with a mounting structure according to claim 6, characterized in that: The snow blocking device (8) includes two circular frames (81), four long rods (82), a snow blocking plate (83), a strip box (84), a driving module (85) and a U-shaped sweeping plate (86), wherein the two circular frames (81) are respectively fixed on both sides of the bottom surface of the support plate (51), the four long rods (82) respectively penetrate and are fixed on the bottom surface and top surface of the two circular frames (81), the snow blocking plate (83) is fixed on the top surface of the four long rods (82), the strip box (84) is fixed on the bottom surface of the snow blocking plate (83), the sliding groove of the strip box (84) is opened in the middle of the front surface of the strip box (84), the square groove of the strip box (84) is opened in the middle of the bottom surface of the strip box (84), the driving module (85) is slidably installed at the bottom end of the strip box (84), and the U-shaped sweeping plate (86) is fixedly installed on the bottom surface of the driving module (85).
8. The distribution box with a mounting structure according to claim 7, characterized in that: The snow blocking device (8) further comprises two snow scrapers (87), two U-shaped frames (88) and two sponge rollers (89), wherein the two snow scrapers (87) are respectively fixed to the top of the left and right sides of the U-shaped sweeping plate (86), the two U-shaped frames (88) are respectively fixed to the top surfaces of the two snow scrapers (87), and the two sponge rollers (89) are respectively rotatably mounted on the inner walls of the two U-shaped frames (88).
Citation Information
Patent Citations
Distribution box with auxiliary installation structure
CN210273222U