Temporary insulation baffle plate of power box body
By designing a temporary insulating baffle, using removable protective panels and connecting panels, the problem of fence protection between small and medium-sized animals and external impurities interference is solved, achieving higher flexibility and protective effects.
Patent Information
- Application Number
- CN202411104869.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-06-24
AI Technical Summary
The prior art has the risk of small animals interfering with external impurities when using fence protection.
Design a temporary insulating baffle for the power box, including a fixed bracket, a removable protective plate and a connecting plate. The protective plate and the connecting plate are removable connections, which can adapt to different connection positions, improve flexibility, and provide full protection in areas where connections are not required.
It improves flexibility and protection area during construction, reduces interference from external factors, protects work quality, and improves the protection effect of power boxes.
Smart Images

Figure CN120193709A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrical accessories, and in particular to a temporary insulating baffle for an electrical box body. Background Art
[0002] Based on some industrial, community renovation or fault situations, it is necessary to temporarily suspend the municipal power supply and switch to the power supply of a power generation vehicle to temporarily solve the power consumption problem. Considering the location of some power distribution boxes and the difficulty of installing fences, it is necessary to design a special protective bracket to prevent external interference factors from entering the electrical box body during the work process.
[0003] For example, the publication number "CN118155351A" discloses a "movable fence alarm device and its use method", which includes a vertical pole and a telescopic strap. A cylindrical housing is arranged at the top of the vertical pole, and a circuit board is arranged inside the cylindrical housing. The circuit board includes a control module, a human body detection module, a signal transceiver module, an alarm module and a battery module. The alarm module is connected to a buzzer and an LED light. The buzzer is arranged inside the cylindrical housing, and the LED light is arranged on the upper part of the cylindrical housing. An installation seat is arranged at the bottom of the vertical pole, an infrared sensor is installed on the installation seat, and a base is bolted to the bottom of the installation seat. However, in actual applications, when using a fence for protection, there is a risk of small animals breaking in, and at the same time, due to the hollow setting of the fence, there is also a risk of interference from flying stones and fallen leaves. Summary of the Invention
[0004] Aiming at the problems of small animals breaking in and external impurities interfering in the prior art mentioned in the background art, the present invention provides a temporary insulating baffle for an electrical box body, which can increase the safety of protection, reduce external factor interference, protect the work quality, and improve the protection of the electrical box body on the basis of ensuring that the electrical box body can be adaptively connected to the connection tool.
[0005] To achieve the above object, the present invention adopts the following technical solutions.
[0006] A temporary insulating baffle for an electric power box body includes a fixed bracket. The fixed bracket includes several mounting parts, and each mounting part is detachably connected with an adjusting plate. The adjusting plate includes a protection plate and a connecting plate. When the protection plate is connected to the mounting part, the protection plate covers the mounting part. When the connecting plate is connected to the mounting part, there is a connection area between the connecting plate and the mounting part. The adjusting plate is divided into a protection plate and a connecting plate. Since the adjusting plate and the mounting part are detachably connected, the positions of the protection plate and the connecting plate can be adaptively changed, improving flexibility. The protection plate can cover the mounting part, and when the connecting plate is connected to the mounting part, a connection area can be formed between the connecting plate and the mounting part. The connection area can place connection tools, which are tools for connecting operations with the electric power box body. Therefore, the connection area only exists in the area where the connection tools need to be connected, and the rest of the area can be covered by the protection plate to form a protection effect. Therefore, in this application, through the detachable protection plate and connecting plate, the protection effect can be improved, the connection between the connection tools and the electric power box body can be ensured, and different connection positions can be adapted, with better flexibility.
[0007] Preferably, the fixed bracket includes a main frame beam, several positioning grooves are arranged on the main frame beam, a baffle buckle is arranged at the end of the adjusting plate close to the main frame beam, and the baffle buckle is snap-connected to the positioning groove. The positioning groove and the baffle buckle are snap-connected, which can be quickly disassembled and the disassembly and assembly efficiency can be improved.
[0008] Preferably, the positioning groove includes an installation opening, the installation opening communicates with a sinking groove, and when the adjusting plate is connected to the mounting part, the baffle buckle is connected to the sinking groove. The installation opening can facilitate installation and disassembly more conveniently, and the sinking groove can prevent the baffle buckle from disengaging from the positioning groove and provide a limiting effect for the baffle buckle.
[0009] Preferably, the installation directions of the respective adjusting plates in the positioning grooves are parallel. When the adjusting plates are connected to the installation part, the plate surfaces of the adjusting plates abut against the plate surfaces of adjacent adjusting plates. The positioning grooves are parallel to the installation directions of the respective adjusting plates, and there is an offset between the installation direction inside the positioning grooves and the extending direction of the main girder. Although the installation directions of the respective positioning grooves are parallel, the installation directions of the respective positioning grooves are not on the same straight line. Therefore, when the adjusting plates are installed on the respective positioning grooves, the upper and lower adjacent adjusting plates are not aligned end to end, but are in a parallel state of overlapping with displacement, that is, the plate surfaces of the upper and lower adjusting plates partially fit, and the upper and lower adjusting plates are in a parallel state; due to the inclined setting of the positioning grooves, and the installation directions of the respective positioning grooves are parallel, and the size of the protective plate is set to be larger than that of the installation part, the adjacent adjusting plates can fit together, presenting a partial overlapping state. During the installation and disassembly of the adjusting plates, the restraint and limiting effect of the adjacent adjusting plates can be avoided, and since there is an overlapping area between the adjacent adjusting plates, a better protective effect can be obtained. Moreover, when impacted, the impact force can be dispersed to the adjacent adjusting plates, improving the impact resistance; further, during the disassembly process, since the respective adjusting plates are arranged with displacement, one of the adjusting plates can still be taken out alone without disassembling the other adjusting plates. When it is necessary to change the position of the connecting plate, only the protective plates and connecting plates on the two installation parts to be swapped need to be swapped, and the other protective plates do not need to be removed again, further improving the installation efficiency.
[0010] Preferably, the connecting plate includes a placement edge. When the connecting plate is connected to the installation part, a connection area is formed between the placement edge and the installation part. The placement edge provides a supporting effect for the tools connected to the power box body here. A connection area is formed between the placement edge and the installation part, and the connecting tool can be connected to the power box body within the connection area.
[0011] Preferably, a plurality of card slots are provided on the placement edge. The card slots are of a semi-circular structure, and the opening directions of the card slots are upward. A plurality of card slots are provided on the placement edge, and the card slots can provide a supporting effect for the connecting tool. The card slots are of a semi-circular structure, which can provide a better limiting restraint and supporting effect for the connecting tool.
[0012] Preferably, a plurality of telescopic strips are slidably connected to the connecting plate. When the connecting plate is connected to the installation part, the telescopic strips are located in the connection area. A dial is arranged on the telescopic strips. The sliding of the telescopic strips can form a connection opening adapted to the connection tool in the connection area. A plurality of telescopic strips are arranged on the placement edge. The arrangement direction of the telescopic strips is horizontal, and the telescopic direction of the telescopic strips is vertical. Each telescopic strip is independently slidably connected to the connecting plate. Therefore, each telescopic strip can form various shapes on the connecting plate according to needs, so as to adapt to the connection of different numbers and different sizes of connection tools to the power box body, improving flexibility. In the remaining places where no connection is required, the telescopic strips remain in a state of fully protruding from the connecting plate, so that in the entire protection area, only the area where the connection tool needs to be avoided has a gap, and the remaining areas are kept in a protected state, improving the safety of protection.
[0013] Preferably, the fixed bracket includes a fixed bottom plate, and main frame beams are connected to both sides of the fixed bottom plate. The main frame beams are connected to a top cross beam at the end far from the fixed bottom plate. The main frame beams are connected to the fixed bottom plate and the top cross beam on the upper and lower sides, and are fixed through the fixed bottom plate and the top cross beam to ensure the stability of the main frame beams.
[0014] Preferably, the top cross beam includes rotating side cross beams respectively connected to the main frame beams on both sides. The rotating side cross beams are rotatably connected to the main frame beams, and fixing members are connected to the rotating side cross beams. The top cross beam is divided into two parts, namely the rotating side cross beams rotatably connected to the main frame beams on both sides. The two rotating side cross beams can rotate relative to their respective main frame beams, and fixing members for fixing are arranged on the rotating side cross beams. After the rotating side cross beams rotate in place, the rotating side cross beams can be fixed and limited relative to the main frame beams through the fixing members; the two rotating side cross beams are not an integral structure. After the two rotating side cross beams rotate, the space between the ends of the main frame beams loses restraint, and the removal operation of the adjusting plate can be carried out quickly, improving the disassembly and assembly efficiency. At the same time, gaps are avoided between the main frame beams, fully ensuring the protection effect.
[0015] Preferably, openings are arranged on the top cross beam, a clamping block is arranged at one end of the main frame beam close to the top cross beam, the clamping block is snap-fitted with the opening, and a reinforcing member is connected to the top cross beam. The reinforcing member penetrates through the top cross beam and is connected to the clamping block. Quick fixing and limiting are realized through the opening and the clamping block, and further strengthening constraints are carried out through the reinforcing member to improve stability.
[0016] The beneficial effects of the present invention are as follows: (1) It can improve the flexibility during the construction process. On the basis of ensuring the connection flexibility, the protection area is maximally increased to ensure safety; (2) During the process of changing the position of the connecting plate, the disassembly and assembly efficiency can be improved; (3) It can completely protect the parts of the connection area that do not need to be connected, further improving the protection coverage. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is an axonometric view of the present invention.
[0018] Figure 2 is a partial cross-sectional view of the present invention.
[0019] Figure 3 is a first partial axonometric view of the present invention.
[0020] Figure 4 is a second partial axonometric view of the present invention.
[0021] Figure 5 is a partial front view of the present invention.
[0022] Figure 6 is a partial axonometric view of Embodiment 3.
[0023] Figure 7 is a side view of Embodiment 4.
[0024] Figure 8 is an axonometric cross-sectional view of Embodiment 4.
[0025] Figure 9 is a partial axonometric view of Embodiment 5.
[0026] In the figure: 1 fixing bracket, 11 mounting part, 12 main frame beam, 121 positioning groove, 122 mounting opening, 123 sinking groove, 124 clamping block, 13 fixing bottom plate, 14 top cross beam, 141 rotating side cross beam, 142 opening, 15 fixing member, 16 reinforcing member; 2 adjusting plate, 21 protection plate, 22 connecting plate, 221 connecting area, 23 baffle buckle, 24 placing edge, 241 clamping groove, 242 telescopic strip, 243 dial, 244 connecting opening, 245 blocking strip. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0028] Embodiment 1: As Figure 1As shown in the figure, a temporary insulating baffle for an electric power box body includes a fixed bracket 1. The fixed bracket 1 includes several mounting parts 11. Each mounting part 11 is detachably connected with an adjusting plate 2. The adjusting plate 2 includes a protective plate 21 and a connecting plate 22. When the protective plate 21 is connected to the mounting part 11, the protective plate 21 covers the mounting part 11. When the connecting plate 22 is connected to the mounting part 11, there is a connection area 221 between the connecting plate 22 and the mounting part 11. The adjusting plate 2 is divided into the protective plate 21 and the connecting plate 22. Since the adjusting plate 2 and the mounting part 11 are detachably connected, the positions of the protective plate 21 and the connecting plate 22 can be adaptively changed, improving flexibility. The protective plate 21 can cover the mounting part 11, and when the connecting plate 22 is connected to the mounting part 11, a connection area 221 can be formed between the connecting plate 22 and the mounting part 11. The connection tools, which are tools for connecting operations with the electric power box body, can be placed in the connection area 221. Therefore, the connection area 221 only exists in the area where the connection tools need to be connected, and the rest of the area can be covered by the protective plate 21 to form a protective effect. Therefore, in this application, through the detachable protective plate 21 and connecting plate 22, the protective effect can be improved, the connection between the connection tools and the electric power box body can be ensured, and different connection positions can be adapted, with better flexibility.
[0029] As Figure 2 , 3 shown in the figure, the fixed bracket 1 includes a main beam 12. A number of positioning grooves 121 are provided on the main beam 12. A baffle buckle 23 is provided at the end of the adjusting plate 2 close to the main beam 12. The baffle buckle 23 is snap-connected to the positioning groove 121. The snap connection between the positioning groove 121 and the baffle buckle 23 enables quick disassembly and improves the disassembly and assembly efficiency.
[0030] As Figure 2 , 3 shown in the figure, the positioning groove 121 includes a mounting opening 122. The mounting opening 122 communicates with a sinking groove 123. When the adjusting plate 2 is connected to the mounting part 11, the baffle buckle 23 is connected to the sinking groove 123. The mounting opening 122 can facilitate installation and disassembly more conveniently, while the sinking groove 123 can prevent the baffle buckle 23 from disengaging from the positioning groove 121 and provides a limiting effect on the baffle buckle 23.
[0031] As Figure 1 , 5 shown in the figure, the connecting plate 22 includes a placing edge 24. When the connecting plate 22 is connected to the mounting part 11, a connection area 221 is formed between the placing edge 24 and the mounting part 11. The placing edge 24 provides a supporting effect for the tools for connecting to the electric power box body at this place. A connection area 221 is formed between the placing edge 24 and the mounting part 11, and the connection tools can perform connections with the electric power box body within the connection area 221.
[0032] As Figure 1 ,5 As shown, a number of card slots 241 are provided on the placement edge 24. The card slots 241 are of a semi-circular structure, and the opening direction of the card slots 241 is upward. A number of card slots 241 are provided on the placement edge 24. Among them, the card slots 241 can provide a supporting effect for the connecting tool, and the card slots 241 are set in a semi-circular structure, which can provide better limit constraint and supporting effect for the connecting tool.
[0033] As Figure 1 shown, the fixing bracket 1 includes a fixing bottom plate 13. Main frame beams 12 are connected to both sides of the fixing bottom plate 13. A top cross beam 14 is connected to one end of the main frame beam 12 far from the fixing bottom plate 13. The fixing bottom plate 13 and the top cross beam 14 are connected to the upper and lower sides of the main frame beam 12, and are fixed through the fixing bottom plate 13 and the top cross beam 14 to ensure the stability of the main frame beam 12.
[0034] As Figure 1 、 4 shown, an opening 142 is provided on the top cross beam 14. A clamping block 124 is provided at one end of the main frame beam 12 close to the top cross beam 14. The clamping block 124 is snap-connected to the opening 142. A reinforcing member 16 is connected to the top cross beam 14, and the reinforcing member 16 passes through the top cross beam 14 and is connected to the clamping block 124. Quick fixing and limiting are realized through the opening 142 and the clamping block 124, and further strengthening constraints are carried out through the reinforcing member 16 to improve stability.
[0035] In this embodiment, the assembly and working process of the temporary insulating baffle of the power box body are as follows: In this embodiment, a fixing bracket 1 is provided. The fixing bracket 1 includes a fixing bottom plate 13. The fixing bottom plate 13 is a plate-like structure. Main frame beams 12 are provided on the fixing bottom plate 13. The main frame beams 12 are arranged on the left and right sides of the fixing bottom plate 13. A top cross beam 14 is connected to one side of the main frame beam 12 far from the fixing bottom plate 13. The top cross beam 14 connects the main frame beams 12 on both sides. An area for installing the adjusting plate 2 is formed between the main frame beams 12 on both sides and the top cross beam 14 on the upper side and the fixing bottom plate 13 on the lower side. A number of positioning grooves 121 are provided on the main frame beam 12. The positioning grooves 121 can be snap-connected to the baffle buckles 23 on the adjusting plate 2. The area between each positioning groove 121 is the corresponding installation part 11. Each installation part 11 can correspondingly install the adjusting plate 2. Among them, the adjusting plate 2 is further divided into a protection plate 21 and a connecting plate 22 according to the functional type. The protection plate 21 can completely cover and block the installation part 11. When the connecting plate 22 is installed on the installation part 11, a connection area 221 can be formed on the installation part 11. Power tools for connecting the power box body can be placed in the connection area 221.
[0036] Specifically, in this embodiment, a placement edge 24 is provided on the connection plate 22. A number of card slots 241 are provided on the placement edge 24. The card slots 241 are in a semi-circular structure and extend horizontally. During use, it can be placed on different card slots 241 according to the different positions on the power box that need to be connected as required; in this embodiment, an installation opening 122 is provided on the positioning slot 121. The installation opening 122 communicates with a sunk groove 123. The sunk groove 123 sinks downward relative to the installation opening 122. Baffle buckles 23 are respectively provided on both sides of the adjusting plate 2. The baffle buckles 23 can be placed on the positioning slot 121 from the installation opening 122 and then move downward on the sunk groove 123 to abut against the bottom of the sunk groove 123, completing the snap connection between the baffle buckle 23 and the positioning slot 121.
[0037] During the working process, since there are many installation parts 11 in the vertical direction, each installation part 11 can connect the protection plate 21 and the connection plate 22. In actual operation, according to the size and height of the power box and the positions that need to be connected inside the power box, select a suitable placement position for the connection plate 22. After the placement position of the connection plate 22 is fixed, connect the protection plate 21 with the corresponding installation parts 11. The installation sequence is preferably from bottom to top. Since the card slot 241 structure is provided on the connection plate 22, even if the connection plate 22 is arranged between two protection plates 21, there is still a gap at the card slot 241 for placing connection tools. The connection tool passes through the card slot 241 to connect with the internal power box. During the working process, since the protection plate 21 fully covers and shields the installation parts 11, a connection area 221 is formed on the connection plate 22 for placing connection tools. Therefore, on the basis of ensuring the connection of the connection tools, the overall protection effect on the power box is ensured; and when the replacement operation of the power box needs to be carried out, the placement position of the connection plate 22 needs to be changed. Only need to remove the protection plate 21 and the connection plate 22 on the installation parts 11 in sequence, and then reinstall them at the position adapting to the new power box, improving the construction efficiency.
[0038] Embodiment 2: In this embodiment, the assembly and working process of the temporary insulation baffle of the power box are as follows: In this embodiment, a fixed bracket 1 is provided. The fixed bracket 1 includes a fixed bottom plate 13 provided at the bottom. A main frame beam 12 is connected to the fixed bottom plate 13. The main frame beam 12 is arranged on the left and right sides of the fixed bottom plate 13. A top cross beam 14 is provided on the upper part of the main frame beam 12. The top cross beam 14 connects the two main frame beams 12 on both sides. A region for installing the adjusting plate 2 is formed between the two main frame beams 12 on both sides, the upper top cross beam 14 and the lower fixed bottom plate 13.
[0039] In this embodiment, a number of positioning grooves 121 are provided on the main beam 12. The positioning grooves 121 can be engaged with the baffle fasteners 23 on the adjusting plate 2. The area between each positioning groove 121 is the corresponding installation part 11. Each installation part 11 can correspondingly install the adjusting plate 2. When the adjusting plate 2 is connected to the installation part 11, the installation part 11 here can be closed. On the basis of Embodiment 1, furthermore, in this embodiment, no corresponding positioning groove 121 is provided at the end of the main beam 12 close to the top cross beam 14, and there is a spare gap here. Preferably, the size of the main beam 12 can be increased to avoid exposing the power box body in the area where the positioning groove 121 is not provided. The adjusting plate 2 is further divided into a protection plate 21 and a connecting plate 22 according to the functional type. The protection plate 21 can completely cover and block the installation part 11, while when the connecting plate 22 is installed on the installation part 11, a connection area 221 can be formed on the installation part 11, and power tools to be connected to the power box body can be placed in the connection area 221.
[0040] During the working process, since there are many installation parts 11 in the vertical direction, each installation part 11 can connect the protection plate 21 and the connecting plate 22, and no installation part 11 for accommodating the adjusting plate 2 is provided at the end of the main beam 12. In actual operation, according to the size and height of the power box body and the positions to be connected inside the power box body, select the appropriate placement position of the connecting plate 22. After the placement position of the connecting plate 22 is fixed, connect the protection plate 21 with the corresponding installation part 11. The installation sequence is preferably from bottom to top. During the installation of the adjusting plate 2, since there is always an installation part 11 where the adjusting plate 2 has not been installed above, there is sufficient installation clearance for installation. When installing the uppermost adjusting plate 2, due to the installation clearance other than the installation part 11, there is also sufficient installation space for installing the last adjusting plate 2. Since the connecting plate 22 is provided with a card slot 241 structure, when the connecting plate 22 is arranged between two protection plates 21, a gap can still be left at the card slot 241 for placing connection tools; when the replacement operation of the power box body needs to be carried out, the placement position of the connecting plate 22 needs to be changed. Since there is a gap not blocked by the adjusting plate 2 at the top, the uppermost adjusting plate 2 can be quickly taken out upwards, and then the adjusting plates 2 are taken out in sequence from top to bottom, and then reinstalled at the position adapted to the new power box body, improving the construction efficiency.
[0041] Embodiment 3: As Figure 6As shown, different from Embodiment 1, in this embodiment, the top crossbeam 14 includes a rotating side crossbeam 141 that is respectively connected to the main frame beams 12 on both sides. The rotating side crossbeam 141 is rotatably connected to the main frame beam 12, and a fixing member 15 is connected to the rotating side crossbeam 141. The top crossbeam 14 is divided into two parts, namely the rotating side crossbeam 141 that is rotatably connected to the main frame beams 12 on both sides. The two rotating side crossbeams 141 can rotate relative to their respective main frame beams 12, and a fixing member 15 for fixing is provided on the rotating side crossbeam 141. After the rotating side crossbeam 141 rotates to the in-place position, the rotating side crossbeam 141 can be fixed and limited relative to the main frame beam 12 through the fixing member 15; the two rotating side crossbeams 141 are not an integral structure. After the two rotating side crossbeams 141 rotate, the space between the ends of the main frame beams 12 loses restraint, and the removal operation of the adjusting plate 2 can be quickly carried out, improving the disassembly and assembly efficiency. At the same time, gaps are avoided between the main frame beams 12, fully ensuring the protection effect.
[0042] In this embodiment, the assembly and working process of the temporary insulating baffle of the power box body are as follows: In this embodiment, a fixing bracket 1 is provided, and the fixing bracket 1 includes a fixing bottom plate 13. The fixing bottom plate 13 is a plate-like structure, and main frame beams 12 are provided on the fixing bottom plate 13. The main frame beams 12 are arranged on the left and right sides of the fixing bottom plate 13. A top crossbeam 14 is connected to the side of the main frame beam 12 away from the fixing bottom plate 13. The top crossbeam 14 in this embodiment is not a complete structure. The top crossbeam 14 in this embodiment is divided into two parts, namely the rotating side crossbeam 141 that is rotatably connected to the main frame beams 12 on both sides. The two rotating side crossbeams 141 can rotate relative to their respective main frame beams 12, and a fixing member 15 for fixing is provided on the rotating side crossbeam 141. After the rotating side crossbeam 141 rotates to the in-place position, the rotating side crossbeam 141 can be fixed and limited relative to the main frame beam 12 through the fixing member 15; in this embodiment, since the rotating side crossbeam 141 can rotate and the two rotating side crossbeams 141 are not an integral structure, after the two rotating side crossbeams 141 rotate, the space between the ends of the main frame beams 12 loses restraint, and the removal operation of the adjusting plate 2 can be quickly carried out, improving the disassembly and assembly efficiency. At the same time, gaps are avoided between the main frame beams 12, fully ensuring the protection effect.
[0043] During the working process, since there are many mounting parts 11 in the vertical direction, each mounting part 11 can connect the protection plate 21 and the connecting plate 22. In actual operation, according to the size and height of the power box and the positions that need to be connected inside the power box, select a suitable placement position for the connecting plate 22. After the placement position of the connecting plate 22 is fixed, connect the protection plate 21 with the corresponding mounting part 11. The installation sequence is preferably from bottom to top. Since there is a slot 241 structure on the connecting plate 22, even if the connecting plate 22 is arranged between two protection plates 21, there is still a gap left at the slot 241 for placing a connecting tool. The connecting tool passes through the slot 241 to connect with the internal power box. Further, during the installation of the adjusting plate 2, first remove the constraint of the fixing part 15 between the rotating side crossbeam 141 and the main frame beam 12, so that the rotating side crossbeam 141 can rotate relative to the main frame beam 12. Then, turn the two rotating side crossbeams 141 to the two sides respectively to create sufficient space above the mounting part 11, avoiding the interference of the top crossbeam 14 and making the installation efficiency of the adjusting plate 2 higher. After all the adjusting plates 2 are installed, except for the position of the connection area 221, the area between the two main frame beams 12 is completely covered. Rotate the rotating side crossbeam 141, align the two rotating side crossbeams 141, and tighten the fixing part 15 to achieve the constraint and limiting effect on the rotating side crossbeam 141. Preferably, a detachable connecting piece is connected between the two rotating side crossbeams 141 to strengthen the connection relationship between the two rotating side crossbeams 141. During the working process, since the protection plate 21 completely covers and shields the mounting part 11, a connection area 221 is formed on the connecting plate 22 for placing the connecting tool. Therefore, on the basis of ensuring the connection of the connecting tool, the overall protection effect on the power box is ensured. When it is necessary to replace the power box, the placement position of the connecting plate 22 needs to be changed. First, cancel the fixed limit of the rotating side crossbeam 141, then rotate the two rotating side crossbeams 141, and then remove the protection plate 21 and the connecting plate 22 on the mounting part 11 in sequence. Then, reinstall them at the position suitable for the new power box, improving the construction efficiency. Further, in this embodiment, a magnet piece can also be installed between the two rotating side crossbeams 141 to facilitate quick removal and installation.
[0044] Embodiment 4: As Figure 7 , 8As shown, different from Embodiment 1, in this embodiment, the installation directions of the respective adjusting plates 2 in the positioning grooves 121 are parallel. When the adjusting plate 2 is connected to the installation part 11, the plate surface of the adjusting plate 2 abuts against the plate surface of the adjacent adjusting plate 2. The positioning grooves 121 are parallel to the installation directions of the respective adjusting plates 2, and there is an offset between the installation direction inside the positioning grooves 121 and the extending direction of the main frame beam 12, so that although the installation directions of the respective positioning grooves 121 are parallel, the installation directions of the respective positioning grooves 121 are not on the same straight line. Therefore, when the adjusting plate 2 is installed on the respective positioning grooves 121, the upper and lower adjacent adjusting plates 2 are not in a state of being aligned end to end, but in a parallel state of being stacked in a staggered manner, that is, the plate surfaces of the upper and lower adjusting plates 2 partially fit, and the upper and lower adjusting plates 2 are in a parallel state.
[0045] In this embodiment, the assembly and working process of the temporary insulating baffle of the power box body are as follows: In this embodiment, a fixing bracket 1 is provided. The fixing bracket 1 includes a fixing bottom plate 13. The fixing bottom plate 13 is a plate-like structure. A main frame beam 12 is provided on the fixing bottom plate 13. The main frame beam 12 is arranged on the left and right sides of the fixing bottom plate 13. A top cross beam 14 is connected to the side of the main frame beam 12 away from the fixing bottom plate 13. The top cross beam 14 connects the main frame beams 12 on both sides. A region for installing the adjusting plate 2 is formed between the main frame beams 12 on both sides and the top cross beam 14 on the upper side and the fixing bottom plate 13 on the lower side. A plurality of positioning grooves 121 are provided on the main frame beam 12. The positioning grooves 121 can be snap-connected to the baffle fasteners 23 on the adjusting plate 2. The regions between the respective positioning grooves 121 are corresponding installation parts 11. The respective installation parts 11 can correspondingly install the adjusting plate 2. The positioning grooves 121 are parallel to the installation directions of the respective adjusting plates 2, and there is an offset between the installation direction inside the positioning grooves 121 and the extending direction of the main frame beam 12, so that although the installation directions of the respective positioning grooves 121 are parallel, the installation directions of the respective positioning grooves 121 are not on the same straight line. Therefore, when the adjusting plate 2 is installed on the respective positioning grooves 121, the upper and lower adjacent adjusting plates 2 are not in a state of being aligned end to end, but in a parallel state of being stacked in a staggered manner, that is, the plate surfaces of the upper and lower adjusting plates 2 partially fit, and the upper and lower adjusting plates 2 are in a parallel state. Among them, the adjusting plate 2 is further divided into a protection plate 21 and a connecting plate 22 according to the functional type. The protection plate 21 can completely cover and block the installation part 11, and when the connecting plate 22 is installed on the installation part 11, a connection area 221 can be formed on the installation part 11, and power tools to be connected to the power box body can be placed in the connection area 221.
[0046] During the working process, since there are many mounting parts 11 in the vertical direction, each mounting part 11 can connect the protection plate 21 and the connecting plate 22. In actual operation, according to the size and height of the power box and the positions that need to be connected inside the power box, select the appropriate placement position of the connecting plate 22. After the placement position of the connecting plate 22 is fixed, install the protection plate 21 and the connecting plate 22. Among them, due to the inclined setting of the positioning grooves 121 and the installation directions of the positioning grooves 121 being parallel, and the size of the protection plate 21 being larger than that of the mounting part 11, adjacent adjusting plates 2 can fit together, presenting a partial overlapping state. During the installation and disassembly of the adjusting plate 2, the restraint and limiting effect of the adjacent adjusting plates 2 can be avoided. And because there is an overlapping area between adjacent adjusting plates 2, a better protection effect can be obtained. When impacted, the impact force can be dispersed to the adjacent adjusting plates 2, improving the impact resistance ability; further, during the disassembly process, since the adjusting plates 2 are arranged in a staggered manner, one of the adjusting plates 2 can still be taken out alone without disassembling the other adjusting plates 2. When the position of the connecting plate 22 needs to be changed, only the protection plate 21 and the connecting plate 22 on the two mounting parts 11 that need to be swapped need to be swapped, and the other protection plates 21 do not need to be removed again, further improving the installation efficiency.
[0047] Embodiment 5: As Figure 9 shown, different from Embodiment 1, in this embodiment, a number of telescopic strips 242 are slidably connected to the connecting plate 22. When the connecting plate 22 is connected to the mounting part 11, the telescopic strips 242 are located in the connection area 221. A dial 243 is provided on the telescopic strip 242, and the sliding of the telescopic strip 242 can form a connection opening 244 adapted to the connection tool in the connection area 221. A number of telescopic strips 242 are provided on the placing edge 24. The arrangement direction of the telescopic strips 242 is horizontal, and the telescopic direction of the telescopic strips 242 is vertical telescopic. Each telescopic strip 242 is independently slidably connected to the connecting plate 22. Therefore, each telescopic strip 242 can form various shapes on the connecting plate 22 according to needs, so as to adapt to different numbers and sizes of connection tools to connect with the power box, improving the flexibility. In the places where no connection is required, the telescopic strips 242 remain in a state of fully protruding from the connecting plate 22, so that in the entire protection area, only the areas that need to avoid the connection tool have gaps, and the rest of the areas remain in a protected state, improving the safety of protection.
[0048] In this embodiment, the assembly and working process of the temporary insulation baffle of the power box are as follows: In this embodiment, a fixed bracket 1 is provided. The fixed bracket 1 includes a fixed bottom plate 13, which is a plate-like structure. A main frame beam 12 is provided on the fixed bottom plate 13. The main frame beam 12 is arranged on the left and right sides of the fixed bottom plate 13. A top cross beam 14 is connected to the side of the main frame beam 12 away from the fixed bottom plate 13. The top cross beam 14 connects the main frame beams 12 on both sides. An area for installing the adjustment plate 2 is formed between the main frame beams 12 on both sides, the top cross beam 14 on the upper side, and the fixed bottom plate 13 on the lower side. A number of positioning grooves 121 are provided on the main frame beam 12. The positioning grooves 121 can be snap-connected to the baffle fasteners 23 on the adjustment plate 2. The area between each positioning groove 121 is the corresponding installation part 11. Each installation part 11 can correspondingly install the adjustment plate 2. The adjustment plate 2 is further divided into a protection plate 21 and a connection plate 22 according to the functional type. The protection plate 21 can completely cover and block the installation part 11. When the connection plate 22 is installed on the installation part 11, a connection area 221 can be formed on the installation part 11. Power tools to be connected to the power box can be placed in the connection area 221.
[0049] Specifically, in this embodiment, a placement edge 24 is provided on the connection plate 22. A number of telescopic strips 242 are provided on the placement edge 24. The arrangement direction of the telescopic strips 242 is horizontal, and the telescopic direction of the telescopic strips 242 is vertical. Each telescopic strip 242 is independently slidably connected to the connection plate 22. Therefore, each telescopic strip 242 can form various shapes on the connection plate 22 according to needs, so as to adapt to different numbers and sizes of connection tools for connection with the power box, improving flexibility. In other areas where no connection is required, the telescopic strips 242 remain in a state of fully extending out of the connection plate 22, so that in the entire protection area, only the area where the connection tools need to be avoided has gaps, and the rest of the area remains in a protected state, improving the safety of protection; further, a dial 243 is provided on the telescopic strip 242, which can facilitate the staff to adjust the telescopic of the telescopic strip 242; at the same time, a through hole is provided on the main frame beam 12, and a blocking strip 245 is detachably connected in the through hole. After the blocking strip 245 passes through the through hole, it can limit and constrain the dials 243 on the telescopic strips 242 that fully extend out of the connection plate 22. After inserting the blocking strip 245, a limit constraint is also formed in the area where no connection tool is set, avoiding the sliding of the telescopic strips 242 and improving the overall protection stability.
[0050] During the working process, since there are many mounting parts 11 in the vertical direction, each mounting part 11 can connect the protection plate 21 and the connecting plate 22. In actual operation, according to the size and height of the power box and the positions that need to be connected inside the power box, select a suitable placement position for the connecting plate 22. After the placement position of the connecting plate 22 is fixed, connect the protection plate 21 with the corresponding mounting part 11. The installation sequence is preferably from bottom to top. Since there is a retractable strip 242 provided on the connecting plate 22, according to the position and quantity of the connecting tools to be placed, the strip 242 in this area is toggled downward. After the connecting tools are installed, the retaining bar 245 is passed through the perforation. At this time, the retaining bar 245 is arranged below the flap 243, and the downward movement of the strip 242 is limited, improving the overall protection effect. Stable protection is also carried out on the unused positions in the connection area 221, and only a connection opening 244 is formed at the place where the connecting tools are placed, and the position can be adaptively changed according to needs, with better flexibility. Further, the strip can be made of an elastic material, which is convenient for toggling the Xinghe City connection opening in the radial direction. Further, a spring can be provided between the bottom of the strip 242 and the connecting plate 22, so that the strip can eject the connecting plate without external force, facilitating the retaining bar to pass through below the flap 243.
Claims
1. A temporary insulating baffle for a power box, characterized in that: The invention comprises a fixing bracket (1), wherein the fixing bracket (1) comprises a plurality of mounting parts (11), each mounting part (11) is detachably connected to an adjustment plate (2), and the adjustment plate (2) comprises a protective plate (21) and a connecting plate (22), and when the protective plate (21) is connected to the mounting part (11), the protective plate (21) shields the mounting part (11), and when the connecting plate (22) is connected to the mounting part (11), a connecting area (221) is left between the connecting plate (22) and the mounting part (11).
2. The temporary insulating baffle of a power box according to claim 1, characterized in that: The fixed bracket (1) comprises a main frame beam (12), the main frame beam (12) is provided with a plurality of positioning grooves (121), and the end of the adjustment plate (2) close to the main frame beam (12) is provided with a baffle buckle (23), and the baffle buckle (23) is engaged and connected with the positioning groove (121).
3. The temporary insulating baffle of a power box according to claim 2, characterized in that: The positioning groove (121) comprises a mounting opening (122), the mounting opening (122) is connected to a sink groove (123), and when the adjustment plate (2) is connected to the mounting portion (11), the baffle buckle (23) is connected to the sink groove (123).
4. The temporary insulating baffle of a power box according to claim 2, characterized in that: The installation directions of the adjustment plates (2) in the positioning grooves (121) are parallel, and when the adjustment plates (2) are connected in the installation portion (11), the plate surfaces of the adjustment plates (2) abut against the plate surfaces of adjacent adjustment plates (2).
5. A temporary insulating baffle for a power box according to any one of claims 1 to 4, characterized in that: The connecting plate (22) comprises a placement edge (24), and when the connecting plate (22) is connected to the mounting portion (11), a connection area (221) is formed between the placement edge (24) and the mounting portion (11).
6. A temporary insulating baffle for a power box according to claim 5, characterized in that: A plurality of slots (241) are arranged on the placement edge (24); the slots (241) are semicircular structures, and the opening direction of the slots (241) is arranged upward.
7. A temporary insulating baffle for a power box according to any one of claims 1 to 4, characterized in that: A plurality of telescopic strips (242) are slidably connected to the connection plate (22); when the connection plate (22) is connected to the mounting portion (11), the telescopic strips (242) are located in a connection area (221); a paddle (243) is provided on the telescopic strips (242); and the telescopic strips (242) can slide to form a connection opening (244) in the connection area (221) that is compatible with a connection tool.
8. The temporary insulating baffle of a power box according to claim 1, characterized in that: The fixed bracket (1) comprises a fixed bottom plate (13), the two sides of the fixed bottom plate (13) are connected to main frame beams (12), and the main frame beam (12) is connected to a top cross beam (14) at one end away from the fixed bottom plate (13).
9. The temporary insulating baffle of a power box according to claim 7, characterized in that: The top cross beam (14) includes a rotating side cross beam (141) respectively connected to the main frame beams (12) on both sides, the rotating side cross beam (141) is rotatably connected to the main frame beam (12), and a fixing member (15) is connected to the rotating side cross beam (141).
10. A temporary insulating baffle for a power box according to claim 8 or 9, characterized in that: An opening (142) is provided on the top cross beam (14); a clamping block (124) is provided at one end of the main frame beam (12) close to the top cross beam (14); the clamping block (124) is engaged with the opening (142); a reinforcing member (16) is connected to the top cross beam (14); the reinforcing member (16) passes through the top cross beam (14) and is connected to the clamping block (124).
Citation Information
Patent Citations
Movable fence alarm device and use method
CN118155351A