A switchgear for distribution box
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-09
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]上述中的相关技术,对柜体的电子元件进行线路连接时,由于柜体内部空间有限且需要安装的线路较多,不便进行安装,影响安装效率
1、设置安装架通过滑杆和滑动套之间滑动配合,在需要安装电子元件或者线路时,将安装架通过滑杆移动至柜体的外部,以便进行安装,减少因柜体内安装空间有限带来的不便,提升安装效率。
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Figure CN116093778B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of distribution boxes, and in particular to a distribution box switch cabinet. Background Technology
[0002] Distribution boxes and switch cabinets are electrical equipment characterized by their small size, easy installation, special technical performance, fixed location, unique configuration functions, no site restrictions, wide application, stable and reliable operation, high space utilization, small footprint, and environmental benefits.
[0003] The structure of the distribution box switchgear in the relevant technology includes a cabinet and a cabinet door installed on the cabinet. There are multiple mounting racks installed inside the cabinet. The mounting racks are used to install electronic components. Then, the external power supply is connected to the inside of the cabinet by wires. The switchgear controls the power supply to various electronic components at the next level.
[0004] The aforementioned technologies, when connecting electronic components in the cabinet, are inconvenient to install due to the limited internal space and the large number of lines required, thus affecting installation efficiency. Summary of the Invention
[0005] To improve installation efficiency, this application provides a distribution box switch cabinet.
[0006] The technical solution adopted in this application for a distribution box switchgear is as follows: A distribution box switch cabinet includes a cabinet body and a mounting frame installed inside the cabinet body. The mounting frame is provided with multiple sliding rods, which are arranged around the mounting frame. The cabinet body is provided with multiple sliding sleeves corresponding to the multiple sliding rods. The sliding rods are slidably arranged inside the sliding sleeves in a direction toward the outside of the cabinet body. The mounting frame is installed inside the cabinet body through the sliding sleeves.
[0007] By adopting the above technical solution, the mounting bracket is installed inside the cabinet via a sliding rod and a sliding sleeve. When it is necessary to install electronic components or wiring, the mounting bracket is moved to the outside of the cabinet via the sliding rod to install the electronic components and wiring, thereby improving installation efficiency.
[0008] Optionally, the slide rod has an internal mounting groove, the slide rod and the inner wall of the sliding sleeve are spaced apart, the slide rod has a through groove on the side near the bottom of the cabinet, the through groove is connected to the mounting groove, an auxiliary plate is slidably arranged in the through groove towards the bottom of the cabinet, the auxiliary plate has an auxiliary ball rotating on the side away from the mounting groove, and the slide rod is provided with an adjustment component for adjusting the position of the auxiliary plate.
[0009] By adopting the above technical solution, the position of the auxiliary plate is adjusted by setting an adjustment component. When the mounting bracket needs to be moved, the position of the auxiliary plate is adjusted so that the auxiliary ball and the inner wall of the mounting sleeve abut against each other, and the side of the slide rod near the bottom of the cabinet is spaced apart from the inner wall of the sliding sleeve. This reduces the friction between the slide rod and the sliding sleeve when the slide rod slides, so as to adjust the position of the mounting bracket.
[0010] Optionally, the mounting bracket includes a support rod connected to a slide rod. A receiving groove is formed on the support rod and communicates with the mounting groove. The adjustment assembly includes an adjustment rod, a push plate, and an adjustment block. The adjustment rod is positioned within the mounting groove along the length of the slide rod. The push plate is positioned within the receiving groove. The end of the adjustment rod extends into the receiving groove and connects to the push plate. The adjustment block is connected to an auxiliary plate. An adjustment groove is formed on the side of the adjustment rod along its length. The end of the adjustment groove opposite to the push plate is inclined in a direction opposite to the auxiliary plate. A first intermediate block is provided on the adjustment block, positioned within the adjustment groove, and slides within the adjustment groove along its inclined direction.
[0011] By adopting the above technical solution, a push plate is pushed, the push plate moves and drives the adjusting rod to move, the adjusting rod moves and drives different positions in the adjusting groove to cooperate with the first intermediate block, and the first intermediate block drives the auxiliary plate to move, thereby adjusting the position of the auxiliary plate and the auxiliary ball.
[0012] Optionally, a sliding sleeve is provided on the side of the push plate away from the adjusting rod, and an insert rod is slidably disposed inside the sliding sleeve. An insert sleeve is provided on the support rod, and the insert rod slides into the insert sleeve to fix the position of the push plate.
[0013] By adopting the above technical solution, after the position of the auxiliary ball is adjusted by the moving adjusting rod, the moving insert rod moves the insert rod into the insert sleeve to fix the push plate, thereby fixing the position of the adjusting rod, reducing the phenomenon of the auxiliary ball shifting relative to the adjusting rod, and improving the stability of the fit between the auxiliary ball and the sliding sleeve.
[0014] Optionally, a top groove is formed on the side of the slide rod opposite to the through groove. The top groove is connected to the mounting groove. A top block is slidably arranged in the top groove. A guide groove is formed on the side of the adjusting rod. The guide groove and the adjusting groove are arranged parallel and spaced apart. A second intermediate block is provided on the top block. The second intermediate block is slidably arranged in the guide groove. The top block slides to the outside of the top groove and abuts against the inner wall of the sliding sleeve to fix the slide rod. The push plate includes a receiving part, a rotating part, and a bending part. The rotating part is arranged between the receiving part and the bending part. The receiving part is connected to the adjusting rod. The rotating part and the receiving part are rotatably connected. The bending part is arranged perpendicular to the rotating part. A first fastening piece is provided on the side of the bending part near the support rod. A second fastening piece is provided on the side of the support rod adjacent to the receiving groove. The bending part rotates to drive the first fastening piece and the second fastening piece to engage to fix the receiving part.
[0015] By adopting the above technical solution, after installation, the slide rod is slid to the initial position, and then the adjusting rod is slid to the initial position. At the same time, the auxiliary ball and the sliding sleeve are separated, and the top block moves to the outside of the top groove and abuts against the side wall of the sliding sleeve to fix the position of the slide rod, thereby fixing the position of the mounting bracket.
[0016] Optionally, the mounting bracket further includes a mounting rod, the support rod having multiple placement slots spaced vertically along the support rod, the mounting rod having a placement rod inserted into the placement slot, the mounting rod being connected to the support rod via the placement rod, the support rod having a clearance slot communicating with the multiple placement slots, and the placement rod sliding within the clearance slot.
[0017] By adopting the above technical solution, the placement rod is moved through the clearance groove to engage with different placement grooves, thereby adjusting the position of the installation rod to adapt to different installation requirements.
[0018] Optionally, both the clearance groove and the placement groove are connected to the receiving groove, and the placement rod is provided with a locking part, which is disposed in the receiving groove.
[0019] By adopting the above technical solution, the snap-fit part is set in the receiving groove, which reduces the phenomenon of the mounting rod and the support rod detaching, and improves the stability of the cooperation between the two.
[0020] Optionally, the receiving part has multiple slots along the vertical direction, and the multiple slots and multiple placement slots are correspondingly arranged. Every two corresponding slots and placement slots are arranged in the same horizontal plane, and the receiving part is engaged in the slot.
[0021] By adopting the above technical solution, after installation, the receiving part is moved to the initial position, and at the same time, the receiving plate drives the slot and the receiving part to snap together, reducing the phenomenon of the receiving part shifting, thereby fixing the position of the mounting rod.
[0022] Optionally, the rotating part is spaced apart from the side of the snap-fit part near the receiving groove, and the snap-fit part is located at the gap between the rotating part and the receiving groove.
[0023] By adopting the above technical solution, after the receiving part moves and the slot and the locking part separate, the rotating part moves to the receiving part, and the locking part can move in the gap between the rotating part and the inner wall of the receiving groove, reducing the phenomenon of the rotating part interfering with the movement of the locking part.
[0024] Optionally, two sets of support rods and adjusting components are provided, two sets of slide rods and sliding sleeves are provided, and two sets of support rods are provided, respectively. The receiving groove is connected to the mounting grooves in the two slide rods, and the push plate is connected to the adjusting rods in the two slide rods.
[0025] By adopting the above technical solution, the push plate is connected to two slide rods at the same time, and the positions of the two slide rods are adjusted simultaneously when the push plate is moved, thereby improving the adjustment efficiency of the slide rods.
[0026] In summary, this application includes at least one of the following beneficial technical effects: 1. The mounting bracket is set up by sliding between the sliding rod and the sliding sleeve. When it is necessary to install electronic components or circuits, the mounting bracket can be moved to the outside of the cabinet by the sliding rod to facilitate installation, reducing the inconvenience caused by the limited installation space inside the cabinet and improving installation efficiency. Attached Figure Description
[0027] Figure 1 This is a structural schematic diagram of the distribution box switchgear according to an embodiment of this application.
[0028] Figure 2 This is a partial cutaway view of the distribution box switchgear according to an embodiment of this application.
[0029] Figure 3 This is a cross-sectional view of the slide bar in the distribution box switchgear according to an embodiment of this application.
[0030] Figure 4 This is a structural view of the regulating component in the distribution box switchgear according to an embodiment of this application.
[0031] Figure 5 This is a structural view of the plug rod in the distribution box switch cabinet according to an embodiment of this application.
[0032] Figure 6 This is a structural view of the slot placed in the distribution box switch cabinet according to an embodiment of this application.
[0033] Figure 7 This is a structural view of the rod placed in the distribution box switch cabinet according to an embodiment of this application.
[0034] Figure 8 This is a structural view of the card slot in the distribution box switchgear according to an embodiment of this application.
[0035] Reference numerals: 1. Cabinet body; 11. Cabinet door; 2. Mounting bracket; 21. Support rod; 211. Receiving groove; 212. Second fastener; 22. Mounting rod; 23. Placement groove; 24. Clearance groove; 3. Sliding rod; 31. Mounting groove; 32. Through groove; 33. Top groove; 4. Sliding sleeve; 5. Auxiliary component; 51. Auxiliary plate; 52. Auxiliary ball; 6. Adjustment component; 61. Adjustment rod; 611. Adjustment groove; 612. Guide groove; 62. Push plate; 621. Receiving part; 622. Rotating part; 623. Bending part; 624. First fastener; 63. Adjustment block; 631. First intermediate block; 7. Sliding sleeve; 71. Insert rod; 72. Insert sleeve; 8. Top block; 81. Second intermediate block; 9. Placement rod; 91. Snap-fit part; 92. Snap-fit groove. Detailed Implementation
[0036] The following is in conjunction with the appendix Figure 1-8 This application will be described in further detail.
[0037] This application discloses a distribution box switchgear. (Refer to...) Figure 1 and Figure 2 The distribution box switch cabinet includes a cabinet body 1 and a cabinet door 11 installed on the cabinet body 1. A mounting bracket 2 is provided inside the cabinet body 1, and electronic components are installed inside the cabinet body 1 through the mounting bracket 2.
[0038] Reference Figure 2 and Figure 3 A sliding rod 3 is provided on the mounting bracket 2, located on the side of the mounting bracket 2 away from the cabinet door 11. Multiple sliding rods 3 are provided, arranged around the mounting bracket 2. In this embodiment, four sliding rods 3 are provided, each located near a corner of the mounting bracket 2. The sliding rod 3 is positioned horizontally towards the outside of the cabinet 1. A sliding sleeve 4 is provided inside the cabinet 1, extending along the length of the sliding rod 3. The sliding rod 3 is housed within the sliding sleeve 7 and slides within its own length. When installing electronic components, the mounting bracket 2 can be slid to the outside of the cabinet 1 via the sliding rods 3, allowing for the installation of electronic components and wiring, thus improving installation efficiency.
[0039] Reference Figure 3 and Figure 4An installation groove 31 is provided inside the slide rod 3, and the slide rod 3 and the sliding sleeve 4 are spaced apart. A through groove 32 is provided on the side of the slide rod 3 near the bottom of the cabinet 1. The installation groove 31 and the through groove 32 are connected. An auxiliary component 5 is provided in the through groove 32. The auxiliary component 5 includes an auxiliary plate 51 and auxiliary balls 52. The auxiliary plate 51 is provided in the through groove 32 along the length direction of the slide rod 3 and is also provided in the vertical direction. The auxiliary balls 52 are rotatably provided on the side of the auxiliary plate 51 away from the installation groove 31, and multiple auxiliary balls 52 are provided. Multiple auxiliary balls 52 are arranged on the auxiliary plate 51 along the length direction of the auxiliary plate 51. An adjustment component 6 for adjusting the position of the auxiliary plate 51 is provided in the installation groove 31. When the mounting bracket 2 needs to be moved, the auxiliary plate 51 is moved by adjusting the component 6, and the auxiliary ball bearing 52 is moved to the outside of the slide rod 3 until the auxiliary ball bearing 52 and the inner wall of the sliding sleeve 4 are in contact. The side of the slide rod 3 near the bottom of the cabinet 1 is spaced apart from the sliding sleeve 4. Then the slide rod 3 is moved by the auxiliary ball bearing 52 to reduce the friction between the slide rod 3 and the sliding sleeve 4 so as to adjust the position of the mounting bracket 2.
[0040] Reference Figure 3 and Figure 4 The mounting frame 2 includes a support rod 21, which is connected to a slide rod 3. A receiving groove 211 is provided on the support rod 21, which is connected to the mounting groove 31. The adjustment assembly 6 includes an adjustment rod 61, a push plate 62, and an adjustment block 63. The adjustment rod 61 is disposed in the mounting groove 31, and the push plate 62 is disposed in the receiving groove 211 and connected to the adjustment rod 61. The adjustment rod 61 slides along the length direction of the slide rod 3 in the mounting groove 31, and the push plate 62 slides in the receiving groove 211. The adjustment block 63 is connected to an auxiliary plate 51. An adjustment groove 611 is provided on the side of the adjustment rod 61, which is disposed along the length direction of the adjustment rod 61. The end of the adjustment groove 611 away from the push plate 62 is inclined in the direction away from the auxiliary plate 51. A first intermediate block 631 is provided on the side of the adjustment block 63 near the adjustment rod 61. The first intermediate block 631 is disposed in the adjustment groove 611 and slides along the length direction of the adjustment groove 611. By pushing the side of the push plate 62, the adjusting rod 61 is moved toward the inside of the mounting groove 31, which causes different positions in the adjusting groove 611 to cooperate with the first intermediate block 631. The first intermediate block 631 drives the auxiliary plate 51 to move, thereby adjusting the position of the auxiliary plate 51.
[0041] Reference Figure 2 and Figure 3The support rod 21 and the adjustment component 6 are each provided with two sets. The slide rod 3 and the sliding sleeve 4 are divided into two sets along the vertical direction. The two sets of support rods 21 correspond one-to-one with the two sets of slide rods 3. The receiving groove 211 on the support rod 21 is connected to the mounting groove 31 in the two slide rods 3. Each set of adjustment component 6 is provided with two adjustment rods 61, and the two adjustment rods 61 are corresponding to the two slide rods 3. The push plate 62 is connected to the two adjustment rods 61. When the push plate 62 is moved, the position of the auxiliary plate 51 in the two slide rods 3 is adjusted at the same time to improve the adjustment efficiency.
[0042] Reference Figure 4 and Figure 5 A sliding sleeve 7 is provided on the side of the push plate 62 away from the adjusting rod 61. An insert rod 71 slides vertically within the sliding sleeve 7. An insert sleeve 72 is provided on the support rod 21, located on the side of the sliding sleeve 7 near the bottom of the cabinet 1. The insert rod 71 can be slidably inserted into the sliding sleeve 7. After adjusting the position of the auxiliary plate 51 using the push plate 62, the insert rod 71 moves to the insert sleeve 72 and is then slid into the insert sleeve 72, fixing the position of the push plate 62 and improving the stability of the fit between the auxiliary ball bearing 52 and the sliding sleeve 4.
[0043] Reference Figure 3 and Figure 4 A top groove 33 is provided on the side of the slide rod 3 away from the through groove 32. The top groove 33 is connected to the mounting groove 31. A top block 8 is provided in the top groove 33 and the mounting groove 31. The top block 8 is slidably disposed in the top groove 33. A guide groove 612 is provided on the side of the adjusting rod 61. The guide groove 612 is arranged along the length direction of the adjusting rod 61. The guide groove 612 and the adjusting groove 611 are arranged parallel and spaced apart. A second intermediate block 81 is provided on the side of the top block 8. The second intermediate block 81 is slidably disposed in the guide groove 612. The push plate 62 includes a receiving part 621, a rotating part 622, and a bending part 623. The rotating part 622 is disposed between the bending part 623 and the receiving part 621. The receiving part 621 is connected to the adjusting rod 61. The rotating part 622 and the receiving part 621 are rotatably connected. The bending part 623 is disposed on the side of the rotating part 622 away from the receiving part 621, and the bending part 623 is perpendicular to the rotating part 622. A first fastening piece 624 is provided on the side of the bending part 623 near the support rod 21. A second fastener 212 is provided on the side of the support rod 21 adjacent to the receiving groove 211. Both the first fastener 624 and the second fastener 212 are made of materials that can undergo elastic deformation, such as plastic or elastic iron sheets. After the rotating part 622 moves to the outside of the receiving groove 211, the rotating part 622 can be rotated to drive the bending part 623 to rotate to the side of the support rod 21, and at the same time, the first fastener 624 and the second fastener 212 are misaligned and abutted together to fasten the receiving part 621.
[0044] Reference Figure 6and Figure 7 When the adjusting rod 61 moves, it causes the auxiliary ball bearing 52 to move to the outside of the through groove 32 and abut against the sliding sleeve 4, thereby causing the top block 8 to move towards the inside of the mounting groove 31. After the installation is completed and the mounting bracket 2 is moved into the cabinet 1, the push plate 62 is pulled back to the initial position, which at the same time causes the auxiliary ball bearing 52 to separate from the inner wall of the sliding sleeve 4. Simultaneously, the top block 8 is moved to the outside of the top groove 33 and abuts against the inner wall of the sliding sleeve 4. Then, the rotating part 622 is rotated to drive the bending part 623 to engage the first fastener 624 and the second fastener 212, thus fixing the position of the adjusting rod 61 and fixing the mounting bracket 2.
[0045] Reference Figure 7 and Figure 8 The mounting bracket 2 also includes mounting rods 22 for mounting electronic components. The mounting rods 22 are connected to support rods 21. Multiple mounting rods 22 are provided, spaced apart along the length of the support rods 21. Each mounting rod 22 is positioned between two support rods 21. A placement groove 23 is provided on the side of the support rod 21 near the mounting rod 22. A placement rod 9 is provided at the end of the mounting rod 22 and inserted into the placement groove 23. The mounting rod 22 is connected to the support rod 21 via the placement rod 9. Multiple placement grooves 23 are provided, spaced apart along the length of the support rod 21. A clearance groove 24 communicating with the multiple placement grooves 23 is provided on the support rod 21, allowing the placement rod 9 to slide within the clearance groove 24. The clearance groove 24 is arranged along the direction of the multiple placement grooves 23. The placement rod 9 can move through the clearance groove 24 to different placement grooves 23 to adjust the position of the mounting rod 22 and the spacing between adjacent mounting rods 22 according to installation requirements.
[0046] Reference Figure 7 and Figure 8 The mounting rod 9 is provided with a clearance groove 24 and a placement groove 23, which are respectively connected to the receiving groove 211. A locking part 91 is provided on the placement rod 9, and the locking part 91 is located within the receiving groove 211. Multiple slots 92 are vertically formed on the receiving part 621, and the multiple slots 92 and multiple placement grooves 23 are correspondingly arranged horizontally, that is, every two corresponding slots 92 and placement grooves 23 are located in the same plane, and the locking part 91 is locked within the slot 92. After the position of the mounting rod 22 is adjusted and the electronic components are installed, when the receiving part 621 is moved to fix the sliding rod 3, the receiving part 621 drives the slots 92 and the locking part 91 to engage, reducing the possibility of the mounting rod 22 shifting, thereby fixing the position of the mounting rod 22.
[0047] Reference Figure 7 and Figure 8The rotating part 622 is positioned at a distance from the side of the locking part 91 and the side wall of the receiving groove 211. The locking part 91 is positioned at the interval between the rotating part 622 and the inner wall of the receiving groove 211. That is, after the rotating part 622 moves into the receiving groove 211, the locking groove 92 and the locking part 91 separate, so that the locking part 91 can move in the receiving groove 211 to adjust the position of the mounting rod 22, thereby reducing the phenomenon of the rotating part 622 interfering with the movement of the locking part 91.
[0048] The implementation principle of this application is as follows: When electronic components need to be installed, rotating part 622 drives the first fastener 624 and the second fastener 212 to separate. Then, rotating part 622 is pushed into receiving groove 211. The receiving part 621 drives adjusting rod 61 to move. While adjusting rod 61 moves, it drives top block 8 and inner wall of sliding sleeve 4 to separate and drives auxiliary plate 51 to move. The movement of auxiliary plate 51 drives auxiliary ball 52 to abut against inner wall of sliding sleeve 4. Then, insert rod 71 into insert sleeve 72 to fix auxiliary ball 52. Then, mounting bracket 2 is moved to the outside of cabinet 1 by sliding rod 3 for installation. After installation, mounting bracket 2 is moved to the initial position. Rotating bending part 623 fixes adjusting rod 61 again by first fastener 624 and second fastener 212. By moving mounting bracket 2 to the outside of cabinet 1, electronic components can be installed, improving installation efficiency.
[0049] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A distribution box switch cabinet, comprising a cabinet (1) and a mounting bracket (2) installed inside the cabinet (1), characterized in that: The mounting bracket (2) is provided with multiple sliding rods (3), which are arranged around the mounting bracket (2). Multiple sliding sleeves (4) are provided inside the cabinet (1) corresponding to the multiple sliding rods (3). The sliding rods (3) slide within the sliding sleeves (4) in a direction towards the outside of the cabinet (1). The mounting bracket (2) is installed inside the cabinet (1) via the sliding sleeves (4). An installation groove (31) is provided inside the sliding rod (3). The inner walls of the sliding rod (3) and the sliding sleeves (4) are spaced apart. A through groove (32) is provided on the side of the sliding rod (3) near the bottom of the cabinet (1). The through groove (32) communicates with the installation groove (31). An auxiliary plate (51) is slidably disposed along the inner edge of the mounting groove (31) towards the bottom of the cabinet (1). An auxiliary ball bearing (52) is rotatably disposed on the side of the auxiliary plate (51) away from the mounting groove (31). An adjustment component (6) for adjusting the position of the auxiliary plate (51) is disposed on the slide rod (3). The mounting frame (2) includes a support rod (21), which is connected to the slide rod (3). A receiving groove (211) is provided on the support rod (21) and communicates with the mounting groove (31). The adjustment component (6) includes an adjustment rod (61), a push plate (62), and an adjustment block (63). The adjustment rod (61) is disposed along the length of the slide rod (3) within the mounting groove (31). The push plate (62) is disposed in the receiving groove (211), and the end of the adjusting rod (61) extends into the receiving groove (211) and connects to the push plate (62). The adjusting block (63) is connected to the auxiliary plate (51). An adjusting groove (611) is provided on the side of the adjusting rod (61) along its length direction. The end of the adjusting groove (611) away from the push plate (62) is inclined in the direction away from the auxiliary plate (51). A first intermediate block (631) is provided on the adjusting block (63). The first intermediate block (631) is disposed in the adjusting groove (611). The first intermediate block (631) is in the adjusting groove (611) along its inclined direction. The sliding mechanism has a top groove (33) on the side of the slide rod (3) away from the through groove (32). The top groove (33) is connected to the mounting groove (31). A top block (8) is slidably disposed in the top groove (33). A guide groove (612) is provided on the side of the adjusting rod (61). The guide groove (612) and the adjusting groove (611) are arranged parallel and spaced apart. A second intermediate block (81) is provided on the top block (8). The second intermediate block (81) is slidably disposed in the guide groove (612). The top block (8) slides to the outside of the top groove (33), and the top block (8) forms an abutment with the inner wall of the sliding sleeve (4) to fix the slide rod (3).
2. The distribution box switchgear according to claim 1, characterized in that: A sliding sleeve (7) is provided on the side of the push plate (62) away from the adjusting rod (61). A plug rod (71) is slidably provided in the sliding sleeve (7). A plug sleeve (72) is provided on the support rod (21). The plug rod (71) slides into the plug sleeve (72) to fix the position of the push plate (62).
3. The distribution box switchgear according to claim 2, characterized in that: The push plate (62) includes a receiving part (621), a rotating part (622), and a bending part (623). The rotating part (622) is disposed between the receiving part (621) and the bending part (623). The receiving part (621) is connected to the adjusting rod (61). The rotating part (622) and the receiving part (621) are rotatably connected. The bending part (623) is disposed perpendicular to the rotating part (622). A first fastener (624) is disposed on the side of the bending part (623) near the support rod (21). A second fastener (212) is disposed on the side of the support rod (21) adjacent to the receiving groove (211). The bending part (623) rotates to drive the first fastener (624) and the second fastener (212) to fasten together to fix the receiving part (621).
4. The distribution box switchgear according to claim 3, characterized in that: The mounting bracket (2) also includes a mounting rod (22). The support rod (21) has multiple placement slots (23). The multiple placement slots (23) are arranged vertically on the support rod (21). The mounting rod (22) is provided with a placement rod (9). The placement rod (9) is inserted into the placement slot (23). The mounting rod (22) is connected to the support rod (21) through the placement rod (9). The support rod (21) has a clearance slot (24) that communicates with the multiple placement slots (23). The placement rod (9) is slidably arranged in the clearance slot (24).
5. The distribution box switchgear according to claim 4, characterized in that: The clearance groove (24) and the placement groove (23) are both connected to the receiving groove (211). The placement rod (9) is provided with a snap-fit part (91), which is located in the receiving groove (211).
6. The distribution box switchgear according to claim 5, characterized in that: The receiving part (621) has multiple slots (92) along the vertical direction. The multiple slots (92) and multiple placement slots (23) are arranged correspondingly. Every two corresponding slots (92) and placement slots (23) are arranged in the same horizontal plane. The receiving part (91) is engaged in the slot (92).
7. The distribution box switchgear according to claim 6, characterized in that: The rotating part (622) is spaced apart from the side of the snap-fit part (91) and the side wall of the receiving groove (211), and the snap-fit part (91) is located at the gap between the rotating part (622) and the receiving groove (211).
8. The distribution box switchgear according to claim 1, characterized in that: The support rod (21) and the adjustment component (6) are each provided with two sets. The slide rod (3) and the sliding sleeve (4) corresponding to the two sets of support rods (21) are each provided with two sets. The receiving groove (211) is simultaneously connected to the mounting groove (31) in the two slide rods (3). The push plate (62) is simultaneously connected to the adjustment rod (61) in the two slide rods (3).
Citation Information
Patent Citations
High-efficiency heat dissipation switch cabinet
CN114498347A
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