Low-voltage treatment equipment and mounting bracket thereof
By designing a split mounting bracket, using a side plate, top plate, and strut structure, and utilizing a rotating shaft and connecting bolts, the energy storage equipment can be conveniently installed on the tower, solving the problem of inconvenient installation in existing technologies and improving installation efficiency and stability.
Patent Information
- Application Number
- CN202520240727.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing energy storage devices are inconvenient to install on power grid towers, making it difficult to efficiently manage low voltage.
Design a split-type mounting bracket, which adopts a side plate, top plate and strut structure, and is connected by a pivot and connecting bolts. The main body of the bracket can be disassembled and adjusted to a portable state. It is fixed to the tower using clamp components. The combination of multiple clamp components and elastic plate structure enhances stability and contact area.
This enables convenient installation and fixation of energy storage devices on towers, improves transportation and installation efficiency, and enhances the stability and reliability of the support structure.
Smart Images

Figure CN223579481U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of power grid management equipment, in particular to a low voltage management equipment and installation support thereof. BACKGROUND
[0002] Low voltage refers to the voltage value of the user side being lower than the lower limit value of the voltage stipulated by the state, and low voltage generally occurs with the increase of the load of the user side, which will directly affect the operation of enterprises and the daily life of residents, therefore, it is crucial to take effective technical means to govern the low voltage problem. The existing common low voltage management technical means include adjusting the output voltage of the transformer, adjusting the load of three phases, reducing the loss of reactive voltage, adjusting the load through the energy storage device, etc., wherein, using the energy storage device can not only maintain the voltage stability, but also store electric energy when the power grid load is low, which can guarantee the overall efficiency of the power grid and is an important means among the common methods for low voltage management.
[0003] The battery is a component of the energy storage device in low voltage management, and has the characteristics of large volume and large weight compared to the control module. The installation position of the energy storage device includes: the position of the transformer substation, the appropriate position (generally the middle position or the end position) of the distribution line, and the line on the user side. For the characteristics of rural power grids, in order to improve the efficiency of low voltage management and reduce the cost of setting, the preferred method is to install the energy storage device on the tower pole of the distribution line.
[0004] The energy storage device generally includes a battery and a control module, and is usually arranged such that the battery and the control module are built-in in a device box, and the device box is supported on an installation support fixed on the tower pole of the power grid. Through retrieval, the specific installation mode is similar to the patent application No. CN201721158360.X, the specification appendix Figure 5 The installation scheme is shown.
[0005] In order to improve the convenience of installing the energy storage device on the tower pole, it is necessary to further optimize the related installation support. UTILITY MODEL CONTENTS
[0006] In view of the above-mentioned problem of optimizing the convenience of installing the energy storage device on the tower pole, the utility model provides a low voltage management equipment and installation support thereof. The structural design of the installation support provided by the present scheme has the characteristics of portability and convenient fixation on the tower pole.
[0007] In view of the above problems, the low-voltage treatment equipment and the mounting bracket thereof provided by the utility model solve the problems through the following technical points: the low-voltage treatment equipment mounting bracket comprises a bracket main body and a hoop assembly connected to the bracket main body, the bracket main body comprises a side plate, a top plate and a support rod, the hoop assembly is installed on the side surface of the side plate, one end of the top plate is connected to the upper end of the side plate, one end of the support rod is connected to the top plate, the other end of the support rod is connected to the side plate, and the bracket main body further comprises a first rotating shaft, a second rotating shaft and a connecting bolt, the side plate and the top plate are in a rotatable connection relationship through the first rotating shaft, one of the second rotating shaft and the connecting bolt serves as a connecting piece of the support rod and the side plate, and the other one serves as a connecting piece of the support rod and the top plate, the second rotating shaft is used to realize rotatable connection of the support rod and the top plate or the side plate, and the connecting bolt is used to realize detachable connection of the support rod and the top plate or the side plate.
[0008] In the above scheme, the side plate, the top plate and the support rod all serve as components of the bracket main body, each of the three is a rigid structure, and is specifically used as follows: the side plate serves as a connecting structure of the bracket main body for connecting the hoop assembly, the top plate serves as a structure of the bracket main body for connecting and supporting the equipment box in the low-voltage treatment equipment, and the support rod serves as a diagonal brace between the top plate and the side plate for strengthening the supporting capacity of the bracket main body.
[0009] Different from the prior art, the bracket main body is designed in a split type including the three in the scheme, the three are connected through the first rotating shaft, the second rotating shaft and the connecting bolt, so that before transporting and carrying the mounting bracket to climb the tower pole of the power grid, the bracket main body can be adjusted to a state convenient for storage and lifting by relatively rotating the three around the first rotating shaft and the second rotating shaft after the connecting bolt is disassembled, the mounting bracket is fixed on the tower pole by using the hoop assembly, the center of gravity of the mounting bracket is close to the hoop assembly, and the fixing of the mounting bracket on the tower pole is facilitated, the top plate is rotated around the first rotating shaft to be parallel to the side plate or have a small included angle with the side plate, and the support rod is rotated around the second rotating shaft to be parallel to the side plate or the top plate in the process of carrying the mounting bracket to climb the tower pole or lifting the side plate by a lifting rope and installing the mounting bracket on the tower pole, so that the center of gravity of the mounting bracket is located close to the side plate, the lifting operation and the fixing operation of the hoop assembly and the tower pole are facilitated, and the structure design of the scheme makes the mounting bracket have the characteristics of portability and convenient fixing on the tower pole.
[0010] In one specific application, the first rotating shaft and the second rotating shaft are both provided in the form of shaft structure with enlarged portions at both ends, one of which is originally formed on the corresponding rotating shaft, and the other is obtained by upsetting the end of the rotating shaft after the corresponding rotating shaft is installed on the bracket body. Taking the first rotating shaft as an example, the installation of the first rotating shaft with one end having a cap end (which serves as one of the enlarged portions) on the bracket body is completed after the shaft holes on the side plate and the top plate are centered, that is, the first rotating shaft penetrates through the side plate and the top plate, and then the other end of the first rotating shaft is upset or clamped and deformed to obtain the other enlarged portion. The cap end and the enlarged portion obtained by upsetting the other end later are used to prevent the first rotating shaft from being detached from the bracket body.
[0011] In one specific application, the side plate is provided in the form of a quadrilateral frame, and the top plate is provided in the form of a door-shaped frame. The open end of the door-shaped frame is hingedly connected to the top end of the side plate by the first rotating shaft, and a support rod in the form of a rod structure is provided on both sides of the bracket body.
[0012] In one specific application, the hoop assembly is detachably connected to the side plate. For the bracket body structure as provided above, the specific application can be as follows: for low-voltage treatment equipment used for supporting on a platform, the support rod can be turned around the second rotating shaft to serve as a support leg on one side of the top plate, and the side plate serves as a support leg on the other side of the top plate (as shown in the state in the drawings of the specification), that is, by fixing the lower end of the side plate and the lower end of the support rod to the platform, the installation bracket has the function of floor installation, and the structural features of the present solution make it have rich application scene applicability. Figure 5
[0013] As a further technical solution of the low-voltage treatment equipment installation bracket:
[0014] One end of the support rod is connected to the lower end of the side plate, and the other end of the support rod is connected to the end of the top plate away from the side plate.
[0015] The second rotating shaft serves as a connecting piece of the support rod and the top plate, and the connecting bolt serves as a connecting piece of the support rod and the side plate.
[0016] The above provides a specific arrangement of the support rod and the use mode of the second rotating shaft and the connecting bolt. Based on the scheme, when the connecting bolt is removed, the support rod freely droops relative to the top plate and the top plate freely droops relative to the side plate under the action of gravity. When the mounting bracket is placed horizontally, the corresponding bracket body can also be in a strip-shaped state by pulling. In this way, the bracket body has the characteristics of convenient storage and small occupied space during transportation, and has the characteristic of convenient operation during pulling or carrying the mounting bracket to climb the tower pole and complete the fixing of the hoop assembly to the tower pole. Meanwhile, compared with the connecting bolt used to connect the support rod and the top plate, when the hoop assembly is fixed on the tower pole, only the supporting force of the bracket body needs to be applied to the support rod, so that the bracket body can be adjusted to the required installation form, and then the connecting bolt is installed, so that the form adjustment of the bracket body is completed. Therefore, the second rotating shaft as the connecting piece of the support rod and the top plate and the connecting bolt as the connecting piece of the support rod and the side plate can further improve the convenience of the mounting bracket during assembly.
[0017] In order to obtain a reliable triangular support system, the two sides of the bracket body are provided with support rods. For the support rods on the two sides of the bracket body, a second rotating shaft penetrating the top plate can be used to constrain the upper end of each support rod, and a connecting bolt is configured for the lower end of each support rod.
[0018] As a technical scheme with reliable structural stability and beneficial to weight reduction design, the top plate and the side plate are both frame structures formed by profile splicing;
[0019] In order to improve the reliability of the mounting bracket fixed to the tower pole, the number of hoop assemblies is greater than 1, and the hoop assemblies are arranged at intervals in the height direction of the side plate.
[0020] As a specific implementation form of the hoop assembly, the hoop assembly comprises a first hoop plate and a pull rod bolt, the two ends of the first hoop plate are both provided with the pull rod bolt, the end of the first hoop plate and the side plate are both provided with a bolt hole for adapting the pull rod bolt, and the bolt hole is a passage for the pull rod bolt to penetrate the first hoop plate / side plate. The above scheme provides a specific implementation form of the hoop assembly. When it is needed to embed the tower pole into the hoop assembly, the connection between the pull rod bolt and the side plate or the connection between the first hoop plate and the pull rod bolt is removed, the first hoop plate is connected to the pull rod bolt or the pull rod bolt is connected to the side plate after the tower pole is embedded, and then the first hoop plate is moved to the side where the side plate is located by fastening the pull rod bolt, so that the purpose of reducing the clamping space of the hoop assembly and fixing the tower pole in the hoop assembly is achieved.
[0021] Further, after the tower rod is embedded, to facilitate the connection of the pull rod bolt and the side plate or the connection of the first hoop plate and the pull rod bolt, at least one of the two bolt holes matched with the pull rod bolt is a strip-shaped hole, and the length direction of the strip-shaped hole is perpendicular to the height direction of the side plate. In the scheme, the length direction of the strip-shaped hole is in the spacing direction of the pull rod bolt or the length direction of the first hoop plate. When the strip-shaped hole is on the first hoop plate, the convenience of the connection of the first hoop plate and the pull rod bolt under the influence of the tower rod can be ensured. When the strip-shaped hole is on the side plate, the convenience of the connection of the pull rod bolt and the side plate under the influence of the tower rod can be ensured. Preferably, the bolt hole on the first hoop plate for matching the pull rod bolt is a circular hole, and the bolt hole on the side plate for matching the pull rod bolt is a strip-shaped hole. When the installation support is matched with the tower rod, the structure formed by the first hoop plate and the pull rod bolt is independent of the side plate. After the tower rod is introduced between the two pull rod bolts of the hoop assembly, the connection of the pull rod bolt and the side plate is completed through the strip-shaped hole at the opening end of the structure. By using the scheme, the operator can pay attention to the shape of the structure with one hand and pay attention to the position of the support body with the other hand so that the position of the support body is matched with the structure. After the pull rod bolt is embedded in the strip-shaped hole, the stability of the installation support is maintained by using the support of the pull rod bolt on the side plate. On this basis, the reliable fixation of the hoop assembly on the tower rod is completed by further operating the pull rod bolt (such as connecting and fastening the locking nut on the pull rod bolt).
[0022] To ensure the contact area of the first hoop plate and the tower rod, the first hoop plate is an arc-shaped plate with a first recess, and the opening side of the first recess faces the side plate. In the scheme, the inner side of the first recess is used to contact the surface of the tower rod.
[0023] To ensure the contact area of the other side of the hoop assembly and the tower rod, the hoop assembly further includes a second hoop plate fixed on the side plate. The second hoop plate is in a facing relationship with the first hoop plate, and the second hoop plate is an arc-shaped plate with a second recess. The opening side of the second recess faces the first hoop plate. The first recess and the second recess serve as the boundary of the clamping space on the hoop assembly. In the scheme, the tower rod is clamped between the first hoop plate and the second hoop plate, and the inner sides of the first recess and the second recess serve as the contact surface for contacting the tower rod. By using the scheme, the contact area of the hoop assembly and the tower rod can be effectively ensured, thereby facilitating the convenience and stability of the reliable fixation of the hoop assembly on the tower rod. Preferably, the first hoop plate and the second hoop plate are both formed by bending a spring steel plate, and a welding scar is formed on the inner side of the first recess and the second recess by welding. The welding scar is used to increase the friction between the first hoop plate, the second hoop plate, and the tower rod.
[0024] The first hoop is an elastic plate with an arc-shaped portion in the middle and ear plates on both sides, and the bolt hole on the first hoop plate is located on the ear plate;
[0025] The second hoop plate is an elastic plate with an arc-shaped portion in the middle and support plate bodies on both sides, and the end of the support plate body is connected with the side plate, and the support plate body supports the middle plate body of the second hoop plate to be spaced apart from the side plate. The above provides a specific implementation of the first hoop plate and the second hoop plate, that is, the first hoop plate is an elastic plate with an arc-shaped portion in the middle and ear plates on both sides, and the second hoop plate is an elastic plate with an arc-shaped portion in the middle and support plate bodies on both sides, and the support plate body serves as the leg plate of the second hoop plate. The relative position relationship between the second hoop plate and the side plate is used to optimize the deformation capability of the second hoop plate. When the first hoop plate is pulled to the side where the side plate is located by the pull rod bolt, the first hoop plate and the second hoop plate can both produce elastic deformation under the support of the tower pole. The deformation can not only maintain the relative stable clamping force between the hoop assembly and the tower pole, but also can guarantee the contact area of the hoop assembly and the tower pole.
[0026] In order to facilitate the connection of the low-voltage treatment equipment on the installation support, a plurality of strip-shaped holes are arranged on the top plate, which serve as bolt holes for installing the low-voltage treatment equipment on the top plate. The bolt holes are arranged as strip-shaped holes to adapt to the deformation or processing error of the installation support and the equipment box, which is beneficial to improve the matching / connectivity of the installation support and the equipment box.
[0027] The present scheme also relates to a low-voltage treatment equipment, which comprises a battery module, a control module, and an equipment box. The control module is used to control the charging of the battery module from the power grid and the discharging of the battery module to the power grid. The battery module and the control module are installed in the equipment box. The low-voltage treatment equipment installation support according to any one of the above is also included, and the equipment box is installed on the top plate. The above low-voltage treatment equipment is a low-voltage treatment equipment comprising the installation support, which is a specific application of the installation support.
[0028] As a further technical scheme of the low-voltage treatment equipment:
[0029] A fin-type heat dissipation module is also included, which is fixed on the equipment box and partially exposed outside the equipment box. In the present scheme, the fin-type heat dissipation module is used to enhance the heat dissipation capability of the equipment box. Compared with the fan heat dissipation scheme, since the low-voltage treatment equipment is usually installed in a position that is not convenient for maintenance, such a static heat dissipation scheme can effectively guarantee the reliability of heat dissipation during the use of the equipment box.
[0030] The present utility model has the following beneficial effects:
[0031] Unlike existing technologies, this solution adopts a split design for the main body of the bracket, which includes the three components. The three components are connected by a first rotating shaft, a second rotating shaft, and connecting bolts. In this way, by changing the shape of the main body of the bracket before transporting the bracket, carrying it to climb the power grid tower, and during the process of fixing the clamp assembly to the tower, the bracket is portable and easy to fix on the tower. Attached Figure Description
[0032] Figure 1 A side view of a specific embodiment of the mounting bracket for the low voltage management equipment described in this solution;
[0033] Figure 2 for Figure 1 Top view of the structure shown;
[0034] Figure 3 for Figure 1 A three-dimensional structural diagram of the structure shown;
[0035] Figure 4 for Figure 1 The diagram shown is a three-dimensional structural schematic diagram, which is relative to... Figure 3 They have different viewport positions;
[0036] Figure 5 A side view of a specific embodiment of the mounting bracket for the low-voltage management equipment described in this solution, and... Figure 1 There is a difference; this side view shows the configuration for implementing the low-voltage management equipment's floor-mounted installation function. The reference numerals in the figure are: 1, clamp assembly; 11, tie rod bolt; 12, first clamp plate; 13, second clamp plate; 2, first pivot; 3, side plate; 4, connecting bolt; 5, top plate; 6, support rod; 7, second pivot. Detailed Implementation
[0037] The present invention will be further described in detail below with reference to the embodiments, but the present invention is not limited to the following embodiments:
[0038] Example 1:
[0039] like Figures 1 to 5As shown, the low-voltage treatment equipment mounting bracket comprises a bracket body and a hoop assembly 1 connected to the bracket body, the bracket body comprises a side plate 3, a top plate 5 and a support rod 6, the hoop assembly 1 is installed on the side of the side plate 3, one end of the top plate 5 is connected to the upper end of the side plate 3, one end of the support rod 6 is connected to the top plate 5, and the other end of the support rod 6 is connected to the side plate 3, further comprising a first rotating shaft 2, a second rotating shaft 7 and a connecting bolt 4, the side plate 3 and the top plate 5 are in a rotatable connection relationship through the first rotating shaft 2, one of the second rotating shaft 7 and the connecting bolt 4 serves as a connecting piece of the support rod 6 and the side plate 3, and the other serves as a connecting piece of the support rod 6 and the top plate 5, the second rotating shaft 7 is used to realize the rotatable connection of the support rod 6 and the top plate 5 or the side plate 3, and the connecting bolt 4 is used to realize the detachable connection of the support rod 6 and the top plate 5 or the side plate 3.
[0040] In the above scheme, the side plate 3, the top plate 5 and the support rod 6 all serve as components of the bracket body, each of the three is a rigid structure, and is specifically used as: the side plate 3 serves as a connecting structure of the bracket body for connecting the hoop assembly 1, the top plate 5 serves as a structure of the bracket body for connecting and supporting the equipment box in the low-voltage treatment equipment, and the support rod 6 serves as an inclined brace between the top plate 5 and the side plate 3 for strengthening the supporting capacity of the bracket body.
[0041] Differing from the prior art, the bracket body is designed to comprise the three in a split type, the three are connected through the first rotating shaft 2, the second rotating shaft 7 and the connecting bolt 4, so that before transporting and carrying the mounting bracket to climb the tower pole, after the connecting bolt 4 is disassembled, the bracket body can be adjusted to a state convenient for storage and lifting by relatively rotating the three around the first rotating shaft 2 and the second rotating shaft 7, when the hoop assembly 1 is used to fix the mounting bracket on the tower pole, the center of gravity of the mounting bracket is close to the hoop assembly 1, so that the fixing of the mounting bracket on the tower pole is facilitated, when the bracket body is adjusted to a state convenient for storage in the transportation process, the center of gravity of the mounting bracket is close to the side plate 3, so that the lifting operation and the fixing operation of the hoop assembly 1 and the tower pole are facilitated, and in the process of carrying the mounting bracket to climb the tower pole or lifting the side plate 3 through a sling to install the mounting bracket on the tower pole, the top plate 5 rotates around the first rotating shaft 2 to be parallel to the side plate 3 or have a small angle with the side plate 3, and the support rod 6 rotates around the second rotating shaft 7 to be parallel to the side plate 3 or the top plate 5, so that the center of gravity of the mounting bracket is located close to the side plate 3, and the lifting operation and the fixing operation of the hoop assembly 1 and the tower pole are facilitated, and in summary, the structural design of the scheme makes the mounting bracket have the characteristics of portability and convenient fixing on the tower pole.
[0042] In one specific application, the first rotating shaft 2 and the second rotating shaft 7 are both provided in the form of shaft structure with enlarged portions at both ends, one of which is originally formed on the corresponding rotating shaft, and the other is obtained by upsetting the end of the rotating shaft after the corresponding rotating shaft is installed on the bracket body. Taking the first rotating shaft 2 as an example, specifically: when the shaft hole on the side plate 3 and the top plate 5 is centered, the installation of the first rotating shaft 2 with one end having a cap end (which serves as one of the enlarged portions) on the bracket body is completed, that is, the first rotating shaft 2 penetrates through the side plate 3 and the top plate 5, and then the other end of the first rotating shaft 2 is upset or clamped and deformed to obtain the other enlarged portion. The above cap end and the enlarged portion obtained by upsetting later are used to realize the anti-disengagement of the first rotating shaft 2 on the bracket body.
[0043] In one specific application, the side plate 3 is provided in the form of a quadrilateral frame, and the top plate 5 is provided in the form of a door-shaped frame. The open end of the door-shaped frame is hingedly connected to the top end of the side plate 3 through the first rotating shaft 2. A support rod 6 in the form of a rod structure is provided on both sides of the bracket body.
[0044] Embodiment 2:
[0045] This embodiment is further refined on the basis of Embodiment 1:
[0046] One end of the support rod 6 is connected to the lower end of the side plate 3, and the other end of the support rod 6 is connected to the end of the top plate 5 away from the side plate 3.
[0047] The second rotating shaft 7 serves as the connecting piece of the support rod 6 and the top plate 5, and the connecting bolt 4 serves as the connecting piece of the support rod 6 and the side plate 3.
[0048] The above provides a specific setting mode of the support rod 6 and the application mode of the second rotating shaft 7 and the connecting bolt 4. Based on this scheme, when the connecting bolt 4 is removed, under the action of gravity, the support rod 6 freely droops relative to the top plate 5, and the top plate 5 freely droops relative to the side plate 3. When the bracket is installed horizontally, the bracket body can also be obtained in a strip-shaped state by pulling. Thus, the bracket body has the characteristics of convenient storage and small occupied space during transportation, and has the characteristic of convenient operation during the process of climbing the tower pole and completing the fixing of the hoop assembly 1 on the tower pole. At the same time, compared with the case where the connecting bolt 4 is used to connect the support rod 6 and the top plate 5, after the hoop assembly 1 is fixed on the tower pole, only the supporting force on the bracket body needs to be applied to the support rod 6 to adjust the bracket body to the required installation form, and then the connecting bolt 4 is installed to complete the form adjustment of the bracket body. Therefore, the second rotating shaft 7 as the connecting piece of the support rod 6 and the top plate 5, and the connecting bolt 4 as the connecting piece of the support rod 6 and the side plate 3 can further improve the convenience of the installation bracket during assembly.
[0049] Embodiment 3:
[0050] The embodiment is further refined on the basis of Embodiment 1:
[0051] In order to obtain a reliable triangular support system, the support body is provided with a support rod 6 on both sides. For the support rod 6 on both sides of the support body, a second rotating shaft 7 can be used to constrain the upper end of each support rod 6, and a connecting bolt 4 is configured for the lower end of each support rod 6.
[0052] Embodiment 4:
[0053] The embodiment is further refined on the basis of Embodiment 1:
[0054] As a technical solution with reliable structural stability and beneficial to weight reduction design, the top plate 5 and the side plate 3 are both frame structures formed by profile splicing;
[0055] In order to improve the reliability of the installation support on the tower pole, the number of the hoop assemblies 1 is greater than 1, and the hoop assemblies 1 are arranged in the height direction of the side plate 3.
[0056] Embodiment 5:
[0057] The embodiment is further refined on the basis of Embodiment 1:
[0058] As a specific implementation form of the hoop assembly 1, the hoop assembly 1 includes a first hoop plate 12 and a pull rod bolt 11, and the first hoop plate 12 is provided with a pull rod bolt 11 at both ends, and the end of the first hoop plate 12 and the side plate 3 are both provided with a bolt hole for adapting the pull rod bolt 11, and the bolt hole is used as a channel for the pull rod bolt 11 to pass through the first hoop plate 12 / side plate 3. The above scheme provides a specific implementation form of the hoop assembly 1. When it is necessary to embed the tower pole into the hoop assembly 1, remove the connection between the pull rod bolt 11 and the side plate 3 or the connection between the first hoop plate 12 and the pull rod bolt 11, connect the first hoop plate 12 to the pull rod bolt 11 or connect the pull rod bolt 11 to the side plate 3 after the tower pole is embedded, and then tighten the pull rod bolt 11 to move the first hoop plate 12 to the side of the side plate 3, so as to achieve the purpose of reducing the clamping space of the hoop assembly 1 and fixing the tower pole in the hoop assembly 1.
[0059] Further, after the tower pole is embedded, to facilitate the connection of the pull rod bolt 11 and the side plate 3 or the connection of the first hoop plate 12 and the pull rod bolt 11, at least one of the two bolt holes matched with the pull rod bolt 11 is a strip-shaped hole, and the length direction of the strip-shaped hole is perpendicular to the height direction of the side plate 3. In the scheme, the length direction of the strip-shaped hole is in the spacing direction of the pull rod bolt 11 or the length direction of the first hoop plate 12. When the strip-shaped hole is located on the first hoop plate 12, the convenience of the connection of the first hoop plate 12 and the pull rod bolt 11 under the influence of the tower pole can be ensured. When the strip-shaped hole is located on the side plate 3, the convenience of the connection of the pull rod bolt 11 and the side plate 3 under the influence of the tower pole can be ensured. Preferably, the bolt hole on the first hoop plate 12 for matching the pull rod bolt 11 is a circular hole, and the bolt hole on the side plate 3 for matching the pull rod bolt 11 is a strip-shaped hole. When the installation support is matched with the tower pole, the structure formed by the first hoop plate 12 and the pull rod bolt 11 is independent of the side plate 3. After the tower pole is introduced between the two pull rod bolts 11 of the hoop assembly 1, the connection of the pull rod bolt 11 and the side plate 3 is completed through the strip-shaped hole at the opening end of the structure. By using the scheme, the operator can pay attention to the shape of the structure with one hand and pay attention to the position of the support body with the other hand so that the position of the support body is matched with the position of the structure. After the pull rod bolt 11 is embedded in the strip-shaped hole, the stability of the installation support is maintained by using the support of the pull rod bolt 11 on the side plate 3. On this basis, the reliable fixation of the hoop assembly 1 on the tower pole is completed by further operating the pull rod bolt 11 (such as connecting and fastening the locking nut on the pull rod bolt 11).
[0060] Example 6:
[0061] The embodiment is further refined on the basis of example 5:
[0062] To ensure the contact area of the first hoop plate 12 and the tower pole, the first hoop plate 12 is an arc-shaped plate with a first recess, and the opening side of the first recess faces the side plate 3. In the scheme, the inner side surface of the first recess is used to contact the surface of the tower pole.
[0063] To ensure the contact area of the other side of the hoop assembly 1 with the tower pole, the hoop assembly 1 further comprises a second hoop plate 13 fixed on the side plate 3, the second hoop plate 13 is in a facing relationship with the first hoop plate 12, the second hoop plate 13 is an arc-shaped plate with a second recess, and the opening side of the second recess faces the first hoop plate 12; the first recess and the second recess serve as the boundary of the clamping space on the hoop assembly 1. In this scheme, the way the hoop assembly 1 clamps the tower pole is that the tower pole is clamped between the first hoop plate 12 and the second hoop plate 13, and the inner side surface of each of the first recess and the second recess serves as the contact surface with the tower pole. By using this scheme, the contact area of the hoop assembly 1 with the tower pole can be effectively ensured, thereby being conducive to ensuring the convenience and stability of the reliable fixation of the hoop assembly 1 on the tower pole. In a preferred manner, the first hoop plate 12 and the second hoop plate 13 are both formed by bending spring steel plates, and a welding scar is formed on the inner side surface of each of the first recess and the second recess by welding, the welding scar is used to increase the friction between the first hoop plate 12, the second hoop plate 13 and the tower pole.
[0064] Embodiment 7:
[0065] This embodiment is further refined on the basis of Embodiment 6:
[0066] The first hoop is an elastic plate with a first recess formed on a middle plate body of the first hoop and ear plates on both sides of the middle plate body, and the bolt hole on the first hoop plate 12 is located on the ear plate;
[0067] The second hoop plate 13 is an elastic plate with a second recess formed on a middle plate body of the second hoop plate 13 and support plate bodies on both sides of the middle plate body, the end of the support plate body is connected with the side plate 3, and the support plate body supports the middle plate body of the second hoop plate 13 to be spaced apart from the side plate 3. The above provides a specific implementation manner of the first hoop plate 12 and the second hoop plate 13, that is, the first hoop plate 12 is an elastic plate with an arc-shaped portion in the middle and ear plates on both sides, and the second hoop plate 13 is an elastic plate with an arc-shaped portion in the middle and support plate bodies on both sides, the support plate bodies serve as the leg plates of the second hoop plate 13, and the positional relationship between the second hoop plate 13 and the side plate 3 is spaced apart, which is used to optimize the deformation capability of the second hoop plate 13. When the first hoop plate 12 is pulled to the side where the side plate 3 is located through the pull rod bolt 11, the first hoop plate 12 and the second hoop plate 13 can both produce a certain elastic deformation under the support of the tower pole. This deformation not only can maintain a relatively stable clamping force between the hoop assembly 1 and the tower pole, but also can ensure the contact area of the hoop assembly 1 with the tower pole.
[0068] Embodiment 8:
[0069] This embodiment is further refined on the basis of Embodiment 1:
[0070] For the convenience of connecting the low-voltage treatment equipment on the installation support, a plurality of strip-shaped holes are arranged on the top plate 5, which are bolt holes for installing the low-voltage treatment equipment on the top plate 5. The bolt holes are arranged as strip-shaped holes to adapt to the deformation or machining error of the installation support and the equipment box, which is beneficial to improve the matching / connectivity of the installation support and the equipment box.
[0071] Embodiment 9:
[0072] The embodiment is based on embodiment 1, and provides a low-voltage treatment equipment, which comprises a battery module, a control module, and an equipment box. The control module is used for controlling the battery module to charge from the power grid and discharge to the power grid. The battery module and the control module are installed in the equipment box. The low-voltage treatment equipment installation support in embodiment 1 is further included, and the equipment box is installed on the top plate 5. The above low-voltage treatment equipment is a low-voltage treatment equipment comprising the installation support, which is a specific application of the installation support.
[0073] Embodiment 10:
[0074] The embodiment is further refined on the basis of embodiment 9.
[0075] The finned heat dissipation module is further included, which is fixed on the equipment box and partially exposed outside the equipment box. In the scheme, the finned heat dissipation module is used for strengthening the heat dissipation capacity of the equipment box. Compared with the fan heat dissipation scheme, since the low-voltage treatment equipment is usually installed in a position inconvenient for maintenance, the static heat dissipation scheme can effectively guarantee the reliability of heat dissipation during use of the equipment box.
[0076] The above is a further detailed description of the utility model in combination with specific preferred embodiments, and the specific embodiments of the utility model cannot be limited to these descriptions. For ordinary skilled persons in the technical field to which the utility model belongs, other embodiments obtained without departing from the technical scheme of the utility model should be included in the protection scope of the utility model.
Claims
1. A mounting bracket for low voltage control equipment, comprising a bracket body and a clamp assembly (1) connected to the bracket body, wherein the bracket body includes a side plate (3), a top plate (5), and a support rod (6), the clamp assembly (1) is installed on the side of the side plate (3), one end of the top plate (5) is connected to the upper end of the side plate (3), one end of the support rod (6) is connected to the top plate (5), and the other end of the support rod (6) is connected to the side plate (3), characterized in that, It also includes a first rotating shaft (2), a second rotating shaft (7), and a connecting bolt (4). The side plate (3) and the top plate (5) are rotatably connected by the first rotating shaft (2). Of the second rotating shaft (7) and the connecting bolt (4), one serves as a connector between the support rod (6) and the side plate (3), and the other serves as a connector between the support rod (6) and the top plate (5). The second rotating shaft (7) is used to realize the rotatable connection between the support rod (6) and the top plate (5) or the side plate (3), and the connecting bolt (4) is used to realize the detachable connection between the support rod (6) and the top plate (5) or the side plate (3).
2. The mounting bracket for low-voltage management equipment according to claim 1, characterized in that, One end of the support rod (6) is connected to the lower end of the side plate (3), and the other end of the support rod (6) is connected to the end of the top plate (5) away from the side plate (3); The second pivot (7) serves as the connector between the strut (6) and the top plate (5), and the connecting bolt (4) serves as the connector between the strut (6) and the side plate (3).
3. The mounting bracket for low-voltage control equipment according to claim 1 or 2, characterized in that, Both sides of the main body of the support are provided with support rods (6).
4. The mounting bracket for low-voltage control equipment according to claim 1 or 2, characterized in that, The top plate (5) and the side plates (3) are both frame structures formed by splicing profiles; The number of clamp assemblies (1) is greater than 1, and the clamp assemblies (1) are arranged at intervals in the height direction of the side plate (3).
5. The mounting bracket for low-voltage control equipment according to claim 1, characterized in that, The clamp assembly (1) includes a first clamp plate (12) and a tie rod bolt (11). Both ends of the first clamp plate (12) are provided with tie rod bolts (11). The ends of the first clamp plate (12) and the side plate (3) are provided with bolt holes for fitting the tie rod bolts (11). The bolt holes serve as channels for the tie rod bolts (11) to pass through the first clamp plate (12) / side plate (3). Of the two bolt holes that are adapted to the tie rod bolt (11), at least one bolt hole is a strip hole, and the length direction of the strip hole is perpendicular to the height direction of the side plate (3).
6. The mounting bracket for low-voltage control equipment according to claim 5, characterized in that, The first hoop plate (12) is an arc-shaped plate with a first recess, and the opening side of the first recess faces the side plate (3); The clamp assembly (1) further includes a second clamp plate (13) fixed on the side plate (3). The second clamp plate (13) is directly opposite to the first clamp plate (12). The second clamp plate (13) is an arc-shaped plate with a second recess, and the opening side of the second recess faces the first clamp plate (12). The first and second recesses serve as the boundaries of the clamping space on the clamping assembly (1).
7. The mounting bracket for low-voltage management equipment according to claim 6, characterized in that, The first clamp (12) is an elastic plate with a recess formed on the middle plate of the first clamp (12) and ear plates on both sides of the middle plate. The bolt holes on the first clamp plate (12) are located on the ear plates. The second hoop plate (13) is a second recess formed on the middle plate of the second hoop plate (13). Both sides of the middle plate have elastic plates that support the plate. The ends of the support plates are connected to the side plates (3). The support plates support the middle plate of the second hoop plate (13) so that it is separated from the side plates (3).
8. The mounting bracket for low-voltage management equipment according to claim 1, characterized in that, It also includes a plurality of strip holes provided on the top plate (5), which serve as bolt holes for mounting low voltage control equipment on the top plate (5).
9. A low-voltage management device, comprising a battery module, a control module, and a device housing, wherein the control module controls the battery module to charge from the power grid and discharge energy into the power grid, and both the battery module and the control module are installed in the device housing, characterized in that, It also includes a low voltage control equipment mounting bracket as described in any one of claims 1 to 8, wherein the equipment box is mounted on the top plate (5).
10. The low-voltage control device according to claim 9, characterized in that, It also includes a finned heat dissipation module that is fixed to the equipment housing and partially exposed to the outside of the equipment housing.
Citation Information
Patent Citations
Support fixing device of installation on single pole post
CN207213535U