Equipment box mounting assembly for signal facility
By combining the design of concrete foundation and embedded foundation, and utilizing the cooperation of limiting parts and reinforcing parts, the problem of installation pipe misalignment during equipment box installation was solved, achieving high stability and efficient construction, and extending the service life of the equipment.
Patent Information
- Application Number
- CN202423229741.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-26
AI Technical Summary
In existing technologies, the installation pipes are prone to misalignment during equipment box installation, resulting in low construction efficiency and prolonged installation cycle.
The design combines concrete foundation and embedded foundation. The limiting part of the embedded foundation cooperates with the limiting part of the installation pipe to ensure the fixation of the installation pipe during the concrete pouring process. The reinforcement part improves the connection strength and stability.
It improves the stability and construction efficiency of equipment box installation, extends the service life of installation components, ensures the safe transmission of cables and connection lines, and reduces the impact of the external environment on the equipment box.
Smart Images

Figure CN223648910U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of equipment box installation technology, and specifically relates to equipment box installation components for signal facilities. Background Technology
[0002] In related technologies, such as traffic signal control, communication base stations, and power facilities, the installation of equipment boxes is a critical step. In existing technologies, a concrete foundation is pre-set on the ground, and then the equipment box is fixed on the foundation. However, when pouring the concrete foundation, the installation pipe may shift, requiring additional personnel to fix the installation pipe, resulting in low construction efficiency and a prolonged installation cycle for the equipment box. Utility Model Content
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. Therefore, one object of the present invention is to provide an equipment box mounting assembly for signal facilities.
[0004] To achieve the above objectives, this utility model provides the following technical solution:
[0005] This utility model provides an equipment box mounting assembly for signal facilities, comprising: a concrete foundation disposed within a first pre-embedded groove and a second pre-embedded groove; a pre-embedded foundation adapted to connect to the equipment box, the pre-embedded foundation being housed within the first pre-embedded groove, and the end of the pre-embedded foundation abutting against the stepped surface, the pre-embedded foundation having a reinforcing portion extending into the second pre-embedded groove, the pre-embedded foundation having a first limiting portion movable in the width direction and a second limiting portion movable in the length direction; and a mounting pipe, one end of the mounting pipe communicating with a well, the other end of the mounting pipe passing through the second pre-embedded groove and the first pre-embedded groove and extending above the ground, the outer peripheral wall of the mounting pipe having a third limiting portion, the first limiting portion and the second limiting portion cooperating with the third limiting portion to fix the mounting pipe relative to the pre-embedded foundation.
[0006] According to the present invention, the equipment box installation assembly for signal facilities, with its combined design of concrete foundation and embedded foundation, ensures high stability of the entire installation assembly, enabling it to withstand various external environmental influences such as wind and earthquakes. This makes the installation of the equipment box more stable and reduces the impact of the external environment on the equipment box. Furthermore, the reinforcing part improves the connection strength between the concrete foundation and the embedded foundation, thereby enhancing the durability of the entire installation assembly and extending its service life. Simultaneously, the first and second limiting parts of the embedded foundation move and cooperate with the third limiting part of the installation pipe to fix the installation pipe, preventing it from moving during concrete pouring and improving the construction efficiency of the installation assembly. Of course, the fixing of the installation pipe ensures the safe transmission of cables and other connecting lines, avoiding malfunctions caused by installation pipe displacement.
[0007] Furthermore, the pre-embedded foundation includes: a first pre-embedded component, which has a first limiting portion, extends in the length direction, is received in the first pre-embedded groove, and its two ends respectively abut against the stepped surface; a second pre-embedded component, which is slidably connected to the first pre-embedded component, which has a second limiting portion, extends in the width direction, is received in the first pre-embedded groove, and its two ends respectively abut against the stepped surface; wherein the first pre-embedded component can selectively slide relative to the second pre-embedded component in the width direction, and the second pre-embedded component can selectively move relative to the first pre-embedded component in the length direction; wherein the first pre-embedded component and / or the second pre-embedded component are provided with a reinforcing portion extending into the second pre-embedded groove.
[0008] Furthermore, the outer peripheral wall of the mounting pipe is provided with a limiting groove extending in the circumferential direction. The limiting groove is constructed as the third limiting part. At least a portion of the outer peripheral wall of the first embedded part is constructed as the first limiting part, and at least a portion of the second embedded part is constructed as the second limiting part. At least a portion of the first embedded part is received in the limiting groove, and at least a portion of the second embedded part is received in the limiting groove, so as to fix the mounting pipe relative to the embedded foundation.
[0009] Furthermore, the first embedded part is provided with a groove extending in the length direction, and at least a portion of the second embedded part is slidably received within the groove.
[0010] Furthermore, the first embedded part is provided with a fixing member that extends in the height direction and protrudes from the ground, the fixing member being adapted to be fixed to the equipment box.
[0011] Furthermore, it also includes: a base plate, wherein the base plate is provided with a limiting hole suitable for the fastener to pass through, and the top of the base plate is suitable for mounting the equipment box.
[0012] Furthermore, there is a filling gap between the base plate and the first embedded part, and the filling gap is filled with concrete.
[0013] Furthermore, the first embedded part is constructed as two parts spaced apart in the width direction, and the second embedded part is constructed as two parts spaced apart in the length direction.
[0014] Other advantages, objectives, and features of this invention will be set forth in the following description and will be apparent to those skilled in the art to some extent, or may be learned by practice of this invention. The objectives and other advantages of this invention can be realized and obtained through the following description. Attached Figure Description
[0015] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the following drawings are provided for illustration:
[0016] Figure 1 This is a cross-sectional view showing the connection between the mounting components and the equipment box of this utility model;
[0017] Figure 2 This is a schematic diagram of the embedded foundation of this utility model;
[0018] Figure 3 This is a schematic diagram of the installation tube of this utility model.
[0019] The following labels are shown in the attached diagram:
[0020] 10. Concrete foundation;
[0021] 20. Embedded foundation; 21. First embedded part; 211. Slide groove; 212. Fixing part; 22. Second embedded part; 23. Reinforcing part;
[0022] 30. Mounting pipe; 31. Mounting part; 311. Limiting groove; 32. Connecting part;
[0023] 40. Base plate; 50. Equipment box;
[0024] 61. First pre-embedded groove; 62. Second pre-embedded groove. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.
[0026] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. However, it will be apparent to those skilled in the art that these specific details are not necessary to implement the present invention. In other instances, well-known structures, circuits, materials, or methods have not been specifically described in order to avoid obscuring the present invention.
[0027] Throughout this specification, references to "an embodiment," "an example," or "an example" mean that a particular feature, structure, or characteristic described in connection with that embodiment or example is included in at least one embodiment of the present invention. Therefore, the phrases "an embodiment," "an example," "an example," or "an example" appearing in various places throughout the specification do not necessarily refer to the same embodiment or example. Furthermore, specific features, structures, or characteristics can be combined in one or more embodiments or examples in any suitable combination and / or sub-combination. Moreover, those skilled in the art will understand that the illustrations provided herein are for illustrative purposes and are not necessarily drawn to scale. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0028] In the description of this utility model, it should be understood that the terms "front", "rear", "left", "right", "up", "down", "vertical", "horizontal", "high", "low", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this utility model.
[0029] Example 1:
[0030] like Figures 1-3 As shown, this utility model provides an equipment box installation assembly for signal facilities, including: a concrete foundation 10, a pre-embedded foundation 20, and an installation pipe 30. The concrete foundation 10 is disposed in a first pre-embedded groove 61 and a second pre-embedded groove 62. The pre-embedded foundation 20 is adapted to be connected to the equipment box 50. The pre-embedded foundation 20 is housed in the first pre-embedded groove 61, and the end of the pre-embedded foundation 20 abuts against a stepped surface. The pre-embedded foundation 20 is provided with a reinforcing part 23 extending into the second pre-embedded groove 62. The pre-embedded foundation 20 is provided with a first limiting part that can be moved selectively in the width direction and a second limiting part that can be moved selectively in the length direction. One end of the installation pipe 30 is connected to a well, and the other end of the installation pipe 30 passes through the second pre-embedded groove 62 and the first pre-embedded groove 61 and extends to the ground. The outer peripheral wall of the installation pipe 30 is provided with a third limiting part. The first limiting part, the second limiting part, and the third limiting part cooperate to fix the installation pipe 30 relative to the pre-embedded foundation 20.
[0031] In some embodiments, the ground is provided with a first embedded groove 61 and a second embedded groove 62. The second embedded groove 62 is located at the bottom of the first embedded groove 61, and a stepped surface is formed between the first embedded groove 61 and the second embedded groove 62. A concrete foundation 10 is disposed within the first embedded groove 61 and the second embedded groove 62, and the concrete foundation 10 is used to provide stable support. An embedded foundation 20 is adapted to be connected to the equipment box 50 and installed in the first embedded groove 61. The end of the embedded foundation 20 abuts against the stepped surface to ensure that the position of the embedded foundation 20 is fixed. The embedded foundation 20 is provided with a reinforcing part 23 extending into the second embedded groove 62 to increase the structural strength of the embedded foundation 20. (The embedded foundation 20 is combined with the concrete foundation 10, so that the embedded foundation 20...) The structure has good stability. The reinforcing part 23 extends toward the second pre-embedded groove 62, that is, the reinforcing part 23 can increase the contact area between the pre-embedded foundation 20 and the concrete, thereby making the structure of the pre-embedded foundation 20 more stable. The pre-embedded foundation 20 is also provided with a first limiting part and a second limiting part. The first limiting part and the second limiting part can move in the width direction and the length direction, respectively. One end of the installation pipe 30 is connected to the kiln well (usually an underground pipeline or cable well). The other end of the installation pipe 30 passes through the second pre-embedded groove 62 and the first pre-embedded groove 61 and extends to the ground. The outer peripheral wall of the installation pipe 30 is provided with a third limiting part. The third limiting part cooperates with the first limiting part and the second limiting part of the pre-embedded foundation 20 to fix the installation pipe 30 on the pre-embedded foundation 20.
[0032] It is understood that by setting a first pre-embedded groove 61 and a second pre-embedded groove 62 on the ground, and forming a stepped surface between the first pre-embedded groove 61 and the second pre-embedded groove 62, a clear installation position and support point are provided for the pre-embedded foundation 20 and the concrete foundation 10. The pre-embedded foundation 20 is installed in the first pre-embedded groove 61, and the end of the pre-embedded foundation 20 abuts against the stepped surface to ensure that the position of the pre-embedded foundation 20 is fixed. The reinforcing part 23 extends into the second pre-embedded groove 62. One end of the installation pipe 30 is connected to the kiln well, and the other end of the installation pipe 30 passes through the pre-embedded groove and extends to the ground. The installation pipe 30 provides the necessary channel for cables or other connection lines for the equipment box 50. The first limiting part moves in the width direction and cooperates with the third limiting part, and the second limiting part moves in the length direction and cooperates with the third limiting part to fix the pre-embedded foundation 20 and the installation pipe 30. Then, concrete is poured in the first pre-embedded groove 61 and the second pre-embedded groove 62. After the concrete solidifies, the concrete foundation 10 is formed.
[0033] It is worth mentioning that the third limiting part cooperates with the first and second limiting parts of the pre-embedded foundation 20 to ensure the fixation of the installation pipe 30 and prevent the installation pipe 30 from shifting during the concrete pouring process. Moreover, the concrete foundation 10 is poured in the first pre-embedded groove 61 and the second pre-embedded groove 62, and the concrete foundation 10 and the pre-embedded foundation 20 form an integral whole to provide solid support for the entire installation assembly and ensure the long-term stability and compressive strength of the installation assembly.
[0034] According to the equipment box installation assembly for signal facilities of this utility model, the combined design of the concrete foundation 10 and the pre-embedded foundation 20 ensures the high stability of the entire installation assembly, enabling it to withstand various external environmental influences, such as wind and earthquakes. This makes the installation of the equipment box 50 more stable and reduces the impact of the external environment on the equipment box 50. Moreover, the reinforcing part 23 improves the connection strength between the concrete foundation 10 and the pre-embedded foundation 20, thereby enhancing the durability of the entire installation assembly and extending its service life. At the same time, the first and second limiting parts of the pre-embedded foundation 20 move and cooperate with the third limiting part of the installation pipe 30 to fix the installation pipe 30, preventing the installation pipe 30 from moving during the concrete pouring process and improving the construction efficiency of the installation assembly. Of course, the fixing of the installation pipe 30 ensures the safe transmission of cables and other connecting lines and avoids malfunctions caused by the displacement of the installation pipe 30.
[0035] In some embodiments, the mounting pipe 30 includes a mounting portion 31 and a connecting portion 32. The outer peripheral wall of the mounting portion 31 is provided with a third limiting portion. A first channel is provided inside the mounting portion 31, and a second channel is provided inside the connecting portion 32. The first channel and the second channel communicate with each other, and the inner peripheral wall of the first channel is provided with a first thread. One end of the connecting portion 32 communicates with the kiln well, and the outer peripheral wall of the other end of the connecting portion 32 is provided with a second thread. The first thread and the second thread cooperate to connect the mounting portion 31 and the connecting portion 32.
[0036] Example 2:
[0037] Based on Embodiment 1, the pre-embedded foundation 20 includes: a first pre-embedded part 21 and a second pre-embedded part 22. The first pre-embedded part 21 is provided with a first limiting part, extends in the length direction, is received in the first pre-embedded groove 61 and its two ends respectively abut against the step surface. The second pre-embedded part 22 is slidably connected to the first pre-embedded part 21, is provided with a second limiting part, extends in the width direction, is received in the first pre-embedded groove 61 and its two ends respectively abut against the step surface. The first pre-embedded part 21 can be selectively slidable relative to the second pre-embedded part 22 in the width direction, and the second pre-embedded part 22 can be selectively moved relative to the first pre-embedded part 21 in the length direction. The first pre-embedded part 21 and / or the second pre-embedded part 22 are provided with a reinforcing part 23 extending into the second pre-embedded groove 62.
[0038] In some embodiments, a first limiting part is provided on the first embedded part 21. The first embedded part 21 extends in the length direction and is received in the first embedded groove 61. Both ends of the first embedded part 21 abut against the stepped surface to ensure that the position of the first embedded part 21 is fixed. The first embedded part 21 is slidably connected to the second embedded part 22. The first embedded part 21 can slide in the width direction to drive the first limiting part to move, so that the first limiting part cooperates with the third limiting part on the mounting tube 30 to fix the position of the mounting tube 30.
[0039] The second embedded part 22 is provided with a second limiting part. The second embedded part 22 extends in the width direction and is received in the first embedded groove 61. Both ends of the second embedded part 22 abut against the step surface to ensure that the position of the second embedded part 22 is fixed. The second embedded part 22 is slidably connected to the first embedded part 21. The second embedded part 22 can move in the length direction to drive the second limiting part to move, so that the second limiting part cooperates with the third limiting part on the mounting tube 30 to fix the position of the mounting tube 30.
[0040] In some embodiments, the first embedded part 21 and / or the second embedded part 22 are provided with a reinforcing part 23 extending into the second embedded groove 62. Here, the first embedded part 21 may be provided with a reinforcing part 23 extending into the second embedded groove 62; the second embedded part 22 may be provided with a reinforcing part 23 extending into the second embedded groove 62; or the first embedded part 21 may be provided with a reinforcing part 23 extending into the second embedded groove 62, and the second embedded part 22 may also be provided with a reinforcing part 23 extending into the second embedded groove 62. There is no limitation here.
[0041] According to some embodiments of the present invention, the outer peripheral wall of the mounting pipe 30 is provided with a limiting groove 311 extending in the circumferential direction. The limiting groove 311 is configured as a third limiting part. At least a portion of the outer peripheral wall of the first embedded part 21 is configured as a first limiting part, and at least a portion of the second embedded part 22 is configured as a second limiting part. At least a portion of the first embedded part 21 and at least a portion of the second embedded part 22 are received in the limiting groove 311 to fix the mounting pipe 30 relative to the embedded foundation 20.
[0042] In some embodiments, the outer peripheral wall of the mounting tube 30 is provided with a limiting groove 311 extending in the circumferential direction. The limiting groove 311 is constructed as a third limiting part. The function of the limiting groove 311 is to provide a fixed reference point during the installation process to ensure that the position of the mounting tube 30 will not shift.
[0043] At least a portion of the outer peripheral wall of the first embedded part 21 is constructed as a first limiting part. The first limiting part is designed to cooperate with the limiting groove 311 of the mounting pipe 30 to ensure the fixing of the mounting pipe 30 in the width direction. At least a portion of the second embedded part 22 is constructed as a second limiting part. The second limiting part is designed to cooperate with the limiting groove 311 of the mounting pipe 30 to ensure the fixing of the mounting pipe 30 in the length direction.
[0044] Therefore, at least a portion of the first embedded part 21 and at least a portion of the second embedded part 22 are housed within the limiting groove 311 of the installation pipe 30, ensuring the fixation of the installation pipe 30 in both the length and width directions and preventing displacement of the installation pipe 30 during concrete pouring. Of course, the outer peripheral walls of at least a portion of the first embedded part 21 and at least a portion of the second embedded part 22 can abut against the inner peripheral wall of the limiting groove 311, thereby further limiting the displacement of the installation pipe 30 in the height direction.
[0045] Therefore, the cooperative design of the limiting groove 311, the first limiting part, and the second limiting part ensures the precise fixing of the installation pipe 30, preventing displacement of the installation pipe 30 during concrete pouring, and improving the construction convenience and efficiency of the installation components. In other words, the design of the limiting groove 311 and the limiting part simplifies the installation process, making the fixing of the installation pipe 30 more convenient and faster. The installer only needs to align the limiting parts of the first embedded part 21 and the second embedded part 22 with the limiting groove 311 respectively to complete the fixing of the installation pipe 30. Of course, through the cooperation of the limiting parts of the first embedded part 21 and the second embedded part 22 with the limiting groove 311 of the installation pipe 30, the installation pipe 30 is fixed in multiple directions, ensuring the multi-directional stability of the installation pipe 30 during concrete pouring.
[0046] Example 3:
[0047] Based on Embodiment 2, in this embodiment, the first embedded part 21 is provided with a groove 211 extending in the length direction, and at least a portion of the second embedded part 22 is slidably received in the groove 211.
[0048] In some embodiments, the groove 211 on the first embedded part 21 extends in the length direction, and the groove 211 provides a sliding path for the second embedded part 22. That is, the existence of the groove 211 allows the second embedded part 22 to move relative to the first embedded part 21 in the length direction, thereby realizing the cooperation between the second embedded part 22 and the mounting pipe 30. Of course, the second embedded part 22 extends in the width direction, and the second embedded part 22 also provides a sliding path for the first embedded part 21, so that the first embedded part 21 can move relative to the second embedded part 22 in the width direction, thereby realizing the cooperation between the first embedded part 21 and the mounting pipe 30.
[0049] It is worth noting that after the concrete is poured, the concrete can fill the groove 211. Thus, the design of the groove 211 can increase the connection area between the concrete foundation 10 and the first embedded part 21, thereby enhancing the structural stability of the installation components.
[0050] According to some embodiments of the present invention, the first embedded part 21 is provided with a fixing part 212 that extends in the height direction and protrudes from the ground, and the fixing part 212 is adapted to be fixed to the equipment box 50.
[0051] Understandably, the fastener 212 extends in the height direction and penetrates the concrete foundation 10 and protrudes from the ground, ensuring the visibility and operability of the fastener 212 after installation. This allows installers to easily fix the equipment box 50 to the fastener 212. In other words, the fastener 212 protrudes from the ground, providing a direct fixing point for the equipment box 50, simplifying the installation process of the equipment box 50 and reducing the need for additional fixing devices.
[0052] In some embodiments, the free end of the fastener 212 is constructed as a screw, and the bottom of the equipment box 50 is provided with a through hole. The screw passes through the through hole and extends into the equipment box 50. Then, the equipment box 50 and the fastener 212 can be fixed by using a nut to cooperate with the screw. The installation method of the equipment box 50 is simple and improves the installation efficiency of the equipment box 50.
[0053] Therefore, the fastener 212 protrudes from the ground, allowing installers to easily fix the equipment box 50 to the fastener 212, simplifying the installation process and improving the installation efficiency of the equipment box 50. Moreover, the extension design of the fastener 212 in the height direction ensures a firm connection between the fastener 212 and the equipment box 50, improving the installation stability of the equipment box 50 and effectively preventing displacement or loosening of the equipment box 50 during use. Of course, the fact that the fastener 212 protrudes from the ground also makes the fastener 212 more visible and operable during the installation process, making it easier for installers to find the fixing point and operate, reducing the possibility of installation errors.
[0054] Example 4:
[0055] Based on Embodiment 3, the mounting assembly in this embodiment further includes a base plate 40, which has a limiting hole suitable for the fastener 212 to pass through, and the top of the base plate 40 is suitable for mounting the equipment box 50.
[0056] Understandably, the plate is provided with limiting holes suitable for the fastener 212 to pass through. The purpose of the limiting holes is to ensure that the base plate 40 can be accurately installed on the fastener 212, so that the base plate 40 can provide a flat and stable installation platform for the equipment box 50. Preferably, the top of the base plate 40 protrudes from the ground, thereby providing a certain degree of waterproofing and preventing the equipment box 50 from contacting water flowing on the ground.
[0057] Therefore, the design of the limiting holes ensures the precise alignment of the base plate 40 during installation, improving the installation accuracy of the base plate 40. This allows the base plate 40 to provide a flat and stable installation platform for the equipment box 50, ensuring the stability of the equipment box 50 during use and helping to prevent the equipment box 50 from tilting or loosening due to uneven ground or improper installation. Of course, the use of the base plate 40 simplifies the installation process of the equipment box 50. Installers only need to align the base plate 40 with the fixing member 212 and fix it through the limiting holes, and then install the equipment box 50 on the base plate 40, greatly reducing installation time and labor intensity. At the same time, the use of the base plate 40 can also protect the equipment box 50, preventing the equipment box 50 from directly contacting the ground, reducing the impact of ground moisture and pollutants on the equipment box 50, and extending the service life of the equipment box 50.
[0058] According to some embodiments of the present invention, there is a filling gap between the base plate 40 and the first embedded part 21, and the filling gap is filled with concrete.
[0059] It is understandable that after the base plate 40 is installed on the fastener 212, a filling gap will be formed between the base plate 40 and the first embedded part 21. The existence of the filling gap is to ensure that the base plate 40 can be installed stably and to better fix the base plate 40 after filling with concrete.
[0060] The concrete filling the gaps will form a strong bonding layer after solidification. This bonding layer firmly connects the base plate 40 with the first embedded part 21, which not only enhances the structural stability of the installation assembly but also improves the overall durability of the installation assembly.
[0061] According to some embodiments of the present invention, the first embedded part 21 is configured as two parts spaced apart in the width direction, and the second embedded part 22 is configured as two parts spaced apart in the length direction.
[0062] It is understandable that the two first embedded parts 21 respectively cooperate with the limiting groove 311 of the installation pipe 30 on both sides in the width direction, and the two second embedded parts 22 respectively cooperate with the limiting groove 311 of the installation pipe 30 on both sides in the length direction, so as to make the fixing of the installation pipe 30 more stable. Moreover, the two first embedded parts 21 and the two second embedded parts 22 can increase the connection area between the embedded foundation 20 and the concrete foundation 10, thereby improving the connection stability between the embedded foundation 20 and the concrete foundation 10, and thus improving the structural stability of the installation component.
[0063] Of course, the multi-point fixing design of the two first embedded parts 21 and the two second embedded parts 22 ensures that the equipment box 50 is subjected to uniform force in all directions, avoids uneven force and deformation that may be caused by single-point fixing, helps to extend the service life of the equipment box 50, and reduces the frequency of maintenance and replacement of the equipment box 50.
[0064] In some embodiments, a first pre-embedded groove 61 and a second pre-embedded groove 62 are first excavated at a predetermined installation location. Then, one end of the installation pipe 30 is connected to a manhole (typically an underground pipe or cable manhole), and the other end of the installation pipe 30 passes through the second pre-embedded groove 62 and the first pre-embedded groove 61, extending above ground level. At this point, the first pre-embedded part 21 and the second pre-embedded part 22 are placed into the first pre-embedded groove 61, and their positions are adjusted so that a portion of the first pre-embedded part 21 and the second pre-embedded part 22 can be accommodated in a limiting groove 311 on the outer peripheral wall of the installation pipe 30, thereby fixing the position of the installation pipe 30. After the positions of the first embedded part 21 and the second embedded part 22 are adjusted, concrete is poured into the first embedded groove 61 and the second embedded groove 62. After the concrete solidifies, the concrete foundation 10 firmly fixes the first embedded part 21 and the second embedded part 22 to the ground, and also reinforces the position of the installation pipe 30. When the concrete is completely solidified, the fixing part 212 will protrude from the ground. Next, the base plate 40 is installed through the fixing part 212. The base plate 40 is provided with limiting holes corresponding to the fixing part 212 to ensure the correct position of the base plate 40. Finally, the equipment box 50 is installed on the top of the base plate 40 to complete the entire installation process.
[0065] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.
Claims
1. A mounting assembly for a signal facility's equipment box, comprising a first pre-embedded groove and a second pre-embedded groove provided in the ground, the second pre-embedded groove being formed at the bottom of the first pre-embedded groove, and a stepped surface defined between the first and second pre-embedded grooves, characterized in that, The installation components include: A concrete foundation, wherein the concrete foundation is disposed within the first pre-embedded groove and the second pre-embedded groove; An embedded foundation is provided, which is adapted to be connected to an equipment box. The embedded foundation is housed in the first embedded groove, and the end of the embedded foundation abuts against the stepped surface. The embedded foundation is provided with a reinforcing part extending into the second embedded groove. The embedded foundation is provided with a first limiting part that can be moved in the width direction and a second limiting part that can be moved in the length direction. The installation pipe has one end connected to the kiln well and the other end passing through the second pre-embedded groove and the first pre-embedded groove and extending to the ground. The outer peripheral wall of the installation pipe is provided with a third limiting part. The first limiting part, the second limiting part and the third limiting part cooperate to fix the installation pipe relative to the pre-embedded foundation.
2. The equipment enclosure mounting assembly for signal facilities according to claim 1, characterized in that, The embedded foundation includes: The first embedded part is provided with the first limiting part. The first embedded part extends in the length direction and is received in the first embedded groove. Both ends of the first embedded part abut against the stepped surface. A second embedded part is slidably connected to a first embedded part. The second embedded part is provided with a second limiting portion. The second embedded part extends in the width direction and is received within a first embedded groove, with both ends respectively abutting against the stepped surface. The first embedded part can be selectively slidable relative to the second embedded part in the width direction, and the second embedded part can be selectively moved relative to the first embedded part in the length direction; wherein The first embedded part and / or the second embedded part are provided with a reinforcing part extending into the second embedded groove.
3. The equipment enclosure mounting assembly for signal facilities according to claim 2, characterized in that, The outer peripheral wall of the mounting pipe is provided with a limiting groove extending in the circumferential direction. The limiting groove is constructed as the third limiting part. At least a portion of the outer peripheral wall of the first embedded part is constructed as the first limiting part, and at least a portion of the second embedded part is constructed as the second limiting part. in At least a portion of the first embedded part is received within the limiting groove, and at least a portion of the second embedded part is received within the limiting groove, so as to fix the mounting pipe relative to the embedded foundation.
4. The equipment enclosure mounting assembly for signal facilities according to claim 3, characterized in that, The first embedded part is provided with a groove extending in the length direction, and at least a portion of the second embedded part is slidably received in the groove.
5. The equipment enclosure mounting assembly for signal facilities according to claim 4, characterized in that, The first embedded part is provided with a fixing member that extends in the height direction and protrudes from the ground, and the fixing member is adapted to be fixed to the equipment box.
6. The equipment enclosure mounting assembly for signal facilities according to claim 5, characterized in that, Also includes: The base plate has a limiting hole for the fastener to pass through, and the top of the base plate is suitable for mounting the equipment box.
7. The equipment enclosure mounting assembly for signal facilities according to claim 6, characterized in that, There is a filling gap between the base plate and the first embedded part, and the filling gap is filled with concrete.
8. The equipment enclosure mounting assembly for signal facilities according to claim 7, characterized in that, The first embedded part is constructed as two parts spaced apart in the width direction, and the second embedded part is constructed as two parts spaced apart in the length direction.