Capacitor mounting structure
By setting multiple sets of mounting parts around the capacitor to form an interference fit mounting space, and by using the deformation connection of limiting teeth and limiting buckles, the problem of the capacitor loosening and falling off during transportation is solved, achieving a more stable fixing effect.
Patent Information
- Application Number
- CN202420392534.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-29
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-02-28
AI Technical Summary
During transportation, capacitors are prone to loosening or falling off due to bumps and jolting, and existing fixing methods are not secure enough.
Multiple sets of mounting components are used to form an interference fit mounting space around the capacitor, and limiting teeth are arranged circumferentially on the inner wall of the mounting space. Combined with limiting buckles and side limiting components, the capacitor is stably fixed by the deformation or movable connection of the limiting teeth and limiting buckles.
This improves the stability of the capacitors during transportation, reduces the risk of loosening and falling, and ensures the stability of the capacitors during unit transportation.
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Figure CN223665307U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of capacitor mounting technology, and specifically relates to capacitor mounting structure. Background Technology
[0002] As people's demands for quality of life increase, air conditioning has become an important household appliance. For central air conditioning, multiple indoor and outdoor units are connected. Capacitors are one of the indispensable components of most connected units. Moreover, since capacitors are cylindrical in shape, they are often shaken off during the transportation of the unit due to bumps. Therefore, the fixed installation of capacitors has become a problem.
[0003] like Figure 1 As shown, the existing capacitor mounting structure includes a clamp 2 and a capacitor mounting plate. The clamp 2 tightens the middle of the capacitor 1 and horizontally mounts the capacitor 1 on the capacitor mounting plate, thus fixing the capacitor 1 in place. However, relying solely on the clamp 2 for fixation, the capacitor 1 is prone to swaying and shaking along its axial direction when subjected to a large impact force, causing the capacitor 1 to loosen from the clamp 2, or even detach from the clamp 2 and fall off. Utility Model Content
[0004] In view of the shortcomings of the existing technology, this utility model provides a capacitor mounting structure to solve the problem that the capacitor and the clamp are prone to loosening or even falling off the clamp.
[0005] According to the embodiments of this utility model, the following technical solution is adopted:
[0006] The capacitor mounting structure includes at least two sets of mounting components. Multiple sets of mounting components surround and form a mounting space for interference fit mounting of the capacitor. The inner wall of the mounting space is evenly distributed with several limiting teeth along the circumference.
[0007] Compared with the prior art, the present invention has the following beneficial effects:
[0008] In this design, multiple sets of mounting components surround the mounting space, facilitating an interference fit between the capacitor and the mounting space during assembly. This interference fit securely holds the capacitor within the space, providing a more robust fixation. Furthermore, the design incorporates limiting teeth that restrain the capacitor's sidewalls, preventing rotation.
[0009] This design ensures a more secure installation of the capacitors, reducing the likelihood of them loosening or even falling off during transportation.
[0010] Furthermore, at least one set of mounting components has side limiting components on both sides for limiting the capacitor end face.
[0011] Furthermore, the side limiting component includes a first side limiting member and a second side limiting member. The first side limiting member is in the shape of an arc-shaped plate, and the second side limiting member includes a plurality of limiting buckles disposed on the mounting component.
[0012] Furthermore, both the limiting teeth and the limiting buckles can be deformed or movably connected to the mounting component.
[0013] Furthermore, adjacent sets of mounting components can be detachably connected.
[0014] Furthermore, a connecting plate is fixed to the end of the mounting component, and the connecting plates of adjacent mounting components are connected by adjusting bolts.
[0015] Furthermore, it also includes a mounting plate, with at least one set of mounting components detachably connected to the mounting plate.
[0016] Furthermore, a mounting base is detachably connected to the mounting plate, and the mounting base has a semi-circular mounting hole, in which at least one set of mounting components is fixed.
[0017] Furthermore, the mounting component fixed in the mounting hole includes an arc-shaped plate and a support plate fixed on both sides of the arc-shaped plate and extending along the axial direction of the arc-shaped plate. The support plate is used to support the side of the capacitor; the limiting teeth are set on the concave surface of the arc-shaped plate.
[0018] Furthermore, the mounting component not fixed in the mounting hole includes an arc-shaped plate and reinforcing walls fixed on both sides of the arc-shaped plate and extending radially along the arc-shaped plate, with limiting teeth disposed on the concave surface of the arc-shaped plate. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of the capacitor mounting structure in the background art of this utility model.
[0020] Figure 2 This is a schematic diagram of the overall structure of an embodiment of the present utility model.
[0021] Figure 3 for Figure 2 An explosion diagram.
[0022] In the diagram: 1. Capacitor; 2. Clamp; 3. Mounting plate; 4. Reinforcing wall; 5. Limiting tooth; 6. Mounting base; 7. Support plate; 8. Limiting buckle; 9. Upper mounting bracket; 10. Lower mounting bracket; 11. First side limiting component; 12. Connecting plate. Detailed Implementation
[0023] The present invention will be further described in detail below with reference to the accompanying drawings, and specific embodiments will be given.
[0024] like Figure 2 , Figure 3As shown, the capacitor mounting structure includes at least two sets of mounting components. Multiple sets of mounting components surround and form a mounting space for the interference fit mounting of capacitor 1. The inner wall of the mounting space has a plurality of limiting teeth 5 evenly distributed circumferentially. In this embodiment, [the following is used as an example]... Figure 3 As shown in the example, two sets of mounting components are provided, denoted as upper mounting bracket 9 and lower mounting bracket 10 respectively. Both upper mounting bracket 9 and lower mounting bracket 10 are semi-circular arcs, which can be spliced to form a ring-shaped mounting space for installing capacitor 1. Of course, in actual design, multiple sets of mounting components can be provided, for example, four sets of mounting components, in which case each mounting component can be a quarter-circular arc.
[0025] The limiting teeth 5 are evenly distributed along the concave surfaces of the upper mounting bracket 9 and the lower mounting bracket 10. Due to the setting of the limiting teeth 5, the capacitor 1 and the mounting space are interference-fitted. In fact, the tooth tip of the limiting teeth 5 abuts against the side wall of the capacitor 1 to achieve interference fit with the capacitor 1.
[0026] At least one set of mounting components has side limiting components on both sides for limiting the end face of capacitor 1. Since only two sets of mounting components are provided in this embodiment, the following description takes the side limiting components being set on the lower mounting bracket 10 as an example. Specifically, the side limiting components include a first side limiting component 11 and a second side limiting component. The first side limiting component 11 is arc-shaped. Specifically, the first side limiting component 11 includes a semi-circular annular plate fixed to the end of the lower mounting bracket 10 to increase the contact area with capacitor 1 and obtain a better fixing effect. The second side limiting component includes several limiting buckles 8 set on the mounting components, such as... Figure 2 As shown, there are three limiting buckles 8, which are evenly distributed at the end of the lower mounting bracket 10. By setting the limiting buckles 8, it is convenient to place the capacitor 1 between the first side limiting member 11 and the second side limiting member, so as to avoid the large contact area between the first side limiting member 11 and the second side limiting member and the end face of the capacitor 1, which would cause greater friction and make it inconvenient to place the capacitor 1.
[0027] To facilitate the placement of capacitor 1 and prevent damage to capacitor 1 due to rigid connection, both the limiting teeth 5 and the limiting buckles 8 can be deformed or movably connected to the mounting components. Specifically, in this embodiment, both the limiting teeth 5 and the limiting buckles 8 can be deformed. In actual design, the upper mounting bracket 9 and its limiting teeth 5 are integrally injection molded, as are the lower mounting bracket 10 and its limiting teeth 5, the first side limiting member 11, and the second side limiting member. All of these can be made of ABS plastic, which has a certain degree of deformability. When capacitor 1 is placed between the first side limiting member 11 and the second side limiting member, the limiting buckles 8 can deform to a certain extent to facilitate the placement of capacitor 1. When the two sets of mounting components are connected, the limiting teeth 5 can also deform to a certain extent, and there is a certain space between adjacent limiting teeth 5 for deformation. This allows the limiting teeth 5 to more firmly abut against the side wall of capacitor 1, achieving a better installation and fixing effect for capacitor 1.
[0028] Of course, in the actual design process, if the upper mounting bracket 9 and the lower mounting bracket 10 are made of other rigid materials, the limiting teeth 5 and the limiting buckles 8 can be movably connected to the mounting components. For example, the limiting buckles 8 can be hinged to the end of the lower mounting bracket 10 to facilitate adjustment of the position of the limiting buckles 8. After the limiting buckles 8 abut against the end face of the capacitor 1, the limiting buckles 8 can be fixed. For example, the limiting buckles 8 can be bolted to the lower mounting bracket 10 to maintain the deflection angle for fixing the capacitor 1. Of course, the limiting teeth 5 can also be hinged to the upper mounting bracket 9 or the lower mounting bracket 10 to allow for a certain deflection, thereby better abutting against the side wall of the capacitor 1.
[0029] In another embodiment of this utility model, adjacent mounting components are detachably connected, that is, the upper mounting bracket 9 and the lower mounting bracket 10 are detachably connected. Specifically, a connecting plate 12 is fixed at the end of the mounting component, and the connecting plates 12 of adjacent mounting components are connected by adjusting bolts. In actual use, the capacitor 1 is first placed on the lower mounting bracket 10, that is, the capacitor 1 is stuck between the first side limiting member 11 and the second side limiting member. Then, the upper mounting bracket 9 is connected to the lower mounting bracket 10. By controlling the tightness of the adjusting bolts, the connection tightness between the upper mounting bracket 9 and the lower mounting bracket 10 can be controlled to a certain extent. In addition, the force of the limiting tooth 5 against the side wall of the capacitor 1 can be controlled, thereby obtaining a more suitable fixing effect.
[0030] In another embodiment of this utility model, the capacitor mounting structure further includes a mounting plate 3, which is used to be mounted on the air conditioning unit structure or mounted to other required locations.
[0031] At least one set of mounting components is detachably connected to the mounting plate 3. Specifically, the mounting plate 3 is detachably connected to a mounting base 6, which has a semi-circular mounting hole. At least one set of mounting components is fixed in the mounting hole. Specifically, in this embodiment, the lower mounting bracket 10 is fixed in the mounting hole, and the mounting base 6 is bolted to the mounting plate 3.
[0032] To achieve better installation and fixation of capacitor 1, the mounting components fixed in the mounting holes include an arc-shaped plate and support plates 7 fixed on both sides of the arc-shaped plate and extending along the axial direction of the arc-shaped plate. The support plates 7 are used to support the sides of capacitor 1; the limiting teeth 5 are set on the concave surface of the arc-shaped plate. Specifically, the lower mounting bracket 10 is used to support capacitor 1. Through the design of the support plate 7, the contact area between the lower mounting bracket 10 and capacitor 1 is large, which can better support capacitor 1 and make the installation of capacitor 1 more stable.
[0033] The mounting components not fixed in the mounting holes include an arc-shaped plate and reinforcing walls 4 fixed on both sides of the arc-shaped plate and extending radially along the arc-shaped plate. Limiting teeth 5 are provided on the concave surface of the arc-shaped plate. Specifically, the upper mounting bracket 9 is used to fix the capacitor 1 onto the lower mounting bracket 10. The design of the reinforcing walls 4 ensures the stability of the upper mounting bracket 9 when the capacitor 1 moves along its axial direction.
[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0035] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A capacitor mounting structure, characterized in that: It includes at least two sets of mounting components, and multiple sets of mounting components surround to form a mounting space for interference fit installation of capacitors. The inner wall of the mounting space is evenly distributed with a number of limiting teeth along the circumference. At least one set of mounting components has side limiting components on both sides for limiting the end face of the capacitor. The side limiting components include a first side limiting component and a second side limiting component. The first side limiting component is in the shape of an arc plate, and the second side limiting component includes a number of limiting buckles set on the mounting component.
2. The capacitor mounting structure according to claim 1, characterized in that: The limiting teeth and limiting buckles can both be deformed or movably connected to the mounting component.
3. The capacitor mounting structure according to claim 1, characterized in that: Adjacent mounting components can be detachably connected.
4. The capacitor mounting structure according to claim 3, characterized in that: The end of the mounting component is fixed with a connecting plate, and the connecting plates of adjacent mounting components are connected by adjusting bolts.
5. The capacitor mounting structure according to claim 1, characterized in that: It also includes a mounting plate, with at least one set of mounting components detachably attached to the mounting plate.
6. The capacitor mounting structure according to claim 5, characterized in that: The mounting plate is detachably connected to a mounting base, which has a semi-circular mounting hole, and at least one set of mounting components is fixed in the mounting hole.
7. The capacitor mounting structure according to claim 6, characterized in that: The mounting components fixed in the mounting holes include an arc-shaped plate and support plates fixed on both sides of the arc-shaped plate and extending along the axial direction of the arc-shaped plate. The support plates are used to support the sides of the capacitor. Limiting teeth are set on the concave surface of the arc-shaped plate.
8. The capacitor mounting structure according to claim 6, characterized in that: The mounting component not fixed in the mounting hole includes an arc-shaped plate and reinforcing walls fixed on both sides of the arc-shaped plate and extending radially along the arc-shaped plate, with limiting teeth set on the concave surface of the arc-shaped plate.