Double-groove assembly mechanism of socket power panel
Technical Field
The utility model relates to the technical field of socket power boards, in particular to a double-groove assembly mechanism of a socket power board.
Background
The power strip inside the receptacle, commonly referred to as a circuit board or printed wiring board, is a critical electronic component inside the receptacle. The support body not only serves as a support body of the electronic components, but also is responsible for electric connection among the electronic components, and ensures that current can be stably and safely transmitted. The design of a circuit board is very precise and it contains a plurality of circuit paths that are electrically connected by wires to electronic components. In the socket, the main function of the circuit board is to protect the circuit, namely to provide a voltage stabilizing function, so as to ensure that the connected electrical equipment can receive stable voltage and current.
When the power panel is used on the socket, the structure needs to be fixed. The current power strip fixed knot constructs all through screw installation fixed, and screw assembly structure is comparatively single, and the assembly is troublesome, and stability is relatively poor moreover. New improvements are therefore needed to the structure of existing power panels.
Disclosure of utility model
In order to solve the problems, one end of the power panel body of the utility model can slide in quickly through the sliding slot, thereby greatly simplifying positioning and alignment work in the initial stage of assembly and reducing manual intervention and assembly errors. The other end is tightly matched with the fixed plug cover through the fixed slot to realize stable locking, so that the power panel is ensured not to loosen or fall off due to vibration or external force in the use process.
The double-groove assembly mechanism for the socket power panel comprises a power panel body and an assembly for assembling the power panel body, wherein the assembly comprises a bottom shell and a fixed plug-in cover, the bottom shell is provided with a placement cavity, two sides of the placement cavity are provided with a sliding slot and an assembly slot, the fixed plug-in cover is provided with an assembly plug-in piece and a fixed slot, the assembly plug-in piece is used for being inserted into the assembly slot, the fixed slot is opposite to the sliding slot, one end of the power panel body is slidingly assembled on the sliding slot, and the other end of the power panel body is arranged in the fixed slot.
The power panel is characterized in that a fixing clamping groove is formed in one end of the power panel body, a fixing buckle is arranged on the fixing clamping groove and used for being buckled with the fixing clamping groove, and the power panel body is fixed in the sliding clamping groove.
According to the technical scheme, the power panel is characterized in that the end, far away from the fixed plug cover, of the sliding slot is provided with a close-fitting part, and the close-fitting part is used for clamping and fixing one end of the power panel body.
According to the scheme, the bottom of the bottom shell is provided with the backboard, and one end of the backboard extends towards the fixed plug cover.
The technical scheme is further improved in that the arrangement cavity is provided with a support step, the support step is provided with a panel, and one face of the panel is opposite to the power panel body.
The power panel is characterized in that the power panel body is provided with a plug-in module, and the panel is provided with a jack opposite to the plug-in module.
According to the scheme, one end of the bottom shell is provided with an abutting surface, and the abutting surface is used for abutting against the fixed plug-in cover.
In a further improvement of the above scheme, the assembly slot is located at the lower side of the sliding slot, and an extension part is arranged at the inner side of the assembly inserting sheet and extends towards the placement cavity.
The power panel is characterized in that the sliding slots are provided with two groups, the two groups of sliding slots are oppositely arranged on two wall surfaces of the placement cavity, and two ends of the power panel body are arranged on the sliding slots and one surface of the power panel body is suspended in the placement cavity.
The further improvement to above-mentioned scheme is, the one end of fixed plug is provided with the connecting wire, the connecting wire is used for electrically connecting the power strip body.
The utility model has the beneficial effects that:
Compared with the existing socket power panel mounting structure, the socket power panel mounting structure has the advantages that the assembly efficiency, the stability and the maintenance convenience of the power panel assembly are remarkably improved through the unique design concept and the precise structural layout. One end of the power panel body is quickly slid in through the sliding slot, positioning and alignment work in the initial assembly stage is greatly simplified, and manual intervention and assembly errors are reduced. The other end is tightly matched with the fixed plug cover through the fixed slot to realize stable locking, so that the power panel is ensured not to loosen or fall off due to vibration or external force in the use process. The double locking mechanism of the sliding slot and the fixed slot provides double guarantee for the power panel body. The design of the sliding slot allows the power panel to be finely adjusted in a certain range to ensure the optimal installation state, and the close fit of the fixed slot and the fixed plug cover effectively resists the impact and vibration of the external environment and enhances the structural strength and stability of the whole power panel assembly. Firm assembly has guaranteed that the power strip can not send abnormal sound or rock in the use, has reduced the inconvenience because of equipment problem brings.
Drawings
Fig. 1 is a perspective view of a double-slot assembly mechanism of a socket power strip of the present utility model;
FIG. 2 is an exploded view of the dual pocket assembly mechanism of the receptacle power strip of FIG. 1;
Fig. 3 is an exploded view of the dual pocket assembly mechanism of the receptacle power strip of fig. 1 from another perspective.
Reference numerals indicate that the power panel body 1, the fixing clip groove 11, the plug module 12, the assembly component 2, the bottom chassis 21, the back plate 211, the abutment surface 212, the fixing plug cover 22, the assembly plug 221, the extension portion 2211, the fixing socket 222, the fixing buckle 2221, the connection line 223, the installation cavity 23, the support step 231, the panel 232, the insertion hole 233, the slide socket 24, the tight fitting portion 241, and the assembly socket 25.
Detailed Description
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. Preferred embodiments of the present utility model are shown in the drawings. This utility model may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "fixed to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. As shown in fig. 1 to 3, in one embodiment of the present utility model, a dual-slot assembly mechanism for a socket power board is provided, including a power board body 1 and an assembly 2 for assembling the power board body 1, the assembly 2 includes a bottom shell 21 and a fixed plug-in cover 22, the bottom shell 21 is provided with a placement cavity 23, two sides of the placement cavity 23 are provided with a sliding plug-in slot 24 and an assembly plug-in slot 25, the fixed plug-in cover 22 is provided with an assembly plug-in tab 221 and a fixed plug-in slot 222, the assembly plug-in tab 221 is used for being inserted into the assembly plug-in slot 25, the fixed plug-in slot 222 is opposite to the sliding plug-in slot 24, and one end of the power board body 1 is slidingly assembled on the sliding plug-in slot 24, and the other end is arranged in the fixed plug-in slot 222. The embodiment remarkably improves the assembly efficiency, stability and maintenance convenience of the power panel assembly through the unique design concept and precise structural layout. One end of the power panel body 1 is quickly slid in through the sliding slot 24, positioning and alignment work in the initial assembly stage is greatly simplified, and manual intervention and assembly errors are reduced. The other end is tightly matched with the fixed plug cover 22 through the fixed slot 222 to realize stable locking, so that the power panel is ensured not to loosen or fall off due to vibration or external force in the use process. The dual locking mechanism of the sliding slot 24 and the fixed slot 222 provides dual security for the power panel body 1. The design of the sliding slot 24 allows the power panel to be finely adjusted in a certain range to ensure the optimal installation state, while the close fit of the fixed slot 222 and the fixed plug cover 22 effectively resists the impact and vibration of the external environment and enhances the structural strength and stability of the whole power panel assembly. Firm assembly has guaranteed that the power strip can not send abnormal sound or rock in the use, has reduced the inconvenience because of equipment problem brings.
One end of the power panel body 1 is provided with a fixing clamping groove 11, a fixing buckle 2221 is arranged on the fixing slot 222, and the fixing buckle 2221 is used for buckling the fixing clamping groove 11 so as to fix the power panel body 1 in the sliding slot 24. In this embodiment, through the fastening effect of the fixing buckle 2221, rapid installation and disassembly under the tool-free condition are realized, and the maintenance operation flow is greatly simplified. Meanwhile, the physical locking mechanism effectively prevents the power panel from loosening or falling off under the action of external force or long-term use, and ensures the stability and safety of power transmission.
The end of the sliding slot 24 away from the fixed plug cover 22 is provided with a tight-fitting portion 241, and the tight-fitting portion 241 is used for clamping and fixing one end of the power panel body 1. In this embodiment, the close-fitting portion 241 effectively fixes one end of the power board body 1 through an accurate matching and strong clamping mechanism, so as to ensure stability under a complex electrical environment or vibration condition, and greatly improve reliability and safety of assembly. The power panel can prevent the power panel from loosening or shifting in the long-time use process, reduces the electrical fault risk caused by poor contact, optimizes the compactness of the whole structure and is convenient for installation and maintenance. In addition, the application of the close-fitting portion 241 simplifies the assembly process, improves the production efficiency, reduces the skill requirements on operators, and realizes efficient and convenient assembly operation.
The bottom of the bottom case 21 is provided with a back plate 211, and one end of the back plate 211 extends toward the fixed plug cover 22. In this embodiment, one end of the back plate 211 extends toward the fixed plug cover 22, so that the structural strength and stability of the bottom shell 21 are effectively enhanced, and deformation caused by plugging force or external impact can be resisted particularly in a multi-slot and high-load use scenario, so that the safety and stable operation of the internal elements of the power panel are ensured.
The placement cavity 23 is provided with a support step 231, the support step 231 is provided with a panel 232, and one surface of the panel 232 is opposite to the power panel body 1. Specifically, the power panel body 1 is provided with a plug-in module 12, the panel 232 is provided with a jack 233, and the jack 233 is opposite to the plug-in module 12. In this embodiment, the supporting step 231 is used as a stable foundation, which not only ensures the accurate positioning of the panel 232, but also enhances the bearing capacity of the whole structure, and effectively prevents loosening caused by vibration or external force. The jack 233 arranged on the panel 232 corresponds to the plug-in module 12 on the power panel body 1 accurately, so that quick and error-free plug-in connection is realized, the assembly process is simplified, and the production efficiency is improved. The design not only optimizes the assembly process, but also promotes the application of the modularized design concept, so that the replacement and maintenance of the power panel assembly are more convenient.
An abutment surface 212 is provided at one end of the bottom case 21, and the abutment surface 212 is used for abutting against the fixed plug cover 22. In this embodiment, through the direct action of the abutment surface 212, the plug cover can be rapidly and accurately positioned to a predetermined position in the installation process, so that the problem of dislocation or loosening possibly occurring in the traditional assembly mode is effectively avoided, and the overall stability and safety of the power socket are ensured.
The fitting insertion groove 25 is located at the lower side of the sliding insertion groove 24, and an extension 2211 is provided at the inner side of the fitting insertion piece 221, and the extension 2211 extends toward the installation cavity 23. The sliding slots 24 are provided with two groups, the two groups of sliding slots 24 are oppositely arranged on two wall surfaces of the placement cavity 23, and two ends of the power panel body 1 are arranged on the sliding slots 24 and one surface of the power panel body is suspended in the placement cavity 23. Specifically, one end of the fixed plug cover 22 is provided with a connection line 223, and the connection line 223 is used for electrically connecting the power panel body 1. In the present embodiment, the smart combination of the assembly slot 25 and the sliding slot 24 ensures that the power panel body 1 can be smoothly and accurately embedded into the predetermined position, wherein the arrangement of the extension portion 2211 further enhances the close fitting with the placement cavity 23, and effectively prevents the shaking and shifting during the installation process. The double-group opposite sliding slots 24 not only optimize space utilization, but also realize stable suspension of the power panel in the vertical direction through the support of the two sides, reduce stress concentration and prolong service life. In addition, the design of the connecting wire 223 integrated on the fixed plug cover 22 simplifies the connection flow of the power panel and an external circuit, and improves the overall assembly efficiency and the reliability of electrical connection.
The foregoing examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.