Insulator and insulator assembly

By designing the through-hole, frame, insert plate, and sealing ring structure of the insulator assembly, the problem of damage to electronic components caused by liquid infiltration was solved, achieving waterproofing, short-circuit protection, open-circuit protection, and improved safety.

CN121863099APending Publication Date: 2026-04-14吕 俊杰
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-09-25
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing insulating components are not effective in preventing liquid infiltration, which can damage electronic components.

Method used

An insulator assembly is designed, comprising an insulator with a through hole machined in the middle and a frame threadedly connected thereto. An insert plate is threadedly connected to the frame, the insert plate is slidably connected to the insert plate, and is detachably connected to a plate and a limiting plate. A sealing ring is fixedly connected to the limiting plate, and a support leg is fixedly connected to the insert frame. These structural components enable quick assembly and disassembly and prevent liquid ingress.

Benefits of technology

It effectively prevents liquid ingress, avoids short circuits or open circuits in electronic components, ensures smooth current flow, improves safety and reliability, adapts to different power supply requirements, prevents liquid from submerging plugs and other electronic components, and reduces the risk of electric shock.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of insulators, in particular to an insulator and an insulator assembly. Comprising an insulator with a through hole formed in the middle and an enclosure frame in threaded connection with the insulator, the enclosure frame is in threaded connection with an insertion plate, the insertion plate is slidably connected to an insertion frame, the insertion frame is detachably connected with an embedded plate, the insulator is detachably connected with a limiting plate, the limiting plate is fixedly connected with a plug, the limiting plate is fixedly connected with a sealing ring, and the insertion frame is fixedly connected with a plurality of supporting legs. The enclosure frame is fixedly connected with a plurality of mounting frames, the plurality of mounting frames are detachably connected with copper frames, two parallel copper frames are fixedly connected with quick connecting rods, the plurality of copper frames are fixedly connected with connectors, and the plurality of connectors are detachably connected with wires. The insulator comprises an insulating plate provided with an annular groove, a plurality of drainage grooves are formed in the insulating plate, and the sealing ring on the limiting plate corresponds to the annular groove up and down. The liquid can be prevented from infiltrating into the insulator assembly to damage the electronic element.
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Description

Technical Field

[0001] This invention relates to the field of insulators, and more specifically to an insulator and an insulator assembly. Background Technology

[0002] Existing connector assemblies include plugs and sockets, both of which can be referred to as electrical connectors. An electrical connector includes a metal housing with a mating end at the front. An insulator is housed within the metal housing, and at least two contacts are installed within the insulator. For two mating connectors, the contacts include a mating end located inside the insulator and a wire connection end located outside the insulator. One electrical connector has a pin contact, and the other has a socket contact. To ensure proper mating between the pin and socket contacts, the socket contact typically employs a crown spring hole structure. However, existing insulator assemblies cannot prevent liquid from seeping into the insulator assembly and damaging electronic components. Summary of the Invention

[0003] To overcome the shortcomings of the prior art, the present invention provides an insulator and an insulator assembly that can prevent liquid from seeping into the insulator assembly and causing damage to electronic components.

[0004] The technical solution adopted by this invention to solve its technical problem is:

[0005] An insulator assembly includes an insulator with a through hole machined in the middle and a frame threadedly connected to the insulator. An insert plate is threadedly connected to the frame and slidably connected to the insert plate. A plate is detachably connected to the insert plate. A limit plate is detachably connected to the insulator. A plug is fixedly connected to the limit plate and a sealing ring is fixedly connected to the limit plate. Multiple legs are fixedly connected to the insert frame.

[0006] Furthermore, multiple mounting frames are fixed to the frame, and copper frames are detachably connected to each mounting frame. Quick-connect rods are fixed to two parallel copper frames, and connectors are fixed to multiple copper frames. All connectors are detachably connected to wires.

[0007] Furthermore, the insert plate is machined with multiple bottom holes, and each bottom hole is slidably connected to a column rod. The multiple column rods are fixed to the base plate, and a spring is fixed between the base plate and the insert plate.

[0008] Furthermore, a slide is fixedly connected to the insert frame, and a slide groove is machined on the insert frame to be detachably connected to the slide.

[0009] Furthermore, the insulator includes an insulating plate with annular grooves, and multiple drainage grooves are machined on the insulating plate, with the sealing ring on the limiting plate corresponding vertically to the annular grooves. Attached Figure Description

[0010] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0011] Figure 1 This is a structural diagram of an insulator;

[0012] Figure 2 This is a structural diagram of the enclosure;

[0013] Figure 3 A structural diagram for installing the copper frame;

[0014] Figure 4 This is a structural diagram showing the location of the copper frame;

[0015] Figure 5 A structural diagram for protruding the plug;

[0016] Figure 6 for Figure 5 Another structural diagram of the structure shown;

[0017] Figure 7 A structural diagram showing the connection of multiple quick-connect rods;

[0018] Figure 8 This is a structural diagram showing the connection of multiple sets of insulator components.

[0019] Insulating plate 11; ring groove 12; drainage groove 13; frame 21; plug 22; interconnecting hole 23; mounting frame 24; insert plate 31; bottom hole 32; copper frame 41; quick-connect rod 42; connector 43; wire 44; post rod 51; base plate 52; spring 53; insert frame 61; panel 62; slide 63; slide groove 64; sleeve 71; limiting plate 81; plug 82. Detailed Implementation

[0020] refer to Figure 2 , 7 Section 8 details the implementation process of the insulator assembly structure:

[0021] An insulator assembly includes an insulator with a through hole in the middle and a frame 21 threadedly connected to the insulator, enabling quick assembly and disassembly of the insulator and the frame 21 for easy replacement and maintenance of the insulator. A plug plate 31 is threadedly connected to the frame 21 and slidably connected to the plug frame 61. This slidable connection allows for quick disassembly and installation. A detachable insert plate 62 is detachably connected to the plug frame 61. The quick installation of the insert plate 62 locks the plug plate 31, preventing separation of the plug plate 31 from the plug frame 61. The insulator is detachably... The connection is made of a limiting plate 81, on which a plug 82 is fixedly connected. The plug 82 connects to the power cord to enable current flow. Insulation is provided by an insulator to prevent leakage. A sealing ring is fixedly connected to the limiting plate 81 to prevent liquid from flowing in and causing a short circuit or open circuit, which would affect the flow of current. Multiple support legs are fixedly connected to the insertion frame 61. The support legs raise the height of the insulator and the plug to prevent liquid from immersing the plug 82 and other electronic components and wires when liquid is spilled, thus preventing damage to the parts.

[0022] In conjunction with the above embodiments, the following functions can also be achieved;

[0023] refer to Figure 3 and 4 The following details the implementation process of supplying power to the insulator assembly:

[0024] Multiple mounting frames 24 are fixedly connected to the frame 21. Copper frames 41 are detachably connected to each of the mounting frames 24. Quick-connect rods 42 are fixedly connected to two parallel copper frames 41. Connectors 43 are fixedly connected to each of the copper frames 41. The connectors 43 are detachably connected to wires 44. Power can be supplied by connecting the plug 82 to the copper frames 41.

[0025] In conjunction with the above embodiments, the following functions can also be achieved;

[0026] refer to Figure 5 and 6 The following details the process of unplugging plug 82:

[0027] The insert plate 31 has multiple bottom holes 32, and each bottom hole 32 is slidably connected to a column 51. The column 51 is fixedly connected to a base plate 52. A spring 53 is fixedly connected between the base plate 52 and the insert plate 31. In daily life, when hands are wet, direct contact with the plug 82 or insulator is inconvenient because the friction is reduced due to wet hands. There is also a risk of water droplets falling on the plug 82 or insulator, causing electric shock and injury. In this case, pushing the base plate 52 causes the base plate 52 to move... The sliding of multiple rods 51 simultaneously compresses the spring 53. As the multiple rods 51 slide, they push out the plug 82, thereby disconnecting the plug 82 from the multiple copper frames 41 and cutting off the flow of current. This avoids contact between the user's hand and the plug 82, reducing the risk of disconnecting the power supply and ensuring safety. After the plug 82 is pushed out, the fingers lose pressure on the base plate 52, and the compressed spring 53 pushes the base plate 52 to reset, thereby resetting the multiple rods 51 and enabling the plug 82 to be connected in subsequent use.

[0028] In conjunction with the above embodiments, the following functions can also be achieved;

[0029] refer to Figure 7 and 8 This document details the process of disassembling and assembling multiple insulator components.

[0030] A slide 63 is fixedly connected to the insert frame 61. A slide groove 64 is machined on the insert frame 61 and can be detachably connected to the slide 63. This allows for the quick assembly and disassembly of multiple slides 63 and slide grooves 64 through the sliding connection of multiple slides 63 and slide grooves 64. This enables the adaptive adjustment of the number of insulator components according to the daily use of the power supply, thereby adjusting the number of insulators.

[0031] In conjunction with the above embodiments, the following functions can also be achieved;

[0032] refer to Figure 7 The following details the implementation process of connecting the corresponding copper frames 41 in multiple sets of insulator assemblies:

[0033] Two interconnecting holes 23 are machined on the frame 21. Multiple quick-connect rods 42 correspond one-to-one with the corresponding interconnecting holes 23. The quick-connect rods 42 on the multiple corresponding copper frames 41 are detachably connected by sleeves 71. The inner layer of the multiple sleeves 71 is a copper tube and the outer layer is an insulating material. Thus, the connection of the corresponding quick-connect rods 42 is realized through the copper tube of the inner layer of the sleeves 71, thereby realizing the connection of the copper frames 41 in multiple sets of insulator assemblies.

[0034] In conjunction with the above embodiments, the following functions can also be achieved;

[0035] refer to Figure 2 and 4The following details the implementation process for preventing water ingress when the insulating assembly is used alone:

[0036] A plug 22 is detachably connected to the interconnecting hole 23, thereby blocking multiple interconnecting holes 23 with multiple plugs 22 to prevent liquid from flowing into multiple interconnecting holes 23, causing short circuits in electronic components and wires inside the insulator assembly, and causing damage to the insulator assembly.

[0037] In conjunction with the above embodiments, the following functions can also be achieved;

[0038] refer to Figure 5 The detailed procedure for ensuring that the ejector plug 82 disconnects from the multiple copper frames 41 is as follows:

[0039] The multiple posts 51 correspond to the corresponding copper frames 41, thereby ensuring that when the multiple posts 51 are pushed to slide, the multiple posts 51 can push the plug 82 to separate the plug 82 from the multiple copper frames 41, thus clearly removing the plug 82.

[0040] In conjunction with the above embodiments, the following functions can also be achieved;

[0041] refer to Figure 7 The following details the implementation process to prevent panel 62 from falling off:

[0042] The insert frame 61 is detachably connected to a magnet corresponding to the insert plate 62, thereby preventing the insert plate 62 from falling off by attracting the insert plate 62 with the magnet and ensuring the fixation of the insert plate 31.

[0043] In conjunction with the above embodiments, the following functions can also be achieved;

[0044] refer to Figure 6 The implementation process for preventing water leakage from multiple bottom holes 32 is described in detail below:

[0045] Multiple rubber rings are fixedly connected to the insert plate 31 and slidably connected to the corresponding column rods 51, thereby preventing liquid from entering the insert plate 31 when the multiple column rods 51 slide, which could cause short circuits in electronic components and damage to the insulating components.

[0046] In conjunction with the above embodiments, the following functions can also be achieved;

[0047] refer to Figure 1 The detailed implementation process for preventing water from entering the insulator after connecting plug 82 is described below:

[0048] The device includes an insulating plate 11 with annular grooves 12 and multiple drainage grooves 13. When liquid drips onto the insulating plate 11, it drains through the drainage grooves 13 to prevent liquid accumulation and prevent liquid from flowing to the lower end of the insulating plate 11, which could lead to water ingress, short circuits in electronic components, and damage to the electronic components. The sealing ring on the limiting plate 81 corresponds vertically to the annular grooves 12. When the plug 82 is inserted, the sealing ring on the limiting plate 81 is pressed into the annular grooves 12 to seal the through holes on the insulating plate 11 and prevent water ingress that could damage the insulating components.

Claims

1. An insulator assembly, characterized in that: It includes an insulator with a through hole in the middle and a frame (21) threaded to the insulator. A plug plate (31) is threaded to the frame (21). The plug plate (31) is slidably connected to the plug frame (61). A panel (62) is detachably connected to the plug frame (61). A limit plate (81) is detachably connected to the insulator. A plug (82) is fixed to the limit plate (81). A sealing ring is fixed to the limit plate (81). Multiple legs are fixed to the plug frame (61).

2. The insulator assembly according to claim 1, characterized in that: Multiple mounting frames (24) are fixedly connected to the frame (21). Each mounting frame (24) is detachably connected to a copper frame (41). Each of the two parallel copper frames (41) is fixedly connected to a quick-connect rod (42). Each of the multiple copper frames (41) is fixedly connected to a connector (43). Each of the multiple connectors (43) is detachably connected to a wire (44).

3. The insulator assembly according to claim 2, characterized in that: The insert plate (31) has multiple bottom holes (32) machined on it. Each bottom hole (32) is slidably connected to a column (51). The column (51) is fixed to the base plate (52). A spring (53) is fixed between the base plate (52) and the insert plate (31).

4. The insulator assembly according to claim 3, characterized in that: A slide (63) is fixedly connected to the insert frame (61), and a slide groove (64) is machined on the insert frame (61) to be detachably connected to the slide (63).

5. The insulator assembly according to claim 4, characterized in that: Two interconnecting holes (23) are machined on the frame (21), and multiple quick-connect rods (42) correspond one-to-one with the corresponding interconnecting holes (23). The quick-connect rods (42) on the multiple corresponding copper frames (41) are detachably connected through sleeves (71).

6. The insulator assembly according to claim 5, characterized in that: A plug (22) is detachably connected to the interconnecting hole (23).

7. The insulator assembly according to claim 3, characterized in that: The plurality of columns (51) correspond to the corresponding copper frames (41) above and below.

8. The insulator assembly according to claim 1, characterized in that: The insert frame (61) is detachably connected to a magnet corresponding to the panel (62).

9. The insulator assembly according to claim 3, characterized in that: The insert plate (31) is fixed with a plurality of rubber rings that are slidably connected to the corresponding column rods (51).

10. The insulator according to claim 1, characterized in that: It includes an insulating plate (11) with a ring groove (12) and multiple drainage grooves (13) on the insulating plate (11). The sealing ring on the limiting plate (81) corresponds to the ring groove (12) vertically.