Combined socket

文档序号:1415315 发布日期:2020-03-10 浏览:4次 中文

阅读说明:本技术 一种可组合式插座 (Combined socket ) 是由 郭佳伟 于 2019-12-04 设计创作,主要内容包括:一种可组合式插座,包括插座盖板、插座盒和组合连接机构;其特征在于:所述的组合连接机构包括凸出组合部分和凹进组合部分,所述通过凸出组合部分和凹进组合部分连接来实现多个插座的组合,以满足不同插座个数的需求;进一步地,所述的组合连接机构包括凸出组合部分A和凹进组合部分A,所述的凸出组合部分A包括凸出柱A;凹进组合部分A包括组合凹槽A,组合的时候,通过凸出柱A插入组合凹槽A,一种可组合式插座,两个插座通过凸出组合部分和凹进组合部分组合来完成插座的连接,实现了多个插座连接,满足了不同的插座个数的需求;通过密封半圆环A、密封柱和密封板B的设置来完成密封,防止在使用的过程中发生触电和接触点生锈。(A combined socket comprises a socket cover plate, a socket box and a combined connecting mechanism; the method is characterized in that: the combined connecting mechanism comprises a convex combined part and a concave combined part, and the combination of a plurality of sockets is realized by connecting the convex combined part and the concave combined part so as to meet the requirements of different socket numbers; further, the combined connecting mechanism comprises a convex combined part A and a concave combined part A, wherein the convex combined part A comprises a convex column A; the concave combined part A comprises a combined groove A, and when the combined socket is combined, the convex column A is inserted into the combined groove A, so that the two sockets can be combined, the two sockets are combined through the convex combined part and the concave combined part to complete the connection of the sockets, the connection of a plurality of sockets is realized, and the requirements of different socket numbers are met; sealing is accomplished through the setting of sealed semicircle ring A, sealed post and closing plate B, prevents to electrocute and the contact point rust takes place in the in-process that uses.)

1. A combinable socket comprises a socket cover plate (110), a socket box (120) and a combinable connecting mechanism; the method is characterized in that: the combined connecting mechanism comprises a protruding combined part and a recessed combined part, and the combination of a plurality of sockets is realized by connecting the protruding combined part and the recessed combined part so as to meet the requirements of different socket numbers.

2. The socket of claim 1, wherein the mating connection mechanism comprises a male mating portion A (130) and a female mating portion A (140), the male mating portion A (130) comprising a male post A (131); the recessed combination portion a (140) includes a combination groove a (141), and the combination groove a (141) is inserted through the protruding post a (131) at the time of combination.

3. A socket assembly according to claim 2, wherein the contact point a (133) is provided on the projecting pole a (11), and the contact point B (142) is provided on the combining recess a (141), and when combined, the circuit is completed by the contact of the contact point a (133) and the contact point B (142).

4. A socket assembly according to claim 2 or 3, wherein a sealing semi-ring a (132) is provided outside the protruding post a (11), the sealing semi-ring a (132) is slidably mounted in a groove on the protruding post a (131), and an elastic member is provided in the groove on the protruding post a (131) to move the sealing semi-ring a (132) upward to seal the contact point a (133).

5. A socket assembly according to claim 2 or 3, wherein a sealing post (144) is slidably mounted in the assembly recess a (141), and a compression spring a (143) is mounted on the sealing post (144), the compression spring a (143) causing the sealing post (144) to seal the contact point B (142).

6. A socket according to claim 5, wherein a sealing ring (146) and a contact point B sealing groove (145) are provided on the sealing post (144), the contact point B sealing groove (145) being in the middle of the sealing ring (146).

7. The socket of claim 1, wherein the mating connection means comprises a male mating portion B (230) and a female mating portion B (240); the protruding combination part B (230) comprises a protruding column B (231), the recessed combination part B (240) comprises a combination groove B (241), and the protruding column B (231) is inserted into the combination groove B (241) during combination.

8. The socket of claim 7, wherein the protruding post B (231) is provided with a through hole, the combining recess B (241) is provided with a contact post (242), and the contact post (242) is inserted into the through hole of the protruding post B (231) to complete the circuit when combined.

9. A assemblable socket as claimed in claim 7 or 8, wherein a ramp plate (233) and a spring are slidably fitted in the recess of the projecting post B (231), a ramp plate side plate (235) is provided on the ramp plate (233), and the ramp plate (233) is moved upward by the spring; a sealing plate B (232) and a compression spring B (234) are arranged on the projecting column B (231), and the sealing plate B (232) enables the sealing plate B (232) to seal the electrifying hole on the upper surface 321 through the compression spring B (234).

10. A socket according to claim 9, wherein a sealing ring (146) is provided under the sealing plate B (232).

Technical Field

The invention relates to the technical field of electric power, in particular to a combined socket.

Background

In the using process of the socket, because the number of plugs to be inserted is not fixed, the size of the socket is difficult to select, the size of the socket is small, no place is used for inserting when the number of electrical appliances is large, and when the size of the socket is too large, the cost and no place are used for placing so as to cause resource waste, so that the socket which can be combined at any time according to the actual situation is needed.

Disclosure of Invention

In order to solve the problems, the invention provides a combined socket, wherein two sockets are combined through a convex combination part and a concave combination part to complete the connection of the sockets, so that the connection of a plurality of sockets is realized, and the requirements of different numbers of sockets are met; sealing is accomplished through the setting of sealed semicircle ring A, sealed post and closing plate B, prevents to electrocute and the contact point rust takes place in the in-process that uses.

The technical scheme adopted by the invention is as follows: a combined socket comprises a socket cover plate, a socket box and a combined connecting mechanism; the method is characterized in that: the combined connecting mechanism comprises a protruding combined part and a recessed combined part, and the combination of a plurality of sockets is realized by connecting the protruding combined part and the recessed combined part so as to meet the requirements of different socket numbers.

Further, the combined connecting mechanism comprises a convex combined part A and a concave combined part A, wherein the convex combined part A comprises a convex column A; the recessed combination portion A includes a combination groove A into which the protruding post A is inserted when combined.

Further, a contact point A is arranged on the protruding column A, a contact point B is arranged on the combination groove A, and when the combination groove A is combined, the circuit is connected through the contact of the contact point A and the contact point B.

Further, a sealing semicircular ring A is arranged on the outer side of the protruding column A, the sealing semicircular ring A is slidably mounted in a groove in the protruding column A, an elastic component is arranged in the groove in the protruding column A, and the sealing semicircular ring A moves upwards through the elastic component to seal the contact point A.

Furthermore, a sealing column is slidably mounted in the combined groove A, a compression spring A is mounted on the sealing column, and the compression spring A enables the sealing column to seal the contact point B.

Further, a sealing ring and a contact point B sealing groove are arranged on the sealing column, and the contact point B sealing groove is arranged in the middle of the sealing ring.

Further, the combined connecting mechanism comprises a convex combined part B and a concave combined part B; the convex combination part B comprises a convex column B, the concave combination part B comprises a combination groove B, and the convex column B is inserted into the combination groove B during combination.

Furthermore, the protruding column B is provided with a current-passing hole, the combination groove B is internally provided with a contact column, and when the combination is carried out, the contact column is inserted into the current-passing hole on the protruding column B to connect the circuit.

Furthermore, an inclined plane plate and a spring are slidably mounted in the groove of the protruding column B, an inclined plane plate side plate is arranged on the inclined plane plate, and the inclined plane plate moves upwards through the spring; and a sealing plate B and a compression spring B are arranged on the projecting column B, and the sealing plate B enables the sealing plate B to seal the through hole on the 321 through the compression spring B.

Further, a seal ring is provided below the seal plate B.

The invention has the beneficial effects that:

1. the two sockets are combined through the convex combination part and the concave combination part to complete the connection of the sockets, so that the connection of a plurality of sockets is realized, and the requirements of different numbers of sockets are met.

2. Sealing is accomplished through the setting of sealed semicircle ring A, sealed post and closing plate B, prevents to electrocute and the contact point rust takes place in the in-process that uses.

Drawings

Fig. 1 is a schematic view of a two-jack assembly according to the present invention.

Fig. 2 is a schematic view of the overall structure of a single socket in the first aspect of the present invention.

Fig. 3 and 4 are partial structural schematic diagrams of a single socket according to a first embodiment of the present invention.

Fig. 5, 6 and 7 are schematic structural views of a socket case according to a first embodiment of the present invention.

Fig. 8 is a partial structural schematic diagram of a sealing column according to a first embodiment of the present invention.

Fig. 9 is a partially enlarged schematic view of the structure at 1 in fig. 4 a.

Fig. 10 and 11 are schematic views showing the overall structure of a single socket according to a second embodiment of the present invention.

Fig. 12 and 13 are partial structural schematic views of a second embodiment of the present invention.

Fig. 14 is a partially enlarged schematic view of fig. 12 a 2.

Reference numerals: 110-a socket cover plate; 120-socket case; 130-a protruding combined part a; 140-recessed combined portion a; 121-a receptacle section; 122-socket box bottom; 131-projecting posts a; 132-sealing semi-circular ring A; 133-contact point a; 141-combined groove A; 142-contact point B; 143-compression spring a; 144-sealing the column; 145-contact B seal groove; 146-a sealing ring; 230-a protruding combined part B; 240-recessed combined portion B; 231-projecting posts B; 232-sealing plate B; 233-bevel panel; 234-compression spring B; 235-bevel panel side panels; 236-a base plate; 241-combined groove B; 242-contact post.

Detailed Description

The technical scheme of the invention is further specifically described by the following embodiments and the accompanying drawings.

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