WO2011127630A1 - 防爆电连接装置及其插头、插座 - Google Patents

防爆电连接装置及其插头、插座 Download PDF

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Publication number
WO2011127630A1
WO2011127630A1 PCT/CN2010/000649 CN2010000649W WO2011127630A1 WO 2011127630 A1 WO2011127630 A1 WO 2011127630A1 CN 2010000649 W CN2010000649 W CN 2010000649W WO 2011127630 A1 WO2011127630 A1 WO 2011127630A1
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WO
WIPO (PCT)
Prior art keywords
plug
socket
contacts
housing
disposed
Prior art date
Application number
PCT/CN2010/000649
Other languages
English (en)
French (fr)
Inventor
韩剑桦
Original Assignee
Han Jianhua
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Han Jianhua filed Critical Han Jianhua
Publication of WO2011127630A1 publication Critical patent/WO2011127630A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch
    • H01R13/71Contact members of coupling parts operating as switch, e.g. linear or rotational movement required after mechanical engagement of coupling part to establish electrical connection
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch
    • H01R13/703Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part
    • H01R13/7036Structural association with built-in electrical component with built-in switch operated by engagement or disengagement of coupling parts, e.g. dual-continuity coupling part the switch being in series with coupling part, e.g. dead coupling, explosion proof coupling

Definitions

  • the present invention relates to an electrical connection device, and more particularly to an explosion-proof electrical connection device and a plug and socket thereof. Background technique
  • connectors between electrical equipment and the power supply such as power outlets, only allow sockets and plugs with explosion-proof functions. If they are non-explosive, they may explode after insertion.
  • the existing explosion-proof electrical connection device includes an explosion-proof plug and an explosion-proof socket.
  • the insertion end face of the plug has four plug electrodes and one switch member, and the socket is provided with four plugs correspondingly. a hole and a conductive member, when the plug is inserted into the socket, the four plug electrodes are correspondingly inserted into the four jacks, and as the plug rotates, the switch member can be electrically connected to the conductive member, thereby making the plug Electrically connected to the socket.
  • the present invention provides an explosion-proof electrical connection device, comprising: a plug having a plug housing; a plug assembly disposed in one end of the plug housing and having a plug, at a distance
  • the insertion end surface of the plug pin is provided with two opposite first contacts, two opposite second contacts, and a card member in sequence from the outer side wall of the plug pin, and the card member is located therein.
  • a socket directly adjacent to the second contact; a socket having a socket housing; a socket assembly disposed in one end of the socket housing and having a plug hole for adapting the insertion and removal of the plug connector And a guiding groove respectively disposed on the hole wall of the plug hole, two opposite first electrodes, and two opposite second electrodes; wherein the plug pin is inserted into the plug hole And the first contact and the second contact are electrically connected to the first electrode and the second electrode respectively at the conductive position by the card member rotating along the guiding slot by an angle to a conductive position. Reverse rotation Separation off.
  • the plug pin is composed of a first plug portion and a second plug portion, and an outer diameter of the first plug portion is smaller than an outer diameter of the second plug portion, and the two first contacts are located at the first On the plug portion, the two second contacts and the card member are located on the second plug portion; and each of the first contacts and each of the second contacts respectively pass through a plug and a plug terminal Conductive connections, each of which is connected to an electrical device by a wire.
  • the other end of the plug housing is connected with a plug crimping port, and a crimping piece for pressing the wire is disposed thereon.
  • the plug crimping port and the plug housing pass through a plug
  • the waterproof apron is fitted with a waterproof skeleton.
  • the line between the two first contacts is at right angles to the line between the two second contacts.
  • , , , , exert ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇
  • a guide post is further formed on the bottom surface of the first base bolt hole of the first base, and the insertion end surface of the plug bolt is correspondingly formed with a guide hole for guiding and inserting with the guide post, and A third spring is disposed in the plug hole, and the third spring is disposed on the guide post.
  • an outer protective sleeve is disposed on a bottom surface of the second plug portion outside the first plug portion of the plug pin, and an inner protective sleeve is disposed on the insertion end surface outside the guide hole.
  • the outer surface of the socket assembly is further covered with a bottom sleeve and a sleeve, wherein the bottom cover is wrapped on the outer surface of the first base, and the cover is wrapped around the second base and the insulation
  • the outer surface of the pad is threadedly coupled to the bottom sleeve.
  • the socket assembly covered with the bottom sleeve and the face sleeve is mounted in a socket base, and the socket base is mounted in the socket housing, and the socket base and the socket housing have a positioning ring and a rise a ring, and an explosion-proof waterproof rubber ring is disposed on an end surface of the socket shell opposite to the plug housing.
  • the socket further has a waterproof cover at one end thereof, which is reversibly connected to the socket housing through a shaft pin and a torsion spring to expose/close the plug hole; the other end of the socket housing is connected with a compression ring and A socket housing crimping port connected to the compression ring, and a waterproof skeleton is mounted between the compression ring and the socket housing through a waterproof rubber ring.
  • the two first electrodes are AC phase electrodes
  • one of the two second electrodes is an R-phase electrode
  • the other is an L-phase electrode
  • a neutral electrode is elastically disposed in the guiding groove through a resilient piece
  • the two first contacts correspond to AC phase contacts
  • one of the two second contacts corresponds to an R phase contact
  • the other is an L phase contact
  • the card member corresponding to a neutral contact.
  • the outer surface of one end of the plug housing is formed with two protrusions disposed opposite to the outer surface, and the inner side surface of the socket base is correspondingly provided with a guiding groove, the guiding groove is provided by the two Inserting a portion into which the bumps are respectively inserted and a rotating portion for co-rotating the two bumps; and, one of the two bumps has a first width, the other has a second width, and the first width is greater than The second width, the width of the two insertion portions of the guiding groove is adapted to the width of the two protrusions.
  • the present invention also provides a plug, characterized in that it has a plug housing and a plug assembly, the plug assembly is placed in one end of the plug housing, and has a plug, the plug is replaced by a first plug And the second plug portion, the first plug portion has an insertion end surface at one end, the other end is connected to the second plug portion, and the outer diameter of the first plug portion is smaller than the outer diameter of the second plug portion.
  • Two opposite first contacts are disposed on an outer sidewall of a plug portion, and two opposite second contacts are disposed on an outer sidewall of the second plug portion and one is directly above the second contact
  • the two first contacts, the two second contacts, the card members are respectively located on three different planes that are close to and far from the insertion end face, and between the two first contacts
  • the wire is at a right angle to the line between the two second contacts.
  • the first contact and each of the second contacts are electrically connected to each other through a tab and a plug line 3b, and each of the plug terminals is connected to an electrical device by a wire.
  • the other end of the plug housing is connected with a plug crimping port, and a crimping piece for pressing the wire is disposed thereon, and in the plug housing, the plug crimping port and the plug housing are further A waterproof skeleton is mounted through a waterproof rubber ring.
  • the two first contacts are AC phase contacts
  • one of the two second contacts is an R phase contact
  • the other is an L phase contact
  • the card member being a neutral contact
  • an outer surface of one end of the plug housing is formed with two protrusions disposed opposite to and protruding from the outer surface, one of the two protrusions having a first width and the other having a second width, and A width is greater than the second width.
  • the invention further provides a socket, characterized in that it has a socket housing and a socket assembly, the socket assembly is disposed in one end of the socket housing, and has a plug for inserting and removing the plug connector a pinhole, and a guiding groove respectively disposed on the wall of the hole of the plug hole, two opposite first electrodes, and two opposite second electrodes.
  • the socket assembly comprises: a socket terminal; a first base on the socket terminal, the two first electrodes are disposed thereon, and has a first base bolt hole; An insulating pad is disposed on the first base and has an insulating pad hole; a second base is disposed on the insulating pad, and the two second electrodes and the guiding groove are disposed thereon and have a a second pedestal bolt hole; wherein the first pedestal bolt hole, the insulating bolster hole, the second pedestal bolt hole constitutes the plug bolt hole, and the first electrode and the second electrode respectively pass A spring and a second spring are elastically mounted.
  • a guide post is further formed on the bottom surface of the first base bolt hole of the first base, and a third spring is disposed in the plug hole, and the third spring is disposed on the guide post.
  • the outer surface of the socket assembly is further covered with a bottom sleeve and a sleeve, wherein the bottom cover is wrapped on the outer surface of the first base, and the cover is wrapped around the second base and the insulation
  • the outer surface of the pad is threadedly coupled to the bottom sleeve.
  • the socket assembly covered with the bottom sleeve and the face sleeve is mounted in a socket base, and the socket base is mounted in the socket housing, and the socket base and the socket housing have a positioning ring and a rise
  • the ring has an explosion-proof waterproof rubber ring disposed on an end surface of the socket shell opposite to the plug housing.
  • the inner side surface of the socket base is provided with a guiding groove formed by the two insertion portions and one rotating portion, and the two insertion portions of the guiding groove have different widths.
  • the socket further has a waterproof cover at one end thereof, which is reversibly connected to the socket housing through a shaft pin and a torsion spring to expose/close the plug hole; the other end of the socket housing is connected with a compression ring and A socket housing crimping port connected to the compression ring, and a waterproof skeleton is mounted between the compression ring and the socket housing through a waterproof rubber ring.
  • the two first electrodes are AC phase electrodes
  • one of the two second electrodes is an R phase electrode
  • the other is an L phase electrode
  • a neutral electrode is elastically disposed in the guiding groove by a resilient piece.
  • the explosion-proof electrical connecting device of the invention realizes the electrical connection with the socket by the frictional contact of the contacts disposed on the side of the plug, thereby effectively avoiding the occurrence of electric spark during the electrical connection process, so that the safety performance is higher.
  • the design of the waterproof skeleton, the waterproof rubber ring, the waterproof cover, etc. makes the explosion-proof electrical connection device of the present invention have better waterproof performance at the same time. ⁇ , , /( , ⁇ ⁇ u , .
  • FIG. 1A is a front elevational view of a preferred explosion-proof electrical connection device of the present invention
  • FIG. 1B is a side view of a preferred explosion-proof electrical connection device of the present invention.
  • 1C is a rear elevational view of a preferred explosion-proof electrical connection device of the present invention.
  • FIG. 2A is a front structural view of a plug assembly in a preferred explosion-proof electrical connection device according to the present invention
  • Figure 2B is a cross-sectional view taken along line D-D of Figure 2A;
  • Figure 2C is a cross-sectional view taken along line E-E of Figure 2A;
  • 2D is a schematic structural view of a plug housing in a preferred explosion-proof electrical connection device according to the present invention.
  • Figure 2E is a cross-sectional view of Figure 2D
  • FIG. 2F is a schematic structural view of the plug housing of FIG. 2D in another direction;
  • 3A is a schematic view showing the overall structure of a socket in a preferred explosion-proof electrical connection device according to the present invention
  • FIG. 3B is a front structural view of the socket assembly after the socket of FIG. 3A has been removed from the socket housing;
  • Figure 3C is a cross-sectional view taken along line F-F of Figure 3B;
  • FIG. 3D is a top view of the first pedestal in FIG. 3C, wherein the first pedestal is provided with a guiding groove and a neutral contact located in the guiding groove;
  • FIG. 3E is a bottom view of the first pedestal of FIG. 3C, wherein the first pedestal is provided with two opposite second electrodes;
  • FIG. 3F is a top view of the second pedestal of FIG. 3C, wherein the second The base is provided with two opposite first electrodes;
  • FIG. 3G is a cross-sectional view of the socket base for mounting the socket assembly of the present invention;
  • Figure 3H is a cross-sectional view of the socket base shown in Figure 3G in another direction;
  • Figure 31 is a cross-sectional view of the socket housing of the present invention.
  • FIG. 4A is a cross-sectional view taken along line A-A of FIG. 1A, wherein the two second contacts are electrically connected to the two second electrodes in a conductive position;
  • 4B is a cross-sectional view taken along line B-B of FIG. 1B, wherein the two first contacts are electrically connected to the two first electrodes in a conductive position;
  • FIG. 4C is a cross-sectional view taken along line CC of FIG. 1B, wherein the socket housing is provided with an explosion-proof waterproof rubber ring for explosion-proof and waterproof when the plug and the socket are electrically connected, and the other end of the plug housing is provided with a waterproof skeleton and a waterproof apron. To enhance waterproofing.
  • the explosion-proof electrical connection device of the present invention comprises a plug 100 and a socket 200, wherein the plug 100 is connected to an electrical device (not shown), and the socket 200 is electrically connected to the power source, and when the plug 100 is inserted into the socket 200.
  • the socket 200 has a ground terminal 24 as shown in Figure 1B. _ ⁇ one
  • the binding head 100 has a plug housing 10 and a plug assembly 30.
  • the strap assembly 30 has a plug connector 300 that is near and far from the insertion end face of the plug connector 300.
  • the outer side wall of the plug bolt is sequentially provided with two opposite first contacts 31 and 32, two opposite second contacts 33 and 34, and a card member 35, and the card member 35 is located at one of the first Directly above the two contacts, as located directly above the second contact 33.
  • the plug pin 300 is composed of a first plug portion 301 and a second plug portion 302, and the outer diameter of the first plug portion 301 is smaller than the outer diameter of the second plug portion 302.
  • the contacts 31 32 are located on the outer sidewall of the first plug portion 301 , and the two second contacts 33 34 and the clip 35 are located on the outer sidewall of the second plug portion 302 . Moreover, preferably, the connection between the two first contacts 31 32 and the connection between the two second contacts 33 34 are at right angles.
  • the two first contacts 31 32 may be AC phase contacts
  • one of the two second contacts 33 34 may be an R phase contact
  • the other may be an L phase contact.
  • the second contact 33 is an L-phase contact
  • the second contact 34 is an R-phase contact.
  • the card member 35 can be a neutral contact.
  • each of the first contacts 31 32 and each of the second contacts 33 34 are electrically connected to a plug terminal 316 326 336 346 through a tab 315 325 335 345, respectively.
  • Plug terminal 316 326 336 346 is connected to the electrical device via a wire (not shown).
  • the card member 35 neutral contact
  • the insertion end surface of the plug connector 300 is further formed with a guide hole 308 for guiding the plug insertion.
  • the plug assembly 30 is disposed in the socket housing 10 - the end 1 1 , as shown in FIG.
  • two protrusions 113 114 are formed which are oppositely disposed and protrude from the outer surface.
  • the outer surface of one end 11 of the plug housing is formed with an annular groove 112.
  • the two opposite positions in the annular groove 112 form the two protrusions 113 114 protruding from the outer surface for the plug. Inserted positioning.
  • the two bumps 113 114 have different widths. For example, the width W of the bump 113 (as shown in FIG. 2F ) is greater than the width of the bump 114 (not shown) to facilitate the plug to be unique. The way to insert.
  • the socket 200 has a socket housing 20 and a socket assembly 201 disposed in the end of the socket housing 20.
  • the socket assembly 201 is provided by a socket terminal 67.
  • the first base 50, an insulating pad 405 and a second base 40 are assembled from the bottom up.
  • the first pedestal 50 is located on the socket terminal 67, and is provided with two opposite first electrodes 51 52 and has a first pedestal bolt hole 501.
  • the insulating pad 405 is located between the first base 50 and the second base 40 and has an insulating pad hole 4051.
  • the second pedestal 40 is disposed on the insulating pad 405, and is provided with two opposite second electrodes 43 44 and a guiding slot 450, and has a second pedestal bolt hole 401, the first pedestal bolt hole 501.
  • the insulating pad bolt hole 4051 and the second base bolt hole 401 form a plug hole for inserting and rotating the plug connector 300 of the plug.
  • the socket 200 further has a waterproof cover 70, which is reversibly connected to the socket housing 20 by a shaft pin 71 and a torsion spring 72 for exposing/closing the plug hole, in conjunction with FIG. 1C. It can close the socket after the plug is pulled out, so that it has a good waterproof function.
  • the outer surface of the socket assembly 201 is further covered with a bottom cover 62 and a sleeve 61 made of a waterproof material, wherein the bottom cover 62 is wrapped on the outer surface of the first base 50.
  • the sleeve 61 is coated on the outer surface of the second base 40 and the insulating pad 405, and is screwed with the bottom cover 62, so that the outer surface of the entire socket assembly 201 can be waterproofed.
  • a guide post 68 is further formed on the bottom surface of the first base bolt hole 501 of the first base 50. The bundle of the guide holes 308 is engaged to guide the smooth insertion of the plug.
  • FIG. 3D the structure on the upper surface 403 of the second base 40 in the socket assembly 201 is shown, wherein the upper surface 403 of the second base 40 is along the portion of the second base bolt hole 401.
  • the hole wall is provided with the guiding groove 450, and the guiding groove 450 has an insertion position 450a and a conductive position 450b.
  • the structure on the lower surface 404 of the second pedestal 40 in the socket assembly 201 is shown, wherein the lower surface 404 of the second pedestal 40 is mounted by electrode mounting grooves 430, 440, respectively.
  • the contact faces of the second electrodes 43, 44 and the second electrodes 43, 44 are exposed on the wall of the second pedestal pin hole 401.
  • the back sides of the second electrodes 43, 44 are mounted with springs 431, 441 (see FIG. 4A) through the spring mounting grooves 432, 442 to elastically mount the second electrodes 43, 44 to the second base. On 40, make the conductive connection more reliable.
  • the structure on the upper surface 504 of the first pedestal 50 in the socket assembly 201 is shown, wherein the upper surface 504 of the first pedestal 50 is mounted by electrode mounting grooves 510, 520, respectively.
  • the first electrodes 51, 52, the contact faces of the first electrodes 51, 52 are exposed on the hole walls of the first pedestal pin holes 501.
  • the back surfaces of the first electrodes 51, 52 are mounted with springs 511, 521 (see FIG. 4B) through the spring mounting grooves 512, 522 to elastically mount the first electrodes 51, 52 on the first base 50. , making the conductive connection more reliable.
  • the two first electrodes 51, 52 are AC phase electrodes
  • one of the two second electrodes 43, 44 is an R phase electrode
  • the other is an L phase electrode
  • the electrode 43 is an L-phase electrode
  • the second electrode 44 is an R-phase electrode.
  • the electrodes are electrically connected by a flexible cord 95 (shown in Figure 4C).
  • a neutral electrode 45 is elastically disposed in the guiding groove 450 through a resilient piece 451. As shown in FIG. 3D, it has a conductive portion 455.
  • the clip 35 on the plug assembly 30 can be inserted into the guiding slot 450 through the insertion position 450a, and rotated along the guiding slot 450 by an angle to the conductive position 450b, as shown in FIG. 4A.
  • FIG. 4C the conductive connection structure of the plug and the socket when the conductive position is shown, when rotated to the conductive position 450a, the first contacts 31 and 32, the second contacts 33 and 34, the middle of the plug assembly 30,
  • the sexual contacts i.e., the clips 35
  • the reverse rotation separates the power.
  • the guiding groove 450 is distributed on the wall of the hole of the second pedestal bolt hole 401 of about 1/4, that is, the plug is electrically connected at a conductive position after being rotated by 90 degrees.
  • the plug can be reversely rotated by a force of about 3 10 kg by designing the elastic piece 451 and the neutral electrode 45, so that the electrical connecting device of the present invention more closely conforms to the relevant standards of the explosion-proof electrical connecting device.
  • the socket assembly 201 covered with the bottom sleeve and the cover sleeve can be installed in the installation space 250 of the socket base 25, as shown in FIGS. 3G and 3H, the socket base 25
  • the inner side surface is provided with a guide groove corresponding to the projections 113, 114 shown in Figs.
  • the width of the portions 253, 254 is adapted to the width of the two projections 113, 114, that is, the width of one insertion portion is slightly larger than the width of the other insertion portion, for example, the width of the insertion portion 253 is slightly larger than the width of the insertion portion 254.
  • Inserting part of the 253 254 town can be inserted, so that the insertion type is unique, avoiding the bundled skirt.
  • the inner side surface of the socket base 25 is further provided with a step 2501 which can be used for positioning installation of the socket assembly 201 and positioning of one end of the plug housing when the plug is inserted.
  • a step 2501 which can be used for positioning installation of the socket assembly 201 and positioning of one end of the plug housing when the plug is inserted.
  • FIG. 4A there is a positioning ring 63 and a rising ring 64 between the socket base 25 and the socket housing 20 for positioning and mounting the socket base on which the socket assembly is mounted to the socket housing 20. - inside the end.
  • an outer protective cover 65 is disposed on a bottom surface of the second plug portion 302 outside the first plug portion 301 of the plug pin, and the insertion end surface located outside the guide hole 308 is disposed on the insertion end surface Inner protective sleeve 66.
  • the second electrode 43 44 is elastically mounted by the second spring 431 441.
  • the socket terminal 67 is connected to the first base 50 by a tapped hole 690 (see Fig. 3C) through which the tapping screw 69 passes.
  • the inside of the insertion opening of the socket housing 20 is provided with a circlip 91 for enhancing the sealing performance and waterproof performance between the plug assembly and the socket housing when the plug is inserted.
  • a spring 92 is disposed in the plug hole of the socket assembly, and the spring 92 is disposed on the guide post 68 to ensure electrical connection reliability between the plug assembly and the socket assembly in the conductive position.
  • the first electrode 51 52 is elastically mounted by the first spring 511 521.
  • the other end 12 of the plug housing 10 is connected to a plug crimping port 80 on which a crimping piece 81 for pressing a wire on the plug assembly is disposed.
  • a waterproof frame 93 is further disposed between the plug crimping port 80 and the plug housing 10 via a waterproof rubber ring 931, and a wire on the plug assembly passes through the waterproof frame 93.
  • the crimping port 80 is threaded out and pressed, thereby also enhancing the waterproofness of the plug when it is electrically connected to the socket.
  • An explosion-proof waterproof rubber ring 94 is further disposed on the end surface of the socket housing 20 opposite to the plug housing 10 to further enhance the explosion-proof and waterproof performance.
  • a compression ring 22 and a socket housing crimping port 90 connected to the compression ring 22 are connected to the other end 21 of the socket housing for pressing a wire electrically connected to the electrode on the socket assembly (not shown) ).
  • a waterproof frame (not shown) is also mounted in the space 210 between the compression ring 22 and the socket housing 20 through a waterproof rubber ring to further enhance the waterproof performance of the socket, and
  • the structure of the waterproof rubber ring and the waterproof skeleton is similar to the structure of the waterproof rubber ring 931 and the waterproof skeleton 93.

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  • Connector Housings Or Holding Contact Members (AREA)

Description

防爆电连麟 ¾¾其插头、插座
技术领域
本发明涉及一种电连接装置, 尤其是涉及一种防爆电连接装置及其插头、 插座。 背景技术
在具有爆炸性危险区域, 电气设备和电源之间的连接器, 如电源插座, 只能允许具有防爆功 能的插座的和插头, 如果是非防爆插头, 插入后会引起爆炸。
目前现有的防爆电连接装置, 包括防爆插头和防爆插座, 以四相插头和插座为例, 其中插头 的插入端面上具有四个插头电极及一个开关件,而插座上对应设置有四个插孔及一个导通件, 当 插头插入插座中时, 该四个插头电极对应插入该四个插孔内, 并随着插头的旋转, 该开关件可与 该导通件导通, 从而使插头与插座导电连接。
但这种结构的电连接装置, 由于四个插头电极均位于同一个端面上, 在接通导电过程中, 容 易发生电火花, 具有一定的安全隐患。 发明内容
因此,本发明的目的在于提供一种防爆电连接装置及其插头和插座, 克服现有电连接装置的 安全隐患, 以保证电气设备和电源的安全连接。
为了实现上述目的, 本发明提供一种防爆电连接装置, 其特点在于, 包括插头, 其具有一插 头外壳; 一插头组件, 置于该插头外壳一端内, 并具有一插接栓, 在距离该插接栓的插入端面由 近及远的该插接栓外侧壁上依次设置有两个相对的第一触头、两个相对的第二触头、以及一卡件, 且该卡件位于其中一个该第二触头的正上方; 插座, 其具有一插座外壳; 一插座组件, 置于该插 座外壳一端内, 并具有一适配所述插接栓插拔和旋转的插接栓孔, 以及分别设置在所述插接栓孔 的孔壁上的导向槽、 两个相对的第一电极、 以及两个相对的第二电极; 其中, 所述插接栓插入所 述插接栓孔中, 并通过该卡件沿所述导向槽旋转一角度至一导电位置, 所述第一触头、第二触头 在所述导电位置分别与所述第一电极、 第二电极电性连接, 反向旋转则分离断电。
优选地,所述插接栓由第一栓部和第二栓部构成,且该第一栓部的外径小于该第二栓部的外 径, 该两个第一触头位于该第一栓部上, 该两个第二触头及该卡件位于该第二栓部上; 并且, 每 一该第一触头及每一该第二触头分别通过一插片与一插头接线端子导电连接,每一该插头接线端 子通过导线与一电气设备连接。
优选地, 该插头外壳另一端连接有一插头压线口, 其上设置有用于压紧所述导线的压线片, 在该插头外壳内, 该插头压线口与该插头外壳之间还通过一防水胶圈安装有一防水骨架。
优选地, 该两个第一触头之间的连线与该两个第二触头之间的连线成直角。 , , , , „„ 优遝地, 所还捆挫组件包括: 一插座接线端; 一第一基座, 位于该插坐拨线 ¾上, 具上设置 有所述两个第一电极, 并具有一第一基座栓孔; 一绝缘垫, 位于该第一基座上, 并具有一绝缘垫 栓孔; 一第二基座, 位于该绝缘垫上, 其上设置有所述两个第二电极以及所述导向槽, 并具有一 第二基座栓孔; 其中, 该第一基座栓孔、 该绝缘垫栓孔、 该第二基座栓孔构成所述插接栓孔, 且 所述第一电极和第二电极分别通过第一弹簧和第二弹簧弹性安装。
优选地,该第一基座的该第一基座栓孔的底面上还形成有一导柱,该插接栓的该插入端面上 对应形成有与该导柱配合引导插入的导孔,且该插接栓孔内还设置有一第三弹簧,该第三弹簧套 装于该导柱上。
优选地,位于该插接栓的该第一栓部外侧的该第二栓部的底面上设置有外防护套,位于该导 孔外侧的该插入端面上设置有内防护套。
优选地,该插座组件外侧表面上还包覆有一底套及一面套,其中该底套包覆于该第一基座外 侧表面上, 该面套则包覆于该第二基座和该绝缘垫的外侧表面上, 并与该底套螺纹连接。
优选地,包覆有该底套及面套的该插座组件安装于一插座基体内,且该插座基体安装于该插 座外壳内,该插座基体与该插座外壳之间具有一定位环和一涨圈,且该插座外壳与该插头外壳相 对的端面上设置有防爆防水胶圈。
优选地, 该插座一端还具有一防水盖, 其通过一轴销与一扭簧可翻转的连接于该插座外壳, 暴露 /封闭该插接栓孔; 该插座外壳另一端连接有一压縮圈以及一与该压縮圈连接的插座外壳压 线口, 且在该插座外壳内, 该压縮圈与该插座外壳之间还通过一防水胶圈安装有一防水骨架。
优选地, 该两个第一电极为 AC相电极, 该两个第二电极其中一个为 R相电极, 另一个为 L 相电极, 该导向槽内还通过一弹片弹性设置有一中性电极; 该两个第一触头对应为 AC相触头, 该两个第二触头其中一个对应为 R相触头, 另一个为 L相触头, 该卡件对应为一中性触头。
优选地,该插头外壳一端的外表面上形成有两个相对设置且凸出于该外表面的凸块,而该插 座基体的内侧表面上对应设置有引导槽,该引导槽由供该两个凸块分别插入的插入部分和供该两 个凸块共同旋转的旋转部分连通而成; 并且, 该两个凸块的其中一个具有第一宽度, 另一个具有 第二宽度,且第一宽度大于第二宽度,该引导槽的该两个插入部分的宽度与该两个凸块的宽度相 适配。
本发明还提供一种插头, 其特点在于, 其具有一插头外壳以及一插头组件, 该插头组件置于 该插头外壳一端内, 并具有一插接栓, 所述插接栓由第一栓部和第二栓部构成, 该第一栓部一端 具有一插入端面, 另一端与该第二栓部连接, 且该第一栓部的外径小于该第二栓部的外径, 在该 第一栓部的外侧壁上设置有两个相对的第一触头,在该第二栓部的外侧壁上设置有两个相对的第 二触头以及一个位于一个该第二触头的正上方的卡件, 该两个第一触头、该两个第二触头、该卡 件分别位于距离该插入端面由近及远的三个不同平面上,且该两个第一触头之间的连线与该两个 第二触头之间的连线成直角。 /JA r
优遝地, 母一该第一触头及每一该第二触头分别通过一插片与一插头拨线¾于导电姓接,每 一该插头接线端子通过导线与一电气设备连接。
优选地, 该插头外壳另一端连接有一插头压线口, 其上设置有用于压紧所述导线的压线片, 并且, 在该插头外壳内, 该插头压线口与该插头外壳之间还通过一防水胶圈安装有一防水骨架。
优选地, 该两个第一触头为 AC相触头, 该两个第二触头其中一个为 R相触头, 另一个为 L 相触头, 该卡件为一中性触头。
优选地,该插头外壳一端的外表面上形成有两个相对设置且凸出于该外表面的凸块,该两个 凸块的其中一个具有第一宽度, 另一个具有第二宽度, 且第一宽度大于第二宽度。
本发明又提供一种插座, 其特点在于, 其具有一插座外壳及一插座组件, 该插座组件置于该 插座外壳一端内, 并具有一适配所述插接栓插拔和旋转的插接栓孔, 以及分别设置在所述插接栓 孔的孔壁上的导向槽、 两个相对的第一电极、 以及两个相对的第二电极。
优选地, 所述插座组件包括: 一插座接线端; 一第一基座, 位于该插座接线端上, 其上设置 有所述两个第一电极, 并具有一第一基座栓孔; 一绝缘垫, 位于该第一基座上, 并具有一绝缘垫 栓孔; 一第二基座, 位于该绝缘垫上, 其上设置有所述两个第二电极以及所述导向槽, 并具有一 第二基座栓孔; 其中, 该第一基座栓孔、 该绝缘垫栓孔、 该第二基座栓孔构成所述插接栓孔, 所 述第一电极和第二电极分别通过第一弹簧和第二弹簧弹性安装。
优选地,该第一基座的该第一基座栓孔的底面上还形成有一导柱,该插接栓孔内还设置有一 第三弹簧, 该第三弹簧套装于该导柱上。
优选地,该插座组件外侧表面上还包覆有一底套及一面套,其中该底套包覆于该第一基座外 侧表面上, 该面套则包覆于该第二基座和该绝缘垫的外侧表面上, 并与该底套螺纹连接。
优选地,包覆有该底套及面套的该插座组件安装于一插座基体内,且该插座基体安装于该插 座外壳内,该插座基体与该插座外壳之间具有一定位环和一涨圈,该插座外壳与该插头外壳相对 的端面上设置有防爆防水胶圈。
优选地,该插座基体的内侧表面上设置有引导槽,该引导槽由两个插入部分和一个旋转部分 连通而成, 且该引导槽的两个插入部分的宽度不同。
优选地, 该插座一端还具有一防水盖, 其通过一轴销与一扭簧可翻转的连接于该插座外壳, 暴露 /封闭该插接栓孔; 该插座外壳另一端连接有一压縮圈以及一与该压縮圈连接的插座外壳压 线口, 且在该插座外壳内, 该压縮圈与该插座外壳之间还通过一防水胶圈安装有一防水骨架。
优选地, 该两个第一电极为 AC相电极, 该两个第二电极其中一个为 R相电极, 另一个为 L 相电极, 该导向槽内还通过一弹片弹性设置有一中性电极。
本发明的防爆电连接装置通过设置在插头侧面的触头以旋转摩擦接触的方式实现与插座的 电连接, 有效避免了电连接过程中容易产生电火花, 使得安全性能更高。 另外, 通过防水骨架、 防水胶圈、 防水盖等的设计, 使得本发明的防爆电连接装置同时兼具更好的防水性能。 ^ , , /(, ππ <u , .
gi 附图 W具体实施例对本发明进行详细描述, 但不作为对本犮明 TO限足 附图说明
图 1A为本发明一较佳的防爆电连接装置的正视图;
图 1B为本发明一较佳的防爆电连接装置的侧视图;
图 1C为本发明一较佳的防爆电连接装置的后视图;
图 2A为本发明一较佳的防爆电连接装置中的插头组件的正面结构示意图;
图 2B为沿图 2A中 D-D方向的剖视图;
图 2C为沿图 2A中 E-E方向的剖视图;
图 2D为本发明一较佳的防爆电连接装置中的插头外壳的结构示意图;
图 2E为图 2D的剖视图;
图 2F为图 2D的插头外壳另一方向的结构示意图;
图 3A为本发明一较佳的防爆电连接装置中的插座的整体结构示意图;
图 3B为图 3A中的插座去除了插座外壳后的插座组件的正面结构示意图;
图 3C为沿图 3B中 F-F方向的剖视图;
图 3D为图 3C中的第一基座的俯视图, 其中该第一基座上设置有导向槽及位于导向槽内的 中性触头;
图 3E为图 3C中的第一基座的仰视图, 其中该第一基座上设置有两个相对的第二电极; 图 3F为图 3C中的第二基座的俯视图, 其中该第二基座上设置有两个相对的第一电极; 图 3G为本发明用于安装该插座组件的插座基体的剖视图;
图 3H为图 3G所示插座基体另一方向的剖视图;
图 31为本发明的插座外壳的剖视图;
图 4A为沿图 1A中 A-A方向的剖视图, 其中在导电位置时该两个第二触头与该两个第二电 极电性连接;
图 4B为沿图 1B中 B-B方向的剖视图, 其中在导电位置时该两个第一触头与该两个第一电 极电性连接; 以及
图 4C为沿图 1B中 C-C方向的剖视图, 其中该插座外壳上设置有防爆防水胶圈, 用以在插 头与插座的导电连接时防爆防水,并且插头外壳另一端设置有防水骨架和防水胶圈,以加强防水。 具体实 式
如图 1A〜图 1C所示, 本发明的防爆电连接装置包括插头 100和插座 200, 其中插头 100连 接一电气设备(图中未示),插座 200电性连接电源, 当插头 100插入插座 200内并电性连接时, 可以实现电气设备与电源的电性连接。 插座 200上具有接地端 24, 如图 1B所示。 _ ^一
该捆头 100具^一插头外壳 10以及一插头组件 30, 如图 2Α所 7 , 该捆头组忏 30具有一插 接栓 300, 在距离该插接栓 300的插入端面由近及远的该插接栓外侧壁上依次设置有两个相对的 第一触头 31和 32、 两个相对的第二触头 33和 34、 以及一卡件 35, 且该卡件 35位于其中一个 该第二触头的正上方, 如位于第二触头 33的正上方。 较佳地, 所述插接栓 300由第一栓部 301 和第二栓部 302构成, 且该第一栓部 301 的外径小于该第二栓部 302的外径, 该两个第一触头 31 32位于该第一栓部 301的外侧壁上, 该两个第二触头 33 34及该卡件 35位于该第二栓部 302的外侧壁上。 并且, 较佳地, 该两个第一触头 31 32之间的连线与该两个第二触头 33 34 之间的连线成直角。 在本发明一实施例中, 该两个第一触头 31 32可为 AC相触头, 该两个第 二触头 33 34其中一个可为 R相触头, 另一个可为 L相触头, 如第二触头 33为 L相触头, 第 二触头 34为 R相触头。 该卡件 35可为一中性触头。
如图 2B 2C所示, 每一该第一触头 31 32及每一该第二触头 33 34分别通过一插片 315 325 335 345与一插头接线端子 316 326 336 346导电连接,每一该插头接线端子 316 326 336 346通过导线 (图中未示) 与该电气设备连接。 该卡件 35 (中性触头) 可与该第二触头 33 共用一个插片。并且,该插接栓 300的该插入端面上还形成有一用于引导该插头插入的导孔 308 该插头组件 30置于该插座外壳 10—端 1 1内, 如图 2D 2E所示, 且该插头外壳一端 11的 外表面上形成有两个相对设置且凸出于该外表面的凸块 113 114。 较佳地, 该插头外壳一端 11 的外表面上形成有一环形槽 112, 该环形槽 112内的两个相对位置上形成凸出于该外表面的所述 两个凸块 113 114, 用于插头插入的定位。 更佳地, 该两个凸块 113 114具有不同宽度, 例如, 该凸块 113的宽度 W (如图 2F所示) 大于该凸块 114的宽度 (图中未示) , 以方便插头以唯一 的方式插入。
如图 3A所示, 该插座 200具有一插座外壳 20、 以及一置于该插座外壳 20—端内的插座组 件 201, 如图 3B 3C所示, 该插座组件 201由一插座接线端 67、一第一基座 50、一绝缘垫 405 一第二基座 40自下而上组装而成。 其中, 该第一基座 50位于该插座接线端 67上, 其上设置有 两个相对的第一电极 51 52, 并具有一第一基座栓孔 501。 该绝缘垫 405位于该第一基座 50和 该第二基座 40之间, 并具有一绝缘垫栓孔 4051。 该第二基座 40位于该绝缘垫 405上, 其上设 置有两个相对的第二电极 43 44以及一导向槽 450, 并具有一第二基座栓孔 401, 该第一基座栓 孔 501、 该绝缘垫栓孔 4051、 该第二基座栓孔 401构成一插接栓孔, 用以供该插头的插接栓 300 插入和旋转。 较佳地, 该插座 200还具有一防水盖 70, 结合图 1C, 其通过一轴销 71与一扭簧 72可翻转的连接于该插座外壳 20, 用以暴露 /封闭该插接栓孔, 其可在插头拔出后封闭该插座, 使之具有良好的防水功能。
如图 3C所示,该插座组件 201外侧表面上还包覆有防水材料制成的一底套 62及一面套 61 其中该底套 62包覆于该第一基座 50外侧表面上,该面套 61则包覆于该第二基座 40和该绝缘垫 405的外侧表面上, 并与该底套 62螺纹连接, 从而可以使整个插座组件 201外表面具有防水功 ^ > , .. , _ _^ . . .
能。该第一基挫 50的该第一基座栓孔 501的底面上还形成有一导柱 68, 该捆拨住上的导孔 308 配合, 用以引导该插头的顺利插入。
如图 3D所示, 示出了该插座组件 201中的第二基座 40的上表面 403上的结构, 其中该第 二基座 40的上表面 403上沿部分该第二基座栓孔 401的孔壁设置有该导向槽 450,该导向槽 450 具有一插入位置 450a和一导电位置 450b
如图 3E所示, 示出了该插座组件 201中的第二基座 40的下表面 404上的结构, 其中该第 二基座 40的下表面 404上通过电极安装槽 430、 440分别安装有所述第二电极 43、 44, 所述第 二电极 43、 44 的接触面暴露于该第二基座栓孔 401 的孔壁上。 较佳的, 所述第二电极 43、 44 背面通过弹簧安装槽 432、 442安装有弹簧 431、 441 (参见图 4A) , 以将所述第二电极 43、 44 弹性安装于该第二基座 40上, 使导电连接更可靠。
如图 3F所示,示出了该插座组件 201中的第一基座 50的上表面 504上的结构,其中该第一 基座 50的上表面 504上通过电极安装槽 510、 520分别安装有所述第一电极 51、 52, 所述第一 电极 51、 52的接触面暴露于该第一基座栓孔 501的孔壁上。 较佳的, 第一电极 51、 52背面通过 弹簧安装槽 512、 522安装有弹簧 511、 521 (参见图 4B) , 以将所述第一电极 51、 52弹性安装 于该第一基座 50上, 使导电连接更可靠。
在本发明一较佳实施例中, 该两个第一电极 51、 52为 AC相电极, 该两个第二电极 43、 44 其中一个为 R相电极, 另一个为 L相电极, 例如第二电极 43为 L相电极, 第二电极 44为 R相 电极。 较佳的, 这些电极通过软线 95 (如图 4C所示) 导电连接。 并且, 该导向槽 450内还通过 一弹片 451弹性设置有一中性电极 45, 如图 3D所示, 其具有一导电部分 455
当该插头插入该插座中时, 该插头组件 30上的卡件 35可由该插入位置 450a插入该导向槽 450内, 并沿着该导向槽 450旋转一角度至该导电位置 450b, 如图 4A〜图 4C所示, 示出了导电 位置时插头与插座的导电连接结构, 当旋转至导电位置 450a时, 该插头组件 30上的第一触头 31和 32、 第二触头 33和 34、 中性触头 (即卡件 35 ) 分别与所述第一电极 51和 52、 第二电极 43和 44、 中性电极 45电性连接。 反之, 反向旋转则分离断电。 在本发明一实施例中, 该导向槽 450分布于大致 1/4的第二基座栓孔 401的孔壁上,即该插头插入后大致旋转 90度后处于导电位 置导电连接。 在本发明中, 可以通过对该弹片 451及该中性电极 45的设计使插头反向旋转以约 3 10kg的力, 以使本发明的电连接装置更符合防爆电连接装置的相关标准。
在本发明一较佳实施例中, 包覆有该底套及面套的该插座组件 201可安装于一插座基体 25 的安装空间 250内, 如图 3G、 3H所示, 该插座基体 25的内侧表面上设置有与图 2D、 2E所示 的凸块 113、 114相对应的引导槽, 该引导槽由两个插入部分 253、 254和一个旋转部分 252连通 而成, 并且, 该两个插入部分 253、 254的宽度与该两个凸块 113、 114的宽度相适配, 即一个插 入部分的宽度稍大于另一个插入部分的宽度, 例如, 插入部分 253 的宽度稍大于插入部分 254 的宽度, 这样, 当插头插入插座中时, 该插头外壳一端 11上的凸块 113、 114只能在分别对准于 « ^ .
插入部分 253 254町才能实现插入, 从而使得插入万式是唯一的, 避免捆入裙误。
如图 3G所示, 该插座基体 25的内侧表面上还设置有台阶 2501, 其可用于插座组件 201的 定位安装以及插头插入时插头外壳一端定位。当包覆有该底套及面套的该插座组件 201安装于该 插座基体 25的安装空间 250内之后,该插座组件 201的上半部露出于该台阶 2501的上方, 即处 于该安装空间 250位于该台阶 2501上方的部分 251内,并与该插座基体 25的内侧表面之间形成 间隙(图中未标示) , 供插头插入插座中时容纳该插头外壳的一端 11, 如图 4A所示, 其中清晰 示出了插头外壳一端插入于该间隙内。
在本发明中, 如图 4A所示, 在该插座基体 25与该插座外壳 20之间具有一定位环 63和一 涨圈 64, 用于将安装有插座组件的插座基体定位安装于插座外壳 20—端内。 并且, 结合参考图 2B, 位于该插接栓的该第一栓部 301外侧的该第二栓部 302的底面上设置有外防护套 65, 位于 该导孔 308外侧的该插入端面上设置有内防护套 66。 并且, 所述第二电极 43 44通过第二弹簧 431 441弹性安装。 该插座接线端 67通过自攻螺钉 69穿过其上的螺孔 690 (参见图 3C) 与该 第一基座 50相连接。
如图 4B所示, 该插座外壳 20的插入口内侧设置有弹性挡圈 91, 用以加强插头插入时插头 组件与插座外壳之间的密封性能和防水性能。 并且, 该插座组件的插接栓孔内还设置有一弹簧 92,该弹簧 92套装于该导柱 68上,用以保证导电位置时插头组件与插座组件之间的电连接可靠 性。 并且, 所述第一电极 51 52通过第一弹簧 511 521弹性安装。
如图 4C所示, 结合图 1A、 图 2E, 该插头外壳 10另一端 12上连接有一插头压线口 80, 其 上设置有用于压紧该插头组件上的导线的压线片 81。 并且, 在该插头外壳 10内, 该插头压线口 80与该插头外壳 10之间还通过一防水胶圈 931安装有一防水骨架 93,该插头组件上的导线穿过 该防水骨架 93, 由该压线口 80穿出并被压紧, 从而也增强了插头与插座导电连接时的防水性。 该插座外壳 20与该插头外壳 10相对的端面上还设置有防爆防水胶圈 94, 以进一步增强防爆和 防水性能。 在该插座外壳另一端 21连接有一压縮圈 22以及一与该压縮圈 22连接的插座外壳压 线口 90, 用以压紧与该插座组件上的电极导电连接的导线 (图中未示) 。 并且, 在该插座外壳 20内,该压縮圈 22与该插座外壳 20之间的空间 210内也通过一防水胶圈安装有一防水骨架(图 中未示) 以进一步加强插座的防水性能, 并且, 该防水胶圈及防水骨架的结构与该防水胶圈 931、 防水骨架 93的结构类似。
当然, 本发明还可有其他多种实施例, 在不背离本发明精神及其实质的情况下, 熟悉本领域 的技术人员当可根据本发明作出各种相应的改变和变型,但这些相应的改变和变形都应属于本发 明所附的权利要求的保护范围。

Claims

权 利 要 求
1、 一种防爆电连接装置, 其特征在于, 包括 插头, 其具有 一插头外壳; 一插头组件, 置于该插头外壳一端内, 并具有一插接栓, 在距离该插接栓的插入端面由 近及远的该插接栓外侧壁上依次设置有两个相对的第一触头、两个相对的第二触头、以及一卡件, 且该卡件位于其中一个该第二触头的正上方; 插座, 其具有 一插座外壳; 一插座组件,置于该插座外壳一端内,并具有一适配所述插接栓插拔和旋转的插接栓孔, 以及分别设置在所述插接栓孔的孔壁上的导向槽、两个相对的第一电极、 以及两个相对的第二电 极; 其中,所述插接栓插入所述插接栓孔中, 并通过该卡件沿所述导向槽旋转一角度至一导电位 置, 所述第一触头、 第二触头在所述导电位置分别与所述第一电极、 第二电极电性连接, 反向旋 转则分离断电。
2、 根据权利要求 1所述的防爆电连接装置, 其特征在于, 所述插接栓由第一栓部和第二栓 部构成, 且该第一栓部的外径小于该第二栓部的外径, 该两个第一触头位于该第一栓部上, 该两 个第二触头及该卡件位于该第二栓部上; 并且,每一该第一触头及每一该第二触头分别通过一插 片与一插头接线端子导电连接, 每一该插头接线端子通过导线与一电气设备连接。
3、 根据权利要求 2所述的防爆电连接装置, 其特征在于, 该插头外壳另一端连接有一插头 压线口, 其上设置有用于压紧所述导线的压线片, 在该插头外壳内, 该插头压线口与该插头外壳 之间还通过一防水胶圈安装有一防水骨架。
4、 根据权利要求 3所述的防爆电连接装置, 其特征在于, 该两个第一触头之间的连线与该 两个第二触头之间的连线成直角。
5、 根据权利要求 1〜4任一权利要求所述的防爆电连接装置, 其特征在于, 所述插座组件包 括: 一插座接线端; 一第一基座,位于该插座接线端上,其上设置有所述两个第一电极,并具有一第一基座栓孔; 一绝缘垫, 位于该第一基座上, 并具有一绝缘垫栓孔; 一第二基座, 位于该绝缘垫上, 其上设置有所述两个第二电极以及所述导向槽, 并具有一第 二基座栓孔; 其中, 该第一基座栓孔、 该绝缘垫栓孔、 该第二基座栓孔构成所述插接栓孔, 且所述第一电 极和第 ^^ 1^2^^过第一弹簧和第二弹簧弹性安装。 Ι^Τ^ ΘΜ/ΘΘΘ649
6、 根据权利要求 5所述的防爆电连接装置, 其特征在于, 该第一基座的该第一基座栓孔的 底面上还形成有一导柱,该插接栓的该插入端面上对应形成有与该导柱配合引导插入的导孔,且 该插接栓孔内还设置有一第三弹簧, 该第三弹簧套装于该导柱上。
7、 根据权利要求 6所述的防爆电连接装置, 其特征在于, 位于该插接栓的该第一栓部外侧 的该第二栓部的底面上设置有外防护套, 位于该导孔外侧的该插入端面上设置有内防护套。
8、 根据权利要求 5所述的防爆电连接装置, 其特征在于, 该插座组件外侧表面上还包覆有 一底套及一面套,其中该底套包覆于该第一基座外侧表面上,该面套则包覆于该第二基座和该绝 缘垫的外侧表面上, 并与该底套螺纹连接。
9、 根据权利要求 8所述的防爆电连接装置, 其特征在于, 包覆有该底套及面套的该插座组 件安装于一插座基体内,且该插座基体安装于该插座外壳内,该插座基体与该插座外壳之间具有 一定位环和一涨圈, 且该插座外壳与该插头外壳相对的端面上设置有防爆防水胶圈。
10、 根据权利要求 9所述的防爆电连接装置, 其特征在于, 该插座一端还具有一防水盖, 其 通过一轴销与一扭簧可翻转的连接于该插座外壳, 暴露 /封闭该插接栓孔; 该插座外壳另一端连 接有一压縮圈以及一与该压縮圈连接的插座外壳压线口,且在该插座外壳内,该压縮圈与该插座 外壳之间还通过一防水胶圈安装有一防水骨架。
11、 根据权利要求 5所述的防爆电连接装置, 其特征在于, 该两个第一电极为 AC相电极, 该两个第二电极其中一个为 R相电极, 另一个为 L相电极, 该导向槽内还通过一弹片弹性设置 有一中性电极; 该两个第一触头对应为 AC相触头, 该两个第二触头其中一个对应为 R相触头, 另一个为 L相触头, 该卡件对应为一中性触头。
12、根据权利要求 9所述的防爆电连接装置, 其特征在于, 该插头外壳一端的外表面上形成 有两个相对设置且凸出于该外表面的凸块,而该插座基体的内侧表面上对应设置有引导槽,该引 导槽由供该两个凸块分别插入的插入部分和供该两个凸块共同旋转的旋转部分连通而成; 并且, 该两个凸块的其中一个具有第一宽度, 另一个具有第二宽度, 且第一宽度大于第二宽度, 该引导 槽的该两个插入部分的宽度与该两个凸块的宽度相适配。
13、 一种插头, 其特征在于, 其具有一插头外壳以及一插头组件, 该插头组件置于该插头外 壳一端内, 并具有一插接栓, 所述插接栓由第一栓部和第二栓部构成, 该第一栓部一端具有一插 入端面, 另一端与该第二栓部连接, 且该第一栓部的外径小于该第二栓部的外径, 在该第一栓部 的外侧壁上设置有两个相对的第一触头,在该第二栓部的外侧壁上设置有两个相对的第二触头以 及一个位于一个该第二触头的正上方的卡件, 该两个第一触头、该两个第二触头、该卡件分别位 于距离该插入端面由近及远的三个不同平面上,且该两个第一触头之间的连线与该两个第二触头 之间的连线成直角。
14、 根据权利要求 13所述的防爆电连接装置, 其特征在于, 每一该第一触头及每一该第二 触头分别通过一插片与一插头接线端子导电连接,每一该插头接线端子通过导线与一电气设备连 接。
15、 根据权利要求 14所述的防爆电连接装置, 其特征在于, 该插头外壳另一端连接有一插 头压线口, 其上设置有用于压紧所述导线的压线片, 并且, 在该插头外壳内, 该插头压线口与该 插头外壳之间还通过一防水胶圈安装有一防水骨架。
16、 W^g¾^」7|c¾ 13所述的防爆电连接装置, 其特征在于, 该两个 ^Τ/ ^ /()^ 触头, 该两个第二触头其中一个为 R相触头, 另一个为 L相触头, 该卡件为一中性触头。
17、根据权利要求 13〜16任一权利要求所述的防爆电连接装置, 其特征在于, 该插头外壳一 端的外表面上形成有两个相对设置且凸出于该外表面的凸块,该两个凸块的其中一个具有第一宽 度, 另一个具有第二宽度, 且第一宽度大于第二宽度。
18、 一种插座, 其特征在于, 其具有一插座外壳及一插座组件, 该插座组件置于该插座外壳 一端内, 并具有一适配所述插接栓插拔和旋转的插接栓孔, 以及分别设置在所述插接栓孔的孔壁 上的导向槽、 两个相对的第一电极、 以及两个相对的第二电极。
19、 根据权利要求 18所述的插座, 其特征在于, 所述插座组件包括: 一插座接线端; 一第一基座,位于该插座接线端上,其上设置有所述两个第一电极,并具有一第一基座栓孔; 一绝缘垫, 位于该第一基座上, 并具有一绝缘垫栓孔; 一第二基座, 位于该绝缘垫上, 其上设置有所述两个第二电极以及所述导向槽, 并具有一第 二基座栓孔; 其中, 该第一基座栓孔、 该绝缘垫栓孔、 该第二基座栓孔构成所述插接栓孔, 所述第一电极 和第二电极分别通过第一弹簧和第二弹簧弹性安装。
20、 根据权利要求 19所述的插座, 其特征在于, 该第一基座的该第一基座栓孔的底面上还 形成有一导柱, 该插接栓孔内还设置有一第三弹簧, 该第三弹簧套装于该导柱上。
21、 根据权利要求 20所述的防爆电连接装置, 其特征在于, 该插座组件外侧表面上还包覆 有一底套及一面套,其中该底套包覆于该第一基座外侧表面上,该面套则包覆于该第二基座和该 绝缘垫的外侧表面上, 并与该底套螺纹连接。
22、 根据权利要求 21所述的插座, 其特征在于, 包覆有该底套及面套的该插座组件安装于 一插座基体内,且该插座基体安装于该插座外壳内,该插座基体与该插座外壳之间具有一定位环 和一涨圈, 该插座外壳与该插头外壳相对的端面上设置有防爆防水胶圈。
23、 根据权利要求 21所述的插座, 其特征在于, 该插座基体的内侧表面上设置有引导槽, 该引导槽由两个插入部分和一个旋转部分连通而成, 且该引导槽的两个插入部分的宽度不同。
24、 根据权利要求 21所述的插座, 其特征在于, 该插座一端还具有一防水盖, 其通过一轴 销与一扭簧可翻转的连接于该插座外壳, 暴露 /封闭该插接栓孔; 该插座外壳另一端连接有一压 縮圈以及一与该压縮圈连接的插座外壳压线口,且在该插座外壳内,该压縮圈与该插座外壳之间 还通过一防水胶圈安装有一防水骨架。
25、 根据权利要求 19所述的插座, 其特征在于, 该两个第一电极为 AC相电极, 该两个第 二电极其中一个为 R相电极, 另一个为 L相电极, 该导向槽内还通过一弹片弹性设置有一中性 电极。
PCT/CN2010/000649 2010-04-15 2010-05-07 防爆电连接装置及其插头、插座 WO2011127630A1 (zh)

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CN104241936A (zh) * 2013-06-09 2014-12-24 上海翔洲电气科技有限公司 插头绝缘装置组件
WO2019170295A1 (en) * 2018-03-09 2019-09-12 Eaton Intelligent Power Limited Electrical plug-and-socket device
CN114498143A (zh) * 2020-10-27 2022-05-13 好庆科技企业股份有限公司 电子插头

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CN104037524B (zh) * 2014-07-04 2016-05-11 乐清市长征电器开关厂 防爆插接装置
CN112952451A (zh) * 2021-01-07 2021-06-11 嘉兴石化有限公司 一种防爆检修电源插接保护系统

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DE102004059162A1 (de) * 2004-12-08 2006-06-14 BSH Bosch und Siemens Hausgeräte GmbH Elektrisches Gerät mit einer Stromversorgungskupplung
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CN104241936A (zh) * 2013-06-09 2014-12-24 上海翔洲电气科技有限公司 插头绝缘装置组件
WO2019170295A1 (en) * 2018-03-09 2019-09-12 Eaton Intelligent Power Limited Electrical plug-and-socket device
CN114498143A (zh) * 2020-10-27 2022-05-13 好庆科技企业股份有限公司 电子插头
CN114498143B (zh) * 2020-10-27 2024-04-12 好庆科技企业股份有限公司 电子插头

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