WO2023071195A1 - 储能连接器 - Google Patents

储能连接器 Download PDF

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Publication number
WO2023071195A1
WO2023071195A1 PCT/CN2022/096909 CN2022096909W WO2023071195A1 WO 2023071195 A1 WO2023071195 A1 WO 2023071195A1 CN 2022096909 W CN2022096909 W CN 2022096909W WO 2023071195 A1 WO2023071195 A1 WO 2023071195A1
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WO
WIPO (PCT)
Prior art keywords
socket
energy storage
plug
storage device
signal
Prior art date
Application number
PCT/CN2022/096909
Other languages
English (en)
French (fr)
Inventor
李博阳
陈其锋
王旭
Original Assignee
宁德时代新能源科技股份有限公司
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 宁德时代新能源科技股份有限公司 filed Critical 宁德时代新能源科技股份有限公司
Priority to JP2022545445A priority Critical patent/JP2023550856A/ja
Priority to EP22747921.9A priority patent/EP4199269A4/en
Priority to KR1020227028042A priority patent/KR102684427B1/ko
Publication of WO2023071195A1 publication Critical patent/WO2023071195A1/zh
Priority to US18/361,874 priority patent/US20230369818A1/en

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R27/00Coupling parts adapted for co-operation with two or more dissimilar counterparts
    • H01R27/02Coupling parts adapted for co-operation with two or more dissimilar counterparts for simultaneous co-operation with two or more dissimilar counterparts
    • 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
    • H01R13/665Structural association with built-in electrical component with built-in electronic circuit
    • H01R13/6691Structural association with built-in electrical component with built-in electronic circuit with built-in signalling means
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R25/00Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits
    • H01R25/006Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits the coupling part being secured to apparatus or structure, e.g. duplex wall receptacle
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H85/00Protective devices in which the current flows through a part of fusible material and this current is interrupted by displacement of the fusible material when this current becomes excessive
    • H01H85/02Details
    • H01H85/04Fuses, i.e. expendable parts of the protective device, e.g. cartridges
    • H01H85/041Fuses, i.e. expendable parts of the protective device, e.g. cartridges characterised by the type
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/425Structural combination with electronic components, e.g. electronic circuits integrated to the outside of the casing
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/48Accumulators combined with arrangements for measuring, testing or indicating the condition of cells, e.g. the level or density of the electrolyte
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • H01M50/502Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing
    • H01M50/503Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing characterised by the shape of the interconnectors
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • H01M50/569Constructional details of current conducting connections for detecting conditions inside cells or batteries, e.g. details of voltage sensing terminals
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • H01M50/572Means for preventing undesired use or discharge
    • H01M50/574Devices or arrangements for the interruption of current
    • H01M50/583Devices or arrangements for the interruption of current in response to current, e.g. fuses
    • 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
    • H01R13/46Bases; Cases
    • H01R13/502Bases; Cases composed of different pieces
    • H01R13/506Bases; Cases composed of different pieces assembled by snap action of the parts
    • 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
    • H01R13/46Bases; Cases
    • H01R13/52Dustproof, splashproof, drip-proof, waterproof, or flameproof cases
    • H01R13/5202Sealing means between parts of housing or between housing part and a wall, e.g. sealing rings
    • 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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/639Additional means for holding or locking coupling parts together, after engagement, e.g. separate keylock, retainer strap
    • 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
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M2200/00Safety devices for primary or secondary batteries
    • H01M2200/10Temperature sensitive devices
    • H01M2200/103Fuse
    • 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
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/629Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
    • H01R13/62933Comprising exclusively pivoting lever
    • 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
    • H01R13/73Means for mounting coupling parts to apparatus or structures, e.g. to a wall
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the present application relates to the technical field of batteries, in particular to an energy storage connector.
  • the energy storage device is often electrically connected to other devices through an energy storage connector, so that the energy storage device can supply power to other devices, or can charge the energy storage device through other devices.
  • the voltage signal and/or temperature signal of the energy storage device cannot be collected in time, resulting in the inability to know the status of the energy storage device in time.
  • the energy storage equipment is prone to damage.
  • the present application provides an energy storage connector, which can collect the voltage signal and/or temperature signal of the energy storage device in time when the energy storage device is in use, so as to know the status of the energy storage device in time, thereby avoiding the failure of the energy storage device susceptible to damage.
  • the application provides an energy storage connector, including: an integrated socket, the integrated socket includes a socket body and a post-installation plug-in installed on the socket body and used for plugging with an energy storage device; a signal connector plug, a signal connection
  • the connector plug includes a signal plug body, one end of the signal plug body is detachably mounted on the socket body and plugged with a rear-mounted plug-in, and the other end is used for plugging with a signal cable.
  • the integrated socket includes a socket body and a post-installation plug-in installed on the socket body for plugging with an energy storage device;
  • the signal connector plug includes a signal plug body, and one end of the signal plug body can be It is detachably installed on the socket body and plugged with the rear plug-in, and the other end is used for plugging with the signal cable.
  • the signal cable can be used to collect the voltage signal and/or temperature signal of the energy storage device through the signal plug body and the post-installed plug-in, so as to know the storage status in time. The state of the energy storage device, thereby preventing the energy storage device from being easily damaged.
  • the signal plug body since one end of the signal plug body is detachably mounted on the socket body, when there is no need to collect the voltage signal and/or temperature signal of the energy storage device, or the signal plug body is damaged, the signal plug body can be removed from the socket body disassembled.
  • the signal connector plug also includes a locking buckle and a plug housing, and the locking buckle and the signal plug body are fixed to the plug housing; the socket body is provided with a protruding ring stopper, and the ring stopper There is a protruding locking block on the outer wall; one end of the signal plug body is inserted into the ring block along the first direction, and the locking block and the locking buckle are arranged in sequence along the first direction and abut against each other to secure the signal One end of the plug body is clamped in the ring stopper.
  • the locking block and the locking buckle are sequentially arranged along the first direction and abut against each other, it can ensure that the signal plug body is stably fixed on the socket ontology.
  • the locking catch can be retracted along the protruding direction of the locking block and separated from the locking block, so that one end of the signal plug body can be removed from the ring stopper. take out.
  • the socket body is provided with a hanging slot; one end of the rear-mounted plug-in is detachably installed in the hanging slot and plugged with one end of the signal plug body, and the other end is used for plugging with the energy storage device.
  • Installing one end of the post-installation insert in the hanging groove can prevent one end of the post-installation insert from colliding with other components, thereby avoiding damage to one end of the post-installation insert.
  • the rear-mounted plug-in is provided with a protruding hanging table; the inner wall of the hanging groove is provided with a first stopper; one end of the rear-mounted plug-in is inserted into the hanging groove along the concave direction of the hanging groove, the first stopper and
  • the hanging tables are arranged in sequence along the concave direction of the hanging groove and abut against each other, so that one end of the post-mounted plug-in is clamped in the hanging groove, wherein the hanging table can be retracted along the opposite direction of its protruding, and is connected with the first blocking The pieces are separated.
  • the hanging table can be retracted along the opposite direction of its protruding and separated from the locking block, so that one end of the rear-mounted plug-in can be taken out from the hanging groove.
  • the energy storage connector further includes: a maintenance switch; the integrated socket further includes two first slot components installed on the socket body and used to electrically connect with the conductive circuit of the energy storage device;
  • the maintenance switch includes The switch body, the two maintenance inserts and the connecting structure located between the two maintenance inserts and electrically connected to the two maintenance inserts, the switch body is detachably installed on the socket body, the two maintenance inserts and the connection structure are It is fixed on the switch body, and the two maintenance inserts are inserted into one of the two first slot components respectively. In this way, when the conductive circuit of the energy storage device needs to be cut off, the maintenance switch can be separated from the socket body to cut off the electrical connection between the two first socket components, thereby cutting off the conductive circuit of the energy storage device.
  • the maintenance switch further includes a maintenance handle fixed to the switch body, and two first slide rails oppositely arranged on both sides of the maintenance handle; There are two first rotating shafts, and the two first rotating shafts are respectively slidably arranged on one of the two first sliding rails. In this way, by moving the maintenance handle, the two first rotating shafts slide on one of the two first slide rails respectively, so as to insert the maintenance insert into the first slot assembly, or insert the maintenance insert into the second slot assembly. A socket assembly is separated.
  • the integrated socket also includes a socket buckle cover fixed to the first socket assembly, the socket buckle cover is provided with a protruding buckle platform; the socket body is provided with a buckle groove, and the inner wall of the buckle groove is provided with a second Stopper: At least part of the first socket assembly and the socket cover are inserted into the buckle groove along the concave direction of the buckle groove, and the second stopper and the buckle table are arranged in sequence along the concave direction of the buckle groove and abut against each other, so that the first At least part of a socket assembly and the socket cover are snapped into the socket.
  • the second stopper and the buckle table are sequentially arranged along the concave direction of the buckle groove and abut against each other, that is It can ensure that at least part of the first socket component and the socket cover are stably fixed in the socket.
  • the first socket assembly includes a socket piece and an adapter piece, the socket piece is inserted into the maintenance piece, and one end of the adapter piece passes through the socket cover and is inserted into the socket piece, The other end is used for electrical connection with the conductive circuit of the energy storage device; the socket cover is provided with a limit piece; the socket piece and the socket cover are inserted into the buckle groove along the concave direction of the buckle groove, and the limit piece and the socket piece are inserted along the buckle groove
  • the concave directions of the sockets are set in sequence and abut against each other, so that the socket pieces are clamped in the buckle grooves.
  • the stopper and the socket piece are sequentially arranged along the concave direction of the buckle groove and abut against each other, the socket piece can be ensured It is firmly fixed in the buckle groove.
  • the adapter insert includes protruding limit teeth; the socket cover is provided with protruding positioning spring teeth; the adapter insert is inserted into the socket cover along the second direction, and the positioning spring teeth and the limit The side teeth are arranged in sequence along the second direction and abut against each other, wherein the positioning spring teeth can be retracted along the opposite direction of their protruding and separated from the limiting side teeth.
  • the positioning spring teeth and the limit side teeth are sequentially arranged along the second direction and abut against each other, so as to ensure that the adapter insert is stably fixed on the socket buckle. cover.
  • the positioning spring tooth can be retracted in the opposite direction of its protruding and separated from the limit side teeth, so as to separate the adapter insert from the socket cover .
  • the socket member includes two opposite walls and two elastic pieces located between the two walls, and the two elastic pieces protrude along the direction of approaching each other; one end of the adapter insert is inserted between the two elastic pieces and make any elastic piece elastically deform under the pressure of the wall fixed with the elastic piece and the adapter insert. In this way, the stability after insertion of the socket piece and the adapter blade can be improved.
  • the connecting structure is a fuse. In this way, when the current flowing through the two maintenance inserts exceeds the specified value of the fuse, the fuse can cut off the electrical connection of the two maintenance inserts, thereby cutting off the conductive circuit of the energy storage device.
  • the energy storage connector further includes: two current connector plugs; the integrated socket further includes two plugs installed on the socket body and used to plug into one of the positive and negative poles of the energy storage device respectively.
  • the current connector plug also includes a plug handle fixed to the current plug body, and two second slide rails oppositely arranged on both sides of the plug handle; Two second rotating shafts are provided, and the two second rotating shafts are respectively slidably arranged on one of the two second sliding rails. In this way, by moving the plug handle, the two second rotating shafts slide on one of the two second sliding rails respectively, so as to plug the current plug body into the second socket assembly, or connect the current plug body to the second slot assembly. Two-socket assembly separated.
  • the integrated socket further includes a flange sealing ring installed on the socket body and used to abut against the energy storage device, and the flange sealing ring surrounds the post-mounted insert.
  • the sealing of the joint between the integrated socket and the energy storage device can be increased.
  • the flange sealing ring surrounds the rear-mounted plug-in, after the integrated socket is connected to the energy storage device, it can also prevent the rear-mounted plug-in from being easily damaged due to the leakage of the rear-mounted plug-in.
  • the socket body is provided with an annular groove; a part of the flange sealing ring is locked in the annular groove, and the other part is used to abut against the energy storage device. In this way, after a part of the flange sealing ring is clamped in the annular groove, the stability when the flange sealing ring and the socket body are fixed can be increased, and relative movement between the socket body and the flange sealing ring can be avoided.
  • the integrated socket further includes a plurality of insert nuts integrally molded with the socket body through injection molding and used for fixing with the energy storage device.
  • the energy storage device can be fixed with a plurality of insert nuts, thereby stably fixing the integrated socket on the energy storage device.
  • the socket body is provided with a first installation surface and a second installation surface opposite to the first installation surface and used for installation to the energy storage device, and the rear-mounted plug-in is arranged on the second installation surface; the signal connector The plug is mounted on the first mounting surface.
  • the signal connector plug can be assembled on the first mounting surface, and the socket body can be assembled on the second mounting surface, so as to avoid the post-mounted plug-in and the signal connector.
  • the connector plugs interfere with each other during assembly.
  • Fig. 1 is a schematic structural diagram of an energy storage connector in some embodiments of the present application.
  • Fig. 2 is a schematic diagram of an exploded structure of an energy storage connector in some embodiments of the present application
  • Fig. 3 is a schematic structural diagram of an integrated socket in some embodiments of the present application.
  • Fig. 4 is a schematic diagram of an exploded structure of an integrated socket according to some embodiments of the present application.
  • Fig. 5 is a structural schematic diagram of another viewing angle of an integrated socket according to some embodiments of the present application.
  • Fig. 6 is a sectional view cut along the A-A direction of Fig. 5;
  • FIG. 7 is a schematic structural diagram of a signal connector plug in some embodiments of the present application.
  • FIG. 8 is a cross-sectional view of a signal connector plug in some embodiments of the present application.
  • FIG. 9 is a schematic structural diagram of a maintenance switch in some embodiments of the present application.
  • FIG. 10 is a schematic structural diagram of a current connector plug in some embodiments of the present application.
  • FIG. 11 is a cross-sectional view of a current connector plug according to some embodiments of the present application.
  • socket 110 Integrated socket 110, socket body 111, rear plug-in 112, socket cover 113, socket piece 114, adapter insert 115, flange sealing ring 116, nut 117;
  • Ring block 11 locking block 12, hanging groove 13, hanging platform 14, first rotating shaft 15, buckle platform 16, buckle groove 17, limiter 18, limiter tooth 19, positioning spring tooth 20, shrapnel 21, The second rotating shaft 25, the annular groove 26;
  • Signal connector plug 120 signal plug body 121, locking buckle 122, plug housing 123, first locking plate 124;
  • Maintenance switch 130 switch body 131, maintenance insertion piece 132, connecting structure 133, maintenance handle 134, first slide rail 135, second locking piece 136;
  • the current connector plug 140 The current connector plug 140 , the current plug body 141 , the plug handle 142 , the second sliding rail 143 , and the third locking piece 144 .
  • multiple refers to more than two (including two), similarly, “multiple groups” refers to more than two groups (including two), and “multiple pieces” refers to More than two pieces (including two pieces).
  • the energy storage device is often electrically connected to other devices through an energy storage connector, so that the energy storage device can supply power to other devices, or can charge the energy storage device through other devices.
  • an after-installation plug-in plugged with the energy storage device can be provided on the integrated socket of the energy storage connector , and a signal connector plugged with the rear-mounted plug-in and used for plugging with the signal cable, so that when the energy storage device is in use, the voltage signal and /or temperature signal, so as to know the state of the energy storage device in time, and then avoid the easy damage of the energy storage device.
  • an energy storage connector including: integrated socket, integrated
  • the socket includes a socket body and a post-installation plug-in installed on the socket body for plugging in with the energy storage device; a signal connector plug, the signal connector plug includes a signal plug body, and one end of the signal plug body is detachably mounted on the socket body Connect it to the post-installation plug-in, and the other end is used to connect to the signal cable. Therefore, the signal cable can be used to collect the voltage signal and/or temperature signal of the energy storage device through the signal plug body and the post-installation plug-in, so as to know the state of the energy storage device in time, and thus avoid the easy damage of the energy storage device.
  • the signal plug body since one end of the signal plug body is detachably mounted on the socket body, when there is no need to collect the voltage signal and/or temperature signal of the energy storage device, or the signal plug body is damaged, the signal plug body can be removed from the socket body disassembled.
  • the present application provides an energy storage connector 100, including: an integrated socket 110, the integrated socket 110 includes a socket body 111 and is installed on the socket body 111, and is used for plugging into an energy storage device. Connected back-mounted plug-in 112; signal connector plug 120, signal connector plug 120 includes a signal plug body 121, one end of the signal plug body 121 is detachably installed on the socket body 111 and plugged with the rear-mounted plug-in 112, the other end Used to plug in with signal cables.
  • the rear-mounted plug-in 112 is a plug-in connector with two plug ends, and one of the two plug-in ends of the rear-mounted plug-in 112 is used to plug in with the energy storage device to obtain the voltage signal and/or temperature signal of the energy storage device , the other end and the signal plug body 121 to transmit the acquired voltage signal and/or temperature signal of the energy storage device to the signal plug body 121 .
  • the signal plug body 121 is also a connector with two plug-in ends, one of the two plug-in ends of the signal plug body 121 is plugged with the rear-mounted plug-in 112 to receive the signal transmitted by the rear-mounted plug-in 112, and the other end is used for It is plugged with the signal cable, so as to transmit the received signal transmitted by the post-installation plug-in 112 to the signal cable.
  • the signal plug body 121 is plugged into the signal cable
  • the energy storage device is used to connect other devices through the energy storage connector 100 .
  • the signal cable can be used to collect the voltage signal and/or temperature signal of the energy storage device through the signal plug body 121 and the post-installation plug-in 112, In this way, the state of the energy storage equipment can be understood in time, and the energy storage equipment can be prevented from being easily damaged.
  • the signal connector plug 120 further includes a locking buckle 122 and a plug housing 123, and the locking buckle 122 and the signal plug body 121 are fixed on the plug housing 123;
  • the outer wall of the ring stopper 11 is provided with a protruding locking block 12; one end of the signal plug body 121 is inserted into the ring stopper 11 along the first direction (that is, the X direction shown in FIG. 2 ),
  • the locking block 12 and the locking buckle 122 are sequentially arranged along the first direction and abut against each other, so as to clamp one end of the signal plug body 121 in the ring stopper 11 .
  • the annular stopper 11 is a protruding annular structure located on the socket body 111.
  • the annular stopper 11 is provided with an annular inner wall surface and an annular outer wall surface surrounding the annular inner wall surface.
  • the annular outer wall surface of the annular stopper 11 is provided with a protruding lock. Tight block 12.
  • the locking block 12 and the locking buckle 122 are sequentially arranged along the first direction and contact each other, the signal plug body 121 can be secured It is stably fixed on the socket body 111 .
  • the locking buckle 122 can be retracted along the protruding direction of the locking block 12 . In this way, when the signal plug body 121 needs to be separated from the socket body 111, the locking buckle 122 can be retracted along the protruding direction of the locking block 12 and separated from the locking block 12, thereby separating the signal plug body 121. One end is taken out from the ring stopper 11.
  • the signal connector plug 120 is also provided with a first locking plate 124 fixed on the plug housing 123; the integrated socket 110 is also provided with a first buckle located on the ring stopper 11; the first The locking piece 124 is detachably engaged with the first buckle, so that the signal plug body 121 is more stably fixed on the socket body 111 .
  • the socket body 111 is provided with a hanging slot 13; one end of the rear-mounted plug-in 112 is detachably installed in the hanging slot 13 and plugged with one end of the signal plug body 121, and the other end is used for energy storage.
  • the device is plugged in.
  • installing one end of the rear-mounted plug-in 112 in the hanging groove 13 can prevent one end of the rear-mounted plug-in 112 from colliding with other parts, thereby preventing one end of the rear-mounted plug-in 112 from being damaged.
  • the rear-mounted insert 112 is provided with a protruding hanging platform 14; the inner wall of the hanging groove 13 is provided with a first stopper; one end of the rear-mounted insert 112 is inserted into the hanging groove along the concave direction of the hanging groove 13 13, the first stopper and the hanging table 14 are sequentially arranged along the concave direction of the hanging groove 13, and abut against each other, so that one end of the rear-mounted insert 112 is clamped in the hanging groove 13, wherein the hanging table 14 can be positioned along its The opposite direction of the projection retracts and separates from the first blocking member.
  • the first blocking member is a protruding block disposed on the hanging slot 13 and is used to abut against the hanging table 14 to fix the rear insert 112 in the hanging slot 13 .
  • the rear-mounted insert 112 is inserted into the hanging groove 13 along the concave direction of the hanging groove 13, and after the first stopper and the hanging platform 14 are arranged in sequence along the concave direction of the hanging groove 13 and abut each other, the rear can be ensured.
  • the insert 112 is stably fixed in the hanging groove 13 .
  • the hanging table 14 can be retracted along the opposite direction of its protruding and separated from the locking block 12, so that one end of the rear-mounted plug-in 112 can be removed from the hanging groove. Take it out within 13.
  • the connecting piece used to connect the hanging platform 14 to other structures of the rear-mounted insert 112 can be elastically deformed, and when the hanging platform 14 needs to be retracted in the opposite direction of its protrusion, the connecting piece can Elastic deformation occurs, thereby reducing the distance between the hanging platform 14 and other structures of the rear-mounted insert 112 , and then making the hanging platform 14 retract along the opposite direction of its protruding.
  • the energy storage connector 100 further includes: a maintenance switch 130; the integrated socket 110 also includes two first plugs installed on the socket body 111 and used to electrically connect with the conductive circuit of the energy storage device. Slot assembly; the maintenance switch 130 includes a switch body 131, two maintenance inserts 132 and a connection structure 133 that is located between the two maintenance inserts 132 and is electrically connected with the two maintenance inserts 132, the switch body 131 is detachably mounted on On the socket body 111 , two maintenance inserts 132 and the connecting structure 133 are fixed on the switch body 131 , and the two maintenance inserts 132 are plugged into one of the two first socket components respectively.
  • the first slot assembly, the maintenance insert 132 and the connecting structure 133 are all conductive connectors. After one of the components is plugged in, the current flowing out of the positive pole of the energy storage device flows through a first slot component, a maintenance insert 132, a connection structure 133, another maintenance insert 132 and another first slot component in sequence. Back to the negative pole of the energy storage device.
  • the maintenance switch 130 can be separated from the socket body 111 to cut off the connection between the two first socket components. The electrical connection between them, thereby cutting off the conductive loop of the energy storage device.
  • the maintenance switch 130 also includes a maintenance handle 134 fixed to the switch body 131, and two first slide rails 135 oppositely arranged on both sides of the maintenance handle 134;
  • the two first rotating shafts 15 on the main body 111 are disposed opposite to each other, and the two first rotating shafts 15 are respectively slidably disposed on one of the two first sliding rails 135 .
  • the maintenance handle 134 can be moved so that the two first rotating shafts 15 slide on one of the two first slide rails 135, so that the maintenance insert 132 can be inserted into the first slot assembly, or the maintenance The insert 132 is separated from the first socket assembly.
  • the maintenance switch 130 is also provided with a second locking piece 136 fixed on the maintenance handle 134; the integrated socket 110 is also provided with a second buckle on the socket body 111; After a socket assembly is plugged in, the second locking piece 136 is detachably engaged with the second buckle, so that the maintenance switch 130 is more stably fixed on the socket body 111 .
  • the integrated socket 110 also includes a socket buckle cover 113 fixed to the first socket assembly, the socket buckle cover 113 is provided with a protruding buckle platform 16; the socket body 111 is provided with a buckle groove 17, and the buckle The inner wall of the groove 17 is provided with a second stopper; at least part of the first socket assembly and the socket button cover 113 are inserted into the button groove 17 along the concave direction of the button groove 17, and the second stopper and the buckle platform 16 are inserted along the button groove 17.
  • the concave directions of the sockets are set in sequence and abut against each other, so that at least part of the first socket assembly and the socket cover 113 are clamped in the button groove 17 .
  • the second blocking member is a protruding block disposed on the buckle slot 17 and used to abut against the buckle platform 16 to fix at least part of the first socket assembly and the socket buckle cover 113 in the buckle slot 17 .
  • the first socket assembly and the socket button cover 113 are inserted into the button groove 17 along the concave direction of the button groove 17, and the second stopper and the buckle platform 16 are arranged in sequence along the concave direction of the button groove 17, and mutually After abutting, at least part of the first socket component and the socket cover 113 can be stably fixed in the buckle groove 17 .
  • the first socket assembly includes a socket piece 114 and an adapter piece 115 , the socket piece 114 is inserted into the maintenance piece 132 , and one end of the adapter piece 115 passes through the socket cover 113 After that, it is plugged with the socket part 114, and the other end is used for electrical connection with the conductive circuit of the energy storage device; the socket cover 113 is provided with a limiter 18; the socket part 114 and the socket cover 113 are inserted along the concave direction of the button groove 17 Inside the buckle groove 17 , the limiting member 18 and the socket member 114 are sequentially arranged along the concave direction of the buckle groove 17 and abut against each other, so that the socket member 114 is clamped in the buckle groove 17 .
  • the stopper 18 and the socket piece 114 are arranged in sequence along the concave direction of the buckle groove 17 and abut against each other. , it can ensure that the socket member 114 is stably fixed in the buckle groove 17 .
  • the limiting member 18 is a protrusion on the socket cover 113 .
  • the adapter insert 115 includes a protruding limiting edge tooth 19; the socket cover 113 is provided with a protruding positioning spring tooth 20; Y direction as shown) is inserted into the socket cover 113, and the positioning spring teeth 20 and the limit side teeth 19 are sequentially arranged along the second direction and abut against each other, wherein the positioning spring teeth 20 can be retracted along the opposite direction of its protruding, And separate from the limiting side teeth 19.
  • Limiting side teeth 19 are toothed structures arranged on the adapter insert 115 and used to abut against the positioning elastic teeth 20 of the socket button cover 113; the positioning elastic teeth 20 are arranged on the socket button cover 113 and are used The tooth-shaped and elastic structure is abutted by the limiting side teeth 19 of the socket cover 113 .
  • the positioning elastic teeth 20 and the limit side teeth 19 are sequentially arranged along the second direction and abut against each other, so as to ensure the stability of the adapter insert 115 It is fixed on the socket buckle cover 113.
  • the positioning elastic tooth 20 can be retracted in the opposite direction of its protruding and separated from the limit tooth 19, so that the adapter insert 115 Separate from the socket cover 113.
  • the socket member 114 includes two opposite wall surfaces and two elastic pieces 21 located between the two wall surfaces, and the two elastic pieces 21 protrude along the direction of approaching each other; One end is inserted between two elastic pieces 21 , and any elastic piece 21 is elastically deformed under the pressure of the wall surface fixed with the elastic piece 21 and the adapter insert 115 .
  • any elastic sheet 21 is elastically deformed under the compression of the wall surface fixed with the elastic sheet 21 and the adapter insert 115, so that the two The elastic piece 21 can clamp the adapter insert 115 , thereby improving the stability of the socket member 114 and the adapter insert 115 after being inserted.
  • connection structure 133 is a fuse.
  • a fuse is an electrical appliance that fuses with the heat generated by the melt of the fuse when the current flowing through the fuse exceeds a specified value, and disconnects the circuit.
  • the specified value of the fuse can be: 50 amperes, 100 amperes, etc., which can be set according to the current value supplied by the energy storage device connected to the energy storage connector 100 .
  • the energy storage connector 100 further includes: two current connector plugs 140; Two second socket assemblies plugged by one; the current connector plug 140 includes a current plug body 141; one end of any one of the two current plug bodies 141 is detachably mounted on the socket body 111 and connected to the two second plug bodies Any one of the two slot components is plugged in, and the other end is used for plugging in with cables.
  • Both the second socket assembly and the current plug body 141 are conductive connectors. In this way, when the two second socket components are respectively plugged into one of the positive and negative poles of the energy storage device, and the two current plug bodies 141 are plugged into the cables, the energy storage device can pass through The energy connector 100 and the cable supply power to other devices, or other devices charge the energy storage device through the cable and the energy storage connector 100 .
  • the current connector plug 140 also includes a plug handle 142 fixed to the current plug body 141, and two second slide rails 143 oppositely arranged on both sides of the plug handle 142;
  • the integrated socket 110 also includes The two second rotating shafts 25 fixed on the socket body 111 and opposite to each other are respectively slidably disposed on one of the two second sliding rails 143 .
  • the two second rotating shafts 25 slide on one of the two second sliding rails 143 respectively, so as to insert the current plug body 141 into the second socket assembly, or connect the current The plug body 141 is separated from the second socket assembly.
  • the current connector plug 140 is also provided with a third locking piece 144 fixed on the plug handle 142; the integrated socket 110 is also provided with a third buckle located on the socket body 111; when the current plug body 141 After being inserted into the second socket assembly, the third locking plate 144 is detachably engaged with the third buckle, so as to fix the current plug body 141 on the socket body 111 more stably.
  • the socket body 111 is further provided with a buckle groove 17 and a socket buckle cover 113 matched with the second socket assembly, and the buckle groove 17 and the socket buckle cover 113 are matched with the second socket assembly.
  • the second socket assembly can also be provided with a socket piece 114 and an adapter piece 115, and the matching method of the socket piece 114 and the adapter piece 115 of the second socket assembly can also refer to the first embodiment in the foregoing embodiment.
  • the matching manner of the socket member 114 and the adapter blade 115 of the socket assembly will not be repeated here.
  • the integrated socket 110 further includes a flange sealing ring 116 installed on the socket body 111 and used to abut against the energy storage device.
  • the flange sealing ring 116 surrounds the rear insert 112 .
  • the sealing of the connection between the integrated socket 110 and the energy storage device can be increased.
  • the flange sealing ring 116 surrounds the rear-mounted insert 112 , after the integrated socket 110 is connected to the energy storage device, the rear-mounted insert 112 can be prevented from being easily damaged due to the leakage of the rear-mounted insert 112 .
  • the flange seal 116 also surrounds the first socket assembly and the second socket assembly. In this way, after the integrated socket 110 is connected to the energy storage device, the first socket assembly and the second socket assembly are easily damaged due to the exposure of the first socket assembly and the second socket assembly.
  • the socket body 111 is provided with an annular groove 26; a part of the flange sealing ring 116 is locked in the annular groove 26, and the other part is used to abut against the energy storage device.
  • the flange sealing ring 116 is an elastic sealing ring.
  • the flange sealing ring 116 is a silicone ring.
  • the integrated socket 110 further includes a plurality of insert nuts 117 integrally molded with the socket body 111 by injection molding and used for fixing with the energy storage device.
  • the socket body 111 is a plastic body.
  • the integrated socket 110 can be stably fixed on the energy storage device through a plurality of insert nuts 117 fixed to the energy storage device.
  • the socket body 111 is provided with a first installation surface and a second installation surface opposite to the first installation surface and used for installation to the energy storage device, and the rear-mounted plug-in 112 is arranged on the second installation surface ;
  • the signal connector plug 120 is installed on the first installation surface.
  • the signal connector plug 120 can be assembled on the first mounting surface, and the socket body 111 can be assembled on the second mounting surface to avoid The rear insert 112 interferes with the signal connector plug 120 during assembly.
  • the maintenance switch 130 and the current connector plug 140 are both disposed on the first mounting surface; the first socket assembly and the second socket assembly are both disposed on the second mounting surface.
  • the present application provides an energy storage connector 100 , including: an integrated socket 110 and a signal connector plug disposed on the socket body 111 of the integrated socket 110 120 , a maintenance switch 130 and a current connector plug 140 .
  • the signal cable can be plugged into the energy storage connector 100 to obtain the voltage signal and/or temperature signal of the energy storage device, and use the cable to connect other devices with the current
  • other devices can charge the energy storage device through the energy storage connector 100, or the energy storage device can supply power to other devices through the energy storage connector 100, and the maintenance switch 130 can be connected to the integrated socket 110 Separation to cut off the electrical connection between the energy storage device and other devices.

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  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Manufacturing & Machinery (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
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  • Battery Mounting, Suspending (AREA)
  • Connection Of Batteries Or Terminals (AREA)

Abstract

本申请公开了一种储能连接器。储能连接器包括:集成式插座,集成式插座包括插座本体以及安装在插座本体上、并用于与储能设备插接的后装插件;信号连接器插头,信号连接器插头包括信号插头本体,信号插头本体的一端可拆卸地安装在插座本体上并与后装插件插接、另一端用于与信号线缆插接。本申请实施例的储能连接器,在储能设备使用时,可及时采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。

Description

储能连接器
相关申请的交叉引用
本申请要求享有于2021年10月29日提交的名称为“储能连接器”的中国专利申请202122635800.9的优先权。
技术领域
本申请涉及电池技术领域,具体涉及一种储能连接器。
背景技术
储能设备常通过储能连接器与其他设备电连接,从而使得储能设备可对其他设备进行供电,或可通过其他设备对储能设备进行充电。
在利用储能设备对其他设备进行供电,或通过其他设备对储能设备进行充电的过程中,无法及时采集储能设备的电压信号和/或温度信号,导致无法及时了解储能设备的状态,致使储能设备易发生损坏。
实用新型内容
鉴于上述问题,本申请提供一种储能连接器,在储能设备使用时,可及时采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。
本申请提供了一种储能连接器,包括:集成式插座,集成式插座包括插座本体以及安装在插座本体上、并用于与储能设备插接的后装插件;信号连接器插头,信号连接器插头包括信号插头本体,信号插头本体的一端可拆卸地安装在插座本体上并与后装插件插接、另一端用于与信号线缆插接。
本申请实施例的技术方案中,集成式插座包括插座本体以及安装在插座本体上、并用于与储能设备插接的后装插件;信号连接器插头包括信号插头本体,信号插头本体的一端可拆卸地安装在插座本体上并与后装插件插接、另一端用于与信号线缆插接。这样的设计,当后装插件与储能设备插接、且信号插头本体与信号线缆插接后,在储能设备使用时,也即利用储能设备通过储能连接器对其他设备进行供电,或利用其他设备通过储能连接器对储能设备进行充电的过程中,可利用信号线缆通过信号插头本体以及后装插件采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。此外,由于信号插头本体的一端可拆卸地安装在插座本体上,因此,当无需采集储能设备的电压信号和/或温度信号,或信号插头本体发生损坏时,可将信号插头本体从插座本体拆卸下来。
在一些实施例中,信号连接器插头还包括锁紧挂扣以及插头壳体,锁紧挂扣以及信号插头本体均固定于插头壳体;插座本体设有凸伸的环形挡件,环形挡件的外壁面设有凸伸的锁紧块;信号插头本体的一端沿第一方向插入环形挡件内,锁紧块与锁紧挂扣沿第一方向依次设置、并相互抵接,以将信号插头本体的一端卡设于环形挡件内。如此,在信号插头本体的一端沿第一方向插入环形挡件内,锁紧块与锁紧挂扣沿第一方向依次设置、并相互抵接后,即可确保信号插头本体稳定地固定在插座本体上。此外,当需将信号插头本体与插座本体分离时,可将锁紧挂扣沿锁紧块的凸伸方向回缩、并与锁紧块分离,从而将信号插头本体的一端从环形挡件中取出。
在一些实施例中,插座本体设有挂槽;后装插件的一端可拆卸地安装在挂槽内并与信号插头本体的一端插接、另一端用于与储能设备插接。将后装插件的一端安装在挂槽内,可避免后装插件的一端与其他零部件发生磕碰,从而避免后装插件的一端发生损坏。
在一些实施例中,后装插件设有凸伸的挂台;挂槽的内壁面设有第一阻挡件;后装插件的一端沿挂槽的凹陷方向插入挂槽内,第一阻挡件与挂台沿挂槽的凹陷方向依次设置、并相互抵接,以将后装插件的一端卡设于挂槽内,其中,挂台可沿其凸伸的相反方向回缩、并与第一阻挡件分离。如此,在后装插件的一端沿挂槽的凹陷方向插入挂槽内,第一阻挡件与挂台沿挂槽的凹陷方 向依次设置、并相互抵接后,即可确保后装插件稳定地固定在挂槽内。此外,当需将后装插件与插座本体分离时,可将挂台沿其凸伸的相反方向回缩、并与锁紧块分离,从而将后装插件的一端从挂槽内取出。
在一些实施例中,储能连接器还包括:维修开关;集成式插座还包括安装在插座本体上、并用于与储能设备的导电回路电连接的两个第一插槽组件;维修开关包括开关本体、两个维修插片以及位于两个维修插片之间并与两个维修插片电连接的连接结构,开关本体可拆卸地安装在插座本体上,两个维修插片以及连接结构均固定在开关本体上,两个维修插片分别与两个第一插槽组件中的一者插接。如此,当需切断储能设备的导电回路时,可将维修开关与插座本体分离,以切断两个第一插槽组件之间的电连接,从而切断储能设备的导电回路。
在一些实施例中,维修开关还包括与开关本体固定的维修把手、以及相对设置在维修把手两侧的两个第一滑轨;集成式插座还包括固定在插座本体上、且相对设置的两个第一转轴,两个第一转轴分别可滑动地设置在两个第一滑轨中的一者上。如此,可通过移动维修把手,使得两个第一转轴分别在两个第一滑轨中的一者上滑动,以将维修插片与第一插槽组件插接,或将维修插片与第一插槽组件分离。
在一些实施例中,集成式插座还包括与第一插槽组件固定的插座扣盖,插座扣盖设有凸伸的扣台;插座本体设有扣槽,扣槽的内壁面设有第二阻挡件;第一插槽组件的至少部分以及插座扣盖沿扣槽的凹陷方向插入扣槽内,第二阻挡件与扣台沿扣槽的凹陷方向依次设置、并相互抵接,以将第一插槽组件的至少部分以及插座扣盖卡设于扣槽内。如此,在将第一插槽组件的至少部分以及插座扣盖沿扣槽的凹陷方向插入扣槽内,第二阻挡件与扣台沿扣槽的凹陷方向依次设置、并相互抵接后,即可确保第一插槽组件的至少部分以及插座扣盖稳定地固定在扣槽内。
在一些实施例中,第一插槽组件包括插槽件以及转接插片,插槽件与维修插片插接,转接插片的一端穿过插座扣盖后与插槽件插接、另一端用于与储能设备的导电回路电连接;插座扣盖设有限位件;插槽件以及插座扣盖沿扣槽的凹陷方向插入扣槽内,限位件与插槽件沿扣槽的凹陷方向依次设置、并相互抵接,以将插槽件卡设于扣槽内。如此,在将插槽件以及插座扣盖沿扣槽的凹陷方向插入扣槽内,限位件与插槽件沿扣槽的凹陷方向依次设置、并相互抵接后,即可确保插槽件稳定地固定在扣槽内。
在一些实施例中,转接插片包括凸伸的限位边齿;插座扣盖设有凸伸的定位弹齿;转接插片沿第二方向插入插座扣盖,定位弹齿与限位边齿沿第二方向依次设置、并相互抵接,其中,定位弹齿可沿其凸伸的相反方向回缩、并与限位边齿分离。如此,在将转接插片沿第二方向插入插座扣盖,定位弹齿与限位边齿沿第二方向依次设置、并相互抵接,即可确保转接插片稳定地固定在插座扣盖上。此外,当需将转接插片与插座扣盖分离时,可将定位弹齿沿其凸伸的相反方向回缩、并与限位边齿分离,从而将转接插片与插座扣盖分离。
在一些实施例中,插槽件包括相对设置的两个壁面以及位于两个壁面之间的两个弹片,两个弹片沿相互靠近的方向凸伸;转接插片的一端插入两个弹片之间,并使任一弹片在与该弹片固定的壁面和转接插片的挤压下发生弹性形变。如此,可提升插槽件与转接插片插接后的稳定性。
在一些实施例中,连接结构为熔断器。如此,当流经两个维修插片上的电流超出熔断器的规定值后,熔断器可切断两个维修插片的电连接,从而切断储能设备的导电回路。
在一些实施例中,储能连接器还包括:两个电流连接器插头;集成式插座还包括安装在插座本体上、并用于分别与储能设备的正负极中的一者插接的两个第二插槽组件;电流连接器插头包括电流插头本体;两个电流插头本体中任一者的一端可拆卸地安装在插座本体上并与两个第二插槽组件中任一者插接、另一端用于与电缆插接。当将两个第二插槽组件分别与储能设备的正负极中的一者插接后,且两个电流插头本体均与电缆插接后,即可使得储能设备通过储能连接器以及电缆向其他设备供电,或其他设备通过电缆以及储能连接器向储能设备充电。
在一些实施例中,电流连接器插头还包括与电流插头本体固定的插头把手、以及相对设置在插头把手两侧的两个第二滑轨;集成式插座还包括固定在插座本体上、且相对设置的两个第 二转轴,两个第二转轴分别可滑动地设置在两个第二滑轨中的一者上。如此,可通过移动插头把手,使得两个第二转轴分别在两个第二滑轨中的一者上滑动,以将电流插头本体与第二插槽组件插接,或将电流插头本体与第二插槽组件分离。
在一些实施例中,集成式插座还包括安装在插座本体上、并用于与储能设备抵接的法兰密封圈,法兰密封圈环绕后装插件。如此,当将集成式插座与储能设备连接后,可增加集成式插座与储能设备的连接处的密封性。此外,由于法兰密封圈环绕后装插件,故在集成式插座与储能设备连接后,还可避免由于后装插件暴漏在外导致后装插件易发生损坏。
在一些实施例中,插座本体设有环形凹槽;法兰密封圈的一部分卡设于环形凹槽内、另一部分用于与储能设备抵接。如此,在将法兰密封圈的一部分卡设于环形凹槽内后,可增加法兰密封圈与插座本体固定时的稳定性,避免插座本体与法兰密封圈产生相对移动。
在一些实施例中,集成式插座还包括与插座本体通过注塑一体成型、并用于与储能设备固定的多个嵌件螺母。如此,可通过多个嵌件螺母与储能设备固定,从而将集成式插座稳定地固定在储能设备上。
在一些实施例中,插座本体设有第一安装面以及与第一安装面相对设置、并用于安装至储能设备的第二安装面,后装插件设置在第二安装面上;信号连接器插头安装在第一安装面。如此,在将后装插件与信号连接器插头组装在插座本体上时,可在第一安装面上组装信号连接器插头,并在第二安装面上组装插座本体,以避免后装插件与信号连接器插头在组装过程中相互干涉。
上述说明仅是本申请技术方案的概述,为了能够更清楚了解本申请的技术手段,而可依照说明书的内容予以实施,并且为了让本申请的上述和其它目的、特征和优点能够更明显易懂,以下特举本申请的具体实施方式。
附图说明
通过阅读对下文优选实施方式的详细描述,各种其他的优点和益处对于本领域普通技术人员将变得清楚明了。附图仅用于示出优选实施方式的目的,而并不认为是对本申请的限制。而且在全部附图中,用相同的附图标号表示相同的部件。在附图中:
图1为本申请一些实施例的储能连接器的结构示意图;
图2为本申请一些实施例的储能连接器的分解结构示意图;
图3为本申请一些实施例的集成式插座的结构示意图;
图4为本申请一些实施例的集成式插座的分解结构示意图;
图5为本申请一些实施例的集成式插座的另一视角结构示意图;
图6为沿图5的A-A方向剖切的剖视图;
图7为本申请一些实施例的信号连接器插头的结构示意图;
图8为本申请一些实施例的信号连接器插头的剖视图;
图9为本申请一些实施例的维修开关的结构示意图;
图10为本申请一些实施例的电流连接器插头的结构示意图;
图11为本申请一些实施例的电流连接器插头的剖视图;
在附图中,附图并未按照实际的比例绘制。
具体实施方式中的附图标号如下:
储能连接器100;
集成式插座110,插座本体111,后装插件112,插座扣盖113,插槽件114,转接插片115,法兰密封圈116,螺母117;
环形挡件11,锁紧块12,挂槽13,挂台14,第一转轴15,扣台16,扣槽17,限位件18,限位边齿19,定位弹齿20,弹片21,第二转轴25,环形凹槽26;
信号连接器插头120,信号插头本体121,锁紧挂扣122,插头壳体123,第一锁片124;
维修开关130,开关本体131,维修插片132,连接结构133,维修把手134,第一滑轨135,第二锁片136;
电流连接器插头140,电流插头本体141,插头把手142,第二滑轨143,第三锁片144。
具体实施方式
下面将结合附图对本申请技术方案的实施例进行详细的描述。以下实施例仅用于更加清楚地说明本申请的技术方案,因此只作为示例,而不能以此来限制本申请的保护范围。
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同;本文中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请;本申请的说明书和权利要求书及上述附图说明中的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含。
在本申请实施例的描述中,技术术语“第一”“第二”等仅用于区别不同对象,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量、特定顺序或主次关系。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
在本申请实施例的描述中,术语“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
在本申请实施例的描述中,术语“多个”指的是两个以上(包括两个),同理,“多组”指的是两组以上(包括两组),“多片”指的是两片以上(包括两片)。
在本申请实施例的描述中,技术术语“中心”“纵向”“横向”“长度”“宽度”“厚度”“上”“下”“前”“后”“左”“右”“竖直”“水平”“顶”“底”“内”“外”“顺时针”“逆时针”“轴向”“径向”“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请实施例的限制。
在本申请实施例的描述中,除非另有明确的规定和限定,技术术语“安装”“相连”“连接”“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;也可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请实施例中的具体含义。
随着科学的发展,新能源技术也在不断发展,尤其是储能技术更是得到了长足的发展。储能设备常通过储能连接器与其他设备电连接,从而使得储能设备可对其他设备进行供电,或可通过其他设备对储能设备进行充电。
本发明人注意到,在利用储能设备对其他设备进行供电,或通过其他设备对储能设备进行充电的过程中,无法及时采集储能设备的电压信号和/或温度信号,导致无法及时了解储能设备的状态,致使储能设备易发生损坏。
为了在储能设备使用时,可及时采集储能设备的电压信号和/或温度信号,发明人研究 发现,可在储能连接器的集成式插座上设置与储能设备插接的后装插件、以及与后装插件插接并用于与信号线缆插接的信号连接器,以在储能设备使用时,通过信号线缆、信号连接器以及后装插件及时采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。
基于以上考虑,为了在储能设备使用时,可及时采集储能设备的电压信号和/或温度信号,发明人经过深入研究,设计了一种储能连接器,包括:集成式插座,集成式插座包括插座本体以及安装在插座本体上、并用于与储能设备插接的后装插件;信号连接器插头,信号连接器插头包括信号插头本体,信号插头本体的一端可拆卸地安装在插座本体上并与后装插件插接、另一端用于与信号线缆插接。从而可利用信号线缆通过信号插头本体以及后装插件采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。
此外,由于信号插头本体的一端可拆卸地安装在插座本体上,因此,当无需采集储能设备的电压信号和/或温度信号,或信号插头本体发生损坏时,可将信号插头本体从插座本体拆卸下来。
参见图1至图8。根据本申请的一些实施例,本申请提供了一种储能连接器100,包括:集成式插座110,集成式插座110包括插座本体111以及安装在插座本体111上、并用于与储能设备插接的后装插件112;信号连接器插头120,信号连接器插头120包括信号插头本体121,信号插头本体121的一端可拆卸地安装在插座本体111上并与后装插件112插接、另一端用于与信号线缆插接。
后装插件112为具有两个插接端的插接件,后装插件112的两个插接端中的一者用于与储能设备插接以获取储能设备的电压信号和/或温度信号、另一端与信号插头本体121以将获取的储能设备的电压信号和/或温度信号传输至信号插头本体121。信号插头本体121也为具有两个插接端的插接件,信号插头本体121的两个插接端中的一者与后装插件112插接以接收后装插件112传输的信号、另一端用于与信号线缆插接,以将接收的后装插件112传输的信号传输至信号线缆。
如此,当后装插件112与储能设备插接、且信号插头本体121与信号线缆插接后,在储能设备使用时,也即利用储能设备通过储能连接器100对其他设备进行供电,或利用其他设备通过储能连接器100对储能设备进行充电的过程中,可利用信号线缆通过信号插头本体121以及后装插件112采集储能设备的电压信号和/或温度信号,从而及时了解储能设备的状态,进而避免储能设备易发生损坏。
继续参见图1至图8。根据本申请的一些实施例,信号连接器插头120还包括锁紧挂扣122以及插头壳体123,锁紧挂扣122以及信号插头本体121均固定于插头壳体123;插座本体111设有凸伸的环形挡件11,环形挡件11的外壁面设有凸伸的锁紧块12;信号插头本体121的一端沿第一方向(即图2所示X方向)插入环形挡件11内,锁紧块12与锁紧挂扣122沿第一方向依次设置、并相互抵接,以将信号插头本体121的一端卡设于环形挡件11内。
环形挡件11为位于插座本体111上凸伸的环形结构,环形挡件11设有环形内壁面以及环绕环形内壁面的环形外壁面,环形挡件11的环形外壁面上设有凸伸的锁紧块12。
如此,在信号插头本体121的一端沿第一方向插入环形挡件11内,锁紧块12与锁紧挂扣122沿第一方向依次设置、并相互抵接后,即可确保信号插头本体121稳定地固定在插座本体111上。
在一实施例中,锁紧挂扣122可沿锁紧块12的凸伸方向回缩。如此,当需将信号插头本体121与插座本体111分离时,可将锁紧挂扣122沿锁紧块12的凸伸方向回缩、并与锁紧块12分离,从而将信号插头本体121的一端从环形挡件11中取出。
在又一实施例中,信号连接器插头120还设有固定在插头壳体123上的第一锁片124;集成式插座110还设有位于环形挡件11上的第一卡扣;第一锁片124与第一卡扣可拆卸地卡合,从而将信号插头本体121更稳定地固定在插座本体111上。
继续参见图1至图8。根据本申请的一些实施例,插座本体111设有挂槽13;后装插件112的一端可拆卸地安装在挂槽13内并与信号插头本体121的一端插接、另一端用于与储能设备插接。
如此,将后装插件112的一端安装在挂槽13内,可避免后装插件112的一端与其他零部件发生磕碰,从而避免后装插件112的一端发生损坏。
继续参见图1至图8。根据本申请的一些实施例,后装插件112设有凸伸的挂台14;挂槽13的内壁面设有第一阻挡件;后装插件112的一端沿挂槽13的凹陷方向插入挂槽13内,第一阻挡件与挂台14沿挂槽13的凹陷方向依次设置、并相互抵接,以将后装插件112的一端卡设于挂槽13内,其中,挂台14可沿其凸伸的相反方向回缩、并与第一阻挡件分离。
第一阻挡件为设置在挂槽13上的凸伸的块状物、并用于与挂台14抵接,以将后装插件112固定在挂槽13内。
如此,在后装插件112的一端沿挂槽13的凹陷方向插入挂槽13内,第一阻挡件与挂台14沿挂槽13的凹陷方向依次设置、并相互抵接后,即可确保后装插件112稳定地固定在挂槽13内。此外,当需将后装插件112与插座本体111分离时,可将挂台14沿其凸伸的相反方向回缩、并与锁紧块12分离,从而将后装插件112的一端从挂槽13内取出。
在一实施例中,用于将挂台14与后装插件112的其他结构连接的连接件可发生弹性形变,当需将挂台14沿其凸伸的相反方向回缩时,可使得连接件发生弹性形变,从而减小挂台14与后装插件112的其他结构之间的间距,进而使得挂台14沿其凸伸的相反方向回缩。
参见图1至图6,并同时参见图9。根据本申请的一些实施例,储能连接器100还包括:维修开关130;集成式插座110还包括安装在插座本体111上、并用于与储能设备的导电回路电连接的两个第一插槽组件;维修开关130包括开关本体131、两个维修插片132以及位于两个维修插片132之间并与两个维修插片132电连接的连接结构133,开关本体131可拆卸地安装在插座本体111上,两个维修插片132以及连接结构133均固定在开关本体131上,两个维修插片132分别与两个第一插槽组件中的一者插接。
第一插槽组件、维修插片132以及连接结构133均为导电连接件,当将两个第一插槽组件与导电回路电连接、且两个维修插片132分别与两个第一插槽组件中的一者插接后,储能设备正极流出的电流依次经过一第一插槽组件、一维修插片132、连接结构133、另一维修插片132以及另一第一插槽组件流回储能设备负极。
如此,当需切断储能设备的导电回路时,也即切断储能设备正极与负极之间的电连接时,可将维修开关130与插座本体111分离,以切断两个第一插槽组件之间的电连接,从而切断储能设备的导电回路。
继续参见图1至图6,且同时参见图9。根据本申请的一些实施例,维修开关130还包括与开关本体131固定的维修把手134、以及相对设置在维修把手134两侧的两个第一滑轨135;集成式插座110还包括固定在插座本体111上、且相对设置的两个第一转轴15,两个第一转轴15分别可滑动地设置在两个第一滑轨135中的一者上。
如此,可通过移动维修把手134,使得两个第一转轴15分别在两个第一滑轨135中的一者上滑动,以将维修插片132与第一插槽组件插接,或将维修插片132与第一插槽组件分离。
在一实施例中,维修开关130还设有固定在维修把手134上的第二锁片136;集成式插座110还设有位于插座本体111上的第二卡扣;当维修插片132与第一插槽组件插接后,第二锁片136与第二卡扣可拆卸地卡合,从而将维修开关130更稳定地固定在插座本体111上。
继续参见图1至图6。根据本申请的一些实施例,集成式插座110还包括与第一插槽组件固定的插座扣盖113,插座扣盖113设有凸伸的扣台16;插座本体111设有扣槽17,扣槽17的内壁面设有第二阻挡件;第一插槽组件的至少部分以及插座扣盖113沿扣槽17的凹陷方向插入扣槽17内,第二阻挡件与扣台16沿扣槽17的凹陷方向依次设置、并相互抵接,以将第一插槽组件的至少部分以及插座扣盖113卡设于扣槽17内。
第二阻挡件为设置在扣槽17上的凸伸的块状物、并用于与扣台16抵接,以将第一插槽组件的至少部分以及插座扣盖113固定在扣槽17内。
如此,在将第一插槽组件的至少部分以及插座扣盖113沿扣槽17的凹陷方向插入扣槽17内,第二阻挡件与扣台16沿扣槽17的凹陷方向依次设置、并相互抵接后,即可确保第一插槽组件的至少部分以及插座扣盖113稳定地固定在扣槽17内。
继续参见图1至图6。根据本申请的一些实施例,第一插槽组件包括插槽件114以及转接插片115,插槽件114与维修插片132插接,转接插片115的一端穿过插座扣盖113后与插槽件114插接、另一端用于与储能设备的导电回路电连接;插座扣盖113设有限位件18;插槽件114以及插座扣盖113沿扣槽17的凹陷方向插入扣槽17内,限位件18与插槽件114沿扣槽17的凹陷方向依次设置、并相互抵接,以将插槽件114卡设于扣槽17内。
如此,在将插槽件114以及插座扣盖113沿扣槽17的凹陷方向插入扣槽17内,限位件18与插槽件114沿扣槽17的凹陷方向依次设置、并相互抵接后,即可确保插槽件114稳定地固定在扣槽17内。在一实施例中,限位件18为插座扣盖113上的凸块。
继续参见图1至图6。根据本申请的一些实施例,转接插片115包括凸伸的限位边齿19;插座扣盖113设有凸伸的定位弹齿20;转接插片115沿第二方向(即图6所示Y方向)插入插座扣盖113,定位弹齿20与限位边齿19沿第二方向依次设置、并相互抵接,其中,定位弹齿20可沿其凸伸的相反方向回缩、并与限位边齿19分离。
限位边齿19为设置在转接插片115上、并用于与插座扣盖113的定位弹齿20抵接的齿状结构;定位弹齿20为设置在插座扣盖113上、并用于与插座扣盖113的限位边齿19抵接的齿状且具有弹性的结构。
如此,在将转接插片115沿第二方向插入插座扣盖113,定位弹齿20与限位边齿19沿第二方向依次设置、并相互抵接,即可确保转接插片115稳定地固定在插座扣盖113上。此外,当需将转接插片115与插座扣盖113分离时,可将定位弹齿20沿其凸伸的相反方向回缩、并与限位边齿19分离,从而将转接插片115与插座扣盖113分离。
继续参见图1至图6。根据本申请的一些实施例,插槽件114包括相对设置的两个壁面以及位于两个壁面之间的两个弹片21,两个弹片21沿相互靠近的方向凸伸;转接插片115的一端插入两个弹片21之间,并使任一弹片21在与该弹片21固定的壁面和转接插片115的挤压下发生弹性形变。
如此,当将转接插片115的一端插入两个弹片21之间后,由于任一弹片21在与该弹片21固定的壁面和转接插片115的挤压下发生弹性形变,使得两个弹片21可夹持转接插片115,从而可提升插槽件114与转接插片115插接后的稳定性。
参见图8。根据本申请的一些实施例,连接结构133为熔断器。
如此,当流经两个维修插片132上的电流超出熔断器的规定值后,熔断器可切断两个维修插片132的电连接,从而切断储能设备的导电回路。具体的,熔断器为当流经熔断器上的电流超过规定值时,熔断器的熔体以本身产生的热量使其熔断,断开电路的一种电器。其中,熔断器的规定值可为:50安培、100安培等等,其可根据与储能连接器100连接的储能设备供给的电流值设定。
参见图1至图6,并同时参见图10与图11。根据本申请的一些实施例,储能连接器100还包括:两个电流连接器插头140;集成式插座110还包括安装在插座本体111上、并用于分别与储能设备的正负极中的一者插接的两个第二插槽组件;电流连接器插头140包括电流插头本体141;两个电流插头本体141中任一者的一端可拆卸地安装在插座本体111上并与两个第二插槽组件中任一者插接、另一端用于与电缆插接。
第二插槽组件以及电流插头本体141均为导电连接件。如此,当将两个第二插槽组件分别与储能设备的正负极中的一者插接后,且两个电流插头本体141均与电缆插接后,即可使得储能设备通过储能连接器100以及电缆向其他设备供电,或其他设备通过电缆以及储能连接器100向 储能设备充电。
继续参见图1至图6,且同时参见图10与图11。根据本申请的一些实施例,电流连接器插头140还包括与电流插头本体141固定的插头把手142、以及相对设置在插头把手142两侧的两个第二滑轨143;集成式插座110还包括固定在插座本体111上、且相对设置的两个第二转轴25,两个第二转轴25分别可滑动地设置在两个第二滑轨143中的一者上。
如此,可通过移动插头把手142,使得两个第二转轴25分别在两个第二滑轨143中的一者上滑动,以将电流插头本体141与第二插槽组件插接,或将电流插头本体141与第二插槽组件分离。
在一实施例中,电流连接器插头140还设有固定在插头把手142上的第三锁片144;集成式插座110还设有位于插座本体111上的第三卡扣;当电流插头本体141与第二插槽组件插接后,第三锁片144与第三卡扣可拆卸地卡合,从而将电流插头本体141更稳定地固定在插座本体111上。
在又一些实施例中,插座本体111上还设有与第二插槽组件相配合的扣槽17以及插座扣盖113,其扣槽17以及插座扣盖113与第二插槽组件的配合方式可参考前述实施中扣槽17以及插座扣盖113与第一插槽组件的配合方式,在此不再赘述。此外,第二插槽组件也可设有插槽件114以及转接插片115,第二插槽组件的插槽件114以及转接插片115的配合方式也可参考前述实施例中第一插槽组件的插槽件114以及转接插片115的配合方式,在此不再赘述。
参见图3至图6。根据本申请的一些实施例,集成式插座110还包括安装在插座本体111上、并用于与储能设备抵接的法兰密封圈116,法兰密封圈116环绕后装插件112。
如此,当将集成式插座110与储能设备连接后,可增加集成式插座110与储能设备的连接处的密封性。此外,由于法兰密封圈116环绕后装插件112,故在集成式插座110与储能设备连接后,还可避免由于后装插件112暴漏在外导致后装插件112易发生损坏。
在一些实施例中,法兰密封圈116还环绕第一插槽组件以及第二插槽组件。如此,在集成式插座110与储能设备连接后,还可避免由于第一插槽组件以及第二插槽组件暴漏在外导致第一插槽组件以及第二插槽组件易发生损坏。
继续参见图3至图6。根据本申请的一些实施例,插座本体111设有环形凹槽26;法兰密封圈116的一部分卡设于环形凹槽26内、另一部分用于与储能设备抵接。
如此,在将法兰密封圈116的一部分卡设于环形凹槽26内后,可增加法兰密封圈116与插座本体111固定时的稳定性,避免插座本体111与法兰密封圈116产生相对移动。
在一些实施例中,法兰密封圈116为弹性密封圈。如:在一实施例中,法兰密封圈116为硅胶圈。
参见图3至图6。根据本申请的一些实施例,集成式插座110还包括与插座本体111通过注塑一体成型、并用于与储能设备固定的多个嵌件螺母117。
此时,插座本体111为塑胶本体。如此,可通过多个嵌件螺母117与储能设备固定,从而将集成式插座110稳定地固定在储能设备上。
参见图1至图11。根据本申请的一些实施例,插座本体111设有第一安装面以及与第一安装面相对设置、并用于安装至储能设备的第二安装面,后装插件112设置在第二安装面上;信号连接器插头120安装在第一安装面。
如此,在将后装插件112与信号连接器插头120组装在插座本体111上时,可在第一安装面上组装信号连接器插头120,并在第二安装面上组装插座本体111,以避免后装插件112与信号连接器插头120在组装过程中相互干涉。在一些实施例中,维修开关130以及电流连接器插头140均设置在第一安装面上;第一插槽组件以及第二插槽组件均设置在第二安装面上。
根据本申请的一些实施例,参见图1至图11,本申请提供了一种储能连接器100,包 括:集成式插座110以及设置在集成式插座110的插座本体111上的信号连接器插头120、维修开关130以及电流连接器插头140。从而在将储能连接器100与储能电池相连后,可将信号线缆与储能连接器100插接以获取储能设备的电压信号和/或温度信号,并利用电缆将其他设备与电流连接器插头140连接后,其他设备即可通过储能连接器100向储能设备充电,或储能设备通过储能连接器100向其他设备供电,且可通过将维修开关130与集成式插座110分离以切断储能设备与其他设备之间的电连接。
最后应说明的是:以上各实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述各实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的范围,其均应涵盖在本申请的权利要求和说明书的范围当中。尤其是,只要不存在结构冲突,各个实施例中所提到的各项技术特征均可以任意方式组合起来。本申请并不局限于文中公开的特定实施例,而是包括落入权利要求的范围内的所有技术方案。

Claims (17)

  1. 一种储能连接器,其特征在于,包括:
    集成式插座,所述集成式插座包括插座本体以及安装在所述插座本体上、并用于与储能设备插接的后装插件;
    信号连接器插头,所述信号连接器插头包括信号插头本体,所述信号插头本体的一端可拆卸地安装在所述插座本体上并与所述后装插件插接、另一端用于与信号线缆插接。
  2. 如权利要求1所述的储能连接器,其特征在于,所述信号连接器插头还包括锁紧挂扣以及插头壳体,所述锁紧挂扣以及所述信号插头本体均固定于所述插头壳体;所述插座本体设有凸伸的环形挡件,所述环形挡件的外壁面设有凸伸的锁紧块;所述信号插头本体的一端沿第一方向插入所述环形挡件内,所述锁紧块与所述锁紧挂扣沿所述第一方向依次设置、并相互抵接,以将所述信号插头本体的一端卡设于所述环形挡件内。
  3. 如权利要求1所述的储能连接器,其特征在于,所述插座本体设有挂槽;所述后装插件的一端可拆卸地安装在所述挂槽内并与所述信号插头本体的一端插接、另一端用于与储能设备插接。
  4. 如权利要求3所述的储能连接器,其特征在于,所述后装插件设有凸伸的挂台;所述挂槽的内壁面设有第一阻挡件;所述后装插件的一端沿所述挂槽的凹陷方向插入所述挂槽内,所述第一阻挡件与所述挂台沿所述挂槽的凹陷方向依次设置、并相互抵接,以将所述后装插件的一端卡设于所述挂槽内,其中,所述挂台可沿其凸伸的相反方向回缩、并与所述第一阻挡件分离。
  5. 如权利要求1所述的储能连接器,其特征在于,还包括:维修开关;
    所述集成式插座还包括安装在所述插座本体上、并用于与储能设备的导电回路电连接的两个第一插槽组件;
    所述维修开关包括开关本体、两个维修插片以及位于两个所述维修插片之间并与两个所述维修插片电连接的连接结构,所述开关本体可拆卸地安装在所述插座本体上,两个所述维修插片以及所述连接结构均固定在所述开关本体上,两个所述维修插片分别与两个所述第一插槽组件中的一者插接。
  6. 如权利要求5所述的储能连接器,其特征在于,所述维修开关还包括与所述开关本体固定的维修把手、以及相对设置在所述维修把手两侧的两个第一滑轨;所述集成式插座还包括固定在所述插座本体上、且相对设置的两个第一转轴,两个所述第一转轴分别可滑动地设置在两个所述第一滑轨中的一者上。
  7. 如权利要求5所述的储能连接器,其特征在于,所述集成式插座还包括与所述第一插槽组件固定的插座扣盖,所述插座扣盖设有凸伸的扣台;所述插座本体设有扣槽,所述扣槽的内壁面设有第二阻挡件;所述第一插槽组件的至少部分以及所述插座扣盖沿所述扣槽的凹陷方向插入所述扣槽内,所述第二阻挡件与所述扣台沿所述扣槽的凹陷方向依次设置、并相互抵接,以将所述第一插槽组件的至少部分以及所述插座扣盖卡设于所述扣槽内。
  8. 如权利要求7所述的储能连接器,其特征在于,所述第一插槽组件包括插槽件以及转接插片,所述插槽件与所述维修插片插接,所述转接插片的一端穿过所述插座扣盖后与所述插槽件插接、另一端用于与储能设备的导电回路电连接;所述插座扣盖设有限位件;所述插槽件以及所述插座扣盖沿所述扣槽的凹陷方向插入所述扣槽内,所述限位件与所述插槽件沿所述扣槽的凹陷方向依次设置、并相互抵接,以将所述插槽件卡设于所述扣槽内。
  9. 如权利要求8所述的储能连接器,其特征在于,所述转接插片包括凸伸的限位边齿;所述插座扣盖设有凸伸的定位弹齿;所述转接插片沿第二方向插入所述插座扣盖,所述定位弹齿与所述限位边齿沿第二方向依次设置、并相互抵接,其中,所述定位弹齿可沿其凸伸的相反方向回缩、并与所述限位边齿分离。
  10. 如权利要求8所述的储能连接器,其特征在于,所述插槽件包括相对设置的两个壁面以及位于两个所述壁面之间的两个弹片,两个所述弹片沿相互靠近的方向凸伸;所述转接插片的一端插入所述两个弹片之间,并使任一所述弹片在与该弹片固定的所述壁面和所述转接插片的挤压下发生弹性形变。
  11. 如权利要求5所述的储能连接器,其特征在于,所述连接结构为熔断器。
  12. 如权利要求1所述的储能连接器,其特征在于,还包括:两个电流连接器插头;
    所述集成式插座还包括安装在所述插座本体上、并用于分别与储能设备的正负极中的一者插接的两个第二插槽组件;
    所述电流连接器插头包括电流插头本体;两个所述电流插头本体中任一者的一端可拆卸地安装在所述插座本体上并与两个所述第二插槽组件中任一者插接、另一端用于与电缆插接。
  13. 如权利要求12所述的储能连接器,其特征在于,所述电流连接器插头还包括与电流插头本体固定的插头把手、以及相对设置在所述插头把手两侧的两个第二滑轨;所述集成式插座还包括固定在所述插座本体上、且相对设置的两个第二转轴,两个所述第二转轴分别可滑动地设置在两个所述第二滑轨中的一者上。
  14. 如权利要求1所述的储能连接器,其特征在于,所述集成式插座还包括安装在所述插座本体上、并用于与储能设备抵接的法兰密封圈,所述法兰密封圈环绕所述后装插件。
  15. 如权利要求14所述的储能连接器,其特征在于,所述插座本体设有环形凹槽;所述法兰密封圈的一部分卡设于所述环形凹槽内、另一部分用于与储能设备抵接。
  16. 如权利要求1所述的储能连接器,其特征在于,所述集成式插座还包括与所述插座本体通过注塑一体成型、并用于与储能设备固定的多个嵌件螺母。
  17. 如权利要求1所述的储能连接器,其特征在于,所述插座本体设有第一安装面以及与所述第一安装面相对设置、并用于安装至储能设备的第二安装面,所述后装插件设置在所述第二安装面上;所述信号连接器插头安装在所述第一安装面。
PCT/CN2022/096909 2021-10-29 2022-06-02 储能连接器 WO2023071195A1 (zh)

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