WO2015035962A1 - 一种电连接器 - Google Patents

一种电连接器 Download PDF

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Publication number
WO2015035962A1
WO2015035962A1 PCT/CN2014/090303 CN2014090303W WO2015035962A1 WO 2015035962 A1 WO2015035962 A1 WO 2015035962A1 CN 2014090303 W CN2014090303 W CN 2014090303W WO 2015035962 A1 WO2015035962 A1 WO 2015035962A1
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WO
WIPO (PCT)
Prior art keywords
screw
plug
electrical connector
unloading mechanism
housing
Prior art date
Application number
PCT/CN2014/090303
Other languages
English (en)
French (fr)
Inventor
韩造林
胡官文
孟辉
郭黎翔
Original Assignee
北京四方继保自动化股份有限公司
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 北京四方继保自动化股份有限公司 filed Critical 北京四方继保自动化股份有限公司
Priority to US14/917,998 priority Critical patent/US9748676B2/en
Priority to GB1604300.2A priority patent/GB2534494B/en
Publication of WO2015035962A1 publication Critical patent/WO2015035962A1/zh
Priority to PH12016500481A priority patent/PH12016500481B1/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
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/2416Means for guiding or retaining wires or cables connected to terminal blocks
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/28Clamped connections, spring connections
    • H01R4/48Clamped connections, spring connections utilising a spring, clip, or other resilient member
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/16Fastening of connecting parts to base or case; Insulating connecting parts from base or case
    • H01R9/18Fastening by means of screw or nut
    • 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
    • H01R13/74Means for mounting coupling parts in openings of a panel
    • H01R13/748Means for mounting coupling parts in openings of a panel using one or more screws
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/22Bases, e.g. strip, block, panel
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/2491Terminal blocks structurally associated with plugs or sockets

Definitions

  • the invention can be used in the power industry, the electronics industry, the electrical industry and the industrial control industry, and is particularly suitable for the industrial control industry.
  • the electrical connector wiring mode in the prior art is generally a screw connection and a pull-back spring connection;
  • the screw connection has the advantages of being reliable, the disadvantage is that the space is large, the wiring is slow, the efficiency is low, the screw sometimes trips and fails; the pull-back type
  • the spring connection has the advantages of small space and fast wiring.
  • the disadvantage is that special tools are required when unloading the wire.
  • the invention has the advantages of high wiring density, convenient wiring, high efficiency, adopting butterfly spring, anti-vibration, anti-loose, high reliability and conforming to the IEC 60603-2 standard.
  • the invention can be applied in several combinations according to actual needs.
  • An electrical connector comprising a connector body 1, a screw 2, 3;
  • the connector body 1 comprises a housing 4, a multi-position terminal structure 5, a multi-position plug structure 8, a multi-position unloading mechanism 6 and a screw mounting structure 7;
  • the terminal structure 5, the plug-in structure 8, and the unloading mechanism 6 are disposed in the casing 4, wherein the terminal structure 5 and the unloading mechanism 6 are installed at the front opening of the casing 4, and the same position
  • the terminal structure 5 is disposed adjacent to the unloading mechanism 6 on the outer side of the same butterfly spring, and the terminal structure 5 has an opening for receiving the wire, and the inserted wire is caught by the elastic force of the butterfly spring; 6 is set as a button, and the butterfly spring is opened by pressing the unloading mechanism 6, thereby loosening the clamping of the wire of the access terminal structure 5;
  • the plug-in structure 8 is composed of a spring clip, the spring clip is formed with an opening on the back of the housing 4, the spring clip of the same position of the plug-in structure 8 and the butterfly spring on the side of the same-position structure
  • the spring clip of the plug-in structure 8 has a guiding and rounded-free structure for facilitating insertion and removal, and the plug-in structure (8) is used for inserting an electrical connection of the terminal;
  • the screw mounting structure 7 is disposed at both ends of the housing 4 and has a screw hole that cooperates with the screws 2, 3.
  • the screw mounting structure 7 can be integrated with the housing 4, or can be formed separately. Separate parts are mounted on the housing 4.
  • the housing of the connector body is generally made of a non-metallic material such as plastic, and has the advantages of good processing performance, mechanical properties, electrical insulation properties, and the like.
  • the wiring structure is generally made of metal material, used for accessing the wire, and adopts a butterfly spring structure. According to the material selection and use conditions, heat treatment, surface treatment, or heat treatment and surface treatment may be omitted.
  • the plug-in structure is generally made of a metal material, and the same plug-in structure and the same-position wiring structure are electrically conductive. To reduce the complexity and cost of the electrical connector, generally the wiring structure is made one. The part is mounted in the housing of the connector body.
  • the non-shedding screw is generally made of a metal material, and may be subjected to heat treatment, surface treatment, or heat treatment or surface treatment depending on the material selection and use conditions.
  • the invention has the advantages of high wiring density, convenient wiring, high efficiency, adopting butterfly spring, anti-vibration, anti-loose, high reliability and conforming to the IEC 60603-2 standard.
  • Figure 1 is a schematic view of an electrical connector of the present invention
  • FIG. 2 is a schematic view of the connector body of the present invention
  • FIG 3 is a schematic view of the connector body of the present invention (the side opposite to Figure 2);
  • Figure 4 is a schematic view of the non-shedding screw used in the present invention.
  • Figure 5 is a schematic view of an electrical connector fixed using a common screw
  • Figure 6 is a schematic view of an electrical connector that is not suitable for screw fixing
  • Figure 7 is a schematic external view of the electrical connector of the present invention.
  • Figure 8 is a schematic cross-sectional view of the electrical connector of the present invention.
  • an electrical connector disclosed in the present invention includes a connector body 1 that does not fall off the screws 2, 3.
  • the connector body 1 has screw mounting structures 7 at both ends, and the non-shedding screws 2, 3 respectively fix the connectors to the matching other electrical connectors through the screw mounting structures 7 at both ends.
  • the housing of the connector body 1 is generally made of a non-metallic material such as plastic, and has the advantages of good processing performance, mechanical properties, electrical insulation properties and the like.
  • the screw mounting structure 7 is a sheet-like portion protruding from the body 1.
  • the sheet-shaped portions are respectively provided with screw holes that cooperate with the non-shedding screws 2, 3, and can pass through the non-shedding screws 2, 3 passing through the screw holes.
  • the electrical connector is mounted and fixed in the position where it needs to be installed.
  • the screw mounting structure 7 may be integral with the housing 4 or may be separately formed as a separate component and mounted on the housing 4.
  • the connector body 1 comprises a housing 4 in which a terminal structure 5 is mounted (in the present application)
  • a total of 32 bits are preferred, and other numbers may be used according to actual needs.
  • the plug bit structure 8 (in the embodiment of the present application, preferably 32 bits in total, and other numbers may be used according to actual needs), and the unloading mechanism. 6 (in the embodiment of the present application, a total of 32 positions are preferred, and other numbers may be used according to actual needs), and both ends of the casing 4 are provided with non-shedding screw mounting structures 7 (two places).
  • the plug bit structure 8 (32 bits in total) allows the connector to have a cross-sectional dimension of 1 mm x 1 mm.
  • the terminal structure 5 is 32 bits and the wire unloading mechanism 6 is also 32 bits. It will be apparent to those skilled in the art that the provision of a 32-bit wiring structure and a wire unloading mechanism is only a preferred embodiment, and is not a limitation of the invention, and those skilled in the art can select a suitable number of terminal structure and wire unloading mechanism as needed.
  • the plug-in position structure 8 is attached to the back surface of the connector housing 4.
  • the plug bit structure 8 is 32 bits. It will be apparent to those skilled in the art that the provision of a 32-bit plug-in bit structure is merely a preferred embodiment, and is not a limitation of the present invention, and those skilled in the art can select an appropriate number of plug-in bit structures as needed.
  • Fig. 8 shows the positional relationship between the terminal structure 5, the plug bit structure 8, and the unloading mechanism 6.
  • the terminal structure 5 adopts a butterfly spring structure, and the same terminal structure 5 and the same position of the socket structure 8 are electrically connected and integrated.
  • the terminal structure 5 and the unloading mechanism 6 are installed at the front opening of the casing 4, and the same position of the terminal structure 5 and the unloading mechanism 6 are disposed outside the same butterfly spring, and the terminal structure 5 has The opening for accommodating the wire is inserted by the elastic force of the butterfly spring; the unloading mechanism 6 is set as a button, and the butterfly spring is opened by pressing the unloading mechanism 6, thereby releasing the access Clamping of the wires of the terminal structure 5.
  • the plug-in structure 8 forms a spring clip by using two elastic contact pieces, and the elastic contact piece has an arc shape.
  • the two contact pieces can be tightly pressed at a point under the action of the elastic force, and the opening formed by the spring clip is located.
  • the back side of the housing 4, the plug-in position structure 8 has a guide and rounded-out structure that facilitates insertion and removal, and the pins of the other terminals are easily inserted and removed.
  • the unloading mechanism 6 is generally made of a non-metal such as plastic.
  • the terminal structure 5 is generally made of a metal material, and may be subjected to heat treatment, surface treatment, or heat treatment or surface treatment depending on material selection and use conditions;
  • the plug structure 8 is generally made of a metal material, and the same position is inserted.
  • the bit structure 5 is electrically conductive with the same position of the terminal structure 8, and in order to reduce the complexity and cost of the electrical connector, it is generally made into a part with the terminal structure 5 and mounted on the housing of the connector body 1. 4 inside.
  • the wiring spacing between the terminal structure 5 and the plug-in structure 8 is at least 5.08 mm.
  • the non-shedding screw includes a guiding structure 9, a threaded structure 10, an anti-drop structure 11, and a wrenching structure 12.
  • the lower end portion of the non-shedding screw is a guiding structure 9 and functions as a guide by chamfering.
  • the upper portion of the guiding structure 9 abuts the threaded structure 10 of the screw, and the diameter of the portion of the threaded structure 10 is larger than the diameter of the shaft of the guiding structure 9 and the anti-drop structure 11 , and the thread is disposed outside the threaded structure 10 , the thread and the connector
  • the threads or similar structures in the body 1 screw mounting structure 7 cooperate.
  • the upper portion of the threaded structure 10 abuts the anti-drop structure 11 , the diameter of the shaft of the anti-drop structure 11 is smaller than the diameter of the thread structure 10 , and the upper portion of the anti-drop structure 11 is a wrenching structure 12 , and the wrench structure 12 is disposed on the non-shedding screw
  • the upper end portion of the wrenching structure 12 is connected to the upper portion of the anti-drop structure 11, and the upper surface of the wrenching structure 12 is provided with a "+" slot or a "one” slot for the screwdriver to screw the screw.
  • the non-shedding screws 2, 3 are generally made of a metal material, and may be subjected to heat treatment, surface treatment, or heat treatment or surface treatment depending on material selection and use conditions.
  • the outer dimensions of the present invention are made 94.6 mm x 15 mm or 94.6 mm x 13 mm.
  • non-shedding screws 2, 3 are mounted in corresponding holes at both ends of the connector body 1 for fixing the electrical connector of the present invention with other matching electrical connectors; the non-shedding screws 2 3 is a structure that does not fall off.
  • the non-shedding screws 2, 3 mentioned in the present invention are not mounted on both ends of the connector body 1, and the electrical connectors of the present invention are matched with other electrical connectors matched with other screws 13, 14. fixed.
  • the electrical connector of the present invention can be flexibly changed as needed.

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  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Connections By Means Of Piercing Elements, Nuts, Or Screws (AREA)

Abstract

一种电连接器,包括连接器本体(1)、和螺钉(2、3),连接器本体包括壳体(4)、接线位结构(5)、插接位结构(8)、和卸线结构(6)。螺钉优选使用不脱落螺钉,包括导向结构(9)、螺纹结构(10)、防脱落结构(11)、扳拧结构(12)。本电连接器具有接线密度高、接线方便、效率高、防振、防松,可靠性高、符合IEC60603-2标准等优点。

Description

一种电连接器 技术领域
本发明可用于电力行业、电子行业、电器行业和工业控制行业,尤其适宜于工业控制行业。
背景技术
现有技术中的电连接器接线方式一般为螺钉连接、回拉式弹簧连接;螺钉连接优点是可靠,缺点是占用空间大,接线慢、效率低,螺钉有时候脱扣、失效;回拉式弹簧连接,优点是占用空间小、接线快,缺点是卸线时需要专用工具。
发明内容
本发明的目的在于避免上述现有技术中的不足之处,提供一种新型的电连接器。本发明具有:接线密度高、接线方便,效率高、采用蝶形弹簧,防振、防松,可靠性高、符合IEC 60603-2标准等优点。本发明可以根据实际需要,进行几种组合应用。
本发明的技术方案是:
一种电连接器,包括连接器本体1、螺钉2、3;其特征在于:
连接器本体1包括壳体4、多位接线位结构5、多位插接位结构8、多位卸线机构6和螺钉安装结构7;
所述接线位结构5、插接位结构8、卸线机构6设置在壳体4中,其中所所述接线位结构5和卸线机构6安装在壳体4的正面开口部,相同位的接线位结构5与卸线机构6相邻设置在同一个蝶形弹簧外侧,接线位结构5具有容纳导线接入的开孔,通过蝶形弹簧的弹力将接入的导线卡住;卸线机构6设置成一个按钮,通过按压卸线机构6将蝶形弹簧顶开,从而松开对接入接线位结构5的导线的夹紧;
插接位结构8由一个弹簧夹组成,该弹簧夹形成的开孔位于所述壳体4的背面,相同位的插接位结构8的弹簧夹与相同位接线位结构一侧的蝶形弹簧做成一体,插接位结构8的弹簧夹具有有利于插拔的导向和圆角无障碍结构,所述插接位结构(8)用于接线端子的插针插入电连接;
所述螺钉安装结构7设置在壳体4的两端部,具有与螺钉2、3相配合的螺孔,所述螺钉安装结构7可以与壳体4做成一体的,也可以单独做成一个独立的零件,安装在壳体4上。
连接器本体的壳体一般采用非金属材料如塑料制造,具有良好的加工性能、机械性能、电气绝缘性能等优点。接线位结构一般采用金属材料制造,用于接入导线,采用蝶形弹簧结构,根据材料选用和使用条件等情况,可以进行热处理、表面处理,也可以不进行热处理、表面处理。插接位结构一般采用金属材料制造,同一位插接位结构与相同位的接线位结构在电气上是导通的,为降低电连接器的复杂性和成本,一般与接线位结构做成一个零件并安装在连接器本体的壳体内。
不脱落螺钉一般采用金属材料制造,根据材料选用和使用条件等情况,可以进行热处理、表面处理,也可以不进行热处理、表面处理。
具体使用时可以根据需要灵活多变。
本发明具有接线密度高、接线方便,效率高、采用蝶形弹簧,防振、防松,可靠性高、符合IEC 60603-2标准等优点。
附图说明:
图1为本发明电连接器示意图;
图2为本发明连接器本体示意图之一;
图3为本发明连接器本体示意图之二(与附图2相反一侧示意图);
图4为本发明使用的不脱落螺钉示意图;
图5为使用普通螺钉固定的电连接器示意图;
图6为不适用螺钉固定的电连接器示意图;
图7为本发明电连接器外形示意图;
图8为本发明电连接器剖面示意图。
具体实施方式:
下面结合说明书附图对本发明的技术方案作进一步详细说明。
如附图1,本发明公开的一种电连接器,包括连接器本体1,不脱落螺钉2、3。所述连接器本体1两端具有螺钉安装结构7,不脱落螺钉2、3分别通过两端的螺钉安装结构7将连接器与相匹配的其它电连接器固定。连接器本体1的壳体一般采用非金属材料如塑料制造,具有良好的加工性能、机械性能、电气绝缘性能等优点。
所述螺钉安装结构7为本体1突出的片状部分,所述片状部分分别开设有与不脱落螺钉2、3相配合的螺钉孔,可以通过穿过螺钉孔的不脱落螺钉2、3将电连接器安装固定在需要安装的位置。所述螺钉安装结构7可以与壳体4做成一体的,也可以单独做成一个独立的零件,安装在壳体4上。
如附图2、3、8,连接器本体1包括壳体4,壳体4内安装有接线位结构5(在本申请 实施例中优选共32位,根据实际需要也可以为其它数量位)、插接位结构8(在本申请实施例中优选共32位,根据实际需要也可以为其它数量位)、卸线机构6(在本申请实施例中优选共32位,根据实际需要也可以为其它数量位),壳体4的两端部设置有不脱落螺钉安装结构7(2处)。插接位结构8(共32位)允许接插针的截面尺寸为1mm×1mm。
如图2所示为连接器本体1正面示意图,连接器壳体4正面和背面均呈开口状,在所述壳体4的正面开口安装接线位结构5和卸线机构6。在本申请的一个实施例中,接线位结构5为32位,卸线机构6也为32位。本领域技术人员清楚,设置32位接线位结构和卸线机构只是一种优选实施例,而不是对发明的限制,本领域技术人员可以根据需要选择合适数量的接线位结构和卸线机构。
如图3所示为连接器本体1的背面结构,在连接器壳体4的背面开口安装有插接位结构8。在本申请的一个实施例中,插接位结构8为32位。本领域技术人员清楚,设置32位插接位结构只是一种优选实施例,而不是对本发明的限制,本领域技术人员可以根据需要选择合适数量的插接位结构。
图8表达了接线位结构5、插接位结构8、卸线机构6之间的位置关系。接线位结构5采用蝶形弹簧结构,同一位接线位结构5与相同位的插接位结构8在电气上是导通的,并做成了一体。所所述接线位结构5和卸线机构6安装在壳体4的正面开口部,相同位的接线位结构5与卸线机构6相邻设置在同一个蝶形弹簧外侧,接线位结构5具有容纳导线接入的开孔,通过蝶形弹簧的弹力将接入的导线卡住;卸线机构6设置成一个按钮,通过按压卸线机构6将蝶形弹簧顶开,从而松开对接入接线位结构5的导线的夹紧。
插接位结构8采用两片具有弹性的接触片形成弹簧夹,所述弹性接触片呈弧形,两接触片在自身弹力作用下,能够在一点紧密抵压,该弹簧夹形成的开孔位于所述壳体4的背面,插接位结构8由于具有有利于插拔的导向和圆角无障碍结构,其它端子的插针很容易插入和拔出。
卸线机构6一般采用非金属如塑料制造。接线位结构5一般采用金属材料制造,根据材料选用和使用条件等情况,可以进行热处理、表面处理,也可以不进行热处理、表面处理;插接位结构8一般采用金属材料制造,同一位插接位结构5与相同位的接线位结构8在电气上是导通的,为降低电连接器的复杂性和成本,一般与接线位结构5做成一个零件并安装在连接器本体1的壳体4内。接线位结构5与插接位结构8接线间距最小为5.08mm。
当接线时,硬导线或带有冷压头的多股导线直接插入接线位结构5的孔中,由于蝶形弹簧的弹力将导线卡住、又由于蝶形弹簧断口的尖角作用,使得插入的导线不会自己脱落,需要一定的拉拔力才能将导线扯下。当需要卸下导线时,只需用一字头改锥轻按卸线机构6,卸线机构6就将蝶形弹簧顶开,蝶形弹簧就松开了对导线的夹紧,导线就可以轻松卸 下。
如附图4,不脱落螺钉包括导向结构9、螺纹结构10、防脱落结构11、扳拧结构12。所述不脱落螺钉下端部为导向结构9,通过倒角,起到导向的作用。所述导向结构9的上部邻接螺钉的螺纹结构10,所述螺纹结构10部分轴的直径大于导向结构9和防脱落结构11轴的直径,在螺纹结构10的外部设置螺纹,该螺纹与连接器本体1螺钉安装结构7内的螺纹或类似结构相配合。螺纹结构10的上部邻接防脱落结构11,防脱落结构11轴的直径比螺纹结构10的直径小,防脱落结构11的上部为扳拧结构12,该扳拧结构12设置在所述不脱落螺钉的上端部,扳拧结构12的下部连接防脱落结构11的上部,扳拧结构12的上部表面设置有”+”字槽或“一”字槽,用于改锥扳拧螺钉。
在图1中,不脱落螺钉2、3一般采用金属材料制造,根据材料选用和使用条件等情况,可以进行热处理、表面处理,也可以不进行热处理、表面处理。
如附图7,本发明的外形尺寸做成94.6mm×15mm或94.6mm×13mm。
具体使用时可以分如下几种情况:
1.如附图1,在连接器本体1的两端相应孔中安装不脱落螺钉2、3,用于将本发明的电连接器与相匹配的其它电连接器固定;该不脱落螺钉2、3为不脱落的结构。
2.如附图5,在连接器本体1的两端不安装本发明提到的不脱落螺钉2、3,用其它螺钉13、14将本发明的电连接器与相匹配的其它电连接器固定。
3.如附图6,在连接器本体1的两端不安装任何螺钉,而将本发明的电连接器与相匹配的其它电连接器直接插接,用其它方式固定。
本发明的电连接器,使用情况可以根据需要灵活多变。

Claims (5)

  1. 一种电连接器,包括连接器本体(1)、螺钉(2、3);其特征在于:
    连接器本体(1)包括壳体(4)、多位接线位结构(5)、多位插接位结构(8)、多位卸线机构(6)和螺钉安装结构(7);
    所述接线位结构(5)、插接位结构(8)、卸线机构(6)设置在壳体(4)中,其中所所述接线位结构(5)和卸线机构(6)安装在壳体(4)的正面开口部,相同位的接线位结构(5)与卸线机构(6)相邻设置在同一个蝶形弹簧外侧,接线位结构(5)具有容纳导线接入的开孔,通过蝶形弹簧的弹力将接入的导线卡住;卸线机构(6)设置成一个按钮,通过按压卸线机构(6)将蝶形弹簧顶开,从而松开对接入接线位结构(5)的导线的夹紧;
    插接位结构(8)由一个弹簧夹组成,该弹簧夹形成的开孔位于所述壳体(4)的背面,相同位的插接位结构(8)的弹簧夹与相同位接线位结构一侧的蝶形弹簧做成一体,插接位结构(8)的弹簧夹具有有利于插拔的导向和圆角无障碍结构,所述插接位结构(8)用于接线端子的插针插入电连接;
    所述螺钉安装结构(7)设置在壳体(4)的两端部,具有与螺钉(2、3)相配合的螺孔,所述螺钉安装结构(7)可以与壳体(4)做成一体的,也可以单独做成一个独立的零件,安装在壳体(4)上。
  2. 根据权利要求1所述的电连接器,其特征在于:
    所述螺钉(2、3)采用不脱落螺钉,所述不脱落螺钉包括导向结构(9)、螺纹结构(10)、防脱落结构(11)、扳拧结构(12);
    所述不脱落螺钉下端部为导向结构(9),具有倒角或倒圆;
    导向结构(9)的上部邻接螺钉的螺纹结构(10),所述螺纹结构(10)部分轴的直径大于导向结构(9)和防脱落结构(11)轴的直径,在螺纹结构(10)的外部设置螺纹,该螺纹与连接器本体(1)螺钉安装结构(7)内的螺纹相配合;
    螺纹结构(10)的上部邻接防脱落结构(11),防脱落结构(11)轴的直径比螺纹结构(10)的直径小;
    防脱落结构(11)的上部为扳拧结构(12),该扳拧结构(12)设置在所述不脱落螺钉的上端部,扳拧结构(12)的下部连接防脱落结构(11)的上部,扳拧结构(12)的上部表面设置有“+”字槽,也可以设置“一”字槽,用于改锥扳拧螺钉。
  3. 根据权利要求1所述的电连接器,其特征在于:所述的电连接器也可以只包括连接器本体(1)。
  4. 根据权利要求1或2所述的电连接器,其特征在于:所述接线位结构(5)、插接位结构(8)、卸线机构(6)均为32位。
  5. 权利要求4所述的电连接器,其特征在于:相同位插接位结构(8)与相同位的接线位结构(6)在电气上是导通的。
PCT/CN2014/090303 2013-09-11 2014-11-05 一种电连接器 WO2015035962A1 (zh)

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