The present application claims priority to and incorporates by reference the entire contents of Japanese Patent Application No. 2020-136540 filed in Japan on Aug. 13, 2020.
The present invention relates to a connector.
Connectors in which a fitting part of a housing is inserted and fit into a counterpart fitting part have conventionally been known. In this connector, a ring-shaped water stop member is mounted on an outer circumferential wall face of the fitting part, and when the fitting part is inserted and fit into the counterpart fitting part, the water stop member fills a ring-shaped gap between the outer circumferential wall face of the fitting part and an inner circumferential wall face of the counterpart fitting part to inhibit intrusion of liquid such as water therebetween. Japanese Patent Application Laid-open No. 2015-103500 discloses a connector of this kind, for example.
The water stop member is required to be mounted properly with respect to the outer circumferential wall face of the fitting part in order to ensure waterproof performance between the fitting part and the counterpart fitting part.
Given these circumstances, an object of the present invention is to provide a connector enabling a mounted state of a water stop member to be checked.
In order to achieve the above mentioned object, a connector according to one aspect of the present invention includes a terminal metal part mounted on an end of an electric wire; a housing provided with a fitting part housing the terminal metal part inside the fitting part and to be inserted and fit into a counterpart fitting part having an inner circumferential wall face; a front holder causing the fitting part to be inserted along an insertion direction of the fitting part to the counterpart fitting part and keeping a held state of the terminal metal part in the housing; and a ring-shaped water stop member having an inner circumferential face side mounted on a protruding portion of an outer circumferential wall face of the fitting part from the front holder to fill a ring-shaped gap between the protruding portion of the outer circumferential wall face and the inner circumferential wall face of the counterpart fitting part, wherein the water stop member having a locked part protruding inward from the inner circumferential face, the fitting part having a locking part causing the locked part to be inserted and locking the locked part, and one of the fitting part and the front holder having a viewing window part communicating with the locking part and enabling the locked part inserted into the locking part to be visually checked from outside with the front holder mounted on the fitting part.
According to another aspect of the present invention, in the connector, it is possible to configure that the fitting part has an end face on the insertion direction side, a space part communicating with the locking part inside the locking part and causing the locked part inserted into the locking part to enter, and an opening serving as the viewing window part provided in the end face and enabling the locked part having entered the space part to be visually checked from outside.
According to still another aspect of the present invention, in the connector, it is possible to configure that the fitting part has an end face on the insertion direction side, a space part communicating with the locking part inside the locking part and causing the locked part inserted into the locking part to enter, and an opening provided in the end face and enabling the locked part having entered the space part to be visually checked from outside, and the front holder has a tube part causing the fitting part to be inserted and covering an outer circumferential face of an end of the water stop member on the insertion direction side, a facing wall part provided at one end of the tube part on the insertion direction side and placed facing the end face of the fitting part on the insertion direction side, and the viewing window part formed of a through hole provided in the facing wall part, placed facing the opening of the fitting part on the insertion direction side, and enabling the locked part having entered the space part to be visually checked from outside via the opening.
According to still another aspect of the present invention, in the connector, it is possible to configure that the housing has a protruding part protruding toward the insertion direction side from the end face of the fitting part and housing the terminal metal part inside the protruding part, the protruding part is mounted with a locking member locking the terminal metal part as the terminal metal part is housed, and the front holder has a second tube part protruding toward the insertion direction side from the facing wall part at the one end of a first tube part serving as the tube part and causing the protruding part to be inserted together with the locking member.
The above and other objects, features, advantages and technical and industrial significance of this invention will be better understood by reading the following detailed description of presently preferred embodiments of the invention, when considered in connection with the accompanying drawings.
The following describes an embodiment of a connector according to the present invention in detail based on the accompanying drawings. This embodiment does not limit this invention.
The following describes an embodiment of the connector according to the present invention based on
The symbol 1 in
The connector 1 is electrically connected to the counterpart terminal metal parts of a counterpart device 500 to electrically connect this counterpart device 500 and a device (not illustrated) led by electric wires We to each other, for example (
In the following, when an insertion direction is referred to simply without any special reference, the insertion direction indicates an insertion direction of the connector 1 into the counterpart fitting part 521. When a removal direction is referred to simply without any special reference, the removal direction indicates a removal direction of the connector 1 from the counterpart fitting part 521. When an insertion-and-removal direction is referred to simply without any special reference, the insertion-and-removal direction indicates an insertion-and-removal direction of the connector 1 into and from the counterpart fitting part 521.
This connector 1 includes terminal metal parts 10, a housing 20, and a shield shell 30 (
The terminal metal parts 10 are molded of a conductive material such as metal. These terminal metal parts 10 are molded into a certain shape by press molding such as bending and cutting on a metal plate as a matrix, for example. These terminal metal parts 10 are mounted on respective ends of the electric wires We in order to be electrically connected to the electric wires We. These terminal metal parts 10 are electrically connected to the counterpart terminal metal parts. Thus, these terminal metal parts 10 have respective terminal connecting parts 11 to be physically and electrically connected to the respective counterpart terminal metal parts and respective electric wire connecting parts 12 to be physically and electrically connected to the respective ends of the electric wires We (
A terminal connecting part 11 illustrated herein is formed in a piece body shape (
An electric wire connecting part 12 is crimped or welded, for example, to a core of an end of an electric wire We to be physically and electrically connected to this electric wire We. The electric wire connecting part 12 illustrated herein causes two barrel pieces to be swaged to the bare core to be crimped to the core.
This exemplified terminal metal part 10 is molded in a straight shape in which the terminal connecting part 11 and the electric wire connecting part 12 are placed on a straight line. Thus, the electric wire We is drawn out of the electric wire connecting part 12 in an extension direction of the terminal metal part 10 along the straight line. However, in this terminal metal part 10, the terminal connecting part 11 and the electric wire connecting part 12 may be placed crossing each other, such as they are placed orthogonal to each other.
The connector 1 illustrated herein includes three pairs of a combination of the terminal metal part 10 and the electric wire We, which are paired with each other.
The housing 20 is molded of an insulating material such as synthetic resin. This housing 20 houses the terminal metal part 10 and the electric wire We thereinside. In this housing 20, the terminal metal part 10 is held as it is housed, whereas the electric wire We is drawn outside from inside.
This housing 20 has a fitting part 21 housing the terminal metal parts 10 thereinside and to be inserted and fit into the counterpart fitting part 521 (
This fitting part 21 has end faces 21b and 21c at ends on an insertion direction side and ends on an outer circumferential wall face 21a side in a direction orthogonal to the insertion direction and an arrangement direction of the three terminal metal parts 10 (
This housing 20 has a protruding part 22 protruding, between the end faces 21b and 21c of the fitting part 21, toward the insertion direction side from the end faces 21b and 21c (
In this connector 1, a ring-shaped water stop member (what is called an O ring) 41 (
The connector 1 includes a locking member 51 mounted on the protruding part 22 and locking the terminal metal parts 10 as they are housed by this protruding part 22 (
Two at both ends among the three through holes 22b shown in this example cause the housing chambers 22a at both ends to communicate with the outside and, when the locking member 51 is mounted on the protruding part 22, causes the protrusions 51a at both ends having been inserted from outside to enter the inside of the respective housing chambers 22a. The two protrusions 51a are inserted into the respective through holes 11b of the respective terminal connecting parts 11 within the respective housing chambers 22a. The residual, central through hole 22b is inserted into the through hole 11b of the terminal connecting part 11 protruding from the central housing chamber 22a.
With the fitting part 21 inserted and fit into the counterpart fitting part 521, the housing 20 causes its portion on the removal direction side of the fitting part 21 to protrude from the counterpart fitting part 521. This housing 20 has tubular electric wire housing parts 23 housing the respective electric wires We thereinside as protruding portions from the counterpart fitting part 521 on the removal direction side (
In this housing 20, the electric wire We with the terminal metal part 10 is inserted through an opening 23a of an electric wire housing part 23 (
In this connector 1, a rear holder 52 holding the electric wire We while reducing the bending of the electric wire We is mounted on between the opening 23a of the electric wire housing part 23 and the water stop member 43 (
The shield shell 30 covers the electric wire housing parts 23 from outside to inhibit intrusion of noise from outside to the electric wires We thereinside. Thus, this shield shell 30 is molded of a metallic material (aluminum or an aluminum alloy, for example).
This shield shell 30 has a tube part 31 covering the electric wire housing parts 23 from outside and a flange part 32 covering a portion of the tube part 24 closer to the electric wire housing parts 23 from outside (
This connector 1 includes braiding (not illustrated) covering the outer circumferential face of this tube part 31 and the electric wires We drawn outside from respective openings 23a. The braiding is a member braided in a tubular, reticulated shape with a metallic material and inhibits intrusion of noise to the electric wires We drawn outside from the respective openings 23a. This braiding is brought into pressing contact with the outer circumferential face of the tube part 31 using a tubular connecting member 35 (
The connector 1 includes a front holder 60 causing the fitting part 21 and the protruding part 22 of the housing 20 no be inserted thereinto together with the locking member 51 (
This front holder 60 has a tube part (hereinafter, referred to as a “first tube part”) 61 causing the fitting part 21 to be inserted and a tube part (hereinafter, referred to as a “second tube part”) 62 causing the protruding part 22 to be inserted together with the locking member 51 (
The first tube part 61 is formed in a tubular shape concentric with the tubular axis of the fitting part 21 and with a section orthogonal to the tubular axis being oval-shaped. The front holder 60 is held by the fitting part 21 through a holding mechanism 65 provided between this first tube part 61 and the fitting part 21 (
The second tube part 62 protrudes, between the facing wall parts 63a and 63b on one end of the first tube part 61 in the tubular axial direction, toward the insertion direction side from the facing wail parts 63a and 63b. This second tube part 62 houses the terminal connecting parts 11 together with the protruding part 22 thereinside and causes the ends of the terminal connecting parts 11 closer to the through holes 11a to protrude from inside.
In the front holder 60 illustrated herein, an opening on the other end of the first tube part 61 in the tubular axial direction is used as the insertion port 60a. The front holder 60 illustrated herein causes a portion of the fitting part 21 on the removal direction side to protrude from the insertion port 60a. Thus, in this front holder 60, a ring-shaped end face of the first tube part 61 on the insertion port 60a side is placed facing a ring-shaped end face of the tube part 24 of the housing 20 spaced apart therefrom in the insertion-and-removal direction. This connector 1 is formed with a ring-shaped groove with the outer circumferential wall face 21a of the fitting part 21 as a groove bottom between the ring-shaped end face of the first tube part 61 on the insertion port 60a side and the ring-shaped end face of the tube part 24 of the housing 20. This connector 1 is provided with a ring-shaped water stop member 44 in the ring-shaped groove (
The water stop member 44 is molded of an elastically deformable synthetic resin material such as rubber. This water stop member 44 has a tubular base part 44a, a concentric, ring-shaped lip protruding from an inner circumferential face of this base part 44a (hereinafter, referred to as an “inner circumferential lip”) 44b, and a concentric, ring-shaped lip protruding from an outer circumferential face of this base part 44a (hereinafter, referred to as an “outer circumferential lip”) 44c (
An inner circumferential side of this water stop member 44 is mounted on a protruding portion 21a1 of the outer circumferential wall face 21a of the fitting part 21 from the insertion port 60a of the front holder 60 (
In the water stop member 44 illustrated herein, the base part 44a protrudes from the inner circumferential lips 44b and the outer circumferential lips 44c on one side in the tubular axial direction (
This water stop member 44 is positioned on the tubular axis with respect to the fitting part 21 by the housing 20 and the front holder 60. A positioning mechanism in the tubular axial direction (hereinafter, referred to as a “first positioning mechanism”) 45 includes a first locking part 45a using the tube part 24, a second locking part 45b provided in the first tube part 61 of the front holder 60, a first locked part 45c using another end face of the base part 44a in the tubular axial direction, and a second locked part 45d using one end face of the base part 44a in the tubular axial direction, or an end face of the protruding portion 44a1 (
This water stop member 44 includes a positioning mechanism performing positioning in the circumferential direction with respect to the fitting part 21 with the fitting part 21 (hereinafter, referred to as a “second positioning mechanism”) 46 (
A locking part 46a is formed as a groove or a through hole in the outer circumferential wall face 21a of the fitting part 21. This locking part 46a causes a locked part 46b to be inserted thereinto to lock the locked part 46b. The locking part 46a illustrated herein locks the inserted locked part 46b by one inner circumferential wall face and the other inner circumferential wall face in the circumferential direction. However, the inserted locked part 46b may be locked to this locking part 46a in the tubular axial direction of the water stop member 44. The locking part 46a illustrated herein is placed side by side with the locking part 65a of the holding mechanism 65 in the tubular axial direction and communicates with the locking part 65a.
The locked part 46b is formed as a projection part capable of being inserted into the locking part 46a as the groove or the through hole. This locked part 46b protrudes inward from the inner circumferential face of the water stop member 44. The locked part 46b illustrated herein protrudes from an apex of the inner circumferential lips 44b. The locked part 46b illustrated herein is formed in a piece shape having a plane being rectangular and orthogonal to the tubular axial direction.
Such a second positioning mechanism 46 is provided at four places spaced apart from each other in the circumferential direction between the fitting part 21 and the water stop member 44 illustrated herein. In this example, two second positioning mechanisms 46 are provided at each of the ends on the outer circumferential wall face 21a side in the direction orthogonal to the insertion direction and the arrangement direction of the three terminal metal parts 10.
This water stop member 44 varies in the position in the tubular axial direction and the circumferential direction with respect to the fitting part 21 within, the prescribed range in terms of design by the tolerance variations of itself, the housing 20, and the like. Thus, in this connector 1, it is difficult to determine whether the water stop member 44 is mounted on a proper position with respect to the fitting part 21 from its appearance. The water stop member 44 is at a prescribed position in terms of design not only for the position in the circumferential direction with respect to the fitting part 21 but also for the position on the tubular axis with respect to the fitting part 21 when the locked parts 46b are inserted into the respective locking parts 46a. That is to say, if the locked parts 46b are inserted into the respective locking parts 46a, this water stop member 44 is mounted on the proper position with respect to the fitting part 21.
Given these circumstances, in this connector 1, one of the fitting part 21 and the front holder 60 has viewing window parts 70 communicating with the respective locking parts 46a of the second positioning mechanism 46 and enabling the locked parts 46b inserted into the locking parts 46a to be visually checked from outside with the front holder 60 mounted on the fitting part 21 (
At least one viewing window part 70 may be provided in correspondence with combinations of the locking part 46a and the locked part 46b, which are paired with each other (that is, the second positioning mechanism 46). In this example, the second positioning mechanism 46 is provided at the four places, and the viewing window part 70 may be provided in correspondence with at least one place among the second positioning mechanisms 46 at the four places. In the connector 1 illustrated herein, one viewing window part 70 is provided for each of two second positioning mechanisms 46 at one of the ends on the outer circumferential wall face 21a side in the direction orthogonal to the insertion direction and the arrangement direction of the three terminal metal parts 10 (
Specifically, the fitting part 21 has space parts 71 communicating with the respective locking parts 46a inside the locking parts 46a and causing the locked parts 46b inserted into the locking parts 46a to enter (
As described in the foregoing, the front holder 60 illustrated herein has the facing wall parts 63a and 63b placed facing the end faces 21b and 21c, respectively, of the fitting part 21 on the insertion direction side. In the front holder 60, the viewing window parts 70 are provided in at least one of the two facing wall parts 63a and 63b (
As described above, the connector 1 of the present embodiment enables whether the locked part 46b is inserted into the locking part 46a to be visually checked through the viewing window part 70, whereby whether the water stop member 44 is mounted on the proper position with respect to the fitting part 21 can be determined. Thus, this connector 1 can easily perform checking of a mounted state of the water stop member 44 and can thus keep high quality.
The connector according to the present embodiment enables whether the locked part is inserted into the locking part to be checked through the viewing window part, whereby whether the water stop member is mounted on the proper position with respect to the fitting part can be determined. Thus, this connector can easily perform checking of a mounted state of the water stop member and can thus keep high quality.
Although the invention has been described with respect to specific embodiments for a complete and clear disclosure, the appended claims are not to be thus limited but are to be construed as embodying ail modifications and alternative constructions that may occur to one skilled in the art that fairly fall within the basic teaching herein set forth.
Number | Date | Country | Kind |
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2020-136540 | Aug 2020 | JP | national |