The present invention relates to a connector.
In a connector, in a case where a terminal fitting is not placed at a predetermined position in design with respect to a mating terminal fitting, there is a possibility that a quality in electrical connection between the terminal fitting and the mating terminal fitting cannot be ensured or an overload is generated between a component and a mating component thereof. Therefore, in a connector according to the related art, a physical positional relationship between the terminal fitting and the mating terminal fitting may be adjustable. For example, Japanese Patent Application Laid-open No. 2011-34825 discloses a connector having a function of aligning a terminal fitting by accommodating the terminal fitting in such a way that the terminal fitting is relatively movable with respect to a housing.
However, in the connector according to the related art, in a case where axial center misalignment occurs between a housing and a mating fitting portion to which the housing is to be fitted, even when the terminal fitting can be aligned with respect to the housing, there is a possibility that the terminal fitting cannot be appropriately aligned with respect to the mating terminal fitting.
Therefore, an object of the present invention is to provide a connector capable of appropriately aligning a terminal fitting.
To achieve the above object, a connector according to one aspect of the present invention includes a terminal fitting that is physically and electrically connected to a mating terminal fitting arranged in a mating fitting space; a housing that includes a fitting wall fitted into the mating fitting space through an insertion port in a housing insertion direction, and a terminal accommodating section that accommodates the terminal fitting in a terminal accommodating chamber in the terminal accommodating section and is inserted into the mating fitting space together with the fitting wall; and an annular or tubular elastically deformable sealing member that fills an annular or tubular gap between an outer peripheral surface of the fitting wall and an inner peripheral surface of the mating fitting space in a circumferential direction at a fitting completion position of the fitting wall and the mating fitting space where positions of axial centers of the fitting wall and the mating fitting space are aligned with each other, wherein the housing includes an abutted section that abuts on an abutting section on a side of the inner peripheral surface of the mating fitting space at the fitting completion position, and the abutted section is provided at each of at least three locations together with the abutting section that forms a pair with the abutted section, and is formed in such a way that a distance from the axial center of the fitting wall to a contact position between the abutted section and the abutting section is the same as a distance from the axial center of the mating fitting space to the contact position.
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.
Hereinafter, an embodiment of a connector according to the present invention will be described in detail with reference to the drawings. Note that the present invention is not limited by the embodiment.
One embodiment of a connector according to the present invention will be described with reference to
Reference Sign 1 in
The connector 1 includes a terminal fitting 10, a housing 20, a shield shell 30, and a retaining member 40 (
The terminal fitting 10 is formed of a conductive material such as a metal. For example, the terminal fitting 10 is formed in a predetermined shape by press molding such as bending or cutting of a metal plate as a base material. The terminal fitting 10 is attached to the end of the electric wire We in such a way as to be electrically connected to the electric wire We. Further, the terminal fitting 10 is physically and electrically connected to the mating terminal fitting 510 arranged in the mating fitting space 500b. Therefore, the terminal fitting 10 includes a terminal connection section 11 physically and electrically connected to the mating terminal fitting 510 and an electric wire connection section 12 physically and electrically connected to the end of the electric wire We (
For example, the terminal connection section 11 may be fitted and connected to the mating terminal connection section 511 of the mating terminal fitting 510, or may be screwed and fixed to the mating terminal connection section 511. The terminal connection section 11 according to the present embodiment is formed to be fitted and connected to the mating terminal connection section 511. Therefore, one of the terminal connection section 11 and the mating terminal connection section 511 is formed in a female terminal shape, and the other is formed in a male terminal shape.
The terminal connection section 11 illustrated here is formed in a tubular female terminal shape, and the mating terminal connection section 511 is inserted into the terminal connection section 11 (
Further, an integrated or separate elastic contact section 13a is provided in the terminal connection section 11 illustrated here (
The electric wire connection section 12 is physically and electrically connected to the electric wire We by, for example, being crimped or welded to a core wire of the end of the electric wire We. The electric wire connection section 12 illustrated here is crimped to the core wire by caulking and connecting two barrel pieces to the bare core wire.
The terminal fitting 10 in this example is formed as a straight terminal fitting in which the terminal connection section 11 and the electric wire connection section 12 are arranged on a straight line. Therefore, the electric wire We is led out from the electric wire connection section 12 in an extending direction of the terminal fitting 10 along the straight line. However, in the terminal fitting 10, the terminal connection section 11 and the electric wire connection section 12 may be arranged in such a way as to intersect each other, for example, by orthogonally arranging the terminal connection section 11 and the electric wire connection section 12.
The connector 1 illustrated here includes three pairs of combinations of the terminal fittings 10 and the electric wires We.
The housing 20 is formed of an insulating material such as a synthetic resin. The housing 20 accommodates the terminal fitting 10 and the electric wire We at the accommodation completion position inside of the housing 20. Then, in the housing 20, the terminal fitting 10 is held in an accommodated state at the accommodation completion position, and the electric wire We is led out from the inside to the outside.
The housing 20 includes a fitting wall 21 fitted into the mating fitting space 500b through an insertion port 500c in the housing insertion direction (
In addition, the housing 20 includes a terminal accommodating section 22 that accommodates the terminal fitting 10 in a terminal accommodating chamber 20a in the terminal accommodating section 22 (
In the connector 1, in order to generate the contact pressure between the contact point and the mating terminal connection section 511 accompanying the elastic deformation of the elastic contact section 13a without excess or deficiency, the terminal fitting 10 is accommodated in the terminal accommodating chamber 20a in such a way as to be relatively movable with respect to the mating terminal connection section 511 in a contact pressure acting direction. That is, the connector 1 has a function of aligning the terminal fitting 10 in the contact pressure acting direction. Therefore, the terminal accommodating chamber 20a is formed in an indoor space in which the terminal fitting 10 can relatively move in an alignment direction orthogonal to the terminal insertion direction. Therefore, the terminal accommodating chamber 20a is formed in such a way that the terminal fitting 10 can be arranged while being spaced apart from each of a first wall body 22a and a second wall body 22b of the terminal accommodating section 22 (
The first wall body 22a and the second wall body 22b are wall bodies forming the terminal accommodating chamber 20a in the terminal accommodating section 22, and are arranged to face each other while being spaced apart from each other in the alignment direction. In addition, in the terminal accommodating chamber 20a, the size of the gap between the first wall body 22a and the terminal fitting 10 and the size of the gap between the second wall body 22b and the terminal fitting 10 are set in such a way that a relative movement amount of the terminal fitting 10 with respect to the mating terminal connection section 511 that can generate a contact pressure between the contact point of the elastic contact section 13a and the mating terminal connection section 511 without excess or deficiency can be secured.
The terminal accommodating section 22 illustrated here is formed in a rectangular tubular shape, and the rectangular tubular terminal connection section 11 is accommodated in the terminal accommodating chamber 20a inside the terminal accommodating section 22. In the terminal accommodating section 22 illustrated here, one of two pairs of wall bodies arranged to face each other while being spaced apart from each other is the first wall body 22a and the second wall body 22b. In the terminal accommodating chamber 20a, one wall body of the terminal connection section 11 is arranged to face the first wall body 22a, and another wall body of the terminal connection section 11 arranged to face the one wall body of the terminal connection section 11 while being spaced apart from the one wall body is arranged to face the second wall body 22b. Further, in the terminal accommodating section 22 illustrated here, the mating terminal connection section 511 is inserted into the terminal accommodating chamber 20a through one opening in the tube axis direction, and the mating terminal connection section 511 is inserted into the terminal connection section 11 in the terminal accommodating chamber 20a.
The housing 20 includes the terminal accommodating section 22 for each terminal fitting 10. In the housing 20, the respective terminal accommodating sections 22 are arranged at an interval in a direction orthogonal to the terminal insertion direction and the alignment direction. The housing 20 includes a cylindrical hood section 23 that is arranged more toward the housing insertion direction than the fitting wall 21 is and covers a protruding portion of each terminal accommodating section 22 from the fitting wall 21 from the outside while being spaced apart from the protruding portion (
In the housing 20, a cylindrical electric wire accommodating section 24 in which the electric wire We is accommodated and from which the electric wire We is led out is provided for each electric wire We (
Then, in the connector 1 illustrated here, the hood section 23 has an outer peripheral surface having a similar shape larger than the outer peripheral surface 21a of the fitting wall 21. The connector 1 includes an annular or tubular elastically deformable sealing member (hereinafter, referred to as a “second sealing member”) 52 that fills an annular or tubular gap between the outer peripheral surface 21a of the fitting wall 21 and an inner peripheral surface 500b1 of the mating fitting space 500b in a circumferential direction at a fitting completion position of the fitting wall 21 and the mating fitting space 500b where the positions of the axial centers P are aligned (
In the second sealing member 52, the inner peripheral lip 52a is brought into close contact with the outer peripheral surface 21a of the fitting wall 21 in a state of being crushed in an oval shape similar to that of the outer peripheral surface 21a of the fitting wall 21. Then, in the second sealing member 52, the outer peripheral lip 52b is brought into close contact with the inner peripheral surface 500b1 of the mating fitting space 500b in a state of being crushed in an oval shape similar to that of the inner peripheral surface 500b1 of the mating fitting space 500b at the fitting completion position. Accordingly, the second sealing member 52 can exert an equal waterproof effect at each position in the circumferential direction. Further, since the second sealing member 52 can align the positions of the respective axial centers P of the fitting wall 21 and the mating fitting space 500b, the terminal connection section 11 of the terminal fitting 10 can be appropriately aligned with respect to the mating terminal connection section 511 of the mating terminal fitting 510.
However, in the connector 1, a tolerance is set for each component, and positional deviation between the components within the tolerance is allowed. Therefore, in the connector 1, the crush amount of the inner peripheral lip 52a or the outer peripheral lip 52b at the fitting completion position at each position in the circumferential direction varies, and the position of the axial center P of the fitting wall 21 may deviate from the position of the axial center P of the mating fitting space 500b. That is, in this state, there is a possibility that the connector 1 deteriorates the function of aligning the terminal fitting 10. Therefore, in the connector 1, the housing 20 is formed as follows to suppress deterioration of the function of aligning the terminal fitting 10.
The housing 20 includes an abutted section 25 that abuts on an abutting section 500d1 on the inner peripheral surface 500b1 side of the mating fitting space 500b at the fitting completion position (
The abutting section 500d1 illustrated here is provided on an annular tapered surface 500d at a peripheral edge of the insertion port 500c of the mating fitting space 500b (
The shield shell 30 covers each electric wire accommodating section 24 from the outside, thereby suppressing intrusion of noise from the outside into the electric wire We in the electric wire accommodating section 24. Therefore, the shield shell 30 is formed of a metal material (for example, aluminum or an aluminum alloy).
The shield shell 30 includes an oval cylindrical section 31 that covers each electric wire accommodating section 24 from the outside (
An oval annular flange section 32 is connected to the cylindrical section 31 (
The retaining member 40 is formed of an insulating material such as a synthetic resin. The retaining member 40 is mounted on the terminal accommodating section 22. The retaining member 40 suppresses positional deviation of the terminal fitting 10 toward the electric wire outlet 24a and prevents the terminal fitting 10 from coming off from the electric wire outlet 24a at a mounting completion position. That is, the retaining member 40 blocks movement of the terminal fitting 10 with respect to the terminal accommodating section 22 in a terminal removal direction opposite to the terminal insertion direction at the mounting completion position, and holds the terminal fitting 10 in the terminal accommodating chamber 20a. The retaining member 40 may be provided for each terminal fitting 10, may be provided for a plurality of terminal fittings 10, or may be intended for retaining all the terminal fittings 10. Here, one retaining member 40 is provided for each terminal fitting 10.
The retaining member 40 is held by the terminal accommodating section 22 at the mounting completion position with respect to the terminal accommodating section 22. Therefore, a held section 41A held by the terminal accommodating section 22 is provided in the retaining member 40 (
In the terminal accommodating section 22 illustrated here, the first wall body 22a includes the retainer insertion hole 22c (
The retainer insertion hole 22c is covered by the hood section 23 from the outside. Therefore, in the housing 20, a through-hole 23a is provided at a position facing the retainer insertion hole 22c in the hood section 23, and the retaining member 40 is inserted into the retainer insertion hole 22c through the through-hole 23a (
In the terminal accommodating section 22 illustrated here, the second wall body 22b includes a retainer inserting hole 22f through which the held section 41A of the retaining member 40 is inserted from the terminal accommodating chamber 20a to the outside (
Furthermore, in the connector 1 illustrated here, in addition to a combination of the held section 41A and the retainer holding section 22d, another combination of a held section 41B and a retainer holding section 22g is provided (
Furthermore, in the connector 1 illustrated here, two sets of combinations of the one held sections 41A and the retainer holding sections 22d are provided (
The retaining member 40 blocks movement of the terminal fitting 10 with respect to the terminal accommodating section 22 in the terminal removal direction at the mounting completion position with respect to the terminal accommodating section 22. Therefore, the retaining member 40 includes a terminal locking section 43 that is arranged to face the terminal fitting 10 in the terminal removal direction at the mounting completion position with respect to the terminal accommodating section 22 and blocks movement of the terminal fitting 10 in the terminal removal direction (
The retainer accommodating section 15 illustrated here is formed in the side walls 11a and 11b of the terminal connection section 11 in a direction orthogonal to the terminal insertion direction and the alignment direction by cutting the side walls 11a and 11b (
Specifically, the retaining member 40 illustrated here includes a first shaft section 44A and a second shaft section 44B that are arranged to face each other while being spaced apart from each other in the terminal insertion direction and have a shaft shape extending in a direction orthogonal to the terminal insertion direction and the alignment direction (
Here, the first shaft section 44A is arranged on the terminal insertion direction side, and the second shaft section 44B is arranged on the terminal removal direction side. In the retaining member 40, the second shaft section 44B held by both the first piece section 45A and the second piece section 45B has flexibility and is thus capable of being bent in, for example, the terminal insertion direction and the terminal removal direction. In the retaining member 40, the first shaft section 44A and the second shaft section 44B are arranged in the retainer insertion hole 22c at the mounting completion position with respect to the terminal accommodating section 22. Therefore, the retainer insertion hole 22c is formed in a shape and size in which the first shaft section 44A and the second shaft section 44B can be arranged.
In the retaining member 40, end portions of the first piece section 45A and the second piece section 45B in the terminal insertion direction are used as the terminal locking section 43 (
In addition, the retaining member 40 illustrated here includes a shaft-like cantilevered first flexible section 46A extending from the first piece section 45A in the retainer insertion direction and having flexibility, and a shaft-like second flexible section 46B extending from the second piece section 45B in the retainer insertion direction and having flexibility (
In addition, the retaining member 40 illustrated here includes a protruding section 47 protruding in the retainer removal direction from the center of the second shaft section 44B in the extending direction (
In addition, the retaining member 40 illustrated here includes a locked section (hereinafter, referred to as a “second locked section”) 42B locked to the terminal accommodating section 22 in such a way as not to be pushed in the retainer insertion direction beyond the mounting completion position with respect to the terminal accommodating section 22 (
As described above, in the connector 1 according to the present embodiment, the position of the axial center P of the fitting wall 21 is aligned with the position of the axial center P of the mating fitting space 500b at the fitting completion position by at least three sets or more of the combinations of the abutted sections 25 and the abutting sections 500d1, and the positional deviation of the housing 20 with respect to the inner peripheral surface 500b1 of the mating fitting space 500b can be suppressed at the fitting completion position. Therefore, the connector 1 can appropriately align the terminal fitting 10. For example, in the connector 1 according to the present embodiment, the terminal fitting 10 is held by the housing 20 in a state where the terminal fitting 10 is relatively movable in the alignment direction by the retaining member 40, but the function of aligning the terminal fitting 10 in the alignment direction can be effectively executed due to the effect of suppressing the positional deviation of the housing 20 with respect to the inner peripheral surface 500b1 of the mating fitting space 500b. Therefore, in the connector 1, the terminal fitting 10 can obtain an appropriate contact pressure between the terminal fitting 10 and the mating terminal fitting 510. Therefore, in the connector 1, a quality in electrical connection between the terminal fitting 10 and the mating terminal fitting 510 becomes high, and occurrence of an overload between a component with a mating component thereof can be suppressed.
In the connector according to the embodiment, the position of the axial center of the fitting wall is aligned with the position of the axial center of the mating fitting space at the fitting completion position by at least three sets or more of the combinations of the abutted sections and the abutting sections, and the positional deviation of the housing with respect to the inner peripheral surface of the mating fitting space can be suppressed at the fitting completion position. Therefore, the connector can appropriately align the terminal fitting.
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 all 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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2021-171274 | Oct 2021 | JP | national |
The present application claims priority to and incorporates by reference the entire contents of Japanese Patent Application No. 2021-171274 filed in Japan on Oct. 20, 2021.