The present invention relates to a female terminal fitting.
The female terminal main body 110 includes a terminal fitting unit 111 having quadrangular tube shape, into which a contact flat plate section 210 of a male terminal fitting is inserted as a connection counterpart, and an electric wire connecting unit 112 which is provided to be continuous to the terminal fitting unit 111 and in which electric wires are connected.
Inside the terminal fitting unit 111, a protrusion 111a, which regulates movement of the terminal contact spring member 120 which is mounted inside the terminal fitting unit 111 in an insertion direction, is formed.
The electric wire connecting section 112 is a section where crimp connection of the electric wires is performed.
The terminal contact spring member 120 is mounted on the terminal fitting unit 111 in a state of being in contact with an inner surface of the terminal fitting unit 111.
The terminal contact spring member 120 is formed to have a quadrangle tubular shape by bending a conductive metal sheet. In
The first frame 121 is formed to have a quadrangular shape which is inscribed in a front end portion 1111 of the terminal fitting unit 111, which becomes an insertion side of the contact flat plate section 210. As illustrated in
The second frame 122 is formed to have a quadrangular shape which is inscribed in a rear end portion 1112 of the terminal fitting unit 111. As illustrated in
As illustrated in
The first flat spring 123a straddles over the first facing wall 121a of the first frame 121 and the first facing wall 122a of the second frame 122 and comes into elastic contact with the one surface 211 of the contact flat plate section 210. The first flat spring 123a is formed to have a convex arc shape on the one surface 211 of the contact flat plate section 210 in a side view, and an intermediate portion which is the apex of an arc comes into contact with the one surface 211 of the contact flat plate section 210.
The first flat spring 123b straddles over the first facing wall 121b of the first frame 121 and the first facing wall 122b of the second frame 122 and comes into elastic contact with the one surface 211 of the contact flat plate section 210. Similar to the first flat spring 123a, the first flat spring 123b is formed to have a convex arc shape on the one surface 211 of the contact flat plate section 210 in a side view, and an intermediate portion which is the apex of an arc comes into contact with the one surface 211 of the contact flat plate section 210.
The second flat spring 126 straddles over the second facing wall 121c of the first frame 121 and the second facing wall 122c of the second frame 122 and comes into elastic contact with the other surface 212 of the contact flat plate section 210. The second flat spring 126 is formed to have a convex arc shape on the other surface 212 of the contact flat plate section 210, in a side view, and an intermediate portion which is the apex of an arc comes into contact with the other surface 212 of the contact flat plate section 210.
[PTL 1] JP-A-2002-100430
However, as illustrated in
Therefore, in order to solve the above problem, an object of the present invention is to provide a female terminal fitting with which an electrical connection state becomes stable between a female terminal main body and a terminal contact spring member which comes into contact with a contact flat plate section of a male terminal fitting, and thus, stable electrical properties can be secured.
The object described above of the present invention is achieved by the following configurations.
(1) There is provided a female terminal fitting comprising:
(2) In the female terminal fitting according to (1),
(3) In the female terminal fitting according to (2),
In the configuration according to (1), when the terminal contact spring member is fitted in the terminal fitting unit of the female terminal main body, the height dimension of the side wall section of the first frame and the second frame of the terminal contact spring member is set to be greater than the inner height dimension corresponding to the terminal fitting unit. Accordingly, the side wall sections of the first frame and the second frame enter into a state of being elastically deformed due to deflection of the curved shape portion in a direction in which the height dimension is reduced, and the first facing wall and the second facing wall, to which the side wall section of the first frame and the second frame is continuous, enter into a state of being in pressure contact with the facing inner wall surface of the terminal fitting unit due to a restoring force of the curved shape portion, and the terminal contact spring member and the female terminal main body enter into a conductive connection state.
Therefore, it is possible to secure high contact pressure in a contact portion with the terminal contact spring member and the female terminal main body which come into pressure contact with each other due to the deflection of the curved shape portion of the respective side wall sections of the first frame and the second frame, compared to a case where a free end of the sheet piece as illustrated in
Accordingly, an electrical connection state can become stable between the terminal contact spring member and the female terminal main body. Also, an electrical connection state is stable between the terminal contact spring member and the female terminal main body, thereby allowing stable electrical properties to be secured.
In the configuration according to (2), since the terminal contact spring member has the mating portion which is set on the one side surface side of the terminal contact spring member, the first facing wall and the second facing wall, to which the other side wall section having the curved shape portion is continuous, have a symmetrical structure. Accordingly, an elastic restoring force of the curved shape portion can be uniformly applied to the first facing wall and the second facing wall. Therefore, it is possible to further stabilize the electrical connection state between the terminal contact spring member and the female terminal main body.
In the configuration according to (3), when the contact flat plate section of the male terminal fitting is inserted into and is removed from between the first flat spring and the second flat spring of the terminal contact spring member, the side edge of the side wall piece extending from the first facing wall comes into contact with the side edge of the side wall piece extending from the second facing wall on the side wall section provided on the one side surface side which becomes the mating portion of the terminal contact spring member, thereby regulating the relative movement of the side wall pieces from each other in the direction parallel to the insertion direction of the contact flat plate section such that deflection on the piece side of the terminal contact spring member is prevented.
Accordingly, during the insertion and removal of the contact flat plate section of the male terminal fitting, it is possible to easily perform the insertion and removal operations of the contact flat plate section without interfering with an insertion and removal operation of the contact flat plate section due to the deflection of the terminal contact spring member.
In the female terminal fitting according to the present invention, an electrical connection state becomes stable between a female terminal main body and a terminal contact spring member which comes into contact with a contact flat plate section of a terminal fitting, and thus stable electrical properties can be secured.
Hereinafter, the present invention will be briefly described. Further, the present invention will be clear in detail by reading through modes for carrying out the invention (hereinafter, referred to as an “embodiment”) with reference to the accompanying drawings.
Hereinafter, a preferred embodiment of a female terminal fitting according to the present invention will be described in detail with reference to the drawings.
As illustrated in
As illustrated in
The terminal fitting unit 11 is molded in a quadrangular tube die having a wide width by bending a conductive metal sheet. The electric wire connecting section 12 is a section in which crimp connection of the electric wires is performed.
The terminal contact spring member 20 is mounted on the terminal fitting unit 11 in a state of being in contact with the inner surface of the terminal fitting unit 11. Arrow Z2 illustrated in
The terminal contact spring member 20 is formed to have a quadrangular tube shape by bending a conductive metal sheet. In addition, as illustrated in
The first frame 21 is formed to have a quadrangular shape which is inscribed in a front end portion 11 a (refer to
As illustrated in
As illustrated in
The second frame 22 is formed to have a quadrangular shape which is inscribed in the rear end portion 11b (refer to
As illustrated in
In other words, the side edge S2 in the side wall piece 21f extending from the first facing wall 21a of the first frame 21, which is positioned on the rear side in the insertion direction of the contact flat plate section 210, comes into contact with the side edge S1 in the side wall piece 21g extending from the second facing wall 21b of the first frame 21, which is positioned on the front side in the insertion direction of the contact flat plate section 210, such that the movement of the side wall piece 21f is regulated in the arrow X1 direction in
Further, the side edge S4 in the side wall piece 22f extending from the first facing wall 22a of the second frame 22, which is positioned on the front side in the insertion direction of the contact flat plate section 210, comes into contact with the side edge S3 in the side wall piece 22g extending from the second facing wall 22b of the second frame 22, which is positioned on the rear side in the insertion direction of the contact flat plate section 210, such that the movement of the side wall piece 22f is regulated in the arrow X2 direction in
In other words, the side wall piece 21f comes into contact with the side wall piece 21g, and the side wall piece 22f comes into contact with the side wall piece 22g, such that the relative movement of the respective side wall pieces 21f, 22f, 21g, and 22g is regulated in the direction parallel to the insertion direction of the contact flat plate section 210, and it is possible to prevent the positional shift on the mating portion 30, due to friction force applied to the terminal contact spring member 20 during the inserting and removal of the contact flat plate section 210.
In a case of using the terminal contact spring member 20 of the present embodiment, the side wall section 21c of the first frame 21 and the side wall section 22c of the second frame 22 are set to have a height dimension H3 (refer to
The first flat spring 23 straddles over the first facing wall 21a of the first frame 21 and the first facing wall 22a of the second frame 22 and comes into elastic contact with the one surface 211 of the contact flat plate section 210. A plurality of first flat springs 23 are provided in parallel. In addition, the first flat spring 23 is formed to have a convex arc shape on the one surface 211 side of the contact flat plate section 210 and an intermediate portion as an apex of the arc comes into contact with the one surface 211 of the contact flat plate section 210.
The second flat spring 24 straddles over the second facing wall 21b of the first frame 21 and the second facing wall 22b of the second frame 22 and comes into elastic contact with the other surface 212 of the contact flat plate section 210. A plurality of second flat springs 24 are provided in parallel. In addition, the second flat spring 24 is formed to have a convex arc shape on the other surface 212 side of the contact flat plate section 210 and an intermediate portion as an apex of the arc comes into contact with the other surface 212 of the contact flat plate section 210.
In the case of the female terminal fitting 1 of an embodiment described above, when the terminal contact spring member 20 is fitted in the terminal fitting unit 11 of the female terminal main body 10, the height dimension H3 of the side wall sections 21c and 22c of the first frame 21 and the second frame 22 of the terminal contact spring member 20 is set to be greater than the inner height dimension H4 corresponding to the terminal fitting unit 11. Accordingly, the side wall sections 21c and 22c of the first frame 21 and the second frame 22 enter into an elastically deformed state in a direction in which the height dimension H3 is contracted due to the deflection of the curved shape portion R. The first facing walls 21a and 22a and the second facing walls 21b and 22b, to which the side wall sections 21c and 22c are continuous due to the elastic deformation of the side wall section 21c and 22c, enter into a state of coming into pressure contact with the inner wall surface of the facing terminal fitting unit 11 due to the restoring force of the curved shape portion R and the terminal contact spring member 20 and the female terminal main body 10 enter into a conductive connection state.
Also, it is possible to secure high contact pressure at the contact portion of the terminal contact spring member 20 and the female terminal main body 10 which are brought into pressure contact due to the deflection of the curved shape portion R of the respective side wall sections 21c and 22c of the first frame 21 and the second frame 22, compared to a case in which a free end of a plate piece as illustrated in
Accordingly, an electrical connection state can become stable between the terminal contact spring member 20 and the female terminal main body 10. Also, an electrical connection state is stable between the terminal contact spring member 20 and the female terminal main body 10, thereby allowing stable electrical properties to be secured.
In addition, in the case of the female terminal fitting 1 of an embodiment described above, since the terminal contact spring member 20 has the mating portion 30 which is set on the one side surface side of the terminal contact spring member 20, the first facing walls 21a and 22a, and the second facing walls 21b and 22b, to which the side wall sections 21c and 22c provided on the other side surface side having the curved shape portion R is continuous, have a symmetrical structure. Accordingly, an elastic restoring force of the curved shape portion R can be uniformly applied to the first facing walls 21a and 22a and the second facing walls 21b and 22b. Therefore, it is possible to further stabilize the electrical connection state between the terminal contact spring member 20 and the female terminal main body 10.
In addition, in the case of the female terminal fitting 1 of an embodiment described above, when the contact flat plate section 210 of the male terminal fitting is inserted into and is removed from between the first flat spring 23 and the second flat spring 24 of the terminal contact spring member 20, the side edges S2 and S4 of the side wall pieces 21f and 22f extending from the first facing walls 21a and 22a comes into contact with the side edges S1 and S3 of the side wall pieces 21g and 22g extending from the second facing walls 21b and 22b on the side wall sections 21d and 22d provided on the one side surface side which becomes the mating portion 30 of the terminal contact spring member 20, thereby regulating the relative movement of the side wall pieces 21f and 22f and side wall pieces 21g and 22g in the direction parallel to the insertion direction of the contact flat plate section 210 such that deflection on the piece side of the terminal contact spring member 20 is prevented.
Accordingly, during the insertion and removal of the contact flat plate section 210 of the male terminal fitting, it is possible to easily perform the insertion and removal operations of the contact flat plate section 210 without interfering with the insertion and removal operations of the contact flat plate section 210 due to the deflection of the terminal contact spring member 20.
In addition, in the case of the female terminal fitting 1 of an embodiment described above, an engagement structure of the side wall pieces 21f and 22f and the side wall pieces 21g and 22g for regulating the relative movement in the direction parallel to the insertion direction of the contact flat plate section 210 is a simple engagement structure in which outer side edges (side edges S2, S4; S1, S3) come into contact with each other. Accordingly, for example, compared to a case of a configuration in which the side wall pieces 21f and 22f and the side wall pieces 21g and 22g are engaged with each other using a concave and convex structure, a complicated structure of the terminal contact spring member 20 for providing the side wall pieces 21f and 22f and the side wall pieces 21g and 22g is suppressed and it is possible to easily manufacture the terminal contact spring member 20.
Further, the present invention is not limited to the embodiments described above, but can be appropriately modified, improved, or the like. Besides, a material of, a shape of, a dimension of, the number of, a disposed position of, or the like of the respective components in the embodiment described above is not limited thereto, but is arbitrary, as long as the present invention is achieved.
For example, in the embodiment described above, the plurality of first flat springs 23 and the plurality of second flat springs 24 are provided in parallel; however, each may be provided as a single flat spring.
In addition, this application is based on Japanese Patent Application No. 2013-210434 filed Oct. 7, 2013, the content of which is incorporated herein by reference.
Here, characteristics of the embodiments of the female terminal fitting are collectively and briefly listed in [1] to [3] as follows.
[1] A female terminal fitting (1) including:
[2] In the female terminal fitting (1) according to [1], the terminal contact spring member (20) is formed by bending a conductive metal sheet into a quadrangular tube shape,
[3] In the female terminal fitting (1) according to [2], side edges (S2 and S4) of side wall pieces (21f and 22f) extending from the first facing walls (21a and 22a) of the first frame (21) and the second frame (22) and side edges (S1 and S3) of side wall pieces (21g and 22g) extending from the second facing walls (21b and 22b) of the first frame (21) and the second frame (22) come into contact at the mating portion (30) of the terminal contact spring member (20), respectively, the contact between the side edges of the side wall pieces causes relative movement of the side wall pieces from each other to be regulated in a direction parallel to the insertion direction of the contact flat plate section (210).
According to the female terminal fitting of the present invention, an electrical connection state becomes stable between a female terminal main body and a terminal contact spring member which comes into contact with a contact flat plate section of a terminal fitting, and thus stable electrical properties can be secured.
1 female terminal fitting
10 female terminal main body
11 terminal fitting unit
11
a front end portion
11
b rear end portion
12 electric wire connecting section
20 terminal contact spring member
21 first frame
21
a first facing wall
21
b second facing wall
21
c,
21
d side wall section
21
e,
21
f,
21
g side wall piece
22 second frame
22
a first facing wall
22
b second facing wall
22
c,
22
d side wall section
22
e,
22
f,
22
g side wall piece
23 first flat spring
24 second flat spring
30 mating portion
210 contact flat plate section
211 one surface
212 the other surface
R curved shape portion
S1, S2, S3, S4 side edge
Number | Date | Country | Kind |
---|---|---|---|
2013-210434 | Oct 2013 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2014/076865 | 10/7/2014 | WO | 00 |