Background of the Invention
This invention relates to a connector used for connection of wire harnesses in motor vehicles.
FIG. 6 shows an example of a conventional connector of this type. In FIG. 6, reference character a designates a female connector housing; and b, a male connector housing. Metal terminals c and d are built in the female connector housing and the male connector housing b, respectively. The female connector housing a has a flexible locking arm e, which is engaged with a locking portion f of the male connector housing b when the male connector housing b is connected to the female connector housing a.
A compression spring g is provided between the female connector housing a and the male connector housing b, acting to move them away from each other.
When the male connector housing b is connected to the female connector housing a, the spring g is compressed. If the locking arm e is not completely engaged with the locking portion f, the force of repulsion of the spring g thus compressed acts to move the housings a and b away from each other, thus preventing the incomplete joint of the housings as shown in Japanese Utility Model Unexamined Publication No. 99381/1986.
FIG. 7 shows the female connector housing a and the male connector housing b which have been completely engaged with each other, with the locking arm e engaged with the locking portion f.
The above-described conventional connector suffers from the following difficulty: That is, when the male and female connector housings b and a are completely engaged with each other, the force of repulsion of the compression spring g acts on the two housings a and b at all times, thus obstructing the stable contact of the metal terminals c and d.
Summary of the Invention
In view of the foregoing, an object of this invention is to provide a connector comprising a pair of connector housings and a spring for preventing the incomplete connection of the pair of connector housing, in which the force of repulsion of the spring is made ineffective when the pair of connector housings are completely engaged with.
The foregoing object of the invention has been achieved by the provision of a connector which, according to the invention, comprises: a first connector housing which has a spring receiving member in such a manner that the spring receiving member is slidable back and forth, and a spring engaged with the spring receiving member; and a second connector housing which drives the spring receiving member against the spring when engaged with the first connector housing, and in which, when the first and second connector housings are completely connected together with locking mechanisms thereof engaged with each other, metal terminals provided in the first connector housing are engaged with those provided in the second connector housing, respectively, and the spring receiving member is locked to the first connector housing, to prevent the application of the force of repulsion of the spring to the second connector housing.
While the first and second connector housings are being engaged with each other, the force of repulsion of the spring acts against the engagement. However, when these housings have been completely engaged with each other, the force of repulsion is made ineffective.
Brief Description of the Drawings
FIG. 1 an exploded perspective view showing an example of a connector according to this invention.
FIG. 2 is a sectional view showing a male connector housing and a female connector housing in the connector which are disengaged from each other.
FIG. 3 is a sectional view showing the male and female connector housings which are being engaged with each other.
FIG. 4 is a sectional view showing the male and female connector housings which have been completely engaged with each other.
FIG. 5 is a sectional view showing the male and female connector housings which are unlocked.
FIG. 6 is a sectional view showing an example of a conventional connector.
FIG. 7 is a sectional view showing the conventional connector the male and female connector housings of which have been completely engaged with each other.
Datailed Description of the Preferred Embodiments
An example of a connector according to this invention is as shown in FIG. 1. In FIG. 1, reference character A designates a female connector housing; B, a male connector housing; and C, a spring receiving member built in the female connector housing A in such a manner that it is slidable back and forth.
A plurality of male metal terminals 1 are provided inside the female connector housing A in such a manner that they are fixedly held by the rear wall 2 and extended into the female connector housing body 4 through holes 3 formed in the spring receiving member C. The female connector housing 4 has a spring housing 5 which is extended backwardly to accommodate a compression coil 6 in such a manner that the front end of the latter 6 is abutted against the spring receiving member C.
A driven arm 7 is movably coupled through its middle portion 7a to the upper edge of the spring receiving member C. The driven arm 7 has a locking portion 7b at the rear end, which is engaged with a locking portion 8 of the spring housing 5.
The male connector housing B has a terminal accommodating chamber 9, in which female metal terminals 11 connected to electrical wires 10 are locked with flexible locking pieces 12.
The male connector housing B has a flexible locking arm 13 in its upper region which has a rise base portion 13a at the front end. The flexible lock arm 13 further has a slot engaging portion 13b at the middle, and a depressing portion 13c at the rear end.
When the female and male connector housings A and B disconnected from each other as shown in FIG. 2 are moved towards each other, the driven arm 7 is caused to go into the flexible locking arm 13, while the front end potion 13d of the flexible locking arm 13 is abutted against the step 7c of the driven arm 7. As a result, the spring receiving member C is moved backwardly against the elastic force of the coil spring 6 (FIG. 3).
When the female and male connector housings A and B are further moved towards each other, the slot engaging portion 13b of the flexible locking arm 13 is engaged with a locking protrusion 14 which is extended inwardly from the front end of the female connector housing body 4, so that the male and female connector housings A and B are completely engaged and locked together. At the same time, the locking portion 7b of the driven arm 7 is engaged with the locking portion 8 of the spring housing 5, so that the spring receiving member C receives all the force of repulsion of the compression coil spring 6, thus protecting the male connector housing B from the force of repulsion of the coil spring 6 (FIG. 4).
The male and female connector housings can be disengaged from each other as follows: The depressing portion 13c is pushed to disengage the slot engaging portion 13b from the engaging protrusion 14. In this operation, the driven arm 7 is pushed by the flexible locking arm 12, so that the locking portion 7b is disengaged from the locking portion 8 of the spring housing 5 to release the coil spring 6 thereby to disengage the male and female connector housings from each other (FIG. 5).
As was described above, the connector of the invention comprises: the first connector housing which has the spring receiving member in such a manner that the spring receiving member is slidable back and forth, and the spring engaged with the spring receiving member; and the second connector housing which drives the spring receiving member against the spring when engaged with the first connector housing. In the connector, when the first and second connector housings are completely connected together with the locking mechanisms thereof engaged with each other, the metal terminals provided in the first connector housing are engaged with those provided in the second connector housing, respectively, and the spring receiving member is locked to the first connector housing, to prevent the application of the force of the repulsion of the spring to the second connector housing. Hence, when the male and female connector housings have been completely engaged and locked together, the force of repulsion of the spring adapted to prevent the incomplete engagement of the male and female connector housings is not effected between the male and female connector housings. Therefore, the metal terminals provided in the male connector housing are maintained stably engaged with those provided in the female connector housing.