This application claims the benefit of the filing date under 35 U.S.C. ยง 119(a)-(d) of Japanese Patent Application No. 2021-084918, filed May 19, 2021.
The invention relates to a sealing element for an electrical connector and a waterproof connector using the sealing element.
Connectors with water-proof performance have been widely used. In such a waterproof connector, a sealing element facilitates the waterproofing.
A waterproof connector in which a plurality of electric wires are connected includes, as moisture intrusion paths, an intrusion path along each of the electric wires, and an intrusion path from a gap between a connector housing and the housing of a mating connector. It is necessary to break both the intrusion paths. Therefore, this type of the waterproof connector utilizes a first sealing element that is referred to as a family seal and surrounds each electric wire to break the intrusion path along each electric wire, and a second sealing element that is referred to as a seal ring and is positioned to surround the periphery of the connector housing to break the path of intrusion of moisture from the gap between the housings. In this case, the two sealing elements which are the family seal and the seal ring are required.
Under such circumstances as described above, what is needed is a waterproof connector with a reduced cost and a sealing element that imparts a waterproofing property to the connector.
A waterproof connector includes a connector housing that mates with a mating housing and a sealing element that is a continuous integral component. The sealing element has a family seal portion that surrounds a periphery of each of a plurality of electric wires to perform waterproofing between the electric wires and a seal ring portion that is positioned between the mating housing and the connector housing to perform sealing between the mating housing and the connector housing in a case of mating with the mating housing.
The invention will now be described by way of example with reference to the accompanying figures of which:
A sealing element according to one embodiment of the invention is mounted in the waterproof connector 1. The sealing element will be described later.
The connector housing 10 of the waterproof connector 1 includes an inner housing and an outer housing. The structure of the connector housing 10 will also be described later.
The sealing element 20 is positioned on the inner housing 30 so as to cover the upper portion of the inner housing 30 and the upper portions of the sides of the inner housing 30. The inner housing 30 shown is an example of a first housing according to the invention.
The sealing element 20 includes a family seal portion 20A in which a large number of electric wire insertion openings 21 penetrate the sealing element in a mating direction, i.e., in an upward-downward direction in this
In the sealing element 20, long openings 22 extending in a crosswise direction are open in three places including both the longitudinal ends of the sealing element 20. Standing board portions 31 included in the inner housing 30 are inserted from below the long openings 22 into the long openings 22, and pass to an area above the sealing element 20. The long openings 22 are an example of a through-hole according to the invention, and the standing board portions 31 are examples of a penetration catch portion according to the invention. The long openings 22 and the standing board portions 31 will be described later.
The sealing element 20 is formed of an elastic member such as rubber. As illustrated in the cross section of
As illustrated in the cross section of
Moreover, the sealing element 20 includes a second waterproof portion 23 in the upper half of the outer peripheral surface of the sealing element 20. The second waterproof portion has a wave shape with successive recesses and projections extending in an upward-downward direction. The recesses and the projections forming the wave shape extend around the sealing element 20. The second waterproof portion 23 performs sealing between the second waterproof portion 23 and the outer housing described later.
In addition, the sealing element 20 includes a third waterproof portion 24 in the lower half of the outer peripheral surface of the sealing element 20. Like the second waterproof portion 23, the third waterproof portion 24 also has a wave shape with successive recesses and projections extending in an upward-downward direction. The recesses and the projections forming the wave shape extend around the sealing element 20. The third waterproof portion 24 is a seal ring portion 20B that performs sealing between the seal ring portion 20B and a mating housing (described later) included in the mating connector 2 (see
In addition, the sealing element 20 includes a fourth waterproof portion 25 on the wall surface of the concave portion 201. Like the second waterproof portion 23 and the third waterproof portion 24, the fourth waterproof portion 25 also has a wave shape with successive recesses and projections extending in an upward-downward direction. The recesses and the projections forming the wave shape extend around the inner wall surface of concave portion 201. The fourth waterproof portion 25 performs sealing between the sealing element 20 and the outer wall surface of the inner housing 30 fitting into the concave portion 201.
As illustrated in the enlarged view of
The recesses and the projections formed in the upward-downward direction on the inner wall surfaces 22A of the long openings 22 are not necessarily identical recesses and projections that are repeated. A certain shape with a recess and a projection and shapes with recesses and projections lining above and below the recess and the projection may differ from each other. The recesses and the projections in the upward-downward direction may be recesses and projections in a wave shape, may be recesses and projections including angular grooves and angular salients, or may be jagged recesses and projections in a triangular shape. Variations in the shape of the recesses and the projections included in this waterproof structure are not limited to the fifth waterproof portions 221 described herein, but are also common to the first waterproof portions 211, the second waterproof portion 23, the third waterproof portion 24, and the fourth waterproof portion 25.
The inner housing 30 is assembled with the sealing element 20 so as to be fitted into the concave portion 201 of the sealing element 20 (see
Assembly of the inner housing 30 with the sealing element 20 results in a state in which the standing board portions 31 of the inner housing 30 are inserted into the long openings 22 of the sealing element 20, and the upper portions of the standing board portions 31 protrude upward. The fifth waterproof portions 221 are formed in the long openings 22 of the sealing element 20, and the fifth waterproof portions 221 come into contact with the standing board portions 31 inserted into the long openings 22, to result in blocking of water intrusion paths along the standing board portions 31, as illustrated in
Catch protrusion portions 311 each having a hook shape are formed in the upper ends of the standing board portions 31. The catch protrusion portions 311 catch the outer housing. The outer housing will be further described later.
A wall 41 coming into contact with the periphery of the second waterproof portion 23 (see
Moreover, a plurality of electric wire via openings 42 communicating with the respective electric wire insertion openings 21 of the seal portion 20 are opened in the outer housing 40.
Moreover, these
As illustrated in
The fifth waterproof portions 221 are formed on the inner walls of the long openings 22 of the sealing element 20. As a result, the peripheries of the standing board portions 31 are waterproofed.
Moreover, the electric wire via openings 42 of the outer housing 40 are connected to the electric wire insertion openings 21 of the sealing element 20, and further connected into the interior of the inner housing 30, as illustrated in
Moreover, the wall 41 of the outer housing 40 comes into contact with the second waterproof portion 23 formed around the outer peripheral surface of the sealing element 20, whereby a water intrusion path along the wall surface of the outer housing 40 is blocked.
In addition, the outer wall surface of the inner housing 30 comes into contact with the periphery of the fourth waterproof portion 25 of the sealing element 20. As a result, a water intrusion path along the outer wall surface of the inner housing 30 is blocked.
When the mating connector 2 mates with the waterproof connector 1, the mating housing 2A comes into contact with the periphery of the third waterproof portion 24 of the sealing element 20. As a result, a water intrusion path along the mating housing 2A is blocked.
In accordance with the present embodiment, the cost of the waterproof connector 1 is reduced by adopting the sealing element 20 that includes the family seal portion that waterproofs the peripheries of the electric wires and the seal ring portion that performs waterproofing between the mating housing and the housing of the waterproof connector 1, and is molded as a continuous integral component, as described above.
When the electric wires are inserted into the electric wire insertion openings 21, the sealing element 20 receives force in a direction in which the electric wire insertion openings 21 are expanded by the electric wires. This means that in other words, the sealing element 20 swells in a horizontal direction, as indicated by the arrows W in
Number | Date | Country | Kind |
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2021-084918 | May 2021 | JP | national |