Washer nozzle device for vehicles

Fluid sprinkling – spraying – and diffusing – Liquid sprayer for transparent panel

Reexamination Certificate

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Details

C239S552000, C239S553000, C239S587400

Reexamination Certificate

active

06354515

ABSTRACT:

BACKGROUND OF THE INVENTION
The present invention relates to a washer nozzle device that injects cleaning liquid to a washed surface such as a windshield of automobiles.
Typically, vehicles include washer nozzle devices located near the windshield. The washer nozzle device sprays cleaning liquid on the windshield for wiping by the wiper blades. Typically, the washer nozzle device includes a body and a nozzle. The body is attached to the hood of a vehicle, and the nozzle is fitted in a recess of the body. A liquid passage is formed in the body, and an injection passage is formed in the nozzle. The nozzle is installed in the body such that the injection passage is connected to the liquid passage. A typical nozzle has only one injection port. When the number of the injection ports is one, injected cleaning liquid lands on one point of the windshield. Therefore, cleaning liquid is not delivered to a wide area of the glass surface, which reduces the efficiency of cleaning the glass.
To solve the above problem, a multiple-point-injection washer nozzle device has been proposed. As shown in
FIG. 14
, three nozzles
51
are fitted in three sockets
52
a
of the body
52
.
However, in the washer nozzle device of
FIG. 14
, it is troublesome to install the plurality of nozzles
51
in the body
52
and to adjust the injection direction of each nozzle
51
. Also, the plurality of sockets
52
a
increase the size of the body
52
.
Japanese Unexamined Utility Model Publication No. 58-183255, No. 1-109471, and No. 55-159753 describe multiple-point-injection washer nozzle devices in which one nozzle having a plurality of injection ports is installed in a body.
For example, as shown in
FIG. 15A
, the washer nozzle device of Publication No. 58-183255 includes a body
61
and a nozzle
62
, which is fitted in the body
61
. As shown in
FIG. 15B
, the nozzle
62
includes three radial holes
63
, which enable multiple-streams. The upper and lower surfaces of the nozzle
62
are cylindrical, which permits the nozzle
62
to pivot, and the injection direction can be adjusted vertically. The nozzle is formed by coupling an upper part
62
a
and a lower part
62
b.
However, the nozzle
62
can be adjusted only vertically, and the injection direction of the streams cannot be adjusted three-dimensionally. Also, the nozzle
62
is formed by two parts
62
a
,
62
b
, which increases the number of assembly steps.
The step of coupling two parts can be omitted by drilling the nozzle holes in a single nozzle. However, this necessitates the drilling step, and the number of manufacturing steps is not reduced. It is also possible to form the nozzle holes by molding the nozzle. However, since the nozzle holes
71
a
are shaped as shown in
FIG. 16
, slide molds
72
are necessary to form the nozzle holes
71
a
. The slide molds
72
have to be moved diagonally relative to the other mold parts. Therefore, the molding apparatus is complicated, which reduces the manufacturing efficiency and increases the manufacturing costs.
SUMMARY OF THE INVENTION
A first objective of the present invention is to provide a multiple-stream washer nozzle device in which a nozzle is easily molded.
A second objective of the present invention is to provide a multiple-stream washer nozzle device in which a nozzle is easily installed in a body and the injection direction is easily adjusted.
A third objective of the present invention is to provide a multiple-stream washer nozzle device in which the injection direction can be three-dimensionally adjusted.
In accordance with the present invention, there is provided a washer nozzle device for a vehicle comprising:
a body including a fluid path and a generally spherical socket, wherein the body is attachable to the vehicle; and
an adjustable nozzle including a flow passage and a generally spherical portion for engaging the socket, wherein a downstream end of the flow passage is located at an injection port, wherein the nozzle is attached to the body such that the flow passage communicates with the fluid path, wherein the nozzle includes a partition member located in the flow passage to divide a flow of fluid into a plurality of streams.
Other aspects and advantages of the invention will become apparent from the following description, taken in conjunction with the accompanying drawings, illustrating by way of example the principles of the invention.


REFERENCES:
patent: 2289650 (1942-07-01), Horton
patent: 2703259 (1955-03-01), Neufeld
patent: 3067955 (1962-12-01), Heath
patent: 3433416 (1969-03-01), Bauer et al.
patent: 5163619 (1992-11-01), Wada
patent: 5975431 (1999-11-01), Harita et al.
patent: 6062491 (2000-05-01), Hahn et al.
patent: 55-159753 (1980-11-01), None
patent: 58-183255 (1983-12-01), None
patent: 1-109471 (1989-07-01), None

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