CHIP FOR A WINDSHIELD WASHER SYSTEM WITH FLEXIBLY DETERMINABLE DIRECTIONAL CHARACTERISTICS
20180334141 ยท 2018-11-22
Inventors
Cpc classification
B60S1/52
PERFORMING OPERATIONS; TRANSPORTING
B05B1/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A chip for a windshield washer system of a vehicle front or rear window, wherein the chip is injection-molded by an injection molding process, the chip being arranged to be inserted into a chip holder of the windshield washer system, wherein the chip has a structure for generating a spray beam, wherein the structure has at an end face of the chip an outlet opening having an opening edge, wherein the outlet opening is configured to allow the spray beam to emerge from the chip during operation of the windshield washer nozzle system onto the vehicle front or rear window, wherein the outlet opening is delimited by the opening edge all around the complete opening circumference by the chip, and the opening and the opening edge are formed all around and integrally by the injection molding process.
Claims
1. A chip (1) for a windshield washer system of a vehicle front or rear window, wherein the chip (1) is injection-molded by an injection molding process, the chip (1) being arranged to be inserted into a chip holder of the windshield washer system, wherein the chip (1) has a structure (10, 20, 30) for generating a spray beam, wherein the structure (10, 20, 30) has at an end face of the chip (1) an outlet opening (11, 21, 31) having an opening edge (11.1, 21.1, 31.1), wherein the outlet opening (11, 21, 31) is configured to allow the spray beam to emerge from the chip (1) during operation of the windshield washer nozzle system onto the vehicle front or rear window, wherein the outlet opening (11, 21, 31) is delimited by the opening edge (11.1, 21.1, 31.1) all around the complete outlet opening circumference by the chip (1), and the outlet opening (11, 21, 31) and the opening edge (11.1, 21.1, 31.1) are formed all around and integrally by means of the injection molding process.
2. The chip (1) as claimed in claim 1, wherein the outlet opening (11, 21, 31) has a central axis (11.2) and the chip has a horizontal central plane (1.5), wherein the central axis (11.2) is inclined with respect to the horizontal central plane (1.5) at an angle (11.3).
3. The chip (1) as claimed in claim 1, wherein the structure (10) is an oscillation structure (10) and the spray beam is an oscillating spray beam.
4. The chip (1) as claimed in claim 3, wherein the chip (1) has a top side (1.3) and a bottom side (1.4), and wherein the chip (1) further comprises two spot beam structures (20, 30) for generating each a respective spot beam, and wherein the spot beam structures (20, 30) are arranged on one of the upper side (1.3) and the lower side (1.4), and the oscillation structure (10) is arranged on the corresponding other one of the upper side (1.3) and lower side (1.4), wherein the chip (1) has a collection chamber (2) from which three separate output channels (3, 4, 5) respectively lead to one of the structures (10, 20, 30).
5. The chip (1) as claimed in claim 4, wherein the collecting chamber (2) is open towards the upper side (1.3) and the lower side (1.4).
6. The chip (1) as claimed in claim 5, wherein the collecting chamber extends at least over 50% of the chip width (1.1) and at least 25% of the chip length (1.2).
7. The chip as claimed in claim 6, wherein the output channels (4, 5) which lead to the point beam structures (20, 30) lead across a respective connection opening (4.1, 5.1) between the upper side (1.3) and the lower side (1.4).
8. A windshield washer system of a vehicle front or rear window with a chip (1) as claimed in claim 1, which is held in a chip holder on the vehicle.
9. A method for producing a chip (1) for a windshield washer system of a vehicle front or rear window, wherein the chip (1) is arranged to be inserted into a chip holder of the window washer system, wherein the chip (1) has a structure (10, 20, 30) for generating a spray beam, wherein the structure (10, 20, 30) has at an end face of the chip (1) an outlet opening (11, 21, 31) having an opening edge (11.1, 21.1, 31.1), wherein the outlet opening (11, 21, 31) is configured to allow the spray beam to emerge from the chip (1) during operation of the windshield washer nozzle system onto the vehicle front or rear window; including the step casting the chip (1) by means of an injection molding process: wherein the opening (11, 21, 31) and the opening edge (11.1, 21.1, 31.1) are formed all around and integrally by means of the injection molding process such that the outlet opening (11, 21, 31) is delimited continuously over the entire opening circumference by the chip (1) by means of the opening edge (11.1, 21.1, 31.1).
10. A chip for a windshield washer system of a vehicle front or rear window, wherein the chip (1) is injection-molded by an injection molding process, the chip configured to be inserted into a chip holder of the windshield washer system, wherein the chip has at least one structure for generating a spray beam, wherein the structure has an outlet opening at an end face of the chip, the outlet opening having an opening edge, wherein the outlet opening is configured to allow the spray beam to emerge from the chip during operation of the windshield washer nozzle system onto the vehicle front or rear window, wherein the outlet opening is delimited by the opening edge all around a complete periphery of the outlet opening, and the opening edge is part of the chip, and the outlet opening and the opening edge are formed all around and integrally by means of the injection molding process.
11. The chip as claimed in claim 10, wherein the outlet opening has a central axis and the chip has a horizontal central plane, wherein the central axis is inclined with respect to the horizontal central plane at an angle offset from zero.
12. The chip as claimed in claim 10, wherein the at least one structure is an oscillation structure and the spray beam is an oscillating spray beam.
13. The chip as claimed in claim 12, wherein the chip has a top side and a bottom side, and wherein the chip further comprises two spot beam structures for generating each a respective spot beam, and wherein the spot beam structures are arranged on one of the upper side and the lower side, and the oscillation structure is arranged on the other one of the upper side and the lower side, wherein the chip has a collection chamber from which three separate output channels, each output channel leading to a respective one of the oscillating structure or the beam structures.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The invention will now be illustrated further by way of example with reference to drawings, in which:
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030] The chip 1 is injection-molded by an injection molding process. The chip is arranged to be inserted into a chip holder of the windshield washer system. The chip has structures 10, 20, 30 for generating a spray beam of liquid, wherein the structures 10, 20, 30 each have at an end face of the chip 1 an outlet opening 11, 21, 31 having an opening edge 11.1, 21.1, 31.1. The outlet openings 11, 21, 31 are configured to allow the respective spray beam to emerge from the chip 1 during operation of the windshield washer nozzle system onto the vehicle front or rear window.
[0031] The outlet openings 11, 21, 31 are delimited by the respective opening edge 11.1, 21.1, 31.1 all around the complete opening circumference by the chip 1, and the respective opening 11, 21, 31 and the respective opening edge 11.1, 21.1, 31.1 are formed all around and integrally by means of the injection molding process. The outlet opening 11, 21, 31 has a central axis 11.2, see
[0032] The chip 1 has a top side 1.3, see
[0033] It is to be clearly understood that the above description is intended by way of illustration and example only, is not intended to be taken by way of limitation, and that other changes and modifications are possible.
LIST OF REFERENCE SIGNS
1 Chip
[0034] 1.1 Chip width
1.2 Chip length
1.3 Upper side
1.4 Lower side
1.5 Horizontal central plane
2 Collecting chamber
3 Output channel
4 Output channel
4.1 Connecting opening
5 Output channel
5.1 Connecting opening
10 Oscillation structure
11 Outlet opening
11.1 Opening edge
11.2 Central axis
11.3 Angle
[0035] 20 Spot beam structure
21 Outlet opening
21.1 Opening edge
30 Spot beam structure
31 Outlet opening
31.1 Opening edge