Windshield wiper arm
11220242 · 2022-01-11
Assignee
Inventors
Cpc classification
B60S1/3415
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A windshield wiper arm includes: an arm piece to which a wiper blade wiping a wiping surface is connected; a hose supplied with washer fluid; and a washer nozzle connected to the hose and mounted on the arm piece on the base end side with respect to a portion connected to the wiper blade. The washer nozzle includes: a first flowpath extending in a longitudinal direction; a second flowpath connected to the first flowpath and extending in a wiping direction which intersects the longitudinal direction, and in which the wiper blade can move when wiping the wiping surface; a third flowpath connected to the second flowpath and extending in a vertical direction which is along a normal line of the wiping surface while intersecting the longitudinal direction and the wiping direction; and a fitting groove into which the arm piece is fitted and which extends along the longitudinal direction.
Claims
1. A windshield wiper arm, comprising: an arm piece which has a tip end, to which a wiper blade that wipes a wiping surface is connected, and extends in a first direction; a hose to which a washer fluid is supplied and which is arranged along the arm piece; and a washer nozzle which is connected to the hose and mounted on the arm piece on a base end side with respect to a portion connected to the wiper blade, wherein the washer nozzle comprises: a first flowpath which extends in the first direction; a second flowpath which is connected to the first flowpath and extends in a second direction, which intersects the first direction and in which the wiper blade is movable when wiping the wiping surface; a third flowpath which is connected to the second flowpath and extends in a third direction, which intersects the first direction and the second direction respectively and is along a normal line of the wiping surface; and a fitting groove into which the arm piece is fitted and which extends along the first direction.
2. The windshield wiper arm according to claim 1, wherein the second flowpath comprises a first opening that is open toward a side opposite to the third flowpath in the second direction, a closure cap is mounted on the first opening, and the third flowpath comprises a second opening that is open toward a wiping surface side.
3. The windshield wiper arm according to claim 2, wherein a recess which is recessed in the third direction is formed on an inner surface of the fitting groove, and a protrusion which protrudes in the third direction and is fitted into the recess is formed on an outer surface of the arm piece.
4. The windshield wiper arm according to claim 3, wherein the washer nozzle is formed by injection molding of a synthetic resin material, and the recess is open in the first direction.
5. The windshield wiper arm according to claim 1, wherein a recess which is recessed in the third direction is formed on an inner surface of the fitting groove, and a protrusion which protrudes in the third direction and is fitted into the recess is formed on an outer surface of the arm piece.
6. The windshield wiper arm according to claim 5, wherein the washer nozzle is formed by injection molding of a synthetic resin material, and the recess is open in the first direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE EMBODIMENTS
(17) Hereinafter, a windshield wiper arm 1 according to an embodiment of the invention will be described with reference to
(18)
(19) As shown in
(20) The arm head 10 has a fastening part 11 having a fastening hole 11A into which the pivot shaft 9 is inserted. The fastening part 11 is provided at an end of the arm head 10 on one side in the longitudinal direction X. An end of the shank 20 on one side in the longitudinal direction X is connected to an end of the arm head 10 on the other side in the longitudinal direction X.
(21) An arm piece 30 is fixed to an end of the shank 20 on the other side in longitudinal direction X. The arm piece 30 is formed in a long shape that extends in the longitudinal direction X. An end (base end) of the arm piece 30 on one side in the longitudinal direction X is fixed to the shank 20. In the example as shown, the arm piece 30 is fixed to the shank 20 by crimping the end of the shank 20 on the other side in the longitudinal direction X.
(22) A wiper blade 40 for wiping a wiping surface S (see
(23) In the following description, a direction along a normal line of the wiping surface S is defined as a vertical direction Y (third direction), and in the vertical direction Y, the side of the windshield wiper arm 1 viewed from the wiping surface S is the upper side. In addition, a direction orthogonal to the vertical direction Y and the longitudinal direction X is defined as a wiping direction Z (second direction) of the wiper blade 40.
(24) A washer nozzle 50 for spraying a washer fluid to the wiping surface S is mounted on the arm piece 30 on the base end side with respect to a portion connected to the wiper blade 40. A hose 60 for supplying the washer fluid to the washer nozzle 50 is connected to the washer nozzle 50. The hose 60 is arranged along the arm piece 30.
(25) As shown in
(26) The fitting groove 51 extends over the entire area of the washer nozzle 50 and is open toward both sides in the longitudinal direction X and one side in the wiping direction Z. The fitting groove 51 has a rectangular shape in a side view viewed from the longitudinal direction X. A size of the fitting groove 51 in the vertical direction Y is equal to a size of the arm piece 30 in the vertical direction Y.
(27) As shown in
(28) As shown in
(29) Then, as shown in
(30) As shown in
(31) For example, the spray ports of the first spray nozzle 92 include a spray port for spraying the washer fluid along the vertical direction Y, and a spray port for spraying the washer fluid in a direction slightly inclined toward the longitudinal direction X with respect to the vertical direction Y. Thus, the second flowpath 82 can be easily formed by simply pulling out a core mold toward the side opposite to the third flowpath 83 in the wiping direction Z. In addition, the third flowpath 83 can be easily formed by simply pulling out a core mold toward the lower side in the vertical direction Y, and the spray range of the washer fluid is expanded by the first spray nozzle 92.
(32) A fourth flowpath 84 that extends in the longitudinal direction X is formed in an intermediate portion of the third flowpath 83 in the vertical direction Y. The fourth flowpath 84 is open toward the tip end side of the arm piece 30 in the longitudinal direction X and forms a spray port. A second spray nozzle 93 is mounted on the spray port. Thus, the washer fluid is branched and sprayed from the first spray nozzle 92 and the second spray nozzle 93 in a plurality of directions.
(33) As in the modified example shown in
(34) Here, both the pair of recesses 52 and the pair of fourth flowpaths 84 of the washer nozzle 50a are open toward both sides in the longitudinal direction X. Therefore, the recess 52 and the fourth flowpath 84 that are open toward the tip end side of the arm piece 30 can be formed by pulling out one core mold in one direction. Similarly, the recess 52 and the fourth flowpath 84 that are open toward the side of the shank 20 can also be formed by pulling out one core mold in one direction. In addition, regarding the washer nozzle 50b (see the washer nozzle 50 in
(35) Next, a procedure of attaching the arm piece 30 will be described with reference to
(36) As described above, the first flowpath 81, the second flowpath 82, and the third flowpath 83 are formed in the washer nozzle 50, and these flowpaths as a whole extend three-dimensionally. Further, the fitting groove 51 which extends in the same direction as the first flowpath 81 and into which the arm piece 30 is fitted is formed in the washer nozzle 50.
(37) Therefore, when the arm piece 30 is fitted into the fitting groove 51, it is possible to arrange the hose 60 connected to the washer nozzle 50 to overlap with respect to the arm piece 30 in the wiping direction Z that intersects the longitudinal direction X. Thus, the entire windshield wiper arm 1 can be prevented from becoming bulky in the vertical direction Y that intersects the longitudinal direction X and the wiping direction Z respectively, and the appearance can be improved.
(38) In addition, since the second flowpath 82 includes the first opening 82A, the second flowpath 82 can be easily formed. Further, since the third flowpath 83 includes the second opening 83A, the third flowpath 83 can be easily formed. Furthermore, since the first spray nozzle 92 is mounted on the second opening 83A, the spray direction of the washer fluid from the washer nozzle 50 can be adjusted as desired.
(39) Further, by fitting the protrusion 31 formed on the outer surface of the arm piece 30 into the recess 52 formed on the inner surface of the fitting groove 51, the arm piece 30 can be tightly fitted into the fitting groove 51. In addition, the washer nozzle 50 can be easily formed at low cost. Moreover, since the recess 52 of the fitting groove 51 is open in the longitudinal direction X, by setting the pulling direction of the core mold to the longitudinal direction X for forming the fitting groove 51, the recess 52 can be easily formed on the inner surface of the fitting groove 51.
(40) Nevertheless, the technical scope of the invention is not limited to the above-described embodiment, and various modifications can be made without departing from the spirit of the invention.
(41) For example, the above-described embodiment illustrates a configuration in which the second flowpath 82 includes the first opening 82A, and the closure cap 91 is mounted on the first opening 82A. However, the invention is not limited to such a configuration. The second flowpath 82 may not include the first opening 82A. Moreover, the above-described embodiment illustrates a configuration in which the third flowpath 83 includes the second opening 83A that is open toward the wiping surface S. However, the invention is not limited to such a configuration. The third flowpath 83 may not include the second opening 83A.
(42) Further, the above-described embodiment illustrates a configuration in which the recess 52 is formed on the inner surface of the fitting groove 51, and the protrusion 31 that is fitted into the recess 52 is formed on the outer surface of the arm piece 30. However, the invention is not limited to such a configuration. The recess 52 may not be formed on the inner surface of the fitting groove 51, and the protrusion 31 may not be formed on the outer surface of the arm piece 30.
(43) In addition, the above-described embodiment illustrates a configuration in which the washer nozzle 50 is formed of a synthetic resin material, and the recess 52 of the fitting groove 51 is open in the longitudinal direction X. However, the invention is not limited to such a configuration. The washer nozzle 50 may be formed of other materials such as a metal material, and the recess 52 may not be open in the longitudinal direction X.
(44) It is possible to appropriately replace the components in the above-described embodiment with known components without departing from the spirit of the invention, and it is also possible to appropriately combine the above-described modified examples.