Venting Device with Splash Guard and Power Tool with such a Venting Device
20210121923 · 2021-04-29
Inventors
- Philipp Werner (Waiblingen, DE)
- Jens Knauß (Remshalden, DE)
- Yannik Baumhackl (Kirchberg an der Murr, DE)
- David Beck (Winnenden, DE)
Cpc classification
F24F13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K7/2089
ELECTRICITY
B05B12/32
PERFORMING OPERATIONS; TRANSPORTING
B08B3/026
PERFORMING OPERATIONS; TRANSPORTING
B05B15/14
PERFORMING OPERATIONS; TRANSPORTING
B08B13/00
PERFORMING OPERATIONS; TRANSPORTING
F24F7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K5/0214
ELECTRICITY
International classification
Abstract
A venting device with a splash guard for deflection of splashing water entering the interior of the venting device has slats with a front section arranged at the exterior. Venting slots are formed between the front sections. At least one of the slats has a deflection section arranged at the interior and a central section connecting deflection section and front section. The front section and the deflection section are angled relative to the central section. The front section of the at least one slat in the operating position of the venting device extends from the central section toward the top side. The deflection section extends in the operating position from the central section toward the bottom side. The deflection section has a region oriented at an angle of less than 90° relative to the central section. A power tool with such a venting device is provided.
Claims
1. A venting device with a splash guard for at least partial deflection of splashing water advancing from an exterior of the venting device in a direction toward an interior of the venting device, the venting device comprising: slats, each comprising a front section arranged at the exterior, wherein venting slots are formed between the front sections; wherein at least one of the slats comprises a deflection section arranged at the interior and further comprises a central section, wherein the deflection section is connected by the central section to the front section, wherein the front section is angled relative to the central section, and wherein the deflection section is angled relative to the central section; wherein the venting device comprises an operating position and the venting device comprises a top side and a bottom side, relative to a vertical direction, in the operating position; wherein the front section of said at least one slat in the operating position extends from the central section in a direction toward the top side; wherein the deflection section of said at least one slat in the operating position extends from the central section in a direction toward the bottom side and wherein the deflection section comprises a region that is oriented at an angle of less than 90° relative to the central section.
2. The venting device according to claim 1, wherein the region of the deflection section and the central section are positioned at an angle of less than 60° relative to each other.
3. The venting device according to claim 1, wherein the deflection section at least partially overlaps a correlated venting slot in a viewing direction from the exterior to the interior.
4. The venting device according to claim 1, wherein the central section and the deflection section comprise a common surface, wherein the common surface is facing the exterior, and wherein the common surface has a concave cross-sectional shape when viewed in a cross section perpendicular to a longitudinal direction of said at least one slat.
5. The venting device according to claim 4, wherein the concave cross-sectional shape of the common surface follows a circular arc line.
6. The venting device according to claim 1, wherein the central section in the operating position extends transversely or perpendicularly to the vertical direction.
7. The venting device according to claim 1, wherein a plurality of said at least one slat, each provided with the deflection section and the central section, are provided.
8. The venting device according to claim 7, wherein at least one of the deflection sections comprises an outer surface facing the exterior and is shaped and arranged such that, in the operating position, water can drip from the outer surface onto the central section of the neighboring slat.
9. The venting device according to claim 7, wherein the plurality of said at least one slat are arranged in a stair arrangement.
10. The venting device according to claim 7, wherein at least one of the deflection sections comprises an inner surface facing the interior and is shaped such that in the operating position water can drip from the inner surface onto the neighboring slat.
11. The venting device according to claim 7, wherein the central sections of the plurality of said at least one slat in the operating position are arranged adjacent to each other at least in sections thereof in the vertical direction.
12. The venting device according to claim 11, wherein the central sections are arranged parallel adjacent to each other at least in sections thereof.
13. The venting device according to claim 11, wherein the plurality of said at least one slat include a first slat and a second slat, wherein the central section of the first slat comprises a first surface facing the exterior and wherein the central section of the second slat comprises a second surface facing the exterior, wherein the second surface is spaced apart at a first distance from the first surface, and wherein at least the front section of the second slat extends across a front region amounting to at least 30% of the first distance.
14. The venting device according to claim 13, wherein the plurality of said at least one slat include a third slat, wherein the central section of the third slat comprises a third surface facing the exterior, wherein the second surface comprises a second distance relative to the third surface, and wherein at least the deflection section of the second slat extends across a deflection region amounting to at least 30% of the second distance.
15. The venting device according to claim 7, wherein the plurality of said at least one slat have the same shape.
16. A power tool comprising: a venting device with a splash guard for at least partial deflection of splashing water advancing from an exterior of the venting device in a direction toward an interior of the venting device, the venting device comprising: slats, each comprising a front section arranged at the exterior, wherein venting slots are formed between the front sections; wherein at least one of the slats comprises a deflection section arranged at the interior and further comprises a central section, wherein the deflection section is connected by the central section to the front section, wherein the front section is angled relative to the central section, and wherein the deflection section is angled relative to the central section; wherein the venting device comprises an operating position and the venting device comprises a top side and a bottom side, relative to a vertical direction, in the operating position; wherein the front section of said at least one slat in the operating position extends from the central section in a direction toward the top side; wherein the deflection section of said at least one slat in the operating position extends from the central section in a direction toward the bottom side and wherein the deflection section comprises a region that is oriented at an angle of less than 90° relative to the central section; wherein the power tool is configured to be positioned in a position of use on a flat ground; wherein the venting device is in an operating position when the power tool is in the position of use.
17. The power tool according to claim 16, wherein the power tool, relative to the flat ground, comprises a top end and a bottom end, wherein the venting device is arranged at the bottom end of the power tool.
18. The power tool according to claim 16, wherein the power tool further comprises a housing with a housing wall, wherein the venting device is part of the housing wall, wherein the housing interior of the housing is arranged at the interior of the venting device, wherein the exterior of the venting device is positioned outside of the housing, and wherein the power tool is configured to suck in air through the venting device from the exterior to the interior.
19. The power tool according to claim 16, wherein the power tool further comprises at least one electrically operated component, wherein the venting device in the position of use of the power tool is arranged at least partially below all of the at least one electrically operated component.
20. The power tool according to claim 16, wherein the power tool is a high-pressure washer.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0025] An embodiment of the invention will be explained in the following with the aid of the drawing.
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0037]
[0038] As illustrated in
[0039] In the position of use 70 of the power tool 1, the venting device 51 is arranged in an operating position 40.
[0040] As illustrated in
[0041]
[0042] The section illustrations of
[0043] The power tool 51 comprises at least one electrically operated component 57. In the embodiment, the at least one electrically operated component is a pump. The pump generates the required pressure for the cleaning liquid that is to be sprayed by the high-pressure washer. The venting device 1 in the position of use 70 is at least partially arranged below all electrically operated components 57. The lowest point of the venting device 1 is positioned below all electrically operated components 57. In this way, it is prevented that splash water penetrating through the venting slots 4 of the venting device 1 can drip from above onto electrically operated components 57. For cooling the at least one electrically operated component 57, the power tool 51 sucks in air from the exterior 2 through the venting device 1 to the interior 3 of the venting device 1.
[0044] As illustrated in
[0045] The slats 11, 21, 31 comprise a deflection section 13, 23, 33 at the interior 3. The first slat 11 comprises the first deflection section 13. The second slat 21 comprises the second deflection section 23. The third slat 31 comprises the third deflection section 33. The deflection section 13, 23, 33 is connected by a central section 14, 24, 34 of the slat 11, 21, 31 to the front section 12, 22, 32. The first slat 11 comprises the first central section 14. The second slat comprises the second central section 24. The third slat comprises the third central section 34. The front section 12, 22, 32 is angled relative to the central section 14, 24, 34. In this context, “angled” does not necessarily mean that an edge is formed between the front section and the central section. The term “angled” is to be understood such that a contact plane can be positioned at the front section from the exterior, and that a contact plane can be positioned at the central section, also from the exterior, and that the two contact planes are positioned at a slant relative to each other. The front section 12, 22, 32 in the embodiment is angled relative to the central section 14, 24, 34 in that the front section 12, 22, 32 passes by a rounded or curved shape into the central section 14, 24, 25.
[0046] The deflection section 13, 23, 33 is angled relative to the central section 14, 24, 34. The meaning of the term “angled” in this context is to be understood analog to the use of this term in connection with the front section and the central section.
[0047] The slat 11, 21, 31 comprises the front section 12, 22, 32, the deflection section 13, 23, 33, and the central section 14, 24, 34.
[0048] The venting device 1 comprises, as illustrated in
[0049] In the operating position 40, the front section 12, 22, 32 extends from the central section 14, 24, 34 in the direction toward the top side 5 of the venting device 1. In the operating position 40 of the venting device 1, the front section 12, 22, 32 is angled away from the central section 14, 24, 34 in the direction toward the top side 5 of the venting device 1. In the operating position 40 of the venting device 1, the deflection section 13, 23, 33 extends from the central section 14, 24, 34 in the direction toward the bottom side 6. In the operating position 40 of the venting device 1, the deflection section 13, 23, 33 is angled away from the central section 14, 24, 34 in the direction toward the bottom side 6 of the venting device 1. Due to the plurality of adjacently arranged slats 11, 21 and 31, a splash guard is formed for at least partial diversion of splashing water penetrating from the exterior 2 of the venting device 1 in the direction toward the interior 3 of the venting device 1. As illustrated in
[0050] The deflection section 13, 23, 33 overlaps at least partially a correlated venting slot 4 in the viewing direction 49 from the exterior 2 toward the interior 3. The viewing direction 49 is oriented perpendicularly to the longitudinal direction 60. The viewing direction 49 in the operating position 40 of the venting device 1 is perpendicular to the vertical direction 50. In the operating position 40 of the venting device 1, the viewing direction 49 extends parallel to the flat surface of the ground 7. The viewing direction corresponds to a demolding direction for removing the venting device 1 from the mold. In this context, one of two molds for the venting device 1 is removed in the direction of the demolding direction.
[0051] As illustrated in
[0052]
[0053] The deflection section 13, 23, 33 comprises an outer surface 17, 27, 37. The first deflection section 13 comprises the first outer surface 17. The second deflection section 23 comprises the second outer surface 27. The third deflection section 33 comprises the third outer surface 37. The outer surface 17, 27, 37 is facing the exterior 2 of the venting device 1. The central section 14, 24, 34 comprises a surface 19, 69, 39. The surface 19, 69, 39 is facing the exterior 2 of the venting device 1. The first central section 14 comprises the first surface 19. The second central section 24 comprises the second surface 69. The third central section 34 comprises the third surface 39. The surface 19, 69, 39 is planar.
[0054] The region 15, 25, 35 of the deflection section 13, 23, 33 is at least a part of the outer surface 17, 27, 37 of the deflection section 13, 23, 33 which is facing the exterior 2. It can also be provided that the region is the entire outer surface of the deflection section which is facing the exterior. The angle α1, α2, α3 is measured between the outer surface 17, 27, 37 of the region 15, 25, 35 facing the exterior 2 and the surface 19, 69, 39 of the central section 14, 24, 34 facing the exterior 2.
[0055] As illustrated in
[0056] The third surface 39 of the third central section 34 of the third slat 31 comprises a second distance d2 relative the second surface 69 of the second central section 24 of the second slat 21. The second distance d2 is measured in the operating position 40 of the venting device 1 in the direction perpendicular to the surface of the ground 7. The second distance d2 is measured in the operating position 40 of the venting device 1 in the direction of the vertical direction 50.
[0057] The deflection section 13, 23 extends in the operating position 40 relative to the vertical direction 50 across a deflection region 20, 30. The first deflection section 13 extends across the first deflection region 20. The second deflection section 23 extends across the second deflection region 30. The deflection section 13, 23 extends, beginning at the surface 19, 69 of the central section 14, 24 facing the exterior 2, in the direction toward the bottom side 6 of the venting device 1. A deflection height b1, b2 of the deflection region 20, 30 which is measured in vertical direction 50 in the operating position 40 amounts to at least 20%, in the embodiment at least 30%, of the distance d1, d2. The first deflection section 13 comprises the first deflection height b1. The second deflection section 23 comprises the second deflection height b2. The first deflection height b1 amounts to at least 20%, in the embodiment at least 30%, of the first distance d1. The second deflection height b2 amounts to at least 20%, in the embodiment at least 30%, of the second distance d2.
[0058] The region 15, 25 of the deflection section 13, 23 extends in the operating position 40 of the venting device 1 in vertical direction 50 across at least 50%, in the embodiment across at least 60%, of the deflection region 20, 30. The first region 15 of the first deflection section 13 extends across at least 50%, in the embodiment across at least 60%, of the first deflection region 20. The second region 25 of the second deflection section 23 extends across at least 50%, in the embodiment across at least 60%, of the second deflection region 30. The first region 15 of the first deflection section 13 extends in vertical direction 50 across at least 10%, in the embodiment across at least 15%, of the first distance d1. The second region 25 of the second deflection section 23 extends in vertical direction 50 across at least 10%, in the embodiment across at least 15% of the second distance d2.
[0059] The central section 14, 24, 34 and the deflection section 13, 23, 33 comprise a common surface 16, 26, 36 which is facing the exterior 2 of the venting device 1. The first central section 14 and the first deflection section 13 comprise the first common surface 16. The second central section 24 and the second deflection section 23 comprise the second common surface 26. The third deflection section 34 and the third deflection section 33 comprise the third common surface 36. The common surface 16, 26, 36 is concave in cross section perpendicular to the longitudinal direction 60. The at least one slat 11, 21, 31 extends along the longitudinal direction 60. In cross section perpendicular to the longitudinal direction 60 of the at least one slat 11, 21, 31, the common surface 16, 26, 36 follows in sections thereof a circular arc line. The common surface 16, 26, 36 of the deflection section 13, 23, 33 and of the central section 14, 24, 34 is formed by the outer surface 17, 27, 37 of the deflection section 13, 23, 33 and the surface 19, 69, 39 of the central section 14, 24, 34.
[0060] The central section 14, 24, 34 of the slat 11, 21, 31 extends in the operating position 40 of the venting device 1 transverse to the vertical direction 50, in the embodiment perpendicular to the vertical direction 50. A plurality of slats 11, 21, 31 with a central section 14, 24, 34 and a deflection section 13, 23, 33 are provided. At least one deflection section 13, 23 is formed and arranged such that in the operating position 40 of the venting device 1 water can drip from the outer surface 17, 27 of the deflection section 13, 23 which is facing the exterior 2 of the venting device 1 onto the central section 24, 34 of a neighboring slat 21, 31. In the operating portion 40, water from the first outer surface 17 of the first deflection section 13 can drip onto the second center section 24 of the neighboring second slat 21. In the operating position 40, water from the second outer surface 27 of the second deflection section 23 can drip onto the third central section 34 of the neighboring third slat 31.
[0061] The plurality of slats 11, 21, 31 are arranged in a stair-like arrangement. In the direction perpendicular to a plane which is defined by the vertical direction 50 and the longitudinal direction 60, the first slat 11, the second slat 21, and the third slat 31 are displaced relative to each other; this can be seen also in
[0062] As illustrated in
[0063] In the operating position 40 of the venting device 1, the central sections 14, 24, 34 of the plurality of slats 11, 21, 31 are positioned in vertical direction 50 at least in sections thereof adjacent to each other, in the embodiment parallel to each other in sections thereof. The first slat 11 is positioned in sections thereof parallel adjacent to the second slat 21. The second slat 21 is positioned in sections thereof parallel adjacent to the third slat 31. The plurality of slats 21, 31 have the same shape. The second slat 21 and the third slat 31 have the same shape.
[0064] The plurality of slats 11, 21, 31 comprise the first slat 11 and the second slat 21. At least the second front section 22 of the second slat 21 extends across a second front region 29 of at least 30%, in the embodiment of at least 50%, of the first distance d1.
[0065] The plurality of slats 11, 21, 31 comprise the third slat 31. The second deflection region 30 extends across at least 30% of the second distance d2.
[0066] The second slat 21 comprises a height h2 measured in the operating position 40 in vertical direction 50. The second front region 29 extends in vertical direction 50 in the operating position 40 across at least 40%, in the embodiment across at least 50%, of the second height h2 of the second slat 21. The second deflection region 30 of the second deflection section 23 of the second slat 21 extends in the operating position 40 of the venting device 1 in vertical direction 50 across at least 20%, in the embodiment across at least 30%, of the second height h2 of the second slat 21. The region 25 of the second deflection section 23 extends in vertical direction 50 across at least 15%, in the embodiment at least 20%, of the second height h2 of the second slat 21.
[0067] The specification incorporates by reference the entire disclosure of European priority document 19 205 170.4 having a filing date of Oct. 24, 2019.
[0068] While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it will be understood that the invention may be embodied otherwise without departing from such principles.