Electric blower apparatus having a noise cover
20230189725 · 2023-06-22
Inventors
- Roland Mandel (Stuttgart, DE)
- Sebastian Piekarek (Stuttgart, DE)
- Markus Koenig (Leinfelden-Echterdingen, DE)
- Andrea Hein (Ehningen, DE)
- Markus Zauner (Fellbach, DE)
- Dennis Karl (Freiberg am Neckar, DE)
- Thilo Stuerzel (Remshalden, DE)
- Mathias Schmitz (Waiblingen, DE)
Cpc classification
F04D29/4226
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/703
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/51
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The disclosure relates to an electric blower apparatus having a blower spiral which has a first axial end wall, a second axial end wall and a blower air outlet. An electric motor which drives a fan wheel rotating in the blower spiral is held on the first axial end wall, the fan wheel inducting ambient air by way of an intake opening in the second axial end wall. A cover element, the cover surface thereof being configured so as to be larger than the air inlet surface of the intake opening, is disposed in front of the intake opening. To induct a large quantity of ambient air with little noise, it is provided that the cover element is configured as a cover plate, wherein an annular gap which forms the intake channel for the direct access of ambient air is configured between the plate edge and the blower spiral.
Claims
1. An electric blower apparatus comprising: a blower spiral having a first axial end wall, a second axial end wall, and a blower air outlet; an electric motor disposed on said first axial end wall; a fan wheel configured to rotate in said blower spiral; said electric motor having a drive shaft connected to said fan wheel; said second axial end wall of said blower spiral defining an intake opening; said intake opening defining an air inlet surface; a cover element disposed in front of said air inlet surface; said cover element defining a cover surface disposed at a spacing (z) from said air inlet surface; said cover surface being configured so as to be larger than said air inlet surface; said intake opening being connected to an air intake channel configured to feed ambient air from an environment of the electric blower apparatus; said cover element being configured as a cover plate having an encircling outer plate edge; said encircling outer plate edge and said blower spiral mutually defining an annular gap between each other; and, said annular gap forming said intake channel for direct access of ambient air from the environment of the blower apparatus into said intake opening.
2. The blower apparatus of claim 1 further comprising an insulation element disposed between said cover plate and said intake opening.
3. The blower apparatus of claim 2, wherein said cover plate is configured as a support of said insulation element.
4. The blower apparatus of claim 1, wherein said cover plate has a base; and, said encircling outer plate edge is raised in relation to said base.
5. The blower apparatus of claim 4, wherein said base is at a greater spacing (z1) from said air inlet surface of said intake opening than said encircling outer plate edge.
6. The blower apparatus of claim 1, wherein said cover plate is curved.
7. The blower apparatus of claim 6, wherein said cover plate has a concave side facing said intake opening.
8. The blower apparatus of claim 1, wherein said drive shaft defines a rotation axis; and, said rotation axis is perpendicular to said base of said cover plate.
9. The blower apparatus of claim 1, wherein said blower spiral is held on a back plate; and, said cover plate is inclined by an inclination angle in relation to said back plate.
10. The blower apparatus of claim 9, wherein said inclination angle lies in a range between 3° and 20°.
11. The blower apparatus of claim 9, wherein said inclination angle is 10°.
12. The blower apparatus of claim 1, wherein said intake opening defines an intake opening diameter; said cover plate defines a maximum diameter (S) of said cover plate measured at a height level of said encircling outer plate edge; and, said maximum diameter (S) is 1.5 to 3.5 times said intake opening diameter.
13. The blower apparatus of claim 1, wherein said intake opening defines an intake opening diameter; said cover plate defines a maximum diameter (S) of said cover plate measured at a height level of said encircling outer plate edge; and, said maximum diameter (S) is 2.6 times said intake opening diameter.
14. The blower apparatus of claim 1, wherein said annular gap extends across a circumferential angle (W) of up to 360° and said intake channel extends across at least 60% to 80% of said circumferential angle (W).
Description
BRIEF DESCRIPTION OF DRAWINGS
[0015] The invention will now be described with reference to the drawings wherein:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023] The embodiment of a blower apparatus 1 illustrated in
[0024] The backpack blower apparatus 1 includes a back plate 2 which via schematically illustrated shoulder straps 3 and a schematically illustrated hip belt 4 is established on the back of a user. The back plate 2 is part of a carrier 5 which is provided with a base plate 6. The back plate 2 and the base plate 6 form the carrier 5 which in the lateral view is of an L-shaped configuration. The base plate 6 advantageously has a central opening 68. Ambient air from below the blower apparatus 1 can be inducted by way of the opening 68. The base plate 6 can expediently be configured as a bracket, in particular as a U-shaped bracket. The ends of the bracket are established on the back plate 2. The bracket is advantageously composed of a metallic material or of a metal alloy.
[0025] A blower spiral 10, which has an outlet 11 for connecting a blower tube 12, is held on the back plate 2. A handle 13 for holding and guiding the blower tube 12 is established on the blower tube 12. The blower tube 12 has a rear rigid tube section 14 for connecting to the outlet 11 of the blower spiral 10. The tube section 14 is expediently held so as to be rotatable in the outlet 11. A flexible tube section 16, which is connected to a front rigid tube section 15, is connected to the rear tube section 14. The handle 13 is established on the front tube section 15. The front tube section 15 is pivotable in all spatial directions relative to the rear tube section 14.
[0026] Operating elements, for example a switching lever 17 (for example with the function of an “accelerator”), a switching lever lock 18, or further suitable operating elements 19, are provided in the handle 13. The operating elements by way of a connecting line 7 are connected to control electronics 40 for operating an electric motor 30 (
[0027] As is shown in
[0028] The fan wheel 8 is in the embodiment shown driven by the electric motor 30 which is held in the installation space 31 on the first axial end wall 20 of the blower spiral 10. The drive shaft 34 of the electric motor 30 protrudes through a shaft opening 21 in the first axial end wall 20 of the blower spiral 10 and into the center 26 of the blower spiral 10. The inwardly protruding end section 35 of the drive shaft 34 is connected in a rotationally fixed manner to the fan wheel 8.
[0029] An intake opening 9 by way of which ambient air is inducted axially into the fan wheel 8 and is conveyed radially into the spiral channel 24 is configured in the second axial end wall 22. The spiral channel 24 widens from a first end 28 to the second end 29 of the spiral channel 24 (
[0030] The electric motor 30 is a so-called external rotor motor, that is, the stator 36 lies within the rotor 37. The drive shaft 34, which is connected to the rotor 37, penetrates the stator 36. The drive shaft 34 is mounted in a central sleeve of a support flange of the electric motor 30 and is preferably held so as to be axially secured.
[0031] The electric motor 30 can be received in a motor housing 39 which is established on, in particular plug-fitted to, an annular housing mount 27 of the axial end wall 20. The plug connection between the motor housing 39 and the housing mount 27 can include a form-fitting housing safety lock. The motor housing 39 is advantageously open at the end side, and is in particular closed by the axial end wall 20 of the blower spiral 10.
[0032] The intake opening 9 has an air inlet surface 42 (
[0033] The arrangement is chosen such that the rotation axis 33 of the drive shaft 34 is perpendicular to the air inlet surface 42. In particular, the rotation axis 33 of the drive shaft 34 is perpendicular on the air inlet surface 42. The rotation axis 33 of the drive shaft 34 intersects the air inlet surface 42 in the center point 41 of the intake opening 9.
[0034] Disposed in front of the intake opening 9 of the blower spiral 10 is a cover element 50 which in the embodiment shown is configured as a cover plate 51. The cover surface 52 of the cover element 50, or of the cover plate 51, respectively, is configured so as to be larger than the air inlet surface 42 of the intake opening 9. The cover plate 51 has a spacing z from the air inlet surface 42 of the intake opening 9. The cover plate 51 has an outer plate edge 53. A gap, in particular an annular gap 54, is configured between the plate edge 53 of the cover plate 51 and the blower spiral 10, in particular the spiral channel 24 of the blower spiral 10. The annular gap 54 forms an intake channel 80 for the operating air of the blower apparatus 1. Direct access of ambient air from the environment 55 of the blower apparatus 1 to the intake opening 9 of the blower spiral 10 is provided by way of the annular gap 54.
[0035] As is shown in particular in
[0036] As is shown in particular in
[0037] The cover plate 51 is expediently disposed in such a manner that the center point 57 thereof is higher by a spacing u than the center point 41 of the intake opening 9, or of the air inlet surface 42, respectively. As is shown in
[0038] The cover plate 51 is in particular configured in such a manner that the base 56 thereof has a larger spacing z1 from the intake opening 9, or the air inlet surface 42 thereof, respectively, than the plate edge 53 which is at a spacing z2 from the intake opening 9, or the air inlet surface 42 thereof, respectively. The cover plate 51 is preferably configured having a raised plate edge 53. The configuration is chosen in a simple manner such that the cover plate 51 is configured so as to be curved, wherein the concave side of the curvature faces the intake opening 9.
[0039] In a preferred embodiment it is provided that an acoustic insulation element 60 is disposed on the inside of the cover plate 51. The plate edge 53 is expediently configured in such a manner that the insulation element 60 is held on the cover plate 51 by the plate edge 53, without additional fastening means being required. The cover plate 51 forms a support of the insulation element 60. In the embodiment shown, the plate edge 53 constricts the concavely curved inside of the cover plate 51 such that the insulation element 60 is reliably held on the inside of the cover plate 51 by the plate edge 53. The insulation element 60 is advantageously composed of an insulation mat 61, in particular a single-part insulation mat, and is held so as to be fixed to the cover plate 51.
[0040] As a result of the cover plate 51, and in particular of the insulation element 60 disposed on the cover plate 51, the emission of noise from the intake opening 9 to the environment is reduced. In a particular refinement of the disclosure, it is provided that the cover plate 51 is not disposed parallel to the back plate 2 but is provided so as to be inclined by an inclination angle 90 in relation to the back plate 2. The inclination angle 90 is in particular between 3° to 20°. In an advantageous embodiment, the inclination angle is 10°.
[0041] As is shown in
[0042] By way of the inclined arrangement at an inclination angle 90 or 91, respectively, it is achieved that noise emanating from the annular gap 54 has a direction that leads away from the head of a user carrying the blower apparatus on his/her back. For the user carrying the blower apparatus on his/her back the blower apparatus is subjectively quieter than if the inclination angle 90 or 91, respectively, were chosen to be 0°.
[0043] The cover plate 51 has fastening elements 58 which are in particular integrally attached, wherein a fastening element 58 is preferably configured as a fastening foot 59. A cutout 48 by way of which ambient air can enter the annular gap 54 is expediently provided in a fastening element 58. The effective inflow surface of the annular gap 54 is only slightly affected.
[0044] As is shown in
[0045] As is shown in particular in
[0046] According to an embodiment of the disclosure, the annular gap 54 between the plate edge 53 and the blower spiral 10 is provided with a protective mesh 70. The protective mesh 70 includes a multiplicity of ribs 65 which are disposed at a mutual spacing in the circumferential direction of the plate edge 53. The spacings between the ribs 65 are preferably of identical configuration. The ribs 65 are in particular aligned radially in relation to a center 66 of the cover element 50 (
[0047] The axial extent 74 of an axial cover section 72 is configured so as to be dissimilarly sized across the circumference of the cover plate 51, as is shown in
[0048] The protective mesh 70 assembled from the cover sections 71 and 72, and the fastening elements 58 of the cover element 50, conjointly with the cover plate 51 are of an integral configuration. The cover element 50 is in particular an integral injection-moulded part which by the fastening elements 58 is established on the blower spiral 10. The annular gap 54 protected by the protective mesh 70 forms an intake channel 80 by way of which the intake opening 9 in the axial end wall 22 of the blower spiral 10 is connected directly to the ambient air of the environment 55 of the blower apparatus 1. The intake channel 80 extends substantially across the entire circumference of the cover plate 51, having a circumferential angle of up to 360°. The intake channel 80 in the circumferential direction has multiple interruptions as a result of the fastening feet 59. The entry cross section of the intake channel 80 is in each case impeded by one fastening foot 59 in only a very small circumferential angle of 3° to 10°, in particular 6° . In the case of the number of seven fastening elements 58 shown, the intake channel 80 is interrupted across an entire circumferential angle of approx. 20° to 70°, in particular 40° . In the embodiment shown, the intake channel 80 extends across a circumferential angle W of 280° to 340°, in particular across 318°.
[0049] It is understood that the foregoing description is that of the preferred embodiments of the invention and that various changes and modifications may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.