WHEEL FOR VEHICLES WITH RIBS OF ADDITIVE MATERIAL
20230347686 · 2023-11-02
Inventors
- Gabriele PERRIS MAGNETTO (Rivoli (Torino), IT)
- Paolo BARTOLI (Portovenere (La Spezia), IT)
- Giacomo GOTTA (Castellamonte (Torino), IT)
- Emanuele ZANOLLI (Torino, IT)
- Davide RONCO (Villanova d'Asti (Asti), IT)
- Giorgio GALLIO (Torino, IT)
Cpc classification
B60B3/002
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60B3/00
PERFORMING OPERATIONS; TRANSPORTING
B60B21/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A wheel for vehicles is provided. The wheel has a rim of sheet metal having on its axially outer side an outer flange, an outer bead seat, an outer retaining hump, and a rim well connected to the outer bead seat through the outer retaining hump. The wheel has a disc of sheet metal having a cover part and a connection part axially protruding from the cover part. The connection part of the disc is fixed to a radially inner surface of the rim. At least one formation of additive material is formed on at least one of the rim and the disc, the at least one formation defining a steep thickness change with respect to a surrounding region of sheet metal.
Claims
1. A wheel for vehicles, comprising: a rim of sheet metal, comprising on its axially outer side an outer flange, an outer bead seat, an outer retaining hump, and a rim well connected to the outer bead seat through the outer retaining hump, and a disc of sheet metal, comprising a cover part and a connection part axially protruding from the cover part, wherein the connection part of the disc is fixed to a radially inner surface of the rim, and wherein at least one formation of metal additive material deposited in a plurality of layers is formed on at least one of said rim and disc, said at least one formation defining a steep thickness change with respect to a surrounding region of sheet metal.
2. The wheel of claim 1, wherein said at least one formation comprises at least one rib of additive material deposited in a plurality of layers, said at least one rib defining a steep thickness change with respect to a surrounding region of sheet metal.
3. The wheel of claim 2, wherein said at least one rib comprises a plurality of ribs of additive material extending radially.
4. The wheel of claim 2, wherein said at least one rib comprises a rib extending circumferentially.
5. The wheel of claim 2, wherein said at least one rib comprises at least one rib arranged on an axially outer surface of the disc.
6. The wheel of claim 2, wherein said at least one rib comprises at least one rib arranged on an axially inner surface of the disc.
7. The wheel of claims 2, wherein said at least one rib comprises at least one rib arranged on a radially outer surface of the rim.
8. The wheel of claim 2, wherein said at least one rib comprises at least one rib arranged on a radially inner surface of the rim.
9. The wheel of claim 2, wherein said at least one rib is arranged in a region of the disc comprised between a flat hub mounting part and the connection part.
10. The wheel of claim 2, wherein said at least one rib extends from a region of the disc comprised between a flat hub mounting part and the connection part to a radially inner surface of the rim.
11. A method for producing a wheel for vehicles, the method comprising: providing a rim of sheet metal comprising on its axially outer side an outer flange, an outer bead seat, an outer retaining hump, and a rim well connected to the outer bead seat through the outer retaining hump, providing a disc of sheet metal comprising a cover part and a connection part axially protruding from the cover part, and fixing the connection part of the disc to a radially inner surface of the rim, the method further comprising forming at least one formation of metal material on at least one of said rim and disc by additive manufacturing, said at least one formation defining a steep thickness change with respect to a surrounding region of sheet metal.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0019] Features and advantages of the wheel according to the present invention will become clearer from the following detailed description of some embodiments of the present invention, made with reference to the accompanying drawings, provided purely for illustrative and non-limiting purposes, wherein:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION
[0027] In the following description, “axial direction” means a direction parallel to the wheel axis. The indications “inner” and “outer,” with respect to the axial direction, refer to the installation condition of the wheel on the vehicle, where “inner” means “toward the vehicle” and “outer” means “away from the vehicle.”
[0028] In
[0029] The wheel 1 comprises a rim 2 of sheet metal, e.g., steel or aluminum, and formed, for example, by rolling and welding, and a disc 3 of sheet metal, e.g., steel or aluminum, and formed, for example, by stamping and blanking.
[0030] The rim 2 conventionally comprises, in succession along the axial direction from the inside to the outside and connected to each other, an inner flange 21, an inner bead seat 22, an inner retaining hump 23, a rim well 24, an outer retaining hump 25, an outer bead seat 26, and an outer flange 27.
[0031] The disc 3 comprises a cover part 31, arranged on the axially outer side of the rim 2, and a peripheral connection part 32, protruding axially inward from the cover part 31 and inserted coaxially inside the rim 2. This peripheral connection part 32 is attached to a radially inner surface of the rim, such as by welding or crimping.
[0032] The cover part 31 of the disc 3 comprises a flat central portion 31a suitable for connection by bolts to an axle hub (not shown), and a curved profile portion 31b that connects the central portion 31a to the peripheral connection part 32 of the disc. In the example shown, the curved profile portion 31b defines a surface with symmetry of revolution about the central axis of the wheel and is provided with peripheral windows. In other embodiments, the curved profile portion of the disc may have a more complex geometry, such as spoked with large windows between the spokes. However, the geometry of this part is not essential to the invention.
[0033] At least one rib of additive material deposited in a plurality of layers (particularly of metal material) is obtained on at least one of the rim and the disc, defining a steep thickness change from a surrounding region of sheet metal. The least one rib thus defines a localized thickening in well-defined regions. The at least one rib may extend along any radial, circumferential and/or axial direction of the wheel and may be located on an axially outer surface of the disc, an axially inner surface of the disc, a radially outer surface of the rim, and/or a radially inner surface of the rim.
[0034] In the example in
[0035] In the example in
[0036] In the example in
[0037] In the example in
[0038] In this example, the ribs denoted as 43 are similar to those in
[0039] In the example in
[0040] In this example, the rib denoted as 44 extends circumferentially over a radially inner surface of the rim 2, specifically at the inner retaining hump 23.
[0041] In the example in
[0042] In the example in
[0043] The additional thickness contributed by the ribs 41, 42, 43, 44 and by the formation 45 may be for example equal to or greater than 20% of the nominal thickness t of the sheet metal.
[0044] The ribs and the formation are obtained by any known additive manufacturing technique, and thus involve forming the rib layer by layer on the concerned region of the disc and/or rim. Examples of additive manufacturing techniques that may be used include, but are not limited to, three-dimensional printing, direct energy deposition, material extrusion, and powder bed fusion. The ribs and the formation may be formed on the individual components of the wheel before they are assembled, or on the wheel once it is assembled.