ADDITIVE MANUFACTURING OF GEARS
A method of manufacturing gear teeth by additive manufacturing. Each tooth ( 20 ) is constructed from a predetermined number of layers ( 30, 31, 32 ) of material (e.g. steel) with each layer being formed by a predetermined number of rows ( 33 - 41 ) of material preferably applied by a welding head ( 13 ) or equivalent apparatus.
1 . A method of forming a gear tooth by additive manufacturing, said method comprising:
applying a first layer of gear tooth material to a base, said first layer comprising two outer rows of said material and inside rows of said material extending between said outer rows,
applying one or more successive layers of gear tooth material on said first layer, each of said successive layers comprising two outer rows of said material and inside rows of said material extending between said outer rows, said one or more successive layers including a final successive layer defining a topland of said gear tooth.
2 . The method of claim 1 wherein the outside rows and the inside rows are applied in the lengthwise direction of said gear tooth.
3 . The method of claim 1 further comprising a finishing operation on the additive manufactured gear tooth.
4 . The method of claim 1 wherein said base comprises a gear blank.
5 . The method of claim 1 wherein said base comprises a partial gear tooth.
6 . The method of claim 1 wherein said applying comprises welding.
7 . The method of claim 6 wherein said welding is conducted with a welding head having a welding head axis and moving in a welding direction.
8 . The method of claim 7 wherein the welding head axis is oriented to be aligned with a tooth surface normal vector.
9 . The method of claim 7 wherein the welding head axis is oriented to be tilted in a plane defined by a tooth surface normal vector and the welding direction.
10 . The method of claim 1 wherein the material of said first layer and the material of said successive layers are the same as the base.
11 . The method of claim 1 wherein the material of at least one of said first layer and said successive layers is different than the base.
12 . The method of claim 1 wherein the material of the outside rows is applied at a lower feed rate than the feed rate at which material of the inside rows is applied.
13 . A multi-axis machine operable to manufacture a gear, said machine comprising:
a rotatable workpiece spindle,
a rotatable tool spindle,
a plurality of axes of movement whereby a tool positioned on said tool spindle and a workpiece positioned on said workpiece spindle are movable with respect to one another to manufacture a gear,
said machine further comprising an additive manufacturing apparatus operable to produce a gear tooth, said apparatus being operable via said plurality of axes of movement to apply a first layer of gear tooth material to a base, said first layer comprising two outer rows of said material and inside rows of said material extending between said outer rows;
said apparatus being further operable via said plurality of axes of movement to apply one or more successive layers of gear tooth material on said first layer, each of said successive layers comprising two outer rows of said material and inside rows of said material extending between said outer rows, said one or more successive layers including a final successive layer defining a topland of said gear tooth.
14 . The machine of claim 13 wherein said additive manufacturing apparatus is positioned on a housing located about said tool spindle, said housing being non-rotatable with respect to the rotatable tool spindle.
15 . The machine of claim 13 wherein said additive manufacturing apparatus comprises a welding head.