Apparatus for additive manufacturing and use of the apparatus
An apparatus for additive manufacturing includes a platform comprising a fixing device for fixing a component to the platform, wherein the platform is configured to vary an orientation of the component over an angle of at least 360° according to at least one spatial direction, and an actuation device for mechanically actuating the platform at a predefined frequency.
1. An apparatus for additive manufacturing, comprising: a platform comprising a fixing mechanism for fixing a component of a flow path of a gas turbine to the platform, wherein the platform is configured to vary an orientation of the component over an angle of at least 360° according to two orthogonal spatial directions while the component is fixed to the platform via the fixing mechanism, an actuation mechanism for mechanically actuating the platform to vary the orientation of the component wherein the actuation mechanism comprises a first vibration generator being configured for actuating a powdery base material at a first frequency and a second vibration generator being configured for actuating the powdery base material at a second frequency being different from the first frequency, wherein the first frequency is chosen from a first frequency range and the second frequency is chosen from a second frequency range and wherein the first frequency range and the second frequency range are disjunct, and a blocking mechanism being configured such that, during a variation of the orientation of the platform, the platform is engageable via a snap-mechanism for a blocking of the platform with respect to the actuation mechanism, and wherein the apparatus is configured such that, by the mechanical actuation of the platform, the powdery base material contained in a cavity of the component being fixed to the platform is removeable from the cavity.
2. The apparatus according to claim 1 , wherein the actuation mechanism is driven by air pressure.
3. The apparatus according to claim 1 , wherein the actuation mechanism is driven by piezoelectric and/or electromechanical mechanism, or an unbalanced motor.
4. The apparatus according to claim 1 , wherein the first vibration generator and the second vibration generator are independently controllable.
5. The apparatus according to claim 1 , wherein the fixing mechanism comprises a damping mechanism which is configured to prevent a transfer of vibrations from the component to the actuation mechanism.
6. A method for removing of a powdery base material from a cavity of an additively assembled component, comprising:
using the apparatus according to claim 1 to remove the powdery base material by the mechanical actuation of the platform.