In-process, layer-by-layer non-destructive testing of additive manufactured components using linear and nonlinear vibrational resonance
Provided is an additive manufacturing system capable of performing in-process, layer-by-layer non-destructive testing, the additive manufacturing system including: a plate for producing a part thereon; a transducer attached to the plate and configured to induce vibrations in the part; and a laser vibrometer configured to detect a vibrational response of the part to determine whether defect and/or anisotropy exists within the part.
1. A method of measuring anisotropy within a part being created by an additive manufacturing system, the method comprising:
inducing vibrations within the part via a transducer below the part;
detecting a vibrational response of the part based on the induced vibrations via a laser vibrometer above the part; and
measuring anisotropy within the part during creation of the part and based on the vibrational response.
2. The method of claim 1 , wherein the additive manufacturing system is a powder bed fusion system.
3. The method of claim 1 , wherein the additive manufacturing system is a three-dimensional (3D) printer.
4. The method of claim 1 ,
wherein the inducing vibrations in the part comprises oscillating the part at multiple successive frequencies within a defined frequency band, and
wherein the detecting the vibrational response comprises detecting a magnitude and a phase of the vibration within the part.
5. The method of claim 1 ,
wherein the method further comprises determining whether a defect exists in the part,
wherein the inducing vibrations in the part comprises oscillating the part at one or more vibrational resonance modes of the part at multiple amplitudes, and
wherein the detecting the vibrational response comprises measuring a shift in a resonance frequency of the part based on the multiple amplitudes.
6. The method of claim 1 , wherein the measuring of anisotropy within the part comprises quantifying an elastic tensor of a material of the part.
7. A method of manufacturing a part by an additive manufacturing system, the method comprising:
producing a portion of the part by the additive manufacturing system, the produced portion being a layer of the part being manufactured by the additive manufacturing system;
inducing vibrations within the produced portion via a transducer below the part;
detecting a vibrational response of the produced portion based on the induced vibrations via a laser vibrometer above the part; and
measuring anisotropy within the produced portion based on the vibrational response.
8. The method of claim 7 , wherein the additive manufacturing system is a powder bed fusion system.
9. The method of claim 7 , wherein the additive manufacturing system is a three-dimensional (3D) printer.
10. The method of claim 7 ,
wherein the inducing vibrations in the produced portion comprises oscillating the produced portion at multiple successive frequencies within a defined frequency band, and
wherein the detecting the vibrational response comprises detecting a magnitude and a phase of the vibration within the produced portion.
11. The method of claim 7 ,
wherein the method further comprises utilizing nonlinear elastic wave spectroscopy to determine whether a defect exists within the produced portion,
wherein the inducing vibrations in the produced portion comprises oscillating the produced portion at one or more vibrational resonance modes of the produced portion at multiple amplitudes, and
wherein the detecting the vibrational response comprises measuring a shift in a resonance frequency of the produced portion based on the multiple amplitudes.
12. The method of claim 7 , further comprising:
adjusting a parameter of the additive manufacturing system to remedy any detected defects and/or anisotropy.
13. The method of claim 12 ,
wherein the adjusting is performed after the producing of the layer of the part and before producing another layer of the part.
14. The method of claim 7 , wherein the measuring of anisotropy within the produced portion comprises quantifying an elastic tensor of a material of the produced portion.