Effects of defects on mechanical properties in metal additive manufacturing: A review focusing on X-ray tomography insights
Влияние дефектов на механические свойства при аддитивном производстве металлов: обзор с упором на данные рентгеновской томографии
2019-11-28
SCID: 54.1/yq7e7rab
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X-ray tomographyadditive manufacturing defectsmechanical properties effectsnon-destructive defect characterizationporosity (lack of fusion, metallurgical, keyhole pores)
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Abstract (AI)
X-ray tomography has emerged as a uniquely powerful and non-destructive tool to analyze defects in additive manufacturing. Defects include unintended porosity, rough surfaces and deviations from design, which can have different root causes and can vary significantly among samples. Powder material properties, non-uniform delivery of the powder layer, deformation during manufacturing, deviations from optimal process-parameters caused by changes in the laser beam, the optical components and the scanning system operation, may result in lack of fusion pores, metallurgical pores, keyhole pores, etc. These different types of pores have different typical sizes, shapes and 3D distributions. All types of defects have effects on the mechanical properties of a final part. The use of X-ray tomography to visualize pores in parts (non-destructively) prior to mechanical testing has allowed us to improve our understanding of the effect of this porosity on the mechanical properties of the part (also referred to as “effect of defect”). This can provide the possibility to discriminate critical defects from harmless ones, and thereby build confidence in additive manufacturing processes. This paper reviews the current state of knowledge with regard to the “effect of defect” in metal additive manufacturing, and highlights some relevant examples from our recent work.
Key Findings
1
All defect types influence the mechanical properties of final parts, and visualizing pores with X-ray tomography prior to mechanical testing improves understanding of these effects.
2
Different defect root causes (powder properties, non-uniform powder delivery, manufacturing deformation, process-parameter deviations, laser/optics/scanning issues) produce distinct pore types (lack of fusion, metallurgical, keyhole) with different sizes, shapes and 3D distributions.
3
Pre-testing X-ray tomography enables discrimination between critical and harmless defects, supporting increased confidence in additive manufacturing processes.
4
The review synthesizes current knowledge of the 'effect of defect' in metal additive manufacturing and illustrates points with relevant recent examples from the authors' work.
5
X-ray tomography is a powerful non-destructive tool for analyzing defects (porosity, rough surfaces, design deviations) in metal additive manufacturing parts.
Research Object
Defects (pores, rough surfaces, geometric deviations) in metal additive manufacturing parts as characterized by X-ray tomography
Research Subject
Effects of these defects on the mechanical properties of metal additive-manufactured parts, including how pore type/size/shape/distribution influence mechanical performance and discrimination of critical versus harmless defects
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2019-11-28
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