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1 Chapter 2Table 2.1 Configurations of major commercially available PBF systems.Table 2.2 The market cost of wire and AM grade powder per pound for some of ...Table 2.3 Configurations of commercially available DED systems.Table 2.4 Configurations of commercially available BJ systems.Table 2.5 Influence of increasing process parameters on dimensions of a sing...

2 Chapter 3Table 3.1 Comparison between AM processes adapted from [16] with several cha...Table 3.2 Comparisons of some representative AM processes.

3 Chapter 4Table 4.1 Optical properties and Brewster angle of several materials for 106...Table 4.2 Reflectivity of different surface roughness for a 10.6‐μm waveleng...

4 Chapter 5Table 5.1 Material input parameters for LPBF [2, 3].Table 5.2 Equations used for powder particles shape characterization [18].Table 5.3 Parameters for the single‐layer multiple‐track scanning.Table 5.4 Melt pool depths in the multi‐track scanning.

5 Chapter 8Table 8.1 Phase formation during solidification of different types of AM ste...Table 8.2 Phase formation during solidification of different types of AM Al ...Table 8.3 Chemical composition of different superalloys.Table 8.4 Post solidification phases of In625.Table 8.5 Post solidification phases of IN718.Table 8.6 Different types of Stellite.Table 8.7 Post solidification phases of Stellite.Table 8.8 Post solidification phases of Ti alloys.Table 8.9 The estimated cooling rates necessary to obtain various morphologi...

6 Chapter 9Table 9.1 Summary of microstructures formed in TMCs.Table 9.2 Mechanical and wear property of CP‐Ti and different kinds of TMCs ...

7 Chapter 10Table 10.1 Metal additive technologies compared with key design consideratio...Table 10.2 Topology optimization of point loaded structures.Table 10.3 Objectives and constraints for topology optimization of arbor pre...Table 10.4 Arbor press components and mass composition.Table 10.5 Design space and optimized result of arbor press components.Table 10.6 Design iterations for framework.

8 Chapter 11Table 11.1 Co‐axial mounted based sensors used in LPBF and LDED.Table 11.2 Off‐axial mounted based sensors used in LPBF and LDED.Table 11.3 Some commercial sensors mounted on the LPBF machines.Table 11.4 Some commercial sensors mounted on LDED machines.Table 11.5 Calibration of RGB values with temperature. For colorful spectrum...Table 11.6 Machine learning methods used in LPBF and LDED.Table 11.7 Performance of different SOM dimensions based on the SOEDNN.Table 11.8 Types and print parameters in print 1.Table 11.9 Types and print parameters in print 2.Table 11.10 Applying the detection algorithms on the five consecutive layers...Table 11.11 The range ofp‐value from ANOVA single‐factor analysis of the var...Table 11.12 The percentage of identification for each size of the defect and...Table 11.13 Confusion matrix to compare the prediction of the algorithm (AL)...Table 11.14 Evaluation metrics of AL algorithm based on the CT scan result f...Table 11.15 Evaluation metrics of AL algorithm based on the CT scan result f...

9 Chapter 12Table 12.1 Related potential hazards by metal AM process category [3].Table 12.2 DifferentKst values for different materials and their severity.Table 12.3 National Fire Protection Association (NFPA) standards [13].

Metal Additive Manufacturing

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