X-ray Tomography (Micro-CT) Analysis

Parameter Specification
Technique X-ray Computed Tomography (Micro-CT)
Analysis Type Non-destructive 3D imaging
Spatial Resolution ~1–10 µm (system and sample dependent)
X-ray Energy Range Configurable (material dependent)
Contrast Mechanism X-ray absorption contrast
Volume Reconstruction Full 3D volumetric datasets
Porosity Analysis Volume %, pore size and distribution
Defect Detection Cracks, voids, inclusions
Sample Type Bulk components, composites, porous solids
Sample Size Small to medium components (size dependent)
Sample Preparation Minimal (mounting only)
Information Obtained Internal morphology, density variation, defect distribution
Typical Use Cases Composites, castings, ceramics, additively manufactured parts
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Description

Advanced X-ray Tomography service for non-destructive three-dimensional internal structure analysis of materials and components. X-ray tomography enables visualization and quantification of internal features such as porosity, cracks, inclusions, and density variations without altering the sample.

Key Applications

  • Internal defect and porosity analysis

  • Void, crack, and inclusion detection

  • Structural integrity and quality assessment

  • Composite and multi-material evaluation

  • Failure analysis without sample destruction

Specifications

Parameter Specification
Technique X-ray Computed Tomography (Micro-CT)
Analysis Type Non-destructive 3D imaging
Spatial Resolution ~1–10 µm (system and sample dependent)
X-ray Energy Range Configurable (material dependent)
Contrast Mechanism X-ray absorption contrast
Volume Reconstruction Full 3D volumetric datasets
Porosity Analysis Volume %, pore size and distribution
Defect Detection Cracks, voids, inclusions
Sample Type Bulk components, composites, porous solids
Sample Size Small to medium components (size dependent)
Sample Preparation Minimal (mounting only)
Information Obtained Internal morphology, density variation, defect distribution
Typical Use Cases Composites, castings, ceramics, additively manufactured parts

Sample Preparation Support

  • Sample size and geometry evaluation

  • Mounting and orientation optimization

  • Scan parameter selection based on material density

  • Guidance for contrast optimization in multi-material systems

  • (X-ray tomography preserves the sample for further testing and complementary analysis.)

Deliverables

  • 3D reconstructed volumetric datasets

  • Cross-sectional slice images

  • Quantitative porosity and defect analysis

  • Visual renderings and videos (if requested)

  • Expert interpretation linked to material integrity

Who Should Use This Service

  • Composite and ceramic material developers

  • Additive manufacturing and casting industries

  • Quality control and reliability teams

  • Failure analysis and structural validation groups

Important Note

X-ray tomography resolution and contrast depend on material density, thickness, and geometry.
Very fine nanoscale features may require complementary techniques such as SEM, TEM, or FIB-based analysis.

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