
A whole body scan machine is an industrial X‑ray or computed tomography system designed to capture volumetric data of large objects in a single pass. It enables non‑destructive evaluation of internal
Inquire NowA whole body scan machine is an industrial X‑ray or computed tomography system designed to capture volumetric data of large objects in a single pass. It enables non‑destructive evaluation of internal features, dimensional verification, and defect detection without disassembly.
| Parameter | Typical Value / Customizable |
|---|---|
| Spatial Resolution | 0.5 mm – 2.0 mm (adjustable via detector pixel size and focal spot) |
| Field of View (Diameter) | 300 mm – 1200 mm (configured per part envelope) |
| Acquisition Time per Rotation | 2 s – 10 s (depends on dose rate and required SNR) |
| Tube Voltage | 80 kV – 300 kV (selectable for material penetration) |
| Detector Type | Amorphous silicon flat panel or cadmium tungstate scintillator with photodiode array |
| Power Consumption | 3 kW – 15 kW (scales with tube current and duty cycle) |
| Overall Footprint (L × W × H) | 2.2 m × 1.1 m × 2.0 m (base model; extendable with conveyor) |
| System Weight | 1.8 t – 3.5 t (including shielding) |

In aerospace manufacturing, the machine inspects turbine casings and landing‑gear forgings for internal porosity and cracks that could compromise fatigue life.
Automotive suppliers use it to validate the integrity of large‑volume aluminum engine blocks and hybrid battery housings, detecting shrinkage porosity and foreign‑object inclusions without sectioning.
Heavy‑equipment manufacturers employ the system for weld qualification on thick‑section steel frames, providing volumetric defect maps that guide repair decisions.
Each unit undergoes a factory acceptance test that includes spatial resolution verification using a bar‑pattern phantom, linearity check of the detector response, and dose‑rate uniformity measurement across the field of view.
Calibration is traceable to national standards, and a calibration certificate is supplied with the system. Ongoing performance can be monitored with built‑in QA tools that log key parameters such as tube current, voltage, and detector temperature.