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High energy radiography & CT · 0.9–15 MeV

High Energy X-ray and CT

When a part is too dense for an X-ray tube, a linear accelerator is the only way in. MQS builds turnkey high-energy inspection systems for rocket motors, solid propellants, heavy castings and pressure vessels — installed, shielded and supported in India.

High-energy dual-head multi-energy CT system with linear accelerator, object manipulator and flat panel detector
0.9 – 15 MeV
X-ray energy range
0.25 – 120 Gy/min
Dose rate range
30 – 500 mm
Thickness range in steel
Overview

Density Is the Limit. Energy Is the Answer.

A 450 kV tube stops at roughly 80 mm of steel. Beyond that the beam is absorbed before it reaches the detector and the image goes dark — not because the defect is invisible, but because nothing got through.

Linear accelerators produce photons energetic enough to pass through half a metre of steel, or two and a half metres of solid propellant. For more than a decade MQS has delivered off-the-shelf and fully customised turnkey systems built on this principle, for some of the country's most demanding aerospace, defence, energy and heavy-engineering programmes.

Source

Varex Linear Accelerators

Linatron models from 0.95 to 15 MeV, single and dual energy, selected against the thickness and density you actually inspect.

Imaging

Detectors & Software

Digital flat panel detectors rated to 16 MeV with optional line detectors, driven by MQS Imaging Suite and VG Studio Max.

Handling

Manipulators & Enclosures

Multi-axial manipulators for the accelerator head, detector and object, plus shielded enclosures and remote control stations.

Product highlights

What sets the platform apart.

CT-Ready Framework

Upgradeable for 3D computed tomography, extending usefulness and future-proofing the investment.

Dual Energy Linatron

Deep penetration through high-density steel and propellant, with energy selection for different tasks.

Custom Multi-Axis Manipulator

Adapts to complex shapes and orientations — less repositioning, better coverage.

Digital Flat Panel Detector

High-resolution images at fast frame rates for real-time flaw detection with excellent clarity.

Real-Time ADR Software

Instantly identifies cracks, voids and porosity — faster inspection, less operator subjectivity.

Energy range

Choose by What You Need to See Through.

Every model is defined by one number that matters more than the rest: how much steel it can penetrate. Bars show each model's usable window against a 500 mm scale.

M10.95 MeV
105 mm
30105 mm · 0.25 Gy/min
M3A1 / 2 / 3 MeV
210 mm
30210 mm · 3 Gy/min
M6A3.5 / 5 / 6 MeV
270 mm
35270 mm · 8 Gy/min
M9A5 / 6 / 9 MeV
380 mm
40380 mm · 30 Gy/min
K159 / 15 MeV
500 mm
70500 mm · 120 Gy/min

Thickness figures are nominal. Solid propellants can be inspected up to 2500 mm thickness.

System configurations

Four Ways to Build a High Energy Cell.

The accelerator is one component. What changes between installations is how the beam, the detector and the part are moved relative to each other.

K15 Dual Energy LINAC System
01Aerospace & heavy engineering

K15 Dual Energy LINAC System

Built around the K15 dual energy accelerator for rocket motors, solid propellants, castings and heavy engineering products — detecting cracks, porosity, inhomogeneities, inclusions and foreign bodies. An EOT crane-mounted head manipulator carries the accelerator, so large objects can be inspected from multiple angles without being repositioned.

  • Energy9 / 15 MeV
  • Penetration in steelUp to 500 mm at 15 MeV · up to 380 mm at 9 MeV
  • Focal spotLess than 2 mm
  • Dose rate15 MeV: 40–120 Gy/min-m · 9 MeV: 12–40 Gy/min-m
  • Beam symmetryWithin ±5%
  • Solid propellantUp to 2500 mm thickness
02Real-time inspection

Digital Radiography with Linear Accelerators

Accelerators combined with multi-axis manipulators for real-time NDT inspection, used for defect analysis in viscoelastic materials, metals and composites where volumes are large and geometries complex. The complete system is the accelerator, flat panel detector, manipulator and a control unit operated remotely from outside the inspection room.

  • ManipulatorSeven axis for real-time inspection of solid propellants, plus a rotary table for small cylindrical objects
  • Object envelopeCylindrical up to 500 mm diameter, 3500 mm length, 500 kg (customisable)
  • Radiography quality1–2T or better for 50–250 mm steel (ASTM E-94)
  • Defect analysisVoids, porosity with measurement, foreign-body identification
Digital Radiography with Linear Accelerators
Wall Mount Manipulator Systems
03Space-constrained sites

Wall Mount Manipulator Systems

Where floor space is the constraint, a wall-mounted mainframe holds an X-ray head up to 15 MeV. Widely used in casting and foundry work, and compatible with both film and digital radiography systems.

  • AxesLong travel, hoist, magnification, tilt and rotation
  • Object size3 m height × 5 m diameter
  • Tilt & rotation±60° at 0.1° stepper accuracy
04Volumetric analysis

MQHCT Series — High Energy Computed Tomography

High-energy CT for large, intricate parts — producing a measurable 3D volume rather than a projection, so porosity can be sized and located rather than estimated. Energy is chosen against the application, and the cell is configured around multi-axial manipulators, accelerators, detectors and imaging software.

  • X-ray sourceDual energy Linatron, with optional dual-focus 450 kV industrial X-ray
  • Imaging systemDigital flat panel detector to 16 MeV, with optional line detector
  • HandlingCustom multi-axial manipulators for tube, flat panel and object
  • Imaging softwareMQS Imaging Suite, VG Studio Max, Varex CBCT tools
  • Control stationControl unit, operator workstation and image visualisation workstation
MQHCT Series — High Energy Computed Tomography
Applications

What Gets Inspected at These Energies.

Parts that are too thick, too dense, or too critical to be released on a sample check.

CastingsSolid propellantsRocket motor bodiesWeldmentsPressure vesselsValvesEngine blocksAircraft body structuresShip body sectionsCompositesCargo
Aerospace

Rocket Motors & Propellants

Cracks, voids and debonds in grain and casing, at thicknesses no tube-based system can reach.

Heavy engineering

Castings & Pressure Parts

Porosity, shrinkage and inclusions in thick-section castings, valve bodies and pressure vessels.

Energy

Weldments & Components

Weld integrity in heavy fabricated structures where radiographic quality must meet ASTM E-94.

Technical data

Technical Specifications

Digital Flat Panel Detector

ParameterValue
Operational energy range40 kV – 16 MeV
Active pixel area42.7 × 42.7 cm
Pixel pitch139 µm
Frame rate4 fps (1×1) · 15 fps (2×2)

Beam Characteristics

ParameterValue
Focal spot sizeDoes not exceed 2.0 mm, measured by Full Width Half Max
Small focal spot1.0–1.5 mm on Mi-9 only, at reduced maximum dose rate
Field flatnessMeasured at 1 m from target, ±7.5° off the central axis
Field symmetryBeam asymmetry does not exceed 5% at 1 m from target
ShieldingLow leakage 1.0 × 10⁻³ (fraction)
Alignment laser533 nm Class II, 0.5 mW — not with the ULLP leakage option

All Linatron models from Varex Imaging Corporation are designed and manufactured in accordance with EMC Directive 89/336/EEC and Low Voltage Directive 73/23/EEC.

Get in touch

Tell us what you need to inspect

Share your part, material and defect type — our engineers will recommend the right MQS system.