ROBOSCOP VTM-5000 HELICOPTERS

AEROSPACE

ROBOSCOPE VTM-5000 HELICOPTERS

Laser scanning and flaw detection bench for non-destructive testing of polymer-composite materials used in aircraft constructions: glider elements, helicopter blades and honeycomb panels.

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Technical Specifications

Testing methods Impedance, Free vibration, Eddy-current, Ultrasonic (shadow / echo-pulse / phased array / laminar), Laser profilometry
Target materials Polymer-composite materials, helicopter blades, glider elements, honeycomb panels
Transducer selection Fully automated
Scan programming CAD application Method Designer
Multi-method NDT All methods available concurrently
Sensitivity adjustment Layer-by-layer, based on material physical properties
Industries Aerospace, Wind power, Shipbuilding, Pipe fitting

Description

The laser scanning and flaw detection bench ROBOSCOPE VTM-5000 HELICOPTERS is designed for the non-destructive testing of polymer-composite materials used in aircraft constructions: glider elements, helicopter blades, honeycomb panels. It is also suitable for use in wind power engineering, small-scale shipbuilding and pipe fitting production. All tooling (laser scanner, sensors) selection and change processes are automated.

The selection of testing techniques and the choice of transducers are determined during the initialization stage. All NDT methods are available concurrently. The specification of scanning areas, motion paths and testing speed is managed through the CAD application Method Designer. For composite panels, sensitivity adjustment is performed layer by layer, considering the material's physical properties, such as attenuation. In impedance testing mode, an optimal spectrum of probing signals is automatically configured for each material during the initialization process.

The ROBOSCOPE VTM-5000 HELICOPTERS scalability allows the testing of parts with varying shapes and sizes, and the mechanization criteria are individually defined during the design stage. The system enables efficient completion of the entire testing process, providing a high-precision flaw map that takes into account all applied techniques.

Key Features

 
Impedance method — primary technique for high-attenuation composite materials
 
Free vibration method for honeycomb structures
 
Eddy-current testing for magnetic and ferromagnetic alloys
 
Ultrasonic methods: shadow, echo-pulse, phased array, laminar
 
Laser profilometry for precise geometric parameter measurement
 
Fully automated tooling and transducer selection
 
CAD-based scan path and area planning via Method Designer
 
Layer-by-layer sensitivity adjustment accounting for material attenuation
 
All NDT methods available concurrently in a single pass
 
Scalable system for parts of varying shapes and sizes

Let's Discuss Your Project

Our engineering team is ready to help you select the right NDT solution.

Headquarters
Sharjah, SAIF Zone, UAE
P.O. Box 120222
Phone
WhatsApp: +971 (50) 825 8545
Email
Mon – Fri, 8:00 – 17:30