Trilion Quality Systems SHEAR

Description
Shearography is a variation of laser technology ESPI (holography), specifically designed for NDT applications. Shearography provides full-field, non-contact testing for rapid wide-field inspection of composites, bonded structures and other advanced materials. Shearography is an optical video strain gauge and an appropriately applied stress is used to locate strain concentrations caused by internal defects. As an example, a composite helicopter blade can be inspected in production with vacuum excitation, while it can be rapidly inspected in the field with thermal excitation from a heat source, such as a heat gun or even a hairdryer. Typically light vacuum, thermal, acoustic or mechanical loading is used. This technology is ideal for components with complex geometries and material compositions. Common uses include: - complex geometries, such as co-cured composites structures - complex material composition, such as engine inlets and blades - core structures (e.g.: honeycomb & foam) - composite repair evaluation - corrosion inspection - production inspection
Description
Shearography is a variation of laser technology ESPI (holography), specifically designed for NDT applications. Shearography provides full-field, non-contact testing for rapid wide-field inspection of composites, bonded structures and other advanced materials. Shearography is an optical video strain gauge and an appropriately applied stress is used to locate strain concentrations caused by internal defects. As an example, a composite helicopter blade can be inspected in production with vacuum excitation, while it can be rapidly inspected in the field with thermal excitation from a heat source, such as a heat gun or even a hairdryer. Typically light vacuum, thermal, acoustic or mechanical loading is used. This technology is ideal for components with complex geometries and material compositions. Common uses include: - complex geometries, such as co-cured composites structures - complex material composition, such as engine inlets and blades - core structures (e.g.: honeycomb & foam) - composite repair evaluation - corrosion inspection - production inspection

Suppliers

Company
Product
Description
Supplier Links
SHEAR -  - Trilion Quality Systems
Plymouth Meeting, PA, USA
SHEAR
SHEAR
Shearography is a variation of laser technology ESPI (holography), specifically designed for NDT applications. Shearography provides full-field, non-contact testing for rapid wide-field inspection of composites, bonded structures and other advanced materials. Shearography is an optical video strain gauge and an appropriately applied stress is used to locate strain concentrations caused by internal defects. As an example, a composite helicopter blade can be inspected in production with vacuum excitation, while it can be rapidly inspected in the field with thermal excitation from a heat source, such as a heat gun or even a hairdryer. Typically light vacuum, thermal, acoustic or mechanical loading is used. This technology is ideal for components with complex geometries and material compositions. Common uses include: - complex geometries, such as co-cured composites structures - complex material composition, such as engine inlets and blades - core structures (e.g.: honeycomb & foam) - composite repair evaluation - corrosion inspection - production inspection

Shearography is a variation of laser technology ESPI (holography), specifically designed for NDT applications. Shearography provides full-field, non-contact testing for rapid wide-field inspection of composites, bonded structures and other advanced materials. Shearography is an optical video strain gauge and an appropriately applied stress is used to locate strain concentrations caused by internal defects. As an example, a composite helicopter blade can be inspected in production with vacuum excitation, while it can be rapidly inspected in the field with thermal excitation from a heat source, such as a heat gun or even a hairdryer. Typically light vacuum, thermal, acoustic or mechanical loading is used. This technology is ideal for components with complex geometries and material compositions.

Common uses include:

- complex geometries, such as co-cured composites structures
- complex material composition, such as engine inlets and blades
- core structures (e.g.: honeycomb & foam)
- composite repair evaluation
- corrosion inspection
- production inspection

Supplier's Site

Technical Specifications

  Trilion Quality Systems
Product Category Dimensional Gages and Instruments
Product Name SHEAR
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