Improvements in structural nondestructive testing
Nondestructive inspection of structural materials
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Nondestructive inspection of structural materials
Nondestructive testing and inspection methods using infrared microscopy, X-ray television, and ultrasonic measurements - Conference
Rapid, nondestructive test for identifying metals measures the characteristic potential difference produced by galvanic reaction between a reference electrode and the test metal. A drop of water is used as an electrolyte.
In-space nondestructive testing feasibility for spacecraft damage assessment, space fabrication and maintenance, noting ultrasonic and radiographic inspection methods
Semiautomated X-ray television for nondestructive testing and inspection
Nondestructive testing of the breakdown voltage of transistors and other electronic components is achieved by a simple relay circuit. The circuit operates by applying low-energy, high-voltage microsecond pulses to the components under test.
Nondestructive testing techniques for multilayer printed wiring boards stressing axial transverse laminography and mutual coupling
Nondestructive testing of adhesive bond strength
Nondestructive testing methods to evaluate refractory-metal alloy tubing for nuclear application
Bibliography of nondestructive testing theory and application for composite material
Nondestructive testing techniques for in-space use, discussing leak detection and repair and fuel and pressure line checkout
Bibliography on nondestructive testing techniques as related to space programs
Ultrasonic, infrared, and eddy current nondestructive testing techniques
Feasibility of nondestructive testing in space environment - proposed flight hardware for prototype nondestructive test unit
Nondestructive testing and evaluation (NDT&E) are interdisciplinary fields that require a significant amount of interconnection between fundamental physics, measurement techniques, data processing, decision making, and reporting to have a significant impact on industry. NDT&E practitioners are challenged to keep up with the fast-paced evolution of materials, structures, processing, and manufacturing technologies. The development of engineered materials, complex structures and composites, and novel forming techniques require NDT&E to rapidly evolve to meet the needs of industry.
Nondestructive testing techniques for in-space use, discussing leak detection and repair and fuel and pressure line checkout
Quality control and nondestructive testing for prevention of failures in scientific satellites