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Crack Detectors
GAOTek offers a large selection of crack detectors which are affordable, easy to operate and user-friendly. For some industries such as aviation, civil, infrastructure and space technology, even the slightest crack can lead to risks of hazards. There have been cases in the past where projects costing billions were destroyed in seconds due to a minute crack on the surface of the body. GAOTek provides trustworthy devices with various features that are helpful in detecting the smallest crack on an object.
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Crack Testing
STATOGRAPH® Product Family
Foerster Instruments, Incorporated
The STATOGRAPH product family is used for testing surface cracks with the help of eddy current sensors. Eddy current testing for material cracks requires the appropriate evaluation electronics and probes adapted to the testing task. Depending on the test situation and test object, the STATOGRAPH family of test instruments offers the right system for this purpose.
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Crack Width Ruler
The range also includes gauges used for the measurement of crack width in concrete and other structures.
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Crack Width Ruler
143
Elcometer 143 Crack Width Ruler is a simple gauge that has been designed to provide inspectors with a low cost alternative to a graduated microscope for determining the width of a crack in concrete or other building materials.
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Acoustic Emission Crack Diagnosis
Detect abnormality by diagnosing machine condition in real time
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Crack Opening Displacement (COD) gauges
COD
Instron® Crack Opening Displacement transducers are designed specifically to perform standard ASTM and ISO fracture mechanics tests (both cyclic and static), covering all common specimen geometries (CT, SEB, Centre Crack, Arc Shaped). Each model offers class leading linearity, whilst being rugged enough to withstand the high energy release common in many of these applications and can be used at both elevated and sub-ambient temperatures. These gauges comply with requirements laid down in ASTM E399-09.
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Fatigue Crack Growth Testing Module
Resistance to fatigue, ageing and crack growth are major issues for rubber like materials. Current commercial methods for crack growth testing have been restricted to time to failure test.
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Fully Automatic Eddy Current Crack Test System
ROTO-SCAN
Foerster Instruments, Incorporated
The fully automatic crack test system ROTO-SCAN was specially developed for the testing of rings. The mechanical equipment has been developed for the gentlest possible handling of the test pieces and features a compact and low-maintenance design. The test probes seamlessly scan the inner and outer contours of the test pieces, thus ensuring 100 % testing of the rings.
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Fully Automatic Eddy Current Crack Test System
ROTO-PUSH
Foerster Instruments, Incorporated
The ROTO-PUSH test station, which is integrated in production lines, serves to test cylindrical components for cracks in the liner surface. The testing configuration has to be rotated for automatic crack testing. After the test, the test pieces are sorted and separated. The continuous test run ensures a high testing rate, which increases profitability.
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Acoustic Emission Sensors
Acoustic wave (acoustic emission) sensors are the ceramic piezoelectric transducers converting the mechanical elastic acoustic waves generated in the material (e.g. elastic waves occur when a material cracks, wears, deforms, or corrodes) to electrical signals. The electrical signals are then amplified and filtered by a preamplifier and then transmitted to a special acoustic emission acquisition instrument for further data processing and analysis.
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AOI Handlings System
The AOI handling system is a compact facility with various test units. Via an ionization cleaning station the ceramics are transferred to the contacting station. There, the resistance values of the substrates are tested with a rigid needle adapter. Afterward, the ceramics are further conveyed to the three (optionally four) AOI test stations (for automatic optical inspection) and are tested for cracks, unevenness, faulty imprints, contamination, etc. The poorly evaluated ceramics arrive at a review station where the operator can assess and evaluate the errors on the monitor. If the operator is uncertain about a fault, the ceramic in question can be positioned under the microscope position and inspected by eye. Poorly defined ceramics are marked accordingly with an ink pen.
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Automatic Type Cupping Testing Machine
GWB-60C
Jinan Testing Equipment IE Corporation
The digital cupping tester is mainly used in the test of metal sheets and thin strips. The automatic cupping testing machine can test the plastic deformation performance of the sheets and thin strips. The automatic cupping testing machine meets the requirement of international GB/T 4156-2007 "Metal Material Sheet and Thin Strip Erichsen Cupping Test". Adopting a hydraulic clamping and hydraulic stamping composite oil cylinder, the cupping tester automatically shuts down when a test sample has crack, so as to facilitate the observation of crack. With peak value memorizing function, the cupping tester can automatically memorize the maximal stamping force and the maximal deformation depth. A turning type clamp ensures the convenient replacement, assembling and disassembling of a punch and a test sample.
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Building Monitoring
Crackmeter
The system consists of two plates that overlap for part of their length. One plate is calibrated in millimeters and the overlapping plate is transparent and marked with a hairline cursor. As the crack width opens or closes, one plate moves relative to the other. The relationship of the cursor to the scale represents the amount of movement occurring. These gauges are monitored over time, whilst being kept as far away from human disturbance as possible, to develop an understanding in the width and direction of movement of the crack.
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Class 1 Integrating Sound Level Meter
Castle Sonus GA116I
The Castle SONUS GA116I is a feature packed instrument that is fully compliant with IEC 61672-1:2002 Class 1, and IEC61252: 1993. This meter gives simultaneous Leq (rms. average) personal exposure (LEpd) and peak measurement for assessments to the Control of Noise at Work Regulations 2005. It has a high-specification, Class 1 measurement microphone and is cased in tough, crack resistant ABS plastic.
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Class 1 Sound Pressure Level Meter
Castle Sonus GA116B
The entry level of the Castle Pocket Range of Sound Level Meters is the SONUS B(GA116B ), a feature packed, pocket instrument that is fully compliant with IEC 61672-1:2013. This meter gives simultaneous sound pressure (Lp) and peak (Cpeak) measurement for a multitude of tasks including initial spot-check assessments to the Control of Noise at Work Regulations 2005. It has a high-specification measurement microphone and is cased in tough, crack resistant ABS plastic.
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Class 2 Integrating Sound Level Meter
Castle Sonus GA216I
The Castle Sonus GA216i is a feature packed instrument, fully compliant with IEC 61672:2002 Class 2. This meter gives simultaneous Leq and peak measurements for assessments to the Control of Noise at Work Regulations 2005. It has a high-specification measurement microphone and is cased in tough, crack resistant ABS plastic. To comply with the Control of Noise at Work Regulations 2005, this Class 2 Sound Level Meter enables you to assess Noise in the workplace at fantastic value.
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Class 2 Sound Pressure Level Meter
Castle Sonus GA216B
This class 2 Sound Level Meter (GA216B) is a feature packed instrument that is fully complient with IEC 61672-1:2002. This meter provides you with the ability to measure sound pressure (Lp) and peak (Cpeak) simultaneously, a requirement for multiple tasks including initial spot-check assessments to the Control of Noise at Work Regulations 2005. The body is designed from tough, crack resistant ABS plastic, ensuring your new Sound Level Meter will survive the conditions for which it was intended. Coming with a high specification measurement microphone which has been calibrated before you receive it, you can be sure your readings are accurate from day one.
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Compact Tension Grips
These compact tension grips are for plane-strain fracture toughness tests of metallic materials. Fracture toughness testing involves applying static loads to a notched sample to investigate brittle crack propagation and fracture conditions.
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Conformal Coating Inspection (CI AOI)
They cover the components, the area around the components and identify most coating issues including cracks, bubbles, insufficient / excess coating, loss of adhesion and other common contaminations. Full coverage inspection for conformal coating.
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Cupping Tester
PCE-CPT 20
PCE-CPT 20 is a cupping tester, or coating flexibility tester, used for testing the adhesion, elongation and deformability of paints, lacquers, varnishes, powder coatings and other surface coatings on metal sheets. Used in manufacturing production, paint shop and quality control applications, the PCE-CPT 20 cupping tester aids in determining coating strength, durability and elasticity. A mandatory test in Qualicoat and QIB accredited quality control laboratories, a cupping test, also referred to as an Erichsen test or dent test, uses a spherical punch to deform a sample. This deformation results in a cup-like bulge. When using the PCE-CPT 20 to perform a cupping test in accordance with the ISO 1520 standard, the sample should be placed coating side up so that the 20 mm spherical punch presses against the uncoated underside of the metal sheet. The cupping test is terminated when small cracks and/or detachments are observed on the bulged part of the sample. The PCE-CPT 20 cupping tester's easy-to-read display shows the bulge deformation distances that can be used to determine the coating's flexibility rating.
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Demattia Flex Tester
UI-FT33
Demattia Flex Tester & Demattia Flex-Cracking Tester is used to test rubber crack growth under repeated bending or flexing. Unuo manufactures demattia flexing fatigue tester which meets test methods of ASTM-D813, GB/T 13934, HG 2873, ISO 132:1999(E), BS 903-A10 and etc.
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Dynamic and Fatigue Testing Systems
Instron offers an extensive range of fully-integrated dynamic and fatigue testing systems from 1000 N up to 5000 kN. Incorporating servohydraulic, servo-electric and linear motor technologies, these test instruments cover a broad range of fatigue, dynamic, and static testing applications. These applications include high-cycle fatigue, low-cycle fatigue, thermo-mechanical fatigue, fracture mechanics, crack propagation and growth studies, fracture toughness, bi-axial, axial-torsional, multi-axial, high strain rate, quasi-static, creep, stress-relaxation, and other types of dynamic and static tests.
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Dynamic and Satatic Electro-Hydraulic Servo Testing Machine
PLS Series
Jinan Testing Equipment IE Corporation
PLS series dynamic and static testing machine is produced according to the dynamic servo test technology. Our design of the electro--hydraulic servo testing system is unitized, standardized and modularized, which enhance the stability and reliability of the system. The electro-hydraulic servo testing system is mainly used to test the dynamic and static mechanical performance of material parts. Equipped with corresponding accessories, the servo-hydraulic testing system can do tensile, compression, low and high cycles, crack growth tests and other mechanical tests for various kinds of materials. The Dynamic and Static Testing Machine is widely used in the fields of aviation and aerospace, ship-building and military industries.
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ECT / ECA Eddy Current Flaw Detector
EVi
United Western Technologies Corp
The EVi works directly with the EddyView Family of probes and accessories. UniWest’s unmatched selection of standard and advanced display features set a new standard for flexibility of applications, ease of use, interpretation of data and overall operator accuracy. The key to the EVi’s ground-breaking performance is the display of a visual image of the surface area under inspection alongside the customary and selectable eddy current signal displays (impedance plane, A-scan or strip charts). The EVi provides a high precision, easily readable display of surface conditions enabling improved interpretation of data while giving more accurate discernment of cracks, pits, gouges and fretting.
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Electric Fatigue Testing Machine
EFT Series
Jinan Testing Equipment IE Corporation
EFT series electric fatigue testing machine is an ideal platform to test a variety of materials and components for the following high demanding tests: Quasi-static test; Reverse-stress mechanical low cycle fatigue loading tests (LCF); High temperature creep, stress-rupture, relaxation tests in load/strain control mode for medium-term or long term period. Mechanical fracture tests like crack growth & toughness tensile/compression test for ceramics in both room- or vacuum-, high- temperatures up to 1200 C conditions etc. Compression test on plate springs or clutch springs etc. It is also widely used to evaluate the mechanical properties of biologic materials, composites, orthopedic fixation devices, prostheses, spinal constructs, stents, dental implants, elastrometric materials, etc. It adopts electric actuator structure with all-elastic, backlash free, central ball-lead screw driving to achieve direct force transmission to the specimen, it is especially a perfect choice for R&D institutes, universities, nuclear power, automotive and aviation, & aerospace sectors from metals, composites, ceramics, springs and component parts.
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Endoscopes and Cameras
PeakTech Prüf- und Messtechnik GmbH
Is used to locate objects such as connection terminals, electronic components, break points, constrictions, cracks or components at hard-to-reach, hidden locations. This video endoscope camera offers a variety of excellent technical properties, such as the detachable monitor connected by video cable or the high-resolution camera with 6 dimmable LEDs for lighting, which can take photos and videos.
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Fatigue Test and Analyzer
Fatigue Testing and AnalysisFatigue is the progressive and localized structural damage that occurs when a material is subjected to cyclic loading. Continued cycling of high-stress concentrations may eventually cause a crack which propagates and results in leakages.
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Fatigue Testing And Certification
Fatigue engineering is subject to uncertainty, and data from well executed tests are used to validate conclusions made by analysis and to provide a basis for structural certification. Our staff have extensive experience in testing materials and components under slowly varying, static loads, and under rapidly varying cyclic loads. Tests under static loads are used to assess material properties or to assess the load-deformation behavior of structural components. Tests under cyclic loads provide time to crack initiation, time to failure, or measurements of crack growth over time. We have extensive experience in measuring fatigue crack growth behavior in metallic materials. Past programs have measured crack growth with microscopy and photogrammetry at the surface, cracked area with direct current potential drop, and through-thickness crack profiles with quantitative fractography. By assessing crack growth with a variety of experimental methods, we enable robust analysis validation for cases of complex cracking. Our capabilities in fatigue engineering allow for careful design of a fatigue test program. Whether the tests use constant amplitude loading or an irregular loading spectrum, we specialize in engineering the test that meet your needs. Much of our experience is in non-standard test programs, which require engineering to optimize the test setup. Few others match our capability and experience in fatigue test engineering.
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Fatigue Test Machines
The new DMA+ series instruments are dynamic testing machines based on a brand new concept and dedicated to analysis of viscoelastic properties (DMA) and to fatigue tests of advanced materials and industrial components, as well as to the follow up of crack growth.
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Flame Ionization Detector
A flame ionization detector converts a hydrocarbon gas concentration into an electrical signal. The flame is hydrogen fueled and burns in hydrocarbon free combustion air. Either side of the flame are two electrodes between which an electric field is generated by means of a polarization voltage. The sample is pre-mixed with the fuel gas and heated in the flame to a temperature at which the hydrocarbon molecules ‘crack’ and CH fragments appear. These CH fragments are oxidated by the oxygen in the combustion air resulting in the formation of CHO+ ions. The ion current then passes to the electrodes and the resulting current measured is proportional to the quantity of C atoms derived from organic compounds.The Thermo-FID features two separate microprocessor controlled pressure compensations to avoid any influence from environmental or sample conditions. In addition, the complete Thermo-FID range of analyzers are equipped with a flame trap that is used as a heated sample inlet filter. The measurement chamber and all material in contact with the sample gas are heated between 120°C and 200°C to avoid condensation.