Shock
A shock test transmits kinetic or thermal energy into a UUT in a relatively short interval in a controlled enviroment.
See Also: Thermal Shock, Vibration
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Thermal Shock Chamber
Wewon Environmental Chambers Co, Ltd.
Makes it possible to quickly and autonomously transfer test items back and forth repeatedly between a hot and cold environment.
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Rotary Shock Machines
GHI Systems
* 0 Velocity before shock ? eliminates inertia effects. * Compact design allows use of imaging sensors. * Bidirectional operation. * Unsurpassed for latch testing, any format size. * Reliable MEP programmers in various durometers. * Interchangeable high amplitude table option. * Conforms to ?Dell? requirements.
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Shock Tester
DP-1200
King Design Industrial Co., Ltd.
Shock or bump test mainly simulate the impact effects of product and its components encountered in usage and transit process. Through standard and high-reproducibility instant energy exchange, you can analyze the product ability to tolerate the strong external stress and the degradation of structural weaknesses to quickly obtain the data of structure strength, anti-shock appearance and anti-drop. Shock tester is one of destructive experiments, and do destructive test on the product to evaluate the product reliability and monitor the consistency of production line.
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Mechanical Shock Testing
Classical • Half-sine • Sawtooth • Shock Synthesis • Sustained Presure Shock Response Spectrum (SRS) • Transient Shock Response
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Shock Control
Shock testing simulates an extreme event that a unit under test is exposed to during handling, shipment, explosive event and/or daily use (e.g. dropping an object). The profile for this type of testing is defined by the shape of the time domain waveform together with its amplitude and duration. The m+p VibControl vibration control system offers full functionality for classical shock and shock response spectrum testing as well as for tests using external pulses or the capture of transient signals.
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Thermal Shock Chamber
Sanwood Environmental Chambers Co ., Ltd.
Three zone thermal shock chamber uses the test material structure or composite material to withstand the degree of extreme high temperature and low temperature in a continuous environment in an instant, so as to test the chemical changes or physical damage caused by thermal expansion and contraction in the shortest time.
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Vertical Thermal Shock Chambers
FSV Series
Bemco FSV Series Vertical Thermal Shock chambers are available in two zone (FS2V - hot and cold) and three zone (FS3V hot - cold - hot) versions, with two temperature ranges (-75 C to +200 C or -160 C to +200 C), and two types of cooling systems (all mechanical cooling - no expendable refrigerant required, or all LN2). Very low temperature, -160 C chambers, are always liquid nitrogen cooled. Two zone chambers are offered in four standard sizes, while three zone chambers are offered in three standard sizes.
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Pneumatic Vertical Shock Test System
KRD11 series
KRD11 series pneumatic vertical shock test system is featured with advanced design, high degree of automation and reliability, simple operation and convenient maintenance. The system meets the requirements of both shock and bump test, can perform conventional half-sine wave, post-peak sawtooth wave, trapezoid wave and other waveform shock tests.
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Shock Test Systems
Accurately measure the fragility of products and evaluate how they respond to specific shock inputs.
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Automated Shock Test Systems
AutoShock-II Test System
The AutoShock-II is a fully automated series of shock test systems used to measure and identify product fragility levels and evaluate protective packaging. With the simulation of real world shock pulses and impact energy levels, manufacturers can systematically test and optimize product design and packaging. L.A.B. Equipment, Inc.''s fully automated computer controlled shock and data analysis test systems are the critical path in accomplishing this optimization.
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Shock Absorber Tester
Maschinenbau Haldenwang GmbH & Co. KG.
Display on LON analog displays with theEvaluation in "Lehr''s damping factor" or damping ratio "D"Fully automatic testAutomatic test start after bilateral plate load of more than 60kgFrequency controlled drive excitation by electric motors to determine the maximum vibration amplitude with subsequent evaluation of the axle dampingrunning underbody as self-supporting frame constructionParallelogram guided test plates, thus no fixed wheel contact requiredgalvanized version
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Shock Test Systems
Sanwood Environmental Chambers Co ., Ltd.
Is featured with advanced design, high degree of automation and reliability, simple operation and convenient maintenance. The system meets the requirements of both shock and collision test, can perform conventional half-sine wave, post-peak sawtooth wave, square wave and other waveform shock tests.
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Liquid-To-Liquid Thermal Shock Chambers
TSB Series
Purchasing a liquid thermal shock chamber needs close consideration of the long term operating costs. The specialized liquids used can easily evaporate, causing the loss of thousands of dollars of fluid per year, if not properly contained. ESPEC has led the industry in developing a sophisticated test chamber with multiple mechanisms to significantly reduce fluid usage. The new TSB-51 loses just 1.4 grams per test cycle, or less than a liter per 1,000 cycle test.
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Mechanical Shock Test System
BW-MST-E5000
The Mechanical Shock Tower develops the kinetic energy electromagnetically. An iron core "bullet" is attracted to the magnetic core of the solenoid by the dense magnetic field that is created as current flows through the field coil of the shock tower. As the bullet is drawn into the center of the magnetic field the acceleration increases exponentially as the gap reduces to zero on impact causing the high impact shock
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Thermal Shock Chamber
ATS Series
Thermotron thermal shock chambers meet a variety of testing needs and come in three configurations: vertical, horizontal, and double duty. A product transfer mechanism automatically transfers products under test from hot to cold zones and back when programmed in the controller.
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Piezoresistive MEMS Shock Accelerometers
Piezoresistive shock accelerometers, manufactured by MEMS technology, have low power consumption while still providing +/- 200 mV full scale output. They afford a wider operating temperature range when compared to mechanically isolated ICP® accelerometers. Their frequency response ranges from DC (0 Hz) to 20 kHz. To lessen the severity of response when their resonant frequency is excited, they incorporate squeeze film damping, achieving values of 0.02 to 0.06 of critical.
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Thermal Shock Chamber
The Thermal Shock Chamber is specially designedwith independant temperature zones to facilitatethe automatic transfer of product under testthereby simulating a temperature shock to test the reliability of the product as per military and other international standards.
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2-Zone and 3-Zone Vertical Thermal Shock Chambers
FS
Originally developed for testing microelectronic devices for use in military and aerospace electronic systems, Bemco Vertical Thermal Shock Chambers are widely used for screening and quality evaluation of smaller electronic parts.
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Shock Testing
Shock testing typically involves calibrated, repeatable, violent events. The resulting energy is then absorbed transferred through the test specimen or Device Under Test (DUT)
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Thermal Shock Chamber
Allows for the rapid transfer of products between temperature extremes, or the alternating heating and cooling of test articles in cyclical manner.
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Miniature Shock Absorbers
Miniature shock absorbers from ACE are tried-and-tested quality products used in millions of industrial designs throughout the world. They optimize machines in an equally reliable and effective way by decelerating loads quickly and without recoil.
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Pneumatic Horizontal Shock Response Spectrum Test System
KRD15 series
KRD15 series is the state-of-the-art shock response spectrum tester that adopts compressed gas energy to provide impact energy, push the shock hammer to impact the resonance plate, and generate high energy shock. Comparing to traditional pendulum shock response spectrum tester, this machine has the advantages of high energy, stable performance, high reliability, good repeatability, easy adjustment, safety and environmental protection. It is mainly applied in the industries of aerospace, aviation and ships.
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901 Shock Testing
Environment Associates performs high-impact mechanical shock for all grades, classes and types of Navy ship board machinery, equipment, systems and structures. Our lightweight shock machine is approved by the Naval Surface Warfare Center for use in testing the survivability of Navy shipboard equipment to MIL-S-901D on items and fixturing weighing up to a combined 500 lbs.
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Shock Reactance
ICR260 330
Lifasa - International Capacitors, SA
Shock reactors are necessary to limit the transient currents that occur in the connection of the capacitors.
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Electrodynamic Shock Test System
FS SERIES
The system can test the sensor and ECU for an airbag and also reproduce the shock by assuming an automotive collision and full-scale crash. The system can be incorporated into the production line for total inspection. It can maintain the operating quality of the airbag to make a contribution to lifesaving against a traffic accident.
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Temperature shock test chambers test
TSS series
The operating principle of Schocktestprfschrank based of two superposed test rooms (top hot chamber, cold chamber below), between which a car with the test specimens is moved up and down by the large thermal shock test equipment may be subjected
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Rotary Thermal Shock Chambers
TS Series
A Bemco exclusive product, the TS Series of Turboshock Rotary Thermal Shock Chambers feature an electrically driven, 180 degree reversing, rotating wall located between two chambers, one hot and one cold. Two loads can be handled simultaneously. Front loading and rear access doors allow full entry to each zone.
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2 Zone Thermal Shock Test Chamber
2-Zone Thermal Shock Testing Equipment with programmable electronics.
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ICP® Shock Accelerometers
Piezoelectric ICP® accelerometers afford a very high signal output (+/- 5 volts full scale) and the ease of two-wire electrical connectivity. Their inherent ruggedness enables them to be severely over ranged without damage. The addition of internal mechanical isolation minimizes the high frequency stress that would otherwise be encountered by their ceramic sensing elements. This mechanical isolation, coupled with an internal 2-pole electrical filter, built into the ICP® circuitry, tailors the overall accelerometer response to assure data quality to frequencies as high as 10 kHz. Depending on the specific model, accelerations in excess of 50 kg can be successfully measured. These modern designs, with their internal elastomeric isolation materials are verified through calibration to remain dynamically linear and are enabling piezoelectric accelerometers to operate in increasingly severe acceleration environments.





























