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Mechanical Shock Test System
Mechanical Shock Tester
Grande can provide you the advanced shock testing systems to realize your applications whether you need complete product damage boundary assessment, industry standard impact pulse or other required conditions. Shock testing systems widely used on aviation,aerospace,vessel,military industry,consumer electronics,automobile,household appliances and display device.
Features
1:User-friendly touching screen operation.
2:Half sine, square waveform shock pulse programmers.
3:High rigidity shock tables.
4:A full range of safety features.
5:Apply air and hydraulic pressurization, strong friction brake avoiding secondary shock.
6:Apply air spring suspension, hydraulic damping shockproof system, no shock impact on the surrounding, without foundation.
Mechanical Shock Testing
Mechanical Shock Test Methods
Mechanical shock testing helps determine whether a device can remain functional when subjected to sudden, abrupt motion changes associated with service environments like product handling, shipping/transportation, rocket stage separation, weapon firing, etc.
High-G Classical Shock
The Grande shock system can produce half sine or haversine shocks in excess of 10,000G. Dual elastic accelerators boost the max velocity change to 600in/s or higher. The system comes with pneumatic brakes and a floating seismic base to allow durations as short as .15ms. Data is captured at 1MHz, with shock pulse amplitude and duration reported automatically. SRS plot generation is available.
Classical Shock
Classical Shock tests such as half-sine, sawtooth, and trapezoidal pulses are associated with product handling events (drop impacts) and transportation induced events (road bumps, pot holes, etc.) and are performed using our AVCO pneumatic shock table or any of our Unholtz-Dickie electrodynamic vibration systems. These shock tests are specified in the Time Domain (acceleration vs. time). Classical shock pulses up to 1,500 g can be accommodated for a wide range of test payloads.
GRANDE has the expertise to perform shock testing in accordance with an extensive list of Test Specifications, including the partial listing below.
• MIL-STD-810 Method 516.5 Military / Classical Shock
• MIL-STD-883 Microelectronics Shock
• MIL-STD-202 Electronic Components Shock
• TIA/EIA-455-14 Fiber Optics Shock
• IEC-60068-2-29 Bump Shock
• EIA-364-27 Electrical Connector Shock
• RTCA-DO-160 Airborne Equipment Shock
• GR-1209-CORE Component and Module Impact
Model | GSKT10 | GSKT25 | GSKT30 | GSKT50 | GSKT100 | GSKT200 | GSKT300 | GSKT600 | GSKT1000 | GSKT1500 | GSKT2000 | |
Table Size(cm) | 35*35 | 50*50 | 40×40 | 50×60 | 70×80 | 100×100 | 120×120 | 150×150 | 200×200 | 200×200 | 200×200 | |
Max. Specimen Weight(kg) | 10 | 25 | 30 | 50 | 100 | 200 | 300 | 600 | 1000 | 1500 | 2000 | |
Max. Acceleration(G) | Half Sine | 2000 | 1000 | 600 | 600 | 600 | 500 | 500 | 300 | 300 | 30-300 | 30-300 |
Saw-tooth(Option) | - | - | 100 | 100 | 100 | 100 | 100 | 100 | 100 | 100 | 100 | |
Square(Option) | - | - | - | 150 | 150 | 150 | 100 | 100 | 100 | 100 | 100 | |
Pulse duration(ms) | Half Sine | 20~0.5 | 20~0.5 | 30~0.5 | 30~1 | 30~1 | 30~2 | 20~3 | 20~3 | 20~3 | 20~3 | 20~3 |
Saw-tooth(Option) | - | - | 18~6 | 18~6 | 18~6 | 18~6 | 18~6 | 18~6 | 18~6 | 18~6 | 18~6 | |
Square(Option) | - | - | - | 30~6 | 30~6 | 30~6 | 30~6 | 30~6 | 30~6 | 30~6 | 30~6 | |
Machine dimension(cm) | 100*100*200 | 110*110*210 | 120×105×245 | 120×105×245 | 130×120×260 | 150×130×260 | 200×160×300 | 230×180×310 | 250×250×310 | 250×250×310 | 250×250×310 | |
Controller cabinet dimension | W55×D50×H80W55×D50×H80 | |||||||||||
Machine weight(Kg) | 1500 | 1700 | 1900 | 2000 | 3200 | 4200 | 8500 | 15500 | 21500 | 21500 | 21500 | |
Power supply | AC 1Ψ 110V;AC 1Ψ 220V 60/50Hz 0.5~0.8MPa | 3ФAC380V 50/60Hz Compressed air 0.5~0.8MPa | ||||||||||
Standards | GB/T2423-2008 GJB1217GJB360.23 GJB150 GJB548 MIL-STD-202F IEC-68-2-27 MIL-STD-883E MIL-STD-810F ISTA ULMIL-STD-810G |