Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine

Product Details
Customization: Available
After-sales Service: Online
Warranty: 1 year
Diamond Member Since 2024

Suppliers with verified business licenses

Audited Supplier Audited Supplier

Audited by an independent third-party inspection agency

Importers and Exporters
The supplier has import and export rights
In-stock Capacity
The supplier has In-stock capacity
Fast Delivery
The supplier can deliver the goods within 15 days
R&D Capabilities
The supplier has 1 R&D engineers, you can check the Audit Report for more information
to see all verified strength labels (7)
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
  • Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
Find Similar Products
  • Overview
  • Product Description
  • Product Parameters
  • Company Profile
Overview

Basic Info.

Model NO.
GA-T100
Type
Mechanical Shock Testing Machine
Load Way
Electronic Load
Loading Method
Dynamic Load
Display
Digital
Control
Computer Control
Weight
0-100Kg
Power Source
AC220V
Transport Package
Wooden Package
Trademark
GONOAVA
Origin
China
HS Code
9024800000
Production Capacity
200

Product Description

Product Description

Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine

Product Applications

This mechanical shock testing machine is primarily suitable for shock testing applications in electronics, aerospace, shipbuilding, automotive components, transportation, and other fields. By selecting different waveform generators, it can perform shock tests using half-sine, post-peak sawtooth, or square waves.
The equipment complies with test specifications such as GB/T2423-2008, GJB150, GJB360, GJB548, GJB1217, MIL-STD-202F, IEC-68-2-27, MIL-STD-810F, and MIL-STD-883E.

Shock Testing System Accelerated Shock Test Equipment Mechanical Shock Test Machine High Acceleration Mechanical Shock Tester

Main Features:

1. Free-fall impact tester with hydraulic lift and high-pressure hydraulic braking.
2. Air-hydraulic pressurization and a strong friction brake to prevent secondary impacts.
3. Shock meter: Single-channel data acquisition, capable of simultaneously measuring acceleration data from two channels, including storage, report printing, data recall, and database management.
4. Utilizes a rubber module to generate half-sine wave pulses over a wide range of arbitrary durations.
5. Can perform equivalent drop tests on packaging boxes.

Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine

Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
Product Parameters

Shock Testing System Accelerated Shock Test Equipment Mechanical Shock Test Machine High Acceleration Mechanical Shock Tester

Equipment Configuration
 
No. Equipment Name Model/Specifications quantity
1 Impact Machine GA-T100 1 unit
2 Hydraulic Lift Mechanism   1 set
3 Controller SKC-1 1 set
4 Impact Meter ST-2 1 set
5 Sensor LAB 1 PCS
6 Control Computer Branded Computer 1 set
7 Waveform Generator Single-group half-sine wave 1 set
Post-peak sawtooth wave (optional) 1 set
Trapezoidal wave (optional) 1 set
8 Safety Device Sound and light safety alarm 1 set
9 Accessories Tools, fixtures/instructions, installation CD, etc. 1 set

Technical Parameters
Impact Table Main Parameters
Work platform 700×800 mm
Maximum load 100 kg
Peak acceleration Half-sine wave 10-600G
Ramp-back wave 15-100G (optional)
Trapezoidal wave 15-100G (optional)
Pulse duration Half-sine: 3-30 ms
Post-peak sawtooth: 6-18 ms (optional)
Trapezoidal: 3-30 ms (optional)
Acceleration tolerance 20%
Velocity variation 15%
Tabletop lateral ratio 20%
Equipment dimensions 138*149*245CM
Total equipment 3800 kg
 
Measurement system
Input channels 2 channels
Sampling frequency 192kHz
Pulse duration 0.5-100ms
Maximum acceleration 5000G
Communication interface USB 2.0
Supported standards ISO, MIL-STD-810, user-defined
Operating system Microsoft Windows 7/10
 
System accelerometer
Brand   LAB
Model   C02A01
Output Method   Charge Type
Sensitivity   11.91pC/g
Frequency Range   0.5-8000Hz
Acceleration Range   ±2000G
Operating Environment   -40-+160ºC
 
Other Notes  
Power supply AC 3-phase 380V ±10%, 5kVA  
Compressed air 0.5-0.8MPa  
Temperature RT~40°C  
Humidity 25°C<85RH%  
Reliability Average failure-free rate ≥5000 hours;
Half-sine waveform generator: continuous use of at least 8000 times;
Storage time in a clean, normal temperature environment: at least 5 years
 
Applicable standards GB2423.5, GJB150.18, GJB360.23, IEC68-2-27, MIL-STD202F, MIL-STD810B, GB/T18287, etc.  
Verification standards JG541-2005  

Shock Testing System Accelerated Shock Test Equipment Mechanical Shock Test Machine High Acceleration Mechanical Shock Tester

Equipment performance introduction


1. Work Platform
Adopts a high-strength imported aluminum alloy work platform.
2. Lifting Mechanism:
Utilizes a hydraulic lifting system.
3. Lifting Height Control
The lifting height is measured by a photoelectric encoder assembly mounted on the base. The photoelectric encoder offers high accuracy, strong anti-interference capabilities, and high reliability, ensuring impact repeatability.
4. Braking System
Adopts pneumatic braking and a strong friction brake with secondary impact protection for fast and reliable braking, preventing secondary rebound.
5. Cushioning System
Comprising a base, dampers, and airbags, this vibration reduction system reduces the impact force transmitted from the work platform to the ground.
6. Waveform Generator
6.1. Half-sine Wave: Rubber Pads
7. Safety Devices
Emergency Stop Switch: Cuts off the circuit in emergencies such as when contact welding occurs by forcibly disconnecting the actuator.
8. Shock Measurement System Introduction and Features
This system complies with MIL-STD-810, GJB-150-18-86, and IEC68-2-27 standards. It features precise and rapid shock waveform capture, with a sampling rate of up to 1MHz, eliminating the worry of missing even the smallest shock events.
It is also an integrated solution, eliminating the need to worry about waveform viewing and recording; it handles everything from shock event capture to report generation. More importantly, it provides shock response spectrum (SRS) analysis, helping you effectively assess the potential damage of shock pulses to actual systems. Finally, auxiliary force-deformation and shock response analyses provide a more detailed understanding of shock results.

Measurement System Features
Complies with MIL-STD-810, GJB-150-18-86, IEC68-2-27, and Dell standards
Maximum sampling frequency up to 1MHz
Maximum test acceleration 100,000gn
Minimum test pulse width 0.1ms
Multi-frame waveform recording and playback
Supports internal and external triggering

Analysis Functions:
Shock Waveform Transient Capture
Transient capture allows you to capture single or multiple pulses. The system automatically analyzes data such as the peak value, pulse width, velocity variation, and Head Injury Index (HIC). It automatically matches the captured pulse waveform to the ideal waveform and compares the deviation between the two.

Shock Response Spectrum Analysis
Shock Response Spectrum Analysis assesses potential damage caused by impact and provides a basis for designing product shock resistance. The system performs SRS analysis on each shock pulse, comparing the deviation between the actual SRS and the target SRS.

Other Analysis
Force-deformation analysis, shock response demonstration, and rotational shock analysis are essential for shock testing. Force-deformation analysis calculates peak force, peak deformation, energy, and efficiency generated by the pulse. The Shock Response Demo provides tools for studying shock response spectra. Rotating shock analysis is used for rotating shock machines or other rotating control events. The signal is calculated from axial acceleration measurements.
 Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test MachineImpact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test MachineImpact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine
Company Profile

 

Impact Testing Machine Laboratory Mechanical Shock Testing Machine High Efficient Acceleration Shock Absorber Test Machine

Send your message to this supplier

*From:
*To:
*Message:

Enter between 20 to 4,000 characters.

This is not what you are looking for? Post a Sourcing Request Now
Send Inquiry
Chat Now
Product Groups
More