Shock Test System

Lithium Battery Impact Testing Machine

Lithium Battery Impact Testing Machine

Lithium Battery Impact Testing Machine

Model No. :

BE-SKT-10

Model No. : BE-SKT-10

Brand : DG Bell

A specialized mechanical shock system engineered to simulate the intense peak accelerations and rapid impact forces batteries may encounter during transport or use. By utilizing a high-performance lifting mechanism and customizable waveform generators, the system provides precise data on the structural durability and electrical safety of cells under extreme G-force conditions.

  • Precise control over peak acceleration values

  • Multiple selectable shock pulse durations available

  • Durable lifting mechanism ensures high repeatability

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− Features

  • Dynamic Pulse Shaping: Features interchangeable waveform pads that allow the system to generate various profiles, including half-sine and sawtooth pulses, to replicate specific industrial shock environments.
  • High-Force Capacity: Capable of achieving extreme acceleration levels—often up to 1000G or higher—to test the ultimate mechanical limits of battery assemblies and electronic components.
  • Integrated Damper System: Built with a high-efficiency shock absorption base that isolates the impact force, preventing residual vibrations from affecting the laboratory floor or surrounding sensitive equipment.
  • Pneumatic Braking Mechanism: Equipped with a fast-acting pneumatic brake to prevent secondary rebounds, ensuring that the sample is only subjected to a single, controlled impact per cycle.
  • Synchronized Data Acquisition: The system interfaces with high-speed sensors to capture real-time acceleration data, allowing for detailed time-history analysis of the shock pulse.

+ Technical Specifications

+ Standards

Features
  • Dynamic Pulse Shaping: Features interchangeable waveform pads that allow the system to generate various profiles, including half-sine and sawtooth pulses, to replicate specific industrial shock environments.
  • High-Force Capacity: Capable of achieving extreme acceleration levels—often up to 1000G or higher—to test the ultimate mechanical limits of battery assemblies and electronic components.
  • Integrated Damper System: Built with a high-efficiency shock absorption base that isolates the impact force, preventing residual vibrations from affecting the laboratory floor or surrounding sensitive equipment.
  • Pneumatic Braking Mechanism: Equipped with a fast-acting pneumatic brake to prevent secondary rebounds, ensuring that the sample is only subjected to a single, controlled impact per cycle.
  • Synchronized Data Acquisition: The system interfaces with high-speed sensors to capture real-time acceleration data, allowing for detailed time-history analysis of the shock pulse.
Specified Load 10 kg, (Including fixtures and test specimen)
Bench Dimension L200×W200 mm
Pulse Wave Half sinusoidal wave
Shock Impact Peak Acceleration 150~15000 m/s2
Pulse Duration 0.6~20ms
External Dimension L1000mm×W500mm×H2700mm
Total Weight 1500 kg
Impact Form Free fall
Max. Drop Height 1500mm
Power Supply Three phase 380V,50/60 Hz
Hydraulic Source With the equipment
Ambient Condition Temperature 0~40℃
Humidity(25℃) <85%
Reliability 1.Average failure-free accumulation working time ≥ 1000h;
2.The half-sine waveform generator has no less than 5000 consecutive impacts;
3.The half-sine waveform generators have a storage time of no less than 5 years in a clean, room temperature environment.
Testing System Shock DAQ, Impact, collision measurement control system
Usage Standard GJB150、GJB360、GJB548、GB/T2423、GJB1217、JJG497、GIEC68-2-27
Testing Standard Acceleration amplitude, pulse width, uniformity, and lateral motion ratio meet the requirements of JJG541-88.