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High Frequency Vibration Shakers For Battery Pack Module Testing

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High Frequency Vibration Shakers For Battery Pack Module Testing

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Brand Name : PRECISION

Model Number : VTS-10

Certification : CE

Place of Origin : CHINA

MOQ : 1

Price : $6000

Payment Terms : T/T

Supply Ability : 100/month

Delivery Time : 15 working days

Packaging Details : Standard export packaging

Customized support : OEM ODM

Sine force : 10kN

Random force : 10kN

Shock force : 20kN

Frequency range : 1-3000Hz

Displacement : 51mm

Velocity : 2.0

Table size : 500x500mm

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High Frequency Vibration Shakers for Battery Pack Module Testing

Our high frequency vibration shakers are specifically engineered to provide rigorous and precise testing for battery pack modules. As battery technology evolves, understanding performance under high-frequency stresses is critical. Our systems are designed to simulate the subtle yet impactful vibrations encountered in demanding applications, such as high-performance EVs, aerospace, and specialized industrial equipment. By delivering accurate and repeatable high-frequency vibration profiles, these shakers are essential for evaluating the durability, reliability, and safety of your battery modules, helping to uncover potential weaknesses invisible to lower-frequency tests.

Key Features

  • Extended High Frequency Range: Capable of generating vibrations across a broad spectrum of high frequencies, far beyond standard transportation profiles, to uncover resonant frequencies and fatigue issues in battery modules.
  • Precision Electrodynamic Technology: Utilizes advanced electrodynamic shakers to ensure accurate and repeatable control of complex high-frequency sine, random, and shock profiles.
  • Optimal Force & Displacement: Designed to provide the necessary force and displacement for effective testing of various battery module sizes and weights at high frequencies.
  • Advanced Digital Control System: Features sophisticated controllers that enable precise control over frequency, amplitude, and acceleration, crucial for detailed high-frequency analysis.
  • Comprehensive Data Acquisition: Integrated systems for real-time monitoring and recording of critical test parameters, including acceleration, displacement, and optional thermal/electrical data from the battery module.
  • Robust & Reliable Design: Built with high-quality components for continuous, stable operation, even during extended high-frequency tests.
  • Customizable Test Fixtures: Expertly designed and manufactured fixtures ensure secure mounting of battery modules, optimizing vibration transmission and minimizing unwanted resonances at high frequencies.
  • Integrated Safety Protocols: Incorporates essential safety interlocks, emergency stops, and monitoring features critical for the safe handling and testing of battery modules.

Applications

  • EV Battery Module Validation: High-frequency vibration analysis to ensure long-term durability in high-performance electric vehicles.
  • Aerospace Battery Systems: Qualification and reliability testing of battery modules for aerospace applications.
  • Portable Power Devices: Assessing the robustness of battery modules in high-vibration portable electronics and tools.
  • Energy Storage Module Testing: Evaluating modules for industrial and grid-scale energy storage systems subjected to operational vibrations.
  • Failure Mode Identification: Uncovering subtle design flaws, material fatigue, and connection issues within battery modules under high-frequency stress.
  • Quality Assurance & R&D: Essential for both validating new designs and ensuring the consistent quality of manufactured battery modules.

Benefits

  • Reveals Hidden Weaknesses: Detects fatigue, micro-cracks, and connection issues that might not be apparent in lower-frequency tests.
  • Enhanced Reliability: Ensures battery modules can withstand the subtle yet continuous high-frequency stresses of real-world use.
  • Optimized Performance: Provides critical data for refining battery module designs, leading to improved longevity and efficiency.
  • Accelerated Development: Speeds up the validation process by simulating years of high-frequency stress in a shorter timeframe.
  • Improved Safety: Contributes to safer battery systems by identifying potential points of failure under extreme dynamic conditions.
  • Precise & Repeatable Data: Generates accurate and consistent results for informed engineering decisions and regulatory compliance

Technical Specifications:

Rated Sine/ Random/ Shock Force 1,100 kgf/1.100 kgf/2200 kgf Armature Mass 13 kg
Frequency Range 5-3500 Hz Inserts Size (Standard) M10
Max./Continuous Displacement p-p 51 mm/51 mm Load Attachment Points (Standard) 25
Max. Velocity 2.0 m/s Natural Frequency-Thrust Axis <3Hz
Max.Sine/ Random Acceleration 85/60g Max. Vertical Load Support 300 kg
Armature Diameter 335 mm Stray field @152 mm above table ≤lmT (10 gauss)
Fundamental Resonance Frequency 3,000 Hz (nom) ±5% Dimension LxWxH 940 mmx715 mm* 780 mm
Allowable Armature Overturning Moment 300 Nm Weight (Uncrated) 1.000 kg

Ready to push the limits of your battery module testing? Contact our experts today to discuss your high frequency vibration shaker requirements and find the ideal solution to ensure the durability and reliability of your battery pack modules.


Product Tags:

Battery Pack Module Vibration Shakers

      

High Frequency Vibration Shakers

      

Battery Pack Module Shakers

      
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