logo

Ürün ayrıntıları

Created with Pixso. Evde Created with Pixso. Ürünler Created with Pixso.
Elektrodinamik titreşim test sistemleri
Created with Pixso.

High-Frequency Vibration System with 3m x 3m Table 70kN Sine and Random Force for Battery Subpacks Testing

High-Frequency Vibration System with 3m x 3m Table 70kN Sine and Random Force for Battery Subpacks Testing

Marka Adı: PRECISION
Model Numarası: VTS-70
Adedi: 1
Fiyat: $6000
Ödeme Şartları: T/T
Tedarik Yeteneği: 100/ay
Ayrıntılı Bilgiler
Menşe yeri:
Çin
Sertifika:
CE ISO
Özelleştirilmiş destek:
OEM ODM
sinüs kuvveti:
70kn
Rastgele güç:
70kn
Şok gücü:
210kn
Frekans Aralığı:
1-3000Hz
Yerinden etme:
100 mm
Hız:
2.0
Masa Boyutu:
1500x1500mm
Ambalaj bilgileri:
Standart İhracat Ambalajı
Yetenek temini:
100/ay
Vurgulamak:

3m x 3m Table High-Frequency Vibration System

,

70kN Sine Force Electrodynamic Vibration Test System

,

70kN Random Force Vibration Testing Equipment

Ürün Tanımı

High-Frequency Vibration System with 3m x 3m Table for Battery Subpacks and Large EV Modules

 

Product Description:

Our High-Frequency Vibration System featuring an expansive 3 meter by 3 meter (3m x 3m) table is specifically engineered for the critical testing of large-format Battery Subpacks, EV Modules, and full-sized assemblies. This powerful, customized solution provides the necessary high-frequency performance and vast test surface area required for simultaneously testing multiple components or very large, complex structures used in the electric vehicle (EV) and energy storage sectors.

Key Features:

  • Extra-Large 3m x 3m Test Table:

    • Maximum Payload Area: Provides an industry-leading surface area for mounting multiple battery modules or testing single, oversized subpacks.

    • High Stiffness and Flatness: Engineered with lightweight, high-st-iffness magnesium or aluminum alloy to ensure minimal modal deformation and uniform vibration transfer across the entire large surface.

  • High-Frequency Performance:

    • Designed to maintain high acceleration and velocity across a broad frequency range, crucial for simulating the structural fatigue and failure modes of battery components.

    • Ideal for capturing high-frequency inputs from road noise, motor whine, and internal cellular resonance.

  • High-Force, Water-Cooled Shaker:

    • Utilizes a robust water-cooled electrodynamic shaker (or multiple shakers) to deliver the sustained high force required to drive large, heavy payloads at high frequencies for extended periods (e.g., long-duration fatigue testing).

    • Ensures thermal stability and reliability during demanding test cycles.

  • Superior Control and Uniformity:

    • Multi-Point Control: Advanced digital controller supports multiple accelerometers placed across the large table to monitor and maintain vibration uniformity (phase and amplitude) across the entire 9 $m^2$ area.

    • Waveform Versatility: Capable of generating high-fidelity Random, Sine, and Classical Shock waveforms required by automotive and regulatory standards (e.g., UN/ECE, SAE).

  • Battery Safety Integration:

    • Includes enhanced safety interlocks, high-voltage isolation, and thermal monitoring interfaces tailored for testing live battery components.

Applications:

  • EV Battery Module Qualification: Simultaneous testing of multiple modules or comprehensive testing of large subpacks for durability.

  • Battery Thermal Systems: Evaluating the structural integrity of cooling plates, manifolds, and enclosures under vibration.

  • Large Component Fatigue: Durability and reliability testing of other oversized automotive or aerospace assemblies.

  • Simultaneous Testing: Maximizing lab throughput by testing multiple smaller battery units at once.

Benefits:

  • Maximized Throughput: The large table significantly increases test efficiency and laboratory productivity.

  • Accurate Simulation: High-frequency capability allows for realistic simulation of operational wear and tear.

  • Regulatory Confidence: Provides the high-fidelity, uniform data required for critical safety and compliance documentation.

  • Future-Proof: Accommodates the increasing size and weight of next-generation EV battery architecture.

 

High-Frequency Vibration System with 3m x 3m Table 70kN Sine and Random Force for Battery Subpacks Testing 0High-Frequency Vibration System with 3m x 3m Table 70kN Sine and Random Force for Battery Subpacks Testing 1

Technical Specifications:

 

Rated Sine/ Random/ Shock Force 7,000 kgf/7,000 kgf/14,000 kgf Armature Mass 70 kg
Frequency Range 5-2,500 Hz Inserts Size (Standard) M10
Max / Continuous Displacement p-p 100mn/90mm Load Attachment Points (Standard) 17
Max. Velocity 1.8m/s Natural Frequency -Thrust Axis <3Hz
Max.Sine/ Random Acceleration 100/60g Max. Vertical Load Support 1,000 kg
Armature Diameter 450 mm Stray field @152 mm above table ≤lmT (10 gauss)
Fundamental Resonance Frequency 2,100Hz(nom.)±5% Dimension LxWxH 1,650 mmx1,130mmx 1,280mm
Allowable Armature Overturning Moment 1,000 Nm Weight (Uncrated) 4,500 kg

 

Why Choose Our Large-Scale System?

When standard shakers are too small and high-frequency performance cannot be compromised, our customized 3m x 3m system delivers unmatched scale, power, and precision for your critical battery subpack testing programs.

 

Contact Us:

Contact our specialized engineering team today to design your Custom High-Frequency Vibration System and solve your large-scale battery testing challenges.