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Scenario-Specific Customized Solutions
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Scenario-Specific Customized Solutions

Yongxin Hongtai Technology focuses on the specific needs of diverse application scenarios, delivering highly tailored custom battery tray solutions through synergistic innovation across material, structure, and function. These solutions provide safety protection, energy efficiency optimization, and sustainable operation guarantees for energy storage systems, driving energy structure upgrades across industries and supporting green, low-carbon development.

Modular Design
02

Modular Design

Structural modular reconfiguration: From multi-dimensional perspectives of material innovation, architectural design, and process adaptation, achieving structural modular reconfiguration. Scenario function integration: Oriented toward scenario requirements, building a flexible system of basic modules + scenario extensions to meet the needs of specific energy storage battery pack scenarios

Yongxin Hongtai Technology Liquid-Cooled Battery Energy Storage System Solution

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High-Rate Response and Dynamic Support

High-rigidity structures withstand the sustained stress of 2C-rate charge-discharge; efficient liquid-cooled flow paths suppress hot-spot temperature differentials; rigid-flex synergistic design resolves the conflict between mechanical vibration and cell expansion, balancing frequency regulation response speed with system lifespan.

02

Extreme Environment Resistance and Lifespan Assurance

IP67-level sealing blocks dust and salt mist erosion; parallel flow paths with flexible uniform temperature distribution dissipate diurnal 30°C thermal stress; dual protection barriers resist harsh environmental degradation, safeguarding full-lifecycle attenuation rate compliance.

03

Spatial Efficiency and Intrinsic Safety

Based on reinforced front-end solutions, real-time regulation of cell expansion stress; integrated fire-blocking layers prevent thermal runaway propagation paths, adapted to standardized container high-density stacking requirements, supporting safe arbitrage under EMC mode.

04

Flexible Adaptation and Mobile Operations & Maintenance

Reusing grid-grade liquid-cooled architecture, optimized parallel flow paths maintain battery cluster ±2°C uniform temperature, ensuring long-term operational reliability of islanded systems in humid/high-corrosion environments.

Liquid-Cooled Battery Energy Storage System (BESS) Working Principle

Liquid-Cooled Battery Energy Storage System (BESS) Working Principle
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Sealing · Pressure Resistance · Precision — The Safety Doctrine of Energy Storage Trays

IP67 sealing protection, effectively blocking external environmental erosion and internal leakage risks; pressure-bearing structures ensure mechanical stability under static stacking and dynamic impact; precise positioning avoids cell assembly stress concentration. The three work in concert to provide systematic protection for battery systems, meeting intrinsic safety requirements.

02

High-Strength · Hermetic · Robust — The Process Triangle of Aluminum Extrusion FSW Battery Trays

Innovative aluminum extrusion profiles fused with friction stir welding (FSW) process, featuring high-strength hermetic welds (strength reaching 70% of base material), full-area sealing (cabinet IP54, flow path IP67), and controlled-temperature precision welding deformation ≤2mm as core advantages, achieving synergistic leaps in structural strength, environmental protection, and dimensional accuracy, building an intrinsic safety foundation for battery systems.

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Scenario-Specific Customized Solutions

Yongxin Hongtai Technology focuses on the specific needs of diverse application scenarios, delivering highly tailored custom battery tray solutions through synergistic innovation across material, structure, and function. These solutions provide safety protection, energy efficiency optimization, and sustainable operation guarantees for energy storage systems, driving energy structure upgrades across industries and supporting green, low-carbon development.

Modular Design

Structural modular reconfiguration: From multi-dimensional perspectives of material innovation, architectural design, and process adaptation, achieving structural modular reconfiguration. Scenario function integration: Oriented toward scenario requirements, building a flexible system of basic modules + scenario extensions to meet the needs of specific energy storage battery pack scenarios

High-Rate Response and Dynamic Support

High-rigidity structures withstand the sustained stress of 2C-rate charge-discharge; efficient liquid-cooled flow paths suppress hot-spot temperature differentials; rigid-flex synergistic design resolves the conflict between mechanical vibration and cell expansion, balancing frequency regulation response speed with system lifespan.

Extreme Environment Resistance and Lifespan Assurance

IP67-level sealing blocks dust and salt mist erosion; parallel flow paths with flexible uniform temperature distribution dissipate diurnal 30°C thermal stress; dual protection barriers resist harsh environmental degradation, safeguarding full-lifecycle attenuation rate compliance.

Spatial Efficiency and Intrinsic Safety

Based on reinforced front-end solutions, real-time regulation of cell expansion stress; integrated fire-blocking layers prevent thermal runaway propagation paths, adapted to standardized container high-density stacking requirements, supporting safe arbitrage under EMC mode.

Flexible Adaptation and Mobile Operations & Maintenance

Reusing grid-grade liquid-cooled architecture, optimized parallel flow paths maintain battery cluster ±2°C uniform temperature, ensuring long-term operational reliability of islanded systems in humid/high-corrosion environments.