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  • ISO 19642 High-Voltage Cable Standard Comparison | fuqiang
    ISO 19642 High-Voltage Cable Standard Comparison | fuqiang
    2026-04-08
    This essential guide decodes the ISO 19642 series, the definitive regulatory framework for 2026 electric vehicle high-voltage cabling. It provides a technical breakdown of Part 5 (Copper) vs. Part 7 (Aluminum) conductors and explores the critical Part 9 requirements for EMI/EMC shielding. The analysis emphasizes the transition to Class D and E thermal ratings (125°C–150°C) for 800V architectures and highlights mandatory safety protocols, including 5kV+ dielectric spark testing and RAL 2003 orange color coding to prevent isolation faults and ensure first-responder safety.
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  • ASTM D2000 Classification | Technical Specification & Standard Analysis | Fuqiang
    ASTM D2000 Classification | Technical Specification & Standard Analysis | Fuqiang
    2026-03-30
    This technical brief deconstructs the ASTM D2000 classification system, providing a deep dive into elastomer chemistry for industrial applications. It focuses on the mechanical behavior of EPDM, NBR, and FKM under high-pressure environments ($N/mm^2$). By analyzing critical performance data—such as Compression Set percentages and Shore A Hardness—the guide offers a diagnostic framework for preventing common failure modes like Explosive Decompression (ED) and Chemical Swell, aligning material selection with 2026 industrial reliability standards.
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  • ISO 19642 HV Wire Harness Standards & Technical Analysis | fuqiang
    ISO 19642 HV Wire Harness Standards & Technical Analysis | fuqiang
    2026-03-30
    This technical guide explores the ISO 19642 regulatory framework for 800V New Energy Vehicle (NEV) high-voltage architectures. We provide a deep dive into mitigating EMI interference and dielectric breakdown through strategic material selection between XLPO and Silicone rubber. By addressing critical failure modes—such as bend radius fatigue and galvanic corrosion—and aligning with IPC-WHMA-A-620 standards, this report serves as a blueprint for Tier-1 engineers to optimize thermal management and shielding effectiveness in modern powertrain integration.
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  • Engine Bay Heat-Resistant Acoustic Material & Standard Analysis | fuqiang
    Engine Bay Heat-Resistant Acoustic Material & Standard Analysis | fuqiang
    2026-03-13
    To mitigate the dual threats of Radiant Heat ($> 250^\circ C$) and Low-Frequency Engine Drone through high-performance, multi-layered insulation systems.
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  • EPDM Foam Automotive Sealing Mechanical Property & Standard Analysis | fuqiang
    EPDM Foam Automotive Sealing Mechanical Property & Standard Analysis | fuqiang
    2026-03-13
    To provide a data-driven engineering roadmap for selecting high-performance automotive seals by evaluating the mechanical superiority of Closed-cell EPDM over traditional PVC in exterior weatherstripping.
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  • Automotive Acoustic Cotton Installation Standard & NVH Analysis | fuqiang
    Automotive Acoustic Cotton Installation Standard & NVH Analysis | fuqiang
    2026-03-13
    To eliminate road noise and engine drone through the strategic application of Automotive Acoustic Cotton while adhering to global safety benchmarks.
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  • Aerogel-Foam Composites Technical Specification & Standard Comparison | fuqiang
    Aerogel-Foam Composites Technical Specification & Standard Comparison | fuqiang
    2026-03-13
    To address the critical "Thermal Runaway" challenge in high-energy-density EV battery packs by transitioning from traditional PU/PE foams to advanced Aerogel-Foam Composites.
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  • Eliminate EV Motor Whine with EPDM Foam 2026 Guide
    Eliminate EV Motor Whine with EPDM Foam 2026 Guide
    2026-03-13
    A technical 2026 guide on mitigating high-frequency electric drive unit (EDU) noise using high-density EPDM foam. Features comparative data on Industrial vs. Commercial grade compression sets (ASTM D1056), UL 94-V0 flame retardancy for battery safety, and acoustic transmission loss (TL) metrics. Includes expert protocols for "offset mounting" to maintain cooling efficiency while achieving a 15dB cabin noise reduction in luxury EVs.
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  • Thermal Management Silicone Hoses for NEVs 2026
    Thermal Management Silicone Hoses for NEVs 2026
    2026-03-04
    Selecting Thermal Management Silicone Hoses for 2026 NEVsControl the Heat: Why Silicone Hoses are Vital for NEV Thermal ManagementModern EVs require complex liquid cooling. Silicone hoses are the veins of the thermal management system. fuqiang provides reinforced silicone hoses that handle the const
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  • Rubber Vibration Isolation for EV Motor Mounts 2026
    Rubber Vibration Isolation for EV Motor Mounts 2026
    2026-03-04
    Enhancing NEV Comfort with Advanced Rubber Vibration IsolationDrive in Silence: Advanced Rubber Vibration Isolation for Electric Motor MountsIn the absence of engine noise, NVH (Noise, Vibration, Harshness) becomes a priority. Rubber vibration isolation components are the primary tools used by fuqia
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  • Total 28 pages  Go to Page
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2026
DATE
06 - 11
How to Prevent Thermal Runaway Propagation in EV Battery Packs?
This technical report addresses a critical safety challenge in electric vehicles: mitigating catastrophic battery thermal runaway. It analyzes why conventional polyurethane or plastic cell spacers fail under extreme heat, leading to structural collapse and fire propagation. The report presents high-performance ceramic silicone foam sheets as the definitive engineering solution. When temperatures exceed 1000°C, this advanced elastomer undergoes an endothermic, ceramifiable chemistry transformation, turning into a rigid, non-conductive ceramic shield. Supported by a comparative data matrix against standard PU foams and traditional aerogels, the document demonstrates how ceramic silicone maintains physical integrity, handles cell swelling via compression elasticity, and blocks high-pressure toxic gases. Validated by UL 94 V-0 flammability metrics and SAE international automotive safety guidelines, this material ensures strict compliance and passenger safety in next-generation EV battery p
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2026
DATE
06 - 05
Why Is UL94 V-0 Rated Insulation Ceramic Foam Becoming the New Standard for EV Battery Safety?
This technical report explores why UL94 V-0 rated insulation ceramic foam has become the definitive safety standard for electric vehicle (EV) battery enclosures compared to conventional polyurethane and elastomeric foams. It breaks down the material science behind thermal runaway suppression, provides a comparative flammability matrix, and details critical engineering protocols—such as managing compression deflection and cable clearance—to prevent premature material failure. Backed by 15 years of Tier-1 manufacturing experience at fuqiang, the article serves as an engineering blueprint for protecting high-voltage automotive architectures.
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2026
DATE
05 - 29
Optimize Thermal Insulation with High-Performance Ceramic Coated Tape
Every high-temperature application requires robust protection against extreme thermal conditions, electrical arcs, and mechanical wear. As industries push the limits of power density and operating temperatures, conventional insulation materials often fail, leading to costly system failures or safety hazards. This comprehensive guide explores how ceramic coated tape addresses these engineering challenges, providing structural stability and reliable performance when standard solutions fall short.
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2026
DATE
05 - 20
Ceramifiable Silicone Foam: In-Depth Analysis | Fuqiang
This technical guide analyzes ceramifiable silicone foam, a breakthrough hybrid elastomer that serves as a flexible environmental seal under normal conditions and transforms into a rigid, non-combustible ceramic firewall during extreme thermal events. It covers material mechanisms, key advantages over standard silicone, UL94 V-0 performance metrics, proper installation protocols, and critical applications in energy storage and high-voltage infrastructure.
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2026
DATE
05 - 20
Ceramic Composites Deep Analysis | fuqiang
This technical analysis explores the engineering shift from traditional, brittle ceramic foam to advanced ceramifiable silicone foam in modern B2B manufacturing, focusing on electric vehicle battery safety. It evaluates how ceramifiable silicone rubber matrices transition into a solid ceramic protective layer under extreme heat, addressing the critical issues of mechanical vibration wear, brittle degradation, and active thermal runaway mitigation. The report establishes clear performance baselines for modern automotive design, contrasting material longevity, lightweighting efficiency, and adherence to international flame-retardant standards.
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  • Total 46 pages  Go to Page
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