
OEM Enerji Depolama Aküsü Alüminyum Baralar 48V LiFePO4 Akü için
√ Bakırdan daha hafiftir, montajı kolaydır ve ağırlığı azaltır.
√ Çeşitli ortamlarda dayanıklılık için doğal olarak korozyona karşı direnç gösterir.
√ Gelişmiş güvenlik ve performans için mükemmel ısı dağılımı.
√ Mekanik zorlamalara ve çevre koşullarına dayanıklıdır.
Alüminyum baralarımız güç dağıtımı için hafif, verimli ve güvenilir bir çözüm sunar. Yüksek kaliteli alüminyumdan üretilen bu baralar, optimum elektriksel iletkenlik ve mekanik dayanıklılık sağlar. 48V LiFePO4 akü sistemlerinin performansını ve ömrünü artırmak için idealdir ve akü hücreleri arasında güvenli ve kararlı bağlantılar sağlar.
| Ürün Türü: | Alüminyum baralar |
|---|---|
| Malzeme tabanı: | Yüksek kaliteli alüminyum |
| Gerilim Değeri: | 48V |
| Mevcut Kapasite: | 200A'ya kadar |
| Kalınlık Seçenekleri: | Belirli pil tasarımlarına uyacak şekilde özelleştirilebilir |
| Yüzey Kaplaması: | Gelişmiş iletkenlik ve korozyon direnci için çıplak veya isteğe bağlı kalay kaplama |
| Çalışma Sıcaklık Aralığı: | -40°C ile +85°C arası |
| Elektriksel Direnç: | Yüksek, etkili ısı dağılımı için |
| Isıl İletkenlik: | -40°C ile +120°C arası |
| Uyumluluk: | RoHS uyumlu |
Önde Gelen Özel Alüminyum Bara Üreticisi
As the world’s leading manufacturer of alüminyum baralar, we offer customized solutions with precision processes and intelligent optimization systems at the core. Through new targeted electro-magnetic coupling model simulation and laser anti-magnetic welding technology, we have realized online upgrading in full-current environment, reducing outage losses by up to 90%.
Aluminum Busbar Design Specifications
| Types | Yapısal Özellikler | Uygulanabilir Senaryolar | Advantages vs. Copper Busbar |
|---|---|---|---|
| Solid Busbar | Single Piece Seamless Aluminum | High Stability Power Distribution Systems | 40% Cost Reduction, 60% Weight Reduction |
| Esnek Baralar | Multi-layer conductors + dynamic support layers | Vibration-intensive industrial equipment | 3 times higher fatigue strength |
| Laminating Busbars | Alternating Conductive/Insulating Laminations | High Voltage Environments in Compact Spaces | 50% Improvement in Thermal Efficiency |
What are the materials and processes for aluminum bus bar?
- Shell material revolution: the use of aluminum-magnesium alloy shell, compared with the traditional steel shell to reduce eddy current loss by 85%, thermal conductivity increased by 2 times.
- Conductor surface treatment: double plating process (copper + tin) to reduce the resistivity of 18%, and through the 1000 hours of salt spray test.
- Intelligent welding system: Under the environment of 1000GS strong magnetic field, laser welding realizes weld seam flatness ≤ 0.1mm, and post-weld compression is lower than international standard by 30%.

How we make the aluminum bus bar energy ffficiency?
- Multi-physical field cloud decision-making system: Dynamic optimization of current distribution through real-time monitoring by fiber-optic galvanometer + Gaussmeter, which reduces the series pressure drop by 15% and saves electricity up to 1.2 million kWh per year.
- Modularized prefabrication technology: Indonesia Beija project adopts prefabrication and assembling process, which shortens the construction period by 40% and achieves zero defect delivery.
- Environmentally friendly closed-loop design: aluminum recycling rate of 99.5%, production energy consumption of only 1/5 of copper, compliant with EU RoHS 2025 standards.
What the advantages of Aluminum Bus bars?
- Conductivity: Conductivity ≥61% IACS, UL 891 certified.
- Lightweight design: density 2.7g/cm³, 53% lighter than copper, 70% more efficient installation
- Economy: full-cycle cost reduction of 45% (including maintenance)
- Corrosion resistance: anodized treatment, C5-M level corrosion certification
- Thermal Management: Thermal conductivity 237W/m-K, temperature rise control within Δ35K
- Flexibility of customization: support for non-standard cross-section (maximum 1200mm²) and curvature bending (R ≥ 5D)
- Seismic performance: passed IEC 61439-3 Class 9 seismic test.
- Environmental protection index: carbon footprint reduced by 62% compared with the traditional process
- Intelligent monitoring: optional IoT sensors, real-time warning accuracy ≥99.8%
Industry application cases
- Shandong Steel Structure Workshop: Adopting suspended aluminum-based power busbar saves 40% of wiring space and reduces energy consumption of PE wire by 25%.
- Northwest 420kA electrolyzer: current efficiency increased by 3.2% after upgrading, annual output value increased by more than 28 million RMB.
- Indonesia smelting project: modular busbar system compressed the construction cycle from 18 months to 11 months.


