Motorlager, chassis Teile und bearbeitete Teile für die Montage Linien.
Hohe-Festigkeit Befestigungen, Fahrwerk Teile, und strukturellen Baugruppen.
Geschmiedete Gehäuse, Rüstung Klammern und mission-kritische strukturelle Teile.
Präzisions-Gehäuse, Antrieb Rahmen und Anker-Verknüpfungen für die Automatisierungstechnik.
Metallrahmen, Halterungen und Baugruppen für Geräte und Ausrüstung zu Hause.
Sammelschienen-Halter, Batterie pack Teile und leichte strukturelle Gehäuse.
Solar Montage Teile, wind turbine Klammern, und Batterie-Gehäuse.
Ventilgehäuse, Flansch Blöcke, und Bohrloch bohren-Komponenten.
Große geschweißte Rahmen, PEB Strukturen und Baugruppen für Industrieanlagen.
Langlebige Transformatoren gebaut für konsistente Leistung, Energie-Effizienz und stabile Leistung-Verordnung.
Fregatte industrial-grade-Gehäuse bietet robusten, anpassbaren Schutz mit effiziente thermische management.
High-performance-Kabel und Leitungen für Haltbarkeit konstruiert und nahtlose Konnektivität zwischen Anwendungen.
Maßgeschneiderte Kabelbäume für sichere verbindungen und optimierte Anlagen.
Precision-engineered sammelschienensystem für die effiziente Energieverteilung und minimale Energieverluste.
Robuste Anschlüsse konzipiert für die sichere Verriegelung, zuverlässige Leitfähigkeit und lange-term performance.
Vielfältige Lösungen für die Automobil -, Elektro -, Maschinenbau-und Industriebedarf mit Präzisions-Komponenten.
CNC-Bearbeitung, liefert Mikron Präzision und engen Toleranzen für komplexe Geometrien.
Fregatte CNC Bearbeitung bietet hochpräzise, kundenspezifische Lösungen für komplexe casting Geometrien. Multi-Achsen-Funktionen sorgen für festen Toleranzen und optimale Oberflächen.
Sheet metal fabrication verwendet laser schneiden, Stanzen und biegen für Präzision.
Fregatte Sheet Metal Fabrication nutzt erweiterte laser schneiden und Abkantpresse-Technologie für kundenspezifische casting-Anwendungen. Engen Toleranzen, superior Schweißnähte, und hochfeste Materialien stellen die strukturelle Integrität.
Spritzguss fertigt hochpräzise Teile mit gleich bleibender Qualität.
Fregatte Injection Molding liefert custom-engineered Teile mit Mikrometer-Präzision und strukturelle Integrität. Spezielle Formen pflegen enge Toleranzen für komplexe Geometrien und hohe-stress-Anwendungen.
Feinguss sorgt genauehohe-Qualität Teile.
Schmieden Dienstleistungen, die Verbesserung der materiellen Stärke mit präzise Toleranzen.
Fregatte Casting Services bietet kundenspezifische casting mit engen Toleranzen und komplexen Geometrien. Wir verbessern die material Eigenschaften, die mit Fortgeschrittener Metallurgie, Gewährleistung Festigkeit und tragen Widerstand. Unsere Präzisions-Methoden unterstützen die Hochleistungs-Luft-und Raumfahrt -, Automobil-und industrielle Anwendungen.
Ende-zu-Ende Teil der Produktion aus Proben zu liefern bulk.
Ready-to-use assemblies gebaut, um genaue fit und Funktion.
Heavy-duty Herstellung mit high-Festigkeit Materialien für anspruchsvolle Anwendungen. Robust Schweißen für maximale strukturelle Haltbarkeit.
High-grade Aluminum Alloy (e.g., 1050, 6063)
3-15 microns (customizable based on application)
5 mm to 50 mm (customizable)
20 mm to 200 mm (customizable)
55-60% IACS (International Annealed Copper Standard)
Aluminum busbars are significantly lighter than copper, which can reduce shipping costs and ease installation. They provide the same conductivity performance at a fraction of the weight, offering you the flexibility to design compact power distribution systems that minimize the need for heavy infrastructure. The reduced weight translates to easier handling, lower labor costs, and efficient material usage, ensuring your project stays within budget.
150-220 W/m·K (depending on alloy composition)
Up to 36 kV (depending on insulation and application)
100 A to 10,000 A (customizable based on size and design)
-40°C to 105°C (depending on coating and environment)
Excellent resistance to oxidation and corrosion in various environments (marine, industrial, etc.)
Tensile Strength: 150-250 MPa (depending on alloy)
High adhesion strength, ensuring long-term durability
Smooth, anodized, or powder-coated (customizable)
Shape, size, coating type, voltage and current ratings
IEC 60853, UL 486A, RoHS compliant
Aluminum is naturally corrosion-resistant, making aluminum busbars ideal for use in environments exposed to moisture, extreme temperatures, or chemicals. The inherent corrosion resistance prolongs the life of your power distribution systems, reducing maintenance needs and preventing failures caused by rust or degradation over time. This is especially beneficial for industries such as utilities, construction, and outdoor power installations.
Aluminum busbars are designed to efficiently carry high currents. With advancements in alloy technology, modern aluminum busbars can carry more current than ever, making them suitable for high-demand applications. Their robust design ensures that your electrical systems can handle substantial loads without overheating or risk of failure.
Need reliable Bus Bars for your next project? Get in touch with us today, and we’ll help you find exactly what you need!
Aluminum busbars enable power transmission in high-voltage substations, enhancing grid stability.
Used in large HVAC control systems for efficient power distribution to compressors, fans, and motors.
Provides power distribution in vehicles and equipment, ensuring durability in extreme conditions.
Battery Energy Storage Systems (BESS) distribute power in energy storage systems to stabilize the grid and integrate renewable energy.
Delivers power within telecom stations, ensuring uninterrupted service in critical communication networks.
Powers onboard electrical systems, from navigation to propulsion, ensuring high reliability in maritime operations.
Aluminum busbars can be fabricated in various shapes and sizes, allowing for space optimization in electrical panel designs. Their compact form factor reduces the need for bulky wiring and supports a more organized, efficient setup. This design flexibility is critical for projects with space constraints or where maximizing available room is essential.
With aluminum busbars, you can significantly reduce the risk of electrical failures due to overloading or poor connection quality. Their design and material properties allow for secure, stable connections that enhance the overall safety of your electrical systems. This is especially important for industries requiring high levels of safety compliance, like aerospace, automotive, and data centers.
Check all our Frequently Asked Question
The alloy composition and heat treatment of aluminum busbars play a key role in their electrical conductivity. By using high-quality aluminum alloys, such as 1050 or 6063, and applying specific heat treatments, the busbars can be optimized for higher conductivity. This ensures minimal power loss, improved efficiency, and reliable performance under high-current conditions. The alloy’s purity and treatment process directly influence the busbar’s ability to transmit power efficiently without excessive heat buildup.
Surface treatments like anodizing and powder coating significantly enhance the corrosion resistance of aluminum busbars. Anodizing increases the thickness of the aluminum oxide layer, providing an effective barrier against moisture, chemicals, and extreme temperatures. This process is crucial for outdoor, marine, or chemically aggressive applications, extending the busbars’ lifespan and reducing maintenance costs.
The mechanical properties, such as tensile strength and hardness, are critical in determining the load-bearing capacity of aluminum busbars. Using high-strength aluminum alloys ensures the busbars withstand mechanical stresses during installation and operation. These properties also contribute to their long-term durability, preventing deformation under heavy electrical loads or mechanical strain and ensuring consistent performance over time.
Aluminum has a higher thermal expansion coefficient compared to other metals like copper. This means that aluminum busbars expand and contract more with temperature changes. Sammelschienen are often designed to mitigate this with proper thermal management features, such as expansion joints or reinforced supports. Understanding and controlling thermal expansion is critical in ensuring the busbars pflegen stable connections and prevent electrical failures in environments with significant temperature fluctuations.
While copper is known for its higher conductivity, aluminum busbars offer significant advantages in high-current applications, especially in weight and cost. Aluminum’s lower density makes it much lighter, reducing the mechanical load on support structures and simplifying installation. Additionally, aluminum busbars are generally more cost-effective, making them a more economical choice without compromising on performance, especially when paired with advanced alloys and design optimizations.
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FREGATTE ist eine B2B-produzierende Unternehmen, die es erleichtert, Neue Produkt Entwicklung, Auftragsfertigung, parallel-Fertigung, und mehr, und nutzt seine umfangreichen partner-Netzwerke.
Need reliable wires and cables for your next project? Get in touch with us today, and we’ll help you find exactly what you need!
Need reliable Machining for your next project? Get in touch with us today, and we’ll help you find exactly what you need!