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Barra colectora rígida

Serie de productos
Serie de productos
Barra colectora rígida

GRL sabe que en los sistemas eléctricos modernos de alta potencia, como la transmisión y distribución de energía, el control industrial y las nuevas energías, la transmisión de energía eficiente, estable y segura es el elemento central. Por lo tanto, nosotrosCentrarse en proporcionar productos de barras colectoras duras de alta calidad, con su excelente conductividad eléctrica, fuerte resistencia mecánica y capacidades de personalización precisas, se convierte en la piedra angular para construir un sistema eléctrico confiable. La barra colectora dura de GRL es una alternativa ideal a los cables tradicionales.,Proporcionar soluciones más optimizadas para aplicaciones de alta corriente y alto voltaje.

Las barras colectoras duras de Kinleira se refieren a varillas o placas conductoras rígidas hechas de materiales de cobre o aluminio de alta pureza. Se forman en una variedad de geometrías estándar o personalizadas mediante procesos de mecanizado precisos, diseñados para lograr una transmisión y distribución concentradas de grandes corrientes. Debido a su alta densidad de corriente, baja caída de voltaje y excelente rendimiento de disipación de calor, las barras colectoras durasAmpliamente utilizado en gabinetes de distribución, aparamenta, transformadores, generadores, paquetes de baterías de nueva energía, sistemas de bus y diversos equipos de control industrial.

 

Nuestro autobús duro tiene las siguientes características distintivas:

● Excelente conductividad eléctrica: se utiliza cobre libre de oxígeno de alta pureza o aleación de aluminio de alta conductividad para garantizar una resistencia extremadamente baja, lograr una transmisión de corriente eficiente y minimizar la pérdida de energía y el aumento de temperatura.

● Alta resistencia mecánica y estabilidad: la estructura dura proporciona un fuerte soporte mecánico y resistencia a la deformación, puede soportar el estrés térmico causado por la transmisión de alta corriente y el estrés mecánico externo, lo que garantiza estabilidad y confiabilidad a largo plazo de la conexión.

● Capacidad eficiente de disipación de calor: Optimice el diseño de la sección transversal y un buen material conductor térmico ayuda a disipar el calor rápidamente y mantener el funcionamiento a baja temperatura de la barra colectora bajo la corriente de carga nominal, extendiendo así la vida útil del equipo.

● Optimice la utilización del espacio: en comparación con múltiples cables, la barra colectora dura tiene una estructura compacta y ocupa poco espacio, lo que ayuda a que los equipos eléctricos estén miniaturizados e integrados, y hace que el cableado sea más ordenado y ordenado.

● Reducir los costos del sistema: al simplificar el cableado, reducir la cantidad de conectores y mejorar la integración, se pueden reducir de manera efectiva el costo de material y el tiempo de instalación de todo el sistema.

● Servicios de personalización de Seiko: GRL tiene sólidas capacidades de diseño y fabricación, y puede proporcionar servicios personalizados para barras colectoras duras, desde especificaciones estándar hasta formas complejas basadas en dibujos CAD, modelos 3D o requisitos técnicos específicos proporcionados por los clientes.

Process flow

GRL adheres to the principle of “excellence” in the production of hard bus bars, ensuring that every product has excellent performance, precision and reliability:

  1. Selection of high-quality raw materials:
    • We strictly select high-purity oxygen-free copper (T2/C11000) or high-conductivity aluminum alloy that meets international standards, which is the basis for ensuring the electrical properties and mechanical strength of products. All raw materials have undergone strict chemical composition and physical properties testing.
  2. Precision forming processing:
    • Advanced CNC cutting, high-precision stamping, CNC bending and CNC milling equipment are used to accurately shape cutting and three-dimensional forming the bus bar. Whether it is linear, L-shaped, Z-shaped, or more complex special-shaped structures, we can ensure its geometric size and fitting accuracy.
    • Drilling and tapping: Use high-precision CNC machine tools for precise hole positioning and thread tapping to ensure reliable connection of fasteners.
  3. Advanced joining and welding technology (optional):
    • For hard busbars that require multiple layers of lamination or connection with other conductors, we may use advanced technologies such as friction welding, laser welding or diffusion welding to ensure that the connection points have extremely low contact resistance and high mechanical strength, and eliminate the risk of virtual connection and overheating.
  4. Surface treatment (optional):
    • According to customer needs and application environment, the surface of the busbar shall be tinned, nickel, silver or passivated. These treatments can effectively improve oxidation resistance and corrosion resistance, improve electrical contact effects, and extend product life.
  5. Insulation treatment (optional):
    • For hard busbars that require insulation protection, we offer a variety of high-performance insulation solutions, such as dipping, extrusion, heat shrinkable sleeve or insulating powder coating. All insulation processes are strictly controlled in thickness and uniformity to ensure excellent dielectric strength and safety protection.
  6. Strict quality inspection:
    • Carry out comprehensive quality control and performance testing for each batch of hard busbars, including:
      • size accuracy testing: Use precision equipment such as a coordinate measuring machine to verify the geometric size.
      • Conductivity test: resistance test, current-carrying temperature rise test to ensure that electrical performance requirements are met.
      • Hardness testing and tensile strength testing: Verify the mechanical properties of the material.
      • Insulation withstand voltage test (if there is an insulating layer): High-voltage breakdown test to verify the dielectric strength and safety of the insulating layer.
      • Salt spray test, high and low temperature cycle test: Simulate harsh environments and verify the environmental resistance of products.
      • Visual inspection: Ensure that the product surface is smooth and free from defects.
easy to install

Copper busbars are suitable for installation in narrow and difficult places.

insulation compatibility

Our copper busbars are made of insulating materials for flexibility and improved safety.

high conductivity

Copper bus bars have excellent electrical and thermal conductivity.

mechanical strength

Our copper busbars have a hardness of H12 and can withstand extreme physical pressure.

Choose GRL: Trust comes from professionalism, and quality shapes the future

In today’s fast-changing market, choosing a trustworthy partner is crucial. GRL, as experts in the field of electrical connection solutions, we are committed to providing excellent quality, innovative technology and unparalleled services to customers around the world.

 

Choose GRL and you will receive:

● Excellent quality assurance: We know that quality is the cornerstone. GRL strictly controls every aspect from raw materials to production and processing, adopting advanced processes and strict standards to ensure that every product has excellent performance and lasting reliability.

● Forward-looking innovative technologies: Facing the needs of the developing industry, GRL has always been at the forefront of innovation. We continue to invest in research and development to meet your most unique and demanding application challenges with cutting-edge technology and customized solutions.

● Professional service support: GRL is not only a product supplier, but also your trustworthy partner. Our professional team is ready to provide you with all-round assistance from design consulting, technical support to after-sales service to ensure the smooth progress of your project.

● The concept of win-win cooperation: We firmly believe that the success of our customers is the success of GRL. Through close collaboration and mutual understanding, we are committed to establishing a long-term strategic partnership with you to jointly meet future opportunities and challenges.

 

Choosing GRL means choosing a partner who can move forward side by side with you and achieve excellence together. Looking forward to working with you to create brilliance together!

GRL-Safe Electricity Use Quick Link

At GRL, we know that safety and efficiency are at the core of electric vehicle power systems. This is not only a technical indicator, but also our solemn commitment to every user and the future of green travel.

Our electricity concept-safe electricity use, fast connection-runs through every aspect of product design, R & D and manufacturing.

 

Safe use of electricity: creating a reliable cornerstone

Safety is the unshakable cornerstone of Kinlaire’s copper connection products. We know that electric vehicle battery systems carry high voltages and high currents, and any slight design flaws or material flaws can have serious consequences.

Therefore,GRL strictly follows the following principles to ensure the safety of your electricity:

● Excellent electrical conductivity and reduced heating: Select high-purity copper and combine it with precision processing technology to minimize resistance, reduce heating of connections during current transmission, and eliminate the risk of overheating from the source.

● Rugged and durable for harsh environments: Our copper connections have special surface treatments and have excellent corrosion resistance, vibration resistance and fatigue resistance, maintaining the stability of the connection even under extreme temperature changes and complex road conditions. and safety.

● Insulation protection to eliminate short circuits: According to application needs, we provide reliable insulation solutions to effectively prevent accidental short circuits and leakage, and provide comprehensive electrical protection for the battery system.

● Strict testing and exceeding standards: Each batch of GRL’s products must pass strict electrical performance tests, mechanical strength tests and environmental reliability tests to ensure that all indicators meet or even exceed the highest safety standards in the industry.

 

Quick connection: improving system efficiency

In the ever-changing electric vehicle market, efficiency is the key to winning the future.

GRL is committed to providing solutions that are not only safe, but also have fast connection characteristics, thereby improving the integration efficiency and production efficiency of battery systems:

● Precise design and easy installation: GRL’s copper connection products fully consider the convenience of assembly at the beginning of design. Precise size tolerances and humanized structural design greatly simplify the on-site installation process and shorten assembly time.

● Pay equal attention to standardization and customization: Whether it is a universal connection solution or a customized design for a specific battery module, Kinleira can ensure the adaptability and ease of use of the product and meet various needs from research and development to mass production.

● Optimize processes and improve production line efficiency: We work closely with our customers to provide connection solutions that are easy to automate and integrate, helping electric vehicle manufacturers optimize production lines, increase production capacity, and reduce overall costs.

● Stability and reliability, reduced maintenance: The excellent stability of Kinleira products means fewer failure rates and lower maintenance requirements, thereby ensuring efficient operation of the battery system and bringing lasting performance to your electric vehicle.

 

We firmly believe that through the ultimate pursuit of safety and efficiency, we can provide your electric vehicle battery system with the most reliable and advanced copper connection solution to jointly drive a bright future for green travel.

A

Jinlale’s hard bus bar is widely used and is the core component of various high-current electrical systems:

  • Power transmission and distribution system: High and low voltage switchgear, distribution boxes, transformer bus connections, power plants and substations.
  • new energy field: Electric vehicle battery module connections, energy storage systems, wind/solar inverters, charging piles.
  • industrial control and automation: Industrial control cabinet, MCC (motor control center), frequency converter, rectifier.
  • rail transit: Electric traction system for locomotives and subway vehicles.
  • data center: Power distribution system inside the server cabinet.
  • large equipment: Welding equipment, electric furnaces and other high-current equipment.
A

GRL mainly provides hard buses of the following two high-performance materials:

  • High-purity oxygen-free copper (T2/C11000): It has excellent electrical and thermal conductivity and is currently recognized as one of the best conductive materials. It is the first choice in most high-power applications that require extremely high electrical conductivity.
  • high-conductivity aluminum alloy: It is lightweight and cost-effective. It is an ideal alternative in applications with strict weight requirements (such as lightweighting electric vehicles) or budget sensitive.

We will recommend the most suitable material based on your specific application needs, performance requirements and cost considerations.

A

GRL offers a variety of surface treatments to meet the needs of different applications and environmental conditions:

  • tinned: The most common treatment method can effectively prevent oxidation and corrosion, improve solderability, improve contact performance under low voltage and high current, and extend product life. It is especially suitable for use in humid or corrosive gas environments.
  • nickel plating: Provides stronger wear and corrosion resistance, is suitable for higher temperatures and harsh chemical environments, and has higher hardness.
  • plateado: Provides excellent conductivity and lowest contact resistance, suitable for applications where signal transmission requirements are extremely high or extremely low resistance is required, but the cost is high.
  • passivation: A dense oxide film is formed on the surface of the busbar to improve corrosion resistance, but usually does not change the electrical properties.
A

When selecting the appropriate cross-sectional area of hard bus bar, the following key factors need to be considered:

  • rated working current: This is the main determining factor. The hard bus needs to be able to safely and continuously carry the maximum working current, with sufficient safety margin.
  • Temperature rise limit: Under the maximum current, the temperature rise of the bus bar should be controlled within the maximum allowable working temperature range to avoid overheating causing performance degradation or equipment damage.
  • ambient temperature: Higher ambient temperatures will reduce current carrying capacity and require a corresponding increase in cross-sectional area.
  • installation method: Ventilation and heat dissipation conditions (such as horizontal installation, vertical installation, and enclosed spaces) can significantly affect current carrying capacity.
  • Voltage drop requirements: In some applications that are sensitive to voltage drops, products with larger cross-sectional areas need to be selected to reduce resistance.
  • mechanical strength requirements: Consider the support method, span and possible mechanical stress of the bus bar.

GRL’s professional engineers can provide detailed current-carrying data and technical support to assist you in accurate selection and design.

A

Yes, GRL always adheres to the highest standards of production and quality management. Our production processes strictly follow ISO 9001 Quality Management system

During the design and manufacturing process, hard busbar products refer to and comply with relevantInternational and domestic electrical standards(IEC, UL, GB, etc.).

We can provide the corresponding material composition analysis report, electrical performance test report (such as resistance, current carrying capacity, temperature rise), mechanical performance test report and environmental reliability report (such as salt spray test) according to customer requirements to ensure that the product is safe and reliable, excellent performance, so that you can choose at ease.

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