Custom Metal Wire Connectors for Automotive Parts

Attribut Détails
Type de traitement Façonnage du métal
Matériau Copper, Stainless Steel, Aluminium, etc.
Moule Outillages progressifs à plusieurs étapes
Traitement de Surface Électroplacage
Processus Fine Blanking, Multi-Position Forming Process
Industrie Pièces d'emboutissage métallique
Tolérances 0.01 mm
Certification ISO 9001
Production Cycles 7–15 Days Per Order
Testing Horizontal & Vertical Flame Test, Salt Spray Test
Mould Leadtime Within 20 Working Days
Spécification Customized
Origine Xiamen, Chine
Capacité de Production 5000 PCS/Day in One Machine

Aperçu :

Custom Metal Wire Connectors for Automotive Parts are essential components in ensuring secure, high-performance electrical connections within the automotive industry. Our team specializes in designing and manufacturing precision-engineered wire connectors tailored to meet the demanding requirements of automotive applications. Using advanced stamping techniques, including high-speed progressive die stamping and automated crimping processes, we produce connectors that offer superior conductivity, durability, and resistance to vibration and heat. With a focus on quality and reliability, our custom wire connectors are designed to perform under the harshest conditions, ensuring long-lasting, efficient electrical systems in vehicles. Our connectors provide the perfect solution for automotive electrical connections.

Wire Connectors2

Détails :

Attribut Détails
Type de traitement Façonnage du métal
Matériau Copper, Stainless Steel, Aluminium, etc.
Moule Outillages progressifs à plusieurs étapes
Traitement de Surface Électroplacage
Processus Fine Blanking, Multi-Position Forming Process
Industrie Pièces d'emboutissage métallique
Tolérances 0.01 mm
Certification ISO 9001
Production Cycles 7–15 Days Per Order
Testing Horizontal & Vertical Flame Test, Salt Spray Test
Mould Leadtime Within 20 Working Days
Spécification Customized
Origine Xiamen, Chine
Capacité de Production 5000 PCS/Day in One Machine

Processus de production :

  1. Material Selection

The first step is to select the appropriate material for the wire connector, such as copper, stainless steel, or aluminum. The material chosen must meet the specific requirements for conductivity, durability, and resistance to corrosion.

  1. Blanking

In this step, the material is cut into flat sheets or blanks using a stamping press. The size and shape of the blanks are determined by the design specifications of the wire connector.

  1. Progressive Die Stamping

This involves using progressive dies in a high-speed stamping press to progressively shape the blank into the desired form. Multiple steps are performed in a single press cycle to cut, bend, and form the connector.

  1. Formation et Formage

The connector undergoes further forming to achieve its final shape. This includes bending and forming the metal into the connector’s specific design, such as the terminals or contact points.

  1. Traitement de Surface

Once the connector is shaped, surface treatments like electroplating are applied to improve electrical conductivity, prevent corrosion, and enhance overall durability. Common finishes include gold, nickel, or tin plating.

  1. Assembly (if applicable)

In some cases, wire connectors are assembled with additional components, such as insulation sleeves or terminals, using automatic assembly systems. This step ensures the connectors meet final design and functional specifications.

  1. Testing and Quality Control

Rigorous testing is conducted to ensure the connectors meet performance and reliability standards. This may include electrical testing, dimensional checks, and environmental tests such as salt spray or thermal cycling.

  1. Emballage et Expédition

After passing the final quality checks, the connectors are packaged, often on reels or in bulk packaging, for shipment. Packaging must protect the connectors from damage during transit and ensure they are ready for assembly or end use.

Surface Options

  1. Nickel Plating

A process in which a thin layer of nickel is deposited onto the surface of a metal component to enhance corrosion resistance, improve durability, and provide a smooth finish.

  1. Galvanization

The application of a protective zinc coating to steel or iron to prevent rust and corrosion, typically achieved through hot-dip or electrogalvanization methods.

  1. Chrome Plating

A technique used to apply a thin layer of chromium onto the surface of metal parts, offering enhanced resistance to wear, corrosion, and oxidation, along with a high-gloss finish.

Factory Show:

Nous exploitons une gamme complète d'installations et d'équipements afin de garantir une production de la plus haute qualité. Nos installations sont équipées de 25 presses à emboutir allant de 25 tonnes à 300 tonnes, de machines de découpe par fil EDM de précision, d'équipements de rectification, d'outils de soudage et de polissage, ainsi que de systèmes de nettoyage par ultrasons.
En plus de nos capacités de fabrication, nous proposons une variété de procédés de revêtement métallique pour améliorer la durabilité, l'apparence et la fonctionnalité de nos produits d'emboutissage métallique. Ces procédés incluent l'électroplacage, le placage au zinc, le placage au nickel, le placage au chrome et l'anodisation. Nos installations de revêtement à la pointe de la technologie garantissent des finitions uniformes, une résistance à la corrosion et la conformité aux normes de l'industrie.
Cette combinaison de lignes de production professionnelles et automatisées, d'équipements mécaniques avancés, de mesures rigoureuses de contrôle qualité et de procédés de placage de haute qualité garantit que nous livrons des produits d'emboutissage métallique d'une qualité exceptionnelle.

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