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Lissage de la vapeur

Types de processus de lissage de la vapeur Préparation de la surface Couleur Matériaux applicables Disponibilité cosmétique Aspect visuel MJF Tel qu'imprimé Gris (par défaut), teinté Noir HP PA 12 Non

Lissage de la vapeur

Types de lissage de vapeur

Processus Préparation de la surface Couleur Matériaux applicables Disponibilité des produits cosmétiques Apparence visuelle
CMJ Tel qu'imprimé Gris (par défaut), Noir teinté HP PA 12 Non Aspect lisse et brillant
SLS Tel qu'imprimé Blanc (par défaut), Noir teinté PA 12 Non Aspect lisse et brillant

Lissage de la vapeur Galerie Surfaces Finitions

Nos installations d'usinage de pointe sont dotées d'ingénieurs experts et de spécialistes du contrôle de la qualité, qui veillent à ce que vos produits et services soient conformes aux normes de qualité les plus strictes. Lissage de la vapeur Surfaces Finishes Solution ne se contente pas de répondre aux normes de performance et de sécurité, mais les dépasse.
3DP_MJF
Lissage de la vapeur
3DP_MJF
Lissage de la vapeur
3DP_MJF
Lissage de la vapeur

What Are The Applications of Copper C101 | Cu OFE in Industry?

Copper C101’s combination of purity, strength, and conductivity makes it indispensable across aerospace, electronics, power, and renewable energy sectors worldwide.

Electrical and Power Systems

Busbars, contacts, terminals, and connectors made from C101 ensure low resistance and reliable current flow, reducing energy loss in demanding power applications.

Thermal Control and Cooling Devices

Used in heat sinks, heat exchangers, and vacuum cooling plates, C101 helps manage extreme temperatures in aerospace, medical, and semiconductor systems.

Aerospace and Defense Components

Its conductivity and corrosion resistance make it a preferred choice for aircraft grounding plates, radar connectors, and avionics heat shields.

Electronics and Semiconductor Equipment

In micro-electronics and vacuum chambers, C101’s purity prevents contamination, ensuring high reliability in wafers, sensors, and vacuum feedthroughs.

Renewable Energy and Automotive Systems

Copper C101 plays a vital role in EV charging systems, wind turbines, and solar power grids, supporting the global transition to clean, efficient energy.

Surface Finishes for Copper C101 Components

From mirror polishing to protective coatings, the right surface finish enhances Copper C101’s corrosion resistance, solderability, and long-term stability in electrical and industrial environments.

Natural Machined Finish

Ideal for internal electrical components or thermal systems, this finish retains copper’s pure surface while offering high conductivity and consistent appearance straight from CNC machining.

Polished Finish

Using mechanical buffing or vibratory finishing, XC Machining achieves a reflective surface that reduces oxidation and improves cosmetic appeal for exposed components or luxury equipment.

Nickel or Silver Plating

Nickel and silver plating provide improved corrosion resistance and wear performance without sacrificing conductivity. These finishes are common in aerospace, electronics, and high-voltage connectors.

Tin Plating for Solderability

For electronic or wiring applications, tin plating ensures easy soldering and reliable joint integrity. XC Machining applies controlled plating thickness for uniform performance.

Anti-Oxidation Coatings

Protective coatings, such as organic sealants or chromate alternatives, are used to extend copper’s surface life in humid or oxidizing environments while maintaining its electrical properties.

Solutions pour la fabrication de précision

Faites l'expérience de l'usinage de précision de haute qualité pour des besoins de fabrication variés. Du prototypage à la production de masse, nous excellons dans les géométries complexes et les exigences esthétiques.

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Donnez vie à vos conceptions avec XC Machining

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Questions fréquemment posées

Lissage de la vapeur

  • Does Vapor Smoothing Change the Dimensions of a Part?

    No, vapor smoothing does not significantly alter part dimensions when performed under controlled conditions. The process only melts the outermost microns of the surface, preserving accuracy and tolerances. XC Machining’s advanced vapor systems ensure dimensional stability even for tight-tolerance components. 

  • Can Vapor Smoothing Be Applied to Metal or Only Plastics?

    Vapor smoothing is specifically designed for thermoplastics and polymer-based materials. Metals require different surface finishing techniques like polishing, bead blasting, or anodizing. However, XC Machining offers a complete range of finishing options for both metal and plastic parts depending on your application needs. 

  • How Long Does the Vapor Smoothing Process Take?

    The duration depends on material type, part size, and desired finish, but most vapor smoothing cycles take between 10 to 45 minutes. XC Machining’s automated finishing chambers can process multiple parts simultaneously, reducing turnaround time and maintaining consistent quality. 

  • Is Vapor Smoothing Safe for Medical or Food-Grade Components?

    Yes, when performed with approved solvents and thorough post-treatment cleaning, vapor-smoothed parts can meet biocompatibility and hygiene standards. XC Machining uses carefully selected, industry-compliant agents to ensure that the final parts are safe for medical, food-contact, and wearable applications. 

  • What Type of Finish Can I Expect from Vapor Smoothing?

    Vapor smoothing produces a uniform, glossy, and sealed surface similar to injection-molded plastics. It eliminates visible layer lines, enhances tactile feel, and improves chemical resistance. XC Machining tailors the finish level—matte, semi-gloss, or high-gloss, based on your aesthetic and functional requirements. 

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