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Laserschneiden

At XC Machining, we are your trusted laser cutting experts, providing high-precision laser cutting services to industries across the USA. Whether you need intricate designs or large-scale production, our advanced laser cutting technology ensures that every cut is clean, accurate, and efficient. From sheet metal to plastics and composites, we cater to a wide range of materials, delivering consistent, high-quality results for your prototypes and end-use parts.

Laserschneiden
Was ist Laserschneiden?

Custom Laser Cutting Services for Tailored Solutions

We specialize in custom laser cutting services that are designed to meet your unique project requirements. Whether you need precise, intricate parts or large-volume production runs, our laser cutting solutions are tailored to your needs. Our team works closely with you to understand your specifications, ensuring that every cut meets your exact design and functionality standards, from one-off prototypes to full production runs.

Convenient Online Laser Cutting Services for Fast Turnaround

XC Machining bietet online laser cutting services, making it easy for you to upload your designs and get an instant quote. With fast processing times and high-precision cuts, our online platform simplifies the entire process, providing a quick and reliable solution for your laser cutting needs. 

Als ein führendes laser cutting company, XC Machining is committed to providing high-quality laser-cut parts with unmatched accuracy and efficiency. Our state-of-the-art machines and experienced team ensure that each part is cut with precision, whether it’s a custom design or a production batch. We cater to industries ranging from automotive to aerospace, delivering exceptional results with fast turnaround times and competitive pricing.

Warum wählen Laserschneiden mit XC Machining?

Bietet Rapid Prototyping und Präzisionsteile mit fortschrittlicher CNC-Technologie an und gewährleistet so außergewöhnliche Qualität und Präzision. Vertrauen Sie Laserschneiden um Ihren hohen Ansprüchen gerecht zu werden.

Starke Produktionskapazitäten

In unserem Werk steht Ihnen eine Vielzahl von Maschinen für die Teileproduktion zur Verfügung, darunter CNC-Drehmaschinen, Fräsmaschinen, Spritzgießmaschinen, modernste 3D-Drucktechnologie und vieles mehr.

Flexible Materialauswahl

Bei XC Machining möchten wir sicherstellen, dass Sie in Ihrer Auswahl nicht eingeschränkt sind. Deshalb bieten wir Ihnen über 60 Materialien für Ihre Prototypen und Produkte an.

24/7 technische Unterstützung

Bei XC Machining stehen Ihnen erfahrene Servicetechniker zur Verfügung, die über das nötige Wissen verfügen, um Ihre Fertigungsanfragen zu beantworten. Unsere Ingenieure sind immer vor Ort, um Ihnen wertvolle Ratschläge zu geben.

Auswahl an individuellen Oberflächen

Wir bieten eine Reihe von Oberflächenbehandlungen und kundenspezifischen Veredelungen für massive Metall- und Kunststoffteile an, darunter Eloxieren, Spritzlackieren, Dampfpolieren, Sandstrahlen, Siebdruck usw.

Tolerances for Laser Cutting

At XC Machining, we offer high-precision laser cutting services, ideal for creating intricate and complex designs with tight tolerances across a wide range of materials.

Beschreibung Spezifikation
Allgemeine Toleranzen ISO 2768-m
Präzisionstoleranzen Tolerances as tight as ±0.1 mm, per drawing specs and GD&T annotations
Material Thickness Up to 25mm for mild steel, 20mm for stainless steel and aluminum
Mindestwanddicke 0.2mm
Minimum Part Size 5mm x 5mm x 1mm
Maximale Teilegröße 3000mm x 1500mm x 25mm
Produktionsvolumen Prototyping: 1-100 pcs
Low Volume: 101-5,000 pcs
High Volume: Above 5,000 pcs
Vorlaufzeit 3-5 business days for most projects. Simple parts can be delivered as fast as 1-2 days

Materialien für Laserschneiden Teile

Führende Unternehmen und Ingenieure verlassen sich auf XC Machining, wenn es um schnelle Iterationen und langlebige, hochwertige Teile geht. Ob für die Herstellung von Prototypen oder für die Serienproduktion, unsere breite Palette an Materialien stellt sicher, dass wir die einzigartigen Anforderungen jedes Kunden erfüllen. Laserschneiden Projekt mit Präzision und Schnelligkeit.

Materialien aus Blech

Entdecken Sie in unserem Archiv zur Blechbearbeitung die Präzisionstechniken, mit denen Bleche in komplizierte Komponenten verwandelt werden.

Legierung

Kohlenstoff

Mild

Rostfrei

Werkzeug

 

Energiewirtschaft

Surface Finishes for Laser Cutting

XC Machining offers various surface finishes for laser-cut parts to ensure they meet your specific requirements. 

Smooth Finish

Laser cutting produces extremely smooth, precise edges with minimal burrs, reducing the need for post-processing in most cases.

Entgraten

Deburring removes sharp edges or small imperfections created by the laser cutting process, ensuring safety and preparing the part for assembly.

Gebürstetes Finish

A brushed finish adds a uniform, matte texture, enhancing the aesthetics of laser-cut metal parts while reducing visible scratches.

Polieren

Polishing provides a high-gloss, mirror-like finish, enhancing the appearance of laser-cut parts used in decorative or high-visibility applications.

Eloxieren

Anodizing adds a protective oxide layer to metal parts, improving corrosion resistance and offering both matte and glossy finishes, especially for aluminum.

Pulverbeschichtung

Powder coating provides a tough, durable finish on laser-cut parts, offering superior resistance to wear, corrosion, and UV degradation.

Spezialisierte Industrien

XC Machining ist ein zuverlässiger Partner für Branchen, die Komplexität, Zuverlässigkeit und Präzision verlangen. Unsere langjährige Erfahrung in der Herstellung von Millionen von hochwertigen Komponenten bringt unübertroffenes Fachwissen in jedes Projekt ein.

Unsere Dienstleistungen decken ein breites Spektrum von Anwendungen ab, um sicherzustellen, dass wir die einzigartigen Bedürfnisse jedes Sektors mit großer Sorgfalt erfüllen.

XC Machining unterstützt die Automobilindustrie mit hochmodernen CNC-Bearbeitungslösungen, die die Herstellung komplexer Teile ermöglichen und die Effizienz steigern.

Für die Halbleiterindustrie bietet XC Machining CNC-Bearbeitungsdienstleistungen an, die die hohen Präzisionsanforderungen erfüllen, die für die Herstellung von Komponenten erforderlich sind

Unsere CNC-Bearbeitungsdienstleistungen sind im Energiesektor von zentraler Bedeutung, wo Präzision und Langlebigkeit entscheidend sind. XC Machining unterstützt die

XC Machining ist ein zuverlässiger Partner im Bereich der Industriemaschinen und bietet CNC-Bearbeitungslösungen, die eine robuste und

XC Machining liefert Präzisionsbearbeitungslösungen für die Elektronikindustrie und fertigt komplizierte Komponenten, die den anspruchsvollen Standards entsprechen, die für

XC Machining bietet spezialisierte CNC-Bearbeitungsdienstleistungen für die Kommunikationsbranche und fertigt Präzisionsteile, die für die Infrastruktur unerlässlich sind.

Unser Laserschneiden Dienstleistungskapazitäten

Als führendes Unternehmen in der Präzisionsfertigung bieten wir eine breite Palette von Möglichkeiten, die sowohl für die Herstellung von Einzelprototypen als auch für Kleinserien geeignet sind. Wir sind auf die Herstellung geometrisch komplexer und hochkosmetischer Teile spezialisiert und gewährleisten höchste Qualitätsstandards. Wir bei XC Machining sind stolz darauf, die erste Adresse für alle Ihre Anforderungen zu sein. Laserschneiden Bedürfnisse und bietet zuverlässige und effiziente Lösungen unter einem Dach.

Which Technologies Are Used in Laser Cutting?

Explore advanced laser technologies that harness light with remarkable precision, transforming diverse materials into clean, accurate components while maximizing efficiency, detail, and performance for today’s demanding production environments.

CO₂ Laser Cutting

Utilizes a gas mixture mainly carbon dioxide as the lasing agent  CO₂ lasers are very effective to both cut and cut-through non-metals (such as wood, plastics, paper, and some fabrics) and thin metals. They give smooth edges and are popularly used in decorative and sign applications.

Faserlaserschneiden

Uses specialised optical fibre that has rare-earth elements impregnated in it so as to generate a high-power laser. They are energy-saving, need a lower maintenance rate, and know best how to cut such metals as stainless steel, aluminum, brass, and copper. Fiber lasers have higher cutting speeds when used on thin materials than the CO 2, increasing efficiency and throughput.

Crystal Laser Cutting (Nd:YAG / Nd:YVO)

Uses solid state crystal as a lasing medium e.g. neodymium-doped Yttrium aluminum garnet (Nd:YAG) or neodymium-doped Yttrium ortho-vanadate (Nd:YVO₄). These lasers are high-intensity lasers and are preferably used in situations that demand extremely fine resolution or marked engraving on metals and ceramics.

Hybrid Laser Systems

Combine laser with other cutting or positioning tools to get the best of speed, accuracy and the ability to cut various forms of material. This might require use of a water jet or mechanical.

What Are The Challenges in Laser Cutting?

Laser cutting has advantages of high precision, fast processing speed and flexibility, but some factors need to be controlled. These factors can be understood, and it will mean superior process management and more quality outputs.

Material Reflectivity

Metals with high reflectivity, such as copper, brass or performance grades of aluminum alloys, can reflect the laser beam back at machine optical components. This does not only diminish cutting efficiency but poses a threat of damaging costly optical components. This is usually overcome by special laser wavelengths or surface treatments.

Heat-Affected Zones (HAZ)

The effects of the high heat generated in the course of laser cutting may cause changes in the microstructure of the materials in the cutting zone of the cutting room. This can cause warpage, discolouration or hairline cracks especially in thin or thermally sensitive materials. There are also undesirable effects which can be reduced by careful settings of power and cutting speed.

Edge Quality and Burr Formation

When the cutting parameters are not adequately optimized it is possible that edges will become rough or form burrs which then require secondary finishing operations. A sharp and consistent cut edge is affected by factors like focal point setting, gas pressure and material material thickness.

Thickness Limitations

Laser cutting allows a broad range of material thicknesses, plates that are very thick may need to be cut at low cutting speeds and/or require multiple passes to complete the cut, which can reduce productivity and contribute to distortion due to the heating effect of the laser.

Operational and Maintenance Costs

High-end laser cutting equipment, especially the systems with higher-tech fiber or  CO₂ are expensive. Upkeep, provisions and skilled labour contribute to the total expendable cost.

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Erwecken Sie Ihre Entwürfe mit XC Machining zum Leben

Erleben Sie Präzisionstechnik mit XC Machining. Von detaillierten Prototypen bis hin zur Großserienproduktion - wir sind da, um Ihre Konzepte in die Realität umzusetzen. Kontaktieren Sie uns noch heute, um Ihre Projektanforderungen zu besprechen!

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Häufig gestellte Fragen

Laserschneiden

  • How Accurate is Laser Cutting?

    Laser cutting is known for its high accuracy, achieving tolerances as tight as ±0.1 mm, depending on the material and thickness. The accuracy of laser cutting is one of its most significant advantages, as the process can be used to create very detailed parts and fine features that would be difficult or impossible to achieve with other methods. The narrow laser beam allows for small, precise cuts, and the automated nature of the process ensures consistent results throughout a production run. For applications requiring tight tolerances and high repeatability, laser cutting is an excellent choice. 

  • How Fast Is Laser Cutting Compared to Other Methods?

    Laser cutting is typically faster than traditional cutting methods, particularly for intricate and small-scale parts. The speed of laser cutting depends on the material type, thickness, and complexity of the design. For thinner materials, laser cutting can be extremely fast, often making it a preferred choice for high-volume production. It is also faster than other precision cutting methods, such as water jet cutting or CNC machining, particularly when it comes to intricate patterns. However, for thicker materials, the cutting speed may slow down, and other methods, like plasma cutting, may offer a faster alternative. 

  • What is the Cost of Laser Cutting?

    The cost of laser cutting depends on several factors, including the material type, material thickness, complexity of the design, and production volume. For thin materials and simple designs, laser cutting is cost-effective, offering fast turnaround times with minimal material waste. However, for thicker materials or complex parts, the cost can increase due to longer cutting times and the need for more powerful laser systems. For high-volume production, laser cutting becomes more cost-efficient as the initial setup cost is amortized over a larger quantity of parts. At XC Machining, we provide competitive pricing based on your specific project needs and offer the most efficient solutions for your cutting requirements. 

  • What Are the Key Benefits of Laser Cutting?

    Laser cutting is known for its high precision, versatility, and efficiency. One of the main benefits is the ability to cut intricate and complex designs with tight tolerances, making it ideal for industries requiring detailed parts, such as aerospace, automotive, and electronics. Laser cutting is also a non-contact process, meaning it doesn’t cause material deformation or physical stress, which helps maintain the integrity of the material. The process is highly automated, reducing the potential for human error, and it offers minimal waste as the cuts are precise and the process is highly efficient. Additionally, laser cutting produces clean, smooth edges, often eliminating the need for additional finishing processes. 

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