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Fused Deposition
 Modeling (FDM)

We offer FDM 3D Printing Services that provide cost-effective and durable prototypes and production parts. Using Fused Deposition Modeling (FDM) technology, we deliver high-quality, functional components that meet the needs of industries across the USA. From concept to production, our FDM solutions offer precision, flexibility, and fast turnaround times.

Fused Deposition Modeling
FDM

Leading FDM 3D Printing Company

As a trusted FDM 3D printing company, XC Machining provides FDM 3D printing solutions tailored to your specific needs. Whether you’re looking for functional prototypes, low-volume production, or custom parts, we use the latest FDM technology to create strong, precise components, delivering results on time and within budget.

FDM 3D printer creating a plastic boat model layer by layer using filament extrusion technology.

FDM 3D Printing Solutions for High-Performance Parts

When you need reliable and durable parts, XC Machining offers the best FDM 3D printing services in the USA. Our Fused Deposition Modeling 3D printing services allow for quick production of high-performance, custom parts using a wide range of materials.

Warum wählen Fused Deposition Modeling (FDM) mit XC Machining?

Bietet Rapid Prototyping und Präzisionsteile mit fortschrittlicher CNC-Technologie an und gewährleistet so außergewöhnliche Qualität und Präzision. Vertrauen Sie Fused Deposition Modeling (FDM) 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 Fused Deposition Modeling (FDM)

At XC Machining, we offer Fused Deposition Modeling (FDM) 3D printing services that are perfect for rapid prototyping and functional parts production. 

Beschreibung Spezifikation
Allgemeine Toleranzen Metals: ISO 2768-m
Plastics: ISO 2768-c
Präzisionstoleranzen Tolerances as tight as ±0.2 mm, per drawing specs and GD&T annotations
Mindestwanddicke 0.8mm
Minimum Layer Thickness 0.1mm
Minimum Part Size 20mm x 20mm x 1mm
Maximale Teilegröße 300mm x 300mm x 400mm
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 Fused Deposition Modeling (FDM) 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. Fused Deposition Modeling (FDM) Projekt mit Präzision und Schnelligkeit.

ABS-M30

Black, Blue, Dark Grey, Ivory, Red, White.

Black (electrostatic dissipative properties)

Translucent Natural, Translucent Amber, Translucent Red

Black, Dark Blue, Dark Gray, Light Gray, Green, Ivory, Orange, Red, White, Yellow

 

Schwarz

Schwarz

White

Translucent Natural, White

Black, Blue, Red, White

Black, Tan

Amber (Natural)

3D-Druck-Materialien

Surface Finishes for Fused Deposition Modeling (FDM)

XC Machining offers a range of surface finishes for FDM parts to enhance their functionality, durability, and aesthetic appeal.

Polieren
FDM 3D printed part with standard as-printed surface showing visible layer lines

Polishing removes rough surface layers and enhances the smoothness of FDM parts, making them visually appealing.

Perlstrahlen
FDM 3D printed part surface being sanded for smooth finish and post-processing preparation

Bead blasting applies a fine, matte finish to the surface of FDM parts, improving texture and appearance, while also reducing visible print lines.

Glättung des Dampfes
Smooth FDM 3D printed ABS part using acetone vapor for glossy, seamless surface finish

Vapor smoothing uses a chemical vapor to smooth the surface of FDM prints, giving the parts a glossy, shiny finish.

Malerei
Worker in safety gear spray painting a car part with precision using a professional paint sprayer.

FDM parts can be painted with a variety of colors, improving their aesthetic appeal and adding a custom look to parts.

Textured
3D printer using FDM technology to create a white plastic vase layer by layer on a blue build platform.

Textured finishes add a unique, patterned texture to FDM parts, improving grip and enhancing the visual appeal of the printed product.

Wärmebehandlung
Industrial FDM 3D printed part undergoing bead blasting for matte, uniform finish

Heat treatment can be used to improve the mechanical properties of FDM parts, especially for parts requiring strength and resistance to heat.

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 Fused Deposition Modeling (FDM) 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. Fused Deposition Modeling (FDM) Bedürfnisse und bietet zuverlässige und effiziente Lösungen unter einem Dach.

Unlock Innovation and Precision with FDM 3D Printing Services

In the world of additive manufacturing, Fused Deposition Modeling (FDM) is one of the most widely used and versatile 3D printing technologies.

At XC Machining, we specialize in offering FDM 3D printing services that help businesses turn their ideas into tangible, functional parts. Whether it’s for rapid prototyping, custom parts production, or low-volume manufacturing, FDM 3D printing provides an efficient and cost-effective solution for industries across the board.

What is FDM 3D Printing?

Fused Deposition Modeling (FDM) is a 3D printing process that uses a thermoplastic material, such as ABS, PLA, or PETG, which is heated and extruded through a nozzle to build a part layer by layer. 

The material is deposited in thin layers, one on top of the other, and fused together to form a solid object. This process allows for the creation of parts with high accuracy, mechanical properties, and flexibility in design.

FDM is often referred to as “additive manufacturing” because it builds up the part from nothing, layer by layer, as opposed to subtractive manufacturing methods like milling or turning. 

Benefits of FDM 3D Printing at XC Machining

Kostengünstig

FDM is one of the most affordable 3D printing technologies available, especially for low to medium-volume production. The material costs are relatively low, and there is no need for expensive molds or tooling, making FDM an ideal choice for cost-effective prototyping, small batch production, and custom part manufacturing.

Quick Turnaround Times

The ability to produce parts rapidly is one of the most significant advantages of FDM 3D printing. At XC Machining, we can quickly take your designs from concept to reality, enabling faster product development cycles and reducing time-to-market. Whether you need a single prototype or a series of functional parts, our FDM 3D printing service delivers timely results.

Flexibilität bei der Gestaltung

FDM 3D printing offers exceptional design freedom, allowing the creation of complex geometries that would be difficult or impossible to manufacture using traditional methods. You can create parts with internal structures, intricate details, or customized features without the constraints of molds, dies, or tooling.

Wide Material Selection

With FDM, you have access to a wide variety of thermoplastic materials that offer various mechanical properties. Whether you need strong and durable parts, flexible components, or parts that are resistant to high temperatures or chemicals, FDM provides a material for nearly every application. 

Schnelles Prototyping

FDM 3D printing is ideal for rapid prototyping, allowing designers and engineers to quickly produce functional prototypes for testing and validation. With FDM, you can test and iterate on designs in real-time, making adjustments based on testing results and customer feedback. 

Low Waste Production

Unlike subtractive manufacturing methods, where material is cut away from a larger block, FDM 3D printing only uses the material necessary to create the part, resulting in minimal waste. This is a more sustainable approach to manufacturing, especially for industries focused on reducing their environmental footprint.

Applications of FDM 3D Printing Services

FDM 3D printing is widely used across many industries for a variety of applications, including:

Prototyping

FDM is most commonly used for rapid prototyping, allowing designers to quickly test and refine their ideas. With the ability to iterate designs rapidly and cost-effectively, FDM plays a key role in product development.

Custom Parts Production

FDM technology is perfect for producing custom parts that need to meet specific design criteria or functionality. Whether it’s a custom bracket, housing, or other component, FDM allows for the creation of bespoke parts without the need for tooling or molds.

Small Batch Production

For low-volume or small-batch production, FDM 3D printing is an ideal solution. Since it eliminates the need for expensive tooling, it is an affordable and efficient option for producing small quantities of functional parts, especially when custom features or geometries are required.

End-Use Parts

FDM can also be used to produce durable end-use parts, especially when low-to-medium strength materials are sufficient. Applications in industries such as automotive, consumer goods, and aerospace often leverage FDM for producing functional end-use components.

Get in Touch with XC Machining for Your FDM 3D Printing Needs!

We work closely with our clients to understand their specific needs, offering personalized service and ensuring that each project is completed on time and within budget. Whether you need rapid prototyping, custom parts, or small-batch production, our FDM 3D printing services are designed to meet your unique requirements and exceed your expectations.

Contact us today to discuss your project and discover how we can bring your ideas to life with FDM 3D printing.

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Häufig gestellte Fragen

Fused Deposition Modeling (FDM)

  • What types of applications can FDM be used for?

    Fused Deposition Modeling (FDM) is widely used for rapid prototyping, functional testing, and low-volume production. The technology is ideal for creating both prototypes and end-use parts, especially for industries such as automotive, aerospace, medical, and consumer goods. FDM is commonly used to create prototypes to test form, fit, and function, allowing engineers to validate designs before moving to mass production. In addition to prototyping, FDM is also suitable for producing functional parts such as jigs, fixtures, tooling, and custom components that need to be produced in small batches or on-demand. 

  • How does FDM compare to other 3D printing technologies like SLA or SLM?

    FDM is one of the most popular and cost-effective 3D printing technologies, especially for prototyping and low-volume production. Unlike Selective Laser Sintering (SLS) or Stereolithography (SLA), which use lasers or light to solidify material, FDM uses a heated extrusion nozzle to melt thermoplastic filament and build parts layer by layer. While SLA and SLS typically offer higher resolution and smoother surface finishes, FDM is more versatile in terms of material selection and is usually more affordable, making it suitable for a wide range of applications. FDM also tends to have more limitations in terms of surface smoothness and dimensional accuracy when compared to SLM (Selective Laser Melting), which is better suited for high-performance metal parts. 

  • What are the advantages of FDM over traditional manufacturing methods?

    FDM offers several distinct advantages over traditional manufacturing methods, particularly in terms of design flexibility, cost-effectiveness, and speed. One of the key benefits of FDM is its ability to create complex geometries without the need for expensive tooling or molds, which is a significant advantage over methods like injection molding and CNC machining. This ability to produce intricate designs quickly and affordably is especially beneficial for prototyping and small-batch production. FDM also allows for the use of multiple thermoplastic materials that can be chosen based on specific application requirements, such as strength, flexibility, and heat resistance. 

  • How does FDM ensure strength and durability in 3D printed parts?

    FDM parts are made from thermoplastic materials that offer a high degree of strength and durability when printed properly. The strength of FDM parts can be influenced by factors such as material choice, layer adhesion, and part orientation during printing. Materials like ABS, Nylon, and PETG are often used for their excellent mechanical properties, including high impact resistance, flexibility, and tensile strength. The layer-by-layer construction process in FDM can lead to anisotropic properties, meaning that parts may be stronger in one direction than another. To optimize strength, parts should be printed with their layers aligned in a direction that maximizes load-bearing properties. 

  • What are the limitations of FDM?

    While FDM is a versatile and widely used 3D printing technology, it does have some limitations. One of the main drawbacks is its resolution and surface finish. FDM parts typically have visible layer lines, especially if they are printed with a thicker layer height or using low-quality materials. This can affect the appearance and smoothness of the final part, requiring post-processing to improve the finish. Additionally, FDM parts tend to have lower dimensional accuracy compared to methods like Stereolithography (SLA) or Selective Laser Melting (SLM), making it less suitable for applications where tight tolerances are crucial. The strength of FDM parts can also be affected by the anisotropic nature of the printing process. Parts may be weaker along the layer lines compared to the print direction, which could impact their performance in certain load-bearing applications. 

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