We deliver competitive pricing on custom prototypes and high-volume production parts. Upload your design data to our online platform for an instant, verifiable quote and go from CAD to physically orderable parts in under 5 minutes.
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3DMITECH supports complex parts, custom materials, and various post-processing options for prototypes and low-volume runs, combining 3D printing with CNC and casting for fast, secure delivery.
A simple, transparent process from design to delivery.
Import multiple designs simultaneously for a single, comprehensive quote in under a minute.
Select from 100+ materials and specify manufacturing processes, finishes, and certifications.
Confirm your configuration and checkout securely. Our engineers will immediately analyze your design.
Track your package in real-time and receive your precision-engineered parts directly to your door.
Upload a CAD file to start (STEP, STP, STL, OBJ, 3DM, 3DS, formats accepted)
Price updates instantly as you modify materials, lead times, and other order details for a seamless quoting experience.
We manage customs clearance and pay import duties for shipments to the EU, UK, and US, guaranteeing hassle-free delivery and transparent pricing for your orders.

Get instant quotes and detailed geometry analysis using our online platform. Order 3D printing easily through our streamlined process. Start on-demand manufacturing today with expert advice, design support, and strategic planning for scalable production.
Explore productionDepends on several factors, including the type of material selected, the volume of material used, and the complexity of the part.
Different 3D printing technologies, such as FDM, SLA, SLS, MJF, and SLM, have varying material consumption rates and costs. Using premium materials like Nylon, PC, or TPU may increase the cost compared to standard filaments like PLA or ABS.
Our instant quoting tool provides transparent pricing based on your uploaded files, allowing you to compare options and select the best price for your project.
If you send different parts in one STL file, we will print each part separately to ensure precision and quality in the final physical object.
A functional prototype or end-use part is an essential tool to demonstrate your concept to the market and collect valuable customer insights. It plays a vital role in research and development (R&D), allowing you to evaluate and improve your designs prior to full-scale manufacturing.
3D printed parts for end use are supported by injection moulding plastics or metal dies during production, offering a cost-effective alternative for manufacturing. You can also order custom parts on demand, enabling flexible production without minimum order value constraints.
Our online 3D printing service offers secure file storage with customizable privacy settings, ensuring that access is granted only to authorized users.
Metal 3D printing service is one of the most heavily invested technologies in manufacturing, widely used in aerospace, automotive engineering, mechanical engineering, special materials, and more.
In many cases, post-processing of 3D printed metal parts achieves a finish comparable to machined components.
This guide addresses common questions about metal 3D printing, covering key technologies, benefits, limitations, and practical applications in metal additive manufacturing. For comprehensive details on metal 3D print fabrication, explore our full guide.
Learn more on our blog: What Is 3D Print Metal?
Yes, injection moulding is one of our core manufacturing services. It is expertly designed to handle complex geometries across all part sizes and optimised for scalable volume production, ranging from 1,000 to over 30,000 units.
This process offers an efficient and cost-effective solution for high-volume manufacturing needs through our network of trusted manufacturing partners.
We operate our own UK-based in-house 3D printers, delivering highly accurate models with print times of around 6 hours for high-quality results.
Our low-volume manufacturing process is fast, precise, and cost-effective, ensuring efficient production of your parts.
A CAD print-ready within 24 hours of depositing your order, with options for even faster turnaround through our next-day delivery service. Choose the turnaround time that best fits your project needs and benefit from our efficient printing process designed to deliver high-quality physical parts promptly.
We offer a comprehensive range of filaments, including ABS, PLA, ASA, PC, Nylon 6, and TPU 92A, available in a variety of vibrant colours to suit your project needs. Our premium materials include:
PLA Premium, ideal for prototyping with excellent surface finish and ease of printing.
ABS Premium, known for its toughness and impact resistance.
PETG Premium, offers great chemical resistance and durability.
ASA Premium, perfect for outdoor applications due to UV resistance.
Nylon 6, provides excellent strength and flexibility for functional parts.
PC Premium, delivers high impact resistance and heat tolerance.
PC-ABS, combining toughness and thermal stability.
Flexi TPU 95A, offering flexible and durable performance.
Hyper Speed PLA and Hyper Speed ABS, are optimised for faster printing without compromising quality.
Flexi TPU 85A, provides enhanced flexibility with rapid print speeds.
Hyper PLA-CF, a carbon-fibre reinforced filament for superior strength and stiffness.
PET Premium, known for its excellent durability and chemical resistance.
Explore our full 3D Printing Material Guide to select the right material tailored to your project's requirements, ensuring optimal material properties, surface finish, and durability.
Yes, our 3D Printers machines can print in multiple colours before assembling them together for the final product.
This is done using the Fused Deposition Modelling (FDM) technology.
Yes, our 3D printers can produce parts in multiple colours, which are then carefully assembled to create the final product.
This multi-colour printing is achieved using advanced Fused Deposition Modelling (FDM) technology, ensuring vibrant, durable parts with excellent surface finish and precision.
3D printing service (additive manufacturing) allows you to quickly and cost-effectively create parts for a wide range of applications.
The choice of materials is crucial, enabling you to produce parts with the necessary mechanical properties, functionality, and appearance. This includes a broad spectrum of common 3D-printed plastics and metals. Each 3D printer has specific material capabilities, so understanding your printer's limits is key to achieving high-quality results
Our service supports various additive manufacturing technologies such as FDM, SLA, SLS, and selective laser sintering, allowing you to select the best process and material for your project.
Discover more in our comprehensive blog Guide To Material For 3D Printing, covering FDM, SLA, SLS, and selective laser melting printers to help you make informed decisions for your prototypes and production parts.
Still have questions? We’re here to help.

Expert Milling 3-axis, 5-axis, Turning
Precision: Engineering tolerances as tight as ±.020 mm.
Speed: Project fulfillment starting from 10 business days.
Explore Our Machining Services
Laser Cutting & Bending
Quality: High-accuracy fabrication to
± 0.1 mm. standards.
Reliability: Standard production lead times of 12 working days.
Discover Fabrication Capabilities
Bridge Tooling & Mass Production
Versatility: Engineered for complex geometries across all part sizes.
Scalability: Optimized for volumes ranging from 1k to 30k + units.
Review Molding CapabilitiesFused Deposition Modeling (FDM) is an extrusion-based technology that melts and deposits thermoplastic filaments layer by layer. It is the most cost-effective solution for structural components and functional prototypes.
Common Materials: PLA, ABS, PET-G, ASA, Polypropylene, and Carbon Fiber reinforced composites.
Explore our resources: Read our Introductory guides or optimize your model rules using our Design guides.
Multi Jet Fusion (MJF) is an advanced powder-bed printing method that utilizes an inkjet array to apply fusing and detailing agents over the material layer, which is then bound by an infrared heat source. This process produces exceptionally dense, airtight, watertight components with highly predictable isotropic mechanical properties.
Common Materials: Production-grade Nylon 12, Nylon 11
Explore our resources: Dive into structural breakdowns within our Applications and Industrial & Metal Blendscatalogs.
Stereolithography (SLA) is a vat photopolymerization technique that uses a precise ultraviolet laser beam to cure liquid photopolymer resin into solid, highly detailed layers.
Explore our resources: Walk through our detailed setup checklists under CAD & file preparation and Post processing & finishing.
Selective Laser Sintering (SLS) is a powder-bed fusion method that utilizes a high-powered laser to fuse fine polymer particles together. Because the surrounding unsintered powder acts as a natural support matrix, it allows for complex geometries, hollow cavities, and interlocking parts without any geometric restrictions.
Common Materials: High-strength engineering thermoplastics like Nylon 12 (PA12) and glass-filled Nylon composites.
Explore our resources: See how to configure your mechanical parts in our Material guides.
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A comprehensive selection of online resources and blog posts developed to help engineers master their capabilities.