[Skip to Content](https://www.sigmaaldrich.com#main-content) [![MilliporeSigma](https://www.sigmaaldrich.com/static/logos/purple/millipore_sigma.svg)](https://www.sigmaaldrich.com/US/en) Products Cart0 USEN Products ProductsApplicationsServicesResourcesSupport [Login / Register](https://www.sigmaaldrich.com/oidc-sign-in) [Order Lookup](https://www.sigmaaldrich.com/US/en/order-lookup) [Quick Order](https://www.sigmaaldrich.com/US/en/quick-order) Cart0 [Home](https://www.sigmaaldrich.com/US/en)[Applications](https://www.sigmaaldrich.com/US/en/applications)[Materials Science and Engineering](https://www.sigmaaldrich.com/US/en/applications/materials-science-and-engineering) 3D Printing # 3D Printing ![Stereolithography 3D printer showing 3D object emerging from vat of resin](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/stereolithography-photopolymer-3D-printer.jpg "Stereolithography photopolymer 3D printer") 3D printing, also called additive manufacturing, is a process for making a three-dimensional object from a digital model by successively fabricating material layer-by-layer in an additive manner. First, a virtual 3D representation of the object is rendered using computer-aided design (CAD). Then, the model is ‘sliced’ into a series of horizontal layers to convert the design into an STL (standard tessellation language) file that is readable for the 3D printer. This data is then transferred to the printer, and the printer settings are defined. The final object is produced one layer at a time, with each layer bonding and building on the previous one. Due to the ability to produce very complex shapes and structures with high precision and repeatability from a diverse range of materials, 3D printing is used for a broad range of applications in aerospace, automotive, construction, fashion, food, jewelry, manufacturing, and medical sectors. 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[Shop Products](https://www.sigmaaldrich.com/US/en/products/analytical-chemistry/analytical-chromatography/hplc-columns) * * * Overview Related Articles & Protocols Support ## Vat Polymerization Vat polymerization uses photopolymerization to cure and solidify liquid polymer resin. Stereolithography (SL) was the first type of 3D printing developed and commercialized using this method. An SL printer uses mirrors positioned at the X-Y axes to direct a laser beam across a vat of resin to create a cross-section of the object. Digital light processing (DLP) uses a projector with an LCD screen or UV light source to flash light, creating each layer. This type of resin-based 3D printing is fast because an entire layer is exposed all at once. Masked stereolithography (MLA) uses an array of LEDs to shine UV light through a liquid crystal display (LCD) photomask. ## Fused Deposition Modeling(FDM) Fused deposition modeling (FDM), also called fused filament fabrication (FFF) or material extrusion, is the most common and inexpensive 3D printing technology. A spool of thermoplastic filament (e.g., PLA, ABS) is heated to its melting point and extruded through a nozzle onto a platform, where the molten material cools and solidifies. This technology is used in injection molding and modern plastic manufacturing for ready-to-use products. ## Powder Bed Fusion Powder bed fusion selectively cures polymer or metal powders with a thermal energy source to create a solid plastic or metal object. First, the powder is heated to a temperature just below its melting point. Then, a roller distributes a very thin layer of powder over the surface of the building bed before a laser passes over the layer to fuse it. Once a layer is completed, the powder bed sinks incrementally to form the next layer. Selective laser sintering (SLS) successively sinters polymer powder with a laser. Selective laser melting (SLM) involves fully melting metal powder instead of sintering it. Other forms of metal powder bed fusion include direct metal laser sintering (DMLS) and electron beam melting (EBM).  ## Jetting Material jetting uses inkjet printer technology to add tiny droplets of photopolymers or wax onto a build plate. An ultraviolet (UV) light simultaneously cures the layers as they are printed. Material jetting (MJ) deposits material in a rapid, line-wise fashion, rather than point-wise. Therefore, multiple objects can be fabricated in a single line. Moreover, this method allows different materials to be printed in the same object. Drop-on-demand (DOD) 3D printing technology uses a set of two inkjets to deposit both the final object material and dissolvable support material simultaneously. 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[Find Documents](https://www.sigmaaldrich.com/documents-search) [Shop All Products](https://www.sigmaaldrich.com/search/titration?focus=products&page=1&perpage=30&sort=relevance&term=Titration&type=product) Slide 1 of 6 ![Binder jetting involves point-wise deposition of binder into a powder bed of object material to fuse it one layer at a time](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/binder-jetting-3d-printing-process.jpg "Binder Jetting 3D Printing Process") __Binder Jetting 3D Printing Process__ ![Material jetting process where droplets of material are deposited line-wise and simultaneously cured with a pass of UV light](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/material-jetting-3d-printing-process.jpg "Material Jetting 3D Printing Process") __Material Jetting 3D Printing Process__ ![Powder bed fusion 3D printing process where layers of powdered polymer or metal materials are sintered or melted with laser ](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/power-bed-fusion-3d-printing-process.jpg "Power Bed Fusion 3D Printing Process") __Power Bed Fusion 3D Printing Process__ ![Digital Light Processing (DLP) where layer of photopolymer resin is cured all at once with a light source](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/digital-light-processing-3d-printing-process.jpg "Digital Light Processing (DLP) 3D Printing Process") __Digital Light Processing (DLP) 3D Printing Process__ ![Stereolithography process where 3D object is formed in vat of photopolymer resin by curing layers point-wise with laser beam](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/stereolithography-printing-process.jpg "Stereolithography Printing Process") __Stereolithography Printing Process__ ![FDM 3D printing: thermoplastic filament on spool is melted in heated nozzle and molten material is extruded layer-for-layer](https://www.sigmaaldrich.com/content/dam/cms-commons/sigmaaldrich/marketing/global/images/applications/materials-science-and-engineering-/fused-deposition-modeling-printing-process.jpg "Fused Deposition Modeling (FDM) Printing Process") __Fused Deposition Modeling (FDM) Printing Process__ ## Related Articles - [3D Printable Inks: Energy & Environmental Apps](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/3d-printable-inks-for-energy-and-environmental-applications) Additive manufacturing combined with nanomaterial-based inks enhances material properties, particularly in energy and environmental applications. - [3D Printable Conductive Nanocomposites of PLA and Multi-walled Carbon Nanotubes](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/3d-printable-conductive-nanocomposites) A nanocomposite is typically defined as a mixture between a host material (e.g., polymer matrix) and nanofillers with at least one dimension of less than 100 nm. - [3D/4D Printing Technologies](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/3d-and-4d-printing-technologies) Three-dimensional printing technology applications range from personal tools to aerospace equipment. - [Graphene Inks for Electronics](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/graphene-inks-for-printed-electronics) Functional materials for printed electronics applications enable flexible displays, RFID tags, and biomedical sensors. - [Inkjet Printing for Printed Electronics](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/inkjet-printing) Inkjet printing is one of the key enabling technologies of printed electronics. Inkjet printing technology classification, aspects of materials (inks, substrates) and respective pre-and post-processing steps are discussed. - [See All (21)](https://www.sigmaaldrich.com/US/en/search/facet-search?focus=sitecontent&term=facet-search) ## Related Protocols - [Characterization and Performance Insights of Advanced Li-ion Cathode Materials](https://www.sigmaaldrich.com/US/en/technical-documents/protocol/materials-science-and-engineering/batteries-supercapacitors-and-fuel-cells/characterization-performance-insights-advanced-li-ion-cathode-materials) Analysis of high- to moderate-nickel cathode materials for lithium-ion batteries, focusing on performance, stability, and structural characteristics. - [Streamlined Electrode Fabrication: A User-Friendly Guide](https://www.sigmaaldrich.com/US/en/technical-documents/protocol/materials-science-and-engineering/batteries-supercapacitors-and-fuel-cells/streamlined-electrode-fabrication-user-friendly-guide-cathode-electrodes) Guide for fabricating NMC811 cathode electrodes, detailing procedures for optimal performance in lithium-ion batteries. - [Preparation of Monodisperse Polymer Spheres](https://www.sigmaaldrich.com/US/en/technical-documents/protocol/materials-science-and-engineering/nanoparticle-and-microparticle-synthesis/preparation-of-monodisperse-polymer-spheres) Polymeric spheres serve as crystal templates. 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[3D Printable Conductive Nanocomposites of PLA and Multi-walled Carbon Nanotubes](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/3d-printable-conductive-nanocomposites) A nanocomposite is typically defined as a mixture between a host material (e.g., polymer matrix) and nanofillers with at least one dimension of less than 100 nm. [3D/4D Printing Technologies](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/3d-and-4d-printing-technologies) Three-dimensional printing technology applications range from personal tools to aerospace equipment. [Graphene Inks for Electronics](https://www.sigmaaldrich.com/US/en/technical-documents/technical-article/materials-science-and-engineering/3d-printing/graphene-inks-for-printed-electronics) Functional materials for printed electronics applications enable flexible displays, RFID tags, and biomedical sensors. 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