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Locanam 3D Printing Service

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  Locanam, a 3D printing service provider located in Delhi, India, specializes in comprehensive 3D printing and prototyping services. By leveraging advanced 3D printing technology, we assist our clients in overcoming the limitations of traditional manufacturing, enabling faster product development and market readiness. Our services have significant advantages over conventional manufacturing methods, including reduced prototyping and shorter lead times. We cater to various applications, from prototyping and small batch production to mass manufacturing, utilizing a Wide range of 3D printing techniques such as FDM, SLA, SLS, DMLS, MJF, and DLP. Additionally, we support clients in the design phase with CAD/CAM expertise. FOR MORE - https://www.locanam.com/ FOR MORE - https://www.locanam.com/

What is Directed Energy Deposition?

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  Powder-based directed energy deposition (DED) uses a focused energy source, such as a laser beam (DED-LB) or electron beam (DED-EB) to melt the metal powders. The material is melted at the same time as it is deposited by a nozzle. Like PBF, the laser or electron beam melts the material, layer by layer into the final geometry. Hybrid systems that include CNC machining capabilities for improved design and dimensional control capabilities have been developed. FOR MORE ABOUT DAD(_) Direct Energy Deposition 3d printing

What is Binder Jetting 3D Printing?

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3D printing, also called additive manufacturing (AM), is an innovative technique that sequentially builds components or products by layering materials. Unlike traditional methods, it doesn't require subtracting materials to form molds or shapes. This allows for the creation of complex, specific, and previously impossible designs. Despite being a relatively new technology, 3D printing has seen extensive research and publications since 2014. It's now being adopted across various industries, challenging conventional manufacturing methods. There are two main categories of 3D printing: fusion-based methods like Powder Bed Fusion (PBF) and Directed Energy Deposition (DED), and non-fusion methods such as Binder Jetting (BJ). This discussion will focus on binder jetting technology. FOR MORE - https://www.locanam.com/post/what-is-binder-jetting https://www.locanam.com/post/what-is-binder-jetting

Difference Between SLA and DLP 3D Printing

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Stereolithography (SLA) 3D Printer Stereolithography Apparatus (SLA) is the first 3D print online technology ever patented. It was copyrighted in 1984 by Charles Hull, the 'Father of 3D Printing.' AN SLA 3D printer uses a laser to selectively harden the liquid resin in the VAT to create a layer-by-layer object. Digital Light Processing (DLP) 3D Printer The 3D Printing online technology - Digital Light Processing (DLP) is also part of the VAT photopolymerization technology. It is similar in many respects to SLA 3D Printing service in India with a small but significant improvement. A DLP 3D printer uses liquid photosensitive resins that are cured when UV light is applied.  The critical distinction between these two 3D Print Online technologies is the light source, which determines the product's consistency printed on these devices. DLP 3D Printing service in India uses a digital projector screen to flash a single-layer graphic.  This means that a single sheet of printing is d

Different Types of FDM 3D Printers

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FDM (Fused Deposition Modeling) printers There is no hard classification of the FDM 3D printers Cartesian 3D Printers: These are the most common type, operating on a straightforward Cartesian coordinate system with linear rails guiding movement along the X, Y, and Z axes. They are recognized for their simplicity and reliability. Delta 3D Printers: Delta printers employ a triangular configuration of three arms attached to moving carriages at the printer's apex. The print head hangs from these carriages, executing precise movements to craft the intended object. Delta printers excel in speed and consistency, particularly in producing tall items. CoreXY 3D Printers: CoreXY printers utilize a distinctive belt-driven mechanism to maneuver the print head across the X and Y axes. This design separates the print head's motion from that of the build platform, resulting in swifter and more accurate prints. Enthusiasts favor CoreXY printers for their speed and precision. Polar 3D Printers:

The Process of SLS in Additive Manufacturing

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The Selective Laser Sintering process resembles that of other powder bed fusion technologies in the following ways: A designer produces a 3D model using a   Computer-Aided Design   ( CAD) program. The design is split into thin (2D) layers. The split design is sent to the SLS printer. A leveling roller spreads a thin layer of powdered material across the printer’s build platform. A CO 2   laser traces a cross-section on the material, heating and fusing it together. Once a layer is complete, the build platform is lowered to allow space for the next layer of powder. Unused material is recycled after each layer is finished. The SLS process is repeated, building layer-on-layer until the part is completed. During the printing process, SLS parts are encompassed by unsintered powder. This extra powder supports the part during printing, removing the need for support structures. In the process of creating a 3D model, a designer utilizes a Computer-Aided Design (CAD) program to craft the initial

Locanam SLS 3D Printing

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SLS is an advanced additive manufacturing technique that enables innovators to precisely and effectively obtain their most audacious ideas. High-powered lasers are used in selective laser sintering (SLS) to bond finely powdered material into a solid structure. Using this method, a printer deposits a uniform layer of powder and then precisely sinters it. This procedure is repeated until the part is finished. Using a digitally generated CAD (computer-aided design) file as guidance, a laser is pointed at the powder bed at specified spots in space to construct the desired shape of the product. High-fidelity products, such as precise, low-volume parts for the automotive and aerospace industries, can be produced by SLS machines. Large or geometrically complicated, detailed, and extremely accurate items of different materials can be made with SLS. The adaptability of SLS 3D printing is among its most alluring qualities. SLS provides a versatile solution for various applications across industr