SLS 3D PRINTING | SLS 3D PRINTING SERVICE

Locanam 3d Printing03 May, 2024Technology

Selective laser sintering (SLS) is a high-tech way to make things using a special 3D printing method. It's used in industries to create prototypes and actual parts really quickly, sometimes even in just one day. They use different kinds of nylon materials that make the final parts super strong. Here's how it works: First, a thin layer of plastic powder is spread out. Then, a powerful laser melts specific parts of this powder layer. This process is repeated layer by layer until the whole thing is done. Once the printing is finished, the whole bed of powder with the parts inside is taken to another station. There, the parts are taken out of the powder bed. First, they brush off most of the loose powder by hand. Then, they use bead blasting to clean off any leftover powder. Finally, the parts go to the finishing department to get them ready for use.

Why Choose SLS 3D Printing Over FDM 3D Printing?

Locanam 3d Printing25 Apr, 2024Technology

Selective laser sintering (SLS) and fused deposition modeling (FDM) are two types of additive manufacturing (AM), otherwise known as 3D printing. Both are regularly employed for rapid prototyping and low-to-medium-volume production. SLS machines methodically fire a laser to sinter the particles of a polymer-based powder to build parts layer-by-layer. On the other hand, FDM machines melt and extrude a polymer filament through a nozzle, depositing it along a prescribed path to form parts layer by layer. While the two types of AM have many similarities, their differences will determine whether SLS vs. FDM is better for you. Primarily, their operational variances set them apart. SLS machines function by selectively fusing layers from a bed of powder. This unique approach obviates the need for dedicated support structures, as the powder base inherently sustains part features during printing. FOR MORE - www.locanam.com

FDM 3D Printing Services

Locanam 3d Printing07 Feb, 2024Business

Fused Deposition Modeling (FDM), also referred to as material extrusion additive manufacturing, utilizes polymers as its primary material in the form of filaments. These filaments are heated to a molten state and then extruded through a nozzle attached to a 3D printer. The printer's nozzle can move in three dimensions, depositing the molten polymer onto a build plate according to instructions encoded in G-code. Continuous feeding of the filament through the extruder and nozzle is facilitated by two rollers rotating in opposite directions. Layer by layer, the material is deposited on the build plate until the desired shape and size of the product are achieved. Throughout this process, the printer nozzle follows the spatial coordinates specified in the original CAD model within the G-code files. In some FDM systems, multiple extrusion nozzles may be utilized, particularly for producing components with compositional gradients.

SLA 3D PRINTING SERVICES

Locanam 3d Printing30 Jan, 2024Technology

Introduction Welcome to Locanam 3D Printing, your go-to resource for all things related to stereolithography (SLA) in the world of additive manufacturing. In this article, we will delve into the fascinating world of SLA, exploring its unique features, applications, and advantages. Whether you are an industry professional or someone curious about this cutting-edge technology, we've got you covered! Understanding Stereolithography (SLA) Stereolithography, commonly referred to as SLA, is a revolutionary technology that falls under the Vat Photopolymerization family of additive manufacturing. It is widely recognized as one of the most precise and versatile 3D printing techniques available today. SLA operates by utilizing a process called photopolymerization. It involves using a laser or other light sources to selectively cure liquid resin into solid objects layer by layer, following a computer-generated design.

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