Blog
0
135
Why Does Modern Engineering Education Need Additive Manufacturing?
Modern industry – from instrument making and civil aviation to medicine and automotive – relies on additive manufacturing. The use of 3D printing and 3D scanning makes it possible to produce complex geometric parts, optimize structural weight, and reduce prototype development cycles from months to a ..
0
740
In industrial manufacturing and Research & Development (R&D) departments, every hour of 3D printer operation has its price. A prolonged printing cycle is not just a technical inconvenience. It translates into direct financial costs for electricity, operator working hours, and most importantly, delayed product releases. The client is waiting – production stands still...
0
1178
Professional 3D Scanning: From Micro-Details to Digitizing City Blocks
At 3DDevice, we have been curating equipment solutions since 2012 for tasks that a "one-size-fits-all" approach simply cannot solve. Each objective requires specific optics and a distinct operational logic. We have structured our catalog to cover every requirement – from jewelry desig..
0
1179
Meet the new Formlabs products this fall!
On Thursday, November 13, 2025, Formlabs announced the release of three key innovations that enhance the capabilities
of additive manufacturing and help businesses transition from prototyping to stable serial production.
These products are already available for order in Ukraine through 3DDevice.
New durable Tough re..
0
1814
A detailed review of Grey Resin V4.1, Tough 1500 V2, and True Cast Resin
Analyzing their characteristics and direct impact on the quality of prototypes, functional parts, and casting master
patterns
Recently, 3Ddevice hosted a technical webinar focused on the new generation of Formlabs engineering resins. In
additive manufacturing, selecting the right..
0
2865
Advanced Post-Processing Techniques for 3D Printing
3DDevice invites engineers, designers, and 3D printing professionals to join a free webinar, focused on modern
techniques for finishing SLA and SLS printed parts.
Date: 30.07.2025
Time: 11:00
Format: Zoom
Webinar program
During the webinar, we will discuss how to choose the right p..
0
8152
What is FDM 3D printing?Let's start with the fact that this is one of the most common and simplest 3D printing technologies. FDM 3D printers are the most budget-friendly and accessible in every way. What's more, some craftspeople assemble these devices themselves. In a way, this kind of “handmade” FDM 3D printing is pretty successful, but it's nothing like printing wi..
0
4943
What is SLA 3D printing?Laser stereolithography, also known as SLA 3D printing, is not only one of the first 3D technologies in the world, but also one of the most accurate additive manufacturing techniques. In a way, it is unique because it uses liquid photopolymer resin as a consumable material. The essence of the technology lies in exposing the photopolymer to ligh..
0
5703
What is selective laser sintering?
A more accurate name for this technique is selective laser sintering (SLS). It is one of the 3D printing techniques
widely used in industry. Selective laser sintering is only available on expensive professional 3D printers and
is known for producing high-quality products. It can be used to achieve results similar to those obtained by..
0
3812
What is Direct Metal Laser Sintering?
Direct Metal Laser Sintering (DMLS) is widely used across various industries and is supported by an extensive lineup of professional 3D printing equipment. At its core, the process involves building parts from specialized metal powders using a high-power laser, guided by preset 3D models. In many respects, DMLS is closely related ..
0
4610
What is Selective Laser Melting of Metal?
This article will discuss one of the most common industrial 3D printing technologies: the SLM method. Its full name is Selective Laser Melting. You can also often encounter the name "Selective Laser Melting of Metal," as metallic powders are the main consumable material for this type of printing on a 3D printer.
Many peop..
0
3104
What is Selective Heat Sintering?
Selective Heat Sintering (SHS) is a relatively new 3D
printing technology
presented as an alternative to Selective Laser Sintering (SLS). It simultaneously resembles
three other 3D printing methods: SLS, FDM, and DLP. It is
virtually identical to the first one, with the only difference being the use of a thermal un..