KOR
ENG
KOR
ENG
SIMTOS 2026
Overview
Final Report
SIMTOS EI
EXHIBITORS
Exhibitor Login
Exhibitor List
VISITORS
Pre-Registration
Visitor/MM4U Login
NEWS
Notice
Press Release
Industry News
M.A.D.E. in SIMTOS
Overview
Exhibit List
M.A.D.E. EI
SIMTOS 2026
Overview
Final Report
SIMTOS EI
EXHIBITORS
Exhibitor Login
Exhibitor List
VISITORS
Pre-Registration
Visitor/MM4U Login
NEWS
Notice
Press Release
Industry News
M.A.D.E. in SIMTOS
Overview
Exhibit List
M.A.D.E. EI
EXHIBITORS
Exhibitor Info
Exhibitor Details
Marketing Information
ㆍCompany
3DMaterials
ㆍRepresentative
Chung Hoi-Min
ㆍAddress
57-2 Heungan-daero 427beon-gil, Dongan-gu, Anyang-si, Gyeonggi-do, Republic of Korea 10th floor-and 1001
ㆍTel.
+82-10-4798-3154
ㆍEmployees
20~49
ㆍWebsite
www.3DMaterialsgd.com
ㆍE-mail
hwlee@3DMaterials.com
ㆍEstablished Year
2019
ㆍCompany Type
Manufacturing (Headquarters in Korea)
ㆍRelated Industry
ㆍMajor Customers
ㆍSNS
ㆍCompany Profile
3DMaterials GD provides next-generation industrial 3D printing services for producing highly complex structures that are difficult or impossible to manufacture using conventional methods. Our capabilities span metal alloys including titanium, stainless steel (SUS), and aluminum, as well as advanced engineering plastics such as PEEK, PPS, and ULTEM. Beyond traditional FDM and SLM processes, we have developed our proprietary PLP (Polymer Liquidation Process) technology, which uses injection-grade engineering plastics to achieve SLA-level surface quality with high dimensional accuracy. This enables precise fabrication of complex generative-design geometries with minimal post-processing, delivering optimized solutions for lightweight, high-strength, and heat-resistant robotic and functional components across advanced industries.
Manufcaturer Information
ㆍManufacturer
3DMaterials
ㆍIntroduction
3DMaterials GD provides next-generation industrial 3D printing services for producing highly complex structures that are difficult or impossible to manufacture using conventional methods. Our capabilities span metal alloys including titanium, stainless steel (SUS), and aluminum, as well as advanced engineering plastics such as PEEK, PPS, and ULTEM. Beyond traditional FDM and SLM processes, we have developed our proprietary PLP (Polymer Liquidation Process) technology, which uses injection-grade engineering plastics to achieve SLA-level surface quality with high dimensional accuracy. This enables precise fabrication of complex generative-design geometries with minimal post-processing, delivering optimized solutions for lightweight, high-strength, and heat-resistant robotic and functional components across advanced industries.
ㆍCountry
Korea
ㆍTel
ㆍE-mail
hwlee@3dmaterials.com
ㆍWebsite
www.3DMaterialsGD.com
Exhibition Product
ㆍProduct
3D-printed parts
ㆍModel
Custom-made products
ㆍManufacturing Company
3DMaterials
ㆍProduct Code
Other Systems for Additive Manufacturing
ㆍDescription
- Generative Design Implementation: Realization of optimized, lightweight structures using generative design with materials such as titanium and PEEK - No Material Limitations: Compatible with a wide range of industrial materials including PEEK, ULTEM, PPS, ABS, PP, PA6+GF60%, titanium, aluminum, and steel - Same Material and Properties as Injection Molding: Injection-grade performance without the need for molds - No Porosity or Thermal Deformation: Overcoming metal 3D printing limitations through precision casting and PLP technology - Ultralight Structure: Up to 89% reduction in volume, with ultra-lightweight parts printed at densities as low as 0.2g/mL - Production from a Single Unit (No MOQ): Mold-free solution optimized for small-batch manufacturing - Design Optimization and Validation Service: Performance verification and design feedback prior to mass production
ㆍPicture
ㆍVideo link
Back