3D printing technology has expanded from rapid prototyping to direct digital manufacturing and customized production in recent years. The practical success of this revolutionary technology is closely linked to the availability of printing materials that enable 3D-printed components to reach diverse physical and chemical properties.
The industry-leading position of CD BioSciences-Advanced Materials derives from its dedication to delivering advanced materials products and services. Our clients benefit from innovative 3D printing solutions which stem from our materials research and development technologies. Our professional team remains dedicated to developing 3D printing materials that combine superior performance with exceptional sustainability standards through continuous exploration of materials science frontiers.
Nanomaterials Integration
We incorporate nanomaterials (e.g., We integrate nanomaterials like graphene and carbon nanotubes into standard 3D printed materials to improve strength and enhance flexibility as well as conductivity.
Additive Manufacturing Simulation
Simulating the 3D printing process with computational software allows us to predict material properties which helps optimize printing parameters and minimize material development iterations.
Material Characterization
We utilize spectroscopy and microscopy techniques to examine materials at micron and nanoscale dimensions which enables us to choose and refine materials specifically for 3D printing applications.
Bio-based and Sustainable Materials
Environmentally friendly 3D printing solutions can be produced using materials developed from renewable resources including PLA and other biopolymers.
We offer customized services to clients based on different physical properties and application requirements. The materials we can develop include, but are not limited to, the following table.
Classification | Examples |
Thermoplastic | ABS (acrylonitrile-butadiene-styrene copolymer), PLA (polylactic acid), PETG (polyethylene terephthalate), nylon, etc. |
Metal-based Materials | Stainless steel, titanium alloy, aluminum alloy, etc. |
Resins | Standard resins, flexible resins, high-temperature resins, photosensitive resins, etc. |
Biological Materials | Bio-ceramics, cells, bio-ink, etc. |
Composite Materials | Carbon fiber composites, glass fiber composites, etc. |
Metal Nano 3D Printing Materials R&D
Bio-3D Printing Materials R&D
4D Printing Smart Materials R&D
Analysis of Clients' Needs
We are aware of contemporary trends and market needs related to 3D printing materials. By communicating with our clients, we obtain their requirements and development goals for 3D printing materials.
Material Preparation and Performance Testing
Our team produces new material samples both in the laboratory environment and on pilot production lines. The samples undergo multiple performance evaluations that examine their mechanical characteristics as well as thermal and chemical stability.
Material Design and Formulation Development
Our development process involves creating material formulations and choosing suitable raw materials along with additives to attain targeted material properties. Small-scale laboratory tests allow us to optimize our formulation for material stability and feasibility.
Scale Production and Marketing
Following material formula determination we proceed with production process optimization and production equipment configuration. Meanwhile, our marketing strategy focuses on promoting the newly developed materials and helping clients gain brand influence.
CD BioSciences-Advanced Materials provides cutting-edge materials products and services tailored to 3D printing solutions. We specialize in advanced materials to help clients innovate their manufacturing processes. If you are interested in our services, please feel free to contact us for more information.
For Research or Industrial Raw Materials, Not For Personal Medical Use!