Metal Binder Jetting
DSB Technologies is an end-to-end manufacturing partner for complex powder metal applications using the Metal Binder Jetting Process. With state-of-the-art binder jetting systems, substantial high-temperature sintering capacity, and in-house secondary machining and automation, we power manufacturers to leverage this powder metallurgy technology for scalable, high volume production.
Metal Injection Molding
With strategic investments in new equipment, custom materials, and leading industry talent, DSB Technologies enables manufacturers to produce strong, complex metal components with low part variability and reduced secondary machining operations. Explore our full MIM capabilities.
Filters & Porous Components
DSB Technologies engineers a wide range of sintered metal filters and porous metal components, including the design of parts with application-specific porosity levels. Materials are available for high-volume stainless steel metal applications and those requiring specialty alloys.
Sintering Expertise
At the root of our powder metallurgy technology portfolio is sintering. DSB Technologies brings over 50 years of sintering expertise and the world's largest high-temperature sintering capacity to support high-volume production of functional powder metal applications through three forming
technologies: powder metallurgy press and sinter, metal injection molding, and metal binder jetting.
Compaction & Press Technology
DSB Technologies has been compacting powder metal components with advanced designs for over 50 years. With the addition of new computer numerical control (CNC) presses to our existing compaction portfolio, DSB Technologies manufactures highly complex metal parts, enabling customers to meet new design challenges with economical solutions for high-volume production.
Material Development
Behind every part is a material that meets performance requirements and a manufacturing partner who drives results. DSB Technologies uses advanced powder metallurgy technology and a wide range of materials, including custom blends, to optimize applications with specific performance requirements, starting with material selection.
