Industries
Aerospace
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For aircraft components, weight reduction is an ongoing priority. Binder jetting 3D printing can optimize the structure of complex parts, reducing weight and offering significant potential for cost savings, fuel efficiency, and environmental sustainability.
MIM (Metal Injection Molding)
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Binder jetting can produce parts that are typically made by MIM. While MIM is limited to producing small parts, binder jetting can manufacture parts of various sizes, including both small and large components with a wider range of geometries.
Molds & Cores
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Binder jetting 3D Printing offers significant advantages in manufacturing complex molds, cores, and components.
R&D (Research & Development)
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Binder jetting 3D printing is a comprehensive and interdisciplinary technology, encompassing machinery, software, automatic control, materials (including binders and powders), and post-processing. EASYMFG's technology is open and fosters collaboration, offering selective cooperation opportunities to various research and development institutions. Additionally, EASYMFG is committed to sharing its past experiences with the public.
Artistic Sculpture
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The advent of 3D printing has not only revolutionized the industrial manufacturing sector but has also found significant applications in the cultural design industry.
Foundries
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Binder jetting 3D printing is increasingly becoming the preferred choice for the majority of foundries, representing an essential production equipment for the future. It offers cost efficiency comparable to traditional casting methods while enabling the production of complex parts without the need for tools, providing significant flexibility.
Pumps & Hydraulics
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With the optimization of processes and mechanical properties of raw materials, 3D printing technology can now meet the requirements of pump valve manufacturers. Utilizing EASYMFG for sand mold 3D printing, even the most intricate pump industry parts can be rapidly produced with precise and uniform cores and molds. Binder jet metal printing directly creates metal prototypes, offering low cost and high efficiency.
Automotive
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Binder jetting 3D printing offers significant advantages in terms of cost and speed, enabling it to compete with traditional manufacturing methods. Therefore, for complex non-core components such as wheel hubs, exhaust pipes, and intake manifolds, binder jetting 3D printing can be used directly. However, for parts requiring high strength, such as engines and speed changers, it is recommended to combine binder jetting with traditional methods.
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