SPEE3D’s CSAM prints metal parts in sub-zero environments

Can You Imagine Printing Metal Parts in the Extreme Cold?

Think about it, printing metal parts in sub-zero environments. It sounds like science fiction, but it’s a reality that SPEE3D, an Australian metal additive manufacturing company, has made possible. Their XSPEE3D system has been tested and proven to operate successfully in extreme cold weather conditions, producing parts with comparable material properties to those produced in a laboratory environment.

spee3ds-csam-prints-metal-parts-in-sub-zero-environments SPEE3D's CSAM prints metal parts in sub-zero environments

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The Point of Need Challenge

The XSPEE3D system was put to the test as part of the Office of The Secretary of Defense Manufacturing Technology’s Point of Need Challenge (PON). The challenge was managed by LIFT, the Detroit-based Department of Defense Manufacturing Innovation Institute, and concluded that the XSPEE3D system is well-suited to support the DoD’s goal of expanding expeditionary manufacturing capabilities in extreme cold weather environments.

| Challenge Location | Hanover, New Hampshire | | Host Organization | US Army’s Cold Region’s Research and Engineering Laboratory (CRREL) | | Challenge Year | 2023 |

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Printing Metal Parts in Extreme Cold

The XSPEE3D system uses Cold Spray Metal Additive Manufacturing (CSAM) technology to print metal parts. This technology allows for the rapid production of metal parts, making it ideal for applications where time is of the essence. The system’s ability to operate in extreme cold weather conditions makes it a game-changer for industries such as aerospace, defense, and automotive.

How Does it Work?

The XSPEE3D system uses a cold spray process to deposit metal particles onto a substrate, building up layers to create the desired part. The system is designed to operate in a variety of environments, including extreme cold weather conditions. The cold spray process allows for the rapid production of metal parts, making it ideal for applications where time is of the essence.

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The Benefits of CSAM Technology

The XSPEE3D system’s CSAM technology offers several benefits, including:

  • Rapid Production: The system can produce metal parts quickly, making it ideal for applications where time is of the essence.
  • High-Quality Parts: The system produces high-quality parts with comparable material properties to those produced in a laboratory environment.
  • Extreme Environment Capability: The system can operate in extreme cold weather conditions, making it ideal for industries such as aerospace, defense, and automotive.

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The Future of Metal Additive Manufacturing

The XSPEE3D system’s ability to print metal parts in extreme cold weather conditions is a significant breakthrough in the field of metal additive manufacturing. This technology has the potential to revolutionize industries such as aerospace, defense, and automotive, where the ability to produce high-quality parts quickly is essential.

The Potential Applications

The XSPEE3D system’s CSAM technology has a wide range of potential applications, including:

  • Aerospace: The system’s ability to produce high-quality parts quickly makes it ideal for the aerospace industry, where time is of the essence.
  • Defense: The system’s ability to operate in extreme cold weather conditions makes it ideal for the defense industry, where the ability to produce parts in the field is essential.
  • Automotive: The system’s ability to produce high-quality parts quickly makes it ideal for the automotive industry, where time is of the essence.
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spee3ds-csam-prints-metal-parts-in-sub-zero-environments SPEE3D's CSAM prints metal parts in sub-zero environments

Conclusion

The XSPEE3D system’s ability to print metal parts in extreme cold weather conditions is a significant breakthrough in the field of metal additive manufacturing. This technology has the potential to revolutionize industries such as aerospace, defense, and automotive, where the ability to produce high-quality parts quickly is essential. As the technology continues to evolve, we can expect to see even more innovative applications in the future.

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