CASTHEON INC (20240335881). METHODS FOR 3D PRINTING AND ADDITIVE MANUFACTURING OF REFRACTORY ALLOYS simplified abstract

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METHODS FOR 3D PRINTING AND ADDITIVE MANUFACTURING OF REFRACTORY ALLOYS

Organization Name

CASTHEON INC

Inventor(s)

Youping Gao of Thousand Oaks CA (US)

METHODS FOR 3D PRINTING AND ADDITIVE MANUFACTURING OF REFRACTORY ALLOYS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240335881 titled 'METHODS FOR 3D PRINTING AND ADDITIVE MANUFACTURING OF REFRACTORY ALLOYS

Simplified Explanation: A part made from a refractory alloy is manufactured using additive manufacturing or casting. The part is coated with a protective coating prior to the step of hot isostatic pressing the part.

Key Features and Innovation:

  • Manufacturing a part from a refractory alloy using additive manufacturing or casting.
  • Coating the part with a protective coating before hot isostatic pressing.
  • Enhancing the durability and performance of the part through this process.

Potential Applications: The technology can be applied in industries such as aerospace, automotive, and energy where high-performance parts are required.

Problems Solved: This technology addresses the need for durable and high-performance parts made from refractory alloys.

Benefits:

  • Improved durability and performance of parts.
  • Enhanced efficiency in manufacturing processes.
  • Potential cost savings in the long run due to increased part longevity.

Commercial Applications: The technology can be utilized in the production of components for jet engines, gas turbines, and other high-temperature applications.

Questions about the Technology: 1. How does the protective coating enhance the performance of the part? 2. What are the specific advantages of using additive manufacturing for manufacturing parts from refractory alloys?


Original Abstract Submitted

a part made from a refractory alloy is manufactured using additive manufacturing or casting. the part is coated with a protective coating prior to the step of hot isostatic pressing the part.