The Johns Hopkins University (20240286195). Device And Method For Rapidly Developing Materials For Additive Manufacturing simplified abstract

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Device And Method For Rapidly Developing Materials For Additive Manufacturing

Organization Name

The Johns Hopkins University

Inventor(s)

Robert K. Mueller of Columbia MD (US)

Gianna M. Valentino of Baltimore MD (US)

Device And Method For Rapidly Developing Materials For Additive Manufacturing - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240286195 titled 'Device And Method For Rapidly Developing Materials For Additive Manufacturing

Simplified Explanation:

The patent application describes a method for quickly developing materials for additive manufacturing by using single-line and multiple-line trace patterns on a powder layer in an AM machine.

Key Features and Innovation:

  • Method involves disposing a powder layer into a powder pocket of a build device for an AM machine.
  • Single-line trace patterns are executed on a first portion of the powder layer to form corresponding single-line traces on the build device.
  • Sets of multiple-line trace patterns are executed on a second portion of the powder layer to form corresponding sets of multiple-line traces on the build device.

Potential Applications: This method can be used in various industries such as aerospace, automotive, and medical for rapid prototyping and production of complex parts.

Problems Solved: This method streamlines the development process of AM materials, allowing for faster production of parts with intricate designs.

Benefits:

  • Accelerated material development process
  • Enhanced design capabilities
  • Increased efficiency in additive manufacturing

Commercial Applications: The technology can be utilized by manufacturers looking to improve their additive manufacturing processes, leading to cost savings and faster time-to-market for products.

Questions about Additive Manufacturing Materials Development: 1. How does this method compare to traditional material development processes? 2. What are the potential limitations of using single-line and multiple-line trace patterns in material development for additive manufacturing?

Frequently Updated Research: Stay updated on the latest advancements in additive manufacturing materials development to ensure the most efficient and effective processes are being utilized.


Original Abstract Submitted

a method for rapidly developing additive manufacturing (am) materials includes disposing a powder layer into a powder pocket of a build device for an am machine, executing single-line trace patterns with the am machine on a first portion of the powder layer to form corresponding single-line traces on the build device, and executing sets of multiple-line trace patterns with the am machine on a second portion of the powder layer to form corresponding sets of multiple-line traces on the build device.