18420526. METHOD FOR MANUFACTURING MATERIAL LAYER, METHOD FOR MANUFACTURING THREE-DIMENSIONAL OBJECT, MATERIAL-LAYER-FORMING APPARATUS, AND ADDITIVE MANUFACTURING SYSTEM simplified abstract (CANON KABUSHIKI KAISHA)

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METHOD FOR MANUFACTURING MATERIAL LAYER, METHOD FOR MANUFACTURING THREE-DIMENSIONAL OBJECT, MATERIAL-LAYER-FORMING APPARATUS, AND ADDITIVE MANUFACTURING SYSTEM

Organization Name

CANON KABUSHIKI KAISHA

Inventor(s)

Kenta Kubo of Kamakura-shi (JP)

Hiroshi Taniuchi of Yokohama-shi (JP)

METHOD FOR MANUFACTURING MATERIAL LAYER, METHOD FOR MANUFACTURING THREE-DIMENSIONAL OBJECT, MATERIAL-LAYER-FORMING APPARATUS, AND ADDITIVE MANUFACTURING SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18420526 titled 'METHOD FOR MANUFACTURING MATERIAL LAYER, METHOD FOR MANUFACTURING THREE-DIMENSIONAL OBJECT, MATERIAL-LAYER-FORMING APPARATUS, AND ADDITIVE MANUFACTURING SYSTEM

Simplified Explanation

The abstract describes a method for manufacturing a material layer by arranging first particles in a pattern on a base material and then arranging second particles in regions where the first particles are not present by rubbing bearing materials against the base material.

  • First particles (P) are arranged in a pattern on a base material.
  • Second particles are arranged in regions where the first particles are not present by rubbing bearing materials against the base material.

Potential Applications

The technology could be applied in the manufacturing of advanced materials for various industries such as electronics, optics, and coatings.

Problems Solved

This method allows for precise control over the arrangement of particles on a material layer, which can lead to improved material properties and performance.

Benefits

- Enhanced material properties - Increased performance - Controlled particle arrangement

Potential Commercial Applications

"Advanced Material Layer Manufacturing Technology for Enhanced Performance"

Possible Prior Art

There may be prior art related to methods of particle arrangement on material layers using different techniques or processes.

Unanswered Questions

How does this method compare to traditional methods of material layer manufacturing?

This article does not provide a direct comparison to traditional methods, leaving room for further exploration and analysis.

What are the specific industries that could benefit the most from this technology?

While the abstract mentions various industries, a more detailed breakdown of potential applications in specific sectors would be helpful for understanding the market potential of this innovation.


Original Abstract Submitted

A method for manufacturing a material layer includes a first step S of arranging first particles P in a pattern on a base material and a second step S of arranging second particles in regions in which the first particles P are not arranged on the base material . The second step S includes a step of rubbing bearing materials S that carry the second particles P against the base material on which the first particles P are arranged.