18353511. PHOTOCURABLE RESIN COMPOSITION AND METHOD FOR PRODUCING THREE-DIMENSIONAL OBJECT simplified abstract (CANON KABUSHIKI KAISHA)

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PHOTOCURABLE RESIN COMPOSITION AND METHOD FOR PRODUCING THREE-DIMENSIONAL OBJECT

Organization Name

CANON KABUSHIKI KAISHA

Inventor(s)

KAZUHO Saeki of Kanagawa (JP)

PHOTOCURABLE RESIN COMPOSITION AND METHOD FOR PRODUCING THREE-DIMENSIONAL OBJECT - A simplified explanation of the abstract

This abstract first appeared for US patent application 18353511 titled 'PHOTOCURABLE RESIN COMPOSITION AND METHOD FOR PRODUCING THREE-DIMENSIONAL OBJECT

Simplified Explanation

The abstract describes a photocurable resin composition that includes a radically polymerizable component (A), a metallic soap (B), and a curing agent (C). Component (A) consists of a polyfunctional radically polymerizable compound (A-1) and a monofunctional radically polymerizable compound (A-2). The difference in Hansen Solubility Parameter (HSP) value between component (A) and component (B) is between 0 MPa and 8.0 MPa.

  • The patent application is for a photocurable resin composition that can be used in various applications.
  • The composition includes a radically polymerizable component (A), a metallic soap (B), and a curing agent (C).
  • Component (A) consists of a polyfunctional radically polymerizable compound (A-1) and a monofunctional radically polymerizable compound (A-2).
  • The difference in HSP value between component (A) and component (B) is between 0 MPa and 8.0 MPa.

Potential applications of this technology:

  • 3D printing: The photocurable resin composition can be used in 3D printing processes to create complex and intricate structures.
  • Coatings: The composition can be used as a coating material for various surfaces, providing protection and enhancing their appearance.
  • Adhesives: The resin composition can be used as an adhesive, bonding different materials together.

Problems solved by this technology:

  • Improved compatibility: The difference in HSP value between component (A) and component (B) ensures better compatibility between the components, leading to improved performance of the resin composition.
  • Enhanced curing: The presence of the curing agent (C) allows the resin composition to cure efficiently, resulting in a strong and durable final product.
  • Versatility: The combination of polyfunctional and monofunctional radically polymerizable compounds in component (A) allows for a wide range of applications and flexibility in the resin composition.

Benefits of this technology:

  • Faster curing: The resin composition cures quickly under appropriate conditions, reducing production time and increasing efficiency.
  • Strong and durable: The cured resin exhibits excellent mechanical properties, providing strength and durability to the final product.
  • Compatibility: The resin composition has improved compatibility between its components, leading to better performance and stability.
  • Versatile applications: The composition can be used in various industries, including 3D printing, coatings, and adhesives, offering versatility and adaptability.


Original Abstract Submitted

A photocurable resin composition containing a radically polymerizable component (A), a metallic soap (B), and a curing agent (C), wherein the component (A) contains a polyfunctional radically polymerizable compound (A-1) and a monofunctional radically polymerizable compound (A-2), wherein a difference in HSP value between the component (A) and the component (B) is 0 MPaor more and 8.0 MPaor less.