Raised Foam Silicone Resin Composition for 3D Velvet Textile Printing

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Solution Overview

Problem

Conventional printing methods for textiles result in flat visual effects and hard tactile sensations, limiting the aesthetics of fabrics and failing to create diverse three-dimensional patterns.

Innovation Solution

A raised foam silicone resin composition comprising silicone resin, a foaming agent, and carbomer is used to create a printing material that imparts a three-dimensional velvet effect, shimmering effect, and soft tactile sensation through heat-foamed patterns.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Shape

If conventional printing methods are used, then the printing process is simple, but the visual effect is flat and tactile sensation is hard

Engineering Contradiction:
Improvethree-dimensional patternVSAvoidprinting process complexity
Core Design Contradiction:
ShapeVSDevice complexity

Solution Approach 1:

The patent changes the physical and chemical parameters of the printing material by using silicone resin with specific viscosity and composition, allowing it to form three-dimensional raised patterns through heat treatment without complex mechanical devices. The resin's specific properties enable it to create velvet-like textures and shimmering effects through controlled foaming and rising during heat treatment.

Inventive Principle:
Principle #35Parameter changes

Solution Approach 2:

The patent employs composite materials by combining silicone resin with foaming agents and other additives to create a printing material that can generate three-dimensional structures. This composite formulation allows the material to self-form raised patterns with velvet effects and shimmering properties through heat treatment, eliminating the need for complex mechanical printing devices.

Inventive Principle:
Principle #40Composite materials

2Quantity of substance

If more pigment is used to achieve better color expression, then color expression improves, but production cost increases

Engineering Contradiction:
Improveamount of pigmentVSAvoidproduction cost
Core Design Contradiction:
Quantity of substanceVSEase of manufacture

Solution Approach 1:

The patent changes the optical parameters of the printing material by using silicone resin with specific refractive index and transparency properties. These parameter changes enable excellent color expression and shimmering effects even with minimal pigment content, as the resin itself contributes to the optical properties through its viscosity and heat treatment characteristics.

Inventive Principle:
Principle #35Parameter changes

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

The composition increases printing height, reduces production costs, and achieves excellent color expression with a small amount of pigment, while providing a soft tactile sensation and flexibility.

Implementation Method 1

when the raised foam silicone resin is heat-treated at a specific temperature, it is foamed and raised in the form of soap bubbles

Methodology Applied
Scientific EffectPhase change: Phase Change

Data Source

PatentUS20250354023A1Raised foam silicone resin composition for printing, raised foam silicone resin for printing, and printing agent containing the same
Publication Date: 2025.11.20 HANYANG PETROCHEMICAL CO LTD
  • US20250354023A1 patent drawing
  • US20250354023A1 patent drawing
  • US20250354023A1 patent drawing

AI summary

The present invention relates to a pile-type raised foam silicone resin composition, a pile-type raised foam silicone resin comprising the same, and a printing agent using the same. The present invention also relates to a printing material that can impart a three-dimensional velvet effect, a shimmering effect, an improved soft tactile sensation, and flexibility to a printed product, and a novel printing agent and a printed product using the printing material.