We aim to create more convenient and user-friendly materials by integrating new elements such as information, power supply, and heat exchange into textiles that are essential for clothing, food, and shelter.
Technology for Combining Textiles and Different Materials 'EUKAs-MX' This is a technology that integrates your materials into textiles. Textiles are used in various industries. This fusion technology will expand the application range of your materials and is expected to lead to the development of new uses. By combining high-strength fibers, flame-retardant fibers, and natural fibers, we anticipate applications in artificial muscles, heat exchange and recovery, and the compact lightweight design of robotic materials, while leveraging the softness and warmth that textiles provide. The following applications are expected: - Artificial muscles - Materials for heat exchange applications - Compact lightweight design and warmth enhancement for robots For more details, please contact us.
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basic information
Technology for Combining Fabrics and Different Materials 'EUKAs-MX' EUKAs-MX is a patented technology that integrates and weaves different materials into the fabric. It can create textiles equipped with cables, electrodes, and tubes. We can propose methods for integrating information, electronics, and fluids into fibers. The integration of electronic devices such as sensors and actuators with textiles is anticipated. In the future, we will develop fabrics that connect people and devices, particularly in the wearable field. ● For more details, please contact us.
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Detailed information
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Tube, high-strength shape-retaining resin fabric An enlarged photo of the fabric woven with tubes. It can be seen that tubes and resin (white) are woven into the fabric.
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Tube, high-strength shape-retaining resin fabric By using high-strength synthetic fibers, applications as artificial muscles are anticipated. Additionally, circulating liquid through the tube is expected to allow its use as a material for heat exchange applications.
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LAN Cable Fabric (Part One) A fabric woven with LAN cables (Part One). It is expected to not only contribute to the compactness and lightweight of materials for robots, but also to have applications in residential equipment.
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LAN Cable Fabric (Part 2) A fabric woven with LAN cables (Part 2). It is expected to not only contribute to the compactness and lightweight of materials for robots, but also to have applications in residential equipment.
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Shape-retaining resin fabric A fabric woven with high-strength, shape-retaining resin. It is expected to be applicable not only in welfare and medical uses but also in design applications.
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We have developed a technology (patent pending) for combining and weaving different materials into fabric. This technology allows us to create textiles equipped with cables, electrodes, and tubes. Our goal is to incorporate new elements such as information, power supply, and heat exchange into textiles, which are essential for clothing, food, and shelter, in order to create more convenient and user-friendly materials.