What Can Defects Tell Us About Magnetic Materials? TM-CNN’s Defect Whisperer Approach Post date April 5, 2025 Post author By Labyrinthine Post categories In ai-in-science, defect-detection, machine-learning, magnetic-materials, material-characterization, object-detection, scientific-imaging, tmcnn
The Role of Curl Terms in Micromorphic Models Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
How Symmetric and Skew-Symmetric Tensors Interact Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, voigt-notation, wave-propagation
Semi-Analytical Algorithm for Metamaterial Parameter Fitting Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
The Science Behind Stronger, Smarter Materials Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
A New Method for Predicting How Waves Move Through Materials Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
Fine-Tuning Acoustic and Optical Waves in Metamaterials Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
How Unit Cell Size Affects Dispersion in Metamaterials Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
Modeling Finite-Size Metamaterials with Relaxed Micromorphic Theory Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, inertia-augmented-model, labyrinthine-metamaterials, negative-refraction, relaxed-micromorphic-model, wave-propagation
New Material Design Approach Could Change How Sound Travels Through Space Post date March 23, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, dispersion-curves, finite-element-modeling, hackernoon-top-story, inertia-augmented-model, negative-refraction, relaxed-micromorphic-model, wave-propagation
How 3D-Printed Metamaterials Could Revolutionize Noise Reduction Post date February 10, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, subwavelength-sound-absorbers, tunable-frequency-absorption
Does Melamine Foam Make Soundproof Panels More Effective? Post date February 9, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-metamaterials, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, tunable-frequency-absorption
How This Acoustic Panel Performed in a Real-World Sound Test Post date February 9, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-metamaterials, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, tunable-frequency-absorption
The Science of Soundproofing: A Look at 3D-Printed Acoustic Panels Post date February 9, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-metamaterials, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, tunable-frequency-absorption
Can 3D Printing Improve Soundproofing? This Study Says Yes Post date February 8, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-metamaterials, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, tunable-frequency-absorption
Shhh! The Future of Noise Control Is Twisting Through 3D-Printed Labyrinths Post date February 8, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, hackernoon-top-story, labyrinthine-metamaterials, labyrinthine-unit-cells, space-coiling-acoustic-designs, tunable-frequency-absorption
How 3D-Printed Sound Panels Can Absorb Noise More Efficiently Post date February 8, 2025 Post author By Labyrinthine Post categories In acoustic-metamaterials, acoustic-technology, broadband-noise-absorption, labyrinthine-metamaterials, labyrinthine-unit-cells, rainbow-effect-in-acoustics, space-coiling-acoustic-designs, tunable-frequency-absorption
Efficient Detection of Defects in Magnetic Labyrinthine Patterns: Conclusion and References Post date September 18, 2024 Post author By Labyrinthine Post categories In convolutional-neural-networks, deep-learning, defect-detection, magnetic-labyrinthine-patterns, material-science, object-detection, template-matching, tm-cnn
Efficient Detection of Defects in Magnetic Labyrinthine Patterns: Experiments and Results Post date September 18, 2024 Post author By Labyrinthine Post categories In convolutional-neural-networks, deep-learning, defect-detection, magnetic-labyrinthine-patterns, material-science, object-detection, template-matching, tm-cnn
Efficient Detection of Defects in Magnetic Labyrinthine Patterns: Methodology Post date September 18, 2024 Post author By Labyrinthine Post categories In convolutional-neural-networks, deep-learning, defect-detection, magnetic-labyrinthine-patterns, material-science, object-detection, template-matching, tm-cnn
Efficient Detection of Defects in Magnetic Labyrinthine Patterns: Related Works Post date September 18, 2024 Post author By Labyrinthine Post categories In convolutional-neural-networks, deep-learning, defect-detection, magnetic-labyrinthine-patterns, material-science, object-detection, template-matching, tm-cnn
Efficient Detection of Defects in Magnetic Labyrinthine Patterns: Abstract and Introduction Post date September 18, 2024 Post author By Labyrinthine Post categories In convolutional-neural-networks, deep-learning, defect-detection, magnetic-labyrinthine-patterns, material-science, object-detection, template-matching, tm-cnn
Machine Learning Enhanced Characterization of Labyrinthine Structures in Bi-doped Films Post date June 26, 2024 Post author By Labyrinthine Post categories In bidoped-films, labyrinthine-patterns, machine-learning, magnetic-domains, magnetic-materials, morphological-transitions, pattern-formation, topological-defects