Proceedings of 2025 16th Internation...
International Conference on Materials and Manufacturing Technologies (2025 :)

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  • Proceedings of 2025 16th International Conference on Materials and Manufacturing Technologies
  • Record Type: Electronic resources : Monograph/item
    Title/Author: Proceedings of 2025 16th International Conference on Materials and Manufacturing Technologies/ edited by Laichang Zhang.
    other author: Zhang, Laichang.
    corporate name: International Conference on Materials and Manufacturing Technologies
    Published: Singapore :Springer Nature Singapore : : 2025.,
    Description: x, 160 p. :ill. (some col.), digital ;24 cm.
    [NT 15003449]: Chapter 1: Laser-based Processing for High Precision Fabrication of Printed Flexible Hybrid Electronics Circuits -- Chapter 2: Effect of ultrasonic vibration field with different amplitudes on microstructure and properties of Fe- V-Cr Fe-based powder by laser cladding -- Chapter 3:Numerical Simulation of Metal Particle deposition in 3D printing by Low-Pressure Cold Spraying -- Chapter 4:Vibration analysis of non-uniform beams using numerical techniques -- Chapter 5: Monte Carlo Simulations of α-α' Phase Transformation in Fe-Cr Alloy -- Chapter 6: Crystal Structures and Thermoelectric Properties of X2CsBi (X = Li, K, Na, Rb) Semiconductor Alloys -- Chapter 7: Phase state and magnetic properties of Co-based quaternary Heusler alloys containing 4d or 5d transition element -- Chapter 8: Impact of Mn Arrangement on the Ground-State Properties of Ni2Mn1.5Sn0.5 Heusler alloy -- Chapter 9: Joinery Methods for Multi-Material Combinations in Automotive Applications: Tensile and Fatigue Strength -- Chapter 10: Fatigue Crack Propagation Behavior in Different Orientation of WAAM Fabricated Ti-6Al-4V Components -- Chapter 11: Modified Cellulose Nanocrystals and Their Application in Pickering Emulsion -- Chapter 12: Influence of Surfactant on the Properties of Pyrite Synthesized via Hydrothermal Method for Photocatalytic Degradation Applications -- Chapter 13: Square-enclosed Multiple Split-Ring Resonator Metamaterial Absorber Designed for X, Ku, and K Band Applications.
    Contained By: Springer Nature eBook
    Subject: Materials - Congresses. -
    Online resource: https://doi.org/10.1007/978-981-95-0907-2
    ISBN: 9789819509072
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