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Innovative Lightweight and High-Strength Alloys

Multiscale Integrated Processing, Experimental, and Modeling Techniques

Specificaties
Paperback, blz. | Engels
Elsevier Science | 2024
ISBN13: 9780323995399
Rubricering
Elsevier Science e druk, 2024 9780323995399
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Samenvatting

Innovative Lightweight and High-Strength Alloys: Multiscale Integrated Processing, Experimental, and Modeling Techniques provides multiscale processing, experimental, and modeling techniques, overviews and perspectives, which highlight current roadblocks to the optimal design of new alloys, and provides viable solutions. Critical microstructural, chemical and mechanical aspects are considered with techniques for significantly improving mechanical properties. Case studies, applications and hands-on techniques that can be put into immediate practice are included throughout. Sections cover processing techniques for various alloys, including aluminum, titanium, martensitic, austenitic, and others. Additive manufacturing of alloys is also covered, along with updates on mechanical quasi-static, chemically-based, and dynamic experimentatal approaches.

The book concludes with a modeling section that features several chapters covering multiscale, microstructural, combinatorial computational, and machine learning modeling techniques. It is a key resource for academic researchers, materials researchers, mechanical engineering researchers, and professional engineers in mechanics, materials science, and chemistry.

Specificaties

ISBN13:9780323995399
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Process-structure-property models for metal additive manufacturing using AI/ML approaches<br>2. An overview on recent processing, metallurgy, and experiments related to microstructure engineering in additive manufacturing<br>3. Dislocations in processing and material behavior<br>4. Machine learning-enabled parametrically upscaled constitutive models for bridging length scales in Ti and Ni alloys<br>5. Data-driven approaches for computational modelling for plasticity, fatigue, and fracture behavior of alloys<br>6. Twin transmission and variant continuity in Mg bicrystals<br>7. Thin-walled LPBF-manufactured Inconel 718 honeycomb structures: Multiscale characterization<br>8. Sample size dependence of mechanical properties in metallic materials<br>9. Intelligent processing and development of high-performance automotive aluminum alloys: Application of physics-based and data-driven modeling<br>10. Comparing the effect of different parameters on the fatigue behavior of aerospace aluminum alloys<br>11. Multiscale model-based design of high-strength alloys with reduced hydrogen embrittlement susceptibility<br>12. Microstructural predictions of how processing and additive manufacturing can affect the mechanical behavior of Inconel alloys<br>13. Breaking boundaries: Deformation processing techniques for the next generation of lightweight and high-strength materials
€ 253,00
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        Innovative Lightweight and High-Strength Alloys