Engineering Materials for 3D Printing
Engineering Materials for 3D Printing
Synthesis, Functionalization to Applications
Singh, Rupinder; Ranjan, Nishant; Kumar, Ranvijay; Kumar, Vinay
Elsevier - Health Sciences Division
02/2026
258
Mole
Inglês
9780443336256
15 a 20 dias
Descrição não disponível.
Section A: Polymer/ polymer composites-based 3D printable materials
1. In-house fabrication of extrusion-based polymer and composites for 3D printing
2. Sol-gel method for 3D printing of smart polymer materials
3. Pulverization as material processing for 3D printed thermoplastics
4. Meta-structure base 3D printing of polymers for structural applications
Section B: Metals-based 3D printable materials
5. Atomization and solid-state metal reduction for 3D printing
6. Electrolysis and chemical treated metal and alloys for structural engineering applications
7. Meta-structures-based metal 3D printing for non-structural applications
8. Hybridization of metal 3D printing for smart structures
Section C: Applications and case studies
9. Fabrication of smart orthopaedic implants for human and veterinary patients
10. Meta-structures based smart repair solutions for structural defects of heritage buildings
11. A case study on the fabrication of dental implants and tools for humans
12. Some comprehensive studies on compressive properties of metal 3D printed strategic canine tooth
13. Meta-structures inspired mesh based smart solutions for surgical practices of diaphragmatic hernia in bovines
1. In-house fabrication of extrusion-based polymer and composites for 3D printing
2. Sol-gel method for 3D printing of smart polymer materials
3. Pulverization as material processing for 3D printed thermoplastics
4. Meta-structure base 3D printing of polymers for structural applications
Section B: Metals-based 3D printable materials
5. Atomization and solid-state metal reduction for 3D printing
6. Electrolysis and chemical treated metal and alloys for structural engineering applications
7. Meta-structures-based metal 3D printing for non-structural applications
8. Hybridization of metal 3D printing for smart structures
Section C: Applications and case studies
9. Fabrication of smart orthopaedic implants for human and veterinary patients
10. Meta-structures based smart repair solutions for structural defects of heritage buildings
11. A case study on the fabrication of dental implants and tools for humans
12. Some comprehensive studies on compressive properties of metal 3D printed strategic canine tooth
13. Meta-structures inspired mesh based smart solutions for surgical practices of diaphragmatic hernia in bovines
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
3D metal printing; 3D printing; 3D-printed metastructures; 3D/4D printing; Acrylonitrile butadiene styrene; Additive manufacturing; Alloys; Atomization; Biocompatibility; Bovines; Canine; Chemical treatment; Comminuted fracture; Composite material; Compressive properties; Dental implants; Diaphragmatic hernia; Digital twins; Electrolysis; Engineering materials; Extrusion; Graphene; Haritage building; Implant; Mechanical properties; Metal powder; Metal printing; Metal-based smart structures; Metastructure; Metastructures; Morphological properties; Nonstructural applications; PVDF; Piezoelectric; Plastic solid waste; Process capability; Pulverization; Recycling; Reinforcement; Repair solution; Scaffold; Smart materials; Smart polymer; Smart structures; Sol-gel; Structural applications; Structural engineering; Thermoplastic polymer; Thermoplastic polymers; Types of atomization
Section A: Polymer/ polymer composites-based 3D printable materials
1. In-house fabrication of extrusion-based polymer and composites for 3D printing
2. Sol-gel method for 3D printing of smart polymer materials
3. Pulverization as material processing for 3D printed thermoplastics
4. Meta-structure base 3D printing of polymers for structural applications
Section B: Metals-based 3D printable materials
5. Atomization and solid-state metal reduction for 3D printing
6. Electrolysis and chemical treated metal and alloys for structural engineering applications
7. Meta-structures-based metal 3D printing for non-structural applications
8. Hybridization of metal 3D printing for smart structures
Section C: Applications and case studies
9. Fabrication of smart orthopaedic implants for human and veterinary patients
10. Meta-structures based smart repair solutions for structural defects of heritage buildings
11. A case study on the fabrication of dental implants and tools for humans
12. Some comprehensive studies on compressive properties of metal 3D printed strategic canine tooth
13. Meta-structures inspired mesh based smart solutions for surgical practices of diaphragmatic hernia in bovines
1. In-house fabrication of extrusion-based polymer and composites for 3D printing
2. Sol-gel method for 3D printing of smart polymer materials
3. Pulverization as material processing for 3D printed thermoplastics
4. Meta-structure base 3D printing of polymers for structural applications
Section B: Metals-based 3D printable materials
5. Atomization and solid-state metal reduction for 3D printing
6. Electrolysis and chemical treated metal and alloys for structural engineering applications
7. Meta-structures-based metal 3D printing for non-structural applications
8. Hybridization of metal 3D printing for smart structures
Section C: Applications and case studies
9. Fabrication of smart orthopaedic implants for human and veterinary patients
10. Meta-structures based smart repair solutions for structural defects of heritage buildings
11. A case study on the fabrication of dental implants and tools for humans
12. Some comprehensive studies on compressive properties of metal 3D printed strategic canine tooth
13. Meta-structures inspired mesh based smart solutions for surgical practices of diaphragmatic hernia in bovines
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
3D metal printing; 3D printing; 3D-printed metastructures; 3D/4D printing; Acrylonitrile butadiene styrene; Additive manufacturing; Alloys; Atomization; Biocompatibility; Bovines; Canine; Chemical treatment; Comminuted fracture; Composite material; Compressive properties; Dental implants; Diaphragmatic hernia; Digital twins; Electrolysis; Engineering materials; Extrusion; Graphene; Haritage building; Implant; Mechanical properties; Metal powder; Metal printing; Metal-based smart structures; Metastructure; Metastructures; Morphological properties; Nonstructural applications; PVDF; Piezoelectric; Plastic solid waste; Process capability; Pulverization; Recycling; Reinforcement; Repair solution; Scaffold; Smart materials; Smart polymer; Smart structures; Sol-gel; Structural applications; Structural engineering; Thermoplastic polymer; Thermoplastic polymers; Types of atomization