ProgramMaster Logo
Conference Tools for 2024 TMS Annual Meeting & Exhibition
Login
Register as a New User
Help
Submit An Abstract
Propose A Symposium
Presenter/Author Tools
Organizer/Editor Tools
About this Abstract
Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Cold Spray Additive Manufacturing: Part Quality and Performance
Presentation Title CSAM of Refractory Materials
Author(s) Michael Kracum
On-Site Speaker (Planned) Michael Kracum
Abstract Scope Cold Spray Additive Manufacturing (CSAM) presents a new fabrication pathway for difficult to form refractory material structures. Refractory metals are often challenging to process at large scales due to the required high processing temperatures and oxidation concerns. Much of the early research on CSAM approaches have focused on materials like copper, aluminum, and stainless steel. High material densities and critical velocities associated with refractories present unique challenges for CSAM, particularly for thin-walled geometries. This work will present preliminary characterization and mechanical properties of cold sprayed tantalum deposits as an exemplar material. This work will also investigate off-normal spray deposition on CSAM deposits to identify relationships between spray angle and density. Sandia National Laboratories is a multimission laboratory managed and operated by National Technology & Engineering Solutions of Sandia, LLC, a wholly owned subsidiary of Honeywell International Inc.
Proceedings Inclusion? Planned:
Keywords High-Temperature Materials, Additive Manufacturing,

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Hybrid Molecular Dynamics/Finite Element Approach to Studying the Bonding Process of Cold Sprayed Metal Particles
A Through-Process Experimental Approach to Optimization of Aluminum Feedstock Powder for Cold Spray Additive Manufacturing
Cold Spray Additive Manufacturing of High Purity Tantalum and Niobium Rare Metals; Fabrication, Microstructure, Room and High Temperature Mechanical Properties
Cold Spray Path Planning for Superalloy Structures with High As-deposited Strength and Consolidation
CSAM of Refractory Materials
Effect of Friction Stir Processing on the Microstructure and Mechanical Performance of 316L SS Cold Sprayed Deposits
Effect of Post-deposition Heat Treatment on Mechanical, Microstructural, and Corrosion Properties of NASA HR-1 Cold Spray Deposits
Engineering Boron Nitride Reinforcement for Strengthening Cold Sprayed Aluminum Deposits
Enhancing Strength and Ductility of CS Deposits through Ad-mixed Feedstocks
Evolution of Residual Stress in Cold Sprayed SS304L Measured via Neutron Diffraction
F-50: Corrosion Behavior Characterization for Cold Sprayed Scalmalloy Coatings
F-62: Developing of Chromium-carbide/ Nickel-chromium Coatings for Railroad Repairs by Cold Spray Technology
Investigating the Bonding Types and Impact Modes in Cold Spray Deposition of AlCoCrFeNi on Steel Substrate
Investigating the Microstructure and Mechanical Behavior of the Particle-particle and Substrate-particle Interfaces in Cold Sprayed Coatings
Localized Surface Modification of HPDC Magnesium Alloys Using Cold Spray to Enhance Surface Properties
Many-particle Impact Bonding with Quantitative Single-particle Experiments
Novel Application of SST Cold Spray Technology in High Volume Production of Polyamide (PA) Thermal Barrier Profiles for Industrial and Residential Window and Facade Manufacturing
Powder Engineering for High Performance Cold Spray Materials
Residual-stress-based Crystal Plasticity Model for Simulation of Cold Spray Al6061
Role of Carrier Gas on Microstructure and Anisotropic Properties of Cold Sprayed Scalmalloy
Static and Dynamic Performance of F357 Cold Spray Materials in Relevant Repair Geometries
Tailoring Devitrification in High Strength Aluminum High Entropy and Al 6061 Composite Cold Sprayed Deposits
The Effects of In-situ and Post-process Heat Treatment on the Properties of Cold Spray Deposits Using N2-Gas
The Erosion Regime and the Associated Microstructural Evolution: A Site-specific Study of a High-velocity Copper Microparticle Impacting Copper
Towards Quantitative Understanding of the Particle-substrate Bonding during Supersonic Microparticle Impacts
Using Thermal Pre- and Post-treatment to Affect the Mechanical Behavior of Cold Sprayed AA7050

Questions about ProgramMaster? Contact programming@programmaster.org