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Meeting MS&T24: Materials Science & Technology
Symposium Preceramic Polymers; Synthesis, Processing, Modeling, and Derived Ceramics
Presentation Title Preceramic Polymer Grafted Nanoparticle Systems
Author(s) Gary Germanton, Kara Martin, Nicholas Posey, James Ponder, Md Alamgir Hossain, Pitchaimari Gnanasekar, Lutz Wiegart, Matthew Dickerson, Subramanian Ramakrishnan
On-Site Speaker (Planned) Gary Germanton
Abstract Scope Preceramic polymer grafted nanoparticles (PCPGNPs) offer potential advantages over other preceramic materials, including increased ceramic yield, controlled particle arrangement, and reduced volume shrinkage and mass loss. This study investigates the effects of low-temperature thermal treatments on the material transformations of PCPGNPs with a silica nanoparticle core and poly(1,1-dimethylpropylsilane) corona suspended in SMP-877. The addition of PCPGNPs to SMP-877 increased the elastic modulus and viscosity, with percolation occurring between 50-60 wt% PCPGNP. Above this concentration, the particles formed a space-spanning network. Rheological and X-ray photon correlation spectroscopy (XPCS) measurements during thermal treatments demonstrated the effect of crosslinking on the resulting moduli and dynamics. When the neat PCPGNP grafts overlapped, the moduli increased, and a jammed state persisted even when cooled to room temperature, likely contributing to increased char yield. Understanding the thermal treatment of these hybrid materials is crucial for advancing their applications in turbine engines, advanced friction, and heat-shielding components.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Ceramic Yields of Preceramic Polymer Grafted Nanoparticles using Conventional and Photothermal Heating
D-17: Structure and Properties of Preceramic Polymer Grafted Nanoparticle Monolayers
Developing Ceramic Materials via Preceramic Polymer Chemistry and an Enhanced Understanding of Structure-Property Relationships
Development of Processable Polymer Derived Ultra-High Temperature Ceramics and Composites
Formulation of Preceramic Polymers for Photocuring and 3D Printing of Polymer-Derived Ceramic Lattices
GNPs, NIMs, and UHTC AFPCs: Progress Toward Higher Volume Yielding Preceramics
Improving Mechanical Properties of Polymer-Derived Dense SiC Ceramics with the Integration of 2D MXene
Insights into MXene-SiOC Composite Formation and Properties via Experimental and DFT Studies
Phase and Microstructure Study of Boron-Doped Allylvinylhydridocarbosilane Derived Bulk SiBC Ceramic
Polymer Derived Ceramics: An Evolutionary Algorithm Driven Classical Molecular Dynamics
Preceramic Polymer Grafted Nanoparticle Systems
Refractory Ceramics Using High Char Polymers
Size Effects in Additively Manufactured Polymer-Derived Ceramic Composites
Thermo-Mechanical Effects during the Conversion of Pre-Ceramic Polymers

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