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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Determination of thermochemical properties of the molten PuCl3-NaCl eutectic mixture by high-temperature drop calorimetry
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Strip-based Scintillation Detector for Dual-readout High-granularity Calorimetry
New calorimeter technology is being developed for future collider experiments. We are developing a calorimeter that integrates two technologies, a high-granularity calorimeter and a dual-readout calorimeter, and has high time resolution at a picosecond level. The proposed calorimeter is a sampling calorimeter based on scintillation and Cherenkov detectors with high-granularity readout. The Cherenkov detector has a picosecond level time resolution. For the high-granularity scintillation detector, scintillator strips of 300mm × 30mm ×3mm-thick are aligned horizontally and vertically to realize an effective 30mm-square-cell segmentation. Prototype strips with different designs and scintillator materials were tested to compare the performance.
Angular dependent measurement of electron-ion recombination in liquid argon for ionization calorimetry in the ICARUS liquid argon time projection chamber
This paper reports on a measurement of electron-ion recombination in liquid argon in the ICARUS liquid argon time projection chamber (LArTPC). A clear dependence of recombination on the angle of the ionizing particle track relative to the drift electric field is observed. An ellipsoid modified box (EMB) model of recombination describes the data across all measured angles. These measurements are used for the calorimetric energy scale calibration of the ICARUS TPC, which is also presented. The impact of the EMB model is studied on calorimetric particle identification, as well as muon and proton energy measurements. Accounting for the angular dependence in EMB recombination improves the accuracy and precision of these measurements.
Differential Scanning Calorimetry (DSC) of frontal ring-opening metathesis polymerization (FROMP) of DCPD/ENB/DHF with phosphine inhibitors
This dataset contains DSC cure kinetic and post-cure results for frontal polymerization experiments of dicyclopentadiene (DCPD)/5-ethylidene-2-norbornene (ENB) resins with 2,3-dihydrofuran comonomers with different phosphine inhibitors.
Physical characterization of High Entropy Alloys (HEAs) through Differential Scanning Calorimetry (DSC)
Results obtained during the CCI internship during summer 2024, the project involved using DSC on the newly developed HEAs.
Investigating the Potential and Limitations of Fast Scanning Calorimetry to Simulate the Laser Power Bed Fusion Coalescence Process
Laser-Based Powder Bed Fusion (PBF-LB) • PBF-LB is part of one of seven additive manufacturing techniques • Layer wise printing that selectively coalesces discrete powder particles into a solid object o Advantages: Low anisotropy, use of engineering grade materials o Weaknesses: lack of method standardization, challenges in controlled post print quality
Identifying Variability in Differential Scanning Calorimetry for Materials-Level Battery Safety
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ACHILLES-GENIE Interface for Neutrino Simulations, ADRIANO2 Tile Prototype for High-Granularity Dual-Readout Calorimetry
ICARUS (Imaging Cosmic And Rare Underground Signals) is a liquid argon time projection chamber (LArTPC) detector that pursues the sterile neutrino, which relies on accurate simulations of neutrino-argon interactions. REDTOP (Rare Eta Decays To Observe new Physics) is a proposed low-energy, high-intensity meson factory designed to explore rare $\eta$/$\eta'$ meson decays and probe physics beyond the Standard Model. As a next-generation experiment, this requires both accurate simulations and innovative detector technologies. This project contributes to both ICARUS, from a simulation perspective, and REDTOP, from both a simulation and detection perspective, through the event generation of lepton-nucleon interactions and the physical enhancement of the calorimeter technology within the REDTOP detector. We developed an interface between ACHILLES (A CHIcago Land Lepton Event Simulator), a theory-driven lepton-level event generator, and GENIE, a robust event generator framework used for neutrino physics. By incorporating the precise theoretical cross-section calculations of ACHILLES into the experimental realism of GENIE, the interface allows for improved accuracy of neutrino-nucleon simulations, which can be adapted for the proton beam specifications of the REDTOP meson factory as well as for the ICARUS experiment. In parallel, we developed an improved prototype for the ADRIANO2 (A Dual Readout Integrally Active Non-segmented Option) dual-readout calorimeter tiles for the REDTOP detector. To improve the efficiency of the lead-glass tiles trapping Cherenkov light for energy reconstruction and particle identification, we optimized the application of a highly reflective coating. Through viscosity and thickness control, masking, and a custom spray technique, we refined the coating process to reduce surface defects and improve light yield. Together, these efforts strengthen the ICARUS neutrino program and REDTOP's capability of detecting rare decay events.
Using Calorimetry Techniques to Investigate the Effects of Dwell Time and Thermal Aging on Polymer Crystallization During Laser-Based Powder Bed Fusion
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Ruminating on Baselines in Heat Flow Calorimetry
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Characterizing Physical and Chemical Polymer Properties with Heat Flow Calorimetry
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Leveraging Controlled Atmosphere Methods with Heat Flow Calorimetry for Explosive Compatibility
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Leveraging Controlled Atmosphere Methods with Heat Flow Calorimetry for Explosive Compatibility
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Leveraging Controlled Atmosphere Methods with Heat Flow Calorimetry for Explosive Compatibility
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<study of isothermal and adiabatic calorimetry of alkaline cells< semiannual status report, 1 oct. 1964 - 1 apr. 1965
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Research into fundamental phenomena associated with spacecraft electrochemical devices--calorimetry of nickel-cadmium cell Progress report, Jan. 1 - Sep. 30, 1966
Isothermal flow calorimeter developed to measure thermal characteristics of batteries undergoing orbital cycling