Differential scanning calorimetry (DSC) has been used to study the phase changes in samples of as-received Zr-2.5Nb pressure tube material by continuous heating and cooling. Two different heating rates (5 and 20°C/min) were used to heat the sample up to 1050°C. After a short time hold at 1050°C, all the samples were continuously cooled to 300°C at a rate of 20°C/min. On continuous heating, the DSC signals obtained showed two endothermic transitions. The lowtemperature transition, occurring between about 500 and 650°C, is attributed to a thermal decomposition of metastable niobium-stabilized β-phase. The higher-temperature transition, occurring between 600 and 950°C, is due to phase transformations of hcp α-Zr to bcc β-Zr, as previously conf...
When the concentration of hydrogen exceeds the solubility limit in a metal matrix, metal hydrides ma...
Modeling the thermal behavior of a plant or devices using Phase Change Materials (PCM) requires to k...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
Zr-2.5Nb alloy is used for the pressure tubes in CANDU\uae reactor fuel channels. Three phases (\u3b...
Zr-2\ub75Nb alloy is used for the pressure tubes in CANDU [CANDU\uae (CANada Deuterium Uranium) is a...
The alpha-bety phase transition of a zirconium alloy doped with 1 mol% of niobium (E110 alloy) is in...
In this study, the initial temperature of the (α) to (α + β) phase transformation of β-quenched N36 ...
Differential scanning calorimetry (DSC) was measured on (C_5H_5NH)_2[ZnBr_4], (C_5H_5NH)_2[CdBr_4], ...
The alpha-beta phase transformation behavior of Zr-2.5Nb (in mass%) has been characterized in real t...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
The α-β phase transformation behavior of Zr-2.5Nb has been characterized in real time during an in-s...
Zirconium alloys are routinely used as materials in the nuclear industry due to the low absorption o...
The solid phase transformation behavior of uranium-zirconium (U-Zr) alloys (U-0.1, 2, 5, 10, 20, 30,...
Zr-2.5Nb alloy is used for the pressure tubes in CANDU reactors. Current as-manufactured tubes are p...
The cyclic thermal tests in vacuum of zirconium alloy Zr-2.5Nb in the temperature range 250-350°C is...
When the concentration of hydrogen exceeds the solubility limit in a metal matrix, metal hydrides ma...
Modeling the thermal behavior of a plant or devices using Phase Change Materials (PCM) requires to k...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
Zr-2.5Nb alloy is used for the pressure tubes in CANDU\uae reactor fuel channels. Three phases (\u3b...
Zr-2\ub75Nb alloy is used for the pressure tubes in CANDU [CANDU\uae (CANada Deuterium Uranium) is a...
The alpha-bety phase transition of a zirconium alloy doped with 1 mol% of niobium (E110 alloy) is in...
In this study, the initial temperature of the (α) to (α + β) phase transformation of β-quenched N36 ...
Differential scanning calorimetry (DSC) was measured on (C_5H_5NH)_2[ZnBr_4], (C_5H_5NH)_2[CdBr_4], ...
The alpha-beta phase transformation behavior of Zr-2.5Nb (in mass%) has been characterized in real t...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
The α-β phase transformation behavior of Zr-2.5Nb has been characterized in real time during an in-s...
Zirconium alloys are routinely used as materials in the nuclear industry due to the low absorption o...
The solid phase transformation behavior of uranium-zirconium (U-Zr) alloys (U-0.1, 2, 5, 10, 20, 30,...
Zr-2.5Nb alloy is used for the pressure tubes in CANDU reactors. Current as-manufactured tubes are p...
The cyclic thermal tests in vacuum of zirconium alloy Zr-2.5Nb in the temperature range 250-350°C is...
When the concentration of hydrogen exceeds the solubility limit in a metal matrix, metal hydrides ma...
Modeling the thermal behavior of a plant or devices using Phase Change Materials (PCM) requires to k...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...