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Dive into the research topics where Haraprasanna Tripathy is active.

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Featured researches published by Haraprasanna Tripathy.


Materials Science and Technology | 2016

Measurement of high temperature phase stability and thermophysical properties of alloy 740

Arun Kumar Rai; Haraprasanna Tripathy; Raj Narayan Hajra; S. Raju; Saroja Saibaba; T. Jayakumar

In the present study, the characterisation of phase stability and measurement of different thermophysical properties of alloy 740 has been carried out. The transformation temperatures including liquidus/solidus and corresponding enthalpy of transformation have been measured for different phase changes up to melting using dynamic calorimetry. Further, the enthalpy increment data have been measured in the temperature range of 473–1473 K to obtain the heat capacity using static calorimetry. The present calorimetric data have been analysed in corroboration with the results obtained using JMatPro and Thermo-Calc simulation. In addition, the temperature dependence of other thermophysical properties such as thermal expansivity, density, thermal diffusivity and thermal conductivity are also measured in the range of 300–1473 K using thermomechanical analyser and laser flash method.


DAE SOLID STATE PHYSICS SYMPOSIUM 2015 | 2016

Modelling the role of nucleation on recrystallization kinetics: A cellular automata approach

Haraprasanna Tripathy; Arun Kumar Rai; Raj Narayan Hajra; S. Raju; Saroja Saibaba

In present study, a two dimensional cellular automata (CA) simulation has been carried out to study the effect of nucleation mode on the kinetics of recrystallization and microstructure evolution in an austenitic stainless steel. Two different nucleation modes i.e. site saturation and continuous nucleation with interface control growth mechanism has been considered in this modified CA algorithm. The observed Avrami exponent for both nucleation modes shows a better agreement with the theoretical predicted values. The site saturated nucleation mode shows a nearly consistent value of Avrami exponent, whereas in the case of continuous nucleation the exponent shows a little variation during transformation. The simulations in the present work can be applied for the optimization of microstructure and properties in austenitic steels.


Journal of Nuclear Materials | 2015

Thermal expansion characteristics of Fe-9Cr-0.12C-0.56Mn-0.24V- 1.38W-0.06Ta (wt.%) reduced activation ferritic-martensitic steel

Raju Subramanian; Haraprasanna Tripathy; Arun Kumar Rai; Raj Narayan Hajra; Saroja Saibaba; T. Jayakumar; Ellappan Rajendra Kumar


Nuclear Engineering and Design | 2013

Thermal stability and thermal property characterisation of Fe–14.4Cr–15.4Ni–2.4Mo–2.36Mn–0.25Ti–1.02Si–0.042C–0.04P–0.005B (mass%) austenitic stainless steel (Alloy D9I)

Haraprasanna Tripathy; S. Raju; Arun Kumar Rai; G. Panneerselvam; T. Jayakumar


Thermochimica Acta | 2015

Phase stability of Fe–15 wt.% Cr alloy: A calorimetry and modeling based approach to elucidating the role of magnetic interactions

Raj Narayan Hajra; Raju Subramanian; Haraprasanna Tripathy; Arun Kumar Rai; Saroja Saibaba


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 2015

Calorimetric Study of Phase Stability and Phase Transformation in U-xZr (x = 2, 5, 10 wt pct) Alloys

Arun Kumar Rai; Raju Subramanian; Raj Narayan Hajra; Haraprasanna Tripathy; Mythili Rengachari; Saroja Saibaba


Journal of Nuclear Materials | 2012

Measurement and modelling of high temperature thermodynamic properties of URh3 alloy

Arun Kumar Rai; Haraprasanna Tripathy; B. Jeya Ganesh; S. Raju


Journal of Nuclear Materials | 2017

Investigation of diffusional interaction between P91 grade ferritic steel and Fe-15 wt.%B alloy and study of kinetics of boride formation at high temperature

Arun Kumar Rai; N. Vijayashanthi; Haraprasanna Tripathy; Raj Narayan Hajra; S. Raju; S. Murugesan; S. Saroja


Steel Research International | 2015

High Temperature Phase Stability and Heat Capacity of Fe‐0.28Mn‐0.55Si‐0.045C (Mass%) Magnetic Alloy: A Calorimetric Study

Haraprasanna Tripathy; Raju Subramanian; Vijayashanthi Nagoor Kani; Raj Narayan Hajra; Arun Kumar Rai; Mythili Rengachari; Saroja Saibaba; T. Jayakumar


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 2014

Thermodynamics of α′(Fe-Rich bcc) + α″(Cr-Rich bcc) → α(bcc) and αpara → αferro Transformations in Fe-20 wt pct Cr Alloy: Drop Calorimetry Study and Elucidation of Magnetic Contribution to Phase Stability

Raj Narayan Hajra; S. Raju; Arun Kumar Rai; Haraprasanna Tripathy; Saroja Saibaba

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Arun Kumar Rai

Indira Gandhi Centre for Atomic Research

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Raj Narayan Hajra

Indira Gandhi Centre for Atomic Research

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Saroja Saibaba

Indira Gandhi Centre for Atomic Research

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S. Raju

Indira Gandhi Centre for Atomic Research

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Raju Subramanian

Indira Gandhi Centre for Atomic Research

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T. Jayakumar

Indira Gandhi Centre for Atomic Research

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Mythili Rengachari

Indira Gandhi Centre for Atomic Research

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M. Vijayalakshmi

Indira Gandhi Centre for Atomic Research

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S. Murugesan

Indira Gandhi Centre for Atomic Research

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