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Dive into the research topics where V. N. Krishnamurthy is active.

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Featured researches published by V. N. Krishnamurthy.


Journal of Applied Polymer Science | 1997

Kinetics of copolyurethane network formation

V. Sekkar; V. N. Krishnamurthy; S.R. Jain

Cure kinetics for the formation of copolyurethane networks of various compositions based on hydroxy-terminated polybutadiene(HTPB), poly(12-hydroxy stearic acid-co-TMP) ester polyol(PEP), and different isocyanates has been studied through viscosity build up during the cure reaction. The viscosity (N)-time (t) plots conform to the equation N = ae(bt), where a and b are empirical constants, dependent on the composition and the nature of the polyols and the isocyanates. The rate constants (b) for viscosity build up, evaluated from the slopes of dN/dt versus N plots at different temperatures, were found to vary significantly from 0.0073 to 0.25 min(-1); and the activation energies for gelation were found to be in the range 20 to 40 kJ mol(-1). The results have been interpreted in terms of the dependence of the rate constants on structural characteristics of the prepolymers


Journal of Applied Polymer Science | 1996

Polyurethane–poly(methyl methacrylate) interpenetrating polymer networks. I. Synthesis, characterization, and preliminary blood compatibility studies

Prabha D. Nair; V. N. Krishnamurthy

Simultaneous polyurethane-poly(methyl methacrylate) (PU-PMMA) interpenetrating polymer networks (IPNs) were synthesized with the PMMA polymerization initiated at room temperature. Transparent IPNs with better miscibility and synergism of mechanical properties were obtained. Dynamic mechanical analysis data indicated that up to 30% PMMA can be incorporated into PU networks without substantial phase separation. The PU-PMMA 90/10 IPNs elicit less than 2% hemolysis, suggesting that these materials could be used as blood contacting materials.


Journal of Applied Polymer Science | 1993

Mechanical and swelling properties of HTPB-based copolyurethane networks

S. R. Jain; V. Sekkar; V. N. Krishnamurthy


Journal of Applied Polymer Science | 1996

Modeling of polyurethane networks based on hydroxy-terminated polybutadiene and poly(12-hydroxy stearic acid–co–TMP) ester polyol: Correlation of network parameters with mechanical properties

V. Sekkar; M. Rama Rao; V. N. Krishnamurthy; S. R. Jain


Journal of Applied Polymer Science | 1992

Rheology of HTPB propellant. I. Effect of solid loading, oxidizer particle size, and aluminum content

Rm. Muthiah; V. N. Krishnamurthy; B. R. Gupta


Journal of Applied Polymer Science | 1979

Thermogravimetric and mass-spectrometric study of the thermal decomposition of PBCT resins

T. John Thomas; V. N. Krishnamurthy; Us Nandi


Propellants, Explosives, Pyrotechnics | 1998

Realization of an Eco-Friendly Solid Propellant Based on HTPB-HMX-AP System for Launch Vehicle Applications

Rm. Muthiah; T. L. Varghese; S. Somesware Rao; K. N. Ninan; V. N. Krishnamurthy


Defence Science Journal | 1999

Performance Evaluation and Experimental Studies on Metallised Gel Propellants

T. L. Varghese; N. Prabhakaran; K. P. Thanki; S. Subramanian; S. Somesware Rao; K. N. Ninan; V. N. Krishnamurthy


Propellants, Explosives, Pyrotechnics | 1996

Rheology of HTPB Propellant: Development of generalized correlation and evaluation of pot life

Rm. Muthiah; V. N. Krishnamurthy; B. R. Gupta


Propellants, Explosives, Pyrotechnics | 1997

Mechanical and Swelling Properties of Copolyurethanes based on Hydroxy-Terminated Polybutadiene and its hydrogenated analog

V. Sekkar; V. N. Krishnamurthy; S.R. Jain

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V. Sekkar

Vikram Sarabhai Space Centre

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K. N. Ninan

Vikram Sarabhai Space Centre

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Rm. Muthiah

Vikram Sarabhai Space Centre

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S. R. Jain

Indian Institute of Science

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S. Somesware Rao

Vikram Sarabhai Space Centre

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T. L. Varghese

Vikram Sarabhai Space Centre

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B. R. Gupta

Indian Institute of Technology Kharagpur

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S.R. Jain

Indian Institute of Science

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K. P. Thanki

Vikram Sarabhai Space Centre

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M. Rama Rao

Vikram Sarabhai Space Centre

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