T
Tarun Kumar Bera
Researcher at Thapar University
Publications - 58
Citations - 483
Tarun Kumar Bera is an academic researcher from Thapar University. The author has contributed to research in topics: Bond graph & Welding. The author has an hindex of 11, co-authored 58 publications receiving 360 citations. Previous affiliations of Tarun Kumar Bera include Indian Institute of Technology Patna & Indian Institute of Technology Kharagpur.
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Evaluation of antilock braking system with an integrated model of full vehicle system dynamics
TL;DR: An integrated vehicle braking system dynamics and control modeling procedure for a four wheel vehicle and the bond graph model of the integrated vehicle dynamic system is developed in a modular and hierarchical modeling environment is simulated to evaluate the performance of the ABS system under various operating conditions.
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Influence of Current and Shielding Gas in TiO2 Flux Activated TIG Welding on Different Graded Steels
TL;DR: In this paper, the effect of TiO2 activated flux on penetration is evaluated for different workpieces namely AISI 1020, aISI 304, A ISI 316, and Duplex 2205 steels at different currents and shielding gas compositions.
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Bond graph model-based evaluation of a sliding mode controller for a combined regenerative and antilock braking system:
TL;DR: In this article, a combined regenerative and antilock braking in electric/hybrid-electric vehicles is proposed to provide higher safety in addition to an energy storing capability, and a sliding mode controller for ABS is developed to maintain the optimal slip value.
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Experimental and numerical investigations on the effect of alkaline hornification on the hydrothermal ageing of Agave natural fiber composites
TL;DR: In this article, the effect of fiber pretreatment by alkaline hornification is analyzed on the moisture uptake behavior of the Agave fiber composites, which is a measure of affinity towards moisture, reduces with each subsequent hornification cycle.
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Bond graph modeling of planar prismatic joints
TL;DR: In this article, a planar slider component is modeled as a multibody system composed of two separate rigid bodies which are constrained to produce the desired motion, and the constraints generate the dynamic contact forces which are used to compute the dynamic frictional forces.