Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Amit Kumar Maheshwari"'
Publikováno v:
International Journal of Clinical Biochemistry and Research. 5:493-496
Introduction: Diabetes Mellitus (DM) comprises a group of metabolic disorders presenting with hyperglycemia resulting from insulin deficiency or decreased glucose utilization and increased glucose production. Ferritin is a globular protein which is a
CONSTITUTIVE MODELING FOR FLOW STRESS DETERMINATION USING DIMENSIONLESS PROPORTIONALITY RELATIONSHIP
Autor:
Amit Kumar Maheshwari
Constitutive modeling containing the relationship between stress, strain, strain rate and temperature is the essential input for understanding the thermo mechanical deformation processing results. In this research article, the dynamics of deformation
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::79f4f2f828096bc862378fa6340137f9
Autor:
Amit Kumar Maheshwari
Generally a range of equation solvers for estimating the solution of an equation contain the derivative of first or higher order. Such solvers are difficult to apply in the instances of complicated functional relationship. The equation solver propose
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::32a0a80bdeec5874d5ddc8053d0f93a2
Autor:
Amit Kumar Maheshwari
Publikováno v:
High Temperature Materials and Processes, Vol 33, Iss 1, Pp 13-19 (2014)
In this study, hot workability aspect for modeling the flow stress at specified deformation level is investigated. The proposed model contains the basic parametric relationship of Arrhenius power law. The developed mathematical model is validated on
Autor:
Amit Kumar Maheshwari
Publikováno v:
Mathematical Journal of Interdisciplinary Sciences. 1:19-26
This paper pronounces a modified numerical scheme to the conventional formula of Newton-Raphson for solving the nonlinear and transcendental equations especially those which cannot be solved by the basic algebra. Finding the derivative of a function
Autor:
Amit Kumar Maheshwari
Publikováno v:
Computational Materials Science. 69:350-358
In this study, a new phenomenological material flow model is established and validated to describe the dynamic deformation behavior of Al-2024 alloy with respect to the wide range of strain rate, strain, and temperature. When compared to the JC Model
Autor:
Amit Kumar Maheshwari
Publikováno v:
i-manager’s Journal on Mathematics. 1:18-22
Publikováno v:
Journal of Materials Science. 46:3191-3199
The hot deformation behavior of Al 2024 was studied by isothermal hot compression tests in the temperature range of 250–500 °C and strain rate range of 10−3 to 102 s−1 in a computer-controlled 50 kN servo-hydraulic universal testing machine (U
Publikováno v:
Journal of Materials Science. 45:859-864
The need of a generalised flow curves considering strain (e), strain rate (\( \dot{\varepsilon } \)) and temperature (T) is a primary requirement for material modelling related to several conventional and strategic mechanical processing to meet criti
Autor:
Amit Kumar Maheshwari
Publikováno v:
Applied Mathematics and Computation. 211:383-391
The present paper illustrates an iterative numerical method to solve nonlinear equations of the form f(x)=0, especially those containing the partial and non partial involvement of transcendental terms. Comparative analysis shows that the present meth