AbstractAustenitic Stainless Steel grade 304L and 316L are very important alloys used in various high temperature applications, which make it important to study their mechanical properties at elevated temperatures. In this work, the mechanical properties such as ultimate tensile strength (UTS), yield strength (YS), % elongation, strain hardening exponent (n) and strength coefficient (K) are evaluated based on the experimental data obtained from the uniaxial isothermal tensile tests performed at an interval of 50°C from 50°C to 650°C and at three different strain rates (0.0001, 0.001 and 0.01s−1). Artificial Neural Networks (ANN) are trained to predict these mechanical properties. The trained ANN model gives an excellent correlation coeffici...
This paper presents the results obtained using Machine Learning (ML) algorithms to predict the mecha...
Tensile results on austenitic stainless steels were analyzed to develop means for predicting strains...
AbstractTensile testing, also known as tension testing is a fundamental material technology test in ...
AbstractAustenitic Stainless Steel grade 304L and 316L are very important alloys used in various hig...
In this paper, genetic algorithm (GA) was used to enhance the accuracy of back propagation artificia...
Solid solution nickel base super alloys 617 and 276 possess excellent mechanical properties, oxidati...
An artificial neural network (ANN) model is developed for the analysis, simulation, and prediction o...
Type 316FR stainless steel is a candidate material for the Japanese Demonstration Fast Breeder React...
This paper discusses the application of artificial neural network modeling in austenitic stainless s...
This overview reports some of the research works carried out by us in recent past on the application...
The severe and hostile operating conditions of fast breeder reactors demand the development of new a...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Steel is the most important material and it has several applications, and positions second to cement...
Highly alloyed austenitic stainless steels are promising candidates to replace more expansive nickel...
Analyzing the structural integrity of ferritic steel structures subjected to large temperature varia...
This paper presents the results obtained using Machine Learning (ML) algorithms to predict the mecha...
Tensile results on austenitic stainless steels were analyzed to develop means for predicting strains...
AbstractTensile testing, also known as tension testing is a fundamental material technology test in ...
AbstractAustenitic Stainless Steel grade 304L and 316L are very important alloys used in various hig...
In this paper, genetic algorithm (GA) was used to enhance the accuracy of back propagation artificia...
Solid solution nickel base super alloys 617 and 276 possess excellent mechanical properties, oxidati...
An artificial neural network (ANN) model is developed for the analysis, simulation, and prediction o...
Type 316FR stainless steel is a candidate material for the Japanese Demonstration Fast Breeder React...
This paper discusses the application of artificial neural network modeling in austenitic stainless s...
This overview reports some of the research works carried out by us in recent past on the application...
The severe and hostile operating conditions of fast breeder reactors demand the development of new a...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Steel is the most important material and it has several applications, and positions second to cement...
Highly alloyed austenitic stainless steels are promising candidates to replace more expansive nickel...
Analyzing the structural integrity of ferritic steel structures subjected to large temperature varia...
This paper presents the results obtained using Machine Learning (ML) algorithms to predict the mecha...
Tensile results on austenitic stainless steels were analyzed to develop means for predicting strains...
AbstractTensile testing, also known as tension testing is a fundamental material technology test in ...