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۱- رخ گيره ح (1400) بررسي عددي رفتار خزش پره توربين از جنس سوپرآلياژ اينکونل 939 با استفاده از مدل هاي مختلف خزش مهندسي ساخت و توليد ايران :- |
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2- Araghi M, Rokhgireh H, Nayebi A (2023) Experimental and FEM investigation of BCC lattice structure under compression test by using continuum damage mechanics with micro-defect closure effect Materials & 232:112125-0 |
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3- Kamranfard M, Darijani H, Rokhgireh H, Khademzadeh S (2022) Analysis and optimization of strut-based lattice structures by simplified finite element method Acta Mechanica 234:1381-1408 |
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4- Surmiri A, Rokhgireh H, Nayebi A (2022) An Anisotropic Continuum Damage Mechanics Model for the Simulation of Yield Surface Evolution and Ratcheting International Journal of Applied Mechanics 14:0-0 |
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5- Kazemi Z, Soleimani M, Rokhgireh H, Nayebi A (2022) Melting pool simulation of 316L samples manufactured by Selective Laser Melting method, comparison with experimental results International Journal of Thermal Sciences 176:107538-0 |
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6- سورميري , Nayebi A, Rokhgireh H, Varvani Farahani A (2020) Anisotropic continuum damage analysis of thin-walled pressure vessels under cyclic thermo-mechanical loading STRUCTURAL ENGINEERING AND MECHANICS 75:101-108 |
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7- سورميري , Nayebi A, Rokhgireh H (2020) Application of anisotropic continuum damage mechanics in ratcheting characterization Mechanics of Advanced Materials and Structures 0:1-8 |
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8- Rokhgireh H, Nayebi A (2019) Non-proportional stress and stress-strain controlled paths cyclic loading modeling by using anisotropic continuum damage model Theoretical and Applied Fracture Mechanics 103:102311-0 |
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9- Surmiri A, Nayebi A, Rokhgireh H (2018) Shakedown-ratcheting analysis of Bree's problem by anisotropic continuum damage mechanics coupled with nonlinear kinematic hardening model International Journal of Mechanical Sciences 137:295-303 |
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10- عراقي , Rokhgireh H, Nayebi A (2018) Evaluation of fatigue damage model of CDM by different proportional and non-proportional strain controlled loading paths Theoretical and Applied Fracture Mechanics 98:104-111 |
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11- Rokhgireh H, Nayebi A, Chaboche J (2017) Application of a new distortional yield surface model in cyclic uniaxial and multiaxial loading INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES 0:219-238 |
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12- Rokhgireh H, Nayebi A (2017) Multiaxial Ratcheting Modeling with Incorporation of a Yield Surface Distortion Model Proceedings of the Institution of Mechanical Engineers Part C Journal of Mechanical Engineering Science 231:979-994 |
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13- Rokhgireh H, Nayebi A (2016) Modeling of non-proportional cyclic loading with a simple yield surface distortion model Mechanics Research Communications 72:87-92 |
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14- Nayebi A, Rokhgireh H (2015) Using of Anisotropic Continuum Damage Mechanics to Describe Yield Surface Distortion Applied Mechanics and Materials 784:11-18 |
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15- Rokhgireh H (2013) A new yield surface distortion model based on Baltov and Sawczuk’s model Acta Mechanica 224:1457-1469 |
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16- Nayebi A, Ranjbar H, Rokhgireh H (2013) Analysis of unified continuum damage mechanics model of gas turbine rotor steel: Life assessment PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART L-JOURNAL OF MATERIALS-DESIGN AND APPLICATIONS 227:216-225 |
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17- Rokhgireh H (2012) Cyclic uniaxial and multiaxial loading with yield surface distortion consideration on prediction of ratcheting Mechanics of Materials 47:61-74 |
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18- Nayebi A, Rokhgireh H, Araghi M, Mohammadi M (1400) Modelling the asymmetric tension–compression properties of additively manufactured alloys using continuum damage mechanics PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART L-JOURNAL OF MATERIALS-DESIGN AND APPLICATIONS 235:1969-1980 |
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19- Rokhgireh H, Nayebi A, K?stner M (1400) Modeling the Tensile Behavior of Specimens Manufactured by the Selective Laser Melting Method Using Continuum Damage Mechanics Theory Journal of Materials Engineering and Performance 30:6542-6548 |
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20- عراقي , Nayebi A, Rokhgireh H (1400) Parameter Study of GTN Model in a SLM Manufactured Lattice Structure under Compression by Using FEM Iranian Journal Of Materials Forming 7:78-87 |