Imran Lashari, Muhammad
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1

A novel very-high-cycle-fatigue life prediction model with ..:

Li, Xiaolong ; Li, Wei ; Hu, Tianyi...
Theoretical and Applied Fracture Mechanics.  123 (2023)  - p. 103705 , 2023
 
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3

Microstructure based cracking behavior and life assessment ..:

Li, Cheng ; Li, Wei ; Cai, Liang...
International Journal of Fatigue.  161 (2022)  - p. 106914 , 2022
 
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5

Defect-based fatigue crack nucleation and strength evaluati..:

Li, Cheng ; Li, Wei ; Sun, Chuanwen.
Journal of Alloys and Compounds.  984 (2024)  - p. 173983 , 2024
 
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7

Multi-scale experimental investigation on microstructure re..:

Li, Wei ; Li, Xiaolong ; Sun, Chuanwen...
Materials Characterization.  201 (2023)  - p. 112960 , 2023
 
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8

High cycle and very high cycle fatigue properties and micro..:

Li, Cheng ; Li, Wei ; Yuan, Shihua...
Fatigue & Fracture of Engineering Materials & Structures.  45 (2022)  12 - p. 3677-3691 , 2022
 
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10

In-situ experimental study on the fatigue crack propagation..:

Cai, Liang ; Li, Wei ; Mo, Zhenglin...
Theoretical and Applied Fracture Mechanics.  119 (2022)  - p. 103372 , 2022
 
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11

Interior long‐life‐fatigue cracking behavior and life predi..:

Sun, Rui ; Li, Wei ; Zhang, Yucheng...
Fatigue & Fracture of Engineering Materials & Structures.  45 (2022)  7 - p. 2112-2126 , 2022
 
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13

High-cycle-fatigue properties of selective-laser-melted AlS..:

Zhang, Yucheng ; Li, Xiaolong ; Yuan, Shihua...
International Journal of Mechanical Sciences.  224 (2022)  - p. 107336 , 2022
 
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15

Comparación de la velocidad de corrosión del acero A-36 rec..:

Maaz Akhtar ; Muhammad Imran Lashari ; Muhammad Muzamil...
https://revistademetalurgia.revistas.csic.es/index.php/revistademetalurgia/article/view/1512.  , 2021
 
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