Burak Can Cerik

Burak Can Cerik

Inha University

H-index: 17

Asia-South Korea

About Burak Can Cerik

Burak Can Cerik, With an exceptional h-index of 17 and a recent h-index of 15 (since 2020), a distinguished researcher at Inha University, specializes in the field of Marine Structures, Structural Integrity, Fatigue and Fracture, Structural Impact, Offshore Wind.

His recent articles reflect a diverse array of research interests and contributions to the field:

독립형 LNG 화물창의 공학적 결함 평가

Prediction of damage extents due to in-compartment explosions in warships

Fracture Prediction of Steel-Plated Structures under Low-Velocity Impact

Effect of hull inelasticity on whipping responses by underwater explosions

Effects of fracture models on structural damage and acceleration in naval ships due to underwater explosions

Prediction of Structural Damages and Armament Accelerations of a Surface Naval Ship due to Underwater Explosions

Dynamic Analysis of Collision Between Two Floating Bodies Considering Hydrodynamic Loads

Predicting ductile fracture in maritime crash with a modified implementation of BWH criterion

Burak Can Cerik Information

University

Position

Senior Researcher

Citations(all)

664

Citations(since 2020)

546

Cited By

348

hIndex(all)

17

hIndex(since 2020)

15

i10Index(all)

22

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Burak Can Cerik Skills & Research Interests

Marine Structures

Structural Integrity

Fatigue and Fracture

Structural Impact

Offshore Wind

Top articles of Burak Can Cerik

Title

Journal

Author(s)

Publication Date

독립형 LNG 화물창의 공학적 결함 평가

대한조선학회 논문집

서재훈, 박규식, 차인환, 정준모

2023/8

Prediction of damage extents due to in-compartment explosions in warships

Wonjune Chang

Burak Can Cerik

Joonmo Choung

2023/4/14

Fracture Prediction of Steel-Plated Structures under Low-Velocity Impact

Journal of Marine Science and Engineering

Burak Can Cerik

Joonmo Choung

2023/3

Effect of hull inelasticity on whipping responses by underwater explosions

Ships and Offshore Structures

Hyunwoo Kim

Burak Can Cerik

Joonmo Choung

2022/5/1

Effects of fracture models on structural damage and acceleration in naval ships due to underwater explosions

Ocean Engineering

Hyunwoo Kim

Burak Can Cerik

Joonmo Choung

2022/12/15

Prediction of Structural Damages and Armament Accelerations of a Surface Naval Ship due to Underwater Explosions

Hyunwoo Kim

Burak Can Cerik

Joonmo Choung

2022/6/5

Dynamic Analysis of Collision Between Two Floating Bodies Considering Hydrodynamic Loads

Burak Can Cerik

Joonmo Choung

2022/6/5

Predicting ductile fracture in maritime crash with a modified implementation of BWH criterion

Burak Can Cerik

Sung-Ju Park

Joonmo Choung

2021

Estimation of damage extents and evaluation of survivability of surface ships subjected to near-field explosion

BC Cerik

J Choung

2021/12/28

Fracture estimation in ship collision analysis—strain rate and thermal softening effects

Metals

Burak Can Cerik

Joonmo Choung

2021/9/5

Evaluation of Localized Necking Models for Fracture Prediction in Punch-Loaded Steel Panels

Journal of Marine Science and Engineering

Burak Can Cerik

Kangsu Lee

Joonmo Choung

2021/1/25

A Study on Inelastic Whipping Responses in a Navy Ship by Underwater Explosion

Journal of the Society of Naval Architects of Korea

Hyunwoo Kim

Jae Hoon Seo

Joonmo Choung

2021

On the modelling of strain-rate effects in nonlinear FE analysis of ship collisions

Burak Can Cerik

Joonmo Choung

2020/9

Progressive collapse analysis of intact and damaged ships under unsymmetrical bending

Journal of Marine Science and Engineering

Burak Can Cerik

Joonmo Choung

2020/12/4

Use of localized necking and fracture as a failure criterion in ship collision analysis

Marine Structures

Burak Can Cerik

Sung-Ju Park

Joonmo Choung

2020/5/22

Rate-dependent combined necking and fracture model for predicting ductile fracture with shell elements at high strain rates

International Journal of Impact Engineering

Burak Can Cerik

Joonmo Choung

2020/12/1

On the prediction of ductile fracture in ship structures with shell elements at low temperatures

Thin-Walled Structures

Burak Can Cerik

Joonmo Choung

2020/3/28

Ductile Fracture Behavior of Mild and High-Tensile Strength Shipbuilding Steels

Applied Sciences

Burak Can Cerik

Joonmo Choung

2020/10/10

Comparative study on ductile fracture prediction of high-tensile strength marine structural steels

Ships and Offshore Structures

Sung-Ju Park

Burak Can Cerik

Joonmo Choung

2020/3/24

A useful manufacturing guide for rotary piercing seamless pipe by ALE method

Journal of Marine Science and Engineering

Ameen Topa

Burak Can Cerik

Do Kyun Kim

2020/9/27

See List of Professors in Burak Can Cerik University(Inha University)

Co-Authors

academic-engine