关注
Martin Jensen Meyland, Ph.D.
Martin Jensen Meyland, Ph.D.
Structural Engineer, Structures & Facade Engineering, Rambøll Danmark A/S
在 ramboll.dk 的电子邮件经过验证
标题
引用次数
引用次数
年份
Tensile behaviour of soda-lime-silica glass and the significance of load duration–A literature review
MJ Meyland, JH Nielsen, C Kocer
Journal of Building Engineering 44, 102966, 2021
252021
Compressive zone depth of thermally tempered glass
JH Nielsen, K Thiele, J Schneider, MJ Meyland
Construction and Building Materials 310, 125238, 2021
182021
An experimental investigation of the flexural strength of soda–lime–silica glass at high loading rates
MJ Meyland, CKT Bønding, RNW Eriksen, JH Nielsen
Glass Structures & Engineering 4, 175-183, 2019
122019
A modified split-Hopkinson pressure bar setup enabling stereo digital image correlation measurements for flexural testing
MJ Meyland, RNW Eriksen, JH Nielsen
International Journal of Impact Engineering 173, 104480, 2023
52023
High strain rate characterisation of soda-lime-silica glass and the effect of residual stresses
MJ Meyland, JH Nielsen
Glass Structures & Engineering 7 (4), 641-657, 2022
52022
Ongoing research into the failure of glass at high strain-rates
MJ Meyland, JH Nielsen
Challenging Glass Conference 7: International Conference on the …, 2020
42020
Investigating the strength effects of drilling in tempered glass: A first step towards a novel dowel joint
JH Nielsen, MJ Meyland, BE Thorup, A Zugravu, JF Olesen
Glass Structures & Engineering 4, 243-256, 2019
22019
A novel full-view split Hopkinson pressure bar technique for flexural testing
MJ Meyland, RNW Eriksen, JH Nielsen
13th International Conference on Shock & Impact Loads on Structures, 2019
22019
Blast Loading on Glass in Facades: Flexural Strength of Monolithic Flat Glass at High Strain Rates
MJ Meyland
Department of Civil and Mechanical Engineering, Technical University of Denmark, 2022
12022
Correction to: High strain rate characterisation of soda-lime-silica glass and the effect of residual stresses
MJ Meyland, JH Nielsen
Glass Structures & Engineering 7 (4), 659-659, 2022
2022
Failure characterisation of glass at high strain-rates
MJ Meyland
Glass Fracture Symposium 2019, 2019
2019
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