Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz, I Kolaric… - … Science and Technology, 2010 - Elsevier
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz… - COMPOSITES …, 2010 - scholar.korea.ac.kr
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

[引用][C] Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites …

SM UDDIN, T MAHMUD, C WOLF… - Composites science …, 2010 - pascal-francis.inist.fr
Effect of size and shape of metal particles to improve hardness and electrical properties of
carbon nanotube reinforced copper and copper alloy composites : Metal Matrix Composites …

Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz, I Kolaric… - … Science and Technology, 2010 - infona.pl
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz… - Composites Science …, 2010 - hal.science
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

[PDF][PDF] Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz, I Kolaric… - 2010 - academia.edu
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz, I Kolaric… - 2010 - publica.fraunhofer.de
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …

[引用][C] Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz… - Composites Science …, 2010 - cir.nii.ac.jp
Effect of size and shape of metal particles to improve hardness and electrical properties of
carbon nanotube reinforced copper and copper alloy composites | CiNii Research CiNii 国立 …

[PDF][PDF] Effect of size and shape of metal particles to improve hardness and electrical properties of carbon nanotube reinforced copper and copper alloy composites

SM Uddin, T Mahmud, C Wolf, C Glanz, I Kolaric… - 2010 - core.ac.uk
Utilizing the extra-ordinary properties of carbon nanotube (CNT) in metal matrix composite
(MMC) for macroscopic applications is still a big challenge for science and technology. Very …