1 |
Effect of tool shoulder geometry on fabrication of Al/Al2O3 surface nano composite by friction stir processing Parumandla N, Adepu K Particulate Science and Technology, 38(1), 121, 2020 |
2 |
Friction stir processing of dual certified 304/304L austenitic stainless steel for improved cavitation erosion resistance Jiang XJ, Overman N, Canfield N, Ross K Applied Surface Science, 471, 387, 2019 |
3 |
The effect of the number of passes in friction stir processing of aluminum alloy (AA6082) and its failure analysis Senthilkumar R, Prakash M, Arun N, Jeyakumar AA Applied Surface Science, 491, 420, 2019 |
4 |
Post-spray modification of cold-sprayed Ni-Ti coatings by high-temperature vacuum annealing and friction stir processing Huang CJ, Yan XC, Li WY, Wang WB, Verdy C, Planche MP, Liao HL, Montavon G Applied Surface Science, 451, 56, 2018 |
5 |
Interfacial bonding mechanisms between aluminum and titanium during cold gas spraying followed by friction-stir modification Khodabakhshi F, Marzbanrad B, Jahed H, Gerlich AP Applied Surface Science, 462, 739, 2018 |
6 |
Effects of friction stir processing on hydrogen storage of ZK60 alloy Silva EP, Leiva DR, Pinto HC, Floriano R, Neves AM, Botta WJ International Journal of Hydrogen Energy, 43(24), 11085, 2018 |
7 |
특수 설계된 마찰교반도구(Friction Stir Process Tool)를 사용한 HDPE 나노복합체 제조방법 Balamugundan B, Karthikeyan L, Puviyarasan M Polymer(Korea), 42(1), 20, 2018 |
8 |
The erosion performance of cold spray deposited metal matrix composite coatings with subsequent friction stir processing Peat T, Galloway A, Toumpis A, McNutt P, Iqbal N Applied Surface Science, 396, 1635, 2017 |
9 |
Friction stir processed Al-TiO2 surface composites: Anodising behaviour and optical appearance Gudla VC, Jensen F, Simar A, Shabadi R, Ambata R Applied Surface Science, 324, 554, 2015 |
10 |
Surface enhancement of cold work tool steels by friction stir processing with a pinless tool Costa MI, Verdera D, Vieira MT, Rodrigues DM Applied Surface Science, 296, 214, 2014 |