A Novel and Synergistic Application of Additive Manufacturing and Laser Shock Peening Toward Enhanced Tribological Performance and Customized Cutting ToolsSource: Journal of Tribology:;2026:;volume( 148 ):;issue:007Author:Singh, Anitesh Kumar
,
Ramadas, Harikrishnan
,
Sadhu, Abhijit
,
Nath, Ashish Kumar
,
Pratihar, Dilip Kumar
,
Roy Choudhury, Asimava
DOI: 10.1115/1.4071077Publisher: The American Society of Mechanical Engineers (ASME)
Abstract: Abstract. For the first time, a novel approach combining additive manufacturing (AM) with laser shock peening (LSP) was proposed and successfully implemented to create unique additively manufactured Stellite-6 cutting tools, introducing customization and flexibility to the tool-making industry while improving tribological performance. The compressive residual stress increased from −325 to −559 MPa, corresponding to an increase in LSP intensity from 3 to 7 GW/cm2, causing grain distortion and improving the hardness and wear performance of the as-printed Stellite-6 surface. Nanoindentation reveals an improvement in resistance to indenter penetration after LSP application. The increase in H/E and H3/E2 by 148% and 31%, respectively, at the LSP intensity of 7 GW/cm2, shows the wear resistance improvement. Progressive turning operation using AM and LSP-AM cutting tools was performed on mild steel, and machining performance and flank wear behavior were compared with those obtained for commercially available high-speed steel (HSS) M2 cutting tools. The flank wear was 332.1 µm for the AM Stellite-6 tool, which was reduced by 11% for the LSP-AM cutting tool. The tool life of the AM tool was found to be 138% higher than that of the HSS tool, and this improvement was further enhanced by 14% using LSP.
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| contributor author | Singh, Anitesh Kumar | |
| contributor author | Ramadas, Harikrishnan | |
| contributor author | Sadhu, Abhijit | |
| contributor author | Nath, Ashish Kumar | |
| contributor author | Pratihar, Dilip Kumar | |
| contributor author | Roy Choudhury, Asimava | |
| date accessioned | 2026-08-23T07:20:23Z | |
| date available | 2026-08-23T07:20:23Z | |
| date copyright | 2026/07/01 | |
| date issued | 2026 | |
| identifier issn | 0742-4787 | |
| identifier other | trib-25-1660.pdf | |
| identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4314962 | |
| description abstract | Abstract. For the first time, a novel approach combining additive manufacturing (AM) with laser shock peening (LSP) was proposed and successfully implemented to create unique additively manufactured Stellite-6 cutting tools, introducing customization and flexibility to the tool-making industry while improving tribological performance. The compressive residual stress increased from −325 to −559 MPa, corresponding to an increase in LSP intensity from 3 to 7 GW/cm2, causing grain distortion and improving the hardness and wear performance of the as-printed Stellite-6 surface. Nanoindentation reveals an improvement in resistance to indenter penetration after LSP application. The increase in H/E and H3/E2 by 148% and 31%, respectively, at the LSP intensity of 7 GW/cm2, shows the wear resistance improvement. Progressive turning operation using AM and LSP-AM cutting tools was performed on mild steel, and machining performance and flank wear behavior were compared with those obtained for commercially available high-speed steel (HSS) M2 cutting tools. The flank wear was 332.1 µm for the AM Stellite-6 tool, which was reduced by 11% for the LSP-AM cutting tool. The tool life of the AM tool was found to be 138% higher than that of the HSS tool, and this improvement was further enhanced by 14% using LSP. | |
| publisher | The American Society of Mechanical Engineers (ASME) | |
| title | A Novel and Synergistic Application of Additive Manufacturing and Laser Shock Peening Toward Enhanced Tribological Performance and Customized Cutting Tools | |
| type | Journal Paper | |
| journal volume | 148 | |
| journal issue | 7 | |
| journal title | Journal of Tribology | |
| identifier doi | 10.1115/1.4071077 | |
| tree | Journal of Tribology:;2026:;volume( 148 ):;issue:007 | |
| contenttype | Fulltext |