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| 1 | Surface modification of titanium using steel slag ball and shot blasting treatment for biomedical implant applications显示文摘Surface modification is often performed using grit or shot blasting treatment for improving the performances of biomedical implants.The effects of blasting treatments using steel slag balls and spherical shots on the surface and subsurface of titanium were studied in this paper.The treatments were conducted for 60-300 s using 2-5 mm steel slag balls and 3.18 mm spherical shots.The surface morphology,roughness,and elemental composition of titanium specimens were examined prior to and after the treatments.Irregular and rough titanium surfaces were formed after the treatment with the steel slag balls instead of the spherical shots.The former treatment also introduced some bioactive elements on the titanium surface,but the latter one yielded a harder surface layer.In conclusion,both steel slag ball and shot blasting treatment have their own specialization in modifying the surface of metallic biomaterials.Steel slag ball blasting is potential for improving the osseointegration quality of implants;but the shot blasting is more appropriate for improving the mechanical properties of temporary and load bearing implants,such as osteosynthesis plates. | Budi Arifvianto Suyitno Muslim Mahardika | 2013 | International Journal of Minerals,Metallurgy and Materials2013,20,8: | 3 |
| 2 | Structure observations related to hot tearing of Al-Cu billets produced by direct-chill casting显示文摘 | Suyitno Eskin D G Katgerman L | 2006 | Materials Science and Engineering A2006,12,420: | 1 |
| 3 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | 2004 | Progress in Materials Science2004,5,49: | 1 |
| 4 | Effect of surface mechanical attrition treatment(SMAT) on microhardness surface roughness and wettability of AISI 316L显示文摘 | Arifvianto B Suyitno Mahardika M | 2011 | Materials Chemistry and Physics2011,125,3: | 1 |
| 5 | Effect of cold working and sandblasting on the microhardness, tensile strength and corrosion resistance of AISI 316L stainless steel显示文摘The aim of this work is to investigate the effect of cold working and sandblasting on the microhardness, tensile strength and corro-sion rate of AISI 316L stainless steel. The specimens were deformed from 17% to 47% and sandblasted for 20 min using SiC particles with a diameter of 500-700 μm and an air flow with 0.6-0.7 MPa pressure. The microhardness distribution and tensile test were conducted and a measurement on the corrosion current density was done to determine the corrosion rate of the specimens. The result shows that the cold working enhances the bulk microhardness, tensile and yield strength of the specimen by the degree of deformation applied in the treatment. The sandblasting treatment increases the microhardness only at the surface of the specimen without or with a low degree of deformation. In addition, the sandblasting enhances the surface roughness. The corrosion resistance is improved by cold working, especially for the highly deformed specimen. However the follow-up sandblasting treatment reduces the corrosion resistance. In conclusion, the cold working is prominent to be used for improving the mechanical properties and corrosion resistance of AISI 316L stainless steel. Meanwhile, the sandblasting subjected to the cold worked steel is only useful for surface texturing instead of improving the mechanical properties and corrosion resistance. | Suyitno Budi Arifvianto Teguh Dwi Widodo Muslim Mahardika Punto Dewo Urip Agus Salim | 2012 | International Journal of Minerals,Metallurgy and Materials2012,19,12: | 1 |
| 6 | Mechanical Properties in the Semi-Solid State and Hot Tearing of Aluminum Alloys显示文摘 | Eskin 0 G Suyitno Katgernan L | 2004 | Progress in Materials Science2004,49,: | 1 |
| 7 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | 2004 | Progress in Materials Sience2004,49,: | 1 |
| 8 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | 2004 | Prog Mater Sci2004,49,5: | 1 |
| 9 | Katgerman mechnical properties in the semi-solid state and hot tearing od aluminium alloys显示文摘 | Eskin D G Suyitno L | 2004 | Progress in Materials Sience2004,49,: | 1 |
| 10 | Structure observa- tions related to hot tearing of AI-Cu billets produced by direct-chill casting 显示文摘 | SUYITNO ESKIN D G KATGERMAN L | 2006 | Materials Science and Engineering A2006,420,12: | 1 |
| 11 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys 显示文摘 | ESKIN D G SUYITNO KATGERMAN L | 2004 | Prog Mater Sci2004,49,: | 1 |
| 12 | Contraction of aluminum alloys during and after solidifica- tion显示文摘 | ESKIN D G SUYITNO MOONEY J F | 2004 | Metallurgical and Materials Transactions A2004,35,4: | 1 |
| 13 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | 2004 | Progress in Materials Science2004,49,: | 1 |
| 14 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | D.G. Eskin Suyitno L. Katgerman | 2003 | Progress in Materials Science2003,,5: | 1 |
| 15 | Effect of pouring temperature and casting thickness on fluidity, porosity and surface roughness in lost foam casting of gray east iron 显示文摘 | SUYITNO SUTIYOKO | 2012 | Procedia Engineering2012,50,: | 1 |
| 16 | Structure observations related to hot tearing of Al-Cu billets produced by direct-chill casting显示文摘 | Suyitno Eskin D G Katgerman L | | 0,,: | 1 |
| 17 | Contraction of aluminum alloys during and after solidification显示文摘 | Eskin D G Suyitno Mooney J F | | 0,,: | 1 |
| 18 | Mechanical proper ties in the semi solid state and hot tearing of aluminium alloys显示文摘 | ESKIN D G SUYITNO KATGERMAN L | 2004 | Progress in Materials Science2004,49,62: | 1 |
| 19 | Mechanical properties in the semi-solid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | | 0,,5: | 1 |
| 20 | Mechanical prop-erties in the semisolid state and hot tearing of aluminium alloys显示文摘 | Eskin D G Suyitno Katgerman L | 2004 | Progress in Materials Science2004,49,5: | 1 |