218 results on '"Skordaris, G."'
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2. Effect of the crystallinity of diamond coatings on cemented carbide inserts on their cutting performance in milling
3. Bias voltage effect on the mechanical properties, adhesion and milling performance of PVD films on cemented carbide inserts
4. Bias voltage optimum adjustment considering coatings’ strength and adhesion requirements when cutting various steels
5. Effect of PVD film's residual stresses on their mechanical properties, brittleness, adhesion and cutting performance of coated tools
6. Effect of HM substrates’ cutting edge roundness manufactured by laser machining and micro-blasting on the coated tools’ cutting performance
7. Film thickness effect on mechanical properties and milling performance of nano-structured multilayer PVD coated tools
8. Effect of the interface fatigue strength of NCD coated hardmetal inserts on their cutting performance in milling
9. Fatigue and adhesion characterization of DLC coatings on steel substrates by perpendicular and inclined impact tests
10. A dynamic FEM simulation of the nano-impact test on mono- or multi-layered PVD coatings considering their graded strength properties determined by experimental–analytical procedures
11. Repetitive impact test near uncoated and coated cutting edges for assessing their fatigue behavior
12. Fatigue strength of diamond coating-substrate interface assessed by inclined impact tests at ambient and elevated temperatures
13. Effect of cutting edge preparation of coated tools on their performance in milling various materials
14. Brittleness and fatigue effect of mono- and multi-layer PVD films on the cutting performance of coated cemented carbide inserts
15. Fatigue strength of diamond coatings' interface assessed by inclined impact test
16. Effect of silicon content on PVD film mechanical properties and cutting performance of coated cemented carbide inserts
17. Coated tools' performance in up and down milling stainless steel, explained by film mechanical and fatigue properties
18. Coated tools’ wear description in down and up milling based on the cutting edge entry impact duration
19. Nano-impact test on a TiAlN PVD coating and correlation between experimental and FEM results
20. Adhesive interlayers' effect on the entire structure strength of glass molding tools' Pt–Ir coatings by nano-tests determined
21. Effect of PVD films wet micro-blasting by various Al2O3 grain sizes on the wear behaviour of coated tools
22. Influence of dry micro-blasting grain quality on wear behaviour of TiAlN coated tools
23. Optimization of wet micro-blasting on PVD films with various grain materials for improving the coated tools’ cutting performance
24. Fatigue Strength of Diamond Coating-Substrate Interface Quantified by a Dynamic Simulation of the Inclined Impact Test
25. Adaption of graded Cr/CrN-interlayer thickness to cemented carbide substrates' roughness for improving the adhesion of HPPMS PVD films and the cutting performance
26. Correlation between PVD coating strength properties and impact resistance at ambient and elevated temperatures
27. The effect of substrate pretreatments and HPPMS-deposited adhesive interlayers’ materials on the cutting performance of coated cemented carbide inserts
28. Effect of dry micro-blasting on PVD-film properties, cutting edge geometry and tool life in milling
29. Ambient and elevated temperature properties of TiN, TiAlN and TiSiN PVD films and their impact on the cutting performance of coated carbide tools
30. A FEM-based analytical–experimental method for determining strength properties gradation in coatings after micro-blasting
31. Quantification of PVD Film Adhesion with Critical Shear Stress by Using Dynamic Simulation of the Inclined Impact Test
32. Effect of film ion bombardment during the pvd process on the mechanical properties and cutting performance of TiAlN coated tools
33. The inclined impact test: A novel method for the quantification of the adhesion properties of PVD films
34. The effect of annealing duration at deposition temperature on the strength properties gradation of PVD films and on the wear behaviour of coated cemented carbide inserts
35. Impact Resistance of PVD Films and Milling Performance of Coated Tools at Various Temperature Levels
36. Hardness determination by means of a FEM-supported simulation of nanoindentation and applications in thin hard coatings
37. Effect on PVD coated cemented carbide inserts cutting performance of micro-blasting and lapping of their substrates
38. Cutting performance improvement through micro-blasting on well-adherent PVD films on cemented carbide inserts
39. Micro-blasting of PVD Films, an Effective Way to Increase the Cutting Performance of Coated Cemented Carbide Tools
40. Properties and performance of high aluminum containing (Ti,Al)N based supernitride coatings in innovative cutting applications
41. The effect of coating thickness, mechanical strength and hardness properties on the milling performance of PVD coated cemented carbides inserts
42. Wear development on cemented carbide inserts, coated with variable film thickness in the cutting wedge region
43. A nanoindentation based determination of internal stress alterations in PVD films and their cemented carbides substrates induced by recoating procedures and their effect on the cutting performance
44. MILLING PERFORMANCE OF COATED INSERTS WITH VARIABLE COATING THICKNESS ON THEIR RAKE AND FLANK
45. Optimisation of the cutting edge roundness and its manufacturing procedures of cemented carbide inserts, to improve their milling performance after a PVD coating deposition
46. The influence of the coating thickness on its strength properties and on the milling performance of PVD coated inserts
47. Determination of coating residual stress alterations demonstrated in the case of annealed films and based on a FEM supported continuous simulation of the nanoindentation
48. Supernitrides: A novel generation of PVD hardcoatings to meet the requirements of high demanding cutting applications
49. A FEA-Based Methodology to Predict the Osteotome Wear Status during Nasal Bone Surgical Operations
50. The effect of specimen roughness and indenter tip geometry on the determination accuracy of thin hard coatings stress–strain laws by nanoindentation
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