Matches in SemOpenAlex for { <https://semopenalex.org/work/W2897910375> ?p ?o ?g. }
Showing items 1 to 58 of
58
with 100 items per page.
- W2897910375 abstract "The Si3N4 ceramics are, due to their low density, very good wear, corrosion and heat resistance, an important material with many engineering and medical applications. However, the high hardness (2125HV) and brittleness of ceramics make for serious difficulties when machining. Laser Assisted Machining (LAM) is currently being developed as a research method for the machining of hard Si3N4 ceramics. It is a hybrid process of the machining, where the material is heated by laser irradiation and soft surface layer is machined by defined cutting edge of the cutting tool tips. In comparison with conventional machining this method significantly increases the tool durability.The research presented here shows the results of the hard Si3N4 ceramics machinability tests which were evaluated by a VBc wear indicator of the polycrystalline diamond (PCD) tool tips, and the geometric structure and Ra surface roughness parameters of the machined ceramics. The conventional turning and laser assisted turning (LAM) of Si3N4 ceramics with a special temperature control system at the tool tip of machined surface during this process was investigated. It was noticed that the wear intensity of PCD tool tips was significantly influenced by the temperature of the machined layer during the ceramics turning process. This was confirmed by 5 fold decrease in the tool insert wear rate during LAM process in comparison with conventional turning. A suitably high temperature at the machined surface is a guarantee of low tool insert wear rate and thus increasing their durability. In this case the economics of this process is significant improved. The possibilities of obtaining higher turning capacity via cutting speed increase without decreasing tool insert durability was confirmed. The machined surface roughness after LAM process in different range of temperatures compared with conventional turning shows improved results. The machined Si3N4 ceramic geometrical surface structure in the range of low feed values is random. However it is determined by tool insert feed in the range of the highest feed values.The Si3N4 ceramics are, due to their low density, very good wear, corrosion and heat resistance, an important material with many engineering and medical applications. However, the high hardness (2125HV) and brittleness of ceramics make for serious difficulties when machining. Laser Assisted Machining (LAM) is currently being developed as a research method for the machining of hard Si3N4 ceramics. It is a hybrid process of the machining, where the material is heated by laser irradiation and soft surface layer is machined by defined cutting edge of the cutting tool tips. In comparison with conventional machining this method significantly increases the tool durability.The research presented here shows the results of the hard Si3N4 ceramics machinability tests which were evaluated by a VBc wear indicator of the polycrystalline diamond (PCD) tool tips, and the geometric structure and Ra surface roughness parameters of the machined ceramics. The conventional turning and laser assisted turning (LAM) of Si3N4 cer..." @default.
- W2897910375 created "2018-10-26" @default.
- W2897910375 creator A5009045180 @default.
- W2897910375 creator A5027692599 @default.
- W2897910375 date "2006-01-01" @default.
- W2897910375 modified "2023-10-14" @default.
- W2897910375 title "Machinability of laser heated silicon nitride ceramics during a turning process" @default.
- W2897910375 doi "https://doi.org/10.2351/1.5060860" @default.
- W2897910375 hasPublicationYear "2006" @default.
- W2897910375 type Work @default.
- W2897910375 sameAs 2897910375 @default.
- W2897910375 citedByCount "0" @default.
- W2897910375 crossrefType "proceedings-article" @default.
- W2897910375 hasAuthorship W2897910375A5009045180 @default.
- W2897910375 hasAuthorship W2897910375A5027692599 @default.
- W2897910375 hasConcept C107365816 @default.
- W2897910375 hasConcept C134132462 @default.
- W2897910375 hasConcept C136478896 @default.
- W2897910375 hasConcept C159985019 @default.
- W2897910375 hasConcept C191897082 @default.
- W2897910375 hasConcept C192562407 @default.
- W2897910375 hasConcept C2775926494 @default.
- W2897910375 hasConcept C2776450708 @default.
- W2897910375 hasConcept C2777431650 @default.
- W2897910375 hasConcept C2780383046 @default.
- W2897910375 hasConcept C523214423 @default.
- W2897910375 hasConcept C544956773 @default.
- W2897910375 hasConcept C71039073 @default.
- W2897910375 hasConceptScore W2897910375C107365816 @default.
- W2897910375 hasConceptScore W2897910375C134132462 @default.
- W2897910375 hasConceptScore W2897910375C136478896 @default.
- W2897910375 hasConceptScore W2897910375C159985019 @default.
- W2897910375 hasConceptScore W2897910375C191897082 @default.
- W2897910375 hasConceptScore W2897910375C192562407 @default.
- W2897910375 hasConceptScore W2897910375C2775926494 @default.
- W2897910375 hasConceptScore W2897910375C2776450708 @default.
- W2897910375 hasConceptScore W2897910375C2777431650 @default.
- W2897910375 hasConceptScore W2897910375C2780383046 @default.
- W2897910375 hasConceptScore W2897910375C523214423 @default.
- W2897910375 hasConceptScore W2897910375C544956773 @default.
- W2897910375 hasConceptScore W2897910375C71039073 @default.
- W2897910375 hasLocation W28979103751 @default.
- W2897910375 hasOpenAccess W2897910375 @default.
- W2897910375 hasPrimaryLocation W28979103751 @default.
- W2897910375 hasRelatedWork W1558504864 @default.
- W2897910375 hasRelatedWork W2001481515 @default.
- W2897910375 hasRelatedWork W2022041970 @default.
- W2897910375 hasRelatedWork W2031171967 @default.
- W2897910375 hasRelatedWork W2035243193 @default.
- W2897910375 hasRelatedWork W2093729169 @default.
- W2897910375 hasRelatedWork W2138761137 @default.
- W2897910375 hasRelatedWork W2333357563 @default.
- W2897910375 hasRelatedWork W2918449720 @default.
- W2897910375 hasRelatedWork W2947762061 @default.
- W2897910375 isParatext "false" @default.
- W2897910375 isRetracted "false" @default.
- W2897910375 magId "2897910375" @default.
- W2897910375 workType "article" @default.