Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools
The experimental setup shall compare face grinding with lateral grinding in a single processing step using fused silica and BK7 as materials. Resin and metal bonded tools are used in face and lateral grinding strategies. The paper presents the results in order to deepen the knowledge about those gri...
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EDP Sciences
2021
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oai:doaj.org-article:9821cd6cd5304b979ecbc99570b5cc632021-12-02T17:12:51ZExperimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools2100-014X10.1051/epjconf/202125503002https://doaj.org/article/9821cd6cd5304b979ecbc99570b5cc632021-01-01T00:00:00Zhttps://www.epj-conferences.org/articles/epjconf/pdf/2021/09/epjconf_eosam2021_03002.pdfhttps://doaj.org/toc/2100-014XThe experimental setup shall compare face grinding with lateral grinding in a single processing step using fused silica and BK7 as materials. Resin and metal bonded tools are used in face and lateral grinding strategies. The paper presents the results in order to deepen the knowledge about those grinding technologies and to further improve the properties of fabricated components. Furthermore, the results confirm, that ultra-fine grinding is a technology, which can be used to process inorganic non-metallic materials with high quality surfaces with a low roughness and high flatness in a low processing time.Schulze ChristianHenkel SebastianBliedtner JensEDP SciencesarticlePhysicsQC1-999ENEPJ Web of Conferences, Vol 255, p 03002 (2021) |
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Physics QC1-999 |
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Physics QC1-999 Schulze Christian Henkel Sebastian Bliedtner Jens Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
description |
The experimental setup shall compare face grinding with lateral grinding in a single processing step using fused silica and BK7 as materials. Resin and metal bonded tools are used in face and lateral grinding strategies. The paper presents the results in order to deepen the knowledge about those grinding technologies and to further improve the properties of fabricated components. Furthermore, the results confirm, that ultra-fine grinding is a technology, which can be used to process inorganic non-metallic materials with high quality surfaces with a low roughness and high flatness in a low processing time. |
format |
article |
author |
Schulze Christian Henkel Sebastian Bliedtner Jens |
author_facet |
Schulze Christian Henkel Sebastian Bliedtner Jens |
author_sort |
Schulze Christian |
title |
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
title_short |
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
title_full |
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
title_fullStr |
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
title_full_unstemmed |
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools |
title_sort |
experimental results from face and lateral fine grinding of fused silica and bk7 using metal and resin bonded tools |
publisher |
EDP Sciences |
publishDate |
2021 |
url |
https://doaj.org/article/9821cd6cd5304b979ecbc99570b5cc63 |
work_keys_str_mv |
AT schulzechristian experimentalresultsfromfaceandlateralfinegrindingoffusedsilicaandbk7usingmetalandresinbondedtools AT henkelsebastian experimentalresultsfromfaceandlateralfinegrindingoffusedsilicaandbk7usingmetalandresinbondedtools AT bliedtnerjens experimentalresultsfromfaceandlateralfinegrindingoffusedsilicaandbk7usingmetalandresinbondedtools |
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1718381392114483200 |