‐diameter flat punch diamond indenter Search Results


90
Alemnis AG diamond flat punch indenter
a [001]-oriented λ-Al 0.12 Ti 2.88 O 5 micropillar 2 with a height-to-diameter ratio of 2:1. b , c Scanning electron microscopy images of micropillar 2 during and after loading, captured in the in-situ test. The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a <t>diamond</t> <t>flat</t> <t>punch</t> <t>indenter</t> with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation. The orange stars represent the phase transition pressure of micropillar 2. Source data are provided as a file. e Comparisons of this work with the reported results in terms of the phase transition temperature and pressure. f Schematic representation of the possible heat storage system with β/λ-Al x Ti 3- x O 5 as the fundamental material for future lunar explorations.
Diamond Flat Punch Indenter, supplied by Alemnis AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/%E2%80%90diameter+flat+punch+diamond+indenter/pmc11897413-104-16-7?v=Alemnis+AG
Average 90 stars, based on 1 article reviews
diamond flat punch indenter - by Bioz Stars, 2026-07
90/100 stars
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90
Alemnis AG diameter diamond flat punch
a [001]-oriented λ-Al 0.12 Ti 2.88 O 5 micropillar 2 with a height-to-diameter ratio of 2:1. b , c Scanning electron microscopy images of micropillar 2 during and after loading, captured in the in-situ test. The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a <t>diamond</t> <t>flat</t> <t>punch</t> <t>indenter</t> with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation. The orange stars represent the phase transition pressure of micropillar 2. Source data are provided as a file. e Comparisons of this work with the reported results in terms of the phase transition temperature and pressure. f Schematic representation of the possible heat storage system with β/λ-Al x Ti 3- x O 5 as the fundamental material for future lunar explorations.
Diameter Diamond Flat Punch, supplied by Alemnis AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/%E2%80%90diameter+flat+punch+diamond+indenter/10__1016_slash_j__tsf__2015__07__070-68-10-16?v=Alemnis+AG
Average 90 stars, based on 1 article reviews
diameter diamond flat punch - by Bioz Stars, 2026-07
90/100 stars
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86
Kleindiek Nanotechnik diamond flat punch indenter
a [001]-oriented λ-Al 0.12 Ti 2.88 O 5 micropillar 2 with a height-to-diameter ratio of 2:1. b , c Scanning electron microscopy images of micropillar 2 during and after loading, captured in the in-situ test. The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a <t>diamond</t> <t>flat</t> <t>punch</t> <t>indenter</t> with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation. The orange stars represent the phase transition pressure of micropillar 2. Source data are provided as a file. e Comparisons of this work with the reported results in terms of the phase transition temperature and pressure. f Schematic representation of the possible heat storage system with β/λ-Al x Ti 3- x O 5 as the fundamental material for future lunar explorations.
Diamond Flat Punch Indenter, supplied by Kleindiek Nanotechnik, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/%E2%80%90diameter+flat+punch+diamond+indenter/10__1038_slash_s43246___025___00914___z-302-4-21?v=Kleindiek+Nanotechnik
Average 86 stars, based on 1 article reviews
diamond flat punch indenter - by Bioz Stars, 2026-07
86/100 stars
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Image Search Results


a [001]-oriented λ-Al 0.12 Ti 2.88 O 5 micropillar 2 with a height-to-diameter ratio of 2:1. b , c Scanning electron microscopy images of micropillar 2 during and after loading, captured in the in-situ test. The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a diamond flat punch indenter with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation. The orange stars represent the phase transition pressure of micropillar 2. Source data are provided as a file. e Comparisons of this work with the reported results in terms of the phase transition temperature and pressure. f Schematic representation of the possible heat storage system with β/λ-Al x Ti 3- x O 5 as the fundamental material for future lunar explorations.

Journal: Nature Communications

Article Title: Sub-minute synthesis and modulation of β/λ-M x Ti 3- x O 5 ceramics towards accessible heat storage

doi: 10.1038/s41467-025-57604-0

Figure Lengend Snippet: a [001]-oriented λ-Al 0.12 Ti 2.88 O 5 micropillar 2 with a height-to-diameter ratio of 2:1. b , c Scanning electron microscopy images of micropillar 2 during and after loading, captured in the in-situ test. The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a diamond flat punch indenter with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation. The orange stars represent the phase transition pressure of micropillar 2. Source data are provided as a file. e Comparisons of this work with the reported results in terms of the phase transition temperature and pressure. f Schematic representation of the possible heat storage system with β/λ-Al x Ti 3- x O 5 as the fundamental material for future lunar explorations.

Article Snippet: The compression tests were conducted using an Alemnis Standard Assembly platform that was equipped with a diamond flat punch indenter with a diameter of 10 μm. d The obtained stress-strain curve during the in-situ compression process; Stage I: Typical elastic deformation during the initial stage; Stage II: Plastic deformation occurred, resulting in a phase transition from the λ-phase to the β-phase; Stage III: The material reverted back to elastic deformation.

Techniques: Electron Microscopy, In Situ, Sublimation