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sapphire vickers indentation finite element simulation model  (Abaqus Inc)

 
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    Structured Review

    Abaqus Inc sapphire vickers indentation finite element simulation model
    <t>Vickers</t> <t>indentation</t> apparatus and properties of sapphire block.
    Sapphire Vickers Indentation Finite Element Simulation Model, supplied by Abaqus Inc, 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/finite+element+simulation+model/pmc12654733-68-2-16?v=Abaqus+Inc
    Average 86 stars, based on 1 article reviews
    sapphire vickers indentation finite element simulation model - by Bioz Stars, 2026-07
    86/100 stars

    Images

    1) Product Images from "Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation"

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    Journal: Materials

    doi: 10.3390/ma18225136

    Vickers indentation apparatus and properties of sapphire block.
    Figure Legend Snippet: Vickers indentation apparatus and properties of sapphire block.

    Techniques Used: Blocking Assay

    Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.
    Figure Legend Snippet: Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.

    Techniques Used:

    Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.
    Figure Legend Snippet: Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.

    Techniques Used:

    Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.
    Figure Legend Snippet: Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.

    Techniques Used:

    Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.
    Figure Legend Snippet: Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.

    Techniques Used:

    Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.
    Figure Legend Snippet: Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.

    Techniques Used:

    Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.
    Figure Legend Snippet: Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.

    Techniques Used:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.
    Figure Legend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.

    Techniques Used:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).
    Figure Legend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).

    Techniques Used:

    Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .
    Figure Legend Snippet: Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .

    Techniques Used:



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    Vickers indentation apparatus and properties of sapphire block.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Vickers indentation apparatus and properties of sapphire block.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques: Blocking Assay

    Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques: