The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase
A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong ori...
Ausführliche Beschreibung
Autor*in: |
Garces, G. [verfasserIn] |
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Format: |
E-Artikel |
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Sprache: |
Englisch |
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2014transfer abstract |
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Umfang: |
10 |
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Enthalten in: Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity - Apeland, Terje ELSEVIER, 2014transfer abstract, Amsterdam [u.a.] |
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Übergeordnetes Werk: |
volume:55 ; year:2014 ; pages:167-176 ; extent:10 |
Links: |
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DOI / URN: |
10.1016/j.intermet.2014.07.015 |
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Katalog-ID: |
ELV034088555 |
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520 | |a A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. | ||
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10.1016/j.intermet.2014.07.015 doi GBVA2014017000003.pica (DE-627)ELV034088555 (ELSEVIER)S0966-9795(14)00217-9 DE-627 ger DE-627 rakwb eng 660 670 660 DE-600 670 DE-600 540 VZ 540 VZ 35.40 bkl Garces, G. verfasserin aut The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase 2014transfer abstract 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier Muñoz-Morris, M.A. oth Morris, D.G. oth Jimenez, J.A. oth Perez, P. oth Adeva, P. oth Enthalten in Elsevier Science Apeland, Terje ELSEVIER Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity 2014transfer abstract Amsterdam [u.a.] (DE-627)ELV023024852 volume:55 year:2014 pages:167-176 extent:10 https://doi.org/10.1016/j.intermet.2014.07.015 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 35.40 Anorganische Chemie: Allgemeines VZ AR 55 2014 167-176 10 045F 660 |
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10.1016/j.intermet.2014.07.015 doi GBVA2014017000003.pica (DE-627)ELV034088555 (ELSEVIER)S0966-9795(14)00217-9 DE-627 ger DE-627 rakwb eng 660 670 660 DE-600 670 DE-600 540 VZ 540 VZ 35.40 bkl Garces, G. verfasserin aut The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase 2014transfer abstract 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier Muñoz-Morris, M.A. oth Morris, D.G. oth Jimenez, J.A. oth Perez, P. oth Adeva, P. oth Enthalten in Elsevier Science Apeland, Terje ELSEVIER Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity 2014transfer abstract Amsterdam [u.a.] (DE-627)ELV023024852 volume:55 year:2014 pages:167-176 extent:10 https://doi.org/10.1016/j.intermet.2014.07.015 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 35.40 Anorganische Chemie: Allgemeines VZ AR 55 2014 167-176 10 045F 660 |
allfields_unstemmed |
10.1016/j.intermet.2014.07.015 doi GBVA2014017000003.pica (DE-627)ELV034088555 (ELSEVIER)S0966-9795(14)00217-9 DE-627 ger DE-627 rakwb eng 660 670 660 DE-600 670 DE-600 540 VZ 540 VZ 35.40 bkl Garces, G. verfasserin aut The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase 2014transfer abstract 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier Muñoz-Morris, M.A. oth Morris, D.G. oth Jimenez, J.A. oth Perez, P. oth Adeva, P. oth Enthalten in Elsevier Science Apeland, Terje ELSEVIER Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity 2014transfer abstract Amsterdam [u.a.] (DE-627)ELV023024852 volume:55 year:2014 pages:167-176 extent:10 https://doi.org/10.1016/j.intermet.2014.07.015 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 35.40 Anorganische Chemie: Allgemeines VZ AR 55 2014 167-176 10 045F 660 |
allfieldsGer |
10.1016/j.intermet.2014.07.015 doi GBVA2014017000003.pica (DE-627)ELV034088555 (ELSEVIER)S0966-9795(14)00217-9 DE-627 ger DE-627 rakwb eng 660 670 660 DE-600 670 DE-600 540 VZ 540 VZ 35.40 bkl Garces, G. verfasserin aut The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase 2014transfer abstract 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier Muñoz-Morris, M.A. oth Morris, D.G. oth Jimenez, J.A. oth Perez, P. oth Adeva, P. oth Enthalten in Elsevier Science Apeland, Terje ELSEVIER Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity 2014transfer abstract Amsterdam [u.a.] (DE-627)ELV023024852 volume:55 year:2014 pages:167-176 extent:10 https://doi.org/10.1016/j.intermet.2014.07.015 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 35.40 Anorganische Chemie: Allgemeines VZ AR 55 2014 167-176 10 045F 660 |
allfieldsSound |
10.1016/j.intermet.2014.07.015 doi GBVA2014017000003.pica (DE-627)ELV034088555 (ELSEVIER)S0966-9795(14)00217-9 DE-627 ger DE-627 rakwb eng 660 670 660 DE-600 670 DE-600 540 VZ 540 VZ 35.40 bkl Garces, G. verfasserin aut The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase 2014transfer abstract 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier Muñoz-Morris, M.A. oth Morris, D.G. oth Jimenez, J.A. oth Perez, P. oth Adeva, P. oth Enthalten in Elsevier Science Apeland, Terje ELSEVIER Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity 2014transfer abstract Amsterdam [u.a.] (DE-627)ELV023024852 volume:55 year:2014 pages:167-176 extent:10 https://doi.org/10.1016/j.intermet.2014.07.015 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 35.40 Anorganische Chemie: Allgemeines VZ AR 55 2014 167-176 10 045F 660 |
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Enthalten in Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity Amsterdam [u.a.] volume:55 year:2014 pages:167-176 extent:10 |
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Enthalten in Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity Amsterdam [u.a.] volume:55 year:2014 pages:167-176 extent:10 |
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Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity |
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660 670 660 DE-600 670 DE-600 540 VZ 35.40 bkl The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics Elsevier |
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ddc 660 ddc 670 ddc 540 bkl 35.40 Elsevier B. Texture Elsevier D. Microstructure Elsevier B. Anisotropy Elsevier Mechanical properties Elsevier A. Intermetallics |
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Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity |
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Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity |
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The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase |
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The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase |
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Garces, G. |
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Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity |
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Kidney donors and kidney transplants have abnormal aminothiol redox status, and are at increased risk of oxidative stress and reduced redox buffer capacity |
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role of extrusion texture on strength and its anisotropy in a mg-base alloy composed of the long-period-structural-order phase |
title_auth |
The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase |
abstract |
A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. |
abstractGer |
A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. |
abstract_unstemmed |
A Mg–Y–Zn alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion to flat bar. An elongated microstructure is obtained with different grain orientations along the extrusion, transverse and normal directions, leading to a strong orientation dependence of strength. Differences of tensile and compressive stress are also noted. The importance of basal slip and other dislocation-dependent deformation mechanisms is discussed. The large tension-compression strength differences are considered to imply that twinning plays an important role in determining strength. The analysis of deformation mechanisms and strengthening is supported by metallographic studies of surface slip bands and dislocation distributions. |
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title_short |
The role of extrusion texture on strength and its anisotropy in a Mg-base alloy composed of the Long-Period-Structural-Order phase |
url |
https://doi.org/10.1016/j.intermet.2014.07.015 |
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Muñoz-Morris, M.A. Morris, D.G. Jimenez, J.A. Perez, P. Adeva, P. |
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Muñoz-Morris, M.A. Morris, D.G. Jimenez, J.A. Perez, P. Adeva, P. |
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