Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties

To respond to the requirements for porous Ti sheet with the balanced properties of high porosity and good mechanical properties, and to optimize the manufacturing conditions of the simple powder-filling plus sintering process, effects of sintering temperatures on density and bending strength in poro...

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Main Authors: Goto Yasuhiko, Inoue Yosuke, Fujii Hideki, Horikawa Matsuhide
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_13004.pdf
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author Goto Yasuhiko
Inoue Yosuke
Fujii Hideki
Horikawa Matsuhide
author_facet Goto Yasuhiko
Inoue Yosuke
Fujii Hideki
Horikawa Matsuhide
author_sort Goto Yasuhiko
collection DOAJ
description To respond to the requirements for porous Ti sheet with the balanced properties of high porosity and good mechanical properties, and to optimize the manufacturing conditions of the simple powder-filling plus sintering process, effects of sintering temperatures on density and bending strength in porous Ti sheet were investigated. The optimum sintering condition was 900-950 °C for 1h to obtain porous Ti sheet with the balanced density ratio (around 40%) and high bending strength. The polyhedron shape of HDH powders contributed to those balanced properties, in which localized sintering raised bending strength with keeping high porosity (low density). Using the optimum manufacturing conditions, large sized porous Ti sheet of 400 × 800 × 0.5 mm was successfully manufactured.
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spelling doaj.art-cde3dee1d35e4f7abe8ff55a943f4b802022-12-21T18:38:15ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013211300410.1051/matecconf/202032113004matecconf_ti2019_13004Development of Porous Titanium Sheet with High Porosity and Good Mechanical PropertiesGoto YasuhikoInoue YosukeFujii HidekiHorikawa MatsuhideTo respond to the requirements for porous Ti sheet with the balanced properties of high porosity and good mechanical properties, and to optimize the manufacturing conditions of the simple powder-filling plus sintering process, effects of sintering temperatures on density and bending strength in porous Ti sheet were investigated. The optimum sintering condition was 900-950 °C for 1h to obtain porous Ti sheet with the balanced density ratio (around 40%) and high bending strength. The polyhedron shape of HDH powders contributed to those balanced properties, in which localized sintering raised bending strength with keeping high porosity (low density). Using the optimum manufacturing conditions, large sized porous Ti sheet of 400 × 800 × 0.5 mm was successfully manufactured.https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_13004.pdf
spellingShingle Goto Yasuhiko
Inoue Yosuke
Fujii Hideki
Horikawa Matsuhide
Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
MATEC Web of Conferences
title Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
title_full Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
title_fullStr Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
title_full_unstemmed Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
title_short Development of Porous Titanium Sheet with High Porosity and Good Mechanical Properties
title_sort development of porous titanium sheet with high porosity and good mechanical properties
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_13004.pdf
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AT inoueyosuke developmentofporoustitaniumsheetwithhighporosityandgoodmechanicalproperties
AT fujiihideki developmentofporoustitaniumsheetwithhighporosityandgoodmechanicalproperties
AT horikawamatsuhide developmentofporoustitaniumsheetwithhighporosityandgoodmechanicalproperties