Powder-Bed Stabilization for Powder-Based Additive Manufacturing
被引:21
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作者:
Zocca, Andrea
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BAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, GermanyBAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
Zocca, Andrea
[1
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Gomes, Cynthia M.
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BAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, GermanyBAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
Gomes, Cynthia M.
[1
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Muehler, Thomas
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机构:
Tech Univ Clausthal, Dept Engn Ceram, D-38678 Clausthal Zellerfeld, GermanyBAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
Muehler, Thomas
[2
]
Guenster, Jens
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BAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
Tech Univ Clausthal, Dept Engn Ceram, D-38678 Clausthal Zellerfeld, GermanyBAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
Guenster, Jens
[1
,2
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机构:
[1] BAM Fed Inst Mat Res & Testing, Div Ceram Proc & Biomat, D-12203 Berlin, Germany
The most successful additive manufacturing (AM) technologies are based on the layer-by-layer deposition of a flowable powder. Although considered as the third industrial revolution, one factor still limiting these processes to become completely autonomous is the often necessary build-up of support structures. Besides the prevention of lateral shifts of the part during the deposition of layers, the support assures quality and stability to the built process. The loose powder itself surrounding the built object, or so-called powder-bed, does not provide this sustenance in most existent technology available. Here we present a simple but effective and economical method for stabilizing the powder-bed, preventing distortions in the geometry with no need for support structures. This effect, achieved by applying an air flow through the powder-bed, is enabling an entirely autonomous generation of parts and is a major contribution to all powder-based additive manufacturing technologies. Moreover, it makes powder-based AM independent of gravitational forces, which will facilitate crafting items in space from a variety of powdery materials.
机构:
Dalian Univ Technol, Sch Math Sci, Key Lab Computat Math & Data Intelligence Liaoning, Dalian 116024, Peoples R ChinaDalian Univ Technol, Sch Math Sci, Key Lab Computat Math & Data Intelligence Liaoning, Dalian 116024, Peoples R China
Wang, Weiming
Xia, Yi
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机构:
Chongqing Univ, Key Lab New Technol Construct Cities Mt Area, Minist Educ, Chongqing 400045, Peoples R China
Chongqing Univ, Sch Civil Engn, Chongqing 400045, Peoples R ChinaDalian Univ Technol, Sch Math Sci, Key Lab Computat Math & Data Intelligence Liaoning, Dalian 116024, Peoples R China
机构:
ORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, JapanORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, Japan
Takaku, Kazuaki
Suzuki, Shota
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ORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, JapanORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, Japan
Suzuki, Shota
Ikeshoji, Toshi-Taka
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机构:
Kindai Univ, Res Inst Fundamental Technol Next Generat, 1 Umenobe, Higashihiroshima, Hiroshima 7392116, JapanORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, Japan
Ikeshoji, Toshi-Taka
Kyogoku, Hideki
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机构:
Kindai Univ, Res Inst Fundamental Technol Next Generat, 1 Umenobe, Higashihiroshima, Hiroshima 7392116, JapanORIX Rentec Corp, 3-25-3 Kanamori, Machida, Tokyo 1948585, Japan
机构:
Tongji Univ, Dept Bridge Engn, Shanghai, Peoples R China
Columbia Univ, Dept Civil Engn & Engn Mech, New York, NY 10027 USATongji Univ, Dept Bridge Engn, Shanghai, Peoples R China
Xin, Haohui
Sun, WaiChing
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机构:
Columbia Univ, Dept Civil Engn & Engn Mech, New York, NY 10027 USATongji Univ, Dept Bridge Engn, Shanghai, Peoples R China
Sun, WaiChing
Fish, Jacob
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机构:
Columbia Univ, Dept Civil Engn & Engn Mech, New York, NY 10027 USATongji Univ, Dept Bridge Engn, Shanghai, Peoples R China