研究目的
To analyze the DMLS process through an investigation of resultant surface roughness and bulk densities and their correlations.
研究成果
The study demonstrates that line roughness measurements can provide an accurate method for fine-tuning optimized DMLS process parameters, indirectly considering optimum fractional density. The energy densities corresponding to the maximum fractional density and minimum line roughness parameters are indicators of the optimum process parameters.
研究不足
The study is limited to Ti-6Al-4 V powder and does not explore other materials. The range of process parameters is dictated by the feasibility of fabricating the samples, which may not cover all possible scenarios in industrial applications.
1:Experimental Design and Method Selection:
The study involves fabricating more than 150 rectangular cubic samples with varying DMLS process parameters and a geometrical parameter using Ti-6Al-4 V powder. Two line roughness parameters are defined and measured for all samples.
2:Sample Selection and Data Sources:
Samples are fabricated using an EOS M290 machine under an inert argon atmosphere.
3:List of Experimental Equipment and Materials:
Equipment includes a GilSonic UltraSiever, Qualtech Flow Meter, Qualtech Tap Density Meter, Bruker G-8 Galileo, Bruker G-4 Icarus, Keyence digital microscope, and Mettler Toledo analytical weight balance.
4:Experimental Procedures and Operational Workflow:
Samples are fabricated with varying laser power, scanning speed, hatch spacing, and build height. Surface roughness and fractional density measurements are conducted.
5:Data Analysis Methods:
The variations in line roughness parameters and fractional density with respect to DMLS process parameters are analyzed using a two-term exponential function.
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GilSonic UltraSiever
GA-8
GilSonic
Determining the powder size distribution following ASTM B214-16 standard
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Qualtech Flow Meter
Qualtech
Measuring flowability with stainless steel Hall funnel following ASTM B213-17 standard
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Qualtech Tap Density Meter
QPI-TDM1800
Qualtech
Measuring tap and apparent density following ASTM B527-15 and ASTM B212-17 standards
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Bruker G-8 Galileo
Bruker
Measuring the oxygen (O), nitrogen (N), and hydrogen (H) contents following the ASTM E1409-13 standard
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Bruker G-4 Icarus
Bruker
Measuring the total carbon (C) content in the powders following the ASTM E1941-16 standard
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EOS M290
EOS
Used for DMLS of the Ti-6Al-4 V samples under an inert argon atmosphere
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Keyence digital microscope
VHX-6000
Keyence
Measuring the roughness parameters
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Mettler Toledo analytical weight balance
ME104E
Mettler Toledo
Used for the fractional density measurements of the samples according to the ASTM B311?17 standard
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Archimedes density kit
ME-DNY-4
Mettler Toledo
Used for the fractional density measurements of the samples according to the ASTM B311?17 standard
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