Title of article :
Effects of Scan Direction and Orientation on Mechanical Properties of Laser Sintered Polyamide-12
Author/Authors :
Nelson، J. A. نويسنده , , Galloway، G. نويسنده Department of Mechanical Engineering, Lancaster University, Lancaster, UK , , Rennie، A. E. W. نويسنده Department of Mechanical Engineering, Lancaster University, Lancaster, UK , , Abram، T. N. نويسنده Department of Mechanical Engineering, Lancaster University, Lancaster, UK , , Bennett، G. R. نويسنده CRDM Ltd, 3D Systems Europe, High Wycombe, UK ,
Issue Information :
فصلنامه با شماره پیاپی 28 سال 2014
Pages :
7
From page :
19
To page :
25
Abstract :
In order to understand the impact of layer-wise scanning direction in the Selective Laser Sintering process, test coupons were manufactured for mechanical testing from DuraForm™ Polyamide powder. The effects of laser energy density, varying between 0.003 and 0.024 J/mm2 were examined in test specimens rotated 90? through the Z axis. SLS machines do not always facilitate ‘cross-hatching’ of layers and therefore orientation has a major influence on part quality. When employed, the cross-hatching technique scans successive layers perpendicularly to the previous. Studying how parts perform with scan lines in a common direction, will assist in the understanding of how SLS parts behave in practice. Results showed that physical density, tensile strength and elongation rose with energy density up to 0.012 J/mm². This initial rise was due to a continued improvement in particle fusion with increasing energy density. Above 0.012 J/mm², these properties started to decline at different rates depending on their orientation (scan direction) on the part bed. Specimen’s oriented perpendicularly to the X axis exhibited a greater elongation at the expense of tensile strength, when compared to parallel specimens.
Journal title :
International Journal of Advanced Design and Manufacturing Technology
Serial Year :
2014
Journal title :
International Journal of Advanced Design and Manufacturing Technology
Record number :
2123251
Link To Document :
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