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Determination of Optimal Processing Conditions for the Production of Polyamide 11 Parts using the Laser Sintering Process.

, , , and . Int. J. Recent Contributions Eng. Sci. IT, 3 (1): 5-12 (2015)

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Mechanical Properties of Laser Beam Melting Components Depending on Various Process Errors., , , and . NEW PROLAMAT, volume 411 of IFIP Advances in Information and Communication Technology, page 153-166. Springer, (2013)Robustness analysis of imaging system for inspection of laser beam melting systems., , , and . ETFA, page 1-4. IEEE, (2014)Compound quality assessment in laser beam melting processes using layer images., , , and . I2MTC, page 1-6. IEEE, (2017)Design-Opportunities and Limitations on Additive Manufacturing Determined by a Suitable Test-Specimen., and . NEW PROLAMAT, volume 411 of IFIP Advances in Information and Communication Technology, page 138-152. Springer, (2013)High resolution imaging for inspection of Laser Beam Melting systems., , , and . I2MTC, page 707-712. IEEE, (2013)Determination of Optimal Processing Conditions for the Production of Polyamide 11 Parts using the Laser Sintering Process., , , and . Int. J. Recent Contributions Eng. Sci. IT, 3 (1): 5-12 (2015)Robust calibration marker detection in powder bed images from laser beam melting processes., , , , and . ICIT, page 910-915. IEEE, (2016)Long-term Properties of Laser Sintered Parts of Polyamide 12 - Influence of Storage Time and Temperature on the Aging Behavior., , , , , and . Int. J. Recent Contributions Eng. Sci. IT, 3 (1): 20-27 (2015)Detection of elevated regions in surface images from laser beam melting processes., , , and . IECON, page 1270-1275. IEEE, (2015)