Cite

[1] Palček, P., Porubčan, J., Blažek, D., Trojanová, Z. (2007). Internal friction in commercial aluminium alloy AW-2007. Procedia Engineering, 10, 1226-1231.10.1016/j.proeng.2011.04.204Search in Google Scholar

[2] Miller, W.S., Zhuang, L., Bottema, J., Wittebrood, A.J., De Smet, P., Haszler, A. (2000). Recent development in aluminum alloys for the automotive industry. Materials Science and Engineering A, 280, 37-49.10.1016/S0921-5093(99)00653-XSearch in Google Scholar

[3] Huang, J.C., Shin, C.S., Chan, S.L.I. (2004). Effect of temper, specimen orientation and test temperature on tensile and fatigue properties of wrought and PM AA6061-alloys. International Journal of Fatigue, 26, 691-703.10.1016/j.ijfatigue.2003.11.006Search in Google Scholar

[4] Zeng, L., Li, Z., Che, R., Shikama, T., Yoshihara, S., Aiura, T., Noguchi, H. (2014). Mesoscopic analysis of fatigue strength property of a modified 2618 aluminum alloy. International Journal of Fatigue, 59, 215-223.10.1016/j.ijfatigue.2013.08.016Search in Google Scholar

[5] Ahuja, B., Karg, M., Nagulin, K.Y., Schmidt, M. (2014). Fabrication and characterization of high strength Al-Cu alloys processed using laser beam melting in metal powder bed. Physics Procedia, 56, 135-146.10.1016/j.phpro.2014.08.156Search in Google Scholar

[6] Chen, D.C., You, C.S., Gao, F.Y. (2014) Analysis and experiment of 7075 aluminum alloy tensile test. Procedia Engineering, 81, 1252-1258.10.1016/j.proeng.2014.10.106Search in Google Scholar

[7] aluMATTER. 2xxx series alloys. http://aluminium.matter.org.uk/content/html/eng/default.asp?catid=214&pageid=2144417081.Search in Google Scholar

[8] Magee, A., Ladani, L., Topping, T.D., Lavernia, E.J. (2012). Effects of tensile test parameters on the mechanical properties of a bimodal Al-Mg alloy. Acta Materialia, 60, 5838-5849.10.1016/j.actamat.2012.07.024Search in Google Scholar

[9] Podgornik, B., Leskovšek, V. (2013). Microstructure and origin of hot work tool steel fracture toughness deviation. Metallurgical and Materials Transaction A, 44, 5694-5702.10.1007/s11661-013-1921-6Search in Google Scholar

[10] Désenfant, M., Priel, M. (2006). Road map for measurement uncertainty evaluation. Measurement, 39, 841-848.10.1016/j.measurement.2006.04.008Search in Google Scholar

[11] Imai, H. (2013). Expanding needs for metrological traceability and measurement uncertainty. Measurement, 46, 2942-2945.10.1016/j.measurement.2013.04.046Search in Google Scholar

[12] Beckert, S.F., Domeneghetti, G., Bond, D. (2014). Using historical results obtained in the tensile tests for Type A evaluation of uncertainty. Measurement, 51, 420-428.10.1016/j.measurement.2013.12.015Search in Google Scholar

[13] Kuhinek, D., Zorić, I., Hrženjak, P. (2011). Measurement uncertainty in testing of uniaxial compressive strength and deformability of rock samples. Measurement Science Review, 11 (4), 112-117.10.2478/v10048-011-0021-2Search in Google Scholar

[14] Joint Committee for Guides in Meteorology. (2008). Evaluation of measurement data - Guide to the Expression of uncertainty in measurement. JCGM 100:2008.Search in Google Scholar

[15] Kessel, W. (2002) Measurement uncertainty according to ISO/BIPM-GUM. Thermochimica Acta, 382, 1-16.10.1016/S0040-6031(01)00729-8Search in Google Scholar

[16] Klysz, S., Lisiecki, J. (2008) Selected problems of measurement uncertainty - Part I. Technical Sciences, 11, 253-264.10.2478/v10022-008-0018-8Search in Google Scholar

[17] Klysz, S., Lisiecki, J. (2008) Selected problems of measurement uncertainty - Part II. Technical Sciences, 11, 265-276.10.2478/v10022-008-0019-7Search in Google Scholar

[18] Tingdong, X., Hongyao, Y., Zhenjun, L., Zongwen, Z. (2015) The measurement uncertainty of reduction in area of metals in tensile testing system. Measurement, 66, 1-9.10.1016/j.measurement.2015.01.018Search in Google Scholar

[19] International Organization for Standardization. (2009). Metallic materials - Tensile testing - Part 1: Method of test at room temperature. ISO 6892-1.Search in Google Scholar

[20] Levins, R., Lopez, C. (1999) Toward an ecosocial view of health. International Journal of Health Services, 29, 261-293.10.2190/WLVK-D0RR-KVBV-A1DH10379454Search in Google Scholar

[21] Spiegel, M.R. (1992). Theory and Problems of Probability and Statistics. McGraw-Hill, 116-117.Search in Google Scholar

[22] metrology.wordpress.com. (2009). Student’s t-factors. https://metrology.files.wordpress.com/2009/08/students-t-factor.jpg.Search in Google Scholar

[23] EURAMET e.V. (2011). Uncertainty of force measurements - Calibration guide, Ver. 2. http://www.euramet.org/Media/docs/Publications/calguides/EURAMET_cg-4__v_2.0_Uncertainty_of_Force_Measurements.pdfSearch in Google Scholar

[24] Gómez-Parra, A., Puerta, F.J., Rosales, E.I., González- Madrigal, J.M., Marcos, M. (2013) Study of the influence of cutting parameters on the Ultimate Tensile Strength (UTS) of UNS A92024 alloy dry turned bars. Procedia Engineering, 63, 796-803. 10.1016/j.proeng.2013.08.250Search in Google Scholar

eISSN:
1335-8871
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Electrical Engineering, Control Engineering, Metrology and Testing