The Texture Analysis Software - LaboTex - References

ADC (arbitrary defined cell) Method: direct method for ODF computation similar to WIMV method but based on the use of projection tubes in orientation space

The LaboTex Reference:

  • K.Pawlik, P.Ozga: "LaboTex: The Texture Analysis Software",'Göttinger Arbeiten zur Geologie und Paläontologie', SB4, 1999.

The ADC Method - Main References:

  • K.Pawlik - phys.stat.sol.(b) 134 (1986), p.477, "Determination of the Orientation Distribution Function from Pole Figures in Arbitrarily Defined Cells" Abstract ,
  • K.Pawlik, J.Pospiech - Proc. of Int. Workshop, Clausthal-Zellerfeld, Germany, (1986), p127
  • K.Pawlik, J.Pospiech, K.Lucke - Proc. of ICOTOM-8, Santa Fe, USA, (1987), p105,"The Development of a New Direct Method of ODF Reproduction From Pole Figures and its Testing with the Help of Model Functions"
  • K.Pawlik, W.Truszkowski, J.Pospiech, T.Pawlik - Proc. of ICOTOM-8, Santa Fe , USA (1987), p531
  • K.Pawlik, J.Pospiech, K.Lucke - Proc. of ICOTOM-9, Avignon , France, (1990), p25, "The ODF approximation from pole figures with the aid of the ADC-method".
  • K.Pawlik - Proc. of EPDIC-2, Enschede, The Netherlands, (1992), p151
  • K.Pawlik - Proc. of ICOTOM-10, Clausthal-Zellerfeld, Germany, (1993), p401
  • H.R.Wenk, K Pawlik, J Pospiech and J.S Kallend - Deconvolution of superposed pole figures by discrete ODF methods: Comparison of ADC and WIMV for quartz and calcite with trigonal crystal and triclinic specimen symmetry - Textures and Microstructures 22 (1994), p233-260.
  • U.F.Kocks, C.N.Tome, H.R.Wenk, "Texture and Anisotropy", Cambridge University Press. (2000);

    Others, Selected References on LaboTex and ADC Method:

  • "... The strong and weak points of each method are examined showing that the iterative discrete methods (ADC and WIMV) are better suited for the reproduction of the texture function in the present case. In comparing these two discrete methods, it is evidenced that the ADC method reproduces more accurately both the experimental and synthetic texture functions over the entire range of texture sharpness considered ..." F.Caleyo, T.Baudin, M.H.Mathon and R.Penelle - Comparison of several methods for the reproduction of the orientation distribution function from pole figures in medium to strong textured materials - Eur. Phys. J. AP 15 (2001), p85-96 Abstract
  • "... A discrete method (called as the Arbitrarily Defined Cells method) was applied to calculate the ODF. The 3-D distribution of orientations of the cellulose crystalline areas was reconstructed in the space of the Euler angles. Additionally, the complete pole figures as well as the inverse ones were recalculated. The presented analysis of the cellulose texture provides more extensive information on the space organisation of microfibrils than the standard methods...", Olek W., Pawlik K., Bonarski J. (2000): Space orientation of the crystalline areas of cellulose. Proceedings of the International Conference on Wood and Wood Fiber Composites, 13-15 April 2000, Stuttgart, Germany: 37-46.
  • "... Direct Methods (WIMV, ADC) With 1 Degree Resolution Are Preferred...", K.J.Kozaczek,D.S.Kurtz, Quantitative texture analysis of blanket films and interconnects, Workshop on Texture in Electronic Applications NIST, Gaithersburg, MD, October 10-11, 2000. 2011-2012
  • "... For a more detailed texture analysis, metallurgists often examine textures using the ODF in Euler space rather than pole figures. The ODFs in Bunge’s Euler space were constructed from the pole figures exported by MAUD using the LaboTex software (Pawlik & Ozga, 1999). Because six complete pole figures were used as input for calculating the ODF for each phase, the ambiguity introduced in this process is negligible. ...", Yusuke Onuki, Akinori Hoshikawa, Shigeo Sato, Pingguang Xu, Toru Ishigaki, Yoichi Saito, Hidekazu Todoroki and Makoto Hayashi, Rapid measurement scheme for texture in cubic metallic materials using time-of-flight neutron diffraction at iMATERIA, (ODF,tof,iMATERIA) Journal of Applied Crystallography, 49 (2016) 1579-1584, doi:View 10.1107/S160057671601164
  • Fang Han, Xuan Luo, Knut Marthinsen, Guilin Wu, Ziyong Hou, Xiaoxu Huang, Effect of initial grain size on the recrystallization behavior and recrystallization texture of a Mg–3Gd alloy, Journal of Materials Science & Technology, Volume 188, 2024, Pages 169-182, ISSN 1005-0302, https://doi.org/10.1016/j.jmst.2023.11.044.
  • Shih-Chieh Hsiao, Chih-I Chang, Tien-Yu Tseng, and Jui-Chao Kuo, Cellular Automaton-Based Modeling of Recrystallization Texture Considering Instability Criterion and Nonuniform Boundary Mobility in AA1100 Aluminum Alloy, Adv. Eng. Mater. 2023, 25, 2201687, https://doi.org/10.1002/adem.202201687
  • Itzhak I. Maor, Katharina Kruppa, Adi Rozencweig, Amir Sterzer, Frank Steinbach, Vadim Beilin, Bernd Breidenstein, Gennady E. Shter, Meirav Mann-Lahav, Armin Feldhoff, and Gideon S. Grader, Superior Thermoelectric Performance of Textured, Ca3Co4−xO9+𝜹 Ceramic Nanoribbons, Adv. Funct. Mater. 2023, 33, 2304464, DOI: 10.1002/adfm.202304464
  • Yogesh Singh, Sailesh Bhuyan, Kumud Kant Mehta, Effect of strain rate on the compressive strength and texture of maraging steel grade 250, Materials Today: Proceedings, Volume 91, Part 1, 2023, Pages 125-130, ISSN 2214-7853, https://doi.org/10.1016/j.matpr.2023.05.666.
  • S. Jena, R. Dawn, W.-Y. Choi, Y. Singh, A. Ghosh, S.K. Sahoo, M.H. Jung, J. Gardner, V.K. Verma, K. Amemiya, V.R. Singh, Texture, electronic and magnetic states of Mn atoms in polycrystalline MnSi thin films facing a c-sapphire substrate studied by soft X-ray magnetic circular dichroism, Thin Solid Films, Volume 786, 2023, 140097, ISSN 0040-6090, https://doi.org/10.1016/j.tsf.2023.140097.
  • G.GIRISH and G.GOPI, Improving the mechanical and corrosion properties of aerospace-grade AA7075 through microstructural modification using low-temperature friction stir processing, Bull. Mater. Sci. (2023) 46:217, https://doi.org/10.1007/s12034-023-03054-7
  • MAREK FARYNA, KRZYSZTOF GŁOWINSKI, ROBERT CHULIST and ZBIGNIEW PEDZICH, Influence of Sintering Conditions on Anisotropy of Grain Boundary Networks and Microstructure Topology in Yttria-Stabilized Zirconia, METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 54A, NOVEMBER 2023 (4372), https://doi.org/10.1007/s11661-023-07171-0
  • Tarun Maredla, Balaji Chaganty, S. Solomon Bobby, Santosh Kumar Sahoo, and C. Vanitha, Effect of Cold Rolling on the Microstructure and Texture of Selective Laser Melting Built Fe-Ni-Cr Steel, JMEPEG 2023, https://doi.org/10.1007/s11665-023-08364-9
  • E.P.Ryklina, K.A.Polyakova, S.R.Murygin, M.G.Isaenkova, M.M.Zaripova, V.A.Fesenko, V.S.Komarov, N.V.Andreev, N.N.Resnina, V.A.Andreev, On Textural Heredity of Ni-rich Ti–Ni alloy: Specific Features of Transformation and Tensile Behavior, Shap. Mem. Superelasticity (2023) 9:384–401, https://doi.org/10.1007/s40830-023-00435-z
  • Kengo Yoshida, Tomohisa Honke, Yasuhito Yamazak, Kunio Hayakawa, Hidetaka Nakanish, Adjustment of crystal orientations and application to crystal plasticity simulation of cup drawing, International Journal of Material Forming (2022) 15: 68, https://doi.org/10.1007/s12289-022-01713-4
  • Valérie Potin, Houssem Boukhalfa, Nicolas Martin, Oblique angle co-deposition of nanocolumnar tungsten thin films with two W sources: Effect of pressure and target current, Materials Chemistry and Physics, Volume 281, 2022, 125864, ISSN 0254-0584, https://doi.org/10.1016/j.matchemphys.2022.125864.
  • ANINDO ROY, SAURABH KUMAR GUPTA SATYAM SUWAS and KAUSHIK CHATTERJEE, The Significance of Crystallographic Texture in Dry Etching of Titanium to Engineer Bioinspired Nanostructured Bactericidal Surfaces, JOM, Vol. 74, No. 9, 2022, https://doi.org/10.1007/s11837-022-05395-w
  • H. Waqas, Sumaira Naz, Muhammad bin Ahmed,Tayyab Ali Khan, Attaullah Shah, Degradation study of polydimethylsiloxane gaskets exposed in research reactor environment using diferent analytical techniques, Chemical Papers (2022) 76:7217–7227, https://doi.org/10.1007/s11696-022-02406-7
  • Jerzy Dryzek, Mirosław Wróbel, Tomasz Czeppe, Recovery and recrystallization in vanadium foil studied by positron annihilation and X-ray methods, International Journal of Refractory Metals and Hard Materials, Volume 103, 2022, 105759, ISSN 0263-4368, https://doi.org/10.1016/j.ijrmhm.2021.105759.
  • Zhengrong Fu, Xingfu Li, Cong Li, Hongjiang Pan, Yunhua Bai, Zhenghong Zhang, Yang Liu, Yifeng Liu, Jingran Yang, Yulan Gong, Chao Deng, Xinkun Zhu, Superior mechanical properties of pure Zr with heterogeneous structure, Materials Characterization, Volume 194, 2022, 112437, ISSN 1044-5803, https://doi.org/10.1016/j.matchar.2022.112437.
  • Xianglong Wang, Li Luo, Wenzhu Li, Origin of fine equiaxed grains in industrial low-temperature grain-oriented silicon steel normalized sheet and their influence on magnetic properties, Journal of Magnetism and Magnetic Materials, Volume 552, 2022, 169210, ISSN 0304-8853, https://doi.org/10.1016/j.jmmm.2022.169210.
  • Andrij Milenin, Mirosław Wróbel, Piotr Kustra, Investigation of the workability and surface roughness of thin brass wires in various dieless drawing technologies, Archives of Civil and Mechanical Engineering (2022) 22:10, https://doi.org/10.1007/s43452-021-00331-2
  • Li Hu, Mingao Li, Qiang Chen, Tao Zhou, Laixin Shi, Mingbo Yang, Dependence of Microstructure Evolution and Mechanical Properties on Loading Direction for AZ31 Magnesium Alloy Sheet with Non‑basal Texture During In‑Plane Uniaxial Tension, Acta Metallurgica Sinica (English Letters) (2022) 35:223–234, https://doi.org/10.1007/s40195-021-01246-w
  • F. Onimus, L. Gélébart, R. Brenner, Polycrystalline simulations of in-reactor deformation of recrystallized Zircaloy-4 tubes: Fast Fourier Transform computations and mean-field self-consistent model, International Journal of Plasticity, Volume 153, 2022, 103272, ISSN 0749-6419, https://doi.org/10.1016/j.ijplas.2022.103272.
  • L.I.Zaynullina and I.V.Alexandrov, Evolution of Crystallographic Texture, Microstructure and Mechanical Properties during Flat Rolling of Alloys of the Cu–Zn System with Different Grain Sizes, Bulletin of the Russian Academy of Sciences: Physics, 2022, Vol. 86, No. 11, pp. 1301–1308. © Allerton Press, Inc., 2022, https://doi.org/10.3103/S1062873822110351
  • D. Panda, S. Tripathy, R.K. Sabat, S. Suwas, and S.K. Sahoo, An Investigation on the Correlation Between Microstructure, Texture, and Mechanical Properties of Mg and its Alloys, JMEPEG (2022) 31:9183–9199, https://doi.org/10.1007/s11665-022-06934-x
  • R.N.Vasin, Quantitative Texture Analysis: Implementation on the SKAT Neutron Diffractometer and Application in Materials and Earth Sciences, Crystallography Reports, 2022, Vol. 67, No. 1, pp. 64–80. © Pleiades Publishing, Inc., 2022, https://doi.org/10.1134/S1063774522010102
  • Dinesh Srivastava, Study of Texture Evolution in Two‑Phase Zr‑2.5wt%Nb Pressure Tube, Material Fabricated Through Double‑Pass Pilgering Route, Transactions of the Indian National Academy of Engineering (2021) 6:533–546, https://doi.org/10.1007/s41403-021-00226-x
  • Andrij Milenin, Mirosław Wróbel, Piotr Kustra, Marek Packo, Dorota Byrska‑Wójcik, Joanna Sulej‑Chojnacka, Bartłomiej Płonka, Mechanical properties, crystallographic texture, and in vitro bio‑corrosion of low‑alloyed Zn–Mg, produced by hot and cold drawing for biodegradable surgical wires, Archives of Civil and Mechanical Engineering (2021) 21:163, https://doi.org/10.1007/s43452-021-00311-6
  • Lailesh Kumar, Santosh Kumar Sahoo, Syed Nasimul Alam, Effect of xGnP/MWCNT reinforcement on mechanical, wear behavior and crystallographic texture of copper-based metal matrix composite, Materials Science and Engineering: B, Volume 263, 2021, 114888, ISSN 0921-5107, https://doi.org/10.1016/j.mseb.2020.114888.
  • M.G.Isaenkova, O.A.Krymskaya, Ya.A.Babich and P.N.Medvedev, Effect of the Crystallographic Texture in the α Phase on the Anisotropy of the Properties of Pseudo-α and (α + β) Titanium Alloy Sheets, Russian Metallurgy (Metally), Vol. 2021, No. 4, pp. 430–436, https://doi.org/10.1134/S0036029521040121
  • Xusheng Yang, Weijiu Huang, Xianghui Zhu, Fei Guo, Yanlong Ma, Linjiang Chai, Ran Zhang, Infuence of delta′ Phase with GP‑I Zones Fillings on Slip Behavior and Cold Rolling Texture in AA2099, Metals and Materials International (2021) 27:3307–3315, https://doi.org/10.1007/s12540-020-00670-4
  • Anna Wójcik, Robert Chulist, Paweł Czaja, Maciej Kowalczyk, Przemysław Zackiewicz, Norbert Schell, Wojciech Maziarz, Evolution of microstructure and crystallographic texture of Ni-Mn-Ga melt-spun ribbons exhibiting 1.15% magnetic field-induced strain, Acta Materialia, Volume 219, 2021, 117237, ISSN 1359-6454, https://doi.org/10.1016/j.actamat.2021.117237.
  • V.D. Sitdikov, R.K. Islamgaliev, G.F. Sitdikova, A.V. Ganeev, and M.A. Nikitin, Unusual Rolling Texture in Ferritic/Martensitic Steel, JMEPEG (2022) 31:1971–1980, https://doi.org/10.1007/s11665-021-06357-0
  • Xiaoyu Fan, Yu Li, Chun Xu, Binjun Wang, Ruizhi Peng, Jianbin Chen, Improved mechanical anisotropy and texture optimization of a 3xx aluminum alloy by differential temperature rolling, Materials Science and Engineering: A, Volume 799, 2021, 140278, ISSN 0921-5093, https://doi.org/10.1016/j.msea.2020.140278.
  • G. Girish and V. Anandakrishnan, Fabrication of Al-Zn-Mg-Cu Matrix Composite by Multi-pass Recursive Friction Stir Processing and Its Characterization, JMEPEG (2021) 30:5868–5888, https://doi.org/10.1007/s11665-021-05844-8
  • R. Sitek, R. Molak, J. Zdunek, P. Bazarnik, P. Wiśniewski, K. Kubiak, J. Mizera, Influence of an aluminizing process on the microstructure and tensile strength of the nickel superalloy IN 718 produced by the Selective Laser Melting, Vacuum, Volume 186, 2021, 110041, ISSN 0042-207X, https://doi.org/10.1016/j.vacuum.2020.110041.
  • Xingming Zhao, Wenbin Liu, Tianlin Wang, AiHua Liu, Tianhao Li, Yijun Chen, XiaoXiao Liu, Xiaochen Ma, Benzhe Sun, Yang Qi, Growth of Bi2Sr2CaCu2O8+δ thin films with enhanced superconducting properties by incorporating NiO nanoparticles, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Volume 627, 2021, 127121, ISSN 0927-7757, https://doi.org/10.1016/j.colsurfa.2021.127121.
  • Jerzy Dryzek, Mirosław Wróbel, Recovery and recrystallization in molybdenum studied by positron annihilation and X-ray methods, International Journal of Refractory Metals and Hard Materials, Volume 97, 2021, 105514, ISSN 0263-4368, https://doi.org/10.1016/j.ijrmhm.2021.105514.
  • Qubo He, Fusheng Pan, Dongzhe Wang, Haiding Liu, Fei Guo, Zhongwei Wang, Yanlong Ma, Microstructure and properties of 316L stainless steel foils for pressure sensor of pressurized water reactor, Nuclear Engineering and Technology, Volume 53, Issue 1, 2021, Pages 172-177, ISSN 1738-5733, https://doi.org/10.1016/j.net.2020.06.006.
  • A. Blanco, J.M. Hallen, Tang Son Nguyen, Tu Le Manh, Influence of crystallographic texture on susceptibility to stress corrosion cracking mechanism of API 5L X52 steel for sour service, Engineering Failure Analysis, Volume 119, 2021, 105002, ISSN 1350-6307, https://doi.org/10.1016/j.engfailanal.2020.105002.
  • A. Pisarev, I. Arkhipov, Ya. Babich, M. Berdnikova, Yu. Gasparyan, K. Gutorov, S. Grashin, V. Efimov, M. Isaenkova, S. Krat, O. Krymskaya, V. Kurnaev, T. Stepanova, E. Vovchenko, I. Vizgalov, M. Zibrov, Post-mortem analyses of gap facing surfaces of tungsten tiles of T-10 ring limiter, Fusion Engineering and Design, Volume 162, 2021, 112105, ISSN 0920-3796, https://doi.org/10.1016/j.fusengdes.2020.112105.
  • Riad Badji, Bellel Cheniti, Charlie Kahloun, Thierry Chauveau, Mohammed Hadji, Brigitte Bacroix, Microstructure, mechanical behavior, and crystallographic texture in a hot forged dual-phase stainless steel, The International Journal of Advanced Manufacturing Technology (2021) 116:1115–1132, https://doi.org/10.1007/s00170-021-07502-8
  • Saliha Gachi, Mouloud Aissani, Thierry Baudin, Anne.Laure Helbert, François Brisset, Sébastien Gautrot, Marie-Hélène Mathon, Djamel Bradai and Fouad Boubenider, The Microstructure, Texture and Mechanical Properties of Friction Stir Welded Aluminum Alloy, Russian Journal of Non-Ferrous Metals, 2020, Vol. 61, No. 5, pp. 523–533. © Allerton Press, Inc., 2020. https://doi.org/10.3103/S1067821220050041
  • Satyaveer Singh Dhinwal, Aman Jyoti Shukla, Somjeet Biswas, Devesh Kumar Chouhan, Evolution of microstructure and crystallographic texture in α-β Brass during equal channel angular pressing, Materials Characterization, Volume 163, 2020, 110270, ISSN 1044-5803, https://doi.org/10.1016/j.matchar.2020.110270.
  • Sk. Jabed Miadad, T. Venugopalan, Nimai Halder, and B. Ravi Kumar, On the Study of Batch Annealing Parameter Optimization for Higher Lankford Value in High Phosphorus Interstitial Free High Strength Steel, JMEPEG (2020) 29:7598–7606, https://doi.org/10.1007/s11665-020-05199-6
  • Lihong Yuan, Mengyao Yang, Yun Li, Wenrui Wang, Hui Zhang, and Wangfeng Zhang, Nondestructive Texture Measurement of As-Received Ti Alloy Tubing via Simultaneous Shaping and Tilting Defocusing Correction, JMEPEG (2020) 29:5080–5087, https://doi.org/10.1007/s11665-020-05056-6
  • Joanna Kowalska and Marcin Kowalski, Development of Microstructure and Texture After Cold-Rolling Fe-24Mn-3Al-3Si High-Manganese Steel, JMEPEG (2020) 29:1495–1501, https://doi.org/10.1007/s11665-019-04516-y
  • Brahim Nabi, Anne-Laure Helbert, François Brisset, Thierry Waeckerlé, Rémy Batonnet, Thierry Baudin, Effect of the hot rolling on Goss development and magnetic induction in an advanced soft magnetic Fe–27%Co alloy, Journal of Alloys and Compounds, Volume 834, 2020, 155149, ISSN 0925-8388, https://doi.org/10.1016/j.jallcom.2020.155149.
  • Biraj Kumar Sahoo, Anjana Deva, Pratiksha Pandey, Lalit Kumar Meena, Sandip Ghosh Chowdhury, and Bimal Kumar Jha, Microstructure–Property Correlation in High-Strength Formable Steel with Varying Nb-Si Content, JMEPEG (2020) 29:1901–1908, https://doi.org/10.1007/s11665-020-04675-3
  • G.D. Sathiaraj, R. Kalsar, S.S.S. Kumar, S. Suwas, W. Skrotzki, Evolution of texture during cold-rolling of a CrCoNi medium-entropy alloy, Materials Today: Proceedings, Volume 27, Part 3, 2020, Pages 2147-2151, ISSN 2214-7853, https://doi.org/10.1016/j.matpr.2019.09.084.
  • Niloofar Eftekhari, Waqas Muhammad, Farahnaz Haftlang, Abbas Zarei-Hanzaki, Étienne Martin, Microstructural evolution and corrosion behavior of Sanicro 28 during thermomechanical processing, Materials Today Communications, Volume 24, 2020, 101228, ISSN 2352-4928, https://doi.org/10.1016/j.mtcomm.2020.101228.
  • José Alberto Pérez Benitez, Tu Le Manh, 7 - Model for the correlation between Barkhausen noise and, microstructure, and physical properties, Editor(s): Tu Le Manh, José Alberto Pérez Benitez, José Hiram Espina Hernández, José Manuel Hallen López, In Woodhead Publishing Series in Electronic and Optical Materials, Barkhausen Noise for Nondestructive Testing and Materials Characterization in Low-Carbon Steels, Woodhead Publishing, 2020, Pages 183-222, ISBN 9780081028001,
  • Tu Le Manh, José Alberto Pérez Benitez, José Hiram Espina Hernández, José Manuel Hallen López, 4 - Materials, Editor(s): Tu Le Manh, José Alberto Pérez Benitez, José Hiram Espina Hernández, José Manuel Hallen López, In Woodhead Publishing Series in Electronic and Optical Materials, Barkhausen Noise for Nondestructive Testing and Materials Characterization in Low-Carbon Steels, Woodhead Publishing, 2020, Pages 95-114, ISBN 9780081028001, https://doi.org/10.1016/B978-0-08-102800-1.00004-6.
  • ADRIAN OPONOWICZ, MARIANNA MARCISZKO-WIĄCKOWSKA, ANDRZEJ BACZMANSKI, MANUELA KLAUS, CHRISTOPH GENZEL, SEBASTIAN WRONSKI, KAMILA KOLLBEK, and MIROSŁAW WROBEL, Gradient of Residual Stress and Lattice Parameter in Mechanically Polished Tungsten Measured Using Classical X-rays and Synchrotron Radiation, METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 37A, JUNE 2020—5945, https://doi.org/10.1007/s11661-020-05967-y
  • I. MEJI, A-CABALLERO, C. ESCOBAR-MARTINEZ, M.PALOMAR-PARDAVE, TU LE MANH, M. ROMERO-ROMO, E. RODRIGUEZ-CLEMENTE, L.LARTUNDO-ROJAS, and I. CAMPOS-SILVA, On the Corrosion Mechanism of Borided X12CrNiMoV12-3 Steel Immersed in a Neutral Aqueous Solution Containing Chloride and Sulfate Ions, METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 51A, SEPTEMBER 2020, https://doi.org/10.1007/s11661-020-05869-z
  • SRIJAN ACHARYA, SUMEET MISHRA, K.U. YAZAR, KAUSHIK CHATTERJEE and SATYAM SUWAS, Evolution of Deformation Texture in Low Modulus b-Ti-34Nb-2Ta-(0, 3)Zr-0.5O Alloys, METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 51A, AUGUST 2020, 4045, https://doi.org/10.1007/s11661-020-05850-w
  • TATIANA MISHUROVA, KATIA ARTZT, JAN HAUBRICH, SERGEI EVSEVLEEV, ALEXANDER EVANS, MATTHIAS MEIXNER, ITZIAR SERRANO MUNOZ, IGOR SEVOSTIANOV, GUILLERMO REQUENA, and GIOVANNI BRUNO, Connecting Diffraction-Based Strain with Macroscopic Stresses in Laser Powder Bed Fused Ti-6Al-4V, METALLURGICAL AND MATERIALS TRANSACTIONS A,VOLUME 51A, JUNE 2020, https://doi.org/10.1007/s11661-020-05711-6
  • JIEHUA LI, JUN LI, OLIVER RENK, REINHARD PIPPAN, and PRADIPTA GHOSH, Effect of Heterophase Interfaces on Microstructure and Crystallographic Texture Evolution During Rolling of Directionally Solidified Ag-Cu Eutectic Alloy, METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 51A, JANUARY 2020, https://doi.org/10.1007/s11661-019-05515-3
  • Gu, B., Chekhonin, P., Schaarschuch, R., Oertel, C., Xin, S. W., & Ma, C. L. (2020). Microstructure, texture and hardness of a metastable b-titanium alloy after bar-rolling and annealing, 825, 1–12. doi:View 10.1016/j.jallcom.2020.154082
  • Hattal, A., Chauveau, T., Djemai, M., Jacques, J., Bacroix, B., & Dirras, G. (2020). Data in brief Data related to spectrum analyzes for phases identification, microstructure and mechanical properties of additive manufactured Ti6Al4V reinforced with nano-Yttria stabilized zirconia. Data in Brief, 29, 105249. doi:View 10.1016/j.dib.2020.105249
  • Ma, D., Yang, P., Gu, X., Onuki, Y., & Sato, S. (2020). Materials Characterization In-situ neutron di ff raction investigation on the martensite transformation , texture evolution and martensite reversion in high manganese TRIP steel. Materials Characterization, 163(March), 110244. doi:View 10.1016/j.matchar.2020.110244
  • Mishra, S., Yazar, K. U., More, A., Kumar, L., Lingam, R., Reddy, N. V, Suwas, S. (2020). Elucidating the deformation modes in incremental sheet forming process: Insights from crystallographic texture, microstructure and mechanical properties. Materials Science & Engineering A, 139311. doi:View 10.1016/j.msea.2020.139311
  • Mishurova, T., Artzt, K., Haubrich, J. A. N., Evsevleev, S., Evans, A., Meixner, M., Bruno, G. (2020). Connecting Diffraction-Based Strain with Macroscopic Stresses in Laser Powder Bed Fused Ti-6Al-4V. Metallurgical and Materials Transactions A. . doi:View 10.1007/s11661-020-05711-6
  • Shrivastava, P., Nasimul, S., Panda, D., & Kumar, S. (2020). Diamond & Related Materials Effect of addition of multiwalled carbon nanotube / graphite nanoplatelets hybrid on the mechanical properties of aluminium. Diamond & Related Materials, 104 (November 2019), 107715. doi:View 10.1016/j.diamond.2020.107715
  • Singh, S., Jyoti, A., Biswas, S., & Kumar, D. (2020). Materials Characterization Evolution of microstructure and crystallographic texture in α - β Brass during equal channel angular pressing. Materials Characterization, 163 (March), 110270. doi:View 10.1016/j.matchar.2020.110270
  • Srinivasan, N., Velmurugan, R., Singh, S. K., Pant, B., & Kumar, R. (2020). Texture strengthening and anisotropic hardening of mill annealed Ti-6Al-4V alloy under equi-biaxial tension. Materials Characterization, 110349. doi:View 10.1016/j.matchar.2020.110349
  • Tang, W., Zhou, G., Shao, Y., Li, D., Peng, Y., & Wang, H. (2020). Materials Characterization On the role of yttrium in microstructure evolution and texture modification during magnesium alloy extrusion. Materials Characterization, 162 (November 2019), 110189. doi:View 10.1016/j.matchar.2020.110189
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  • Espinoza Orias A.A.,"THE RELATIONSHIP BETWEEN THE MECHANICAL ANISOTROPY OF HUMAN CORTICAL BONE TISSUE AND ITS MICROSTRUCTURE", Thesis, University of Notre Dame, 2005. Kusnierz J,"Rolling texture of ECAP processed Al and Cu",TEXTURE AND ANISOTROPY OF POLYCRYSTALS II, SOLID STATE PHENOMENA, 105: 339-344 2005,
  • T.Walde, H.Riedel, ''Modeling Texture Evolution during Rolling of Magnesium Alloy AZ31'', Solid State Phenomena, 105, 285-290, 2005.
  • Kusnierz J, Bogucka J.,"Accumulative roll-bonding (ARB) of A199.8%",ARCHIVES OF METALLURGY AND MATERIALS", 50 (1): 219-230 2005,
  • Ischia G, Wenk HR, Lutterotti L, Berberich F, "Quantitative Rietveld texture analysis of zirconium from single synchrotron diffraction images", JOURNAL OF APPLIED CRYSTALLOGRAPHY, 38: 377-380 (2) 2005.
  • Chateigner D, "Reliability criteria in quantitative texture analysis with experimental and simulated orientation distributions",JOURNAL OF APPLIED CRYSTALLOGRAPHY, 38: 603-611 Part 4 AUG 2005 Kapoor K.,Lahiri D.,Rao S.V.R., Sanyal T.,Saibaba N.,Kashyap B.P.,"Texture evolution in two phase Zr – 2.5 wt-%Nb through modified route",Materials Science and Technology, October 2004, vol. 20, no. 10, pp. 1281-1289(9).
  • Sarma, V. Subramanya; Eickemeyer, J.; Mickel, C.; Schultz, L.; Holzapfel, B., "On the cold rolling textures in some fcc Ni-W alloys" MATERIALS SCIENCE AND ENGINERING: A Volume: 380, Issue: 1-2, August 25, 2004, pp. 30-33
  • J.L.Jones,S.C.Vogel,E.B.Slamovich, K.J.Bowman,"Quantifying texture in ferroelectric bismuth titanate ceramics", Scripta Materialia, Vol: 51, Issue: 12, December, 2004
  • Jones JL, Slamovich EB, Bowman KJ, "Critical evaluation of the Lotgering degree of orientation texture indicator",JOURNAL OF MATERIALS RESEARCH, 19 (11): 3414-3422 NOV 2004,
  • Wenk HR, Lonardelli I, Williams D, "Texture changes in the hcp -> bcc -> hcp transformation of zirconium studied in situ by neutron diffraction",ACTA MATERIALIA, 52 (7): 1899-1907, 2004
  • Jones JL, Vogel SC, Slamovich EB, Bowman KJ, "Quantifying texture in ferroelectric bismuth titanate ceramics",SCRIPTA MATERIALIA, 51 (12): 1123-1127 DEC 2004,
  • Liu JT, Morris JG, "Recrystallization microstructures and textures in AA 5052 continuous cast and direct chill cast aluminum alloy", MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 385 (1-2): 342-351, 2004
  • Wenk HR,"The Textures of Rocks in the Earth's Deep Interior: Part I. Understanding Anisotropy and Textures in Earth Materials", Encyclopedia of Materials: Science and Technology, Elsevier (2004);
  • Li HL, Glavicic MG, Szpunar JA, "A model of texture formation in ZrO2 films", MATERIALS SCIENCE AND ENGINEERING A, 366 (1): 164-174 FEB 5 2004,
  • Wenk HR, Lutterotti L, Vogel S, "Texture analysis with the new HIPPO TOF diffractometer",NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT 515 (2003) 575-588;
  • Anderson PM, Bingert JF, Misra A, Hirth JP,"Rolling textures in nanoscale Cu/Nb multilayers",ACTA MATERIALIA 51 (2003) 6059-6075;
  • Hayakawa Y, Kurosawa M.,"Orientation relationship between primary and secondary recrystallized texture in electrical steel", ACTA MATERIALIA 50 (18): 4527-4534 OCT 28 2002
  • Liu JT, Morris JG,"Macro-, micro- and mesotexture evolutions of continuous cast and direct chill cast AA 3105 aluminum alloy during cold rolling", MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING 357 (2003) 277-296;
  • Liu JT, Morris JG,"Texture and grain-boundary evolutions and direct chill cast AA 5052 aluminum alloy during cold rolling",METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE 34A (2003) 951-966;
  • Liu JT, Morris JG, "Recrystallization textures of continuous cast AA 3015 alloy: Development of the P orientation {011}< 566 >", METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE 34A (2003) 2029-2032;
  • Kusnierz J, Bogucka J.,"Effect of ECAP processing on the properties of cold rolled copper",ARCHIVES OF METALLURGY, 48 (2): 173-182 2003,
  • Kusnierz J, Baudin T, Jasienski Z, Penelle R., "Neutron and X-ray diffraction study of Al and Cu during ECA processing C and subsequent recrystallization",REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 100 (9): 825-833 SEP 2003,
  • Etter AL, Mathon MH, Baudin T, Penelle R., "Stored energy evolution as a function of cold rolling reduction for a Fe-53%Ni alloy and an austenitic-ferritic steel",REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 100 (9): 851-858 SEP 2003,
  • Bechade JL, Mathon MH, Branger V, Regle H, Alamo A., "Texture analysis of oxide dispersion strengthened (ODS) Fe alloys by X-ray and neutron diffraction", JOURNAL DE PHYSIQUE IV 12 (PR6): 155-163 JUL 2002,
  • Kusnierz J, Kurowski M., "Strain softening enects in texture and microstructure of torsioned pre-deformed Al rods",ZEITSCHRIFT FUR METALLKUNDE, 93 (12): 1233-1236 DEC 2002, Etter AL, Mathon MH, Baudin T, Penelle R., "A method of determination of stored energy in single and dual phase cold rolled materials", TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 583-588 2002
  • Kusnierz J, Kurowski M, Mathon MH, Baudin T, Jasienski Z, Penelle R.,"Effect of deformation path on torsion texture and stored energy of copper rods",TEXTURES OF MATERIALS, PTS 1 AND 2 MATERIALS SCIENCE FORUM, 408-4: 625-630 2002,
  • Kusnierz J, Mathon MH, Baudin T, Jasienski Z, Penelle R., "Neutron diffraction study of texture and stored energy in ECA pressed copper",TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 703-708 2002,
  • Kim BK, Szpunar JA, Varano R.,"Texture evolution in grain growth of nanocrystalline Ni",TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 937-942 2002
  • Kim BK, Szpunar JA, Zhilyaev AP., "Annealing texture in thermal stability of ultrafine-grained Ni",TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 943-948 2002,
  • Jura J, Baudin T, Mathon MH, Swiatnicki W, Penelle R., "Microstructure and texture analysis in a cold-rolled austenitic-ferritic steel with duplex structure",TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 1359-1364 2002
  • Caleyo F, Baudin T, Penelle R, "Study of the development of the cube texture in Fe-50%Ni during recrystallization and normal grain growth", EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS 20 (2002) 77-89;
  • Park JY, Szpunar JA, "Influence of the primary recrystallization texture on abnormal grain growth of goss grains in grain oriented electrical steels",TEXTURES OF MATERIALS, PTS 1 AND 2, MATERIALS SCIENCE FORUM, 408-4: 821-826 2002,
  • Park JY, Han KS, Woo JS, Chang SK, Rajmohan N, Szpunar JA,"Influence of primary annealing condition on texture development in grain oriented electrical steels",ACTA MATERIALIA, 50 (7): 1825-1834 APR 19 2002,
  • Etter AL, Mathon MH, Baudin T, Branger V, Penelle R.,"Influence of the cold rolled reduction on the stored energy and the recrystallization texture in a Fe-53%Ni alloy", SCRIPTA MATERIALIA, 46 (4): 311-317 FEB 28 2002,
  • Kusnierz J., "Microstructure and texture evolving under Equal Channel Angular (ECA) processing",ARCHIVES OF METALLURGY, 46 (4): 375-384 2001.
  • Starczewski L, Bonarski JT; "Stress-textural indicators of tribological wear"; MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING 288 (2000) 284-287;
  • Bonarski JT, Wrobel M, Pawlik K,"Quantitative phase analysis of duplex stainless steel using incomplete pole figures", MATERIALS SCIENCE AND TECHNOLOGY, 16 (2000) 657-662;
  • Okuda K, Sakata K, Eloot K, Furukimi O, Obara T, "Mechanism of strong formation of {111} recrystallization texture of cold rolled IF steel sheet with {111} hot band texture", TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN 85 (8): 633-638 AUG 1999,
  • Pawlowski A, Bonarski J,"Plastic deformation in Ti-46at.%Al alloy of cellular-lamellar structure",44 (1999) 267-278;
  • Nowak R, Yoshida F, Morgiel J, Major B,"Postdeposition relaxation of internal stress in sputter-grown thin films caused by ion bombardment",JOURNAL OF APPLIED PHYSICS, 85 (1999) 841-852;
  • Bonarski J, Pawlik K,"Development of texture determination method for the near-surface-layers",ARCHIVES OF METALLURGY, 43 (1998) 141-148;
  • Komatsubara M, Hayakawa Y, Takamiya T, Muraki M, Maeda C, Ishida M, Morito N,"Newly developed grain-oriented Si-steel with thinner gauges", JOURNAL DE PHYSIQUE IV, 8 (1998) 467-474;
  • Eloot K, Okuda K, Sakata K, Obara T,"Texture evolution during cold rolling and recrystallisation of IF steel with a strong {111} hot band texture";ISIJ INTERNATIONAL, 38 (1998) 602-609;
  • Tarasiuk J, Wierzbanowski K, Baczmanski A,"New algorithm for the ODF calculation from pole figures",TEXTURE AND ANISOTROPY OF POLYCRYSTALS MATERIALS SCIENCE FORUM, 273-2 (1998) 133-138;
  • Dutkiewicz J, Bonarski J,"Structure, texture and mechanical properties of AlZnMgCuZr alloy rolled after heat treatments",MATERIALS & DESIGN, 8 (4-6) (1997) 247-252;
  • Hayakawa Y, Szpunar JA, "A comprehensive model of recrystallization for interstitial free steel",ACTA MATERIALIA 45 (1997) 3721-3730;
  • Hayakawa Y, Szpunar JA,"Modeling of texture development during recrystallization of interstitial free steel",ACTA MATERIALIA 45 (1997) 2425-2434;
  • Rajmohan N, Hayakawa Y, Szpunar JA, Root JH,"Neutron diffraction method for stored energy measurement in interstitial free steel",ACTA MATERIALIA 45 (1997) 2485-2494;
  • Hayakawa Y, Szpunar JA,"The role of grain boundary character distribution in secondary recrystallization of electrical steels",ACTA MATERIALIA 45 (1997) 1285-1295;
  • Matthies S, Lutterotti L, Wenk HR, "Advances in texture analysis from diffraction spectra",JOURNAL OF APPLIED CRYSTALLOGRAPHY, 30: 31-42 Part 1 (1997);
  • Akdut N, Foct J, Gottstein G, "Cold rolling texture development of alpha/gamma duplex stainless steels",STEEL RESEARCH 67 (10) (1996) 450-455.
  • N.Akdut,J.Foct, "Phase Boundaries and Deformation in High Nitrogen Duplex Stainless Steels I. - Rolling Texture Development", Scripta Metallurgica et Materiala, Vol: 32, Issue: 1, January 1, 1995 N.Akdut,J.Foct, "Phase Boundaries and Deformation in High Nitrogen Duplex Stainless Steels II. - Analysis of Deformation Mechanisms by Texture Measurements in X2 CrNiMo 22 5 (1.4462) Scripta Metallurgica et Materiala, Vol: 32, Issue: 1, January 1, 1995.
  • Texture Modelling: Co-operation of LaboTex with VPSC , M.Zylina, A.Schrbakov,I.V.Alexandrov,"Computer Modelling of Processes of Texture Development in Pure Copper During Equal Channel Angular Pressing",

Blogs:

http://www.helpertex2.seesaa.net

The ODF Transformation - references:

  • Adam Morawiec, Orientations and Rotations (2003), Springer, ISBN 3-540-40734-0.

The Calculation of the Volume Fraction of Texture Components. The ODF Modelling - references:

  • Determination of Volume Fraction of Texture Components Using LaboTex - Integration Method (manual) - www.labotex.com
  • Determination of Volume Fraction of Texture Components Using LaboTex - Model Functions Method (manual) - www.labotex.com
  • Determination of Volume Fraction of Texture Components Using LaboTex - Modelling of ODF, pole figures and inverse pole figures (manual) - www.labotex.com
  • J.W.Flowers, "Volume Fractions of Texture Components of Cubic Materials", Textures and Microstructures, 1983, Vol.5, pp. 205-218,"A method for obtaining volume fractions in regions about ideal texture components of cubic materials by integration of the orientation distribution function is described".
  • J.H. CHO, A.D. ROLLETT, K.H. OH, "Determination of Volume Fractions of Texture Componentswith Standard Distributions in Euler Space", METALLURGICAL AND MATERIALS TRANSACTIONS A, VOLUME 35A, MARCH 2004—1075.
  • J. Kozaczek, D. S. Kurtz, P.R. Moran, R. Martin, M. E. Gross, K. Evans-Lutterodt, "Methodology of Quantitative Texture Analysis in Thin Films and Interconnects", http://www.hypernex.com/news/pdfs/2000AdvMetfinal.PDF
  • J.Jura, "Application of Model Function in Quantitative Texture Analysis of Cubic Metals", Metallurgy and Foundry Practice, Bulletin 148, No.1530,(1993).
  • S.Matthies, G.W.Vinel,K.Helming,"Standard Distribution in Texture Analysis, Akademie-Verlag Berlin (1987,1988,1991).

The Measurement of Pole Figures - references:

  • "Pole Figures: Registration and Plot Conventions" - www.labotex.com
  • B.D. Cullity,B. D. "Elements of X-ray Diffraction", Addison-Wesley, Reading, Mass (new edition p. 402-431 Pole Figures),
  • H.P. Klug, L.E.Alexander, "X-Ray Diffraction Procedures", John Wiley & Sons",
  • Schulz L.G.; (1949). J.Appl. Phys., 20, 1033,
  • D. Chateigner, P. Germi, M. Pernet: Texture analysis by the Schulz reflection method: defocusing corrections for thin films. J. of Applied Crystallography 25, 1992, 766-769

The Texture and Quantitative Phase Analysis - reference:

  • Bonarski J.T., Wróbel M. and Pawlik K.; (2000). Quantitative phase analysis of duplex stainless steel using incomplete pole figures, Materials Science and Technology Vol. 16 No 6, p. 657-662.

The Texture and ODF - references:

  • H.J. Bunge, "Texture analysis in materials science". Cuvillier Verlag, Göttingen; U.F.Kocks, C.N.Tome,H.R.Wenk, "Texture and Anisotropy", Cambridge University Press. (2000),

Others ODF/Pole Figures Resources:

  • Anisotropy Overview
  • Daniel Chateigner, Combined Analysis