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Z. Ławrynowicz

microstructural changes for the case of P91 steel after long-term ageing. Archives of Civil and Mechanical Engineering, 16 (2016), 813-824. 9. Jingjie Shen, Huilong Yang, Yanfen Li, Sho Kano, Yoshitaka Matsukawa, Yuhki Satoh, Hiroaki Abe: Microstructural stability of an as-fabricated 12Cr-ODS steel under elevated-temperature annealing. Journal of Alloys and Compounds, 695 (2017), 1946-1955. 10. Shrestha T., Alsagabi S.F., Charit I., Potirniche G.P, Glazoff M. V., Effect of Heat Treatment on Microstructure and Hardness of Grade 91 Steel. Metals, 5 (2015), 131

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Magdalena Dudek and Piotr Dudek

References D. Fray, The use of solid electrolytes as sensors in molten metals application, Solid State Ionics 86-88 (1996) 1045. R.V. Kumar, D. Fray, Application of novel sensor in the measurement in very low oxygen potential, Solid State Ionics 70-71 (1994) 588-594. D. Janke, W.A. Fischer: "Parameters p e of partial electronic conductivity in ZrO 2 (CaO) and ThO 2 (Y 2 O 3 ) solid electrolytes between 1200 and 1650°C." Archiv fur das Eisenhuttenwesen 45 (1975) 477

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M. Jażdżewska and B. Majkowska-Marzec

REFERENCES 1. Zielinski A., Sobieszczyk S., Seramak T., Serbinski W., Swieczko-Zurek B., Ossowska A.: Biocompatibility and bioactivity of load-bearing metallic implants, Adv. Mater. Sci. 10 (2011) 21–31. 2. Wang D., Wu G., Lin X. Liu Y.: Surface coating and modification of metallic biomaterials (2015) 345–358. 3. Palanivelu R., Kalainathan S., Kumar A.: Characterization studies on plasma sprayed (AT/HA) bi-layered nanoceramics coating on biomedical commercially pure titanium dental implant, Ceram. Int. 40 (2014) 7745–7751. 4. Vasilescu C

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A. Kausar, W. Ullah, B. Muhammad and M. Siddiq

References 1. Pluta M., Alexandre M., Blacher S., Dubois P., Jerome R.: Metallocene-catalyzed polymerization of ethylene in the presence of graphite, Structure and electrical properties of the composites, Polymer 42 (2001) 9293-9300. 2. Celzard A., Krzesinska M., Begin D., Mareche J. F., Puricelli S., Furdin G.: Preparation, electrical and elastic properties of new anisotropic expanded graphite-based composites. Carbon 40 (2002) 557-566. 3. Zheng W. G., Wong S. C., Sue H. J.: Transport behavior of PMMA

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Z. Ławrynowicz

annealing at 600-900°C for heat-resistant stainless steel. Journal of Alloys and Compounds 567 (2013) 59-64. 10. Sahlaoui H., Sidhom H., Philibert J.: Prediction of chromium depleted-zone evolution during aging of Ni-Cr-Fe alloys. Acta Materialia 50 (2002) 1383-1392. 11. Li J., Liang T., Wang C., Guo T.: Influence of sensitization on passive films in AISI 2205 duplex stainless steel. Journal of Alloys and Compounds 658 (2016) 657-662. 12. Zhang Z., Zhao H, Zhang H., Yu Z., Hu J., He L., Li J.: Effect of isothermal aging on the pitting corrosion

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T. Lendze, A. Mielewczyk-Gryń, K. Gdula-Kasica, B. Kusz and M. Gazda

-4927. Bi L., Zhang S., Fang S., Tao Z., Peng R., Liu W.: A novel anode supported BaCe 0.7 Ta 0.1 Y 0.2 O 3-δ electrolyte membrane for proton-conducting solid oxide fuel cell, Electrochemistry Communications 10 (2008), pp. 1598-601. Zhao L., He B., Ling Y., Xun Z., Peng R., Meng G., Liu X.: Cobalt-free oxide Ba 0.5 Sr 0.5 Fe 0.8 Cu 0.2 O 3 Ld for proton-conducting solid oxide fuel cell cathode, International journal of hydrogen energy 35 (2010), pp. 3769 - 3774. Fu X.-Z, Luo J.-L., Sanger A. R., Xu Z.-R., Chuang K. T

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Farid Ullah, Fahim Al-Neshawy and Jouni Punkki

Shrinkage and Swelling,” German and English version prEN 13892-9:2017. 6. CEB-FIP Model Code (1990): Design Code. Comité Euro-International du Beton, Bulletin d’Information no. 213/214, Ed. Thomas Telford, 1993. 7. Zhao S, Li C, Zhao M & Zhang X: “Experimental Study on Autogenous and Drying Shrinkage of Steel Fiber Reinforced Lightweight-Aggregate Concrete,” Advances in Materials Science and Engineering , Vol. 2016, Article ID 2589383, 9 pp, 2016. doi:10.1155/2016/2589383 8. Gribniak V, Kaklauskas G, Kliukas R & Jakubovskis R: “Shrinkage Effect on Short

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S. Lavrynenko, E. Gevorkyan, W. Kucharczyk, L. Chalko and M. Rucki

., Turkevich V., Johansson J., Bushlya V, Ståhl J.E.: Investigation of the mechanical properties and cutting performance of cBN-based cutting tools with Cr 3 C 2 binder phase. Procedia CIRP, 72 (2018) 1433-1438. 8. Pittari J.J., Murdoch H.A., Kilczewski S.M., Hornbuckle B.C., Swab J.J., Darling K.A., Wright J.C.: Sintering of tungsten carbide cermets with an iron-based ternary alloy binder: Processing and thermodynamic considerations. Int. J. Ref. Met. Hard Mater., 76 (2018) 1-11. 9. Cheng M., Liu H., Zhao B., Huang Ch, Yao P., Wang B.: Mechanical properties of

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W. Kucharczyk, W. Żurowski, R. Gumiński, P. Przybyłek and A. Komorek

REFERENCES 1. Soutis C.: Fibre reinforced composites in aircraft construction. Progress in Aerospace Sciences, (2005) 143-151. 2. Butler BD, Winter M, Panerai F, Martin A, Bailey SC, Stackpoole M, Denehy PM, Splinter S.: Characterization of candidate materials for remote recession measurements of ablative heat shield materials, 54th AIAA Aerospace Sciences Meeting, San Diego, California, USA, 2016. http://dx.doi.org/10.2514/6.2016-1516 3. NIST NCSTAR 1.: Final report on the Collapse of the World Trade Center. U.S. Government Printing Office

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S. Urbanowski, P. Łuczkiewicz and S. Grymek

REFERENCES 1. Franz A., Joseph L., Mayer C., Harmsen JF., Schrumpf H., Fröbel J., Ostapczuk MS., Krauspe R., Zilkens C., The role of oxidative and nitrosative stress in the pathology of osteoarthritis: Novel candidate biomarkers for quantification of degenerative changes in the knee joint. Orthopaedic Reviews 10:7460 (2018) 1–7. 2. Allen K. D., Golightly Y. M., Epidemiology of osteoarthritis: state of the evidence. Current opinion in Rheumatology 27(3) (2015) 276–283. 3. Kumagai K., Akamatsu Y., Kobayashi H., Kusayama Y., Koshino T., Saito T