Applied sciences

Archives of Metallurgy and Materials

Content

Archives of Metallurgy and Materials | 2000 | No 3

Download PDF Download RIS Download Bibtex

Bibliography

[1] M. Considere, Die Anwendung von Eisen und Stahl bei Konstruktionen. Gerold-Verlag Wien (1888).

[2] H. P. Stuwe, Examples of Strain Localization in Localization and fracture phenomena in inelastic solids. Ed. P. Perzyna, 1 - 20. Springer Wien, New York (1998).

[3] H. P. Stuwe, P. Les, Strain rate sensitivity of flow stress at large strains. Acta mater. 46, 6375-6380 (1998).

[4] H. P Stuwe, W. Rose, Z. f. Metalik. 59, 396-399 (1968).

[5] W. Witzel, Torsionsverformung von Metallen - Bewegung von Verformungsfronten bei den Aluminiumlegierungen Al Cu Mg Pb und Al Cu 3. Inst. f. d. Wissenschaftl. Film. Góttingen, Film Nr. E 1899.

Go to article

Authors and Affiliations

H. Stuwe
Download PDF Download RIS Download Bibtex

Bibliography


[1] M. Zehetbauer, Key Engng. Materials 97-98, 287-306 (1994).

[2] M. Zehe t bauer, B. Mikułowski, Archives of Metallurgy in print.

[3] B. Mikułowski, M. Zehetbauer, B. Marczewska, B. W ie Ike, Proc. 10th Int. Conf. Strength of Materials (I CSMA 10), Sendai, Japan, eds. H. Oikawa et al. (The Japan Inst. of Metals) 287-290 (1994).

[4] A. Seeger, F. Banhart, Helvetica Physica Acta 63, 403-428 (1990).

[SJ B. Bergersen, M. J. Stott, Solid State Commun. 7, 1203- 1205 (1969).

[6] L. C. Smedskjaer, M. Mannine11, M. J. Fluss, J. Phys. FlO, 2237-2249 (1980).

[7] E. Hashimoto, M. Iwami, Y. Ueda, J. Phys. Condens. Matter 5, Ll45-Ll48 (1993).

[8] V.Gr 6 g er, T. Ger i n g er, W. Pich I, G. K rex ner, I. N o v ot ny, I. Pr och a z ka, Mater. Sci. Forum 210-213, 743-750 (1996).

[9] Y. G. Dekhtya r, D. A. Levine, V. S. MikhaIenkov, Dok. Akad. Nauk SSSR 156, 795-798 (1964).

[10] Y. Shirai, K. Matsumoto, G. Kawaguchi, Y Yamaguch i, Mater. Sci. Forum 105-110, 1225-1228 (1992).

[11] V. Groger, P. Fratzl, W. Pahl, O. Paris, G. Bischof, G. Krexner, Acta Metali. Mater. 43, 1305-131 l (1995).

[12] W. Pahl, V. Groger, G. Krexner, A. Dupasquier, J. Phys. Condens. Matter 7, 5939-5947 (1995).

[13] P. Kirkegaard, M. Eldrup, Comput. Phys. Comm. 3, 240-255 (1972).

[14] P. Kirkegaard, M. EI dr up, O.Mogensen, N. S. Pc der s c n, Com pul. Phys. Comm. 23, 307-335 (1981).

[15] J. L. Davidson, J.M. Galligan, Phys Stat Sol. 26, 345-358 (1968).

[16] J.P. Hirth, J. Lothe, Theory of Dislocations, 2nd ed., Wiley, New York 1982, 323 f.

[17] E. Schafler, Doctorate Thesis, Universitat Wien 1998.

[18] B. R. Watts, Dislocations in Solids, ed. F.R.N. Nabarro, 8, Elsevier Sci. Publ.. 376-390 Amsterdam 1989.

[19] M. Miiller, M. Zehe t bauer, A. Borbely, T. Ungar, Proc. Europ. Conf. on Advanced Materials & Processes EUROMAT, Padua/Venice, Italy, Sep. 25-28 (1995), Symp. F, p. 305.

[20] T. Geringer, Doctorate Thesis, Universitat Wien 1998.

[21] Y. Dai, M. Victoria, Acta Mater. 45, 3495-3501 (1997).

[22] I. Novak, Diploma Thesis, Universitat Wien 1992.

[23] K. G. Lynn, C. L. Snead Jr, J. J. Hurst, J. Phys. FIO, 1753-1761 (1980).

[24] E. Kuramoto, T. Tsutsum i, K. Ueno, M. Ohmura, Y. Kamimura, Computational Materials Science 14, 28-35 (1999).

[25] E. Kuramoto, H. Abe, M. Takenaka, F. Hori, Y. Kamimura, M. Kimura, K. Ueno, J. Nuclear Mater. 239, 54-60 (1996).

Go to article

Authors and Affiliations

Borys Mikułowski
V. Groger
Gerhard Krexner
Michael Hewarth
Download PDF Download RIS Download Bibtex

Bibliography


[1] G. Scarsbrook, W. M. Stobbs, Acta Metali 35, 47 (1987).

[2] S. Euck en, E. Hornbogen, Proc. ICOMAT-86, J I M, 780 Sendai 1987.

[3] S. S. Leu, Y. C. Chen, R. D. Jean, J. Materials Sci. 27, 2792 (1992).

[4] A. Ahmed, S. W. Husain, Z. Iqbal, F. H. Hashmi, A. Q. Khan, Scripta Met. 22, 803 (1988).

[5] J. Dutkiewicz, J. Morgiel, T. Czeppe, E. Cesari, ESOMAT 97, J. Phys IV (1997) Coll. C5-167.

[6] J. H. Zhou, D. P. Dunne, G. W.Dillamore, N. F. Kennon, Proc. ICOMAT-92 Monterey Institute for Advanced Studies, 1083 Monterey 1992.

[7] S. Matsuoka, M. Hasebe, R. Oshima, F. E. Fujita, Jpn. J. Appl. Phys., Lett. 22 (8) L528 (1983).

[8] S. Eucken, E. Hornbogen, Proc. !CSMA 7, Pergamon Press, 1615 Oxford 1985.

[9] G. Van Tendeloo, M. Chandraseka ran, F. C. Lovey, Proc. ICOMAT-86, J I M, 868, Sendai 1987.

[10] J. Dutkiewicz, J. Pons, E. Cesari, Materials Sci Eng. Al58 I 19 (1992).

Go to article

Authors and Affiliations

Jan Dutkiewicz
Tomasz Czeppe
Jan Morgiel
Wojciech Maziarz
ORCID: ORCID
Download PDF Download RIS Download Bibtex

Bibliography

[1] J. Bystrzycki, R. Varin, Zb. Bojar, Postępy w badaniach stopów na bazie uporządkowanych faz międzymetalicznych z udziałem aluminium. Inżynieria Materiałowa 5, 137 (1996).

[2] N. Niespiałowski, M. Kupka, J. Barcik, Struktura i własności stopów Fe-Al w zależności od zawartości Al i warunków krzepnięcia, I Krajowa Konferencja Naukowa, Kraków 20- 22.02.1997. Materiałoznawstwo - Odlewnictwo -Jakość, 363.

[3] J. Barcik, J. Cebulsk i, Stop na osnowie związku międzymetalicznego Fe-Al - struktura i właściwości technologiczne, Inżynieria Materiałowa 1, 23-27 (1998).

[4] X. Q. Wang, G. Fair, J. V. Wood, Influence of nickel on reactive sintering of iron-aluminium intermetallics, Powder Metallurgy 36, 3, 187-192 (1993).

[5] J.C. Rawers, R. C. Doan, Nitrogen Introduction into Fe-2AI powders, Powder Metallurgy 37, 2, 137-139 (1994).

[6] D. J. Lee, R. M. Germa n, Sintering Behaviour of Iron-Aluminium Powder Mixes, The International Journal of Powder Metallurgy & Powder Technology 21, 1, 9-21 (1985).

[7] V. K. Sikka, R.H. Baldwin, C.R. Howe 11, Powder Production, Processing and Properties of Fe3Al, Process 1980 Advances in Powder Metallurgy 2, 207 -217 (1990).

[8] V. K. Sikka, R. H. Baldwin, C. R. Ho we 11, P/M Processing and Application of Fej Al-Based Jntermetallic, Advances in Powder Metallurgy 6, 147 -158 (1991).

[9] B. H. Rabin R. N. W right, Synthesis of lron-Aluminides from Elemental Powders; Reaction Mechanisms and Densification Behavior, Metallurgical Transactions A 22A, 277 -286 (1991).

[10] K. Matsuura, K. Ohsasa, N. Seuoka, K. Kudoh, Joining of NiAI to steel by Reactive Sintering, Proceedings of the 1998 Powder Metallurgy World Congress & Exhibition, Granada, Spain October 18-22, 2, 314-318, 1998.

[11] J. Karwan - Bacze wska, D. Dymkowski, S. Seet haram a n, Sintered Intermetallic Compounds Type Fe-Al-Ni, Advances in Powder Metallurgy & Particulate Materials 4, I 3, 15- 3 (1996).

[12] T. Pieczonka, S. Gialanella, A. Molinari, J. Kazior, Reactive Sintering of Ni-Al-Mo Compacts from Elemental Powders Mixtures and Mechanical Alloyed Powders Proceedings of the J 998 Powder Metallurgy World Congress & Exhibition, Granada Spain, October 18-22, 2, 336-341, 1998.

[13] D. M. Sims, A. Bose, R. M. German, Reactive Sintering of Nickel Aluminide, Annual Powder Metallurgy Conference Proceedings, Progress in Powder Metallurgy 43, 575 (1987).

[14] A. Bose, B. H. Rabin, R. M. German, Reactive Sintering Nickel-Aluminide to Near Full Density, Powder Metallurgy International 20, 3, 25- 30 (I 988).

Go to article

Authors and Affiliations

Joanna Karwan-Baczewska
Tomasz Dymkowski
Seshadri Seetharaman
Download PDF Download RIS Download Bibtex

Bibliography


[1] S. N. Srimathi, S. M. Mayanna, B. S. Sheshadri, Surf. Technol., 16,277 (1982).

[2] W.R. Wearmouth, K. C. Belt, Trans. IMF 52, 114 (1974)

[3] A. Hart, Materials Edge 18, 15 (1990)

[4] K. Y. Sasaki, J. B. Talbot, J. Electrochem. Soc. 142(3), 775 (1995).

[5] C. ran, D. L. Piron, Elcctrochim. Acta 41(10), 1713 (1996).

[6] R. D. Srivastava, S. K. Nigam., Surf. Technol. IO, 343 (1980)

[7] D. Mockute, Chemija I, 17 (1995)

[8] S.S. Abd EI - Rehim, A. M. Abd EI - HaIim, M. M. Osman, J. Appl. Electrochem 15, 107 (1985).

[9] J. Przyłuski, J. Bieliński, M. Kucharski, Surf. Technol. 9, 179(1979).

[10] A. Brenner, Electrodcposition of alloys, Academic Press, New York-London (1963).

[11] H. Dahms, I. M. Croll, J. Electrocbem. Soc. 112, 771 (1965).

[12] Poradnik fizykochemiczny, WNT Warszawa (1962).

[13] O. K. Galdien e, B. J. UkyaIenc, Y. Y. Matulis, Liet. TSR Mosklu. Akad. Darb. Ser. B. 4(59), 65 (1969).
Go to article

Authors and Affiliations

Lidia Burzyńska
Ewa Rudnik
Download PDF Download RIS Download Bibtex

Bibliography


[1] E. M archese, patent niemiecki 22.429 (1882).

[2] F. Habashi, N. Torres - Acuna, The Anodic Dissolution of Copper (I) Sulfide and the Direct Recovery of Copper and Elementar Sulfur from White Metal. Trans. AIME. 242, 780- 787 (J 968).

[3] P. Brennet, S. Jafferali, J. Vansevere n, J. Verecken, R. Winard, Study of the Mechanism of Anodic Dissolution of Cu2S. Met. Trans. 5, 127 -134 (1974).

[4] D. J. Mc Kay, The Direct Electro refining of Copper Matte. Journal of Metallurgy 3, 44-48 ( 1993).

[5] M. H. Mao, E. Peters, Direct Electrorefining of Cuprous Sulphide - Based Particulate Anodes. Can. Met. Q 22, 437-446 (1983).

[6] F. K. Crundwell, The Influence of the Electronic Structure of the Solids on the Anodic Dissolution and Leaching of Semiconducting Sulphide Minerals. Hydrometallurgy 21 (1988).

[7] E. Hillrich s, R. Bertram, Anodic Dissolution of Copper Sulphides in Sulphuric Acid Solution I. The Anodic Dissolution of Cu2_xS. Hydrometallurgy 11 181 (1983).

[8] E. Hillrich s, R. Bertram, Anodic Dissolution of Copper Sulphides in Sulphuric Acid Solution II. The Anodic Dissolution of CuS. Hydrometallurgy 11, 195-207 (1983).

[9] E. G hali, B. Dandapani, A. Lewenstam, Electrodissolution of Synthetic Covelli te in Hydrochloric Acid. J. Applied Electrochem 12 (1982)..

[10] J M. Hojo, E. Peters, Direct Electrorefining of Chalcocite. Proceedings of the 5th Australian Electrochemical Conference, 345- 364 August l 980.

[11] D. J. Mac Kinno n, Fluidised Bed Anodic Dissolution of Chalcocite. Hydrometallurgy. 1, 241-257 (1976).

[12] F. Hab ash i, Principles of extractive metallurgy. 1. General principles. Gordon and Breach Science Publishers Inc. 151, l 969.

[13] L. Burzyńska, P. Żabiński, Anodic Dissolution of copper(}) sulfide. Physicochemical Problems of Mineral Processing, XXXV Symposium, 11-28 (1998).

[14] L. Burzyńska, P. Żabiński, A. Ko w a I, Application of AFM microscopy for surface topography analysis of copper(!) sulfide during anodic dissolution. Physicochemical Problems of Mineral Processing 42, 215 - 226 ( 1998).

[15] D. Sar id, Scanning Force Microscopy with Applications to Electric, Magnetic and Atomic Forces. Oxford University Press, New York 1994.

[16] D. A. Bonnell, Scanning Tunneling Microscopy and Spectroscopy: Theory, Techniques and Applications. VCH Publishers, Inc., New York 1993.

[17] J. A.De Rose, T. Thund at, L. A. Nagahara, S. M. Lindsay, Gold grown expitaxially on mica: conditions for large area flat faces. Surface Science 256, 102 (1991).


Go to article

Authors and Affiliations

Lidia Burzyńska
Piotr Żabiński
Download PDF Download RIS Download Bibtex

Bibliography


[l] Y. Ues hima, S. Mizoguchi, T. Matsumiya, H. Kaijoka, Metali. Trans. 178, 845 (1986).

[2] T. Umeda, T. Okane, W. Kurz Acta Mater. 44, 4209 (1996).

[3] H. Fredriksson, Scand, J. Metali. 5, 27, (1976).

[4] M. Bobadilla, J. Lacaze, G. Lesoult, J. Cryst. Growth 89,531 (1981).

[5] W. Kurz, D. J. Fisher, Acta Metali, 29, 11 (1981).

[6] M. Rapp a z, S. A. David, J. M. Vitek, L. A. Boatner, Metali. Trans. 21A, 1767 (1990).

[7] W. Kurz, B. Giovanola, R. Trivedi, Acta Metali. 34,823 (1986).

[8] R. Trivedi, W. Kur z, Int. Mater. Rev. 39, 49 (1994).

[9] S. N. Singh, J. Blazek, J. Metals. 26, 17 (1974).

[10] J S. A. Dav id, J. M. Vitek, Int. Mater. Rev. 34, 213 (1989).

[11] W. Krajewski, Z. Metallkunde 87, 645 (1996).

[12] W. Krajewski, Archives of Metallurgy 42,273 (1997).

[13] W. Ratuszek, J. Ryś, K. Chruściel, Archives of Metallurgy 44,305 (1999).

[14] W. Wołczyński i, E Guzik, Ferrites, Proc. of the Sixth International Conference on Ferrites, ed. by The Japan Society of Powder and Powder Metallurgy, Tokyo 1993, 337.

[I 5] E. Guzik, W. Wołczyński, Ferrites, Proc. of the Sixth International Conference on Ferrites, ed. by The Japan Society of Powder and Powder Metallurgy, Tokyo 1993, 340.

[16] W. Wołczyński, E. Guzik, R. Ciach, J. Kloch, J. Phys. France 7, 77 (1997).

[17] G. Shin, T. Suzuki, T. Umeda Tetsu-to Hagane 78, 275 (1992), (in Japanese).

[18] T. Matsumiya, Mater. Trans. of JIM 33, 783 (1992).

[19] W. Krajewski, Badanie mechanizmu heterogenicznego zarodkowania w wysokoaluminiowych stopach cynku modyfikowanych dodatkiem tytanu. Dissertation-Monograph, ed. University of Mining and Metallurgy, Kraków, 1996, (in Polish).

[20] S. Kobayashi, T. Nagamichi, K. Gunji, Trans. ISIJ 28,545 (1988).

[21] S. Kobayashi, Trans. ISIJ 28, 728 (1988).

[22] T. Edvardsson, H. Fredriksson, I. Svensson, Metal Science 9, 298 (1976).

[23] J. S. Langer H. Miller - Krumbhaar, Acta Metali. 26, 1681 (1978).

[24] V. Laxmanan, J. Cryst. Growth 75; 573 (1986).

[25] Y. Minet, Rapport de l'IRSID, Maizieres-les-Metz, 1991, (in French).

[26] W. Wołczyński,, Back-difTusion phenomenon during the crystal growth by the Bridgman method, Chapter IV in: Modelling of Transport Phenomena in Crystal Growth, ed. WITPress, Southampton, 2000, 113- 153, eds. J. Szmyd & K. Suzuki.

[27] H. D. Brody, M. C. Flemings, Trans AIME 236,615 (1966).

[28] T. Umeda, J. Matsuyama, H. Murayama, M. Sugiyama, Tetsu-to Hagane 63, 440 (1977), (in Japanese).

[29] W. Wołczyński,, M. Bobadilla, Solidification of Metals & Alloys, ed. Pol. Acad. Sci. 20, 185 (1994).

[30] Y. Ueshim a, S. Mizoguchi, T. Matsum i ya, H. Kaijoka, Met. Trans. 178,845 (1986).

[31] M. Sugiyama, T. Umeda, J. Matsuyama, Tetsu-to Hagane 60, 32 (1974), (in Japanese).

[32] G. P. Ivantsov, Doklady Akademii Nauk SSSR 58, 567 (1947), (in Russian).

[33] W. Wołczyński,, Rapport de l'IRSID, Maizieres-les-Metz, 1988, (in French).

[34] W. Kurz, D. J. Fisher, Fundamentals of Solidification, Appendix 8, Trans Tech Publ., 1998.

[35] J. S. Langer, H. Muller - Krumbhaar, J. Crystal Growth 42, 11 (1997).

[36] T. Okane, A. Dytkowicz, J. KIoch, T. Umeda, W. Wołczyński,i, Institute of Physics Conference Series 165, 447 (2000).

Go to article

Authors and Affiliations

Waldemar Wołczyński
Manuel Bobadilla
Andrzej Dytkowicz
Download PDF Download RIS Download Bibtex

Bibliography


[1] C. T. Liu, Recent Advances in Ordered Intermetallics Proc. in High-temperature Ordered lntermetallic Alloys st, wyd. Jao Baker im Syrup., 30.11-3.12.1992 Boston, USA s. 3 publ. Materials Research Society 1992.

[2] High-temperature Aluminides Intermetallics in Mater. Sc. & Eng. A152/A153/1992.

[3] C. C. Koch, C. T. Liu, N. Stoloff, High-temperature Ordered Intermetallic Alloys in Proc. of Materials Research Society, Syrup. 39 Pittsburgh PA 1985.

[4] J. Baker, Mater. Sc. Eng. Al92, 1 (1992).

[5] G. E. Furch s, N. S. Stlooff , Acta Met. 36, 1381 (1988).

[6] J. D. Whittenberg er, J. Mat. Sc. 23, 394 (1987).

[7] Cz. W. Kopeckij, Struktura i swoistwa tugoplawskich mietal!ow, 30-145. Wyd. Mietallurgia, Moskwa 1974.

[8] E. M. Sawickij, G. S. Buchanow, Mietallowied. splawow tugoplawskich i redkich mietallow, 354. Wyd. Nauka (1971).

[9] J. Backer, Flow and Fracture of FeAI in Proc. Processing, Properties and Application of Iron Aluminides, wyd. Schneibel J. H. & Crimp M. A., 463. The Minerals & Materials Society 1993.

[10] C. T. Liu, E. George, Scripta Metali Mater. 24, 1285 (1990).

[11] C. T. Liu, E. George, Mater Res. Sol. Symp. Proc. 213, 527 (1991).

[12] C. T. Liu, C. T. Fu, E. P. George, G. S. Painter - ISIJ 31, 1192 (1991).

[13] D. J. Gaydosch, M. V. Nat hal, Scripta Metal! Mater. 24, 1282 (1990).

[14] W. J. Chio, Y. W. Chung, Intermetallics 3, 505 (1995).

[15] N. S. Stoloff, C. T. Liu, Intermetallics 2, 75 (1994).

[16] E. P. George J. Backer, Intermetallics 8, 75 (1998).

[17] E. P. George, J. Backer, Phil Mag A77, 737 (1998).

[18] J. Baker, O. Klein, F. NeIson, E. P. George, Scripta Metal l.30, 863 (1994).

[19] A. Frankiewicz, A. S. Gay, M. Biscondi, Mater. Sc. Eng. A358, 108 (1998).

[20] A. Bandur, B. R. Kumer, O. N. Monaty, J. Mater. Sc. 30, 3690 (1995).

Go to article

Authors and Affiliations

Jan Barcik
Janusz Cebulski

Instructions for authors

Archives of Metallurgy and Materials is a quarterly journal of Polish Academy of Sciences and Institute of Metallurgy and Materials Science PAS, which has published continuously since 1954, scientific papers in English in the following fields: metallurgy and materials science, foundry, mechanical working of metals, thermal engineering in metallurgy, thermodynamic and physical properties of materials, phase equilibria in the broad context and diffusion.

In addition to the regular, original scientific papers and conference proceedings, invited reviews presenting the up-to-date knowledge and monothematic issues devoted to preferred areas of research will be published. Submission of a paper implies that it has not been published previously, that it is not under consideration for publication elsewhere, and that if accepted it will not be published elsewhere in the same form.

When preparing the manuscript, please pay attention to the following rules:

1. Manuscript submission

1.1. Electronic submission: All submissions must be made electronically via Editorial System https://www.editorialsystem.com/editor/amm/articles/list/?qt=NEW

1.2. Manuscript should not exceed 12 pages of full-size paper (A4), must be double spaced (please use 12 point font), with generous margins, and the pages must be numbered. Authors should submit an electronic file of their manuscript in Microsoft Word format (minimum: version 2000).

1.3. All manuscripts must be written in good English. Both British and U.S. English are acceptable but Authors should be consistent in their usage. It is sole responsibility of the Authors to make sure that the manuscript is grammatically correct and spell checked. Authors are strongly encouraged to have the manuscript proofread by a native speaker of English or a language professional, before it is submitted to the editorial office. Papers written in poor English will be automatically rejected without being subjected to review.

1.4. Authors should submit an electronic copy of final version of their paper in Microsoft Word format, schemes (sketches) and figures saved as .eps, .jpeg, or .tiff.

1.5. Articles submitted for publication should include abstract and maximum 5 key words.

1.6. Please adhere to the following order of presentation:

Author(s) with first names in full.

Affiliation(s): in a short form (Institution, City, Country). Use the superscripts (*, **, . . .) after the Authors’ names in case of different affiliations.

Title: All words in lower case (first letter of first word capitalized).

Abstract: maximum 10 lines, including primary objective, research design, methods and procedures, main outcomes and results, conclusions. Do not use abbreviations in the abstract.

Keywords: 5 maximum.

Main text: Begin on the second page with Introduction, followed by Experimental (Materials and Methods) and/or Theory section, Results, Discussion, and end with Conclusion section and Acknowledgement. When appropriate the Authors may choose to combine Results section and Discussion section into one Results and discussion section. Make sure the text in sections is divided logically into paragraphs. Use the decimal system for sections, subsections and (at the most) subsubsections, as exemplified in the headings of these instructions. All abbreviations should be spelled out the first time they are introduced in text or references. Thereafter the abbreviation can be used.

Appendices

References

Correspondence address: title, name, postal address, telephone and e-mail address of the corresponding Author.

Figure captions

Tables

2. Manuscript preparation

2.1. Formulae, equations and units

Formulae and equations should be typed on separate lines and numbered consecutively in parentheses on the right side (1) . . . (n). Vectors must be indicated as such. Size of symbols should be kept uniform for all equations in the manuscript. Formulae and equations should be referred to in the text as follows: Eq. (1). Numbers and units must be separated by a space, e.g. 5.5 wt.%, 273.15 K, 1013 MPa, etc. The only exception are angle degrees, e.g. 90°.

2.2. Figures

Figures are usually printed in reduced size and this should be taken into account when preparing them. This applies also to the photographs. For the best results, make sure that lettering on illustrations is at least 2 mm high after reduction. Figure captions should be typed on a separate page at the end of manuscript. The same refers to tables and all sorts of lists. The appropriate place of tables and figures in the text should be indicated by < Tab 1 > or written in separate line. Figures should be referred to in text as follows: Fig. 1. Each figure should have its own caption explaining the content without reference to the text. Line drawings will normally be printed in column width of 85 mm. After this reduction all figures should have the same final letter size of at least 2 mm. The style of labeling of the coordinates must be uniform for all drawings. The magnification must be indicated by a labeled scale marker on the micrograph itself, not drawn below it. For optimum printing quality micrographs should be saved as .eps or .tiff at a resolution of at least 300 dpi while line drawings at a resolution of at least 600 dpi.

2.3. Tables

Tables together with captions should be typed on separate page at the end of manuscript. Tables are to be numbered consecutively using Arabic numbers in the text (TABLE 1 . . . n). The captions should explain the symbols used in the heading and in the left hand column. Tables should be referred to in the text as follows: TABLE 1.

2.4. References

A new type of literature provision has been in force since 2020 – modified vancouver style.
Please follow the instructions below.

References should be typed on separate pages and numbered consecutively applying the system accepted by the Quarterly (initials and names all authors, title of the article (obligatory), journal title [abbreviated according to the Journal Title Abbreviations of Web of Science: http://library.caltech.edu/reference/abbreviations/ everyone abbreviation should be end with a dot – example. Arch. Metall. Mater.] or book title; journal volume or book publisher; page spread; publication year in bracket, full DOI number).

Please note the correct layout punctation (commas and periods), and spaces. Please note the arrangement of dots, commas and spaces.

First, we write the initial of the name, dot, space, surname, volume must be written BOLD, at the name   of the authors, do not write a word “and” write only a comma. We give the year of publication at the end of the sentence in brackets and DOI number (full notation and linked).

The use of DOI numbers (full notation and linked) is mandatory for each paper and should be formatted as shown in the examples below:

3. Samples

Journals:

[1] L.B. Magalas, Development of High-Resolution Mechanical Spectroscopy, HRMS: Status and Perspectives. HRMS Coupled with a Laser Dilatometer. Arch. Metall. Mater. 60 (3), 2069-2076 (2015). DOI: https://doi.org/10.1515/AMM-2015-0350

[2] E. Pagounis, M.J. Szczerba, R. Chulist, M. Laufenberg, Large Magnetic Field-Induced Work output in a NiMgGa Seven-Lavered Modulated Martensite. Appl. Phys. Lett. 107, 152407 (2015). DOI: https://doi.org/10.1063/1.4933303

[3] H. Etschmaier, H. Torwesten, H. Eder, P. Hadley, Suppression of Interdiffusion in Copper/Tin thin Films. J. Mater. Eng. Perform. (2012).

DOI: https://doi.org/10.1007/s11665-011-0090-2.

Books:

[4] K.U. Kainer (Ed.), Metal Matrix Composites, Wiley-VCH, Weinheim (2006).

[5] K. Szacilowski, Infochemistry: Information Processing at the Nanoscale, Wiley (2012).

[6] L. Reimer, H. Kohl, Transmission Electron Microscopy: Physics of Image Formation, Springer, New York (2008).

Proceedings or chapter in books with editor(s):

[7] R. Major, P. Lacki, R. Kustosz, J. M. Lackner, Modelling of nanoindentation to simulate thin layer behavior, in: K. J. Kurzydłowski, B. Major, P. Zięba (Eds.), Foundation of Materials Design 2006, Research Signpost (2006).

Internet resource:

[8] https://www.nist.gov/programs-projects/crystallographic-databases, accessed: 17.04.2017

Academic thesis (PhD, MSc):

[9] T. Mitra, PhD thesis, Modeling of Burden Distribution in the Blast Furnace, Abo Akademia University, Turku/Abo, Finland (2016).

 

3. Fee

We would like to inform the Authors that from July 1, 2024, the fee is increased and will amount to 300 EUR plus 23%VAT (1250 PLN net for authors with Polish affiliation).

4. Review and proofread process

4.1. Peer review process

All submitted manuscripts are subject to review by recognized experts appointed by the Editor-in-Chief and members of the Editorial Board. Authors are requested to provide in the editorial system the names and contact details (affiliations and valid e-mail addresses) of two experts who could act as reviewers. Only one of these names may be from the same country as the affiliation of the corresponding author. The decision to appoint a reviewer is solely at the editor's discretion. When the article requires corrections, the authors are required to respond in writing to the comments of the Editor and Reviewers and to make corrections to the manuscript. The decision to reject the article is made by the Editorial Board, and the final decision is made by the Editor, who may appoint another reviewer if necessary. The reviewers remain anonymous to the authors and their identity cannot be disclosed by the Editor.

 4.2. Submission of a revised manuscript

When a manuscript revision is requested, Authors should return a revised version of their manuscript to the editorial office as soon as possible. Acting quickly can ensure rapid publication if the article is finally accepted for publication in Arch Metall Mater. If this is the first revision of the article, Authors are requested to return the revised manuscript within 14 days. If this is the second revision, Authors are requested to return the revised manuscript within 7 days.

 4.3. Final revision

 Authors will receive a pdf file via the editorial system in the PROOF tab of the proof of the article in a version that is suitable for publication. This is the last opportunity to review the article before its publication on the journal's website, Czytelnia PAN platform and WoS. No changes or modifications can be made after publication. Therefore, authors are requested to thoroughly review the manuscript and prepare a separate document containing all changes that should be introduced.

5. Original version

Starting with issue 1 / 2000, volume 45, the Archive of Metallurgy and Materials is published in electronic form on the platform Reading Room PAS  as the original version (reference). The platform  Reading Room PAS sends files to WoS within 6 weeks of publication of the full content of a given issue. The printed version is printed by the Warsaw Scientific Printing House of the PAN.

6. Prevent cases of plagiarism

Readers should be sure that the authors present the results of their work transparently, fair and honest, regardless of whether they are the direct authors, or used the help of a specialized entity (natural or legal person). To prevent cases of plagiarism,  the Editorial Office will require that the Authors disclosed the contribution of individual Authors in the creation of manuscript (with their affiliations and contributions, i.e. the information who is responsible for: research concept and design, collection and/or assembly of data, data analysis and interpretation, writing the manuscript) in the document "Ghostwriting statement paper".Funding sources (together with grant number) must also be revealed. The corresponding Author will bear the main responsibility for the manuscript. Detected cases will be exposed, including notifying the appropriate entities (institutions employing the Authors, scientific societies, associations of editors of scientific journals, etc.).

7. License type

Articles are printed in an open access and distributed under the terms of the Creative Commons Attribution License (CC-BY 4.0, https://creativecommons.org/licenses/by-nc/4.0/deed.enThis license allows others to distribute, remix, modify and build upon the author's work, even commercially, as long as the author of the original work is attributed to him.

Submission of an article to the journal is unequivocal to expressing consent to the publication in both paper and electronic form.

 

 

 

Additional info

Archives of Metallurgy and Materials is covered by the following services:


Arianta, Baidu Scholar, BazTech, Celdes, Chemical Abstracts Service (CAS) - CAplus, Clarivate Analytics (formerly Thomson Reuters) - Current Contents/Engineering, Computing, and Technology, Clarivate Analytics (formerly Thomson Reuters) - Journal Citation Reports/Science Edition, Clarivate Analytics (formerly Thomson Reuters) - Materials Science Citation Index, Clarivate Analytics (formerly Thomson Reuters) - Science Citation Index Expanded, CNKI Scholar (China National Knowledge Infrastructure), CNPIEC, DOAJ (Directory of Open Access Journals), EBSCO (relevant databases), EBSCO Discovery Service, Elsevier - SCOPUS, Genamics JournalSeek, Google Scholar, Index Copernicus, J-Gate, JournalTOCs, KESLI-NDSL (Korean National Discovery for Science Leaders), Microsoft Academic, Naviga (Softweco), Primo Central (ExLibris), ProQuest (relevant databases), ReadCube, ResearchGate, SCImago (SJR), Sherpa/RoMEO, Summon (Serials Solutions/ProQuest), TDNet, TEMA Technik und Management, Ulrich's Periodicals Directory/ulrichsweb, WanFang Data, WorldCat (OCLC)

This page uses 'cookies'. Learn more