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Articles

Role of lead in free-machining brass

Pages 297-302 | Published online: 19 Jul 2013

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Nima Zoghipour, Emre Tascioglu & Yusuf Kaynak. (2023) Machinability of extruded and multi-directionally hot forged eco-friendly brass alloys. Canadian Metallurgical Quarterly 0:0, pages 1-12.
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Morteza Adineh & Hamid Doostmohammadi. (2019) Microstructure, mechanical properties and machinability of Cu–Zn–Mg and Cu–Zn–Sb brass alloys. Materials Science and Technology 35:12, pages 1504-1514.
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S. Kuyucak & M. Sahoo. (1996) A Review of the Machinability of Copper-Base Alloys. Canadian Metallurgical Quarterly 35:1, pages 1-15.
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N. Gane. (1981) The effect of lead on the friction and machining of brass. Philosophical Magazine A 43:3, pages 545-566.
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Articles from other publishers (11)

Jakob Johansson, Per Alm, Rachid M’Saoubi, Per Malmberg, Jan-Eric Ståhl & Volodymyr Bushlya. (2022) On the function of lead (Pb) in machining brass alloys. The International Journal of Advanced Manufacturing Technology 120:11-12, pages 7263-7275.
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Morteza Adineh. (2021) Machining Characteristics of the New Cu-35Zn-1.89Al Leadless Free-cutting Brass by Elliptical Ultrasonic Vibration-Assisted Turning. Journal of Materials Engineering and Performance 31:4, pages 2850-2858.
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Athanasios Vazdirvanidis, Andreas Rikos, Anagnostis I. Toulfatzis & George A. Pantazopoulos. (2022) Electron Backscatter Diffraction (EBSD) Analysis of Machinable Lead-Free Brass Alloys: Connecting Texture with Fracture. Metals 12:4, pages 569.
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Paul Stavroulakis, Anagnostis I. Toulfatzis, George A. Pantazopoulos & Alkiviadis S. Paipetis. (2022) Machinable Leaded and Eco-Friendly Brass Alloys for High Performance Manufacturing Processes: A Critical Review. Metals 12:2, pages 246.
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Pemika Suksongkarm, Surasit Rojananan & Siriporn Rojananan. (2018) Bismuth Formation in Lead-Free Cu–Zn–Si Yellow Brass with Various Bismuth–Tin Alloy Additions. MATERIALS TRANSACTIONS 59:11, pages 1747-1752.
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Uwe Hofmann. (2010) Eine Schadensanalyse zu den Ursachen für interkristalline Risse in Bauteilen aus Automatenmessing. Practical Metallography 47:10, pages 571-593.
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Uwe Hofmann & Essam El-Magd. (2005) Behaviour of Cu-Zn alloys in high speed shear tests and in chip formation processes. Materials Science and Engineering: A 395:1-2, pages 129-140.
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V. Buršı́ková, J. Buršı́k, V. Navrátil & K. Milička. (2002) Creep behaviour of leaded brass. Materials Science and Engineering: A 324:1-2, pages 235-238.
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Edward M. Trent & Paul K. Wright. 2000. Metal Cutting. Metal Cutting 251 310 .
Abdul B. Sadat. (1990) The chip formation process of an annealed leaded bearing bronze. International Journal of Machine Tools and Manufacture 30:2, pages 165-173.
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G. M. Pharr, P. S. Godavarti & B. L. Vaandrager. (1989) Effects of wetting on the compression creep behaviour of metals containing low melting intergranular phases. Journal of Materials Science 24:3, pages 784-792.
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