Activating Precursors for Brazing Processes that Deposit Two Layers through Melting

Article Preview

Abstract:

We present the manufacturing process, by melting in a controlled environment, of specific alloys that have a benefic effect on the diffusion phenomena’s in the base material of the addition coated rods for brazing. The friable precursors obtained by melting are grinded with the purpose of integrating them in the coat of the rods, namely the addition material. The metallurgic activation activity of the precursors is enhanced by using them as nano-powders in the coat of the rods.Of major importance for deep joint capillary brazing are the fluidity and superficial tension of the melt - addition material, or, in case of non-ferrous alloys, the degree of de-oxidation of base materials. In order to improve the above mentioned characteristics, we made precursors type: 5o% Cu-45% Sn-5% P (CIF); 92% Cu-2% Si 6% P- (RAV). The batch design was done by two distinct melting processes, in high frequency currents (CIF) and electric arc (RAV) in a controlled environment. The melts were cast in graphite forms as loose briquettes. The briquettes thus obtained were analyzed structurally and sclerometrically, and after testing, they were grinded in planetary mills until we obtained nano-powders. The resulting powders will be used, as required, to prepare brazing sheaths.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

52-57

Citation:

Online since:

May 2019

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2019 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Saban R., Dumitrescu C., Petrescu M. - Tratat de ştiinţa şi ingineria materialelor metalice -Vol.1, Bazele ştiinţei materialelor, Editura AGIR, Bucureşti, 2006, ISBN 973-720-064-0.

DOI: 10.37897/rjs.2020.2.6

Google Scholar

[2] Trusculescu M. – Materialotehnica" vol.IV, Metale şi aliaje neferoase, Editura Politehnica, Timişoara, 2009, ISBN 973-625-091-1,978-973-625-852-7.

Google Scholar

[3] Voiculescu I., Geantă V., Vasile I.M., Binchiciu E.F., Winestok R. Chemical elements diffusion in stainless steel components brazed with Cu-Ag alloys. International Conference on Innovative Research, May 19-20 2016 – ICIR Euroinvent. IOP Conf. Series: Materials Science and Engineering, Volume 133 (2016) UNSP 012014.

DOI: 10.1088/1757-899x/133/1/012014

Google Scholar

[4] RO125835/2012 - Vergea pentru brazare din aliaj de argint cu inveliș dezoxidant Binchiciu A., Voiculescu I., Geantă V., Binchiciu H., Ştefănoiu R., Negriu R.M., Binchiciu E.F.

DOI: 10.4028/www.scientific.net/amr.1157.188

Google Scholar

[5] Binchiciu E. F. - TEHNOLOGII INTEGRATE DE BRAZARE CU PRECURSORI AVANSAȚI Integrated brazing technologies with advance precursors, Universitatea Politehnica din Timișoara, Teză de doctorat, (2016).

Google Scholar

[6] Geanta V., Voiculescu I. – Biocompatible metallic materials development - Editura Printech, București, Romania, 2018, ISBN 978-606-23-0845-2.

Google Scholar

[7] Geantă V, Ştefănoiu R. Ingineria producerii oţelului. Editura BREN, Bucureşti, 2008, ISBN 978-973-648-746-0, 322p.

Google Scholar

[8] Geantă V., Tripsa, I., Stefanoiu, R. Tratat de Stiinta și Ingineria Materialelor, Vol.2. Bazele teoretice și ingineria obtinerii materialelor metalice, Cap. 7 – Elaborarea oţelurilor. Academia de Stiinte Tehnice din Romania, Asociația Generală a Inginerilor din România Editura AGIR, Bucuresti, Romania, 2007, ISBN 978-973-720-162-1, ISBN 978-973-720-064-0, pp.856-1019.

DOI: 10.15551/lsgdc.v48i2.10

Google Scholar

[9] MATFREZ - Materiale și tehnologii performante destinate realizării cuțitelor de freză pentru asfalt - Contract PCCA 188, (2012).

Google Scholar

[10] VERAG - Realizarea unei familii de vergele învelite ecologice pentru brazare cu aliaje de argint –Contract RELANSIN 2023, (2004).

Google Scholar

[11] Pencea I., Sfăt C., Geantă V., Ştefănoiu, R., Voiculescu, I. New multiconvolutional approach for measurement uncertainty estimation. Case study for Vickers hardness test. Metalurgia International, Special Issue, no. 2, ISSN 1582-2214, 2013, pp.57-62.

Google Scholar

[12] Dozescu S.I. – Optimizarea brazării tubulaturii metalice din metale și aliaje neferoase, Universitatea Transilvania Brașov, Teza de doctorat, (2009).

Google Scholar

[13] Cojocaru M. – Pulberi Metalice, Producere și Procesare, Editura Fair Partners, București, (2009).

Google Scholar

[14] Voiculescu I. - Raport Nr. 90/2015 Analiza microstructurala a unor probe din aliaje CuPSi, Laboratorul pentru încercări metalografice - LAMET, Universitatea Politehnica din București, (2015).

Google Scholar