29.10.2019 Views

Industria Fusoria 6 /2018

Sesto numero del 2018 di Industria Fusoria, la rivista delle fonderie italiane edita da Assofond

Sesto numero del 2018 di Industria Fusoria, la rivista delle fonderie italiane edita da Assofond

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

tecnico<br />

ed asportata in modo marcato.<br />

Complessivamente, in termini<br />

di prestazioni, la vernice 2 appare<br />

più resistente, sia a livello di<br />

evoluzione della rugosità che a<br />

livello visivo (Fig. 4 e Tab. 1).<br />

S. Lombardo – F.O.M.T. S.p.A.,<br />

Grugliasco (TO) - E. Fracchia, F.S.<br />

Gobber, M. Rosso – Politecnico di<br />

Torino – DISAT.<br />

Memoria presentata al 34° Congresso<br />

Nazionale di Fonderia<br />

– Sessioni Tecniche, tenutosi il<br />

18–19 novembre scorso presso<br />

il Museo Mille Miglia di Brescia.<br />

S M – M<br />

f.<br />

BIBLIOGRAFIA<br />

|1| R. Guccione, ‘Italian Foundries Focus on sustainability’,<br />

A&L, vol. 4, pp. 30–35, <strong>2018</strong>.<br />

|2| F. Robles-Hernandez, J. M. Herrera Ramirez,<br />

and R. Mackay, Al-Si Alloys. Springer International<br />

Publishing AG 2017, 2017.<br />

|3| M. Brancia, ‘Report congiunturale: primo trimestre<br />

2017 comparto ferrosi e non ferrosi’,<br />

Ind. <strong>Fusoria</strong>, vol. 3, p. 10, 2017.<br />

|4| D. Apelian, ‘Looking beyond the last 50 years:<br />

The future of materials science and engineering’,<br />

Jom, vol. 59, no. 2, pp. 65–73, 2007.<br />

|5| M. Muhi, J. Tušek, F. Kosel, D. Klobar, and M.<br />

Pleterski, ‘Thermal Fatigue Cracking of Die-Casting<br />

Dies’, Metalurgija, vol. 49, no. 1, pp. 9–12,<br />

2010.<br />

|6| A. Mohammed, M. B. Marshall, and R. Lewis,<br />

‘Development of a method for assessing erosive<br />

wear damage on dies used in aluminium<br />

casting’, Wear, vol. 332–333, pp. 1215–1224,<br />

2015.<br />

|7| P. Terek et al., ‘Effects of die core treatments<br />

and surface nishes on the sticking and galling<br />

tendency of Al-Si alloy casting during ejection’,<br />

Wear, vol. 356–357, pp. 122–134, 2016.<br />

|8| Z. W. U. Chen and M. Z. Jahedi, ‘Die erosion<br />

and its effect on soldering formation in high<br />

pressure die casting of aluminium alloys’, Mater.<br />

Des., vol. 20, no. 6, pp. 303–309, 1999.<br />

|9| F. S. Gobber, D. Ugues, A. Pisa, M. Pellizzari,<br />

and F. Derimina, ‘Inuenza della nitura superciale<br />

sulla resistenza alla metallizzazione<br />

di un acciaio da stampi per pressocolata delle<br />

leghe di alluminio’, in 36° Convegno Nazionale<br />

AIM, 2016, pp. 18–21.<br />

|10| F. Gobber, A. Pisa, D. Ugues, S. Lombardo, E.<br />

Fracchia, and M. Rosso, ‘Study of the Effect<br />

of Surface—Roughness of Dies and Tooling<br />

for HPDC on Soldering’, in Light Metals <strong>2018</strong>,<br />

<strong>2018</strong>, pp. 977–981.<br />

|11| B. Kosec, ‘Failures of dies for die-casting of aluminium<br />

alloys’, Metalurgija, vol. 47, no. 1, pp.<br />

51–55, 2008.<br />

|12| B. Kosec, L. Kosec, and J. Kopac, ‘Analysis of<br />

casting die failures’, Eng. Fail. Anal., vol. 8, pp.<br />

1–5, 2001.<br />

|13| S. Mascetti, R. Pirovano, and G. Timelli, ‘Molten<br />

Metal/die interaction: die soldering’, in La Metallurgia<br />

Italiana, <strong>2018</strong>, no. 37° Convegno Nazionale<br />

AIM.<br />

|14| M. Rosso, I. Peter, F. Gobber, and A. Montedoro,<br />

‘Correlazione tra la nitura superciale e il<br />

meccanismo di danneggiamento per acciai<br />

da stampo’, in 35° Convegno Nazionale AIM,<br />

2014, p. 10.<br />

|15| J. R. Laguna-Camacho, L. A. Cruz-Mendoza, J.<br />

C. Anzelmetti-Zaragoza, A. Marquina-Chávez,<br />

M. Vite-Torres, and J. Martínez-Trinidad, ‘Solid<br />

particle erosion on coatings employed to protect<br />

die casting molds’, Prog. Org. Coatings,<br />

vol. 74, no. 4, pp. 750–757, 2012.<br />

|16| J. M. Paiva et al., ‘Tribological and wear performance<br />

of nanocomposite PVD hard coatings<br />

deposited on aluminum die casting tool’, Materials,<br />

vol. 11, no. 3, <strong>2018</strong>.<br />

|17| C. Mitterer, F. Holler, F. Üstel, and D. Heim, ‘Application<br />

of hard coatings in aluminium die casting<br />

- soldering, erosion and thermal fatigue<br />

behaviour’, Sur. Coatings Technol., vol. 125,<br />

no. 1–3, pp. 233–239, 2000.<br />

|18| A. Hamasaiid et al., ‘Effect of mold coating materials<br />

and thickness on heat transfer in permanent<br />

mold casting of aluminum alloys’, Metall.<br />

Mater. Trans. A Phys. Metall. Mater. Sci., vol. 38,<br />

no. 6, pp. 1303–1316, 2007.<br />

|19| U. C. Nwaogu and N. S. Tiedje, ‘Foundry Coating<br />

Technology: A Review’, Mater. Sci. Appl.,<br />

vol. 02, no. 08, pp. 1143–1160, 2011.<br />

|20| K. Bobzin, T. Brögelmann, U. Hartmann, and<br />

N. C. Kruppe, ‘Analysis of CrN/AlN/Al2O3and<br />

two industrially used coatings deposited on<br />

die casting cores after application in an aluminum<br />

die casting machine’, Sur. Coatings Technol.,<br />

vol. 308, pp. 374–382, 2016.<br />

|21| E. Fracchia, S. Lombardo, F. Gobber, and M.<br />

Rosso, ‘Paint characterization to improve the<br />

mould durability in the aluminum gravity casting<br />

technology’, in Aluminum 2000, <strong>2018</strong>,<br />

p. 8.<br />

90<br />

<strong>Industria</strong> <strong>Fusoria</strong> 6/<strong>2018</strong>

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!