The aim of this work was to investigate fracture toughness and corrosion resistance of semisolid AlSi5 castings, compared to samples obtained from conventional casting operations. In order to have a semisolid microstructure, the melt alloy was treated by means of ultrasound during solidification and then poured into permanent moulds. Mechanical properties of semisolid and conventional castings were compared by means of ultimate tensile strength (R(m)), yield stress (R(p02)) and hardness (HV) measurements. Fracture mechanics tests were carried out on Single Edge Notched Bend (SENB) specimens, machined from castings, and pre-cracked by fatigue. These tests were performed to determine the effect of the microstructure on the J-Integral resistance (J-R) behavior and to deeply understand the ductile fracture behaviour of semisolid parts. The J-Integral versus spaced crack extension (J-Delta a) curves showed an improved resistance of the semisolid microstructure, due to the higher ductility.

Fracture toughness and corrosion resistance of semisolid AlSi5 alloy

POLA, Annalisa;MONTESANO, Lorenzo;GELFI, Marcello;ROBERTI, Roberto
2011-01-01

Abstract

The aim of this work was to investigate fracture toughness and corrosion resistance of semisolid AlSi5 castings, compared to samples obtained from conventional casting operations. In order to have a semisolid microstructure, the melt alloy was treated by means of ultrasound during solidification and then poured into permanent moulds. Mechanical properties of semisolid and conventional castings were compared by means of ultimate tensile strength (R(m)), yield stress (R(p02)) and hardness (HV) measurements. Fracture mechanics tests were carried out on Single Edge Notched Bend (SENB) specimens, machined from castings, and pre-cracked by fatigue. These tests were performed to determine the effect of the microstructure on the J-Integral resistance (J-R) behavior and to deeply understand the ductile fracture behaviour of semisolid parts. The J-Integral versus spaced crack extension (J-Delta a) curves showed an improved resistance of the semisolid microstructure, due to the higher ductility.
2011
AIP CONFERENCE PROCEEDINGS
Nessuno
PE8_9 Materials engineering (biomaterials, metals, ceramics, polymers, composites,…)
Nessuno
Inglese
ESAFORM 2011
APRIL 2011
Belfast
Internazionale
STAMPA
unico
1051
1056
6
Springer
semisolid; fracture mechanics; corrosion resistance
none
Pola, Annalisa; Montesano, Lorenzo; Gelfi, Marcello; Roberti, Roberto
273
info:eu-repo/semantics/conferenceObject
4
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/95910
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