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Mechanical and corrosion properties of rheocast and low-pressure cast A356-T6 alloy

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TLDR
In this paper, the mechanical and corrosion behavior of rheocast and low-pressure cast A356-T6 alloy were examined and compared with each other, and the tensile, impact and high-cycle fatigue tests were conducted to characterizing the mechanical behavior.
Abstract
In this study, the mechanical and corrosion behavior of rheocast and low-pressure cast A356-T6 alloy were examined and compared with each other. Tensile, impact and high-cycle fatigue tests were conducted to characterizing the mechanical behavior. For the study of general corrosion and stress corrosion cracking behavior of A356-T6 alloy, polarization, potentiostatic and in situ slow strain rate tests were performed on both products of A356-T6 alloy in a 3.5% NaCl solution. It was found that the mechanical and corrosion behaviors, as well as the microstructural features, of A356-T6 alloy were substantially affected by different processing routes. The tensile elongation and the impact energy values of A356-T6 were, e.g., greatly improved with rheocasting process. The resistance to general corrosion and stress corrosion cracking was also improved with rheocasting process. This study strongly suggests that the microstructural features, including the volume fraction and the shape of eutectic Si particles, are largely responsible for the variation in the mechanical and corrosion properties of A356-T6 alloy with different processing routes.

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Pitting corrosion of rheocast A356 aluminium alloy in 3.5wt.% NaCl solution

TL;DR: In this article, the microstructure and corrosion behavior of rheocast and gravity-cast A356 aluminium alloys were examined and compared, and it was shown that large potential differences between iron-containing intermetallics and the α-Al matrix were responsible for the initiation of the attack at the intermetalics/α-Al interfaces.
Journal ArticleDOI

Effects of eutectic modification and T4 heat treatment on mechanical properties and corrosion resistance of an Al–9 wt%Si casting alloy

TL;DR: In this article, the influence of microstructural parameters of an Al-9-wt%Si alloy in as-cast, modified (eutectic) and heat-treated conditions on the resultant mechanical properties and corrosion resistance was investigated.
Journal ArticleDOI

Microstructure and Properties of Semi-Solid Aluminum Alloys: A Literature Review

TL;DR: In this article, a review on the formation of this non-endritic microstructure is presented, and the relationship between micro-structure and properties, in particular, tensility, fatigue, wear, and corrosion resistance.
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Processing and tensile properties of A356 composites containing in situ small-sized Al 3 Ti particulates

TL;DR: In this paper, an in situ casting method was proposed for preparing Al3Tip/A356 composites with high strength and good ductility by adding Ti powders into molten A356 at 800°C.
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Prediction of rheological behaviour and segregation susceptibility of semi-solid aluminium-silicon alloys by a simple back extrusion test

TL;DR: In this article, the authors studied the segregation susceptibility of a number of samples based on the Al-Si system and quenched from the semi-solid state and found a positive correlation associating segregation extent, microstructural permeability, liquid phase percolation velocity during extrusion and micro-structural features such as the Alα particle size and shape.
References
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Journal ArticleDOI

Behavior of metal alloys in the semisolid state

TL;DR: In the limit of vigorous convection and slow cooling, grains become spheroidal and behave thixotropic, and viscosity can be varied over a wide range, depending on processing conditions as mentioned in this paper.
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Rheological behavior of Sn-15 pct Pb in the crystallization range

TL;DR: In this paper, the authors used a Couette type viscometer to study the rheological behavior of Sn-15 pct Pb alloy in the solidification range.
Journal ArticleDOI

Simple rheocasting processes

TL;DR: In this paper, two simple rheocasting processes were described, one using a cooling slope and the other low superheat casting, to generate semisolid slurries with spheroidal microstructures that are amenable to thixoforming.
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Experimental investigation of the transient and steady state rheological behaviour of Al–Si alloys in the mushy state

TL;DR: In this paper, a purpose-built high temperature Searle rheometer was used to determine the rheological behavior of aluminium alloy slurries at shear rates from 3.1 to 124.8 s −1, periods of shear of up to 60 min for each shear rate, and periods of rest (no stirring) of upto 60 min in Al-4wt.
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