Induction heating of semisolid billet and control of globular microstructure to prevent coarsening phenomena
Citation
Hk. Jung et al., Induction heating of semisolid billet and control of globular microstructure to prevent coarsening phenomena, J MAT ENG P, 9(1), 2000, pp. 12-23
Categorie Soggetti
Material Science & Engineering
Journal title
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE
SICI code
1059-9495(200002)9:1<12:IHOSBA>2.0.ZU;2-0
Abstract
An important step in the thixoforming process is the induction heating of t
he raw materials to the semisolid state. Using this technology, the process
behavior is satisfactory from the point of view of reproducibility and tem
perature control. Therefore, the objectives of this st;dy are to define the
correct relationship between coil length and billet length for uniform ind
uction heating and to present the optimal reheating conditions suitable for
the thixoforming process (or to secure a fine globular microstructure with
out liquid segregation).
The optimal inductive coil on the induction heating process of semisolid bi
llet machined to 76 mm diameter and 90 mm length to reduce the temperature
gradient of the billet and to obtain the globular microstructure was theore
tically designed and the suitability of the designed coil dimensions verifi
ed by reheating experiments.
The globular microstructures of semisolid billet in heating and holding pro
cesses were controlled to prevent the coarsening phenomena of Al-7%Si-0.3%M
g alloy and to apply to the thixoforming process. In addition, the effects
of the history of processing and induction heating parameters such as rehea
ting time, holding time, holding temperatures, capacity of the induction he
ating system, and adiabatic material size on the globularization were inves
tigated.
It was concluded that in the case of a three-step reheating process, the fi
nal holding time is the most important factor and 2 min is suitable to main
tain a globular microstructure.