Title :
Optimum design and analysis of riser for sand casting
Author :
Choudhari, C.M. ; Narkhede, B.E. ; Mahajan, S.K.
Author_Institution :
Dept. of Production Eng., V.J.T.I., Mumbai, India
Abstract :
Solidification of metals continues to be a phenomenon of great interest to physicists, metallurgists, casting engineers and software developers. It is a non-linear transient phenomenon, posing a challenge in terms of modelling and analysis. This paper attempts to study heat flow within the casting, as well as from the casting to the mould, and finally obtains the temperature history of all points inside the casting. The most important instant of time is when the hottest region inside the casting is solidifying. ANSYS software has been used to obtain the last solidifying region in the casting process by performing Transient Thermal Analysis. Location of the hot spot predicted by software simulation showed good agreement with the experimental trial. It was also observed that the simulation of casting helps in obtaining optimum design of riser.
Keywords :
heat transfer; sand casting; thermal analysis; ANSYS software; casting process; heat flow; riser; sand casting; software simulation; temperature history; transient thermal analysis; Casting; Computational modeling; Finite element analysis; Metals; Neck; Software; Solid modeling; Design; analysis; riser; sand casting;
Conference_Titel :
Industrial Engineering and Engineering Management (IEEM), 2013 IEEE International Conference on
Conference_Location :
Bangkok
DOI :
10.1109/IEEM.2013.6962591