Loading…

A Systematic Approach to Model and Optimize Qualities of Castings Produced by Squeeze Casting Process

The present study attempts to promote the quality of squeeze casting components by a two-stage study which includes experimental research of virtual casting based on response surface method (RSM) and experimental research of actual production casting. In the first stage, the critical parameters dete...

Full description

Saved in:
Bibliographic Details
Published in:International journal of metalcasting 2023-07, Vol.17 (3), p.1715-1735
Main Authors: Zhou, Dashuang, Su, Xiaoping, Yang, Chuang, Kang, Zhengyang, Li, Zhi
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:The present study attempts to promote the quality of squeeze casting components by a two-stage study which includes experimental research of virtual casting based on response surface method (RSM) and experimental research of actual production casting. In the first stage, the critical parameters determined by the numerical model of casting procedure indicate that the qualities of castings, including casting solidification time, secondary dendrite spacing and porosity, are highly affected by the die temperature, pouring temperature and filling velocity. The input–output relationship developed, based on Box–Behnken experimental design (BBD), is found to be statistically adequate and yielded better prediction accuracy. NSGA-II algorithm performs multi-directional search in multi-dimensional space simultaneously combining with the data optimization software ISIGHT. In the second stage, the trial production test was carried out on the squeeze casting machine to verify the optimal parameters. X-ray inspection, metallographic structure testing and mechanics performance testing show that the casting has no casting defects and has good mechanical properties.
ISSN:1939-5981
2163-3193
DOI:10.1007/s40962-022-00887-6