Advertisement

Effects of quartz on crystallization behavior of mold fluxes and microstructural characteristics of flux film

Abstract

Background

Mold fluxes are mainly prepared using cement clinker, quartz, wollastonite, borax, fluorite, soda ash and other mineral materials. Quartz, as one of the most common and essential materials, was chosen for this study to analyze itseffects on crystallization temperature, critical cooling rate, crystal incubation time, crystallization ratio and phases of flux film.

Methods

We used the research methods of process mineralogy with the application of the single hot thermocouple technique, heat flux simulator, polarizing microscope, X-ray diffraction, etc.

Results

By increasing the quartz content from 16 mass% to 24 mass%, the crystallization temperature, critical cooling rate and crystallization ratio of flux film decreased, and the crystal incubation time was extended. Meanwhile, the mineralogical structure of the flux film changed, with a large amount of wollastonite precipitation and a significant decrease in the cuspidine content until it reached zero. This showed a steady decline in the heat transfer control capacity of the flux film.

Conclusions

The reason for the results above is that, by increasing the quartz content, the silicon-oxygen tetrahedron network structure promoted a rise in viscosity and restrained ion migration, inhibiting crystal nucleation and growth, leading to the weakening of the crystallization and a decline in the crystallization ratio.

Post author correction

Article Type: ORIGINAL RESEARCH ARTICLE

DOI:10.5301/jabfm.5000382

Authors

Liu Lei, Han Xiuli, Li Mingduo, Zhang Di

Article History

Disclosures

Financial support: This research was supported by the National Natural Science Foundation of China (no. 51774140, no. 51174073 and no. U1360106) and the Science and Technology Research Project for the Higher School of Hebei Province of China (no. QN2016126).
Conflict of interest: None of the authors has any financial interest related to this study to disclose.

This article is available as full text PDF.

  • If you are a Subscriber, please log in now.

  • Article price: Eur 36,00
  • You will be granted access to the article for 72 hours and you will be able to download any format (PDF or ePUB). The article will be available in your login area under "My PayPerView". You will need to register a new account (unless you already own an account with this journal), and you will be guided through our online shop. Online purchases are paid by Credit Card through PayPal.
  • If you are not a Subscriber you may:
  • Subscribe to this journal
  • Unlimited access to all our archives, 24 hour a day, every day of the week.

Authors

Affiliations

  • College of Mining Engineering, North China University of Science and Technology, Tangshan - PR China
  • College of Electrical Engineering, North China University of Science and Technology, Tangshan - PR China

Article usage statistics

The blue line displays unique views in the time frame indicated.
The yellow line displays unique downloads.
Views and downloads are counted only once per session.

No supplementary material is available for this article.