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Abstract

Casting covers major area of production all over the world. Resin bonded casting is widely used in today’s manufacturing industries. Furan

No bake casting is most widely accepted in indian foundries due to its excellent surface finish and dimensional stability. It is a self-setting

binder and it has a lower work and strip times. Though the casting process is also known as process of uncertainty, in the present study, an

attempt has been made to investigate the effect of Grain Fineness Number, Loss of Ignition, Potential of Hydrogen, % of Resin with

respect to sand, Sand Temperature and Compressive strength of the mould on Sand Inclusion defect – one of the most dominating defect in

the Krislur Castomech Pvt. Ltd. Industry situated at Bhavnagar, Gujarat, India. The experiments were conducted based on response surface

methodology (RSM) and sequential approach using face centered central composite design. The results show that quadratic model with

removal of some insignificant term is comparatively best fits for Sand Inclusion Defect.

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Authors and Affiliations

S.G. Acharya
J.A. Vadher
K.D. Kothari
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Abstract

The river system of the Bengal delta encompasses a huge amount of fluvial sand; however, no comprehensive studies were available on using this river sand in foundry industries. Hence, the present research evaluates the foundry properties of trans-boundary Brahmaputra River sand and its prospects for use in foundries. Several laboratory analyses have been performed to elicit the foundry properties using standard methods of foundry analysis, including XRD, XRF, TG-DSC, and FESEM. From the study, the sand contains mainly quartz with small amounts of feldspar, amphibole, chlorite, and mica, and exhibits a subangular to subrounded shape. The sand is dominated by SiO2 (67.81–69.97%) and lesser amounts of other oxides, and it is thermally stable within 1000 °C temperature. The grain fineness number (64–79), mineralogical, chemical, thermal, and foundry properties are suitable for non-ferrous metal casting without distortion. Further, the aluminum and zinc alloy casting with trials demonstrate their potential for use in the foundry industries. The outcomes of this study thus offer valuable information about utilizing Brahmaputra River sand for foundry applications.
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Authors and Affiliations

Md. Shohel Rana
1
ORCID: ORCID
Md. Shams Shahriar
1
ORCID: ORCID
Md. Sha Alam
1
ORCID: ORCID
Md. Imam Sohel Hossain
1
ORCID: ORCID
Pradip Kumar Biswas
1
ORCID: ORCID
Mohammad Nazim Zaman
1
ORCID: ORCID

  1. Institute of Mining, Mineralogy and Metallurgy (IMMM), Bangladesh Council of Scientific and Industrial Research (BCSIR), Joypurhat 5900, Bangladesh

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