Solidification Time Analysis 0n Multi- Material Casting (Al&Pb)

Authors

  • Pankaj Kumar  RSR Rungta College of Engineering and Technology Bhila, Chhattisgarh, India
  • Rupendra Marre  RSR Rungta College of Engineering and Technology Bhila, Chhattisgarh, India
  • Dr. Lokesh Singh  RSR Rungta College of Engineering and Technology Bhila, Chhattisgarh, India

Keywords:

Solidification Time, Multi-Material Casting , Aluminium-Lead Alloys

Abstract

The lightweight construction philosophy is based on the principle of making the best possible use of the material. Whenever a single material does not satisfy the demands of a specific application, compound structures may generate a solution. Especially in light weight construction, a multi-material-mix can provide ideal specific properties that are suitable for the conditions to which a part is subjected. Typically such combinations of dissimilar materials provide desired properties in various areas of the single part. Multi –material casting is a process, which yields such multi-material components. The technique is not much old and a few researchers have worked on it. However, the project material casting process backgrounds and shows the great potential for further investigations and innovation in the field. The survey of existing works has revealed several gaps in the fields of substrate pretreatments, continuous flow behavior of metal during the process, correlation between mechanical and geometrical part properties, and industrial application of some advanced processes. so we take two low melting temperature material Aluminum and Lead. One has low density and another have high density both is prone to corrosion.

References

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Published

2020-07-30

Issue

Section

Research Articles

How to Cite

[1]
Pankaj Kumar, Rupendra Marre, Dr. Lokesh Singh, " Solidification Time Analysis 0n Multi- Material Casting (Al&Pb), IInternational Journal of Scientific Research in Mechanical and Materials Engineering(IJSRMME), ISSN : 2456-3307, Volume 4, Issue 4, pp.01-08, July-August-2020.