Austempered Ductile Iron, Green Design Alternative for Circular Economy

Author:

Nalawade Dinkar1,Arcot Pramaan1,Khajure Rahul1

Affiliation:

1. VOLVO Group India Pvt Ltd

Abstract

<div class="section abstract"><div class="htmlview paragraph">In the current scenario, manufacturing of heavier products generates colossal waste, generates more CO<sub>2</sub> emission, and negatively affects the environment. Customers not only pay higher product costs but also higher operational costs. This in turn demands the need for more recycling. Advanced high strength materials are a key solution to applications demanding higher strength, stiffness, durability &amp; wear requirement, whereas low density materials like aluminium and magnesium won’t be a sustainable choice. With more and more battery electric &amp; fuel cell vehicles, “light weighting” is a key priority.</div><div class="htmlview paragraph">Austempered Ductile Iron (ADI) has a great advantage of superior mechanical properties compared to conventional ductile iron, aluminium alloys and even some steel forgings. Typically, ADI is used for high wear applications, whereas this paper will demonstrate the potential of using ADI for Structural applications.</div><div class="htmlview paragraph">To display ADI’s potential on “light weight design”, an example of ‘Front Spring Anchorage’ is selected as a proof-of-concept. Analysis is carried out using Finite Element Method (FEM) on a redesigned component to validate its impact. Up to 40% reduction in weight is achieved on the component which greatly benefits commercial vehicles in terms of energy efficiency &amp; cost. Overall, the paper will also exhibit ADI material’s contribution to concept of “sustainable design”, “circular economy” for a greener future.</div></div>

Publisher

SAE International

Reference11 articles.

1. Keough , J.R. , Hayrynen , K.L. , and Pioszak , G.L. Designing with Austempered Ductile Iron (ADI) AFS Proceeding Schaumburg, IL American Foundry Society 2010

2. Brandenberg , K.R. Off-Highway Applications of Austempered Materials Livonia, MI Applied Process Inc. Technologies Div.

3. Hayrynen , K.L. , Brandenberg , K.R. , and Keough , J.R. Applications of Austempered Cast Irons 2002

4. Keough , J.R. , Laird , W.J. Jr. , and Godding , A.D. 1995

5. Rio Tinto Iron and Titanium Inc. 1998 www.ductile.org

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