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    <title>DSpace Collection: 2012 Publications</title>
    <link>http://localhost:8080/xmlui/handle/123456789/223</link>
    <description>2012 Publications</description>
    <pubDate>Wed, 08 Apr 2026 02:16:58 GMT</pubDate>
    <dc:date>2026-04-08T02:16:58Z</dc:date>
    <item>
      <title>Hot Tearing Susceptibility of Magnesium–Gadolinium Binary Alloys</title>
      <link>http://localhost:8080/xmlui/handle/123456789/2536</link>
      <description>Title: Hot Tearing Susceptibility of Magnesium–Gadolinium Binary Alloys
Authors: Srinivasan, Amirthalingam; Zhi Wang; Yuanding Huang; Felix Beckmann; Karl Ulrich Kainer; Norbert Hort
Abstract: Hot tearing susceptibility of Mg–Gd alloys are&#xD;
investigated using instrumented constrained rod casting&#xD;
(CRC) apparatus, and found that the susceptibility increases with increase in Gd content, and reaches a maximum at&#xD;
2 % after which it decreases to a minimum with 10 % Gd.&#xD;
The high susceptibility observed with 2 % Gd is due to its&#xD;
columnar structure and low amount of eutectic liquid at the&#xD;
time of cracking, whereas equiaxed grain and high liquid&#xD;
content which facilitates crack healing are the reasons for&#xD;
the low susceptibility of Mg–10 Gd alloy</description>
      <pubDate>Sat, 01 Dec 2012 00:00:00 GMT</pubDate>
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      <dc:date>2012-12-01T00:00:00Z</dc:date>
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      <title>Erratum to: Corynebacterium Glutamicum as a Potent Biocatalyst for the Bioconversion of Pentose Sugars to Value-Added Products</title>
      <link>http://localhost:8080/xmlui/handle/123456789/2519</link>
      <description>Title: Erratum to: Corynebacterium Glutamicum as a Potent Biocatalyst for the Bioconversion of Pentose Sugars to Value-Added Products
Authors: Vipin Gopinath; Anusree Murali; Dhar Kiran, S; Nampoothiri, K M</description>
      <pubDate>Sun, 01 Jan 2012 00:00:00 GMT</pubDate>
      <guid isPermaLink="false">http://localhost:8080/xmlui/handle/123456789/2519</guid>
      <dc:date>2012-01-01T00:00:00Z</dc:date>
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    <item>
      <title>Effect of Mg on Solidification Microstructures of Homogenous and Functionally Graded A390 Aluminum Alloys</title>
      <link>http://localhost:8080/xmlui/handle/123456789/2518</link>
      <description>Title: Effect of Mg on Solidification Microstructures of Homogenous and Functionally Graded A390 Aluminum Alloys
Authors: Jayakumar, E; Rajan, T P D; Pai, B C
Abstract: Hypereutectic Al–Si alloys are used in components that require high resistance wear and corrosion,&#xD;
good mechanical properties, low thermal expansion and&#xD;
less density. The size and morphology of hard primary&#xD;
silicon particles present in Al–Si alloys greatly influences&#xD;
the mechanical properties. Addition of Mg leads to formation of intermetallic Mg2Si phases, which contributes&#xD;
towards the properties of high silicon alloy as well as alters&#xD;
the nature and quantity of primary silicon formed. The high&#xD;
silicon alloy subjected to centrifugal casting leads to the&#xD;
formation of functionally gradient material, which provides&#xD;
variation in spatial and continuous distribution of primary&#xD;
phases in a definite direction exhibiting selective properties&#xD;
and functions within a component. The present study is to&#xD;
evaluate the effect of Mg on solidification microstructures&#xD;
of homogenous and functionally graded A390 aluminium&#xD;
alloys. The addition of Mg from 3 to 5 % in A390 alloy&#xD;
using Al–20Mg master alloy has shown a transformation&#xD;
from primary silicon rich matrix to Mg2Si rich matrix.&#xD;
Centrifugal casting shows the gradient distribution of primary silicon and Mg2Si phases towards the inner periphery&#xD;
of the casting</description>
      <pubDate>Wed, 10 Oct 2012 00:00:00 GMT</pubDate>
      <guid isPermaLink="false">http://localhost:8080/xmlui/handle/123456789/2518</guid>
      <dc:date>2012-10-10T00:00:00Z</dc:date>
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      <title>Developments in Solidification Processing of Functionally Graded Aluminium Alloys and Composites by Centrifugal Casting Technique</title>
      <link>http://localhost:8080/xmlui/handle/123456789/2516</link>
      <description>Title: Developments in Solidification Processing of Functionally Graded Aluminium Alloys and Composites by Centrifugal Casting Technique
Authors: Rajan, T P D; Jayakumar, E; Pai, B C
Abstract: Centrifugal casting is one of the potential solidification processing techniques used for producing near-net shaped&#xD;
symmetrical cast components with improved properties. The&#xD;
emergence of new class of functionally graded materials has&#xD;
propelled this technique for the fabrication of engineering&#xD;
components and structures with graded property. The specific&#xD;
properties obtained by the use of functionally graded metal&#xD;
matrix composites (FGMMC) are high temperature surface wear&#xD;
resistance, surface friction and thermal properties, adjustable&#xD;
thermal mismatching, reduced interfacial stresses, increased&#xD;
adhesion at metal–ceramic interface, minimized thermal stresses&#xD;
and increased fracture toughness and crack retardation. Among&#xD;
various processing techniques available for the fabrication of&#xD;
FGMMC, centrifugal casting hasemerged as the simplest and&#xD;
cost effective technique for producing large size engineering&#xD;
components of FGMMC. The present paper gives an overview&#xD;
on the developments in use of centrifugal processing technique&#xD;
for processing various functionally graded aluminium alloys and&#xD;
composites. The influence of various process and solidification&#xD;
parameters on microstructure and properties of graded alloys and&#xD;
composites are described</description>
      <pubDate>Tue, 11 Sep 2012 00:00:00 GMT</pubDate>
      <guid isPermaLink="false">http://localhost:8080/xmlui/handle/123456789/2516</guid>
      <dc:date>2012-09-11T00:00:00Z</dc:date>
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