<?xml version="1.0" encoding="UTF-8"?>
<records>
<record>
<language>eng</language>
<publisher>Science and Education Publishing</publisher>
<journalTitle>Materials Science and Metallurgy Engineering</journalTitle>
<publicationDate>2013-12-09</publicationDate>
<volume>1</volume>
<issue>2</issue>
<startPage>42</startPage>
<endPage>49</endPage>
<doi>10.12691/msme-1-2-6</doi>
<publisherRecordId>MSME2013126</publisherRecordId>
<documentType>article</documentType>
<title language="eng">Reliability Level of Pb-Sb-Cu Alloy Electrical Resistance Dependence on Its Melting Temperature and Copper Input Concentration</title>
<authors>
<author>
<name>C. I. Nwoye</name>
<email>nwoyennike@gmail.com</email>
<affiliationId>1</affiliationId>
</author>
<author>
<name>A. O. Agbo</name>
<affiliationId>2</affiliationId>
</author>
<author>
<name>C. C. Nwogbu</name>
<affiliationId>3</affiliationId>
</author>
<author>
<name>S. Neife</name>
<affiliationId>4</affiliationId>
</author>
<author>
<name>E. M. Ameh</name>
<affiliationId>4</affiliationId>
</author>

</authors>
<affiliationsList>
<affiliationName affiliationId="1">Department of Metallurgical and Materials Engineering, Nnamdi Azikiwe University, Awka, Nigeria</affiliationName>
<affiliationName affiliationId="2">Department of Metallurgical and Materials Engineering, Enugu State University of Science &amp; Technology, Enugu, Nigeria</affiliationName>
<affiliationName affiliationId="3">Science Technical Vocation Schools Management Board, Enugu, Nigeria</affiliationName>
<affiliationName affiliationId="4">Department of Metallurgical and Materials Engineering, University of Nigeria Nsukka, Nigeria</affiliationName>

</affiliationsList>
<abstract language="eng">This paper assesses the reliability level of Pb-Sb-Cu alloy electrical resistance dependence on its melting temperature and copper input concentration. The alloy was cast by pouring a stirred mixture of heated Pb-Sb alloy and powdered copper into a sand mould and then furnace cooled. Results of electrical test carried out indicate that the electrical resistance of the Pb-Sb-Cu alloy decreases with increase in the melting temperature of the Pb-Sb-Cu alloy. This invariably implied decrease in the electrical resistivity of the alloy. Increased copper addition (0.99-8.26 wt%) to the base alloy (Pb-Sb) also correspondingly decreased the electrical resistance. The experimental results were complement by results generated using a derived model. The validity of the two-factorial derived model expressed as: ξ - 66.615 = - 0.1248ɤ + 66.615 was rooted on the expression Φ - 66.615 = - 0.1248? - 0.0398? where both sides of the expression are correspondingly approximately equal. Statistical analysis of the experiment, derived model &amp; regression model-predicted results shows that the standard errors incurred in predicting the Pb-Sb-Cu alloy electrical resistance for each value of the melting temperature and copper input were 0.1247, 0.1722 &amp; 3.517 x 10-5 % and 0.4276, 0.1797 &amp; 0.3593 % respectively. Evaluations indicate that Pb-Sb-Cu alloy electrical resistance per unit rise in the melting temperature and copper mass-input as obtained from experiment, derived model &amp; regression model-predicted results were 0.2507, 0.2309 &amp; 0.2496 ΦΩ /&#176;C and 0.094, 0.0866 &amp; 0.0936 Ω/ g respectively. Deviational analysis indicated that the maximum deviation of derived model-predicted electrical resistance from the experimental results was less than 3%. This translated into over 97% operational confidence and reliability level for the derived model and over 0.97 reliability coefficient for the Pb-Sb-Cu alloy electrical resistance dependence on the alloy melting temperature and copper input concentration.</abstract>
<fullTextUrl format="pdf">http://pubs.sciepub.com/msme/1/2/6/msme-1-2-6.pdf</fullTextUrl>
<keywords language="eng">reliability level assessmentPb-Sb-Cu alloy electrical resistancemelting temperaturecopper input concentration</keywords>
</record>
</records>
