<?xml version="1.0"?><rdf:RDF xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:edm="http://www.europeana.eu/schemas/edm/" xmlns:wgs84_pos="http://www.w3.org/2003/01/geo/wgs84_pos" xmlns:foaf="http://xmlns.com/foaf/0.1/" xmlns:rdaGr2="http://rdvocab.info/ElementsGr2" xmlns:oai="http://www.openarchives.org/OAI/2.0/" xmlns:owl="http://www.w3.org/2002/07/owl#" xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:ore="http://www.openarchives.org/ore/terms/" xmlns:skos="http://www.w3.org/2004/02/skos/core#" xmlns:dcterms="http://purl.org/dc/terms/"><edm:WebResource rdf:about="http://www.dlib.si/stream/URN:NBN:SI:doc-FR4R674A/5a2a2a6e-94ea-4cbc-b42e-85fb0e7476a5/PDF"><dcterms:extent>8577 KB</dcterms:extent></edm:WebResource><edm:WebResource rdf:about="http://www.dlib.si/stream/URN:NBN:SI:doc-FR4R674A/5d01cd2d-2990-4eeb-b143-136c18981306/TEXT"><dcterms:extent>0 KB</dcterms:extent></edm:WebResource><edm:TimeSpan rdf:about="1999-2025"><edm:begin xml:lang="en">1999</edm:begin><edm:end xml:lang="en">2025</edm:end></edm:TimeSpan><edm:ProvidedCHO rdf:about="URN:NBN:SI:doc-FR4R674A"><dcterms:isPartOf rdf:resource="https://www.dlib.si/details/URN:NBN:SI:spr-6QOUKQ9A" /><dcterms:issued>2023</dcterms:issued><dc:creator>Elangandhi, Jamuna</dc:creator><dc:creator>Periyagounder, Suresh</dc:creator><dc:creator>Saminatharaja, Duraisivam</dc:creator><dc:creator>Selavaraj, Mahalingam</dc:creator><dc:format xml:lang="sl">letnik:69</dc:format><dc:format xml:lang="sl">številka:9/10</dc:format><dc:format xml:lang="sl">str. 388-400</dc:format><dc:identifier>ISSN:0039-2480</dc:identifier><dc:identifier>DOI:10.5545/sv-jme.2023.518</dc:identifier><dc:identifier>COBISSID_HOST:168702211</dc:identifier><dc:identifier>URN:URN:NBN:SI:doc-FR4R674A</dc:identifier><dc:language>en</dc:language><dc:publisher xml:lang="sl">Zveza strojnih inženirjev in tehnikov Slovenije etc.</dc:publisher><dcterms:isPartOf xml:lang="sl">Strojniški vestnik</dcterms:isPartOf><dc:subject xml:lang="sl">baker</dc:subject><dc:subject xml:lang="en">boron carbide</dc:subject><dc:subject xml:lang="sl">borov karbid</dc:subject><dc:subject xml:lang="en">copper</dc:subject><dc:subject xml:lang="en">friction stir welding</dc:subject><dc:subject xml:lang="sl">kompozitni materiali</dc:subject><dc:subject xml:lang="en">metal matrix composites</dc:subject><dc:subject xml:lang="sl">varjenje z gnetenjem</dc:subject><dcterms:temporal rdf:resource="1999-2025" /><dc:title xml:lang="sl">Mechanical and microstructural properties of B4C/W reinforced copper matrix composite using a friction stir-welding process|</dc:title><dc:description xml:lang="sl">Copper metal matrix composites (CMC) are broadly employed in various applications in the fields of space, aviation, automobile and electronics industries. The welding of CMC in using conventional methods is very difficult and expensive due to its crystallographic nature. Friction stir welding (FSW) is a more prominent and reliable technique for welding than conventional methods. Therefore, this work is based on work with CMC material, which is prepared with a stir-casting technique. Pure copper (Cu) is reinforced with tungsten (W) and boron carbide (B4C) particles in different combinations and welded using the FSW process to study the mechanical and micro-structural properties. Multi-objective decision-making methods, such as the technique for order preference by similarity to ideal solution (TOPSIS) and grey relational analysis (GRA) are used to find optimal parameter combination. The experiments are planned according to the L 18 orthogonal array (OA) using the most influential parameters, such as reinforcement the percentage of B4C, tool rotational speed, welding speed, and axial force. The performance of outcomes is measured based on the responses such as tensile strength, hardness, and impact strength of the weld joint. Based on the results 15 % of B4C reinforcement, 900 RPM rotational speed, 15 mm/min welding speed and 6 kN axial forces are optimal for better mechanical strength in the welding with TOPSIS and GRA techniques. Additionally, scanning electron microscopic image (SEM) analyses were carried out for better understanding of weldments’ microstructure changes</dc:description><edm:type>TEXT</edm:type><dc:type xml:lang="sl">znanstveno časopisje</dc:type><dc:type xml:lang="en">journals</dc:type><dc:type rdf:resource="http://www.wikidata.org/entity/Q361785" /></edm:ProvidedCHO><ore:Aggregation rdf:about="http://www.dlib.si/?URN=URN:NBN:SI:doc-FR4R674A"><edm:aggregatedCHO rdf:resource="URN:NBN:SI:doc-FR4R674A" /><edm:isShownBy rdf:resource="http://www.dlib.si/stream/URN:NBN:SI:doc-FR4R674A/5a2a2a6e-94ea-4cbc-b42e-85fb0e7476a5/PDF" /><edm:rights rdf:resource="http://rightsstatements.org/vocab/InC/1.0/" /><edm:provider>Slovenian National E-content Aggregator</edm:provider><edm:intermediateProvider xml:lang="en">National and University Library of Slovenia</edm:intermediateProvider><edm:dataProvider xml:lang="sl">Univerza v Ljubljani, Fakulteta za strojništvo</edm:dataProvider><edm:object rdf:resource="http://www.dlib.si/streamdb/URN:NBN:SI:doc-FR4R674A/maxi/edm" /><edm:isShownAt rdf:resource="http://www.dlib.si/details/URN:NBN:SI:doc-FR4R674A" /></ore:Aggregation></rdf:RDF>