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EXPERIMENTAL INVESTIGATION OF P/M PARTS MANUFACTURING CONDITIONS USING AA2014 AND ELEMENTAL AL AND CU POWDERS

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dc.creator VAROL, Remzi
dc.creator AL-OBAIDI, Khawlah Noori Mahmood
dc.date 2018-11-30T21:00:00Z
dc.date.accessioned 2020-10-06T11:22:20Z
dc.date.available 2020-10-06T11:22:20Z
dc.identifier c0e7c4de-bb48-40da-a2d2-3c90cb3a43f5
dc.identifier https://avesis.sdu.edu.tr/publication/details/c0e7c4de-bb48-40da-a2d2-3c90cb3a43f5/oai
dc.identifier.uri http://acikerisim.sdu.edu.tr/xmlui/handle/123456789/71121
dc.description <p>Bu &ccedil;alışmanın amacı, iki farklı AA2014 toz grubundan (&ouml;nalaşımlı, elementel<br />formda) elde edilen numunelerin mekanik test sonu&ccedil;ları, kırık y&uuml;zey analizi ve<br />metalografik &ccedil;alışmalarını karşılaştırarak, elementel tozun kullanımıyla elde edilen<br />değerlerin tasarım malzemesi olarak yeterli mekanik &ouml;zelliklere sahip olup<br />olmadığını belirlemeye &ccedil;alışmaktır. &Ouml;n alaşımlı (AA2014), elemental al&uuml;minyum ve<br />bakır tozları kullanılarak klasik toz metalurjisi (TM) y&ouml;ntemiyle numuneler<br />&uuml;retilmiştir. AA2014 alaşımının i&ccedil;erdiği oran kadar, ticari saf Al&uuml;minyum tozuna<br />bakır eklenmiş ve d&ouml;k&uuml;mde soğuk presleme yapılmıştır. Benzer koşullarda, &ouml;n<br />alaşımlanmış (AA2014) tozlar ve element tozlarından benzer bir bileşim elde etmek<br />i&ccedil;in harmanlama ve karıştırma işlemleri ger&ccedil;ekleştirilmiştir. Sinterleme koşulları<br />olarak, &uuml;&ccedil; farklı sıcaklık (600&deg;C, 610&deg;C, 620&deg;C) kullanılmış ve sinterleme s&uuml;resi sabit<br />tutulmuştur (30 dakika). Bu aşamada, al&uuml;minyum matriksinin katı &ccedil;&ouml;zeltiler<br />oluşturmak i&ccedil;in Bakır atomlarını &ccedil;&ouml;zmesi beklenir. Bu durumun ger&ccedil;ekleşmesini<br />incelemek i&ccedil;in metalografik &ccedil;alışmalar yapılmıştır. Sonu&ccedil; olarak, al&uuml;minyum ve<br />bakır tozu, uzun bir kalıp &ouml;mr&uuml; i&ccedil;in alaşımlı AA2014 yerine elemental olarak<br />kullanılabilir.</p>
dc.description <p>The purpose of the work is by comparing the mechanical tests results, fracture<br />surface analysis and metallographical studies of the samples obtained from two<br />different groups of powders (prealloyed, elementally formed AA2014), trying to<br />determine whether the values obtained by the use of elemental powder can have<br />sufficient mechanical properties as design material. Samples were produced by<br />using pre-alloyed (AA2014), elemental aluminum and copper powders by classical<br />powder metallurgy (PM) method. As the same proportion that AA2014 alloy<br />contains, copper was added elementally to the commercial pure Aluminum powder<br />and cold compressing was performed in the cast. In the similar conditions, blending<br />and mixing operations were carried out to obtain similar composition from prealloyed<br />(AA2014) powders and elemental powders. In the sintering conditions,<br />three different temperatures (600°C, 610°C, 620°C) were used and the sintering time<br />kept constant (30 mins) . At this stage, it is expected that the aluminum matrix will<br />dissolve Copper atoms to form solid solution. Metallographic studies carried out to<br />examine the realization of this aspect. As a result, aluminum and copper powders<br />can be used in elemental form instead of pre-alloyed AA2014 for a long die life.</p>
dc.language tur
dc.rights info:eu-repo/semantics/closedAccess
dc.title EXPERIMENTAL INVESTIGATION OF P/M PARTS MANUFACTURING CONDITIONS USING AA2014 AND ELEMENTAL AL AND CU POWDERS
dc.type info:eu-repo/semantics/article


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