METHOD FOR MANUFACTYRING HIGH ELASTIC ALUMINUM ALLOY

A method of manufacturing a high-elasticity aluminum alloy according to an embodiment of the present invention relates to a method of manufacturing an aluminum alloy, including: a melting step for preparing aluminum molten metal; a first component adjustment step of adding 0.76-2.28 wt% of titanium...

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Bibliographische Detailangaben
Hauptverfasser: LEE, JONG KOOK, LEE, HOO DAM
Format: Patent
Sprache:eng ; kor
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Zusammenfassung:A method of manufacturing a high-elasticity aluminum alloy according to an embodiment of the present invention relates to a method of manufacturing an aluminum alloy, including: a melting step for preparing aluminum molten metal; a first component adjustment step of adding 0.76-2.28 wt% of titanium (Ti) chloride and 1-3 wt% of Ferro boron to 100 wt% of the aluminum molten metal; a first stirring step of stirring the molten aluminum by using a stirring bar; a second component controlling step of adding 1-3 wt% of manganese (Mn) chloride to 100 wt% of the aluminum metal; a second stirring step of stirring the aluminum molten metal; and a finishing step of performing degassing so as to remove the salt component in the aluminum molten metal. Accordingly, the present invention is able to improve elasticity and reduce manufacturing cost. 본 발명의 일 실시예에 따른 고탄성 알루미늄 합금 제조방법은 알루미늄 합금을 제조하는 방법에 있어서, 알루미늄 용탕을 마련하는 용융 과정; 상기 알루미늄 용탕 100 중량부에 대하여, 티타늄(Ti) 염화물 0.76 ~ 2.28 중량부 및 페로보론(Ferro Boron) 1 ~ 3 중량부가 혼합된 성분조절 혼합물을 투입하는 제1 성분조절 과정; 교반자(stirring bar)를 이용하여 상기 알루미늄 용탕을 교반하는 제1 교반 과정; 상기 알루미늄 용탕 100 중량부에 대하여, 망간(Mn) 염화물 1 ~ 3 중량부를 투입하는 제2 성분조절 과정; 상기 알루미늄 용탕을 교반하는 제2 교반 과정; 및 상기 알루미늄 용탕 내 염성분을 제저하도록 탈가스 처리하는 마무리 과정;을 포함한다.