Al-Si 피스톤 합금의 미세조직과 기계적 특성에 미치는 초음파 용탕 처리의 영향
- Abstract
- Multicomponent Al-Si piston alloy was consisted of primary Si, eutectic Si, and various types of intemetallic compounds(IMC) such as δ-Al3CuNi, α-Al15(Mn,Fe)4Si2, ε-Al3Ni, θ-Al2Cu, Μ-Mg2Si, and Q-Al5Cu3Mg8Si6. This alloy has been widely used in high temperature and pressure application such as automobile engine piston or cylinder due to its good castability, high stength-to-weight ratio, and low thermal expansion. Recently, with the increase of the demand for high fuel efficiency, this alloy is required to be available at higher temperature and pressure.
In this study, Al-12Si piston alloy was added with the various transition metal elements and ultrasonic melt treated, and their effects on the microstructure and mechanical properties were systematically investigated. The mechanical properties of Al-Si piston alloy are strongly influenced by the type, size, and distribution of primary Si and IMC as well. It has been well known that UST refine primary Si and IMC which result to improve the mechanical properties of the alloy. A detailed analysis of microstructure was performed using by optical microscopy and scanning electron microscopy. Tensile tests were carried out at room temperature and 350 ℃ and their fractured surfaces were observed.
The addition of alloying elements of transition metals such as Cu, Ni, Fe, Mn increased the volume fraction of IMC. Regardless of the content of transition metal, the primary Si, IMC, and grain were significantly refined and uniformly distributed by UST which could be caused by the cavitation-enhanced heterogeneous nucleation under ultrasonic irradiation. The ultimate tensile strength(UTS), elongation, and qulity index(Q) of the samples with large content(> 6.66wt.%) of transition metals were much improved by UST, which mainly resulted from the refinement of microstructure. On the other hand, the yield strength could not be measured at room temperature owing to the low elongation(< 0.73%), and seemed not to be critically changed by UST at 350℃. With the increase of the area fraction of primary Si and IMC, tensile strength at 350 ℃ was increased by the refinement of primary Si and IMC by UST, while the strength at room temperature was not changed by UST.
- Author(s)
- 이상화
- Issued Date
- 2016
- Awarded Date
- 2016. 2
- Type
- Dissertation
- Keyword
- Al-Si alloy Ultrasonic melt treatment Microstructure Tensile strength
- Publisher
- 부경대학교 대학원
- URI
- https://repository.pknu.ac.kr:8443/handle/2021.oak/12761
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002227540
- Affiliation
- 부경대학교 대학원
- Department
- 대학원 기계공학학ㆍ연협동과정
- Advisor
- 안용식
- Table Of Contents
- Ⅰ. 서론 1
Ⅱ. 이론적 배경 3
2.1 Al-Si계 합금 3
2.1.1 Al-Si 합금의 응고 4
2.1.2 Al-Si 피스톤 합금 6
2.1.3 합금원소 첨가의 영향 8
2.2 초음파 용탕 처리 12
2.2.1 초음파 용탕 처리의 미세화 기구 12
2.2.2 알루미늄 합금에 미치는 초음파 처리의 영향 16
2.3 인장 응력 하에서의 파괴 메커니즘 23
Ⅲ. 실험 방법 28
3.1 합금 설계 28
3.2 합금의 용해 및 제조 30
3.3 초음파 용탕 처리 30
3.4 미세조직 관찰 32
3.5 열처리 32
3.6 인장 시험 및 파단면 관찰 34
Ⅳ. 실험 결과 36
4.1 열역학 계산 36
4.2 미세조직 관찰 39
4.2.1 Al-Si 피스톤 합금 미세조직의 미세화 39
4.2.2 초정 Si과 금속간 화합물의 정량분석 45
4.2.3 결정립 미세화 48
4.3 인장 시험 50
4.3.1 상온과 고온에서의 인장 특성 변화 50
4.3.2 파단면 관찰 54
Ⅴ. 고찰 59
5.1 초기 정출상에 대한 초음파 처리의 영향 59
5.2 초음파 처리 유무에 따른 강도-연성 지수 평가 62
5.3 상의 미세화에 따른 인장 강도의 변화 65
Ⅵ. 결론 71
References 73
- Degree
- Master
-
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