| 研究生: |
陳彥良 Chen, Yen-lian |
|---|---|
| 論文名稱: |
利用電池效應測試法分辨高速船舶推進軸系中不鏽鋼材質之研究 Distinction between Stainless Materials for the Propulsion Shaft of High-speed Vessel by using cell reaction Method |
| 指導教授: |
楊世安
Yang, Shih-An 黃正清 Huang, Cheng-Ching |
| 學位類別: |
碩士 Master |
| 系所名稱: |
工學院 - 系統及船舶機電工程學系 Department of Systems and Naval Mechatronic Engineering |
| 論文出版年: | 2008 |
| 畢業學年度: | 96 |
| 語文別: | 中文 |
| 論文頁數: | 61 |
| 中文關鍵詞: | 不鏽鋼 、高速船舶推進軸系 |
| 外文關鍵詞: | stainless steel, Propulsion shaft of high-speed vessel |
| 相關次數: | 點閱:45 下載:1 |
| 分享至: |
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在台灣所使用的高速船舶推進軸系,大多使用不鏽鋼SUS630合金材質,也有使用SUS316、SUS316L以及SUS304不鏽鋼材質,雖然這四種不同且常用的不鏽鋼外觀相似,但是其價錢以及物理性質與化學性質卻有差異,本研究利用這四種不鏽鋼材質的不同化學元素組成,利用電池效應測試法所產生的電壓判別這四種外觀相似的不鏽鋼。
以往判斷材質的方法,利用XRF可以得到合金中各個元素的比例,但是除了將材料送到檢驗中心去檢測外,手提式陽春型的XRF的價位也要20多萬,倘若只是想要簡易且經濟的判斷材質,則是利用化學方法產生的變化來判斷合金種類。
在本研究中,利用不同的試劑產生的電壓來比較不同材質的高速船舶軸系所使用的不鏽鋼,而不是利用其它的化學方法加速反應後再從顏色以及產生物來判斷,減少因為加速反應而使材料造成破壞。
In Taiwan, most propulsion shafting system for high-speed Vessel uses the materials stainless steel SUS630, sometimes SUS316, SUS316L and SUS304 stainless steel as well. Although these four different but frequently used stainless steels appearances look similar, but the prices, physical properties, and chemical properties are totally different. The major of this research is to differentiate these four similar appearance kinds of stainless steels by using each of the different chemical elements, and use the voltage produced from cell reaction.
Before the diagnosis way to define different materials are use XRF. XRF can get the proportions of each element but besides sending the materials to examination center, even simple portable XRF cost $200,000. If only want to estimate the material easily and economically, and then we need to use the change of chemical method to define the type of alloys.
In this research, we compare different materials stainless steels by using different reagents produced voltages, instead of using its chemical way to accelerate reactions then define by colors and products. This way can reduce the damage for materials causing from accelerate reactions.
1. 馬豐源,"淺述動力船推進裝置",船舶與海運,944,2003.
2. 佐藤昌男,"軸",日本舶用機關學會誌,第33卷第9號,1998-9.
3. 馬豐源,"高速船舶推進軸系疲勞壽命可靠性分析模式之研究",國立台灣海洋大學系統工程暨造船工程學系博士學位論文,2007.
4. C.Fahir Arisoy, Gokhan Başman and M. Kelami Şeşen,"Failure of a 17-4 PH stainless steel sailboat propeller shaft" Engineering Failure Analysis 10 (2003) 711–717.
5.Matjaž Torkar, Djordje Mandrino, Martin Lamut,"An AES INVESTIGATION OF BRUSHED AISI 304 STAINLESS STEEL AFTER CORROSION TESTING", Materials and technology 42 (2008) 1, 39–43.
6. 王繼敏,"不銹鋼與金屬腐蝕",科技出版社,P.9~59,P.146-148,1990.
7. Bruce L. BramfittArlan O. Benscoter," Metallographer's Guide Practices and Procedures for Irons and Steels", ASM International,P.14,2002.
8. HerbertH. Uhlig,簡家淦 劉曉嶺譯"金屬腐蝕與防蝕",正言出版社,P.6-91,P.281-309,1977.
9. A. Pardo, M.C. Merino, A.E. Coy, F. Viejo, R. Arrabal, E. Matykina,"Effect of Mo and Mn additions on the corrosion behaviour of AISI 304 and 316 stainless steels in H2SO4", Corrosion Science 50 (2008) 780–794
10. 楊藏嶽,“電化學與電池(中國工程師手冊電機類第十八篇)",中國電機工程學會,P.41-45,P.86-116.1976
11. 魚崎浩平 喜多英明,黃忠良譯,"基本電化學", 復漢出版社,P251-256,1984.
12. 佐藤知雄 編,賴耿陽譯著,"鐵鋼組織顯微鏡圖說",復漢出版社,P.205-216,1985
13. 陳永達.,"JIS鐵鋼材料入門", 南台圖書公司,P.129-146,1992.
14. 特勒 威爾著,曾廣典 陳善晃重譯,"定性分析化學",台灣商務印書館,P630-632,1977.
15. CR,Rules for the Construction and Classification of High-Speed Craft,2008.
16. IMO,International Code of Safety for High Speed Craft,1994.