透過您的圖書館登入
IP:216.73.216.43
  • 學位論文

FRP遊艇於船架支撐下之變形分析及防損傷對策之探討

The Study on the Deformation and Damage of the FRP Yacht Supported by the Cradle

指導教授 : 李雅榮

摘要


近年來,台灣以累積多年遊艇製造經驗和精巧的工藝聞名於遊艇產業。因FRP質輕、比強度大且不易腐蝕的特性,使得FRP漸漸在遊艇廠廣為使用。 遊艇在製造和搬運的過程中,須置放於船架上。因船架只支撐在局部位置,不均勻的船身自重和艤裝使得船身產生變形,造成船殼外部膠殼產生裂痕和內部裝潢產生破損,造成不美觀,影響商譽,更甚之,導致結構破損而影響其安全性,所以遊艇廠必須增加額外的原物料和工時,以修復破損處。 本文主要針對遊艇廠既有的遊艇船型及船架,建立其實船變形之量測系統,紀錄在各製造階段中,實船於船架上之變形情形。再依照實際尺寸、形狀和使用材料,建立含船殼、主甲板、隔艙壁和加強材的有限元素模型,以有限元素軟體進行結構分析,探討其船身置於船架上的受力及變形情況。進而更改其船架支撐位置,以減少因船身的變形量而引起的後續問題。

並列摘要


The yacht industry in Taiwan is well known for its abundant experiences and excellent craftsmanship in the world. FRP is deemed as the best main structure material and widely used by the Taiwan yacht builders for the past forty years because of its characteristics of light, good specific strength and anti-corrosiveness, etc. Cradles are always needed for supporting the yachts during their construction and transportation. Local concentrative forces loaded by the unevenly distributed weights of yacht itself are only applied on the certain contact area between hull and cradle brackets. The FRP hull deformed, gel coat cracked, and the distorted furnished interior and joinery work all cost the builder a lot to repair the imperfections. Moreover, even in the worst condition, the safety issue occurs owing to the structure failing which might not be solved by money only. This project aims to establish the deformed measurement and import the information of existing cradle, such as dimension, material and shape into a pre-built finite element model of a target boat including whole boat structures, for example. hull, bulkheads and stiffeners, etc. By using commercial FEA software ABAQUS, the response of the structure would help the optimization of the design of hull and cradle and reduce the problems caused by deformation.

參考文獻


Australia, June 1997.
[3] 鍾承憲、李雅榮、林輝政、林勁成、詹育禔, “船用先進複合材料靜態力學特性之探討”, 第十九屆中國造船暨輪機工程研討會暨國科會成果發表會 論文集, 2007
[4] Ever J. Barbero, ”Finite Element Analysis of Composite Materials”, Department of Mechanical and Aerospace Engineering in West Virginia University, USA, 2007
[6] Ojeda, R., B. G. Prusty and M. Salas, “Finite element investigation on the static response of a composite catamaran under slamming loads”, Ocean Engineering 31, pp. 901-929, 2004.
[1] 李雅榮, “複合材料力學”, 國立台灣大學工程科學及海洋工程學系, 2006

被引用紀錄


李綺芳(2010)。波浪負荷下之遊艇結構強度分析〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2010.01114

延伸閱讀