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  • 學位論文

實體偏移及薄殼化之探討

Solid Offset and Shelling

指導教授 : 尤春風

摘要


實體偏移是從幾何偏移演進而來,其目的是將實體的外形向外延伸或向內收縮固定的厚度而成為一個新的實體。薄殼化屬於實體偏移的延伸應用,實體模型依其外形及指定的厚度轉變成為薄殼狀的實體模型。在建立偏移實體時,常因為偏移的距離太大,使得實體的邊界過度扭曲甚至自交,造成無法形成封閉的實體。本研究提出實體偏移之法則,並延伸此法則至實體薄殼化,利用偏移運算或薄殼化運算將邊界表示法建構之實體模型轉換成另一實體模型,在偏移運算及薄殼化運算的過程中提供自交的檢驗及修正方法。

關鍵字

實體模型 偏移 薄殼化 自交

並列摘要


Solid offset is derived from the geometry offset and is a procedure where a uniform thickness is added or removed from a solid model. Shelling is an extended application of solid offset and is a procedure which turns a solid model into a thin-walled shell of constant thickness. Self-intersection often occurred in the process of solid offset operation or shelling operation. An algorithm of the solid offset operation and shelling operation based of on boundary representation (Brep) solid models are given. In this algothirms, self-intersection is detected and corrected to generate correct solid models.

並列關鍵字

solid model offset shelling self-intersection

參考文獻


[1] Aomura, S. and Uehara, T., “Self-intersection of an offset surface”, Computer Aided Design, Vol.22, No.7, pp.417-422, 1990.
[3] Coquillart, S., “Computing offsets of B-spline curves”, Computer Aided Design, Vol.19, No.6, pp.305-309, 1987.
[4] Farin, G., “Curvature continuity and offsets for piecewise conics”, ACM Transactions on Graphics, Vol.15, pp.89-99, 1989.
[5] Farouki, R. T., “Exact offset procedures for simple solids”, Computer Aided Geometric Design, Vol.2, pp.257-279, 1985.
[6] Farouki, R. T., “The approximation of non-degenerate offset surfaces”, Computer Aided Design, Vol.3, No.1, pp.15-44, 1986.

延伸閱讀


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  • Fung, W. L. (2005). 分割不可脫模之薄殼物件成為數個可脫模物件 [master's thesis, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2005.01084
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  • Yuan, R. (2022). Progress in Solid Lubricating Materials. World Scientific Research Journal, 8(3), 517-521. https://doi.org/10.6911/WSRJ.202203_8(3).0063
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