| 系統編號: | 092NTUST489181 | ||||||||||||||||||||||||||||||||||||||||
| 出版年: | 2004 | ||||||||||||||||||||||||||||||||||||||||
| 研究生: | 顏伯勳 | ||||||||||||||||||||||||||||||||||||||||
| 研究生(英文姓名): | Bo -Hsun Yen | ||||||||||||||||||||||||||||||||||||||||
| 論文名稱: | 掀蓋式行動電話鉸鏈結構 | ||||||||||||||||||||||||||||||||||||||||
| 英文論文名稱: | Model development and Analysis for the Folder Type Mobile Phone Hinge | ||||||||||||||||||||||||||||||||||||||||
| 指導教授: | 林榮慶 | ||||||||||||||||||||||||||||||||||||||||
| 指導教授(英文姓名): | Zone -Ching Lin | ||||||||||||||||||||||||||||||||||||||||
| 學位類別: | 碩士 | ||||||||||||||||||||||||||||||||||||||||
| 校院名稱: | 國立台灣科技大學 | ||||||||||||||||||||||||||||||||||||||||
| 系所名稱: | 機械工程系 | ||||||||||||||||||||||||||||||||||||||||
| 學號: | M9103917 | ||||||||||||||||||||||||||||||||||||||||
| 學年度: | 92 | ||||||||||||||||||||||||||||||||||||||||
| 語文別: | 中文 | ||||||||||||||||||||||||||||||||||||||||
| 論文頁數: | 102 | ||||||||||||||||||||||||||||||||||||||||
| 關鍵詞: | 掀蓋式行動電話鉸鏈結構 ; 凸輪輪廓曲面 ; 扭力值 ; 傳動機構 | ||||||||||||||||||||||||||||||||||||||||
| 英文關鍵詞: | Folder Type Mobile Phone Hinge ; CAM curvature ; torque value ; Hinge drive mechanism movement | ||||||||||||||||||||||||||||||||||||||||
| 被引用次數: | 0 | ||||||||||||||||||||||||||||||||||||||||
| [ 摘要 ] | |||||||||||||||||||||||||||||||||||||||||
| 本研究是以掀蓋式行動電話鉸鏈結構設計為實例,模擬與分析掀蓋式行動電話鉸鏈傳動機構及扭力值。 本研究以掀蓋式行動電話鉸鏈結構,利用座標系之定義、座標系之設定及座標轉換,設定傳動機構之座標系了解各元件在不同的座標系統之下其運動情形、運動特性等等的關係,推演出傳動機構之力學分析;針對凸輪輪廓曲面變化設計、壓力角及能量守恆原理,驗證模擬凸輪輪廓與真實凸輪輪廓之凸輪輪廓曲面與扭力值角度是具有參考的價值;使用有限元素分析軟體,模擬行動電話或電子器物結構分析,找出最大應力位置,進行變更設計結構造型,以補強結構本體。本文用一實際的掀蓋式行動電話鉸鏈實際實驗的量測扭力值,以本文理論模式扭力值及角度作比較,驗證本文理論模式是可接受,進ㄧ步利用實例將其所需的輸出角度與升程高度設定,合成所需的運動曲線;並舉實例說明輪廓曲面變化設計與扭力值的關係,並探討設計與製造結合理論與分析。 分析結果可進ㄧ步了解,掀蓋式行動電話鉸鏈結構之扭力值角度誤差主要受到凸輪幾何外型的影響;造成模擬凸輪輪廓與真實凸輪輪廓之誤差的原因,除了幾何外型,還包含真實實驗中嚙合誤差、製造過程的誤差。本研究成果將有助於了解掀蓋式行動電話鉸鏈結構模式及分析,為掀蓋式行動電話鉸鏈結構提供一個新的方向。 | |||||||||||||||||||||||||||||||||||||||||
| [ 英文摘要 ] | |||||||||||||||||||||||||||||||||||||||||
| This article takes the Folder Type Mobile Phone Hinge design as an example for a study of simulation and analyzes the Hinge drive mechanism movement and the torque value. This article takes kinds of methods to get better understand the relationship of Hinge movement conditions and movement properties, such as definitions, settings, and conversions to the coordinate systems. Respecting to the CAM curvature design, pressure angle and energy conservation principle that we can get a creditable torque value and it’s related torque angle data by using a simulated CAM curvature analysis. Reinforce or redesign the Hinge structure after find out the maximum stress point on the simulated Mobile Phone or Electronic device through Finite Element Analysis software. Furthermore, the output angle and the acceleration height setting required by the practical example herein are taken to synthesized the required movement curve, and practical examples are submitted herein to demonstrate the relationship between designed CAM curvature surface, and the designed CAM torque value, the data can be the basic information for the further investigation to the integration of the design and manufacturing fields together with both theories and analysis. Based on the analytical results, it can be further understand that the deviation of torque value angle of Folder Type Mobile Phone Hinge structure is mainly affected by the geometric outline of the CAM design. Apart from CAM outline, the reasons for causing the deviation occurred between the simulated and practical CAM outline are the matching errors in the practical experiment and the deviations on the production process. The result of this study will do the helps for better understand the structure and the analytical model for Folder Type Mobile Phone Hinge, and providing a new direction of Folder Type Mobile Phone Hinge structure development. | |||||||||||||||||||||||||||||||||||||||||
| [ 論文目次 ] | |||||||||||||||||||||||||||||||||||||||||
| 摘要 I ABSTRACT III 誌謝 IV 圖目錄 VIII 表目錄 XII 第一章 緒論 1 1-1研究目的 1 1-2 文獻回顧 2 1-3 論文架構 6 第二章 掀蓋式行動電話鉸鏈結構座標系統與座標轉換矩陣 8 2-1基本座標轉換矩陣介紹 11 2-2 繞任意軸旋轉之轉換矩陣 18 2-3 座標系統定義與轉換矩陣之建立 21 第三章 掀蓋式行動電話鉸鏈結構凸輪輪廓推導 25 3-1 剛體轉置法介紹 26 3-2 凸輪輪廓推導 29 3-3 凸輪與凸輪之滾子之囓合方程式推導 33 3-4曲面介紹 35 3-5 共軛曲面理論介紹 36 第四章 掀蓋式行動電話鉸鏈結構機械力學分析 37 4-1 機構運動 37 4-2 機械特性分析 38 4-3 凸輪軸制動器之滾子與凸輪所承受的負荷 41 4-4 壓力角 45 4-5 凸輪軸制動器之滾子與凸輪上各分力的大小 46 4-6 彈簧所承受的負荷 48 4-7 扭矩分析 52 第五章 掀蓋式行動電話鉸鏈結構問題與分析 54 5-1設計分析 54 5-2有限元素分析 58 第六章 掀蓋式行動電話鉸鏈結構設計實例 69 6-1彈簧實例 69 6-2運動曲線設計實例 70 6-3結果和結論 88 第七章 結論與未來的研究方向 93 7-1結果與討論 93 7-2未來的研究方向 96 參 考 文 獻 97 | |||||||||||||||||||||||||||||||||||||||||
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