[1] 翁嘉駿,2005,工具機動件結構最佳化設計與分析,中原大學,碩士論文。[2] 羅竣鴻,2011,五軸工具機載重件結構最佳化設計與分析,國立勤益科技大學,碩士論文。[3] Tsung-Chia Chen, et al., 2016, “Design analysis of machine tool structure with artificial granite material”, SAGE, Vol. 8(7) 1–14.
[4] João Fiore Parreira Lovo, et al., 2018, “Synthetic granite composite for precision equipment structures”, Revista Matéria, V.23, N.04.
[5] 江文楨,2011,工具機結構之靜態剛性分析與研究,國立虎尾科技大學,碩士論文。[6] 黃瑋平,2011,低成本高剛性微型工具機開發與高精度陣列光學微模具製作研究,國立台灣師範大學,碩士論文。[7] 張裕昌,2011,龍門型工具機結構與機構的動態剛性研究,國立虎尾科技大學,碩士論文。[8] 吳彥樺,2013,工具機結構之靜動態特性分析與改良設計,東南科技大學,碩士論文。[9] 張宜榛,2015,CNC工具機結構輕量化設計最佳化研究,國立高雄應用科技大學,碩士論文。[10] Shih-Ming Wang,2016, “New design of a low-cost micro machine tool with the high-precision variable-resolution mechanism”, Opt Quant Electron, Optical and Quantum Electronics Vol. 48, Iss 12, pp. 565.
[11] Shih-Ming Wang,2021, “Design and Accuracy Analysis of a Micromachine Tool with a Co-Planar Driving Mechanism”, Applied Sciences, Vol.11, Iss 3, pp. 947.
[12] 范光儀,2012,CNC工具機動態結構特性分析測試與結構改良設計,國立虎尾科技大學,碩士論文。[13] Kun-Chieh Wang, et al., 2014, “Optimal high-rigidity structure design for CNC machine tools using CAE technique”, Engineering Computations, Vol. 31, Iss 8, pp. 1761–1777.
[14] 謝雅雙,2014,應用子結構法於工具機立柱的結構優化分析,國立中正大學,碩士論文。[15] 賴彥伯,2015,應用拓樸最佳化於工具機結構設計,國立中正大學,碩士論文。[16] Shihao Liu, et al.,2015, “Finite-element analysis and structural optimization design study for cradle seat of CNC machine tool”, Journal of the Chinese Institute of Engineers, Vol. 39, Iss 3, pp. 345-352.
[17] 伍尚宏,2019,五軸工具機結構分析與智慧化加工,國立虎尾科技大學,碩士論文。[18] Nguyen Huu LOC, 2019, “Reliability-based analysis of machine structures using second-order reliability method”, Journal of Advanced Mechanical Design, Systems, and Manufacturing, Vol. 13, Iss. 3, pp. JAMDSM0063.
[19] Congbo Li, et al., 2019, “Structural design optimization of moving component in CNC machine tool for energy saving”, Journal of Cleaner Production, Vol. 246 ,pp. 118976.
[20] 葉俊緯,2020,工具機輕量化分析與設計改善,國立虎尾科技大學,碩士論文。[21] Fei Li, 2020, “Modular design research of computer nμmerical control machine tools oriented to customer requirements”, SAGE, Vol. 12, Iss. 4, pp. 1–18.
[22] 王若凡,2010,小型工具機之結構與機構設計,國立台灣科技大學,碩士論文。[23] 楊弘意,2010,複合式精微工具機開發與應用,國立台灣師範大學,碩士論文。[24] Jihong Chen,2019, “Toward Intelligent Machine Tool”, ELSEVIER, Vol. 5, Iss. 4, pp. 679-690.
[25] 日本電產機床株式會社,精密加工機μV5,(2021/07/05),https://www.nidec.com/jp/nidec-machinetool/product/search/category/B103/M108/s103/NMTJ-precision_machine/
[26] GF Machining Solutions, Mikron MILL S, (2021/07/05), https://www.gfms.com/zh-tw/machines/milling/3-axis/mikron-mill-s-series.html
[27] MAKINO,V22精密加工中心,(2021/07/05),https://www.makino.com/machine-technology/machines/vertical-machining-centers-3-axis/v22-vertical-machining-center
[28] Takashima, Multiple Function Desktop Process Machine MPX, (2021/07), https://www.takashima.co.jp/en/features.html
[29] roeders, Structural Features of the Röders Machines, (2021/07/05), https://roeders.de/en/machines/technology-machines/machine-design/
[30] GF Machining Solutions, Mikron MILL S Meun, (2021/07/05)
[31] ROKU-ROKU, MEGA-SSS, (2021/07/10), http://www.roku-roku.co.jp/product2/megasss.html
[32] Haas, MINI MILLS, (2021/07/11), https://www.haascnc.com/machines/vertical-mills/mini-mills.html
[33] matweb, Aluminum 6061-T6; 6061-T651, (2021/07/13), http://www.matweb.com/search/DataSheet.aspx?MatGUID=b8d536e0b9b54bd7b69e4124d8f1d20a&ckck=1
[34] 碩創精密崗石有限公司,檢測報告,(2021/07/13),http://strongaaas.com/main/test_report
[35] IBAG, HF33A50, (2021/07/15), http://www.ibag-hsc.com/product_detail.php?lang=tw&id=16
[36] Nakanishi, E3000, (2021/07/15), https://www.nsk-nakanishi.co.jp/industrial-eng/hpms/e3000/
[37] Nakanishi, E3000 Menu PR-K307E Ver.9 '18.11.05, (2021/07/15)
[38] Pinnacle, LV series, (2021/07/15), https://www.pinnacle- mc.com/tw/products_LV117.html
[39] SMC, CNG/CDNG, (2021/07/15), https://www.smcworld.com/products/ja/get.do?type=GUIDE&id=CNG-CDNG
[40] HIWIN大銀微系統,無鐵心式線性馬達,(2021/07/18),https://www.hiwinmikro.tw/zh/product/linear-motor/ironless-motors
[41] Akribis, AΜM SERIES, (2021/07/18), https://akribis-sys.com/products/linear-motors/aμm-series
[42] NSK, RA Series CAT.No.3328h 2019 B-3, (2021/07/18), https://www.nsk.com/jp/common/data/ctrgPdf/precision/3328h.pdf
[43] 台灣三住MISUMI,緩衝器調整型,(2021/07/18),https://tw.misumi-ec.com/vona2/detail/110300269260/
[44] 台灣三住MISUMI,油壓式緩衝器,(2021/07/18),https://tw.misumi-ec.com/pdf/fa/2019/p2069.pdf
[45] RENISHAW,RESOLUTE™ 編碼器系列,(2021/07/18),https://www.renishaw.com.tw/tw/resolute-encoder-series--37823