完整後設資料紀錄
DC 欄位語言
dc.contributor.author顏騰涁
dc.contributor.author李祐瑄
dc.contributor.author吳盈盈
dc.contributor.author朱脩祁
dc.contributor.author黃偉豪
dc.contributor.author蔡崇鴻
dc.date109學年度第一學期
dc.date.accessioned2021-04-22T08:41:30Z
dc.date.accessioned2021-08-06T09:13:48Z-
dc.date.available2021-04-22T08:41:30Z
dc.date.available2021-08-06T09:13:48Z-
dc.date.issued2021-04-22T08:41:30Z
dc.date.submitted2021-04-22
dc.identifier.otherD0618854、D0610008、D0610025、D0638376、D0638507、D0610072
dc.identifier.urihttp://dspace.fcu.edu.tw/handle/2377/32042-
dc.description.abstract近年來台灣房價日漸上漲,且房屋的興建過程需耗費許多時間以及勞動力,近期更是發現工地的勞動力平均年齡日漸增高,使得勞動力嚴重的不足與短缺。近十年來3D列印技術日漸發展,在國外有許多成功運用3D列印技術來興建房屋的案例,但我們發現成功的案例大部分都是低矮建築,如要發展高層建築,則建築需有高強度之柱子。此研究目的為直接利用3D列印技術印製柱,不需綁紮鋼筋、使用模板和澆置混凝土,可以節省綁紮鋼筋與釘模板的勞動力、縮短興建的工期、甚至減少建築廢料與財務成本。 本論文將探討柱子內部結構,透過不斷討論、設計及測試,最終設計出四種結構來進行比較,分別為空心、井字、螺旋和斜撐。研究過程使用軟體SketchUp將構想繪製成3D模型,再用軟體Cura將3D模型切片導入3D列印機印製,試體印製完成後使用抗壓試驗機進行抗壓試驗,得出不同結構的抗壓強度數據。以空心試體抗壓強度為基準,井字設計強度有明顯的增加,增加46.34kgf⁄〖cm〗^2 ,約26%。根據試驗結果,得知在所有的試體中井字設計試體的抗壓強度最高,由此得知井字設計有更強抗壓的效果。
dc.description.abstractIn recent years, Taiwan's housing prices have been rising day by day, and the construction of building houses are time and labor consuming. Recently, it has been found that the average age of labor on the construction site has been increasing, resulting in a serious shortage of labor. In the past ten years, there are many success cases using 3D printing technology to build houses in foreign country. However, we found that most of the successful cases are low-rise buildings, this is because high-rise buildings construction needs high-strength column. In this study, our research goal is to use 3D printing technology to print columns without using rebars, formwork and pouring concrete, which can save labor usage, shorten the construction period, and even reduce construction waste and financial costs. In this study, four internal structure of the column were designed and compare through testing. Four internal structures are hollow, tic-tac-toe, spiral and diagonal brace. During the research process, there are two software includes, which are SketchUp and Cura, SketchUp was used to draw the idea into a 3D model, while Cura was used to slicing the 3D model into a 3D printer for printing. After the sample was printed, samples are subjected to a compression test, and the compression strength of different structures was obtained. Use compressive strength of the hollow specimen as a benchmark, the design strength of the tic-tac-toe has a significant increment of 46.34 kgf⁄cm2, about 26 %. According to the test results, it is known that the Tic-Tac-Toe design column has the highest compressive strength among all the design, and it is known that the Tic-Tac-Toe design has a stronger compressive strength.
dc.description.tableofcontents目錄 中文摘要 1 Abstract 2 目錄 3 圖目錄 6 表目錄 10 第1章 緒論 11 1.1 研究背景與動機 11 1.2 研究目的 11 1.3 研究架構 12 第2章 文獻探討 13 2.1 3D列印建築 13 2.2 3D列印應用於組合式模板可行性研究 13 2.3 3D列印材質與混凝土比較 14 2.4 PLA與T-PLA材料之比較 17 第3章 研究方法與流程 18 3.1 研究介紹 18 3.2 研究方法 18 3.3 研究限制 19 3.4 研究工具 20 3.4.1 使用軟體 20 3.4.2 使用儀器 21 3.5 實驗條件 22 3.5.1 使用缐材 22 3.5.2 列印條件 23 3.6 實驗流程 24 3.6.1 內部結構設計與發想 25 第4章 研究結果與討論 31 4.1 T-PLA材料强度 31 4.1.1 實心立方試體 31 4.1.2 空心立方試體 37 4.1.3 抗壓强度比較 43 4.2 各設計的抗壓强度 44 4.2.1 空心試體抗壓强度 44 4.2.2 井字試體抗壓强度 50 4.2.3 螺旋試體抗壓强度 56 4.2.4 斜撐試體抗壓强度 62 4.3 討論 68 4.3.1 抗壓强度比較 68 4.3.2 試體破壞形態分析 69 4.3.3 破壞曲線分析 69 第5章 結論與建議 70 5.1 結論 71 5.2 建議 72 參考文獻 73
dc.format.extent74p.
dc.language.isozh
dc.rightsopenbrowse
dc.subject3D列印
dc.subject建築
dc.subjectT-PLA
dc.subject3D Printing
dc.subjectConstruction
dc.subjectT-PLA
dc.title3D列印應用於組合式建築概念評估:柱結構分析
dc.title.alternativeStudy of 3D-Printing Applications for Column Element
dc.typeUndergraReport
dc.description.course畢業設計(二)
dc.contributor.department土木工程學系
dc.description.instructor黃亦敏
dc.description.programme土木工程學系
分類:建109學年度

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