本文進行自鑽型矯正用骨釘研發與生物力學探討,依臨床手術的功能需求擬定出自鑽型矯正用骨釘之工程尺寸,透過CAD軟體SolidWorks建立3D dịch - 本文進行自鑽型矯正用骨釘研發與生物力學探討,依臨床手術的功能需求擬定出自鑽型矯正用骨釘之工程尺寸,透過CAD軟體SolidWorks建立3D Anh làm thế nào để nói

本文進行自鑽型矯正用骨釘研發與生物力學探討,依臨床手術的功能需求擬定出

本文進行自鑽型矯正用骨釘研發與生物力學探討,依臨床手術的功能需求擬定出自鑽型矯正用骨釘之工程尺寸,透過CAD軟體SolidWorks建立3D自鑽型矯正用骨釘模型,並應用有限元素分析軟體依據ASTM F543測試規範對自鑽型矯正用骨釘給予邊界條件設定來進行機械性質模擬分析,針對應力集中且有破壞疑慮之部位進行結構上的改良,模擬分析確認無虞後製作自鑽型矯正用骨釘產品之雛型,最終以實際產品進行生物力學測試,以驗證產品的安全性。
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Paper for since drill type correction with bone nail development and biological mechanical discussion, according to clinical surgery of function needs developed from drill type correction with bone nail of engineering size, through CAD software SolidWorks established 3D since drill type correction with bone nail model, and application limited elements analysis software according to ASTM F543 test specification on since drill type correction with bone nail give border conditions set to for mechanical nature simulation analysis, for stress concentrated and has damage doubts of parts for structure Shang of improved, Simulation analysis to confirm and secure production after correction with diamond screw products/prototypes, final bio-mechanical tests to the actual product, to verify that the product is safe.
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In this paper, self-drilling screw-type correction with bone biomechanical research and discussion, according to the functional requirements of clinical surgery prepared by diamond-type correction with bone screws of the project size, build self-drilling type 3D correction model with bone screws through the CAD software SolidWorks, and application Finite element analysis software based on ASTM F543 test specifications for self-drilling type straightening pegs given boundary conditions set to simulate the mechanical properties analysis, improved structural parts for stress concentration and destruction have doubts, the simulation analysis confirmed no fear of post-production Self-drilling type of corrective bone nail product prototype, and ultimately to the actual product biomechanical tests to verify the safety of products.
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本文進行自鑽型矯正用骨釘研發與生物力學探討依臨床手術的功能需求擬定出自鑽型矯正用骨釘之工程尺寸 , 透過軟體 SolidWorks 3D CAD , 建立自鑽型矯正用骨釘模型並應用有限元素分析軟體依據 ASTM , f543 測試規範對自鑽型矯正用骨釘給予邊界條件設定來進行機械性質模擬分析針對應力集中且有破壞疑慮之部位進行結構上的改良模擬分析確認無虞後製作自鑽型矯正用骨釘產品之雛型最終以實際產品進行生物力學測試 , , , , 以驗證產品的安全性 .
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