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電子類精密塑膠模具之模組化研究─以S公司為例 = The Modular...
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國立高雄大學高階經營管理碩士在職專班(EMBA)
電子類精密塑膠模具之模組化研究─以S公司為例 = The Modularized Design for the Electric Plastic Mold─ The Case Study of S-company
紀錄類型:
書目-語言資料,印刷品 : 單行本
並列題名:
The Modularized Design for the Electric Plastic Mold─ The Case Study of S-company
作者:
郭峰恩,
其他團體作者:
國立高雄大學
出版地:
[高雄市]
出版者:
撰者;
出版年:
民99[2010]
面頁冊數:
102面圖,表 : 30公分;
標題:
電子類精密塑膠模具
標題:
Electric Plastic Mold
電子資源:
http://handle.ncl.edu.tw/11296/ndltd/07140442542654155900
摘要註:
面對電子資訊產業(3C產業)市場競爭激烈與消費者對於3C產品求新求變的需求,3C業者必須不斷的推陳出新,而相關零組件的模具業者也必須改變傳統模具的設計方式與更迅速的加工製程,以因應客戶對產品快速產出的要求。本研究即針對電子類精密塑膠模具進行模組化設計的規劃,將以往所設計過的模具做整理歸納,依模具內的功能需求劃分出各個功能模組,並將各個模組內的組成構件做尺寸規格標準化,然後將所有的模組編碼,並在電腦輔助繪圖軟體(AutoCAD)內建立模具設計時所需的圖庫資料,再依模組選用的原則去訂定模組選用程序,如此便彙整完成模具模組化設計的規劃與流程建立。 研究結果發現,模具模組化的改善效益包括:設計繪圖時間由平均18.6小時縮短為10小時,減少46.23% ;現場加工時間由平均45.3小時縮短為44小時,減少2.87%;外包加工時間由平均42小時縮短為32小時,減少23.81%;組立時間由6.8小時縮短為6小時,減少11.76%;試模時間減少4.76%,整體模具的產出時間減少17%。且冀望未來能將整體的模具製作做模組化的製程設計,並應用「延緩策略」達到快速造模、精緻化的模具管理以及因應客戶協同設計的要求,與客戶共同創造雙贏局面。 Facing the fierce market competition of electronic information industry and the always-changing consumers' demand on 3C products, the 3C business has to keep on introducing new products. Meanwhile, the related molding business for 3C parts and components also has to change the traditional method of mold design and enhance its processing procedure to satisfy its clients request for a faster production. This study focuses on the planning of the modularized design of plastic precision molding of the electronic category. The study summarizes mold designs in the past, categorizes all function modules according to the specific function of each module, and standardizes all components of each and all molds on size and measurement, and then, after assigning coding numbers on all modules and establishing the data bank for mold design in the AutoCAD, sets up a selection procedure based on the principles of module selection. Thus, this summarizes and completes the planning of mold modularization design and establishes flow path of the procedure. It is found in this study that the benefits of the enhancement of such mold modularization include: the time for design chart drawing is reduced from 18.6 to 10 hours, a 46.23% reduction; the time for shop-floor processing is reduced from 45.3 to 44 hours, a 2.87% reduction; the time for outsource processing is reduced from 42 to 32 hours, a 23.81% reduction; the time for assembling is reduced from 6.8 to 6 hours, a 11.76% reduction; the time for mold trial is a 4.76% reduction; and the time for overall mold production is reduced 17%. This study also expects that, in the future, the modularized production design of the overall mold manufacturing will be introduced, and, by applying the 'postponement policy' , achieve a refined mold management of a faster process in mold manufacturing,while satisfying customer's request to work together in design process, to achieve a win-win situation with customers.
電子類精密塑膠模具之模組化研究─以S公司為例 = The Modularized Design for the Electric Plastic Mold─ The Case Study of S-company
郭, 峰恩
電子類精密塑膠模具之模組化研究─以S公司為例
= The Modularized Design for the Electric Plastic Mold─ The Case Study of S-company / 郭峰恩撰 - [高雄市] : 撰者, 民99[2010]. - 102面 ; 圖,表 ; 30公分.
參考書目:面.
電子類精密塑膠模具Electric Plastic Mold
電子類精密塑膠模具之模組化研究─以S公司為例 = The Modularized Design for the Electric Plastic Mold─ The Case Study of S-company
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面對電子資訊產業(3C產業)市場競爭激烈與消費者對於3C產品求新求變的需求,3C業者必須不斷的推陳出新,而相關零組件的模具業者也必須改變傳統模具的設計方式與更迅速的加工製程,以因應客戶對產品快速產出的要求。本研究即針對電子類精密塑膠模具進行模組化設計的規劃,將以往所設計過的模具做整理歸納,依模具內的功能需求劃分出各個功能模組,並將各個模組內的組成構件做尺寸規格標準化,然後將所有的模組編碼,並在電腦輔助繪圖軟體(AutoCAD)內建立模具設計時所需的圖庫資料,再依模組選用的原則去訂定模組選用程序,如此便彙整完成模具模組化設計的規劃與流程建立。 研究結果發現,模具模組化的改善效益包括:設計繪圖時間由平均18.6小時縮短為10小時,減少46.23% ;現場加工時間由平均45.3小時縮短為44小時,減少2.87%;外包加工時間由平均42小時縮短為32小時,減少23.81%;組立時間由6.8小時縮短為6小時,減少11.76%;試模時間減少4.76%,整體模具的產出時間減少17%。且冀望未來能將整體的模具製作做模組化的製程設計,並應用「延緩策略」達到快速造模、精緻化的模具管理以及因應客戶協同設計的要求,與客戶共同創造雙贏局面。 Facing the fierce market competition of electronic information industry and the always-changing consumers' demand on 3C products, the 3C business has to keep on introducing new products. Meanwhile, the related molding business for 3C parts and components also has to change the traditional method of mold design and enhance its processing procedure to satisfy its clients request for a faster production. This study focuses on the planning of the modularized design of plastic precision molding of the electronic category. The study summarizes mold designs in the past, categorizes all function modules according to the specific function of each module, and standardizes all components of each and all molds on size and measurement, and then, after assigning coding numbers on all modules and establishing the data bank for mold design in the AutoCAD, sets up a selection procedure based on the principles of module selection. Thus, this summarizes and completes the planning of mold modularization design and establishes flow path of the procedure. It is found in this study that the benefits of the enhancement of such mold modularization include: the time for design chart drawing is reduced from 18.6 to 10 hours, a 46.23% reduction; the time for shop-floor processing is reduced from 45.3 to 44 hours, a 2.87% reduction; the time for outsource processing is reduced from 42 to 32 hours, a 23.81% reduction; the time for assembling is reduced from 6.8 to 6 hours, a 11.76% reduction; the time for mold trial is a 4.76% reduction; and the time for overall mold production is reduced 17%. This study also expects that, in the future, the modularized production design of the overall mold manufacturing will be introduced, and, by applying the 'postponement policy' , achieve a refined mold management of a faster process in mold manufacturing,while satisfying customer's request to work together in design process, to achieve a win-win situation with customers.
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