成果報告書詳細
管理番号20160000000656
タイトル*平成27年度中間年報 SIP(戦略的イノベーション創造プログラム)/革新的設計生産技術 データマイニング、遺伝的アルゴリズム、迅速試作技術の融合による進化的ものづくりシステムの構築に向けた研究開発
公開日2016/8/5
報告書年度2015 - 2015
委託先名京都試作センター株式会社 国立大学法人京都工芸繊維大学
プロジェクト番号P14030
部署名IoT推進部
和文要約
英文要約Our main objective is to construct the manufacturing industry platform, for small- to middle-scale prototyping specialty companies in Kyoto by implementing both innovative software and hardware. This eventually allows those companies to develop their own business models.

Research contents (1) Monozukuri (manufacturing) Knowledge Base:
Knowledge bases specialized to manufacturing field.
Product-function KB (knowledge base) and company-capability KB are mainly targeted.

Research contents (2) Product creation support system:
A system that supports the process of smoothly creating new, original products.
We mainly worked on product’s function data to support manufacturing designing process and expanded the system plan with two new functions, “related-information display” function and “idea -generation supporting” function.

Research contents (3) Optimized production system:
A system that provides the names of companies, which are most appropriate to produce prototype of products, regarding customer requests.
We extracted factors which enables to explain prototyping-request in the form of the vector sets and data-mined, in yet 40% accuracy, the most appropriate prototype specialty companies for prototyping-requests which Kyoto Shisaku Net had actually received.

Research contents (4) Ultra-agile advanced manufacturing system
(1) Development of the base-machine
Fundamental structure and specifications of the Super Processing Center (SPC) base-machine were determined, and the body of base-machine was designed and built. The body was completed in March 2016. The body of base-machine consists of machine body structured by double-housing column, hydraulic power unit for all hydrostatic guides, high performance oil temperature control unit and numerically controlled equipment.
(2) Development of the process-functional units
The micro laser machining unit as one of individual process-functional units was developed. The system was consists of the laser machining head attached into a general machining center, the optical guiding device and the laser oscillator with nanosecond green pulse laser. Furthermore, high speed spindle unit, electrical discharge machining unit, micro forming unit and tool measuring system as general process-functional units were evaluated on fundamental performance.
(3) Prototyping of energy-device for surgical operation
It was attempted to demonstrate the possibility of innovation of delight products with prototyping the energy-device for surgical operation designed by the analysis system of products as a model part. The possibility of ultra-agile advanced prototyping was demonstrated through comparing with the prototyping process performance such as machining accuracy and efficiency.
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