• 제목/요약/키워드: manufacturing technology

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금속 3D 프린팅으로 보수된 AISI H13 금형강 마모특성 평가 (Evaluation of Wear Characteristics of AISI H13 Tool Steel Repaired by Metal 3D Printing)

  • 이성윤;이인규;정명식;이재욱;이선봉;이상곤
    • 한국기계가공학회지
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    • 제16권4호
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    • pp.9-15
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    • 2017
  • In hot forming process, the dies in which excessive worn or crack occurs is reused after repair. Generally hot forming dies are recycled through a welding repair method. Welding repair methods are highly dependent on the skills of engineer. It causes process defects such as dimensional defects and structural defects. Recently, the metal 3D printing method has been applied to the repair of used dies. The aim of this study is to evaluate the wear characteristics of AISI H13 tool steel repaired by 3D printing method. Three kinds of wear specimens were fabricated by using 3D printing, welding, and initial material. A pin-on-disk wear test was carried out to evaluate the wear characteristics. From the result of wear test, the wear characteristics of 3D printing method was superior to that of the welded material, and was similar to that of the initial material.

스마트 팩토리의 제조 프로세스 마이닝에 관한 실증 연구 (An Empirical Study on Manufacturing Process Mining of Smart Factory)

  • 김태성
    • 대한안전경영과학회지
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    • 제24권4호
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    • pp.149-156
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    • 2022
  • Manufacturing process mining performs various data analyzes of performance on event logs that record production. That is, it analyzes the event log data accumulated in the information system and extracts useful information necessary for business execution. Process data analysis by process mining analyzes actual data extracted from manufacturing execution systems (MES) to enable accurate manufacturing process analysis. In order to continuously manage and improve manufacturing and manufacturing processes, there is a need to structure, monitor and analyze the processes, but there is a lack of suitable technology to use. The purpose of this research is to propose a manufacturing process analysis method using process mining and to establish a manufacturing process mining system by analyzing empirical data. In this research, the manufacturing process was analyzed by process mining technology using transaction data extracted from MES. A relationship model of the manufacturing process and equipment was derived, and various performance analyzes were performed on the derived process model from the viewpoint of work, equipment, and time. The results of this analysis are highly effective in shortening process lead times (bottleneck analysis, time analysis), improving productivity (throughput analysis), and reducing costs (equipment analysis).

Change in Manufacturing Strategy: An Empirical Study

  • Cho, Sok-HWan
    • 정보학연구
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    • 제8권2호
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    • pp.59-76
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    • 2005
  • The purpose of this study is to identify types of dynamic manufacturing strategies and their effects on business performance. Three characteristics of Korean manufacturing should be noted. First, it is found that there are six types of dynamic manufacturing strategies in Korea. Second, the roles of the infrastructural and structural action programs become different according to different types of dynamic manufacturing strategies. Third, the strategy of continuously fostering both cost leadership and differentiation capabilities has turned out to be very effective in Korea.

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성형조건에 따른 성형품의 표면 거칠기 변화 (The Surface Roughness of Injection Product according to the change of Injection Conditions)

  • 박준형;김규복;윤세권;이현우;김선경
    • Design & Manufacturing
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    • 제8권2호
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    • pp.12-17
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    • 2014
  • Currently, injection molding process is a very useful technique that be applied to many field. And injection molding technology has been commercial based on many studies. However, there is no standard of surface roughness because there are few studies about surface technology of injection product. In addition, when designing the mold, changes of the core surface and the injection conditions are not considered. In this paper, change of surface according to the core and the injection conditions was compared with the surface of the injection product. Accumulation of these technologies will propose direction in mold design, manufacturing and injection molding technology.

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3D 프린팅 기술의 건설 산업 적용가능성 검토 (Reviewing the Applicability of 3D Printing Technology in the Construction Industry)

  • 박진수;김경택
    • 한국건설관리학회논문집
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    • 제23권6호
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    • pp.119-124
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    • 2022
  • 최근 적층제조기술을 활용한 건축 상품 시공방법이 제안되고 있다. 적층제조기술은 건축 상품 시공과정을 자동화하여 작업자 안전을 확보한다. 또한, 비정형 형상의 구현효율성이 높아 건축물과 기반시설제조과정에 적용 가능성을 주목 받고 있다. 적층제조기술은 현대의 건설 산업에서 요구되는 컴퓨터 기반의 시공자동화, 자원관리, 시공기간예측 등을 만족할 수 있는 기술이다. 하지만, 아직 부족한 누적 데이터와 표준, 규제, 운영방법 등에 의해 산업 적용이 제한되고 있다. 본 연구에서는 건축 적층제조기술 적용가능성을 분석하기 위해 2개의 적층제조시스템으로 건축 상품을 제조한다. 또한 각 건축 상품은 적층생산결정모델을 통해 적합한 제조시스템으로 투입하는 방법이 적용되고, 실증 실험을 통해 제조과정의 문제를 확인한다. 결과적으로 건축 상품의 품질 향상을 위한 확장된 적층생산결정모델을 제안한다.

지식관리시스템을 활용한 뿌리기술의 디지털화 (Digitalization of Root Technology using Knowledge Management System)

  • 배성민;허영무;윤길상
    • Design & Manufacturing
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    • 제9권2호
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    • pp.6-9
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    • 2015
  • The objective of manufacturing knowledge sharing platform is to convert the production experience like a worker's know-how into quantitative values, to construct database of the process technologies and to share the technologies systematically via web portal service. In addition, the knowledge sharing platform contains the total production processes of automobile and mobile products such as information of experts, facilities, and cutting-edge R&D outputs. Automobile, telecommunication mobile, and semiconductors account for a large amount of Korea's export industry rate. These industries need production technology which is a result of converting worker's know-how and R&D. Manufacturing knowledge portal aims to enable transforming production experience such as worker's know-how into standardized form for constructing database and sharing technologies systematically. Manufacturing knowledge portal can contribute to small and mid-sized manufacturing companies with further improvements.

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자동차 가상생산 기술 적용(III) - 가상 도장공장구축 및 운영 (Virtual Manufacturing for an Automotive Company(III) - Construction and Operation of a Virtual Paint Shop)

  • 노상도;김덕영;박영진
    • 산업공학
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    • 제15권4호
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    • pp.356-363
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    • 2002
  • Virtual Manufacturing is a technology to facilitate effective product development and agile production by computer models representing the physical and logical schema and the behavior of real manufacturing systems including manufacturing resources, environments and products. For the successful application of this technology, a virtual factory as a well-designed and integrated environment is essential. In this research, we constructed a sophisticated virtual factory model of an automotive company's paint shop, and performed precise simulations of unit cells, lines and whole plant operations for collision check and off-line programming. It is expected that this virtual paint shop is useful for achieving time and cost savings in many manufacturing preparation and planning activities of new car development processes.

섬유코팅용 왁스링 성형을 위한 자동화 시스템 개발 (Development of Automatic Wax-Ring Manufacturing System for Silk Coating)

  • 조영학;맹희영
    • 한국생산제조학회지
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    • 제22권3_1spc호
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    • pp.531-536
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    • 2013
  • An automatic wax-ring manufacturing system for silk coating was developed, which consisted of a container, pallet with a cooling part, injection port, and removing device. The removing device is a system to load, lift, and cut the wax-ring, which is widelyused for various silk-coating industrial purposes. A novel removing device equipped with a water cooling circulation system is proposed in this paper. It has the benefit of easy control, as well as the convenience of loading and unloading without the use of other equipment. Three-dimensional modeling techniques were adopted to develop integrated functions for the automatic wax-ring manufacturing system, which made it possible to confirm the smooth integration/interface of each part and the system's interrelations with other manufacturing systems.

적층제조기술 응용사례 및 최신기술동향 (Review of Recent Trends and Technology for Additive Manufacturing)

  • 이재향;박성준
    • 융복합기술연구소 논문집
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    • 제6권1호
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    • pp.1-5
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    • 2016
  • Additive manufacturing is converting a digitally designed object into a tangible three dimensional solid using an additive process where materials are applied in successive layers with no or very limited material waste. It can be distinguished form traditional manufacturing which begins with a fixed amount of raw material and removes excess to arrive at the final product. Generally there are five stages to the additive manufacturing supply chain, namely materials, systems, software, application design and production. In this paper, recent market trends and technology about additive manufacturing based on supply chain are analyzed and reviewed.

레이저프린터용 닥터 블레이드 생산 자동화 (Automated Production System for Manufacturing the Doctor Blades of Laser Printers)

  • 전성훈;이응기
    • 한국생산제조학회지
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    • 제21권4호
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    • pp.633-638
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    • 2012
  • The doctor blade is a core part of a laser printer and directly influences the printing quality. The main specifications for doctor blades ate for them to be precise and durable. It is necessary to study an automatic production system for doctor blades in order to obtain high-efficient manufacturing processes. In this paper, the technology and the design of the automatic production line has for manufacturing doctor blades has been researched. The automated manufacturing process consists of five steps, which are the supplying of raw material, shearing, bending, bracket supplying, and the laser-spot welding process. The proposed automatic manufacturing system allowed for faster and more reliable production of doctor blades.