PUKYONG

시뮬레이션 연동형 메커니즘 기반 교육용 자동화 플랫폼 개발

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Alternative Title
Development of simulation linked mechanism based educational automation platform
Abstract
Development of simulation linked mechanism based educational automation platform


Sung Su Park

Department of Control and Instrumentation Engineering,
Graduate School of Industry,
Pukyoung National University


Abstract

As industry environment of KOREA is changing to automated system, Engineering education of korean university is changing to adapt it. It means contents of engineering education ara changed with industrial development. Industry technology will be developed, and industry environment will be complexity. So, knowledge that undergraduate have to acquired in university is to be extensiveness.

Industries need to person with expertise to react quickly to rapidly changing technology. Therefore, Universities make effort that manpower in technical fields has to be cultivated. It is difficult that contents of engineering education react quickly to rapidly changing industry technology

This paper proposes modular platform for engineering education of the well-used system in industrial site. I descript about the well-used assistant equipment for engineering education and explain engineering education to be needed in industrial site. Based on this research, I designed the modular mechanism platform. this mechanism platform is composed of mechanism to be needed industrial site and interlock with simulation program. In other to estimate achievement of mechanism platform, I carry out a survey targeting student that take before and after lesson with mechanism platform.
Author(s)
박성수
Issued Date
2014
Awarded Date
2014. 8
Type
Dissertation
Publisher
부경대학교
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/12429
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000001967294
Alternative Author(s)
Sung Su Park
Affiliation
산업대학원
Department
산업대학원 제어계측공학과
Advisor
이경창
Table Of Contents
1. 서 론 1

2. 공학교육을 위한 메커니즘 교육의 동향 3
2.1 공학교육용 플랫폼 개발 동향 3
2.2 메커니즘 기반 교육용 플랫폼의 필요성 5

3. 공학교육을 위한 메커니즘 플랫폼 7
3.1 메커니즘 플랫폼 교육의 일반적 개념 7
3.2 메커니즘 플랫폼 플랫폼의 종류 9
3.2.1 GEAR TRANSFER MECHANISM 12
3.2.2 RACK PINION INDEX MECHANISM 15
3.2.3 BELT CONVEYOR MECHANISM 18
3.3 메커니즘 시뮬레이션 소프트웨어 21
3.3.1 메커니즘 분해조립 시뮬레이션 기능 22
3.3.2 메커니즘 구동 시뮬레이션 기능 25
3.4 통합메커니즘을 활용한 교육프로그램 27
3.4.1 메커니즘 분해·조립 교육과정 27
3.4.2 메커니즘 기구측정 교육과정 29
3.4.3 메커니즘 2D/3D 설계 교육과정 29
3.4.4 메커니즘 제어 교육과정 30
3.5. 메커니즘 플랫폼을 활용한 공학교육 응용 32
3.5.1 메커니즘 플랫폼 응용사례 32
3.5.1.1 물류센터 시스템 구현 32
3.5.1.2 연탄제조 공정 시스템 구현 34

4. 메커니즘 플랫폼 플랫폼 설문조사 평가 36
4.1 설문조사 대상자 및 내용 36
4.2 제어요소기술 이해과정 설문조사 39
4.3 기구요소기술 이해과정 설문조사 42

5. 결론 45

참 고 문 헌 47

Abstract 48

감 사 의 글 50
Degree
Master
Appears in Collections:
산업대학원 > 제어계측공학과
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