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논문 기본 정보

자료유형
학술저널
저자정보
Guan, Kai Yuan (Hanyang University) Park, Kyung Jin (Hanyang University)
저널정보
한국전시산업융합연구원 한국과학예술융합학회 한국과학예술융합학회 Vol.41 No.5
발행연도
2023.12
수록면
13 - 31 (19page)
DOI
10.17548/ksaf.2023.12.30.13

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초록· 키워드

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At present, the small-scaled 2.5T intelligent excavators in the excavating machinery and equipment market have shortcomings in function and shape design, thus can not comprehensively deal with the implementation of operations in various environmental fields. In order to realize the improved and innovative design of 2.5T intelligent excavators, it is necessary to integrate the structure-function-system-environment analysis (SFSE-A) method of the system theory and the theory of inventive problem solving (TRIZ) in this research.
Firstly, the current small excavating machinery in the market is analyzed. Based on the SFSE-A method, the interaction between the overall framework elements of excavation machinery is studied and the root cause model diagram is established to discuss the function and deficiencies of the excavating machinery.
Secondly, the technical conflicts existing in the design process of 2.5T intelligent excavating machinery are analyzed by applying TRIZ, and five pairs of conflicts characteristic parameters are constructed. The contradiction matrix is used to obtain the corresponding original understanding of the invention, and then the optimal original understanding is used to design the excavators to achieve improvement and innovation.
Finally, using ANSYS-Workbench and ADAMS, the finite element analysis and performance simulation of the final scheme are carried out by modeling calculation, and the strength of the overall equipment of the design is verified to meet the load requirements and stability.
This research works on designing a kind of 2.5T intelligent excavator suitable for urban decoration, agriculture, animal husbandry and landscape on the basis of the SFSE-A method and TRIZ. By using a variety of methods to conduct analysis design and simulation experiment of products systematically, it can reduce the weak links and uncertainties in the design process, making the design more accurate and objective, so as to reduce the production cost of excavating machinery and achieve high efficiency and sustainable enterprise goals, which has certain important value on the study of both theory and practice.

목차

Abstract
Ⅰ. Introduction
Ⅱ. Related Application of the Theories
Ⅲ. Design of Excavating Machinery
Ⅳ. Design of Conflict Resolution Scheme
Ⅴ. Design Scheme Proposed
Ⅵ. Simulation Analysis and Evaluation
Ⅶ. Conclusion
Reference

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