• 제목/요약/키워드: Precision Evaluation

검색결과 2,040건 처리시간 0.029초

고 정밀 캠 프로파일 CNC 연삭기의 구조설계 및 평가에 관한 연구 (A Study on Structural Design and Evaluation of the High Precision Cam Profile CNC Grinding Machine)

  • 임상헌;신상훈;이춘만
    • 한국정밀공학회지
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    • 제23권10호
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    • pp.113-120
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    • 2006
  • A cam profile CNC grinding machine is developed for manufacture of high precision contoured cams. The developed machine is composed of the high precision spindle using boll bearings, the high stiffness box layer type bed and the three axis CNC controller with the high resolution AC servo motor. In this paper, structural and modal analysis for the developed machine is carried out to check the design criteria of the machine. The analysis is carried out by FEM simulation using the commercial software, CATIA V5. The machine is modeled by placing proper shell and solid finite elements. And also, this paper presents the measurement system and experimental investigation on the modal analysis of a grinding machine. The weak part of the machine is found by the experimental evaluation. The results provide structure modification data for good dynamic behaviors. And safety of the machine was confirmed by the modal analysis of modified machine design. Finally, the cam profile grinding machine was successfully developed.

어트랙터 사분면법을 이용한 비철금속의 초정밀 절삭특성 평가에 관한 연구 (The Study on Ultra-Precision Cutting Characteristics Evaluation of Non-Ferrous Metals Using Attractor Quadrant Method)

  • 고준빈;김건희;윤인식
    • 한국정밀공학회지
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    • 제20권6호
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    • pp.20-26
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    • 2003
  • This study proposes the construction of attractor quadrant method for high-precision cutting characteristics evaluation of non-ferrous metals. Also this paper aims to find the optimal cutting conditions of diamond turning machine by measuring surface form and roughness to perform the cutting experiment of non-ferrous metals, which are aluminum, with diamond tool. As well, according to change cutting conditions such as feed rate, using diamond turning machine to Perform cutting Processing, by measuring cutting force and surface roughness and according to cutting conditions the aluminum about cutting properties. Trajectory changes in the attractor indicated a substantial difference in fractal characteristics and attractor quadrant characteristics. In quantitative quadrant feature extraction, 1,309 point in the case of A17075 (one quadrant) and 1,406 point (one quadrant) in the case of brass were proposed on the basis of attractor reconstruction. Proposed attractor quadrant method can be used for high-precision cutting characteristics evaluation of non-ferrous metals.

유리섬유 보강재를 삽입한 하악 레진의치 인상면의 정밀성 평가 (Precision evaluation of impression surface of lower complete dentures reinforced with glass fiber)

  • 김동연;양천승;이광영;김지환
    • 대한치과기공학회지
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    • 제42권1호
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    • pp.27-33
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    • 2020
  • Purpose: This study is to compare and analyze the precision of glass fiber resin dentures. Methods: A lower edentulous model was prepared. Ten study models were produced using Type IV stone. Ten wax lower resin dentures containing artificial teeth were prepared. The lower wax denture was buried with plaster and deflasking was performed to remove the wax. Five conventional lower resin dentures and five glass fiber lower resin dentures were produced. The scanning spray was coated on the impression surface and then scanned. Independent sample t-test were performed using statistical software. Results: In the color different map, which is a qualitative evaluation, the green area of the precision of the conventional lower resin denture occupied the whole. The glass fiber conventional resin dentures had many negative and positive area. In quantitative evaluation, the RMS of conventional lower resin was 89.83 ㎛ and that of fiberglass resin was 224.92 ㎛. The two groups showed statistically significant differences (p<0.05). Conclusion: Conventional lower resin dentures were superior in precision, and glass fiber resin dentures would have to improve the process.

조립자동화를 위한 제품설게 기술개발 (Development of Design Technology for Assembly Automation)

  • 목학수;하재우;차동균
    • 한국정밀공학회지
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    • 제11권1호
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    • pp.184-191
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    • 1994
  • In this study, the product design technology to facilitate the assembly automation is developed. First, checkistis are developed to analyse weakpoints which make assembly automation difficult. The weakpoints of assembly automation can be redesigned by using design rules for assemblability which are systematized in this research. In addition, the assemblability of product can be evaluated qualitatively with the new developed assembly evaluation method. This evaluation method is performed in the respect of the component parts, the assembly method and the assembly motion.

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자원 재활용을 위한 자동차 조립군의 복잡도 평가시스템 (The Complexity Evaluation System of Automobile Subassembly for Recycling)

  • 목학수;문광섭;김성호;문대성
    • 한국정밀공학회지
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    • 제16권5호통권98호
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    • pp.132-144
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    • 1999
  • In this study, the complexity of the product was evaluated quantitatively considering the product structure, assembly process and disassembly process. To evaluate the complexity of the product, subassemblies of automobile were analyzed and then characteristics of part and subassembly were determined according to product structure, assembly process and disassembly process. Evaluation criteria of complexity were determined considering each characteristics of part and subassembly. Experiential evaluation was accomplished by classified evaluation criteria and time-motion evaluation was accomplished by the relational motion factor with characteristics of part and subassembly in MTM(Methods Time Measurement) and WF(Work Factor). The total complexity of product was determined by experiential evaluation and time-motion evaluation.

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5축 공작기계 정밀도 평가를 위한 표준 공작물에 관한 연구 (A Study on the Test Workpiece for Accuracy Evaluation of 5-Axis Machine Tool)

  • 윤재웅;김기환;박종탁
    • 한국정밀공학회지
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    • 제31권5호
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    • pp.431-439
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    • 2014
  • Recently, a demand for precision 5-axis machine tools is significantly increasing, and the maintenance of machine tool accuracy becomes more important. it is very difficult to evaluate to accuracy of 5-axis M/C in the production site since it needs expensive measuring equipment and skilled engineer. On the other hand, evaluation items of 5-axis M/C are not systematically organized in the existing KS and ISO standards. In this study, the evaluation items for 5-axis M/C were derived systematically and a test workpiece was developed to evaluate the machine tool accuracy more easily. The error sources of machine tool can be estimated by machining and measuring of the test workpiece. The correlation between the machine tool accuracy and the accuracy of machined test workpiece was analyzed. As a result, the accuracy of machined test workpiece represented the accuracy of machine tool and the error sources very effectively.

5축 복합가공기의 에너지 저감을 위한 기술 및 적용 방안 (Design Approaches and Strategies for Energy Saving of 5-Axis Multi-Functional Machine Tools)

  • 김태성;김경동;이찬홍;남성호
    • 한국정밀공학회지
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    • 제30권5호
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    • pp.467-473
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    • 2013
  • Diverse approaches for reducing the total energy consumption of machine tools have been introduced and developed, to cope with rapid increase of total energy costs in world-wide manufacturing industries. To realize the improvement of the energy efficiency, systematic and integrated strategies must be considered, including energy-saving design, optimized control operation and concrete evaluation of the energy efficiency. This paper proposes key enabling technologies required to improve the energy efficiency of 5-axis multi-functional machining tools, considering both of system design and operation in the real production environments. Related standardized procedures of the energy efficiency evaluation is also represented.