• 제목/요약/키워드: Geometry accuracy

검색결과 535건 처리시간 0.024초

사출성형품의 역공학예서 Geometry정보를 이용한 정밀도 향상에 관한 연구 (A Study on Improvement of Accuracy using Geometry Information in Reverse Engineering of Injection Molding Parts)

  • 김연술;이희관;황금종;공영식;양균의
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.546-550
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    • 2002
  • This paper proposes an error compensation method that improves accuracy with geometry information of injection molding parts. Geometric information can give an improved accuracy in reverse engineering. Measuring data can not lead to get accurate geometric model, including errors of physical parts and measuring machines. Measuring data include errors which can be classified into two types. One is molding error in product, the other is measuring error. Measuring error includes optical error of laser scanner, deformation by probe forces of CMM and machine error. It is important to compensate these in reverse engineering. Least square method(LSM) provides the cloud data with a geometry compensation, improving accuracy of geometry. Also, the functional shape of a part and design concept can be reconstructed by error compensation using geometry information.

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사출성형품의 역공학에서 Geometry 정보를 이용한 정밀도 향상에 관한 연구 (A Study on Improvement of Accuracy using Geometry Information in Reverse Engineering of Injection Molding Parts)

  • 김연술;이희관;황금종;공영식;양균의
    • 한국정밀공학회지
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    • 제19권10호
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    • pp.99-106
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    • 2002
  • This paper proposes an error compensation method that improves accuracy with geometry information of injection molding parts. Geometric information can give an improved accuracy in reverse engineering. Measuring data can not lead to get accurate geometric model, including errors of physical parts and measuring machines. Measuring data include errors which can be classified into two types. One is molding error in product, the other is measuring error. Measuring error includes optical error of laser scanner, deformation by probe forces of CMM and machine error. It is important to compensate these in reverse engineering. Least square method (LSM) provides the cloud data with a geometry compensation, improving accuracy of geometry. Also, the functional shape of a part and design concept can be reconstructed by error compensation using geometry information.

엔드밀의 형상에 따른 가공정밀도 해석 (Analysis on the Surface Accuracy in according to Geometry of End Mill)

  • 고성림;이상규;김용현
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 춘계학술대회 논문집
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    • pp.1001-1004
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    • 2000
  • As tools for machining precision components, end mills and ball end mills are widely used. For the end mills have longer cylindrical shape comparing diameter, liable to deflect and induce deterioration of surface roughness. Tool geometry parameters and cutting process have complex relations with each other. So, It is hard to determine hew to select optimal tool geometry. So, to improve the stiffness, relationship between cutting process and tool geometry must be studied. In this study, relations between grinding wheel geometry, setting condition and tool geometry are revealed. For the purpose of studying relations between each parameter, the equivalent diameter of tool has been calculated assuming tool as a simple beam. By the various cutting simulations and experiments, tool geometry and cutting process has been studied.

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금형변형을 고려한 성형 CAE에서의 스프링백 예측정확도 향상 (Improvement in Prediction Accuracy of Springback for Stamping CAE considering Tool Deformation)

  • 박정수;최현준;김세호
    • 소성∙가공
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    • 제23권6호
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    • pp.380-385
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    • 2014
  • An analysis procedure is proposed to improve the prediction accuracy of springback as well as to evaluate the structural stability of the tooling used for fabricating a side sill part from UHSS. The analysis couples the stamping analysis and the subsequent analysis of the tool structural. The deformation and stress results for the tool structure are obtained from the proposed analysis procedure. The results show that the amount of deformation and stresses are so high that the tool structure must be reinforced and the tooling design must consider structural stability. Springback is predicted with CAE in order to compare the prediction accuracy between the given tool geometry and the geometry from the structural analysis. The simulation results with the deformed tool can predict the experimental springback tendency accurately.

엔드밀 형상에 따른 가공특성 분석을 이용한 형상설계 S/W 개발 (Development of Geometry Design S/W using Analysis on Machining Characterization considering EndMill Geometry)

  • 한창규;고성림;유중학;서천석;김경배
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 춘계학술대회 논문집
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    • pp.111-117
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    • 2004
  • The tool geometry parameters and cutting process have complex relationships. Until now, various cutting test were needed to acquire optimal design of end mill for the purpose of high speed machining, due to the insufficient knowledge about cutting process. In high speed machining. Using various tools with different geometry, relationships between tool geometry parameter (rake angle, clearance angle, length of cutter) and cutting process (cutting force, surface accuracy, surface roughness) have been studied. Acquired data can be used to design optimal tool for high speed machining and developed tool geometry design S/W.

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Development of a truncation artifact reduction method in stationary inverse-geometry X-ray laminography for non-destructive testing

  • Kim, Burnyoung;Yim, Dobin;Lee, Seungwan
    • Nuclear Engineering and Technology
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    • 제53권5호
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    • pp.1626-1633
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    • 2021
  • In an industrial field, non-destructive testing (NDT) is commonly used to inspect industrial products. Among NDT methods using radiation sources, X-ray laminography has several advantages, such as high depth resolution and low computational costs. Moreover, an X-ray laminography system with stationary source array and compact detector is able to reduce mechanical motion artifacts and improve inspection efficiency. However, this system, called stationary inverse-geometry X-ray laminography (s-IGXL), causes truncation artifacts in reconstructed images due to limited fields-of-view (FOVs). In this study, we proposed a projection data correction (PDC) method to reduce the truncation artifacts arisen in s-IGXL images, and the performance of the proposed method was evaluated with the different number of focal spots in terms of quantitative accuracy. Comparing with conventional techniques, the PDC method showed superior performance in reducing truncation artifacts and improved the quantitative accuracy of s-IGXL images for all the number of focal spots. In conclusion, the PDC method can improve the accuracy of s-IGXL images and allow precise NDT measurements.

eLoran 송신국 배치 최적화 방안 연구 (A study on the optimal geometrical placement of eLoran stations in Korea)

  • 이창복;신미영;황상욱;이상정;양성훈
    • 한국항해항만학회지
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    • 제37권1호
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    • pp.35-40
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    • 2013
  • eLoran에서의 항법 성능을 결정하는 주요 오차요인은 수신기의 eLoran 측정치인 TOA 측정치 오차와 수신기와 송신국들 사이의 기하학적인 배치(GDOP)에 의한 오차로 구분할 수 있다. TOA 측정치의 오차 보정을 위해서는 dLoran 기준국에서 측정한 ASF 변동값을 LDC를 통해 이용자에게 제공하면 가능하다. 또한 송신국들의 기하학적 배치에 따른 위치측정 정확도는 DOP로 결정되며 송신국의 최적의 기하적인 배치는 항법 정확도를 향상시킨다. 본 연구에서는 eLoran 구축에 대비하여 우수한 항법 성능을 갖는 데 필요한 eLoran 송신국의 기하학적인 배치를 결정하였고, 최대 6 개까지 송신국을 배치할 경우에 대해 각각의 항법 성능을 평가하였다. 제안된 eLoran 송신국 배치 방안은 항만에서 항법 및 시간주파수 와 관련하여 요구하는 HEA 정확도를 만족하는 eLoran 시스템을 구축할 때에 활용될 수 있다.

자동 균열 조사기법의 정확도 평가를 위한 조사선 기반의 지표 제안 (Scanline Based Metric for Evaluating the Accuracy of Automatic Fracture Survey Methods)

  • 김진언;송재준
    • 터널과지하공간
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    • 제29권4호
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    • pp.230-242
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    • 2019
  • 신속한 암반 및 암석 균열 조사를 위해서는 자동화된 조사기법이 필요하다. 그러나 자동 조사기법의 균열 지도가 수동으로 조사한 것과 얼마나 일치하는지 표기하는 단일 지표가 없어서 그 정확도를 평가하는데 어려움이 있다. 따라서 본 연구에서는 균열 지도 간의 일치도를 단일 값으로 표현하는 조사선 교차 일치도 (Scanline Intersection Similarity, SIS)라는 지표를 새롭게 제안하였다. 제안된 지표는 두 균열 지도의 균열 빈도를 다수의 조사선 상에서 비교하여 이들 간의 기하학적 일치도를 도출한다. 해당 지표의 적용성을 검토하기 위해 컴퓨터 비전 (Computer Vision) 분야에서 널리 사용하는 일치도 지표인 Intersection Over Union (IoU)과 비교분석하였다. IoU는 균열의 미시적 형태 차이를 과대평가하는 반면에, 제안된 지표의 경우 미시적 형태 차이보다 경사와 같은 거시적 형태 차이를 더 민감하게 반영하였다. 따라서 균열의 거시적 형태가 중요한 암반 공학적 관점에서, 제안된 지표가 IoU 보다 균열 지도의 일치도 지표로써 적합하였다. 더 나아가 제안된 지표를 딥러닝(Deep Learning)을 이용한 균열 조사기법에 적용해본 결과, 해당 기법의 정확도가 조사선 교차 일치도로 0.674 임을 확인하였다.

실측 하천 단면자료를 이용한 HSPF 유역모델의 수리정확도 개선 (Improving HSPF Model's Hydraulic Accuracy with FTABLES Based on Surveyed Cross Sections)

  • 신창민
    • 한국물환경학회지
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    • 제32권6호
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    • pp.582-588
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    • 2016
  • The hydrological simulation program FORTRAN (HSPF) is a comprehensive watershed model that employs the hydraulic function table (FTABLE) (depth-area-volume-flow relationship) to represent the geometric and hydraulic properties of water bodies. The hydraulic representation of the HSPF model mainly depends on the accuracy of the FTABLES. These hydraulic representations determine the response time of water quality state variables and also control the scour, deposition, and transport of sediments in the water body. In general, FTABLES are automatically generated based on reach information such as mean depth, mean width, length, and slope along with a set of standard assumptions about the geometry and hydraulics of the channel, so these FTABLES are unable to accurately describe the geometry and hydraulic behavior of rivers and reservoirs. In order to compensate the weakness of HSPF for hydraulic modeling, we generated alternate method to improve the accuracy of FTABLES for rivers, using the surveyed cross sections and rating curves. The alternative method is based on the hydraulics simulated by HEC-RAS using the surveyed cross sections and rating curves, and it could significantly improve the accuracy of FTABLES. Although the alternate FTABLE greatly improved the hydraulic accuracy of the HSPF model, it had little effect on the hydrological simulation.

고속 가공용 엔드밀의 형상설계에 관한 연구 (Study on the Design of End Mill Geometry for the High Speed Machining)

  • 이상규;배승민;고성림;김경배;서천석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2001년도 춘계학술대회 논문집
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    • pp.67-70
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    • 2001
  • The tool geometry parameters and cutting process have complex relationships. Until now, numerous cutting tests were needed to acquire optimal design of end mill for the purpose of high speed machining, due to the insufficient knowledge about cutting process in high speed machining. Using various tools with different geometry, relationships between tool geometry parameter(rake angle, clearance angle, length of cutter) and cutting process(cutting force, surface accuracy, surface roughness) have been studied. Acquired data can be used to design optimal tool for high speed machining

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