• 제목/요약/키워드: cutter wear

검색결과 67건 처리시간 0.025초

토사지반 EPB TBM의 굴진성능 및 커팅툴 마모량에 관한 실험장비 개발 및 기초연구 (Development of testing apparatus and fundamental study for performance and cutting tool wear of EPB TBM in soft ground)

  • 김대영;강한별;신영진;정재훈;이재원
    • 한국터널지하공간학회 논문집
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    • 제20권2호
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    • pp.453-467
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    • 2018
  • 쉴드 TBM 공사에서 굴진율 예측과 마모량 예측은 설계 및 시공 단계에서 공사비와 공기를 추정하는데 매우 중요한 요소이다. 암반지반용 TBM의 경우 실험이나 축적된 현장 data를 기반으로 CSM 모델, NTNU 모델 등이 커터 마모량부터 굴진율 예측까지 널리 사용되고 있으나, 토사지반용 TBM은 지반의 복잡성과 정확한 실험방법의 부재로 인해 이를 정확하게 예측할 수 있는 모델이 없는 실정이다. 본 연구에서는 기존에 존재하는 토사지반용 TBM 실험장치들의 단점을 개선하여 TBM 굴착과정을 모사한 실험 장치(Soil Abrasivity Penetration Test, SAPT)를 개발하였다. 회전당 관입 깊이, RPM, 첨가재(foam) 배합비 및 농도 등의 TBM 굴진에 영향을 미치는 주요 변수들에 대한 시험을 실시하여 추력, 토크 등의 변화를 살펴보고 마모량을 측정하였다. 모래(규사) 70%와 점토(일라이트) 30%로 조성된 인공시료에 대한 실험 결과 foam 배합비가 굴진성능과 마모량에 주요한 영향을 끼치는 것으로 나타났다.

항공기 대형구조물의 고속가공에 관한 연구 (A Study on the High Speed Machining of Major Structure in Aircraft)

  • 이우명;김남경;김해지;장정환;(주)Yulkok
    • 한국기계가공학회지
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    • 제11권1호
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    • pp.119-124
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    • 2012
  • The study on high speed machining was conducted for wing and rib parts of major structure in aircraft in order to investigate a optimal cutting condition and machining method using a high speed machine with 33,000rpm. Preliminary tests, such as high speed cutter test and spindle vibration test of high speed machine, were performed and the high speed machining was conducted in 3times after the preliminary test results were applied to a NC program for manufacturing.

절삭력을 이용한 엔드밀링 절입깊이 추정 (Estimation of End Milling Depth of Cuts Using the Cutting Force)

  • 최종근;양민상
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 춘계학술대회 논문집
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    • pp.1033-1037
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    • 1997
  • In the end milling process, the information of axial and depths of cut plays an important role in adaptive control systems for precision machining and tool monitoring systems for unmanned machining. In general, it is not easy to know the depths of cut due to irregular shape of workpieces, inaccurate positioning of them on the table of machine tool and machining error in previous cutting. In addition to, even they are informed, it is difficult to match the individual position of the cutter on the varying shape of the work material. This work suggest an algorithm estimating the depths of cut based on cutting force sigal. The proposed algorithm can be applied in more extensive cutting situations, for example, presence of the tool wear, variation of work material hardness, etc.

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실험적 방법을 통한 Metal slitting saw의 형상 및 절삭 조건의 최적화 (Optimization of a geometric form and cutting conditions of a metal slitting saw by experimental method)

  • 정경득;고태조;김희술
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 춘계학술대회 논문집
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    • pp.934-938
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    • 2000
  • Built-up edge affects the surface integrity of the machined surface and tool wear. Tool geometry and cutting conditions are very important factors to remove BUE. In this paper, we optimized the geometry of the metal slitting saw .1nd cutting conditions to remove BUE by the experiment. In general, the metal slitting saw is plain milling cutter with thickness less of a 3/16 inch. This is used for cutting workpiece where high dimensional accuracy and surface finish are necessary. The experiment was planned with Taguchi method that is based on the orthogonal array of design factors(coating, rake angle, number of tooth, cutting speed, feed rate). Response table was made by the value of the surface roughness, the optimized tool geometry and cutting conditions through response table could be determined. In addition. the relative effect of factors were identified by the variance analysis. filially. coating and cutting speed turned out important factors.

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Complex analysis of rock cutting with consideration of rock-tool interaction using distinct element method (DEM)

  • Zhang, Guangzhe;Dang, Wengang;Herbst, Martin;Song, Zhengyang
    • Geomechanics and Engineering
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    • 제20권5호
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    • pp.421-432
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    • 2020
  • Cutting of rocks is very common encountered in tunneling and mining during underground excavations. A deep understanding of rock-tool interaction can promote industrial applications significantly. In this paper, a distinct element method based approach, PFC3D, is adopted to simulate the rock cutting under different operation conditions (cutting velocity, depth of cut and rake angle) and with various tool geometries (tip angle, tip wear and tip shape). Simulation results showed that the cutting force and accumulated number of cracks increase with increasing cutting velocity, cut depth, tip angle and pick abrasion. The number of cracks and cutting force decrease with increasing negative rake angle and increase with increasing positive rake angle. The numerical approach can offer a better insight into the rock-tool interaction during the rock cutting process. The proposed numerical method can be used to assess the rock cuttability, to estimate the cutting performance, and to design the cutter head.

공구경로 곡면을 이용한 이송속도 최적화 (Feedrate Optimization Using CL Surface)

  • 김수진;정태성;양민양
    • 한국정밀공학회지
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    • 제21권4호
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    • pp.39-47
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    • 2004
  • In mold machining, there are many concave machining regions where chatter and tool deflection occur since MRR(material removal rate) increases as curvature increases even though cutting speed and depth of cut are constant. Boolean operation between stock and tool model is widely used to compute MRR in NC milling simulation. In finish cutting, the side step is reduced to about 0.3mm and tool path length is sometimes over loom, so Boolean operation takes long computation time and includes much error if the resolution of stock and tool model is larger than the side step. In this paper, curvature of CL (cutter location) surface and side step of tool path is used to compute the feedrate for constant MRR machining. The data structure of CL surface is Z-map generated from NC tool path. The algorithm to get local curvature from discrete data was developed and applied to compute local curvature of CL surface. The side step of tool path was computed by point density map which includes cutter location point density at each grid element. The feedrate computed from curvature and side step is inserted to new tool path to regulate MRR. The resultants were applied to feedrate optimization system which generates new tool path with feedrate from NC codes for finish cutting. The system was applied to the machining of speaker and cellular phone mold. The finishing time was reduced to 12.6%, tool wear was reduced from 2mm to 1.1mm and chatter marks and over cut on corner were reduced, compared to the machining by constant feedrate. The machining time was shorter to 17% and surface quality and tool was also better than the conventional federate regulation using curvature of the tool path.

쉴드 TBM 성능예측모델과 굴진자료 분석을 통한 굴진성능 개선방안 (Improvement Plan of Excavation Performance Based on Shield TBM Performance Prediction Models and Field Data)

  • 정혁상;강형남;최정명;천병식
    • 한국지반환경공학회 논문집
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    • 제11권2호
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    • pp.43-52
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    • 2010
  • 쉴드공법은 막장을 굴착함과 동시에 원통형 강재를 지반속에 추진시켜 터널을 축조하는 공법이다. 1818년 마크 브루넬이 런던의 템즈강 하저 굴착공사에 처음 사용한 이래 지반조건에 따른 다양한 쉴드 TBM이 개발되어 도로, 지하철, 전력구, 상하수도 등에 널리 활용되고 있다. 막장상태를 수시로 관찰하며 지반변화에 빠르게 대처할 수 있는 NATM 공법과 달리, 쉴드 공법은 굴진이 시작되면 장비 교체가 거의 불가능하다. 따라서 지반조사 및 실내시험 결과에 따라 적절한 장비를 설계하고, 막장상태에 따라 압입깊이, 커터헤드 회전속도 등을 효율적으로 관리하여 장비의 성능을 최대한 활용하여 굴착공사를 수행해야 한다. 본 연구에서는 분당선 한강하저터널의 지반조건을 NTNU, $Q_{TBM}$, 합경도, KICT-SNU 등의 모델에 적용하여 굴진성능을 예측하고, 실시공 굴진자료와 비교 분석하여 예측모델의 적용성을 검토하였으며, 한강하저터널 하행선의 굴진성능 저하원인을 분석하였다.

Wheel의 원반 진동을 고려한 외경연삭 주축의 동특성 (Dynamic Chanrateristics of Spindle for the External Cylindrical Grinding Machine Considered the Shell Mode Vibration of Wheel)

  • 하재훈;이선규
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.1000-1004
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    • 1995
  • In the case of the external cylindrical grinding machine, the grinding mechanism can cause a wheel to vibrate due to a wheel cutter. This phenomena will bring about the unsymmetric wear up to high frequency without any relation of rotational speed. So far, when the grinding spindle is analyzed, it is assumed that a wheel is considered as lumped mass at the endof a beam. Nowadays, there is a tendency to use the wheel with a lsrge diameter or CBN wheel to achieve the high speed and accuracy grinding performance. Therefore, this kind of assumption is no longer valid. At the analysis of the grinding spindle, the parameter which dapends on the dynamic characteristics is a combination force between each part. For example, there is the tightness torque of a bolt and taper element in the grindle. In addition, the material property of the wheel can contribute the dynamic characteristics. This paper shows the mode participation of the shell mode of the wheel in the grindle and the dynamic characteristics according to the parameters which are the configuration of the flange and tightness torque of a bolt and taper. Modal parameter of the wheel, flange and the spindle can be extracted through frequency response function obtained by modal test. After that, by changing the tightness torque and kinds of wheel, we could accomplish the test in the whole combined grinding spindle. To perform modal analysis of vibration characteristics in the grinding spindle, we could develop the model of finite element method.

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엔드밀 가공중 절입깊이의 실시간 추정을 이용한 가공오차 예측 (In-Process Prediction of the Surface Error Using an Identification of Cutting Depths in End Milling)

  • 최종근;양민양
    • 한국정밀공학회지
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    • 제15권2호
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    • pp.114-123
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    • 1998
  • In the end milling process, the information of the surface errors plays an important role in adaptive control systems for precision machining. As the measuring accuracy of the surface errors directly matches the control's, it is an important factor for evaluating the performance of the system. In order to obtain the surface errors, the prediction using the cutting force, torque, motor power etc. is frequently practiced owing to the easiness in measurement. In the implementation of the prediction, the information on the cutting depths make it concrete and precise. Actually the axial depth of cut limits the range of the calculation. In general, it is not easy to know the cutting depths due to irregular shape of workpieces, inaccurate positioning of them on the table of machine tool, and machining error in the previous cutting. In addition to, even if cutting depths are informed, it is difficult to match the individual position of the cutter on the varying shape of the work material. This work suggests an algorithm estimating the cutting depths based on cutting force and makes it precise to predict the surface error. The proposed algorithm can be applied in more extensive cutting situations, such as presence of the tool wear, change of the work material hardness, etc.

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상관관계 해석을 고려한 온 더 머신 자동측정 시스템 (Measuring Automation System for Analysis of Dimensional Reationships On the Machine)

  • 정성종
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1996년도 춘계학술대회 논문집
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    • pp.183-187
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    • 1996
  • On the machine measuring system composed of touch trigger probes, a DNC module, a CMM module, an analysis module and a man-machine interface unit was developed. Measuring accuracy is affected by working accuracy of the on the machine measuring system. The working accuracy of the system is due to geometric errors of th machine tool, servo errors of feed drives and positioning errors of probes. In order to compensate for the measuring errors due to the working accuracy, a calibration module was developed. The measuring automation system was realized with the on the machine measuring system and an IBM-PC on the machine center through a RS-232C. It turns the machining machine (CMM). The system is used for dimensional checking of machined components. initial job setup, part identification, identification of machining errors due to deflection and wear of tools. cutter run out, and calibration of machine tools. A horizontal machining center equipped with FANUC OMC wre used for verification of the system. The validity and reliability of the system. The validity and reliability of the system were confirmed through a series of experiments with gage blocks, ring gages, comparison measurement with a commercial CMM, and so on.

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