• 제목/요약/키워드: Specific Cutting Coefficient

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런아웃을 고려한 측면 엔드밀 가공의 절삭력 분석 (An Analysis of the Cutting Force for Peripheral End-milling Considering Run-out)

  • 김종도;윤문철;김병탁
    • 한국기계가공학회지
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    • 제11권4호
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    • pp.7-12
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    • 2012
  • The cutting force for peripheral end-milling considering run-out property was estimated and its result was compared with that of measured one. An experimental coefficient modelling was used for the formulation of theoretical end-milling force by considering the specific cutting force coefficient. Also, the specific cutting force, that is the multiplication of specific cutting force coefficient and uncut chip thickness, was used for the prediction of end-milling force. The end-milling force mechanics with run-out was presented for the estimation of theoretical force in peripheral end-milling by considering the geometric shape of the workpiece part. As a result, the estimated end-milling force shows a good consistency with the measured one. And it can be used for the prediction of force history in end-milling with run-out which incurs different start and exit immersion angle in entering and exiting condition.

비절삭 저항상수에 따른 절삭력 예측 (Cutting Force Estimation Considering the Specific Cutting Force Constant)

  • 김종도;윤문철
    • 한국기계가공학회지
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    • 제18권10호
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    • pp.75-82
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    • 2019
  • Few studies have been conducted regarding theoretical turning force modelling while considering cutting constant. In this paper, a new cutting force modelling technique was suggested which considers the specific cutting force coefficients for turning. The specific cutting force is the multiplication of the cutting force coefficient and uncut chip thickness. This parameter was used for experimental modelling and prediction of theoretical cutting force. These coefficients, which can be obtained by fitting measured average forces in several conditions, were used for the formulation of three theoretical cutting forces for turning. The cutting force mechanism was verified in this research and its results were compared with each of the experimental and theoretical forces. The deviation of force was incurred by a small amount in this model and the predicted force considering feed rate, nose radius, and radial depth shows a physical behavior in main force, normal force, and feeding force, respectively. Therefore, this modelling technique can be used to effectively predict three turning forces with different tool geometries considering cutting force coefficients.

절삭력 계수를 통한 마이크로 가공의 절삭 특성 분석 (Analysis of cutting characteristics in micro machining using cutting force coefficient)

  • 이한울;조동우;박종권
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2005년도 춘계학술대회 논문집
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    • pp.483-488
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    • 2005
  • The complex three-dimensional miniature components are needed for a wide range of applications from the aerospace to the biomedical industries. To manufacture these products, micro machining that can make a high aspect ratio part and has good accuracy is widely researched. In this paper, cutting characteristics were analyzed in micro machining using cutting force coefficients, which are the specific cutting force for normal and frictional direction of rake surface. From measured cutting force in micro end milling, cutting condition independent cutting force coefficients were determined and used for analysing the characteristics of micro cutting. Using the cutting force coefficient, 써써써.

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비절삭저항 상수 변화에 따른 절삭력 분석 (An analysis of cutting force according to specific force coefficients)

  • 김종도;윤문철
    • 한국기계가공학회지
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    • 제13권2호
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    • pp.108-116
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    • 2014
  • Considering the run-out effect and cutting force coefficients, the cutting force profile of half immersion end-milling was analyzed in detail. The effects of three specific cutting-force coefficients and three edge-force coefficients are verified. Through a detailed investigation, it is proved that the radial cutting force coefficients and are the major factors which increase the cutting forces Fx and Fy in end-milling. However, the axial cutting force coefficients have no influence on the force Fx and Fy changes in end-milling. Also, the analyzed end-milling force model shows good consistency with the actual measured force with regard to Fx and Fy. Thus, this model can be used for the prediction of the force history in end-milling with run-out, and it incurs a different force history with different start and exit immersion angles as well as holding effects.

고출력 Nd:YAG UV레이저를 이용한 polyimide층과 Cu-metal층의 가공상태에 대한 실험적 고찰 (Experimental Investigation for Ablation Characteristics of Polyimide Layer and Cu-metal Layer using High Power Nd:YAG UV Laser)

  • 최경진;이용현
    • 반도체디스플레이기술학회지
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    • 제8권4호
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    • pp.31-36
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    • 2009
  • In this paper, the laser cutting characteristics of the flexible PCB using high power Nd:YAG UV laser were investigated. A specific FPCB model was selected for the experiment. Test sheets were made, which had equal materials and layer structure to those of the outline (OL) region and the contact pad (CP) region in the FPCB. The experiment is made up of two stages. In the first stage of the experiment, the laser cutting fluence was found, which is the threshold fluence to cut the test sheets completely. The laser cutting fluence of the OL sheet is $1781.26{\sim}1970.16\;J/cm^2$ and that of the CP sheet is $2109.34{\sim}2134.34\;J/cm^2$. In the second stage, cutting performance and its qualities were analyzed by the experiment. The laser cutting performance remained almost unchanged for all laser and process parameter sets. The average cutting width (top side/bottom side) of the OL sheet was $40.45\;{\mu}m/11.52\;{\mu}m$ and that of the CP sheet was $22.14\;{\mu}m/10.93\;{\mu}m$. However, the laser cutting qualities were different according to the parameters. The adjacent region of the cutting line on the OL sheet was carbonized as the beam speed was low and the overlap coefficient was high. The surface quality around the cutting line of the CP sheet was about the same. Carbonization and debris occurred on the surface of the cutting line. As a result of the experiment, the cutting qualities were better as the overlap coefficient was made low and beam speed high. Therefore, the overlap coefficient 2 or 3 is proper for the FPCB laser cutting.

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초듀랄류민(A2024-T3)의 절삭거동에 관한 연구 (The Study on the Cutting Behavior of Super Duralumin(A2024-T3))

  • 전태옥;박흥식;예규현
    • 한국정밀공학회지
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    • 제9권4호
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    • pp.147-153
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    • 1992
  • This study was undertaken to investigate the cutting behaviour of super duralumin (A2024-T3) with sintered carbide tool(P20). The cutting test was carried out under different conditions such as cutting speed, cutting depth and rake angle, etc. The specific cutting force Kc and Kt of vertical and radial forces decreases as cutting speed increases, especially the decrease rate of Kt becomes larger than of Kc as cutting speed increases. Kc and Kt in small cutting depth are much affected by work-hardening of surface layer. The chip width and shear angle become layer as cutting depth increases, especially chip width at feed of 0.1mm almost approaches cutting width. Relation between the friction coefficient of chip side and tool rake angle side can make the modelization studying the built-up edge size. The shear angle model equation of super duralumin generally agree with theory of Ernst-Merchant.

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퇴적층 암석의 픽 커터 절삭성능 평가를 위한 선형절삭시험 (Linear cutting machine test for assessment of the cutting performance of a pick cutter in sedimentary rocks)

  • 정호영;전석원
    • 한국터널지하공간학회 논문집
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    • 제20권1호
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    • pp.161-182
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    • 2018
  • 본 연구에서는 퇴적층 암석에서 픽 커터의 절삭성능을 평가하기 위하여 선형절삭시험을 수행하였다. 중국에서 채취된 Linyi사암과 역암을 모사한 콘크리트를 시험체로 사용하였다. 소규모 선형절삭시험장비를 이용하여 다양한 절삭조건하에서 절삭조건에 따른 커터작용력과 비에너지의 변화양상을 평가하였다. 커터작용력은 두 가지 재료 모두에서 압입깊이와 커터간격이 증가함에 따라 증가하는 경향을 나타내었고 재료의 강도에 영향을 받는 것으로 나타났다. 반면 최대작용력과 평균작용력의 비율은 재료의 강도에 영향을 받기 보다는 재료의 구성 물질과 절삭특성에 영향을 받는 것으로 판단되었다. 절삭계수는 암석과 픽 커터의 마찰 특성에 영향을 받으나 절삭조건에는 영향을 받지 않는 것으로 나타났다. 따라서 절삭계수와 픽 커터 작용력의 합력방향에 따라 암석의 특성을 고려한 최적의 절삭각도를 선정해야 할 것으로 판단되었다. 한편 절삭조건에 따른 비에너지의 변화양상으로부터 최적 절삭조건을 규명하였다. 두 가지 재료에서 최적 s/p비는 2~4 범위로 도출되었고, 압입깊이가 증가함에 따라 비에너지는 감소하는 경향을 나타내었다. 본 연구의 결과는 픽 커터의 절삭메커니즘 규명을 위한 데이터베이스로 활용될 수 있으며, 픽 커터를 사용한 기계굴착장비의 설계에 활용될 수 있을 것으로 기대된다.

런아웃을 고려한 엔드밀링의 절삭력 모델링 (Cutting Force Modelling in End-milling Considering Runout)

  • 조희근;김종도;윤문철
    • 한국생산제조학회지
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    • 제20권3호
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    • pp.225-231
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    • 2011
  • In this paper, a new end-milling force modelling technique was suggested by considering runout, and its result was compared with real measured force. The specific cutting force is the multiplication of cutting force coefficient and uncut chip thickness. This parameter was used for experimental modelling and prediction of theoretical force. These coefficients, which can be obtained by fitting measured average forces in several conditions, were used for the formulation of theoretical force. The mechanism of end-milling force with runout was developed in this research and its result was verified by comparing the fluctuating theoretical force and its measured one. The fluctuation of force was incurred by a geometric shape of workpiece and its runout in holding. The result of suggested force considering runout shows a good consistency with measured one. So this modelling method can be used effectively for a prediction of end-milling force with runout effect.

CAD 모델에 기초한 모사절삭을 통한 가상절삭 시스템 개발 (Development of a Virtual Machining System by a CAD Model Based Cutting Simulation)

  • 배대위;고태조;김희술
    • 한국생산제조학회지
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    • 제8권3호
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    • pp.83-91
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    • 1999
  • In this paper, we suggest a virtual machining system that can simulate cutting forces of ball end milling at the stage of part design. Cutting forces, here, are estimated from the machanistic model that uses the concept of specific cutting farce coefficient. To this end, we need undeformed chip thickness which is used for calculating chip load. It is derived from the Z-map data of a CAD model. That is, chip load is the height difference between the cutting tool and the workpiece at an arbitrary position. The tool contact point is referred from the cutter location data. On the other hand, the workpiece height is acquired from the Z-map model of a CAD data. From the experimental verification, we can simulate machining process effectively to the slot and the side cutting of ball end mill.

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마찰력을 고려한 고속탭핑 토크 모델링 (Modeling of High-speed Tapping Touque Considering Friction Force)

  • 이돈진;강지웅;전현배;김선호;안중환
    • 한국정밀공학회지
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    • 제18권11호
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    • pp.67-73
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    • 2001
  • This paper aims at developing a torque model for the high-speed tapping with small-diameter taps. As recent industries such as automobile and information technology grows, taps smaller than 5mm in diameter are needed much more. In that occasion, the friction force between a tap surface and a workpiece plays much more important role in the tapping torque than in he larger tapping. Tapping mechanism was analysed based on the tap geometry. It has two steps : one is a forward cutting composed of the chamfered threading and full threading and the other is the backward cutting. The torque by the cutting force in the chamfered threading is calculated using the cutting area and the specific cutting force while the torque by the friction force, which is rather dominant than the cutting force both in the full threading and in the backward cutting, is calculated using the normal force on the threads and the friction coefficient. The experiment has shown that the results by the proposed torque model fit quite well with the acutal measurements within the error of 10%.

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