• 제목/요약/키워드: Effective cutting depth

검색결과 56건 처리시간 0.022초

엔드밀가공에서 커터회전방향에 따른 절삭력의 최적화 (Optimization of Cutting Force for End Milling with the Direction of Cutter Rotation)

  • 최만성
    • 반도체디스플레이기술학회지
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    • 제16권2호
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    • pp.79-84
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    • 2017
  • This paper outlines the Taguchi optimization methodology, which is applied to optimize cutting parameters in end milling when machining STS304 with TiAlN coated SKH59 tool under up and down end milling conditions. The end milling parameters evaluated are depth of cut, spindle speed and feed rate. An orthogonal array, signal-to-noise (S/N) ratio and analysis of variance (ANOVA) are employed to analyze the effect of these end milling parameters. The Taguchi design is an efficient and effective experimental method in which a response variable can be optimized, given various control and noise factors, using fewer resources than a factorial design. An orthogonal array of $L_9(33)$ was used. The most important input parameter for cutting force, however, is the feed rate, and depending on the cutter rotation direction. Finally, confirmation tests verified that the Taguchi design was successful in optimizing end milling parameters for cutting force.

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다이아몬드 터닝의 미세 절삭력 측정을 위한 tool holder 설계 및 절삭력 측정 (Tool Holder Design and Cutting Force Measurement of Diamond Turning Process)

  • 정상화;김상석;도철진;홍권희;김건희;유병주
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집C
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    • pp.507-512
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    • 2001
  • In this work, tool holder system has been designed and builted to measure cutting forces in diamond turning. This system design includes a 3-component piezo-electric tranducer. Initial experiments with tool holder system included verification of its predicted dynamic characteristics as well as a detailed study of cutting parameters. Tool holder system is modeled by considering the element dividing, material properties, and boundary conditions using MSC/PATRAN. Mode and frequency analysis of structure is simulated by MSC/NASTRAN, for the purpose of developing the effective design. Many cutting experiments have been conducted on 6061-T6 aluminum. Tests have involved investigation of velocity effects, and the effects of depth and feedrate on tool force. Forces generally increase with increasing depth of cut. Increasing feedrate does not necessarily lead to higher forces.

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공구재종에 따른 엔드밀 가공의 절삭력에 관한 통계적해석 (Statistical Analysis of Cutting Force for End Milling with Different Cutting Tool Materials)

  • 최만성
    • 반도체디스플레이기술학회지
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    • 제15권4호
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    • pp.86-91
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    • 2016
  • End milling is an important and common machining operation because of its versatility and capability to produce various profiles and curved surfaces. This paper presents an experimental study of the cutting force variations in the end milling of SM25C with HSS(high speed steel) and carbide tool. This paper involves a study of the Taguchi design application to optimize cutting force in a end milling operation. The Taguchi design is an efficient and effective experimental method in which a response variable can be optimized, given various control and noise factors, using fewer resources than a factorial design. This study included feed rate, spindle speed and depth of cut as control factors, and the noise factors were different cutting tool in the same specification. An orthogonal array of $L_9(3^3)$ of ANOVA analyses were carried out to identify the significant factors affecting cutting force, and the optimal cutting combination was determined by seeking the best cutting force and signal-to-noise ratio. Finally, confirmation tests verified that the Taguchi design was successful in optimizing end milling parameters for cutting force.

A Study on the Optimum Machining Conditions and Energy Efficiency of a Laser-Assisted Fillet Milling

  • Woo, Wan-Sik;Lee, Choon-Man
    • International Journal of Precision Engineering and Manufacturing-Green Technology
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    • 제5권5호
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    • pp.593-604
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    • 2018
  • Laser-assisted machining (LAM) is known to be an effective and economical technique for improving the machinability of difficult-to-machine materials. In the LAM method, material is preheated using a laser heat source and then the preheated area is removed by following cutting tool. For laser-assisted turning (LAT), the configuration of the system is not complicated because laser irradiates from a fixed position. In contrast, laser-assisted milling (LAMill) system is not only complicated but also difficult to control because laser heat source must always move ahead of the cutting tool along a three dimensional (3D) tool path. LAMill is still early stage and cannot yet be used to machine finished products with 3D shapes. In this study, a laser-assisted fillet milling process was developed for machining 3D shapes. There are no prior studies combining fillet milling and LAMill. Laser-assisted fillet milling strategy was proposed, and effective depth of cut (EDOC) was obtained using thermal analysis. Experiments were designed using response surface method and cutting force prediction equations were developed using statistical analysis and regression analysis. The optimum machining conditions were also proposed, and energy efficiency of the LAMill was analyzed by comparing the specific cutting energy of conventional machining (CM) and LAMill.

고온가공기법을 이용한 초경소재 가공기술 (Cutting method of tungsten carbide material using hot machining)

  • 이채문;이득우;정우섭;김상기
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 춘계학술대회 논문집
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    • pp.365-369
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    • 2004
  • The Advantages of hot machining are the reduction of cutting forces, tool wear, and the increase of material removal rates. In this study, a hot-machining using gas flame heating characteristics of milling by CBN tip was analyzed, and the influence of the surface temperature and the depth of cut on the tool life were investigated. The results show that hot machining of tungsten carbide-alloyed is more effective than conventional machining. In addition, some advantages obtained from hot machining, such as decrease of tool wear and cutting force, high surface quality.

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선형절삭시험에 의한 슬림 코니컬커터의 절삭성능 평가(I): Attack Angle 변화에 의한 결과 (Performance estimation of conical picks with slim design by the linear cutting test (I): depending on attack angle variation)

  • 최순욱;장수호;박영택;이규필
    • 한국터널지하공간학회 논문집
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    • 제16권6호
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    • pp.573-584
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    • 2014
  • 본 연구에서는 로드헤더 커팅헤드 설계의 기본 사항인 절삭조건에 따른 커터작용력의 변화를 살펴보는 기초 연구를 진행하기 위하여 연암 및 보통암을 대상으로 하는 슬림 코니컬커터를 사용하여 받음각과 커터관입깊이, 커터간격의 조건에 따른 선형절삭시험을 수행하였다. 각 시험조건에서 커터작용력인 연직력, 절삭력, 구동력을 측정하였고 그 측정결과의 평균값을 사용하여 분석을 실시하였다. S/d비와 비에너지의 관계, 관입깊이와 비에너지의 관계, S/d비와 커터작용력의 관계로부터 받음각이 $50^{\circ}$, 커터간격이 12 mm, 커터관입깊이가 9 mm인 조건이 모르타르시험체에 대한 최적의 절삭조건임을 확인할 수 있었다. 특히 받음각이 $50^{\circ}$인 경우가 $45^{\circ}$인 경우에 비해 장비사양 설계를 위해 더 효과적임을 알 수 있었다.

연마재 워터젯 변수에 따른 현무암 및 화강암 절삭성능 비교분석 (Comparative analysis of cutting performance for basalt and granite according to abrasive waterjet parameters)

  • 박준식;차현종;조선아;정주환;오태민
    • 한국터널지하공간학회 논문집
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    • 제24권5호
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    • pp.395-409
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    • 2022
  • 기존 암반 굴착공법이 갖는 한계점을 극복하기 위해 최근 연마재 워터젯 공법을 활용하는 연구가 활발히 진행되고 있다. 연마재 워터젯 암반굴착 공법은 암반에 연속적인 자유면을 형성하여 발파 시 발생하는 진동을 저감하고 굴착효율을 증진시키는 효과가 있다. 그러나 연마재 워터젯 절삭성능은 암반의 물리적 성질에 따라 변화한다. 따라서, 다양한 물리적 성질을 가진 암반이 혼재하는 굴착현장 특성상 효과적인 워터젯 활용을 위해서는 다양한 암종의 절삭성능을 분석하는 것이 필수적이다. 본 연구에서는 현무암과 화강암을 대상으로 수압, 이격거리, 이송속도를 변화시키며 절삭실험을 수행하고 결과를 분석하였다. 실험결과, 현무암은 화강암보다 평균적으로 약 41% 깊게 절삭되고, 절삭 폭은 약 18.5% 좁게 형성되었다. 본 연구결과는 향후 현무암과 같은 강도가 낮고 공극이 큰 암반 굴착현장에서 연마재 워터젯을 적용할 시 유용한 기초자료로 활용될 것으로 기대된다.

신形 칩折斷具에 관한 實驗的 硏究 (제1보) (An Experimental Study on New Type Chip Brakeer(Part 1))

  • 손명환;이호철
    • 대한기계학회논문집
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    • 제16권6호
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    • pp.1121-1140
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    • 1992
  • 본 연구에서는 부착형 칩절단구의 경사면 대신에 원고면으로 형성한 형태 칩 절단구를 고찰하고, 재래형과 비교하여 더 효과적인 칩절단구를 개발 실용화하고자 한 다. 가공법으로서는 연속칩의 처리가 가장 곤란한 선삭을, 공작물로서는 연속칩이 가장 잘 생성되는 SM 20 C의 연강을, 공구재료로서는 P계열의 초경합금을 써서 저속에 서 고속절삭속도까지 시험하였다.

티타늄 합금의 얇은 벽 밀링가공에서 가공방법에 따른 진동특성 및 가공품질에 관한 연구 (A Study on Vibration Characteristics and Machining Quality in Thin-wall Milling Process of Titanium Alloy)

  • 김종민;구준영;전차수
    • 한국기계가공학회지
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    • 제21권6호
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    • pp.81-88
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    • 2022
  • Titanium alloy (Ti-6Al-4V) has excellent mechanical properties and high specific strength; therefore, it is widely used in aerospace, automobile, defense, engine parts, and bio fields. Particularly in the aerospace field, as it has a low specific gravity and rigidity, it is used for the purpose of increasing energy efficiency through weight reduction of parts, and most have a thin-walled structure. However, it is extremely difficult to machine thin-walled shapes owing to vibration and deformation. In the case of thin-walled structures, the cutting forces and vibrations rapidly increase depending on the cutting conditions, significantly affecting the surface integrity and tool life. In this study, machining experiments on thin-wall milling of a titanium alloy (Ti-6Al-4V) were conducted for each experimental condition with different axial depths of cut, radial depth of cut, and machining sequence. The machining characteristics were analyzed, and an effective machining method was derived by a comprehensive analysis of the machined surface conditions and cutting signals.

STD11 금형강의 고속가공에서 가공정밀도 향상에 관한 연구 (A Study on the Improvement of Machining Accuracy in High Speed Machining of STD11)

  • 이춘만;최치혁;정원지;정종윤;고태조;김태형
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2002년도 추계학술대회 논문집
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    • pp.329-334
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    • 2002
  • High-speed machining is one of the most effective technology to improve productivity. Because of the high speed and high feed rate, high-speed machining can give great advantages for the machining of dies and molds. This paper describes on the improvement of machining accuracy in high-speed machining. Depth of cut, feed rate, spindle revolution and cutting force are control factors. The effect of the control factors on machining accuracy is discussed for the results of surface roughness and machining error in Z-direction for the high speed machining of STD11.

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