• 제목/요약/키워드: Drilling Chips

검색결과 15건 처리시간 0.03초

다이아몬드 코어드릴 공정의 구멍가공 특성과 모델링 (Drilling Characteristics and Modeling of Diamond Core Drilling Processes)

  • 윤관우;정성종
    • 한국공작기계학회논문집
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    • 제17권4호
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    • pp.95-103
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    • 2008
  • Diamond core drills are applied to drill difficult-to-cut materials. This paper proposes basic understanding of ceramic drilling mechanics and characteristics of main factors affecting tool life, tool wear, cutting force, and chipping thickness. In contrast to conventional drilling, the core drilling process make deep grooves on the workpiece. One difficulty of it is the evacuation of chips from the drilled groove. As the drilling depth increases, an increased amount of chips tend to cluster together and clog the groove. Eventually severe wear develops and diamond grits are separated from the drill body. To relieve the clogging problem and to evacuate chips from the groove easily, the helical drilling process is applied for the core drilling process. To analyze drilling characteristics and derive optimal drilling conditions, tool life, tool wear, cutting force, and chipping thickness are quantified through the monitoring system and the Taguchi method. Mathematical models for the tool life and chipping thickness are derived from the response surface method. Optimal drilling database has been constructed through the experimental models.

주기적 이송속도 변화를 이용한 심공드릴가공 (Deep Hole Drilling by Using Periodical Change of Feedrate)

  • 왕덕현;이윤경;김원일;김용제
    • 한국생산제조학회지
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    • 제9권6호
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    • pp.103-110
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    • 2000
  • Experimental study of drilling for duralumin A2024 was conducted with intermittently accelerated and decelerated feedrate. It is achieved through a programmed periodic increase and decrease in the feedrate using a machining center. The following experimental results were performed with the objective of solving chip to disposal problems. In conventional drilling of aluminum, long continuous chips are produced with winding around the drill and causing difficulties in eliminating chips from the cutting zone. In order to acquire the basic data necessary to regulate the chip profile, the relationship between cutting variables and chip shape was investigate. The following conclusions are established from the experimental results. At a suitable feed fluctuation ratio, intermittently decelerated feed drilling proved successful in braking chips to appropriate lengths while maintaining stable cutting. Thus, it is an effective method for improving chip disposal. The amplitude of the dynamic component of cutting force in intermittent feed drilling is influenced by the feed fluctuation ratio.

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이송속도의 주기적 변화를 이용한 듀랄루민재의 심공가공 특성 (Chatacteristics of Deep Hole Machining for Duralumin Using Periodical Change of Feedrate)

  • 김용제
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2000년도 춘계학술대회논문집 - 한국공작기계학회
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    • pp.240-245
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    • 2000
  • This paper presents the experimental study of drilling for duralumin A2024 with intermittently decelerated feed rate. It is achieved through a programmed periodic increase and decrease in the feed rate using a machining center. The following experimental result were performed with the objective of solving chip to disposal problems. In conventional drilling of aluminum, long continuous chips are produced that wind around the drill causing difficulties in eliminating chips from the cutting zone. In order to acquire the basic data necessary to regulate the chip profile, the relationship between cutting variables and chip shape was investigated. The following conclusions are established from the experimental results. At a suitable feed fluctuation ratio, intermittently decelerated feed drilling proved successful in breaking chips to appropriate lengths while maintaining stable cutting. Thus, it is an effective method for improving chip disposal. The amplitude of the dynamic component of cutting force in intermittent feed frilling is influenced by the feed fluctuation ratio.

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스테인리스강의 고온드릴 작업시 절삭성 평가 (Evaluation of Cutting Characteristics for Hot-Drilling of Stainless Steel)

  • 이민국;심재형;백인환
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.287-290
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    • 2002
  • Stainless steel used widely in various fields of industry have the characteristics of difficulty-to-cut. This difficulty comes from its peculiarity, for example work hardening, vibration, etc. And these peculiarity on the cutting process have an effect on tool wear or life shortness of tools. To solve these problems several method have been developed. Hot-machining is one way of these method. when a material is heated, organization of material is soften. So cutting process becomes easy. When such a hot-machining method applies on drilling process and then heated material is processed, cutting force is less than usual drilling process cutting force. In this paper, cutting force is compared heated SUS 304 with usual SUS 304. And shape of chips is also compared.

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초음파 드릴링의 기하학적 가공 메커니즘 분석 (The Geometric Machining Mechanism of Ultrasonic Drilling)

  • 장성훈;이석우;최헌종;이선규
    • 한국정밀공학회지
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    • 제22권4호
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    • pp.76-83
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    • 2005
  • With the acceleration of the miniaturization of products, especially in recent years, machining technologies for these products is in need of improvement. Conventional technologies have limitations in realizing the miniaturization due to the downsizing effects of the tools, which lack sufficient cutting stiffness during machining. The application of ultrasonic vibration is one of the most useful solutions in dealing with the problem. This study focused on the difference of ultrasonic drilling from conventional one in geometrical machining mechanism and the corresponding machining results. In detailed, some mathematical equations for drill cutting edge paths during drilling were extracted and new method to find uncut chip thickness from above equations was suggested. The experiments were carried out through the comparison between the results (disposed chips and internal surface states of holes) of conventional drilling and those of ultrasonic drilling. It was determined that the geometrical paths of cutting edges and analyzed uncut chip thickness agree with the appearance of disposed chips. Furthermore, the change in tool path by ultrasonic vibration resulted in the improvement of surface statement.

PVC 재료의 드릴링 특성 (Drilling Characteristics of PVC Materials)

  • 변재영;박나람;정성원;권순홍;권순구;박종민;김종순;최원식
    • 한국기계가공학회지
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    • 제14권1호
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    • pp.70-77
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    • 2015
  • This paper develops and evaluates a mechanical machining process which involves drilling on PVS material. According to the material, two treatment experiments were conducted, one involving drilling in a wet condition or using a lubricant and one involving drilling in a dry condition with no lubricant. Drilling in a dry condition showed better performance in terms of the cutting time than in the wet condition. Otherwise, the wet condition has several advantages. The lubricant influenced the burr diameter size and minimized the temperature on the surface of the work piece. During the wet condition drilling process, a smaller burr diameter size was noted as compared to the dry condition. The temperature showed a linear correlation with the drill bit size, where a least-square analysis provided an $R^2$valuewhichexceeded 0.95. The wet condition required more cutting time than the dry condition. In this condition, the water provides a lubrication effect. A thin layer between the cutting edges and the surface of the work piece is formed. The chip formation is affected by the drilling depth. The color on the tips of the chips was darker than in the initial condition. No correlation between the drilling depth and the bore roughness was noted, but the variation of the cutting speed or the RPM influenced the roughness of the bore. The optimum cutting speed ranged from 40 RPM to 45 RPM in the condition which provided the finest roughness surface.

드릴링 공정의 열거동 해석과 관측기를 이용한 온도 추정법 (Analysis of Thermal Behavior and Temperature Estimation by using an Observer in Drilling Processes)

  • 김태훈;정성종
    • 대한기계학회논문집A
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    • 제27권9호
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    • pp.1499-1507
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    • 2003
  • Physical importance of cutting temperatures has long been recognized. Cutting temperatures have strongly influenced both the tool life and the metallurgical state of machined surfaces. Temperatures in drilling processes are particularly important, because chips remain in contact with the tool for a relatively long time in a hole. Tool temperatures tend to be higher in drilling processes than in other in machining processes. This paper concerns with modeling of thermal behaviors in drilling processes as well as estimation of the cutting temperature distribution based on remote temperature measurements. One- and two-dimensional estimation problems are proposed to analyze drilling temperatures. The proposed thermal models are compared with solutions of finite element methods. Observer algorithms are developed to solve inverse heat conduction problems. In order to apply the estimation of cutting temperatures, approximation methods are proposed by using the solution of the finite element method. In two-dimensional analysis, a moving heat source according to feedrate of the drilling process is regarded as a fixed heat source with respect to the drilling location. Simulation results confirm the application of the proposed methods.

3차원절삭에 관한 연구(초경DRILL의 효율성 증가) (A Study of Three Dimension Cutting;Tipped Twist Drilling)

  • 이영철
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1994년도 하계학술대회 논문집 A
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    • pp.168-170
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    • 1994
  • Carbide-tipped twist drill of new type which is better than traditional H.S.S twist drill has been developed successfully to drill steel work-pieces with high speed. This new carbide drill consists of a characteristic flature of special shape of cutting edge, chip pocket, and flute. The special design of the chip pocket and the flute guarantees both periodic fracture and smooth transport of chips along the flute. The carbide-tipped twist drill also allows one to apply more drilling force than conventional one and produce holes with high accuracy.

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미소드릴링의 한계깊이에 관한 연구 (The Study on the Experimental Analysis for Limit Depth of Small Diameter Drilling)

  • 안인석;이우영;최성주
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2001년도 추계학술대회(한국공작기계학회)
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    • pp.225-230
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    • 2001
  • Small diameter drilling which take high precision in cutting work is needed more small hole and high speed working. Especially, small hole deep drilling is one of the most important machining types and its necessity and importance become more and more increasing in the whole field of industry. This paper shows the limit depths with small diameter drills using experimental analysis. The results are gained by tool dynamometer and Labview system and obtained during small diameter twist drilling system on SM45C steel for different machining conditions. The machine and tools are the CNC machining center and twist drill of diameter 1.5mm. And additionally, tool microscope show the relationship between shapes of chips and breakage shapes of small diameter drills.

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해저 착저식 시추기 시험시추 보고 및 기술 동향 (A Case Report on the Sea-Trial of the Seabed Drill System and Its Technical Trend)

  • 박상준;김현섭
    • 자원환경지질
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    • 제49권6호
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    • pp.479-490
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    • 2016
  • 해저 착저식 시추 시스템은 해저 광물자원 시추를 위해 최근 들어 사용이 증가하고 있는 시추 시스템이다. 2016년 3월 일본 근해에서 수행된 해저 착저식 시추 시스템 실해역 테스트의 과정, 결과 및 착저식 시추 기술과 관련된 국제동향을 보고한다. 해저 착저식 시추기는 선상 탑재식 시추기와 비교하여 1000~3000 m 사이 수심의 좁은 면적에 산재하여 분포하는 광체를 100 m 내외의 깊이로 시추하는데 유리한 시추 시스템이다. 해저 착저식 시추 시스템은 시추에 필요한 동력, 시추로드 및 코어베럴 등을 착저식 시추기에 장착한 후 해저 착저를 시켜 시추를 수행한다. 시추 시 획득되는 암추 시료는 시추기와 함께 회수한다. 본 실해역 시험 시추에서 회수된 시료는 모두 현무암으로, 시추 시료 회수율은 약 55%를 보인다. 그러나 현무암 보다 연약한 열수 광체를 시추 할 경우 이보다 회수율이 낮을 것으로 판단된다. 회수율을 높이기 위해 전통적인 암추 시료 회수 방법에 부가하여 무암추 시료 회수 방법을 이용하기도 하며, 최근에는 보다 안정적인 무암추 시료 회수를 위해 reverse circulation 방법 적용이 고려되고 있다. 착저 방식에 있어서 세 개 및 네 개의 다리를 이용하여 착저하는 방법이 경쟁하고 있으나, 더 많은 시추 결과를 통해 해저 착저에 유리한 방안을 고려하여야 한다.