• Title/Summary/Keyword: NC가공

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A Study on Geometric Modeling and Generation of 4-axis NC Data for Single Setup of Small Marine Propeller (선박용 소형 프로펠러의 곡면 모델링 및 단일 셋업에 의한 4축 NC가공 데이터 생성에 관한 연구)

  • 이재현;이철수
    • Korean Journal of Computational Design and Engineering
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    • v.7 no.4
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    • pp.254-261
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    • 2002
  • Small marine propeller is generally machined by 5-axis machining. This paper suggests a method to create geometric model from point array data and 4-axis machining NC data for propeller. With conventional method, the setting posture should be changed, because propeller has front and back surface of wing. The change of setting posture has a bad influence on precision of propeller. So this paper pro-poses a method to machine propeller by single setup for 4-axis machining. The cutter moves to parallel direction of the XY plane. To determine the cutter orientation efficiently, the' tilting guiding line' is proposed. A proposed algorithm is written in C language and successfully applied to the 5-axis milling machine of industrial field.

Machining Speed Enhancement for 5-Axis Milling by Step Length Optimization (보간 길이 최적화에 의한 5축밀링 가공속도 향상)

  • So, B.S.;Jung, Y.H.
    • Korean Journal of Computational Design and Engineering
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    • v.11 no.6
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    • pp.422-428
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    • 2006
  • In this paper, an NC data optimization approach for enhancing 5-axis machining speed is presented. It is usual to use expensive commercial CAD/CAM programs for NC data of 5-axis machining, since it needs very large calculations for optimal tool positioning and orientation, tool path planning, and collision-free tool path generation. Since commercial CAD/CAM systems have similar functions and efficiency based on common algorithms of reliable theories, they do not have their own unique features for machining speed and efficiency. In other words, most commercial CAD/CAM systems consider only the characteristics of part geometry to be machined, which means that they generate almost the same NC data if the part to be machined is the same, even though different machines are used for the pin. A new approach is proposed for optimizing NC data of 5-axis machining, which is based on the characteristics of the machine to be operated. As a result, the speed of 5-axis machining can increase without losing machining accuracy and surface quality.

A 5-Axis NC Machining Strategy Support System for an Impeller (임펠러 5축 NC가공을 위한 가공전략수립 지원시스템)

  • Cho, Min-Ho;Kim, Dong-Won;Heo, Eun-Young;Lee, Chan-Gi
    • IE interfaces
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    • v.21 no.4
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    • pp.411-417
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    • 2008
  • An impeller is a type of high-speed rotor that is used to compress or transfer fluid under high-speed and pressure at high temperatures. The impeller is composed of an axial hub and several blades attached along the hub. The weight and shape of an impeller must be balanced, because their imbalances can cause noise and vibration, which can lead to the breakage of the impeller blades during operation. Thus, the hub and blades of an impeller are commonly machined in a 5-axis NC machine to obtain qualified surfaces. The impeller machining strategy or process plan can not be easily obtained due to the complex, overlapped and twisted shapes of impeller blades. Skillful machining process planners may generate appropriate machining strategies based on their experiences and floor data. However, in practice most shop floor data for the impeller machining is not well-structured such that it does not effectively provide a process planner with information for machining strategies and/or process plans. This paper reports the development of a case-based machining strategy support system (CBMS) that employs case-based reasoning to obtain the machining strategy of an impeller by using the existing machining strategies of the shop floor. The CBMS generates impeller machining strategies through a stepwise reasoning process considering the similarity features between the blade shapes and machining regions. A case study is provided to demonstrate that CBMS can generate useful machining strategies facilitating process planners. The developed system can simulate the tool paths of impeller machining and runs on the web.

주축 및 Z축 모터의 전류 정보를 이용한 드릴공구 마멸상태의 검출

  • 김화영
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1993.04b
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    • pp.294-299
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    • 1993
  • 고도로 자동화가 진전된 생산 시스템에서의 가공은 NC 공작기계, 머시닝 센터등에 의해 이루어지고 있으나, 작업 상태에 대한 감시 및 공구교환 시점의 결정은 작업자에 의해 행해지고 있으므로, 무인화에 큰 장애가 되고 있다. 최근 머시닝센터 를 중심으로 가공이 많이 이루어지고 있는 실정에서, 머시닝센터 전체 작업중 대략 40% 정도를 차지하는 드릴 작업에서 공구 상태에 대한 감시는 가공 무인화를 위해서는 필수적이다. 본 연구에서는 드릴가공시 주축 및 Z축 모터전류와 공구마멸과의 정성적 및 정량적 관련성을 조사하기 위해 전류의 진폭영역 정보인 평균, 분산, 왜도(skewness), 첨도(kurtosis)등의 신호처리를 행하여, 이들값이 공구마멸이 진행됨에따라 변화하는 특성을 조사하였다.

An integrated process planning, die design and working system for blaking and bending of sheet metal product (박판제품의 블랭킹 및 굽힘 가공을 위한 통합적 공정 및 금형설계와 가공시스템)

  • Kim, J.H.;Choi, J.C.;Kim, C.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 1998.03a
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    • pp.155-159
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    • 1998
  • This paper describes a research work of developing a computer-aided design and manufacturing (CAD-CAM) of irregular shaped sheet metal product for blanking or piercing and bending operation. An approach to the system is based on the knowledge-based rules. Knowledge for the system is formulated form plasticity theories, experimental results and the empirical knowledge of field experts. This system has been written in AutoLIST on the AutoCAD and in customer tool kit on the SmartCAM with a personal computer and is composed of nine modules. the system is designed by considering several factors, such as material and thickness of product, complexities of blank geometry and punch profile, diameter and material of a wire, and availability of press. This system is capable of unfolding a formed sheet metal to give flat pattern and automatically account for the adjustment of bending allowances to match tooling requirements by checking dimensions and generating NC data automatically according to drawings of die-layout module. Results carried out in each module will provide efficiencies to the designer and the manufacture of blanking or piercing and bending die in this field.

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A Study on Stress and Deformation through Finite Element Analysis of 2NC Head Processing Controlling AC Axis during 5-Axis Cutting Machine Training in the 4th Industrial Revolution of Machine Tool System (공작기계의 4차 산업혁명에서 5축 절삭가공기 교육 중 AC축을 제어하는 2NC 헤드 가공상의 유한요소 해석으로 응력 및 변형에 관한 연구)

  • Lee, Ji Woong
    • Journal of Practical Engineering Education
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    • v.13 no.2
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    • pp.327-332
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    • 2021
  • Materials used for education include SM20C, Al6061, and acrylic. SM20C materials are used a lot in certification tests and functional competitions as carbon steel, but they are also used in industrial sites. Al6061 is said to be a material that produces a lot of tools because it has lower hardness than carbon steel and is highly flexible. When practical guidance is given to students using acrylic materials, it is a material that causes vibration and tool damage due to excessive cutting. In this process, we examine how impact on the 5-axis equipment 2NC head can affect precision control. The weakest part of a five-axis equipment is the head that controls the AC axis. In the event of precision and cumulative tolerances in this area, the precision of all products is reduced. Thus, a key part of the 2NC head, the spindle housing was carried out using Al7075 T6 (U.S. Alcoasa) material and the entire body using FCD450 (spherical graphite cast iron). In the vibration and cutting process acting on these two materials, the analysis was carried out to determine the value of applying the force as a finite element analysis under extreme conditions. We hope that using these analytical data will help students see and understand the structure of 5-axis machining rather than 5-axis cutting.

Research for the 5 axis machining simulation system with Octree Algorithm (옥트리에 기반한 5 축 가공 시뮬레이션을 위한 연구)

  • Kim Y.H.;Ko S.L.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.956-959
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    • 2005
  • The overall goal of this thesis is to develop a new algorithm based on the octree model for geometric and mechanistic milling operation at the same time. Most commercial machining simulators are based on the Z map model, which has several limitations in terms of achieving a high level of precision in five-axis machining simulation. Octree representation being a three-dimensional (3D) decomposition method, an octree-based algorithm is expected to be able to overcome such limitations. With the octree model, storage requirement is reduced. Moreover, recursive subdivision is processed in the boundaries, which reduces useless computations. To achieve a high level of accuracy, fast computation time and less memory consumption, the advanced octree model is suggested. By adopting the supersampling technique of computer graphics, the accuracy can be significantly improved at approximately equal computation time. The proposed algorithm can verify the NC machining process and estimate the material removal volume at the same time.

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Preparation and Dyeability of Reactive Dyes Fixable at Neutral pH (중성욕 고착형 반응성 염료의 제조 및 그의 염색성)

  • Choi, Chang Nam;Lee, Young Mi;Lee, Woong Eui
    • Textile Coloration and Finishing
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    • v.9 no.3
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    • pp.42-49
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    • 1997
  • In order to study the dyeability of reactive dyes fixable at neutral pH, three reactive dyes(DYE-NC, DYE-PC, and DYE-LC) were prepared by the reaction of Cibacron Brilliant Red 3B-A with nicotinic acid, pyridine, and lutidine, respectively. FT-IR and UV/Vis spectrophometry were used to identify the dyes prepared. While the maximum absorption wavelength (&{\lambda}_{max}&) of Cibacron Brilliant Red 3B-A was 515nm, the &{\lambda}_{max}& of DYE-NC, DYE-PC, and DYE-LC were 522nm, 525nm, and 536nm, respectively. The &{\lambda}_{max}& was shifted to the longer wavelength by introducing the electron donating groups to the pyridine ring of Cibacron Brilliant Red 3B-A. All of the reactive dyes synthesized showed good exhaustion and fixation property to cotton fabric at higher temperature and neutral pH condition. It was regarded that the quaternary pyridinium ion functionated as the leaving group instead of the chloride ion. Among them, DYE-NC showed the best dyeability at the above condition. It was considered that the electron withdrawing carboxylic acid group in nicotinic acid enhanced the cationic property of nitrogn in pyridine ring, resulting the good reactivity with OH group in cellulose.

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The Postprocessor Technology of for 5-axis Control Machining (5축가공을 위한 포스트프로세서 기술)

  • Jung, Hyoun-Chul;Hwang, Jong-Dae;Kim, Sang-Myung;Jung, Yoon-Gyo
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.10 no.2
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    • pp.9-15
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    • 2011
  • In order to develop a practical postprocessor for 5-axis machining, the general equations of numerically controlled (NC) data for 5-axis configurations with not only non-orthogonal rotary axes but also orthogonal rotary axes were exactly expressed by the inverse kinematics, and a Windows-based postprocessor written in Visual Basic was developed according to the proposed algorithm. The developed postprocessor is a general system that suitable for all kinds of 5-axis machine tool with orthogonal and non-orthogonal rotary axes. Through implementation of the developed postprocessor and verification by a cutting simulation and machining experiment, the effectiveness of the proposed algorithm is confirmed. Compatibility is improved by allowing exchange of data formats such as rotational tool center position (RTCP) controlled NC data, vector post NC data, and program object file (POF) cutter location (CL)data, and convenience is increased by adding the function of work-piece origin offset. Consequently, the technology of practical post-processor for 5-axis machining is developed.

산업용로보트 : 개요 및 동향

  • 곽병만
    • Journal of the KSME
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    • v.20 no.2
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    • pp.102-114
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    • 1980
  • 산업용로보트는 융통성을 가지는 것이 특징으로 전용 기계에서는 최소한의 융통성이 있을 뿐 다른 일을 수행하기 위해서는 설계를 바꾸든지 못쓰게 되는 것과는 달리 간단히 프로그램이나 티 칭(Teaching)에 의하여 다양한 일을 목적에 맞게 수행 할 수 있다. 손과 같이 다축 운동이 가 능하여 기계 가공의 목적만을 수행하는 수치 제어 기계(NC 공작 기계)와는 다르며 NC 기계와 같은 일도 물론 일부 수행 할 수 있다. 그러므로 산업용 로보트의 이용으로 자동화, 성력화에 따라서 생산성 향상과 또한 높은 신뢰도와 정도로써 품질의 균일화, 악조건하에서의 작업이나 반복되는 단순 작업으로부터 인간을 해방 시킬 수 있으며, 더 나아가 공장의 무인화의 접근이 가능하게 되어가고 있다. 본 글에서는 로보트의 간략한 역사, 개요, 현황, 비용과 경제성, 앞으 로의 동향등에 관하여 개괄하고자 한다.

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