• 제목/요약/키워드: Gear Cavity

검색결과 14건 처리시간 0.026초

PIM기술을 이용한 마이크로 부품 성형기술 (Manufacturing technology of micro parts by powder injection molding)

  • 이원식;고세현;장진만;김일호
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.60-63
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    • 2009
  • Manufacturing technologies of micro spur gear and micro mold by micro PIM were studied with stainless steel feedstock. For molding of gears, micro mold with gear cavity of 1.2 mm in diameter was produced by wire EDM. The proper injection pressure was selected to 70bar by observation and measuring of shapes and shrinkage of gears before/after sintering. For fabrication of micro mold, a tiny polymer gear was produced by injection into the mold. Then, 316L feedstock was again injected/compressed on the polymer gear and debinded together with polymer gear followed by sintering. As a result, another metal mold with gear cavity reduced to about 20% was fabricated and through repetition of this process chain, micro gear mold with cavity about below 800 um was finally obtained. In reduction of size by injection/compression molding, height of gear tooth was shrunk more and the effort for decrease of roughness of micro cavity were carried out ultrasonic polishing and as a result, the roughness in cavity decreased from 3-4 um to about 200 nm.

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Cavity Design Method for Injection-Molded Spur Gears

  • Kim, Choong-Hyun;Lee, Sung-Chul;Ahn, Hyo-Sok;Chong, Tae-Hyong
    • Journal of Mechanical Science and Technology
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    • 제14권1호
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    • pp.65-71
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    • 2000
  • Mold cavities of gears should be made larger than the product specification since plastics shrink when changing from a molten to a solid state. For injection molded spur gears, two design methods for the compensation of shrinkage are widely used. One is the module correction method and the other is the pressure angle correction method. Both methods are based on the assumption that shrinkage occurs toward the center of a molded gear. This paper deals with the shrinkage rate and proposes a method of designing gear cavity derived from the measured shrinkage rates which govern the outside diameter, the tooth depth and the tooth thickness of a molded gear. The proposed method imposes no restriction on the shrinkage direction and provides a cavity with all of the fundamental gear design parameters.

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멀티 캐비티 실린더 기어 개발 (The Development of Multi-Cavity Cylindrical Gear)

  • 이정익
    • 한국산학기술학회논문지
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    • 제11권5호
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    • pp.1552-1557
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    • 2010
  • 파워 윈도우 모터 조립부위에서 실린더 기어는 자동차 도어에서 중요한 부분이다. 이 연구는 대량 수입과 6 캐비티 금형 설계를 대체할 자체 제작 기술력 확보를 위해 수행되었다. 이 연구는 5가지 구체적 주제를 두고 작성되었다. 첫째, CAE를 이용해 시작품을 제작하고, 대량생산 제작을 위해 사전에 해석한다. 둘째, 대량생산 금형(2차원 및 3차원)을 설계한다. 셋째, 샘플 금형을 제작한다. 넷째, 3차원 설계제품을 시제작 후 측정한다. 다섯째, 데이터를 해석하고 금형을 수정한다. 이들 연구를 수행하면서 CAE를 사용한 제품샘플과 대량생산의 해석과 다수 캐비티의 샘플 금형의 제작의 연구가 성공적으로 수행되었다. 결과적으로, 핫런너를 사용하는 일점 게이트 및 6 캐비티가 파워 윈도우 모터 용 실린더 기어를 만드는데 가장 적합한 방법임을 알게 되었다.

설계인자 보정방법에 의한 사출성형기어의 캐비티 설계 (Cavity Design for Injection Molded Gears by the Compensation Method of Design Parameters)

  • 이성철;김충현;권오관;허용정
    • 대한기계학회논문집A
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    • 제20권10호
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    • pp.3142-3151
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    • 1996
  • As plastics shrink when changing from a molten to a solid state, mold cavities must by made larger than the product specification, In making molded gears, the teeth in the cavity must be carefully compensated for shrinkage so that the teeth of gears will have the correct profile. Two compensation methods are widely used in the cavity design. One is the compensation of a module and the other is the modification of a pressure angle and profile shifting coefficient. These methods, however, do not provide a gear cavity with all disign parameters for gears and several parameters are determined by experience. In this paper, the new design technique, namely the compensation method of design parameters, was proposed , which is based on the three kinds of shrinkage rates obtained from the measuring data of the prototype of molded gears. Using the shrinkage rates in the tip circle, tooth heigth and tooth thickness, we calculate the whole design parameters of a gear cavity. Thus, the gear cavity is considered as a complete gear with the compensated module, pressure angle, profile shifting coefficient, clearance coefficient and back lash amount so that the formula of gears can be applied to the cavity design effectively. Experimental results show that more precision molded gears can be made by using the proposed design method.

초정밀 Gear 미세 모듀율을 가진 2 Cavity 파인 블랭킹 시트 리클라이너 금형 제조기술에 관한 연구 (Study on the Manufacturing Technology of 2-Cavity Fine Blanking Seat Recliner Die with Minute Module of Accurate Gear)

  • 박동환;권혁홍
    • 한국기계가공학회지
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    • 제15권2호
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    • pp.22-30
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    • 2016
  • It is very important to obtain the net shape of the product to maximize the shear cutting surface of fine blanking. In this paper, the fine blanking die was manufactured to achieve part characteristics, such as flatness and a fully sheared surface. The V-ring in the fine blanking die was designed to prevent lateral movement of the material. The fine blanking experiment was conducted with the fine blanking die. The material usage rate was increased by over 5.7% and that of the water-soluble lubricant was decreased by over 33% when the 2-cavity die technology was applied to fine blanking. The capacity of the existing press could lead to productivity improvement and cost reduction. Thus, 2-cavity die technology for fine blanking with a minute module of an accurate gear for producing seat recliner parts was developed.

직사격형 공동에서 덮개 효과에 대한 수치적 연구 (Numerical Investigation of the Cover-Plates Effects on the Rectangular Open Cavity)

  • 허대녕;이덕주
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 춘계학술대회논문집
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    • pp.457-464
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    • 2001
  • The aeroacoustic phenomena in the simple rectangular open cavity are well published by many researchers. But the geometry shapes of aircraft landing gear wells, weapon bays, etc. are more complicate than that of the simple retangular cavity. They are more similar to the cavity having cover-plates at adges, or Helmholtz resonator. Therefore, the effects of cover-plates existing on edges of rectangular open cavity are numerically investigated in this paper. The compressible Navier-Stokes equations are solved for two-dimensional cavities with laminar boundary layers upstream. The high-order and high-resolution numerical schemes are used for the evaluation of spatial derivatives and the time integration. Physically correct numerical boundary conditions and buffer zone techniques are implemented to produce time-accurate solutions in the whole computation domain. The computational domain is large enough to directly resolve a portion of the radiated acoustic field. Results show that the cover-plates existing on edges of cavity reduce the noise convected from cavity, make the frequency of noise become higher, and change the directivity pattern. So these results can be used in the design of a low noise cavity.

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사출성형공정에 의한 엔지니어링 플라스틱 기어 개발 (Development of Engineering Plastic Gear Based on Injection Molding Process)

  • 민병헌
    • 한국정밀공학회지
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    • 제16권8호
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    • pp.71-78
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    • 1999
  • The application range of injection molded parts is expanding by the development of engineering plastics with good mechanical properties. Plastic gears are specially used as automotive parts due to an excellent performance in the characteristics of a strength vs. weight, and the study of injection molding process of plastic gear using Nylon66 is performed in this study. Filling, packing and cooling analyses were done by using the simulation software like Moldflow, and a mold was designed by following the simulation results. Pin-point gates with three points were taken to satisfy the design guides like a full-shot, and lower clamping force and uniform shrinkage. Characteristics of shrinkage of molded gear and temperature difference between cavity and core sides of a mold were shown.

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초미세발포 플라스틱 기어에 관한 연구 (I) - 초미세발포 플라스틱 기어의 공정설계 - (Injection Molded Microcellular Plastic Gear (I) - Process Design for the Microcellular Plastic Gear -)

  • 하영욱;정태형
    • 대한기계학회논문집A
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    • 제29권5호
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    • pp.647-654
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    • 2005
  • This research Proposes a Process design of injection molded microcellular plastic gears for enhancing the fatigue strength/durability and accuracy of the gears applying thermodynamic instability to microcellular foaming process. To develop the injection molded plastic gears by way of microceliular process, it is absolutely necessary the following two process design. The first is microcellular forming process for enhancing the strength/durability of plastic gears. To be microcellular process succeeded, based on the microcellular principle, mechanical apparatus is designed where nucleation and cell growth are to be generated renewably. The second is the counter pressure process which is mainly fur improving the tooth surface roughness and the accuracy of microcellular gears. For the former process, screw, nozzle and gas equipment are newly designed, and for the latter, counter pressure by nitrogen gas is intentionally brought about into mold cavity when injecting plastic gears. Based on the proposed process design, using gear mold, experiments of injection molding show that, in internal space of plastic gears, microcellular nuclear cells less than 5 lim in diameter have been generated homogeneously via electron microscope photos.

내측 기어 성형용 핫러너 금형에서의 충전불균형에 관한 연구 (A study on the filling imbalances in hot-runner mold for internal gear based on injection molding)

  • 노병수;제덕근;정영득
    • Design & Manufacturing
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    • 제2권3호
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    • pp.1-5
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    • 2008
  • Plastic parts are molded for the purpose of mass production in injection molding. Therefore designer is usually designing molds that has geometrically balanced hot runner lay-out for filling balance at cavities. Although, mold is manufactured with geometrically balanced runner lay-out, there are actually filling imbalances in cavities. These filling imbalances phenomenon are caused by complicated interaction between melt and mold. In this paper, filling imbalances for internal gear based on injection molding in hot-runner mold were investigated by CAE and injection molding experiences.

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TPE를 적용한 자동차 윈도우 모터커버의 개발 (Development of Automobile Windows Motor Cover by Thermoplastic Elastomer(TPE))

  • 조영태;고범용;이충호
    • 한국생산제조학회지
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    • 제19권6호
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    • pp.847-851
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    • 2010
  • It was attempted to develop an auto part by over molding injection mold that produces precision products in high productivity with use of an eco-friendly TPE substitute material for NBR. NBR is currently used in motor gear cover, one of the key parts in motor module for auto doors. Gear cover is composed of plastics and rubber mostly today, which requires a two (2) step process for production using two presses of different types. A hot press is used at this time for forming the rubber, which has drawback of requiring a rather long forming time of 400 seconds for one forming process. Even though this difficulty is overcome by reducing production time through employment of multi-cavity molds, time for forming process must be shortened for improvement of the productivity eventually, and the existing method of insert injection for products that have been formed with plastic material must be outgrown. In this point of view, over molding injection using TPE has a big advantage. Forming time is shortened to 54 seconds, and working the two (2) processes in series by one (1) press could solve the durability problem caused by deflection of the plastics, not to mention shortening the process time. Enhancement of productivity by almost 80% and improvement in the accuracy of the product could thus be achieved.