• Title/Summary/Keyword: 몰드플로우

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Plastic Flow Prediction of Automobile Door-Handle Using Injection Molding Simulation Programs (플라스틱 유동해석 프로그램을 이용한 자동차 도어 핸들의 유동예측)

  • 한성렬;강철민;유호종;정영득
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.295-298
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    • 2004
  • Automobile door-handle is assembled with three parts that are base, skin and cover. Over-molding processing makes assembly of the base and skin. The skin part that was made by PVC polymer has various thickness. Plastic injection molding simulation of part including significant changed thickness as skin is an inaccuracy comparing with real injection molding. To solve this problem, two commercial flow prediction software that are Moldflow MPI and MAPS 3D were used in this study. Simulations were conducted for three types mesh. Taguchi method was applied for simulation experiments. It will be need to compare with simulation results and real over-molding behavior in the near future.

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A Study of Brightness and Residual Stresses Depending on Thickness of LCD Light Guide Plate (LCD 도광판 두께에 따른 휘도 및 잔류응력에 관한 연구)

  • Lee, Joong-Won;Park, Myung-Kyun;Kim, Jung-Hoon
    • Journal of the Korean Society for Precision Engineering
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    • v.25 no.9
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    • pp.38-44
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    • 2008
  • Light guide plate is one of most important components which are composed of back light unit, affecting the quality and performance of LCD. Average brightness and uniformity are especially key factors for designing the light guide unit. These qualities are affected and controlled by the pattern being attached to the back of light guide unit. In order to obtain high brightness and uniformity the optimized pattern design is adopted for LGP. In this study, optimized molding condition for LGP with 0.4 mm thickness was obtained by using the Moldflow simulation software and the optimized pattern for better brightness uniformity was designed for the thickness of the 0.4 mm by trial and error method. The brightness was measured for the different LGP thicknesses and the residual stress analysis was performed for 0.4 mmthickness by the photoelasticity and the results are compared with 0.5 mm, 0.6 mm thickness.

A Study of Gas-Assisted Injection Molding of 17" Flat Monitor Front Cover (17" 평면 모니터 Front Cover의 가스사출성형에 관한 연구)

  • Kim, Hong-Seok;Son, Jung-Sik;Seo, Tae-Soo
    • Proceedings of the KSME Conference
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    • 2001.11a
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    • pp.766-771
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    • 2001
  • Gas-assisted injection molding is an innovative low-pressure injection molding technique that can provide numerous benefits such as reduced part warpage, excellent surface quality without sink marks, low injection pressure, and greater design flexibility. However, the adoption of gas-assisted injection molding may cause unexpected defects if the gas channel design is not conducted properly. The objective of this paper is to broaden the understanding of gas-assisted injection molding by summarizing the design procedures and experimental results of the gas-assisted injection molding of a 17" flat monitor front cover. The gas channels were designed by using Moldflow(MF/GAS) simulations and a 450 ton injection molding machine with a 5 stage pressure control gas kit was used in the experiments.

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Shoemoulds Runner Shape Optimization using MoldFlow (MoldFlow를 이용한 신발 사출금형 러너부 형상 최적화)

  • 류미라;서영백;문병주;박흥식
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.1483-1486
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    • 2003
  • Injection mold is a manufacturing process used to produce the various parts of complicated shape at a low cost. Many factors such as, section shape, resin and mold temperature, filling time, etc, affect on the quality of injection part during injection molding process. The precent study, was carried out the shrinkage analysis of shoes injection mold to optimize runner shape based on filling and packing pressure with MoldFlow. Taguchi design and analysis of variance are used to optimize injection mold design.

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Optimization of an Electron Microwave Oven Window Injection Mold Using Kriging Based Approximation Model (크리깅을 이용한 전자 오븐 윈도우 부품용 사출금형의 최적설계)

  • Ryu M. R.;Lee K. H.;Kim Y. H.;Park H. S.
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.7 s.172
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    • pp.177-184
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    • 2005
  • Recently, the engineering designer of injection mould has become more and more dependent on the CAE. In the design factors of injection mould, the shrinkage rate should be considered as one of the important performances to produce the reliable products. therefore the shrinkage rate can be mostly calculated by the MoldFlow and Pro-engineering. in the design process. However it is not easy to predict the shrinkage rate of a plastic injection mold in its design process because the analysis can take minutes to hours, the high computational costs of performing the analysis limit their use in design optimization. In this study, the surrogate models, DACE model, based on the Kriging in order to optimize the shrinkage rate of electric microwave oven window is used in lieu of the original models, facilitating design optimization.

일체형 샌달용 자동화 MOLD의 게이트 형상 최적화

  • 류미라;이권희;박흥식
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.82-82
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    • 2004
  • 우리나라는 신발 생산 특히 부품소재 부분에서 세계적인 경쟁력을 갖추고 있는 것으로 평가되고 있으며, 이 중 E.V.A midsole은 가볍고 충격흡수성 등과 같은 특성이 매우 우수하여 샌달의 midsole 부품으로 널리 사용되고 있지만 현재의 midsole 제조방식은 생산성의 한계에 직면하고 있다. 즉, 패턴 갑피(upper)와 Phylon mold를 각각 생산한 후 별도의 공정에서 두 제품을 접착하여 샌달을 만들기 때문에 두 제품을 따로 생산하므로 현재와 같은 방식의 제조에 의한 기존 방식의 샌달은 제작비용의 증가 및 생산성 저하 등의 여러 가지 문제점을 가지고 있어 보다 새로운 일체형 자동화 사출 mold에 의한 샌달 제조방식의 필요성이 절실한 실정에 있다.(중략)

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A Study on Implementation of Al-Inserted Plastic Injection Molding Process for Automobile Interior-Parts (자동차부품용 알루미늄인서트 사출성형공정 구현에 관한 연구)

  • Lho, Tae-Jung;Kim, Kyung-Soo
    • Journal of the Korean Society for Precision Engineering
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    • v.25 no.5
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    • pp.43-51
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    • 2008
  • Generally a plastic injection molding is a manufacturing process used to produce the various parts of complicated shape at low cost. The objective of this study is to implement a new plastic injection molding process with inserted Aluminum sheet, which is highly durable, light and luminous. Moldflow analysis and simulation of plastic injection molding process with inserted Aluminum sheet were carried out in order to predict optimal molding operation conditions. The experimental results in the Al-inserted plastic injection molding process were compared with the simulation results by Moldflow. Durability and reliability test results for trial products were satisfied to adopt the Al-inserted plastic injection molding process developed as manufacturing of automobile interior parts.

Flow and Cure Simulation of resin transfer molding process for composites using MoldFlow (복합재료 수지 전달 공정의 몰드플로우를 이용한 유동과 경화 시뮬레이션)

  • Jung, Jae-Sung;Hong, Ji-Seon;Kim, Sun-Kyoung
    • Design & Manufacturing
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    • v.16 no.3
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    • pp.44-49
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    • 2022
  • In this study, the simulation of the resin transfer molding process method using MoldFlow has been investigated. This work explains the thermoset material model, fabric permeability model, the flow model and the cure model. It has been shown that the simulation result can predict filling and cure performances.

A Study on the Filling Imbalance in a Geometrically Balanced Injection Mold (기하학적 균형을 갖춘 금형에서 발생하는 성형품의 충전 불균형에 관한 연구)

  • 구양;김병탁;정영득;한성렬;한규택
    • Journal of Advanced Marine Engineering and Technology
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    • v.28 no.6
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    • pp.931-937
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    • 2004
  • Simultaneous filling is a goal in plastic injection mold that has multi cavities. The moldings which have not been filled at the same time have undesired faults such as dimension inaccuracy, residual stress, law mechanical strength, etc. The best way to simultaneous fill is to be injected in a geometrically balanced runner system. In a general processing, however, in balanced runner system mold, filling imbalance would be observed in cavities. These phenomena result from molten polymer's characteristics and circumstances in balanced runner. In this study, the degree of filling imbalance (DFI) was defined for showing rate of filling imbalance in geometrically balanced injection mold that has 8 cavities. Before the main experiment, an injection molding simulation was conducted to know a pattern of filling imbalance with Moldflow software. There were somewhat differences between results of experiment and simulation about the filling imbalance. The reason for the difference was that the software have not concerned about a situation in a real flow channel. It was also investigated how the injection speed affected on filling imbalance in the experiment.

Effect of Flow Pattern of Coolant for Injection Mold on the Deformation of Injection Molding (사출금형 냉각수의 유동 패턴이 사출성형품의 변형에 미치는 영향)

  • Choi, Kye-Kwang;Hong, Seok-Moo;Han, Seong-Ryeol
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.14 no.4
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    • pp.92-99
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    • 2015
  • The deformation of injection molding is seriously affected by injection molding conditions, such as melt and mold temperature and injection and holding pressure. In these conditions, the mold temperature is controlled by flowing coolant, which can be classified by the Reynolds number in the mold-cooling channel. In this study, the deformation of the automotive side molding according to the variation of the Reynolds number in the coolant was simulated by Moldflow. In the results, as the Reynolds number was increased, the mold cooling was also increased. However, when the Reynolds number exceeded a certain range, the mold cooling was not increased further. In addition to the Moldflow verification, the mold cooling by the coolant was simulated by CFX. The CFX results confirmed that the Reynolds number significantly influenced the mold cooling. The coolant, which has a high Reynolds number value, quickly cooled the mold. However, the coolant, which has a low Reynolds number value, such as 0 points, hardly cooled the mold. In an injection molding experiment, as the Reynolds number was high, the deformation of the moldings was reduced. The declining tendency of the deformation was similar to the Moldflow results.