• Title/Summary/Keyword: Die & Mold Design Engineering

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A multi-field CAE analysis for die turning injection application of reservoir fluid tank (리저버 탱크의 Die Turning Injection 적용을 위한 Multi-field CAE 해석)

  • Lee, Sung-Hee
    • Design & Manufacturing
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    • v.15 no.1
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    • pp.66-71
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    • 2021
  • In this study, die turning injection(DTI) mold design for manufacturing reservoir fluid tanks used for cooling in-vehicle batteries, inverters, and motors was conducted based on multi-field CAE. Part design, performance evaluation, and mold design of the reservoir fluid tank was performed. The frequency response characteristics through modal and harmonic response analysis to satisfy the automotive performance test items for the designed part were examined. Analysis of re-melting characteristics and structural analysis of the driving part for designing the rotating die of the DTI mold were performed. Part design was possible when the natural frequency performance value of 32Hz or higher was satisfied through finite element analysis, and the temperature distribution and deformation characteristics of the part after injection molding were found through the first injection molding analysis. In addition, it can be seen that the temperature change of the primary part greatly influences the re-melting characteristics during the secondary injection. The minimum force for driving the turning die of the designed mold was calculated through structural analysis. Hydraulic system design was possible. Finally, a precise and efficient DTI mold design for the reservoir fluid tank was possible through presented multi-field CAE process.

A study on the defects of die casting mold for air-motor housings and on problem-solving measures (에어모터 하우징 양산용 다이캐스팅 금형의 불량과 대책에 관한 연구)

  • Kim, Sei-hwan;Choi, Kye-kwang
    • Design & Manufacturing
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    • v.6 no.1
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    • pp.18-23
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    • 2012
  • HI-WORTH T-32, a non-powered plasma cutter, is a portable cutter that utilizes compressor-plasma inverter. With a special air-pressure piston, the cutter is semiautomatic. When they were produced by die casting dies, the bodies or housings of the cutter have defects about 100 percent of defect rate due to blisters and thermal deformation. Therefore, they are produced by mechanical machining, which leads to a hike in material and machining costs and to the loss of productivity. And companies are left with insignificant profit margins. Besides mechanical machining, this study proposes to modify defective mold and cut down defective rate and boost productivity.

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Influence of shaving allowance and clearance in pre-shearing process for improving shaving accuracy (셰이빙 정밀도 향상을 위한 예비전단 가공에서의 가공여유와 틈새의 영향)

  • Oh, Sol-Kil;Jo, Dae-il;Kang, Byung-Du;Kim, Jong-Ho
    • Design & Manufacturing
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    • v.2 no.3
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    • pp.40-44
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    • 2008
  • Shaving in sheet metal forming is defined as a finish process to make the sheared surface clean which was blanked or pierced in the previous shearing stage. In this study the new shaving technique is applied to the progressive operation. The specimen is automatically fed by continuous movement of the strip. Which improve the positioning accuracy higher. For this study a square part which consist of blanking and piercing is selected for investigation and the progressive die which includes pre-piercing, pierce-shaving, half-blanking and blank-shaving etc is prepared for specimens of steel sheet(SPCC) and aluminum alloy sheet(AL5052). Experiments are carried out for several working variables such as shaving allowance, pre-shearing clearance and relative half-blanking depth. Consequently it was confirmed that the shaving by progressive die can be successfully employed to produce the clean parts requiring shaving process and optimum working conditions for shaving SPCC and AL5052 sheet metal are shaving allowance of 0.2mm(1.3% of thickness) and pre-shearing clearance of 5%.

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A study on pencil-core dies and die manufacture (펜슬코어 금형의 설계 및 제작에 관한 연구)

  • Kim, Sei-hwan;Choi, Kye-kwang
    • Design & Manufacturing
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    • v.7 no.1
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    • pp.7-10
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    • 2013
  • Pencil-core dies are relatively new technology in Korea. It is not that no one had tried to make them but had failed due to lack of technologies. However, Posco TMC Co., Ltd, one of the leading die makers in the world, is capable of sophisticated dies including pencil-core dies. Spark plugs made by pencil-core dies have energy efficiency close to 100 percent, which compares to 46 percent of conventional spark plugs. Even though they are now mostly installed in LPG automobiles, more and more diesel and gasoline vehicles are adopting them. This study focuses on how to improve core shape precision using controling design and parts machining methods for pencil-core dies and productivity.

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A study on material selection for semiconductor die parts and on their modification and manufacture (반도체금형에서 부속부품의 재료선정 및 개선과 제작에 관한 연구)

  • Kim, Sei-hwan;Choi, Kye-kwang
    • Design & Manufacturing
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    • v.8 no.1
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    • pp.27-30
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    • 2014
  • Alloy tool steel such as SKD11 and SKD61 or high speed tool like SKH51 are used as materials for semiconductor dies. Cavities, curl blocks, pot blocks and housings are made from those materials. To make those parts from alloy tool steel or high speed tool, one utilizes discharge machining, and mechanical machining including machining center, milling, drilling, forming grinding and others. In the process of cutting machining and polishing, the die materials become unsuitable for machining owing to bubbles and foreign substances in them, which hinders production process. Therefore, this study focuses on die material selection criteria, and on analysis and comparison of material characteristics to help companies to solve their problems, make die manufacture less burdensome and extend die life.

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Reverse engineering of concentric plug cover by 3D scanning and development of injection mold (3D 스캔을 이용한 콘센트 커버의 역설계 및 금형 개발)

  • Kim, Dong-Wook;Choi, Young-Rock;Shin, Sang-Eun;Kim, Sei-Hwan;Choi, Kyu-Kwang;Han, Seong-Ryeol
    • Design & Manufacturing
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    • v.9 no.1
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    • pp.18-22
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    • 2015
  • Mold making and product manufacturing process was made by a die through a number of stages. Thereby, it takes a long period of time from the manufacture of mold until passed the products to consumers. However, it is not possible to meet the diverse desires purchasing of consumer. We made a 3D CAD Model aligned with product scan data using reverse engineering. Utilizing thereafter flow analysis to derive the optimal mold conditions, by applying the condition, and devised a mold fabrication process that is much shorter than the conventional process for fabricating a mold. In this study, the outlet cover to the product, it describes a process, as a result, it was confirmed that the number of steps can be shortened much more than the conventional process.

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A study on the analysis of terminal die and progressive die manufacture (단자 금형의 해석 및 프로그레시브 금형제작에 관한 연구)

  • Kim, Dong-Wook;Choi, Young-Rock;Kim, Sei-Hwan;Choi, Kyu-Kwang
    • Design & Manufacturing
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    • v.9 no.3
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    • pp.41-44
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    • 2015
  • The progressive die is processing methods that can improve the productivity for sequentially transferring while continuously producing in multiple processes. In this study was carried out the die analysis through the load analysis acting on the terminal die and sheet metal forming also the study was carried out with respect to optimized die design for the terminal die and progressive die manufacturing using the CimatronE Die Design.

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A study on the size of product shear surface in shearing process (전단 가공에서 제품 전단면의 크기에 변화에 관한 연구)

  • Son, Jong-Min;Lee, Hui-Ju;Cho, Gi-Heum;Shin, Seong-Eun;Kim, Sei-Whan;Lee, Chun-Kyu
    • Design & Manufacturing
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    • v.11 no.1
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    • pp.26-29
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    • 2017
  • Burrs generated during shear forming such as notching and piercing may cause lifting during product assembly, which may deteriorate the productivity and quality of products. In this study, various shear angles and variable clearances between the punch and the die were applied in experimental notching tests to investigate the shear fracture surface and the burr height due to various conditions. The experimental results show that the clearance has the greatest effect on shear and fracture surfaces. It is considered that the height of the shear section increases slightly as the shear angle increases.

A Study on injection mold shrinkage estimates (사출 금형 수축률 산정에 관한 연구)

  • Choi, Gwang-Hyeck;Han, Seong-Ryeol;Lee, Chun-Kyu
    • Design & Manufacturing
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    • v.10 no.3
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    • pp.30-33
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    • 2016
  • It is true that the plastic shrinkage is inevitable. Shrinkage rate in effect at the time of mold design will soon determine the size of the global product. Process for the shrinkage of the plastic that provides how made, yet it has identified a process for making the question whether the shrinkage that can be trusted, and by the experimental results were as follows: as shrinkage, see ISO but, according to circumstances the process can go to the agreement between the parties. shrinkage ratio of the pressure sensor installed in the specimen mold is essential, amount of pressure sensor is that it is appropriate approximately 2-3. proper holding pressure is a significant effect on shrinkage Mitch, so that the effect of selecting the contraction ratio data according to the appropriate holding pressure during mold making. shrinkage CAE analysis results are difficult to utilize in the mold-making chamber. Based on these results, it concluded by looking forward to the improved products produced shrinkage.

A Study on the Wall Thickness Design for Injection Molding (사출 금형의 벽두께 설계 방법의 고찰)

  • Hwang, S.J.;Lyu, M.Y.;Kim, D.W.;Kim, S.Y.;Shin, K.S.;Kim, K.Y.
    • 한국금형공학회:학술대회논문집
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    • 2008.06a
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    • pp.149-153
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    • 2008
  • The cavity of mold is exposed to high pressure during injection molding operation. Injection molded articles with deep depth are often demanded as design variety increases. Mold becomes weak and deformation increases as the mold depth increases. Thus the injection molds for deep depth articles should be designed to hold out high pressure or stress and large deformation. Through this study, equation for mold design was examined and suggested novel method to determine equation for mold design with deep depth. Novel equation developed in this study was consisted with cantilever and two points bending while previous equation was modified from just cantilever bending. The validity of novel equation was verified through computer simulation.

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