Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology

Rapid tooling technology (RTT) provides an alternative approach to quickly provide wax injection molds for the required products since it can reduce the time to market compared with conventional machining approaches. Removing conformal cooling channels (CCCs) is the key technology for manufacturing...

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Main Authors: Chil-Chyuan Kuo, Trong-Duc Nguyen, Yi-Jun Zhu, Shi-Xun Lin
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/12/3/311
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spelling doaj-82f55bce6f8948e7a3966bf2ea9f2cb52021-03-17T00:06:27ZengMDPI AGMicromachines2072-666X2021-03-011231131110.3390/mi12030311Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling TechnologyChil-Chyuan Kuo0Trong-Duc Nguyen1Yi-Jun Zhu2Shi-Xun Lin3Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, TaiwanDepartment of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, TaiwanDepartment of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, TaiwanDepartment of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, TaiwanRapid tooling technology (RTT) provides an alternative approach to quickly provide wax injection molds for the required products since it can reduce the time to market compared with conventional machining approaches. Removing conformal cooling channels (CCCs) is the key technology for manufacturing injection mold fabricated by rapid tooling technology. In this study, three different kinds of materials were used to fabricate CCCs embedded in the injection mold. This work explores a technology for rapid development of injection mold with high cooling performance. It was found that wax is the most suitable material for making CCCs. An innovative method for fabricating a large intermediary mold with both high load and supporting capacities for manufacturing a large rapid tooling using polyurethane foam was demonstrated. A trend equation for predicting the usage amount of polyurethane foam was proposed. The production cost savings of about 50% can be obtained. An optimum conformal cooling channel design obtained by simulation is proposed. Three injection molds with different cooling channels for injection molding were fabricated by RTT. Reductions in the cooling time by about 89% was obtained. The variation of the results between the experiment and the simulation was investigated and analyzed.https://www.mdpi.com/2072-666X/12/3/311conformal cooling channelsrapid tooling technologycooling time
collection DOAJ
language English
format Article
sources DOAJ
author Chil-Chyuan Kuo
Trong-Duc Nguyen
Yi-Jun Zhu
Shi-Xun Lin
spellingShingle Chil-Chyuan Kuo
Trong-Duc Nguyen
Yi-Jun Zhu
Shi-Xun Lin
Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
Micromachines
conformal cooling channels
rapid tooling technology
cooling time
author_facet Chil-Chyuan Kuo
Trong-Duc Nguyen
Yi-Jun Zhu
Shi-Xun Lin
author_sort Chil-Chyuan Kuo
title Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
title_short Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
title_full Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
title_fullStr Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
title_full_unstemmed Rapid Development of an Injection Mold with High Cooling Performance Using Molding Simulation and Rapid Tooling Technology
title_sort rapid development of an injection mold with high cooling performance using molding simulation and rapid tooling technology
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2021-03-01
description Rapid tooling technology (RTT) provides an alternative approach to quickly provide wax injection molds for the required products since it can reduce the time to market compared with conventional machining approaches. Removing conformal cooling channels (CCCs) is the key technology for manufacturing injection mold fabricated by rapid tooling technology. In this study, three different kinds of materials were used to fabricate CCCs embedded in the injection mold. This work explores a technology for rapid development of injection mold with high cooling performance. It was found that wax is the most suitable material for making CCCs. An innovative method for fabricating a large intermediary mold with both high load and supporting capacities for manufacturing a large rapid tooling using polyurethane foam was demonstrated. A trend equation for predicting the usage amount of polyurethane foam was proposed. The production cost savings of about 50% can be obtained. An optimum conformal cooling channel design obtained by simulation is proposed. Three injection molds with different cooling channels for injection molding were fabricated by RTT. Reductions in the cooling time by about 89% was obtained. The variation of the results between the experiment and the simulation was investigated and analyzed.
topic conformal cooling channels
rapid tooling technology
cooling time
url https://www.mdpi.com/2072-666X/12/3/311
work_keys_str_mv AT chilchyuankuo rapiddevelopmentofaninjectionmoldwithhighcoolingperformanceusingmoldingsimulationandrapidtoolingtechnology
AT trongducnguyen rapiddevelopmentofaninjectionmoldwithhighcoolingperformanceusingmoldingsimulationandrapidtoolingtechnology
AT yijunzhu rapiddevelopmentofaninjectionmoldwithhighcoolingperformanceusingmoldingsimulationandrapidtoolingtechnology
AT shixunlin rapiddevelopmentofaninjectionmoldwithhighcoolingperformanceusingmoldingsimulationandrapidtoolingtechnology
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