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加工条件对碳纤维增强热塑性片材热冷混合注塑成型技术中表面缺陷产生的影响以及远红外辐射加热的合适模具的开发

Influence of Processing Conditions on the Generation of Surface Defects in a Heat-and-Cool Hybrid Injection Molding Technique for Carbon Fiber-Reinforced Thermoplastic Sheets and Development of a Suitable Mold Heated by Far-Infrared Radiation.

作者信息

Murata Yasuhiko, Machiya Ryunosuke, Komori Takuma

机构信息

Department of Mechanical Engineering, Faculty of Fundamental Engineering, Nippon Institute of Technology, 4-1 Gakuendai, Miyashiro-machi, Minamisaitama-gun, Saitama 345-8501, Japan.

Mechanical Systems Engineering Major, Graduate School Nippon Institute of Technology, 4-1 Gakuendai, Miyashiro-machi, Minamisaitama-gun, Saitama 345-8501, Japan.

出版信息

Polymers (Basel). 2023 Nov 16;15(22):4437. doi: 10.3390/polym15224437.

Abstract

Recently, hybrid injection molding-a type of overmolding technology in which a short carbon fiber-reinforced thermoplastic is injection molded over a compression-molded carbon fiber-reinforced thermoplastic (CFRTP) sheet-has been introduced. A heat-and-cool hybrid injection molding technique has also been introduced for practical use. The technique yields high-quality molded products. This is achieved through the heating of the mold cavity surface to a temperature higher than the melting point of the base polymer impregnated into the carbon fiber fabric. However, few experimental analyses of the molding phenomena in heat-and-cool hybrid injection molding have been reported. In particular, the effect of the processing conditions on the transfer of the mold cavity surface shape to the CFRTP sheet has not been clarified in detail. Therefore, it has been impossible to take extensive measures when defects are generated in molded products. In this study, a mold is designed and fabricated for use with far-infrared radiation heating, a variotherm technology that is suitable for the experimental analysis of the heat-and-cool hybrid injection molding phenomenon. In particular, a mold is designed and fabricated to continuously perform the following three processes using only an injection molding machine: (1) the radiation heating of both the CFRTP sheet and the mold cavity surface using a far-infrared radiation heater, (2) the compression molding of the CFRTP sheet, and (3) the injection molding of the melt. The effects of the heating conditions of the mold and the injection molding process conditions on the appearance characteristics of the molded products are clarified using this mold and a far-infrared radiation heater.

摘要

最近,引入了混合注射成型技术——一种包覆成型技术,其中短碳纤维增强热塑性塑料被注射成型在压缩成型的碳纤维增强热塑性塑料(CFRTP)片材上。一种热冷混合注射成型技术也已投入实际应用。该技术能生产出高质量的成型产品。这是通过将模腔表面加热到高于浸渍在碳纤维织物中的基础聚合物熔点的温度来实现的。然而,关于热冷混合注射成型中成型现象的实验分析报道很少。特别是,加工条件对模腔表面形状转移到CFRTP片材上的影响尚未详细阐明。因此,当成型产品出现缺陷时,无法采取广泛的措施。在本研究中,设计并制造了一种用于远红外辐射加热的模具,远红外辐射加热是一种适合热冷混合注射成型现象实验分析的变温技术。特别是,设计并制造了一种模具,仅使用注塑机就能连续执行以下三个过程:(1)使用远红外辐射加热器对CFRTP片材和模腔表面进行辐射加热,(2)对CFRTP片材进行压缩成型,(3)对熔体进行注射成型。利用该模具和远红外辐射加热器,阐明了模具加热条件和注射成型工艺条件对成型产品外观特性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9f9/10675431/3c386dce1f6a/polymers-15-04437-g001.jpg

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