Improved process moldability and part quality of short-glass–fiber-reinforced polypropylene via overflow short-shot water-assisted injection molding
Author:
Zhang Wei1ORCID, Kuang Tang-qing2, Liu He-sheng123, Lai Jia-mei1, Han Ji-kai4, Jiang Qing-song3ORCID, Wan Zhi-hui3
Affiliation:
1. Jiangxi Key Laboratory of High-Performance Precision Molding, Polymer Processing Research Laboratory, Nanchang University , Nanchang 330031 , China 2. School of Mechatronics and Vehicle Engineering, East China Jiao Tong University , Nanchang 330013 , China 3. School of Mechanical and Electronic Engineering, Jiangxi Province Key Laboratory of Polymer Micro/Nanomanufacturing and Devices, East China University of Technology , Nanchang 330013 , China 4. Qingdao Campus of Naval Aviation University , Qingdao 266041 , China
Abstract
Abstract
Water-assisted injection molding (WAIM) is a promising molding process developed based on conventional injection molding (CIM). It has been a research hotspot in recent years and is still receiving extensive attention from many scholars and industries because of its significant potential advantages in practical applications. However, compared with CIM, since the additional water-related parameters are involved, the process moldability of thermoplastics is significantly reduced, especially for fiber-reinforced thermoplastics, which stunts the development of WAIM process. In this work, short-shot WAIM with an overflow cavity (OSSWAIM) was developed to address the problems and broaden the application scope of WAIMs. The results showed that compared with overflow WAIM (OWAIM) and short-shot WAIM (SSWAIM), OSSWAIM could significantly improve the process moldability and part quality of fiber-reinforced thermoplastics, especially for thermoplastic composites with a high fiber weight fraction. Besides, it was also found that water penetration had a slight influence on the fiber orientation near the water inlet, but had a significant influence on the fiber orientation near the end of mold cavity. Finally, three processing parameters affecting the water penetration, i.e., water pressure, melt temperature, and water injection delay time were investigated in terms of their influences on the fiber orientation within OSSWAIM.
Publisher
Walter de Gruyter GmbH
Subject
Materials Chemistry,Polymers and Plastics,General Chemical Engineering
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