Pelin George, Sonmez Maria, Pelin Cristina-Elisabeta
INCAS-National Institute for Aerospace Research "Elie Carafoli", Bd. Iuliu Maniu 220, 061126 Bucharest, Romania.
INCDTP-ICPI-National Research and Development Institute for Textile and Leather-Division Leather and Footwear Research Institute, Ion Minulescu St. 93, 031215 Bucharest, Romania.
Polymers (Basel). 2024 Apr 11;16(8):1055. doi: 10.3390/polym16081055.
The continuous growth of additive manufacturing in worldwide industrial and research fields is driven by its main feature which allows the customization of items according to the customers' requirements and limitations. There is an expanding competitiveness in the product development sector as well as applicative research that serves special-use domains. Besides the direct use of additive manufacturing in the production of final products, 3D printing is a viable solution that can help manufacturers and researchers produce their support tooling devices (such as molds and dies) more efficiently, in terms of design complexity and flexibility, timeframe, costs, and material consumption reduction as well as functionality and quality enhancements. The compatibility of the features of 3D printing of molds with the requirements of low-volume production and individual-use customized items development makes this class of techniques extremely attractive to a multitude of areas. This review paper presents a synthesis of the use of 3D-printed polymeric molds in the main applications where molds exhibit a major role, from industrially oriented ones (injection, casting, thermoforming, vacuum forming, composite fabrication) to research or single-use oriented ones (tissue engineering, biomedicine, soft lithography), with an emphasis on the benefits of using 3D-printed polymeric molds, compared to traditional tooling.
增材制造在全球工业和研究领域的持续发展,是由其主要特性驱动的,该特性允许根据客户的需求和限制对产品进行定制。在产品开发领域以及服务于特殊用途领域的应用研究中,竞争也日益激烈。除了在最终产品生产中直接使用增材制造外,3D打印还是一种可行的解决方案,在设计复杂性和灵活性、时间框架、成本、降低材料消耗以及提高功能性和质量等方面,可帮助制造商和研究人员更高效地生产其支撑工装设备(如模具)。模具3D打印的特性与小批量生产和个性化定制产品开发需求的兼容性,使得这类技术在众多领域极具吸引力。本文综述了3D打印聚合物模具在主要应用中的使用情况,这些应用中模具发挥着重要作用,从工业导向型应用(注塑、铸造、热成型、真空成型、复合材料制造)到研究或一次性使用导向型应用(组织工程、生物医学、软光刻),并重点介绍了与传统工装相比,使用3D打印聚合物模具的优势。