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Rapid fabrication of aluminum shoe mold using vacuum sealed casting process

机译:利用真空密封铸造工艺快速制造铝制鞋模

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摘要

Rapid prototyping and manufacturing (RP&M) is the most appropriate technology for the small-lot production system, because the production cycle is getting shorter owing to various needs of the consumer. Recently RP products, which are made of plastics, wax, and paper, were used to examine the design of samples. These samples, however, cannot be applied to the real mold because soft materials, such as plastics lack the necessary strength to be a mold. So the materials have been changed from RP products to a metal powder filled mold like an epoxy-metal powder composite mold or metal mold, which is called rapid tooling (RT) technology. In this paper, RT technology is applied to the casting process. The casting process has the ability to reflect complicated shapes in one process. But it has not been widely used to make a die and mold because of the poor surface quality caused by air bubbles on the surface of the casting product. In this study, the porous casting mold is fabricated from a mixture of ceramic powder and water-soluble binder. The porous casting mold can improve the characteristics of aluminum casting products with the help of the vacuum sealed casting process. The vacuum sealed casting process is an advanced technology that removes the air bubbles between the porous casting mold and the liquid metal, thus making the surface of the aluminum casting product finer. The purpose of this paper is to develop a high quality shoe mold using porous casting mold and to apply the RP&M technology to the shoe industry.
机译:快速原型制造(RP&M)是小批量生产系统最合适的技术,因为由于消费者的各种需求,生产周期越来越短。最近,由塑料,蜡和纸制成的RP产品用于检查样品的设计。但是,这些样品不能应用于真实的模具,因为诸如塑料之类的柔软材料缺乏作为模具所需的强度。因此,材料已经从RP产品更改为填充金属粉末的模具,例如环氧-金属粉末复合模具或金属模具,这被称为快速模具(RT)技术。本文将RT技术应用于铸造过程。铸造过程具有在一个过程中反映复杂形状的能力。但是,由于铸造产品表面上的气泡引起的表面质量差,因此尚未广泛用于制造模具。在这项研究中,多孔铸模是由陶瓷粉末和水溶性粘合剂的混合物制成的。借助于真空密封铸造工艺,该多孔铸造模具可以改善铝铸造产品的特性。真空密封铸造工艺是一种先进的技术,可以消除多孔铸模和液态金属之间的气泡,从而使铝铸件的表面更细。本文的目的是使用多孔铸造模具开发高质量的鞋模,并将RP&M技术应用于鞋业。

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