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Precision investment casting: A state of art review and future trends

机译:精密熔模铸造:最新的技术回顾和未来趋势

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摘要

Investment casting process is known to its capability of producing clear net shape, high-dimensional accuracy and intricate design. Consistent research effort has been made by various researchers with an objective to explore the world of investment casting. Literature review revealed the effect of processing parameters on output parameters of cast specimen. This article highlights the advancements made and proposed at each step of investment casting and its hybridization with other process. Besides, investment casting has always been known to manufacture parts such as weapons, jewellery item, idols and statues of god and goddess since 3000 BC; this article reviews the present applications and trends in combination of rapid prototyping technique as integrated investment casting to serve in medical science. Advancements in shell moulding with incorporation of fibre and polymer, development of alternative feedstock filament to fused deposition modelling are duly discussed. The aim of this review article is to present state of art review of investment casting since 3200 BC. This article is organized as follows: in section 'Introduction', introduction to investment casting steps is given along with researches undertaken at each step; in section 'Rapid prototyping technique', background is given on the concept of rapid prototyping technique by examining the various approaches taken in the literature for defining rapid prototyping technique; section 'Biomedical applications of RPT' presents the medicine or biomedical applications of investment casting and rapid prototyping technique; section 'Future trends' provides some perspectives on future research and section 'Conclusion' closes the article by offering conclusions.
机译:精密铸造工艺以产生清晰的网状形状,高尺寸精度和复杂的设计而著称。各种研究人员已经进行了一致的研究,目的是探索熔模铸造的世界。文献综述揭示了加工参数对铸件输出参数的影响。本文重点介绍了在熔模铸造的每个步骤以及与其他过程的混合中所提出和提出的进步。此外,自公元前3000年以来,熔模铸造一直生产零件,如武器,珠宝,偶像和神女神像。本文回顾了快速原型技术作为集成铸造技术在医学领域中的应用与发展趋势。适当讨论了在纤维和聚合物混入的壳成型技术方面的进展,以及熔体沉积模型替代原料长丝的开发。本文的目的是介绍自公元前3200年以来对熔模铸造的最新技术回顾。本文的组织结构如下:在“简介”部分中,介绍了投资铸造步骤以及在每个步骤中进行的研究;在“快速原型技术”部分中,通过研究文献中定义快速原型技术的各种方法,给出了快速原型技术的概念的背景知识; “ RPT的生物医学应用”部分介绍了熔模铸造和快速原型技术的医学或生物医学应用; “未来趋势”部分提供了有关未来研究的一些观点,“结论”部分通过提供结论来结束本文。

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