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Characterisation of direct 3D sand printing process for the production of sand cast mould tools

机译:直接3D砂印刷工艺砂铸模工具的特征

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摘要

Purpose:udMetal casting industry is in recovery phase after the crisis in 2008; customer demand continues to increase, with 98.6 million metric tons cast in 2011. Traditional ferrous and non-ferrous casting techniques require one shot or permanent moulds which require tooling to produce. Tooling particularly for developmental projects can be costly and take valuable time to produce. Additive manufacturing (AM) has been used to manufacture sand patterns for metal sand casting using laser sintering and sand bonding. This research aims to focus on characterising the sand-bonded process developed by ExOne GmbhH Germany.ududDesign/methodology/approach:udThe approach taken in this research is to evaluate characteristics of parts built in the build volume for dimensional accuracy, tensile and compressive crush strength, density, impact strength and high temperature resistance. These properties are required to compare the 3D sand printing (3DSP) process to direct laser sand sintering (DLSS) and traditional Furan-based casting sand mixtures. The samples were taken from a production machine over a period of 30 days to ensure consistency.ududFindings:udThe 3DSP process has the capability to manufacture sand patterns to an accuracy of ±0.5 mm or error less than 0.3 per cent; it has also demonstrated the best build position to achieve accurate parts. The research has demonstrated the 3DSP patterns are comparable to traditional methods for important casting material characteristics such as tensile, compression and impact strength. It has been shown that the 3DSP process is capable of manufacturing significantly larger parts, with build production rates up to 30 times higher compared to similar parts manufactured via the DLSS process.ududResearch limitations/implications:udAs there have been very few 3DSP machines sold in Europe and particular UK, there has been little research into this new technique, and therefore there is a reliance on machine manufactures data for assessment. This research into 3DSP has increased the knowledge of this process significantly.ududPractical implications:udThis research would be of interest to designers and manufacturing engineers wishing to take advantage of the implications of having new design freedom, tool less manufacturing with short lead times in a wide range of materials using fundamentally tried and tested centuries-old casting techniques.ududOriginality/value:udThe research for this paper revealed very little published academic research in this area; therefore, this work will increase the body of knowledge for this niche AM process.
机译:目的: udmetal铸造行业在2008年危机后处于恢复阶段;客户需求持续增加,2011年铸造了9860万吨。传统的黑色金属和有色金属铸造技术需要一种射击或永久模具,需要生产工具。尤其是开发项目的工具可能是昂贵的并且需要有宝贵的时间来生产。添加剂制造(AM)已被用于制造用于使用激光烧结和砂粘合的金属砂铸件的砂图案。本研究旨在专注于由Exone GmbHH德国开发的砂粘合过程的特征。 UD Uddesign /方法/方法: UD本研究采取的方法是评估构建体积内置的零件的特点,尺寸精度,拉伸和压缩式挤压强度,密度,冲击强度和高耐温性。这些性质需要将3D砂印刷(3DSP)方法与直接激光砂烧结(DLS)和传统的呋喃基铸造砂混合物进行比较。将样品从生产机器中取出30天,以确保一致性。 UD Udfindings: udThe 3Dsp工艺具有制造砂模式的能力,精度为±0.5 mm或误差小于0.3%;它还展示了最佳的建立位置来实现准确的零件。该研究表明,3DSP图案与传统方法相当,用于重要的铸造材料特性,如拉伸,压缩和冲击强度。已经表明,与通过DLS流程制造的类似部件相比,3DSP工艺能够制造显着更大的部件,其构建生产率高达30倍。 ud udresearch限制/含义: udas几乎没有3DSP机器销售在欧洲和特定英国,对此新技术几乎没有研究,因此依赖于机器制造数据进行评估。这项研究进入3DSP显着提高了这一过程的知识。 UD UdPractical含义: Udthis研究会对设计师和制造工程师来说,希望利用拥有新的设计自由的影响,工具更少的制造业的设计师和制造工程师感兴趣使用基本上尝试和测试了几个世纪的铸造技术的各种材料。 ud udoriginality / value: udthe本文的研究揭示了这一领域的出版学术研究很少;因此,这项工作将增加这个利基AM过程的知识体系。

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