Adaptation of the process of additive production of patterns for their gasification in sand form during metal pouring, as well as for the disposal of polystyrene foam waste

O. Shinsky, O. Mikhnyan, O. Neima, V. Doroshenko
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Abstract

The technological method in the field of foundry production is described, which combines additive manufacturing (AM) of disposable foundry polymer patterns with waste polystyrene (EPS) waste disposal. It was created to switch to the method of Lost Foam casting on gasified patterns (LFC), from the current method of casting on printed patterns of fired. The latter method is used because modern printed patterns have a high density and ash content, which degrades the quality of metal castings when used for LFC. EPS disposal gives an environmental effect, and AM patterns are an example of the spread of digitalization and automation of foundry production. Examples of EPS disposal, examples of castings after firing additively manufactured patterns and the ash residue, consisting of carbon, found in the working cavities of molds after firing such patterns are described. Examples of printing patterns with a cellular core and a ventilation channel are shown, an unsuccessful example of aluminum casting by the LFC method in a vacuumed sand mold, as well as an example of a 3D printer for printing using crushed plastic or plastic granules. The developed method of printing one-time foundry patterns for gasification in sand foundry mold corresponds to the trend of spreading AM in foundry production. If the specific weight of the printed pattern is too high, then new LFC methods are used with the removal of excess gases from the gasification of the pattern through the ventilation duct in the pattern and tubular evaporation outside the mold and their oxidation, in particular by our method. Such neutralization of gaseous waste at LFC rightly complements the utilization of EPS solid waste as a raw material for AM foundry patterns, together these methods give a synergistic effect on environmental protection, improving the working conditions of foundries and reducing the cost of cast products while improving its quality. Keywords: Lost Foam casting; gasified patterns; 3D printing; additive manufacturing; one-time patterns; burning patterns; expanded polystyrene; disposal of polymer waste.
适应添加剂生产模式的过程中,他们的气化砂形式在金属浇筑,以及处置聚苯乙烯泡沫废料
介绍了铸造生产领域将一次性铸造聚合物图案的增材制造(AM)与废弃聚苯乙烯(EPS)废物处理相结合的技术方法。它的创建是为了从目前在烧制的印刷图案上铸造的方法切换到在气化图案上铸造消失泡沫(LFC)的方法。使用后一种方法是因为现代印刷图案具有高密度和灰分,这在用于LFC时会降低金属铸件的质量。EPS处理产生了环境效应,AM模式是铸造生产数字化和自动化传播的一个例子。描述了EPS处理的例子、烧制添加制造的图案后的铸件的例子以及烧制这些图案后在模具的工作腔中发现的由碳组成的灰烬残留物。显示了具有蜂窝芯和通风通道的打印图案的例子,在真空砂型中通过LFC方法铸造铝的不成功的例子,以及使用破碎塑料或塑料颗粒进行打印的3D打印机的例子。所开发的在砂铸模中打印用于气化的一次性铸造图案的方法符合AM在铸造生产中推广的趋势。如果印刷图案的比重过高,则使用新的LFC方法,特别是通过我们的方法,通过图案中的通风管道去除图案气化中的过量气体,并在模具外进行管状蒸发和氧化。LFC对气体废物的中和与EPS固体废物作为AM铸造图案原材料的利用相辅相成,这些方法在环境保护、改善铸造厂的工作条件、降低铸造产品成本的同时提高其质量方面发挥了协同作用。关键词:消失模铸造;气化模式;3D打印;增材制造;一次性模式;燃烧模式;发泡聚苯乙烯;聚合物废料的处理。
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