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Collapsibility Studies of MJM Acrylate Patterns for Investment Casting

机译:MJM丙烯酸酯型铸造投资铸造的可折叠性研究

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Direct rapid investment casting (IC) is among the favorable and economical casting process due to its flexibility in fabricating any geometrical part features within a shorter lead time. Polymer based materials used in rapid prototyping (RP) technologies are exhibiting significant cost reduction for low volume production and are potentially replacing conventional wax materials as sacrificial patterns in IC process. This paper reports on the collapsibility characteristics of acrylate patterns during the burnout process for IC molds. The acrylate based patterns were fabricated by a Multijet Modelling (MJM) process with hollow internal structure. The MJM patterns were then Slurry procedure were introduced for producing toughest ceramic mould to prevent cracking occurrence. Results showed that the acrylate patterns start to decomposed gradually from the ceramic mold at 350°C and at 600°C, a total clean burnout without any residues and ash content was attained. This study shows that acrylate patterns built from RP technologies are suitable for fabricating ceramic molds and are highly potential in substituting conventional wax for IC process.
机译:直接快速投资铸造(IC)是由于其灵活性在较短的交货时间内制造任何几何部分特征,因此是有利和经济的铸造过程之一。快速原型(RP)技术中使用的基于聚合物的材料表现出低批量生产的显着降低,并且可能更换常规蜡材料作为IC过程中的牺牲模式。本文报道了IC模具烧坏过程中丙烯酸酯图案的可折叠特性。基于丙烯酸酯的图案由具有中空内部结构的多jet建模(MJM)工艺制造。然后引入了MJM图案的浆料程序,用于制备最难的陶瓷模具以防止裂化发生。结果表明,丙烯酸酯图案开始在350℃下从陶瓷模具逐渐分解,在600℃下逐渐分解,但达到了没有任何残留物和灰分含量的总清洁倦怠。该研究表明,由RP技术构建的丙烯酸酯图案适用于制造陶瓷模具,并且具有代替IC工艺的常规蜡的高潜力。

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