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Development of Composite Binder System for Shell Mold in Precision Casting of Thin Stainless Steel

机译:薄不锈钢精密铸造壳模复合粘结剂系统的研制

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New composite binder systems have been developed to improve strength of shell mold and to decrease processing time, as functions of dipping time and binder composition, which is compared with the conventional binder system. The new binder systems were prepared by mixing tetraethyl orthosilicate (TEOS) and polydimethyl siloxane (PDMS) as precursor of SiO_2 and sodium methoxide (NaOMe) as precursor of NaO_2. The samples of shell mold were dipped into the prepared binder systems, and then heat-treated at 1000 °C for 1 hr. The fracture strength is sharply enhanced in the new binder system owing to the increase of penetration depth with the dipping time, whereas the conventional binder system is modestly increased even in the dipping time of 2 hr. The new binder system with 7.6 wt% PDMS shows the highest nominal strength, showing a nominal value of 16 GPa. When only PDMS as precursor of SiO_2 was used in the new binder system, the increase of viscosity by PDMS causes a larger scattering in the strength value. The strength could be controlled with the dipping time and molecular weight, showing the lower nominal strength values at the dipping time of 0.5 hr and in the low molecular weight of TEOS/NaOMe. The relationship between strength and binder composition is discussed, based on the microstructures before and after heat-treatment.
机译:与传统的粘合剂体系相比,已开发出新的复合粘合剂体系以提高壳模的强度并减少加工时间,这是浸渍时间和粘合剂组成的函数。通过混合原硅酸四乙酯(TEOS)和聚二甲基硅氧烷(PDMS)作为SiO_2的前驱体以及甲醇钠(NaOMe)作为NaO_2的前驱体,制备了新的粘合剂体系。将壳模的样品浸入制备的粘合剂体系中,然后在1000°C下热处理1小时。由于渗透深度随浸入时间的增加,在新的粘合剂体系中,断裂强度急剧提高,而常规的粘合剂体系即使在2小时的浸入时间内也适度增加了断裂强度。具有7.6 wt%PDMS的新型粘合剂体系显示出最高的标称强度,显示出16 GPa的标称值。当在新的粘合剂体系中仅使用PDMS作为SiO_2的前体时,PDMS引起的粘度增加会导致强度值更大的分散。可以通过浸渍时间和分子量来控制强度,在0.5小时的浸渍时间和低分子量的TEOS / NaOMe中显示出较低的标称强度值。基于热处理前后的微观结构,讨论了强度与粘结剂组成之间的关系。

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