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Rapid prototyping of ceramic casting cores for investment casting

机译:用于熔模铸造的陶瓷铸芯的快速成型

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摘要

The use of ink jet printing technology in the rapid prototyping process has been developed for a number of years. The main problem with the technology is the limitations on the materials that can be formed via this method. This investigation is into the use of ceramic filled inks in the printing process for the manufacture of cores for investment casting. InkJet printing of ceramics is limited by the requirement of low fluid viscosity this limits the volume fraction of ceramic in suspension that can be jetted through the ink jet nozzle. Here we present a study developing ceramic inks of relatively high solid fraction in suspension. We have studied how properties of the carrier fluid, particle size and surfactant chemistry influence viscosity, surface tension and specific gravity of the suspensions. We have also assessed the suitability of these suspensions for ink-jet printing by using a single jet test station. In order to produce a ceramic object from the printed suspension the carrier fluid must be removed and the final part sintered without loss of shape and detail. Preliminary studies to this end are also reported.
机译:在快速原型制作过程中使用喷墨打印技术已经开发了多年。该技术的主要问题是可通过这种方法形成的材料的局限性。这项调查是关于在印刷工艺中使用陶瓷填充油墨制造熔模铸造型芯的过程。陶瓷的喷墨印刷受到对低流体粘度的要求的限制,这限制了悬浮液中陶瓷的体积分数,该体积分数可以通过喷墨喷嘴进行喷射。在这里,我们进行一项研究,研究悬浮液中固含量相对较高的陶瓷油墨。我们已经研究了载液的性质,粒度和表面活性剂化学性质如何影响悬浮液的粘度,表面张力和比重。我们还通过使用单个喷射测试站评估了这些悬浮液在喷墨印刷中的适用性。为了从印刷的悬浮液中产生陶瓷物体,必须除去载液,并烧结最终零件,而不会损失形状和细节。为此还进行了初步研究。

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