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Lithography-Based Ceramic Manufacturing (LCM) for Dental Applications

机译:用于牙科的基于光刻的陶瓷制造(LCM)

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摘要

Dental applications like crowns, veneers or bridges require high accuracy to be fitted on the patient’s stump. Stereolithography is an additive manufacturing method, which offers high precision by using light exposure as the layer generating mechanism. In the LCM process, this precision is combined with a thermal post-processing step to achieve full ceramic restorations. The overall production of such ceramic parts in a reproducible way is a highly complex procedure. The first requirement is to find a slurry formulation, which is stable against sedimentation and segregation, that is also processable in a stereolithographic system. Such a formulation has been found by us, which could be shown by rheology measurements. During experiments with this formulation, it could be observed that there is a correlation between wet film thickness and resolution. Several adjustments to the machine have been made, to fully control this parameter. Namely, changes to the vat, the doctor blade and the building platform have been made. The improvement of the process and the quality of the final parts are validated by fabricating Siemens stars and by biaxial bending tests.
机译:牙冠,贴面或牙桥等牙科应用需要高精度才能安装在患者的残端上。立体光刻法是一种增材制造方法,通过使用曝光作为层生成机制来提供高精度。在LCM工艺中,此精度与热后处理步骤相结合,以实现完整的陶瓷修复。以可重复的方式整体生产这种陶瓷零件是非常复杂的过程。第一个要求是找到一种浆液配方,该浆液配方对沉淀和偏析稳定,并且可以在立体光刻系统中进行处理。我们已经发现了这种配方,可以通过流变学测量表明。在使用该配方进行实验期间,可以观察到湿膜厚度与分辨率之间存在相关性。已对机器进行了几处调整,以完全控制此参数。即,已对桶,刮墨刀和建筑平台进行了更改。通过制造西门子星形轮和通过双轴弯曲测试,可以验证工艺的改进和最终零件的质量。

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