[Application of microwave for dental technique. 5. Injection molding system for resin base denture].

H Kimura, F Teraoka, M Sugita
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Abstract

An injector and FRP denture flask were developed for injection molding and the fit of the denture base constructed with this injection molding system was evaluated. In addition, the flow and pressure of the dough, that is polymer-monomer mixture, in the mold space were investigated. The monomer of 10 mg/cm2 in the dough vaporized during the 5 minutes it took for the flash to be removed. When pressure of more than 55 kgf/cm2 was exerted to the dough, the dough was completely packed in the mold space. Fastening of the sprue with a bolt within 2 minutes after injection of the dough made the pressure of the dough increase to about 30 kgf/cm2. The dough in the mold space was maintained at a pressure of above 20 kgf/cm2 for microwave heating time. The adaptability of the resin base denture constructed with a combination of injection molding and microwave polymerization was 2 or 3 times greater than that of the denture constructed with microwave heating from the tissue side of the denture base.

微波在口腔技术中的应用。5. 树脂基托假牙的注射成型系统。
研制了一种注射器和玻璃钢义齿烧瓶用于注射成型,并对该注射成型系统所构建的义齿基托的配合度进行了评价。此外,还研究了聚合物-单体混合物面团在模具空间内的流动和压力。面团中10mg /cm2的单体在去除闪蒸所需的5分钟内蒸发。当对面团施加超过55 kgf/cm2的压力时,面团完全被包装在模具空间中。在注入面团后2分钟内用螺栓紧固浇口,使面团压力增加到约30 kgf/cm2。在微波加热时间内,模具空间中的面团保持在20 kgf/cm2以上的压力。采用注射成型与微波聚合相结合的方法制备树脂基托义齿的适应性比采用微波从基托组织侧加热制备的义齿强2 ~ 3倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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