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首页> 外文期刊>Journal of Biomechanics >Design and construction of a transducer for bite force registration.
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Design and construction of a transducer for bite force registration.

机译:咬合力传感器的设计和构造。

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摘要

This study describes the development of a system for quantification of human biting forces by (1) determining the mechanical properties of an epoxy resin reinforced with carbon fiber, (2) establishing the transducer's optimal dimensions to accommodate teeth of various widths while minimizing transducer thickness, and (3) determining the optimal location of strain gages using a series of mechanical resistance and finite element (FE) analyses. The optimal strain gage location was defined as the position that produced the least difference in strain pattern when the load was applied by teeth with two different surface areas. The result is a 7.3-mm-thick transducer with a maximum load capacity beyond any expected maximum bite force (1500N). This system includes a graphic interface that easily allows acquisition and registration of bite force by any health-sciences or engineering professional.
机译:这项研究描述了一种量化人类咬力的系统的开发,该系统包括:(1)确定碳纤维增强的环氧树脂的机械性能,(2)确定换能器的最佳尺寸,以适应各种宽度的牙齿,同时最大程度地减小换能器的厚度, (3)使用一系列机械阻力和有限元(FE)分析来确定应变计的最佳位置。最佳应变计位置定义为当载荷由具有两个不同表面积的牙齿施加时,在应变模式上产生最小差异的位置。结果是一个7.3毫米厚的传感器,其最大负载能力超过了任何预期的最大咬合力(1500N)。该系统包括一个图形界面,可以轻松地让任何健康科学或工程专业人士获取和记录咬合力。

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