Food Texture Measurement System Using Rod Type Actuator for Imitation of Human Mastication

Hiroyuki Nakamoto, Yuya Nagahata, F. Kobayashi
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Abstract

Food texture is one of the most important factors in determining the personal palatability of foods, so food companies require food texture measurement and evaluation in developing novel food products. However, instruments are not fast enough or strong enough to imitate human mastication. To measure the textures of different foods, this study proposes a sensor stand that uses a rod-type actuator. The target speed and force of the sensor stand are 100 mm/s and 100 N, respectively. A food texture sensor that imitates the structure of a human tooth is attached to the sensor stand. The sensor stand and a desktop computer make up the measurement system. Using the system, the fundamental characteristics of the sensor stand with the texture sensor are demonstrated. Verification experiments confirm that the sensor stand satisfies the target values of speed and force. Experiments on actual food items also demonstrate the effectiveness of the measurement system in evaluating food textures.
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模拟人咀嚼的杆式致动器食物质地测量系统
食品质地是决定食品个人适口性的最重要因素之一,因此食品企业在开发新型食品时需要对食品质地进行测量和评价。然而,乐器的速度和强度都不足以模仿人类的咀嚼。为了测量不同食物的质地,本研究提出了一种使用杆型执行器的传感器支架。传感器支架的目标速度和力分别为100mm /s和100n。传感器支架上安装了一个模仿人类牙齿结构的食物质地传感器。传感器支架和台式电脑组成了测量系统。利用该系统,展示了传感器与纹理传感器的基本特性。验证实验证实,传感器支架满足速度和力的目标值。对实际食品的实验也证明了该测量系统在评价食品质地方面的有效性。
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