基于振动模态分析的籽粒检测传感器结构优化设计
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National High-Tech Research and Development Program of China (863 Program) (2010AA101402);Postdoctoral Fund of China(20110490124);High-Tech Key Laboratory of Agricultrual Equipment & Intelligentization of Jiangsu Province;A Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions and Scientific Research Project of Jiangsu University(10JDG083)


Structure Optimization of Grain Detecting Sensor Based on Vibration Modal Analysis
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    摘要:

    为了分析传感器结构对籽粒冲击响应信号的影响,建立了籽粒检测传感器的三维结构模型,利用SolidWorks分析了传感器的振动模态。结果表明:传感器的上层面板的结构尺寸是影响传感器振动特性的主要因素,随着面板宽度b的增加,相对变形率γ首先迅速减小;随着b的进一步增加,γ逐渐减小至恒定值,固有频率f则单调增大;增加面板厚度h,固有频率f和相对变形率γ均呈单调增加趋势。将传感器安装到联合收获机振动筛尾部支架上进行清选损失检测试验。结果表明,传感器能够在振动干扰中识别籽粒冲击信号,当b=30mm时,籽粒冲击响应时间小于2ms,远小于b=120mm时的籽粒冲击响应时间。

    Abstract:

    In order to analyze the effect of sensor structure on the character of grain impulse response, 3-D models of grain detecting sensor were established and their vibration modal were simulated by using software SolidWorks. It was found that the dimension of the upper panel was an important factor which influenced the modal nature. With the increasing of upper panel width b , its natural frequency f monotonically increased, and its relative deformation ratio γ quickly decreased at first and then decreased to a constant value gradually. With the increasing of thickness h , monotonic increasing tendency of f and γ was received. Then, experiments were carried out by assembling the sensor on a support stand which fixed on the vibrating cleaning sieve, the results showed that the sensor can identify grain impact signal effectively from vibrating noise. The time band of grain impact signal acquired using sensor with b of 30mm width was less than 2ms which was much small than the signal acquired using sensor with b of 120mm.

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赵湛,李耀明,梁振伟,陈义.基于振动模态分析的籽粒检测传感器结构优化设计[J].农业机械学报,2011,42(Z1):103-106.

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