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The Research of Low-profile Load Cell Design Sensitivity

机译:低调载荷细胞设计敏感性的研究

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This low profile load cells are referred to the current injection molding machine manufacturers commonly used specifications. This study is about the low-profile load cell design by the finite element analysis and experimental strain measurement verification. In the study, two low-profile load cell were designed and analyzed. The A-type cross-section of the sensor is a generally designed cross-section and has sufficient reliability for commercial use. The B-type curve cross-section load cell from the previous study found that can carry a more significant load. In the study, compare the finite element analysis results with the actual strain measurements to verify the correctness of the analysis. In the experimental verification, the two type sections loadcells were calibrated. The load cells were loading from 0kN to 60kN to measure strain values. The strain values were recorded in experiment processes. When the two types of load cell under loading, the loading force, and strain values regression linearity was 99.99 %. The measured values of the A-type and B-type load cells at 60 kN were 298 με and 170 με, and the results matched finite element analysis strain values. It was shown that the setup of boundary conditions and loading method in finite element analysis were acceptable.
机译:这种低调称重传感器称为当前的注塑机厂商常用的规格。本研究通过有限元分析和实验应变测量验证,涉及低调载荷电池设计。在该研究中,设计并分析了两个低调的称重传感器。传感器的A型横截面是一般设计的横截面,并且具有足够的商业用途可靠性。来自先前研究的B型曲线横截面称重传感器发现,可以携带更大的负载。在该研究中,将有限元分析结果与实际应变测量进行比较,以验证分析的正确性。在实验验证中,校准了两种类型的剖面。称重传感器从0kN加载到60kN以测量应变值。在实验过程中记录应变值。当负载下的两种类型的载荷电池,装载力和应变值回归线性时为99.99%。在60kn的A型和B型载荷单元的测量值为298με和170μl,结果匹配有限元分析应变值。结果表明,有限元分析中的边界条件和装载方法的设置是可接受的。

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