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On-line measurement of clamping force for injection molding machine using ultrasonic technology

机译:超声技术注塑机夹紧力的在线测量

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摘要

The on-line measurement of clamping force is essential for injection molding equipment and process. A method for on-line measurement of clamping force using ultrasonic technology is proposed in this study. Based on the sono-elasticity theory, a new mathematical model is established to describe the relationship between ultrasonic propagation time and clamping force. A series of experiments are then performed to validate the proposed method. Findings show this method corresponds well with the magnetic enclosed type clamping force tester method, with difference squares less than 0.65?(MPa)2, and standard deviations less than 0.11?MPa. Ultrasonic parameters influence measurement results, with larger ultrasonic probe wafer diameter and higher ultrasonic probe frequency producing better measurement accuracy. Additionally, measurement accuracy is insensitive to the sampling frequency of ultrasonic signals. The proposed method has the advantages of high accuracy and high stability, being non-interfering, non-destructive, low-cost, on-line and with good adherence to health and safety, and it has significant application prospects in injection molding production.
机译:夹紧力的在线测量对于注塑设备和工艺至关重要。本研究提出了一种使用超声技术在线测量夹紧力的方法。基于超声弹性理论,建立了一种新的数学模型来描述超声波传播时间和夹紧力之间的关系。然后进行一系列实验以验证所提出的方法。调查结果显示该方法很好地对应磁性封闭式夹紧力测试仪方法,差异正方形小于0.65?(MPa)2,标准偏差小于0.11ΩMPa。超声波参数影响测量结果,具有较大的超声波探头晶片直径和更高的超声波探头频率,产生更好的测量精度。另外,测量精度对超声波信号的采样频率不敏感。该方法具有高精度和高稳定性的优点,无干扰,无损,低成本,在线以及良好的依从性健康和安全,并且在注塑生产中具有显着的应用前景。

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