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On the Influence of Infra-Red Sensor in the Accurate Estimation of Grinding Temperatures

机译:红外传感器对磨削温度精确估算的影响

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摘要

Workpiece rejection originated by thermal damage is of great concern in high added-value industries, such as automotive or aerospace. Surface temperature control is vital to avoid this kind of damage. Difficulties in empirical measurement of surface temperatures in-process imply the measurement in points other than the ground surface. Indirect estimation of temperatures demands the use of thermal models. Among the numerous temperature measuring techniques, infra-red measurement devices excel for their speed and accurate measurements. With all of this in mind, the current work presents a novel temperature estimation system, capable of accurate measurements below the surface as well as correct interpretation and estimation of temperatures. The estimation system was validated by using a series of tests in different grinding conditions that confirm the hypotheses of the error made when measuring temperatures in the workpiece below the surface in grinding. This method provides a flexible and precise way of estimating surface temperatures in grinding processes and has shown to reduce measurement error by up to 60%.
机译:在汽车或航空航天等高附加值行业中,由热损伤引起的工件报废是非常令人关注的问题。表面温度控制对于避免此类损坏至关重要。进行过程中表面温度的经验测量的困难意味着要在除地面以外的其他点进行测量。间接估算温度需要使用热模型。在众多的温度测量技术中,红外测量设备以其速度和精确的测量而著称。考虑到所有这些因素,当前的工作提出了一种新颖的温度估算系统,该系统能够对地表以下的精确测量以及对温度的正确解释和估算。通过在不同的磨削条件下使用一系列测试对估计系统进行了验证,这些测试证实了在测量磨削表面以下的工件中的温度时所产生的误差的假设。这种方法提供了一种灵活而精确的方法来估算研磨过程中的表面温度,并且已显示出可将测量误差降低多达60%。

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