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Reliability Evaluation and Robust Design of a Sensor in an Entire Roller-Embedded Shapemeter

机译:整辊嵌入式形状计中传感器的可靠性评估和稳健设计

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摘要

The intermittence of the shape detection signal associated with an entire roller-embedded shapemeter roll, used in a seven-pass cold reversible rolling process, is considered. A transient interference at the sensor top surface and the distance between the sensor top surface and the roll outer surface are developed, and a sensor reliability evaluation model is derived. The reliability of the sensor is evaluated via the random perturbation method, and the reliability sensitivity of design variables is proposed. The analysis reveals that the reliability is smallest in the third rolling pass. Of the design variables considered, the initial interference exhibits the largest reliability sensitivity and has the greatest influence on the sensor reliability. A reliability robust design model of the initial interference is therefore developed. A new shapemeter roll is fabricated and tested in a 1050 reversible cold rolling mill. The test results are consistent with the theoretical results, thereby validating the proposed model. The selection of an appropriate initial interference provides an important means of overcoming the adverse effects associated with the thermal deformation of sensor contact surfaces.
机译:考虑了与在七遍冷可逆轧制过程中使用的整个嵌入式辊式测厚仪辊相关的形状检测信号的间歇性。建立了传感器顶面的瞬态干扰以及传感器顶面与辊子外表面之间的距离,并推导了传感器可靠性评估模型。通过随机扰动方法对传感器的可靠性进行评估,并提出了设计变量的可靠性敏感性。分析表明,在第三次轧制过程中,可靠性最小。在所考虑的设计变量中,初始干扰具有最大的可靠性灵敏度,并且对传感器的可靠性影响最大。因此,开发了一种可靠的初始干扰鲁棒性设计模型。在1050型可逆冷轧机中制造并测试了新的形状计辊。测试结果与理论结果一致,从而验证了所提出的模型。适当的初始干扰的选择提供了克服与传感器接触表面热变形相关的不利影响的重要手段。

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