Core temperature measurement using ultrasound for high precision manufacturing processes

温度测量 材料科学 补偿(心理学) 温度控制 机械加工 芯(光纤) 机械工程 度量(数据仓库) 超声波传感器 热膨胀 热的 观测误差 声学 计算机科学 复合材料 冶金 工程类 热力学 物理 统计 数据库 数学 心理学 精神分析
作者
Olaide Felix Olabode,Simon Fletcher,Andrew P. Longstaff,Andrew J. Bell
出处
期刊:Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture [SAGE Publishing]
卷期号:237 (13): 2176-2187 被引量:3
标识
DOI:10.1177/09544054221150662
摘要

During machining processes, the temperature of the workpiece may vary due to different factors. One of such factors is the heat generated due to tool/workpiece friction. Temperature may also vary due to environmental conditions. These temperature variations can affect the dimensional accuracy of the manufactured workpiece. It is known that the expansion of a part is related to a change in its average temperature, which is influenced more by the internal, core temperature than the surface temperature. The surface temperature of the part being manufactured can vary significantly from the core temperature, especially during dry cutting processes. Therefore, to effectively control or compensate for the effects of temperature variation as it relates to material expansion, there is a need to measure the core temperature of the workpiece accurately. In this article, a novel ultrasonic phase-shift method for temperature measurement is used to measure the core temperature of a workpiece on a computer numerical control machine (CNC). The results show that the phase-shift ultrasonic thermometry method measures steel workpiece temperature during subtractive manufacturing processes with deviations of less than ±1°C when compared to the reference PT100 readings. This novel temperature measurement method can be used in different manufacturing processes as part of a temperature control or thermal error compensation system.
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