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A review of the experimental techniques for the measurement of heat and temperatures generated in some manufacturing processes and tribology

机译:测量一些制造过程和摩擦学中产生的热量和温度的实验技术的综述

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摘要

Several techniques have been developed over time for the measurement of heat and the temperatures generated in various manufacturing processes and tribological applications. They include: (1) thermocouples -- the embedded thermocouple and the dynamic thermocouple (or the chip-tool thermocouple in the case of cutting), (2) infra-red photography; (3) infrared optical pyrometers, (4) thermal paints, (5) materials of known melting temperatures, either in the powder form, or, as a thin film, and (6) change in microstructure with temperature in the case of high-speed steel tools, to name some. Each technique has its own advantages and disadvantages. The appropriate technique for a given thermal problem depends on the situation under consideration, such as the ease of accessibility, spot size, dynamics of the situation, accuracy needed, cost of instrumentation, advancements in technology. In this paper, these techniques are briefly reviewed with pros and cons on their application for a given situation.
机译:随着时间的流逝,已经开发出几种技术来测量在各种制造过程和摩擦学应用中产生的热量和温度。它们包括:(1)热电偶-嵌入式热电偶和动态热电偶(在切割时为切屑工具热电偶),(2)红外摄影; (3)红外光学高温计,(4)油漆,(5)已知熔化温度的材料(呈粉末形式或薄膜形式),以及(6)在高温下,微观结构随温度而变化。高速钢工具,仅举几例。每种技术都有其自身的优点和缺点。对于给定的热问题,适当的技术取决于所考虑的情况,例如可访问性的难易程度,点的大小,情况的动态性,所需的准确性,仪器的成本以及技术的进步。在本文中,对这些技术进行了简要回顾,并针对在特定情况下的应用优缺点进行了概述。

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