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Miniature Uncooled and Unchopped Fiber Optic Infrared Thermometer for Application to Cutting Tool Temperature Measurement

机译:微型不冷不切短光纤红外测温仪用于刀具温度测量

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摘要

A new infrared thermometer, sensitive to wavelengths between 3 μm and 3.5 μm, has been developed. It is based on an Indium Arsenide Antimony (InAsSb) photodiode, a transimpedance amplifier, and a sapphire fiber optic cable. The thermometer used an uncooled photodiode sensor and received infrared radiation that did not undergo any form of optical chopping, thereby, minimizing the physical size of the device and affording its attachment to a milling machine tool holder. The thermometer is intended for applications requiring that the electronics are located remotely from high-temperature conditions incurred during machining but also affording the potential for use in other harsh conditions. Other example applications include: processes involving chemical reactions and abrasion or fluids that would otherwise present problems for invasive contact sensors to achieve reliable and accurate measurements. The prototype thermometer was capable of measuring temperatures between 200 °C and 1000 °C with sapphire fiber optic cable coupling to high temperature conditions. Future versions of the device will afford temperature measurements on a milling machine cutting tool and could substitute for the standard method of embedding thermocouple wires into the cutting tool inserts. Similarly, other objects within harsh conditions could be measured using these techniques and accelerate developments of the thermometer to suit particular applications.
机译:已经开发出一种对3μm至3.5μm波长敏感的新型红外温度计。它基于砷化铟锑(InAsSb)光电二极管,跨阻放大器和蓝宝石光纤电缆。该温度计使用未冷却的光电二极管传感器,并且接收到的红外线辐射并未经历任何形式的光斩波,从而使该装置的物理尺寸最小化,并将其连接到铣床工具架上。该温度计适用于要求电子设备远离机加工过程中产生的高温条件的应用,并且还具有在其他恶劣条件下使用的潜力。其他示例应用包括:涉及化学反应,磨损或流体的过程,否则这些过程将为侵入式接触传感器带来问题,以实现可靠而准确的测量。原型温度计能够通过将蓝宝石光缆耦合到高温条件下,测量200°C至1000°C之间的温度。该设备的未来版本将在铣床切削刀具上提供温度测量,并且可以替代将热电偶丝嵌入切削刀具刀片中的标准方法。同样,可以使用这些技术在恶劣条件下测量其他物体,并加快温度计的发展以适应特定的应用。

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