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Relationship between current load and temperature for quasi-steady state and transient conditions

机译:用于准稳态和瞬态条件的电流负荷与温度之间的关系

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Infrared thermographers involved in predictive maintenance programs often use temperature measurement as a means of quantifying the severity of a problem. Temperature is certainly an important factor in evaluating equipment. However, if you follow guidelines that are based solely on absolute temperature measurement - or on a temperature rise (Delta T) - you run the risk of incorrectly diagnosing your problems. The consequences of such actions can lead to a false sense of security, equipment failure, fire, and even the possibility of personal injury. Understanding the additional factors involved in diagnosis is essential for obtaining productive results. One of these factors is the load or current flowing through conductors. The load can have a drastic effect on the temperature of a component. Changing loads can cause additional concerns because temperature changes lag behind load changes. The purpose of this paper is to illustrate the relationship between load and temperature of a faulty connection. The thermal response of a changing load is also investigated.
机译:涉及预测维护程序红外热成像通常使用温度测量值作为量化问题的严重性的方法。温度肯定是在评估设备的一个重要因素。但是,如果您按照仅仅基于绝对温度测量准则 - 或在温度升高(三角洲T) - 你运行的正确诊断你的问题的风险。这种行为的后果可能会导致安全,设备故障,火灾和人身伤害甚至有可能的错觉。了解参与诊断的其他因素是获得富有成效的结果至关重要。这些因素之一是负载或贯穿导体中流动的电流。负载可以具有上的部件的温度的剧烈影响。不断变化的负载会导致额外的关注,因为温度的变化滞后于负荷变化背后。本文的目的是说明一个故障连接的负载和温度之间的关系。一个变化的负载的热响应进行了研究。

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