涂层损伤部位发射率的无损测量

Surfaces Pub Date : 2021-10-22 DOI:10.3390/surfaces4040021
Dikai Jiang, Yiwen Li, Weizhuo Hua, Peng Kuang, Bo Xu
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引用次数: 0

摘要

低红外发射率涂层(LIREC)容易产生凸起、脱胶和磨损等问题。为了研究LIREC在不同损伤下的性能是否能满足工作需要,在应用过程中及时测量和评价LIREC的性能状态至关重要。现有的LIREC损伤测量方法存在设备昂贵、操作复杂、测量结果不准确等缺点。提出了一种基于热成像仪的LIREC损伤能力测量方法。采用热像仪测量涂层表面的辐射温度,热电偶测量涂层表面的实际温度和环境温度,并计算涂层表面的发射度。对涂层损伤部位进行了大面积非接触式连续发射率测量,并进行了实验验证。测量结果表明,不同的损伤类型和损伤程度直接影响LIREC的测量结果。磨损损伤增加了涂层的发射率,而脱粘损伤基本不改变涂层的发射率。小直径脱落损伤形成孔洞,导致损伤部位发射度增大。此外,膨胀损坏阻碍了温度传递并降低了发射率。该方法能够及时、准确地测量和评价LIREC的性能状态,为LIREC损伤发射率的精确测量提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nondestructive Measurement of Emissivity of Damaged Parts of Coatings
Low Infrared emissivity coating (LIREC) is prone to generating some problems such as bulges, degumming, and abrasion. In order to study whether the performance of LIREC under different damages can meet the work needs, it is essential to timely measure and evaluate the performance state of LIREC in the application process. The existing methods for measuring the damage of LIREC have some disadvantages such as expensive equipment, complex operation, and inaccurate measurement results. In this paper, a measurement method of LIREC damage capability based on thermal imager is proposed. The radiation temperature is measured by thermal imager, the real temperature and ambient temperature of coating surface are measured by thermocouple, and the emittance of coating surface is calculated. Non-contact and continuous large-area emissivity measurements are carried out on the damaged parts of the coating and verified by experiments. The measurement results show that the different damage types and damage degrees directly affect the measurement results of LIREC. Wear damage increases the emissivity of the coating while debonding damage basically does not change the coating emissivity. Shedding damage of small diameter forms voids, which causes the increase of the damage parts of emittance. In addition, bulge damage impedes temperature transfer and reduces emissivity. This method can timely and accurately measure and evaluate the performance state of LIREC and can provide a new idea for the accurate measurement of damage emissivity of LIREC.
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CiteScore
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