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高溫條件下物體面內位移的非接觸式檢測

Noncontact measurement of in-plane displacement under high ternperature conditions

  • 摘要: 應用數字圖像相關方法對高溫條件下物體面內位移場進行快速、高精度測量.采用532 nm面陣激光作為照明光源配合532 nm窄帶濾波與可調式衰減片組成的光學處理系統,很好地解決了高溫情況下成像難題.介紹了人工散斑的制作方法,采用耐1000℃高溫的高溫墨作為散斑的制作原料,制作了可在1000℃高溫情況下清晰的利于圖像相關計算的散斑圖.搭建了高溫條件下物體面內位移的檢測系統,分別做了常溫下亮度不同的千分尺移動位移檢測實驗和噴燈對鋼板持續局部加熱到1000℃熱變形場的測量實驗.實驗結果證明本系統具有抗干擾能力強、計算精度高以及便于實現的優點,可用于常溫及高溫條件下物體位移或變形場的測量.

     

    Abstract: The digital speckle correlation method was used to achieve fast and high-precision measurement of in-plane displacement under high temperature conditions. A plane array 532 nm laser used as the light source and an optical processing system which is composed of a 532 nm narrow band filter and an adjustable attenuator were a good solution to the imaging problem in this high-temperature case. An artificial speckle making method was described. In this method, high temperature ink resisting about 1000℃ was used as the speckle material, the artificial speckle under this situation was clear and good to image correlation calculation. An in-plane displacement detection system was built under high temperature conditions, micrometer moving displacement detection tests were carried out under different brightness values at room temperature, and thermal deformation field measurement tests of steel locally heated continuously to 1000℃ by blowtorch was also made. Test results show that the system can be used for the measurement of object displacement or deformation field at room temperature and high temperature conditions with the advantages of strong anti-jamming capability, high accuracy, and easy realizing.

     

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