GUO Jian-bao,CUI Peng-fei,GUAN Sheng-li,LU Zhi-liang,WANG Guang-wu,WANG Hai-jun,CHEN Jian-ye,HUANG Ke-feng,GENG Man,FU Yu-xiang,YANG Wei-long,WU An-bing,DENG Long-long,LYU Chuang.Study on Corrosion Mechanism and Prevention and Control Technology of Radiator with HVDC Valve[J],49(3):262-268
Study on Corrosion Mechanism and Prevention and Control Technology of Radiator with HVDC Valve
Received:October 29, 2019  Revised:March 20, 2020
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DOI:10.16490/j.cnki.issn.1001-3660.2020.03.033
KeyWord:HVDC converter valve  radiator  nickel plating  thermal resistance  thermal resistance  water cooler  corrosion mechanism
                                         
AuthorInstitution
GUO Jian-bao 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
CUI Peng-fei 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
GUAN Sheng-li 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
LU Zhi-liang 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
WANG Guang-wu 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
WANG Hai-jun 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
CHEN Jian-ye 3.Department of Electrical Engineering of Tsinghua University, Beijing , China
HUANG Ke-feng 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
GENG Man 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
FU Yu-xiang 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
YANG Wei-long 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
WU An-bing 2.Goaland Energy Conservation Tech. Co. Ltd, Guangzhou , China
DENG Long-long 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
LYU Chuang 1.Maintenance & Test Center of CSG EHV Power Transmission Company, Guangzhou , China
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Abstract:
      The aims to study the corrosion mechanism and prevention and control technology of high-voltage DC converter valve radiator. By constructing a radiator water-cooling system operation platform, two different water-cooled radiators, electroless nickel plating and non-nickel plating, were used to study the corrosion and influence of the water-cooled inner flow passage. The corrosion condition and the composition of the corrosion products were analyzed by SEM and elemental analyzer, and the mechanical properties of the metal materials were studied by a universal testing machine to derive the corrosion mechanism. The change law of heat exchange efficiency between nickel-plated and unnicked water coolers is also compared. A test platform capable of evaluating the corrosion performance of the water-cooled radiator was successfully built. Under the simulation of the test platform, the nickel-plated water-cooled radiator was bright after 3 months of running on the water-cooled equipment, and there was no obvious corrosion and corrosion marks; Nickel water-cooled heat sinks have obvious corrosion products on the macroscopic and microscopic scales, mainly composed of hydroxyaluminum, aluminum sulfate and aluminum chloride. Moreover, the electroless nickel plating cathodic protection treatment can reduce the thermal conductivity of the fluid during convective heat transfer, and the flow of the fluid in the flow channel becomes a violent disordered turbulent state. The electroless nickel plating cooling system has better corrosion resistance and can reduce the thermal resistance of the water-cooled radiator, thus enhancing the heat exchange effect and improving the heat transfer performance of the water-cooled radiator. It provides a direction for HVDC project application, radiator corrosion and heat transfer efficiency.
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