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高壓系列閥門常見故障

來源:http://www.lzpazx.cn/ 日期:2021-12-28 發布人:admin
在火電汽輪機DEH調試工作中會碰到高壓調節閥門抖動的問題,在遇到這種情況之時,就需要我們冷靜分析,從現象找問題,從問題查方法。以下是我們從設計、調試角度闡述對此問題查診、處理的方法,希望能給到電廠、調試單位一定的參考。
In DEH commissioning of thermal power steam turbine, the problem of high-pressure regulating valve jitter will be encountered. In this case, we need to calmly analyze, find problems from phenomena and find methods from problems. The following are the methods of diagnosis and treatment of this problem from the perspective of design and commissioning, hoping to give some reference to power plants and commissioning units.
超高壓針閥一般采用角形單座結構,加工簡單,閥座容易配換,閥芯為單導向結構。閥門角形單座結構流路簡單,阻力小,適用于高壓差、高粘度、含懸浮物和顆粒狀物質流體,可以避免結焦和堵塞,也便于自凈和清洗。閥芯和閥座是超高壓針閥進行開關控制的兩個核心零件,組成超高壓針閥開關的動密封副。通過控制閥芯與閥座之間錐形密封面的接觸與分離,實現閥通道的關閉和開啟。閥芯與密封圈之間的圓周密封面構成閥的滑動密封副,用于保證閥室與外界的密封。閥芯采用針形,靠錐面密封,一般閥芯錐角為59°,閥座錐角為60°。實驗證明在開錐孔時,錐角選取45°~60°時,孔邊緣的應力集中系數小,且使應力出現在錐孔的小端。閥座錐角大,閥芯錐角小時,靠上表面密封,有利于提高閥的使用壽命.
Ultra high pressure needle valve generally adopts angular single seat structure, with simple processing, easy replacement of valve seat, and single guide structure of valve core. The angular single seat structure of the valve has simple flow path and low resistance. It is suitable for fluids with high pressure difference, high viscosity and containing suspended and granular substances. It can avoid coking and blockage, and is also convenient for self purification and cleaning. The valve core and valve seat are the two core parts of the ultra-high pressure needle valve for switching control, which form the dynamic sealing pair of the ultra-high pressure needle valve switch. By controlling the contact and separation of the conical sealing surface between the valve core and the valve seat, the valve channel can be closed and opened. The circumferential sealing surface between the valve core and the sealing ring constitutes the sliding sealing pair of the valve, which is used to ensure the sealing between the valve chamber and the outside world. The valve core is needle shaped and sealed by conical surface. Generally, the cone angle of the valve core is 59 ° and the cone angle of the valve seat is 60 °. Experiments show that when the cone angle is 45 ° ~ 60 °, the stress concentration factor at the edge of the hole is small, and the stress appears at the small end of the cone hole. Large cone angle of valve seat, small cone angle of valve core and sealing against the upper surface are conducive to improving the service life of the valve
良工閥門代理
在出現高壓調閥抖動的情況時,我們可以查看閥門指令是否發生數據上的變化,來進行分別的處理。
In case of jitter of high-pressure regulating valve, we can first check whether the valve command changes in data for separate processing.
一、閥門指令未發生變化,那么問題就可能出現在伺服卡以及伺服閥之上。若是閥門指令未發生變化并且伺服卡輸出穩定,則問題可能是伺服閥卡澀或者油動機與閥門連接有卡澀。若是此時伺服卡輸出晃動,則可能的問題有:伺服卡PI參數不合理、閥位反饋波動(LVDT故障、LVDT屏蔽不良等問題引起)、伺服卡故障。
1、 If the valve command does not change, the problem may appear on the servo card and servo valve. If the valve command does not change and the servo card output is stable, the problem may be that the servo valve is jammed or the connection between the hydraulic servo motor and the valve is jammed. If the output of the servo card shakes at this time, the possible problems are: unreasonable PI parameters of the servo card, valve position feedback fluctuation (caused by LVDT fault, poor LVDT shielding and other problems), and servo card fault.
二、閥門指令自身發生變化,則我們需要查詢為什么會出現指令的抖動。若是在并網之前就發生指令波動的問題,則原因可能有:轉速PI參數不合理,引起過調;轉速通道故障,引起轉速信號的非正常波動,進而導致轉速回路的輸出波動。而轉速通道故障的可能原因有:磁阻探頭故障、轉速屏蔽不良等。而若是在并網之后發生閥位指令波動,則原因可能有:功率、壓力回路PI參數不合理,導致出現過調;閥門運行在流量曲線拐點處;一次調頻轉速波動;遙控指令波動等。
2、 If the valve command itself changes, we need to query why the command jitter occurs. If the command fluctuation occurs before grid connection, the reasons may be: the speed PI parameter is unreasonable, resulting in overshoot; Speed channel failure causes abnormal fluctuation of speed signal, which leads to output fluctuation of speed circuit. The possible causes of speed channel failure are: magnetoresistive probe failure, poor speed shielding, etc. If the valve position command fluctuates after grid connection, the reasons may be: unreasonable PI parameters of power and pressure circuit, resulting in over regulation; The valve operates at the inflection point of the flow curve; Primary frequency modulation speed fluctuation; Remote control command fluctuation, etc.
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