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hi, i'm jim jones with emerson in this video i'm going to show you what you may need to do before you calibrate this fissure thirty five eighty two pneumatic positioner of course we want to always make sure we review and are familiar with all of the safety precautions and procedures found in the instruction manual for the thirty five eighty two positioner okay the positioner has already been properly mounted onto this fissure six five seven size forty eye direct acting actuator we've hooked up the air supply and made sure the regulator is set to the proper pressure in this case twenty psi and we've installed the airline from the positioner to the actuator so let's first identify the components of the positioner that we'll be working with the d shaped beam here is the summing beam and is the component this flapper assembly moves around on notice the summing beam is labeled direct over here and reverse over here the cam which is attached to the rotary shaft feedback arm is behind the summing being down here at the bottom this cam labeled a is the linear cam make sure the arrow on the cam points in the direction of actuator stem travel on this dret acting actuator increasing diaphragm pressure drives the stem down so the arrow must point down the nozzle is located right here the bellows is behind the beam and in the upper right corner there are two pins and one screw that we will adjust in this initial setup procedure one pin is directly above the nozzle and it's called the beam pivot pin the other pin is located just in front of the bellows and is called the bellows pivot pin the screw, we will adjust is on the flapper assembly we want to make sure that the beam is totally perpendicular to the nozzle so the flapper approaches the nozzle squarely to do that we may need to do a beam alignment now if you have a brand new thirty five eighty two positioner you shouldn't need to do this beam alignment procedure, but it doesn't hurt to check it commonly you will need to check beam alignment if the positioner has been rebuilt in any components replaced if the positioner is to be split ranged or the positioner is acting in a non standard way, step one is to loosen the lock nut around the nozzle turn the nozzle in all the way and then back it out four complete turns step two increase the input signal to the middle of the input range in other words on a three to fifteen psi input take the pressure to nine psi step three move the flapper assembly to place it over the cam down here at position zero now check the rotary shaft arm if the index marks on the arm are not aligned with the ones on the case adjust the follower ascent assembly screw until the marks are aligned when they are parallel tighten the lock nut on this assembly this will be the only time we will need to adjust this screw now in step four we move the flapper assembly to the number ten on the direct side of the beam check the feedback arms if they are not parallel adjust the bellows pin using an eighth inch wrench until they are go to the reverse side and check the arms again if they are not parallel adjust the bean pivot pin above the nozzle you may need to repeat this direct ten reverse ten procedure a few times until there is no movement in the arms and they stay parallel regardless of where the flapper assembly is placed if the arms don't move when the flapper assembly is on either side of the summing beam beam alignment is complete just make sure all the lock nuts are tightened the only thing left to do now is to zero and span the positioner, but i'll show you how to do that in another video so the first part of calibrating a fisher thirty five eighty two positioner is making sure the beam is aligned with the nozzle and we can do that in just four easy steps first turn the nozzle all the way in and then out four complete turns next set the input signal to the middle of its range then move the flapper assembly over the cam and adjust the flapper assembly screw to align the feedback arms step four is to move the flapper assembly from direct ten and then to reverse ten to align those arms using both the bellows pin and the beam pivot pin finally when you're all done tighten up the lock nuts and that's it visit fisher com to learn more about the fisher thirty five eighty, two position or to contact your local emerson sales representative thanks for watching。

fisher dvc 六二零零定位器如何调试?首先调压接入信号源与 heart, 手操二,用 heart 进行调试。


各位工程师朋友,今天咱们来聊聊一台刚修复好的 fish 儿 dvc 两千定位器,陕西的一家能源公司把它寄过来的时候问题可不少,外观有明显磨损, 最关键的是完全不出气了。经过我们专家团队的仔细检测,发现了几个核心故障点。首先是压电阀门的气路堵了,就像水管被杂物堵住一样,气路不通自然没法工作。再就是密封件老化失效,这就好比家里的水龙头,密封圈坏了会漏水, 这里则会导致气压不足。最后还查出放大器也损坏了,相当于控制信号的中转站出了问题。找到问题根源后,我们针对性的进行了维修, 清理,疏通了压电阀门气路,更换了全新的密封件,同时修复了损坏的放大器,全部修好后进行测试,这台定位器运行恢复正常,各项参数都达到了标准, 现在已经修复完成,可以交付客户了。在工业生产中,定位器的稳定运行直接关系到整个系统的效率。大家平时在维护这类设备时,有没有遇到过类似的故障呢?欢迎在评论区交流你们的维修经验。



fisher dvc 六二零零定位器如何调试?首先调压接入信号源与 heart, 手操二,用 heart 进行调试。