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爱尔泰克电磁阀M-06-533-HN+23-SP-011-4
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德国REXROTH伺服电机R911402253 MKE047
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3842547785力士乐REXROTH挡停器
3842547516力士乐REXROTH防护带导向
品牌厂家 | 本特利 | 订货型号 | 6DR4004-5PB |
产品名称 | 阀门定位器 | 应用范围 | 工业备件 |
工作压力 | 70 | 环境温度 | 25 |
介质 | 电信号 | 产地 | 德国 |
质保 | 一年 | 供应单位 | 件 |
西门子阀门定位器6DR4004-5PB 武汉百士自动化设备有限公司供应产品,原厂原装,质量保障,价格优惠;移动电话:15307150607(同微信),电话:027-87680708-604,商务QQ:3319918908,邮箱:3319918908@qq.com,传真:027-87680708-608,联系人:李锐;欢迎新老客户咨询购买!
1. 前置器从工厂供货时已经过AISI4140钢校准。也可以按用户的要求对其它靶面材料进行校准。
安装附件
在安装过程中以及安装后必须定期对传感器系统的正确运行进行校验,校验方法是移动传感器系统以模拟凸缘的运动。这种方法需要通过安装支架使传感器系统相对于轴转子和凸缘滑动。
对于单个传感器和补偿式输入的25 mm 差胀传感器应用,可订购可选的3300 XL 滑动支架。该支架可使传感器系统的精确校验更容易,并能够调整探头间隙,使传感器系统在线性范围内滑动。滑动支架的底板安装在差胀凸缘附近的透平壳体内表面上。探头安装
在附着于滑板上的探头座上。滑板在底板上滑动,并通过螺栓和安全导线固定在底板上。在校验和安装传感器时,松开将滑板固定在底板上的绑带,移动滑板和探头。千分表校验组件通过测量滑板的运动为校验提供参考。3300 XL 滑动支架帮助确保传感器系统与转子对中并垂直。
西门子阀门定位器6DR4004-5PB
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阀门定位器能够增大调节阀的输出功率,减少调节信号的传递滞后的情况发生,加快阀杆的移动速度,能够提高阀门的线性度,克服阀杆的摩擦力并消除不平衡力的影响,从而保证调节阀的正确定位。
定位器分类
阀门定位器按输入信号分为气动阀门定位器、电-气阀门定位器和智能阀门定位器。气动阀门定位器的输入信号是标准气信号,例如,20~100kPa气信号,其输出信号也是标准的气信号。电气阀门定位器的输入信号是标准电流或电压信号,例如,4~20mA电流信号或1~5V电压信号等,在电气阀门定位器内部将电信号转换为电磁力,然后输出气信号到拨动控制阀。智能电气阀门定位器它将控制室输出的电流信号转换成驱动调节阀的气信号,根据调节阀工作时阀杆摩擦力,抵消介质压力波动而产生的不平衡力,使阀门开度对应于控制室输出的电流信号,并且可以进行智能组态设置相应的参数,达到改善控制阀性能的目的。
按动作的方向可分为单向阀门定位器和双向阀门定位器。单向阀门定位器用于活塞式执行机构时,阀门定位器只有一个方向起作用,双向阀门定位器作用在活塞式执行机构气缸的两侧,从两个方向起作用。
按阀门定位器输出和输入信号的增益符号分为正作用阀门定位器和反作用阀门定位器。正作用阀门定位器的输入信号增加时,输出信号也增加,因此,增益为正。反作用阀门定位器的输入信号增加时,输出信号减小,因此,增益为负。
按阀门定位器输入信号是模拟信号或数字信号,可分为普通阀门定位器和现场总线电气阀门定位器。普通阀门定位器的输入信号是模拟气压或电流、电压信号,现场总线电气阀门定位器的输入信号是现场总线的数字信号。
按阀门定位器是否带CPU可分为普通电气阀门定位器和智能电气阀门定位器。普通电气阀门定位器没有CPU,因此,不具有智能,不能处理有关的智能运算。智能电气阀门定位器带CPU,可处理有关智能运算,例如,可进行前向通道的非线性补偿等,现场总线电气阀门定位器还可带PID等功能模块,实现相应的运算。
按反馈信号的检测方法也可进行分类。
例如,用机械连杆方式检测阀位信号的阀门定位器;用霍尔效应检测位移的方法检测阀杆位移的阀门定位器;用电磁感应方法检测阀杆位移的阀门定位器等。
工作原理
阀门定位器是控制阀的主要附件.它将阀杆位移信号作为输入的反馈测量信号,以控制器输出信号作为设定信号,进行比较,当两者有偏差时,改变其到执行机构的输出信号,使执行机构动作,建立了阀杆位移量与控制器输出信号之间的一一对应关系。因此,阀门定位器组成以阀杆位移为测量信号,以控制器输出为设定信号的反馈控制系统。该控制系统的操纵变量是阀门定位器去执行机构的输出信号。
定位器作用原理
(1)用于对调节质量要求高的重要调节系统,以提高调节阀的定位精确及可靠性。
(2)用于阀门两端压差大( △p>1MPa)的场合。通过提高气源压力增大执行机构的输出力,以克服液体对阀芯产生的不平衡力,减小行程误差。
(3)当被调介质为高温、高压、低温、有毒、易燃、易爆时,为了防止对外泄漏,往往将填料压得很紧,因此阀杆与填料间的摩擦力较大,此时用定位器可克服时滞。
(4)被调介质为粘性流体或含有固体悬浮物时,用定位器可以克服介质对阀杆移动的阻力。
(5)用于大口径(Dg>100mm)的调节阀,以增大执行机构的输出推力。
(6)当调节器与执行器距离在60m以上时,用定位器可克服控制信号的传递滞后,改善阀门的动作反应速度。
(7)用来改善调节阀的流量特性。
(8)一个调节器控制两个执行器实行分程控制时,可用两个定位器,分别接受低输入信号和高输入信号,则一个执行器低程动作,另一个高程动作,即构成了分程调节。
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