WO2018153203A1 - 电动衬氟波纹管单座调节阀 - Google Patents

电动衬氟波纹管单座调节阀 Download PDF

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Publication number
WO2018153203A1
WO2018153203A1 PCT/CN2018/073992 CN2018073992W WO2018153203A1 WO 2018153203 A1 WO2018153203 A1 WO 2018153203A1 CN 2018073992 W CN2018073992 W CN 2018073992W WO 2018153203 A1 WO2018153203 A1 WO 2018153203A1
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WIPO (PCT)
Prior art keywords
valve
valve body
cover
valve cover
electric
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PCT/CN2018/073992
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English (en)
French (fr)
Inventor
毛春龙
毛金根
陈善俊
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江苏金晟元特种阀门股份有限公司
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Publication of WO2018153203A1 publication Critical patent/WO2018153203A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K41/00Spindle sealings
    • F16K41/10Spindle sealings with diaphragm, e.g. shaped as bellows or tube
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K1/00Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
    • F16K1/32Details
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K1/00Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
    • F16K1/32Details
    • F16K1/34Cutting-off parts, e.g. valve members, seats
    • F16K1/36Valve members
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K37/00Special means in or on valves or other cut-off apparatus for indicating or recording operation thereof, or for enabling an alarm to be given
    • F16K37/0075For recording or indicating the functioning of a valve in combination with test equipment
    • F16K37/0083For recording or indicating the functioning of a valve in combination with test equipment by measuring valve parameters

Definitions

  • the invention relates to a special valve, in particular to a special valve for chlorine gas and chlorine water.
  • the present invention provides an electric lining fluorine bellows single seat regulating valve.
  • the invention comprises a valve body, a valve cover, a valve stem and a valve core
  • the valve body comprises an inlet and an outlet
  • the valve body is further provided with a mounting connection port
  • the inlet and the outlet respectively provide an interface flange
  • the installation connection a middle flange
  • a middle portion of the water passage between the inlet and the outlet of the valve body is provided with a sealing end surface that cooperates with the valve core
  • the valve core is fixed at one end of the valve stem
  • the valve core is disposed at the valve
  • the valve core is closely matched with the sealing end surface of the water channel
  • the mounting connection port is connected to the valve cover through a middle flange
  • a valve stem connecting the valve core is disposed in the valve body
  • the valve The cover is fixedly connected to the middle flange by a bolt and a nut
  • the valve stem passes through the central through hole of the valve cover
  • a packing sealing mechanism is disposed between the valve cover and the upper portion of the valve stem; inside the
  • the invention adopts a polytetrafluoroethylene bellows as the first sealing, effectively protecting the medium from leaking from the valve stem, and forming zero leakage; in addition, the valve is opened and closed by the electric actuator, and the stroke is accurate, safe and reliable.
  • the invention provides a pipe joint between the valve cover and the valve body, one end of the pipe joint closely matches the end surface of the middle flange, and the other end of the pipe joint closely matches the end surface of the valve cover
  • the inner side wall and the end faces of the pipe are completely lined with fluoroplastic, and the valve cover and the middle flange of the valve body are connected by long bolts and nuts, and the long bolts are connected to the outside through the pipe;
  • the function of the fixed bellows effectively prevents the deformation of the Teflon bellows from being damaged and causes leakage, resulting in a longer service life.
  • the middle flange end surface is provided with a concave surface, and the tube joint is tightly fitted in the concave surface, and the concave connection is more stable and the sealing effect is better.
  • the packing sealing mechanism of the present invention is a V-type multi-stage sealing ring assembly, and the V-shaped multi-stage sealing ring combination is disposed in a stuffing box between the valve cover and the valve stem, and the packing pressure is screwed at the opening of the stuffing box a cover, a packing pressure rod is pressed against the V-type multi-stage sealing ring assembly, and the packing gland is placed on the valve stem; the packing seal here serves as an insurance seal on the upper part of the bellows to prevent leakage of the ring.
  • the stuffing box is in a dormant state. Once it is found to leak from the valve stem, the nut on the packing gland is tightened to achieve the insurance function.
  • the valve core of the present invention comprises a valve flap, the valve flap is coated with a layer of polytetrafluoroethylene composite material, the valve flap is matched with the sealing surface end surface of the valve body, and one end of the polytetrafluoroethylene bellows is
  • the PTFE composite material layer of the valve disc is welded as one body; the integral setting can ensure the service life requirement of the valve for long-term continuous use.
  • a tapered and planar sealing structure is adopted between the valve flap of the present invention and the sealing end surface of the valve body water channel.
  • the upper end of the valve stem of the present invention is connected to the valve stem lifting device, and the valve stem lifting device comprises a positioning block matched with the bracket, and the lower end of the bracket connecting the electric actuator is fixed on the upper part of the valve cover, the bracket comprises two a root post, an upper support plate, a lower support plate, wherein the lower support plate is centrally provided with a through hole, the lower support plate is sleeved on the upper end of the valve cover through the through hole and rests on the step on the valve cover,
  • the upper end of the upper end of the bonnet is provided with a thread, and the upper end of the bonnet is screwed to the nut by a nut, and the nut is pressed against the lower support plate; the upper and lower support plates are supported by the two pillars, and the two pillars are connected
  • the positioning block is disposed between the two positioning plates, and the two positioning plates are fixed from the side by bolts and nuts into positioning blocks, and the central portions of each positioning plate are respectively provided with arc
  • the curved groove is formed into a ball receiving cavity, and one end of each positioning plate is provided with a curved surface, and the curved faces of the ends of the two positioning plates are combined into a large curved surface, and one end of the positioning block passes through the large arc Face and sides
  • the column is anastomosed to form a positioning and guiding;
  • the upper end of the valve stem is provided with a ball head;
  • the electric actuator is fixed on the top end of the bracket, and the output end of the electric actuator is arranged as a ball head, and the upper end of the valve stem is
  • the lower end of the electric actuator is connected to the ball receiving chamber by a ball end limit.
  • the invention is guided by the positioning block and the pillar, and the output ends of the valve stem and the electric actuator are respectively connected in the positioning block through the ball head.
  • the output end of the electric actuator is rotated to perform the upper and lower movement, and the electric actuator is positioned.
  • the block drives the valve stem up and down, so that the lower valve stem can only be lifted and moved, and no rotary motion is performed. If the rotary motion is performed, the bellows will be twisted, and the horizontal positioning block is used as the valve opening indication, which is the valve. How much is turned on, now adjusted by electric actuators, the control is more precise.
  • a scale scale is disposed on the pillar of the bracket not connected to the positioning block, and the free end of the positioning block is disposed as a triangular tip, and the pointed end of the positioning block is disposed corresponding to the scale scale.
  • valves on chlorine pipelines with high water content are traditional fluoroplastic full-line shut-off valves. These valves are old-fashioned, ordinary flat type, generally plain carbon steel lining, and some even cast iron lining.
  • the service performance of the product can not meet the safety requirements of the actual operation of the working condition, and often leaks, the shell is easy to perforate, making the chemical industry, especially the chlor-alkali chemical enterprise, the valve of the system often needs maintenance and replacement, which has great impact on the production of the enterprise.
  • Figure 1 is a schematic view of the structure of the present invention.
  • the electric lining fluorine bellows single seat regulating valve comprises a valve body 1 , a valve cover 2 , a valve stem 3 , a valve core 4 , and the valve body 1 includes an inlet 5 and an outlet 6 , and the valve body 1 is further provided.
  • the connection port 7 is installed, the inlet and outlet 5, 6 are respectively provided with an interface flange 8, and the installation connection port 7 is provided with a middle flange 9.
  • the middle section of the water passage between the inlet and the outlet of the valve body 1 is provided with a sealing end face 10 which cooperates with the valve core 4.
  • the valve core 4 is fixed at one end of the valve stem 3, the valve core 4 is disposed in the valve body 1, the valve core 4 is closely matched with the sealing end surface 10 of the water channel, and the mounting connection port 7 is connected to the valve cover through the middle flange 9 to connect the valve core A section of the valve stem 3 is disposed in the valve body 1.
  • the valve cover 2 is fixedly connected to the middle flange 9 by bolts and nuts, and the valve stem 3 passes through the central through hole of the valve cover 2 at the upper part of the valve cover 2 and the valve stem 3.
  • a packing sealing mechanism 11 is disposed between the inner side wall of the valve body 1, the end surface of the middle flange 9 and the end surface of the interface flange 8 respectively lined with the fluoroplastic layer 12; the PTFE layer is disposed on the valve stem 3 in the valve body 1
  • the tube 13 and the two ends of the Teflon bellows 13 are respectively in contact with the inner end surface of the valve cover and the end surface of the valve core, and a seal is arranged between the upper end portion of the Teflon bellows 13 and the valve cover 2 Structure 14, the upper end of the valve body 1 is fixedly connected to the electric actuator 36 through the branch 35, the output of the top 36 and the electric actuator 3 is fixed to the valve stem.
  • the upper end of the valve stem 3 is connected to the valve stem lifting device 15.
  • the valve stem lifting device 15 includes a positioning block 19 that cooperates with the bracket 35.
  • the lower end of the bracket 35 that connects the electric actuator 36 is fixed to the upper portion of the valve cover 2.
  • the bracket 35 includes two pillars 18 , the upper support plate 16 , the lower support plate 17 , the lower support plate 17 is centrally provided with a through hole, and the lower support plate 17 is placed on the upper end of the valve cover 2 through the through hole and rests on the step of the valve cover 2 at the upper end of the valve cover 2
  • the outer side wall is provided with a thread, the upper end of the valve cover 2 is screwed to the nut 22, and the nut 22 is pressed against the lower support plate 17; the upper and lower support plates 16 and 17 are supported by the two pillars 18, between the two pillars 18.
  • the positioning block 19 is provided.
  • the positioning block 19 is composed of two half positioning plates 24, and the two positioning plates 24 are fixed from the side by bolts and nuts into positioning blocks 19, and the central portions of each positioning plate 24 are respectively provided with arc-shaped grooves and two halves.
  • the groove is formed into a ball receiving cavity, and one end of each positioning plate 19 is respectively provided with a curved surface, and the curved surface of the end portion of the positioning plate 19 is combined into a large curved surface, and one end of the positioning block 19 passes through the large curved surface.
  • the upper end of the rod 3 is provided with a ball head
  • the electric actuator 36 is fixed on the top end of the bracket 35
  • the output end of the electric actuator 36 is arranged as a ball head
  • the upper end of the valve stem 3 and the lower end of the electric actuator 36 are respectively connected through the ball end limit.
  • the ball head accommodates the cavity.
  • a scale scale 20 is disposed on the pillar of the bracket 35 to which the positioning block 19 is not connected.
  • the free end of the positioning block 19 is provided as a triangular tip, and the pointed end of the positioning block 19 is disposed corresponding to the scale scale 20.
  • a pipe joint 27 is disposed between the valve cover 2 and the valve body 1, and one end of the pipe joint 27 is tightly fitted with the end surface of the middle flange 9, and the other end of the pipe joint 27 is closely matched with the end surface of the valve cover 2, and the inner side of the pipe joint 27
  • the wall and the end faces are completely lined with a fluoroplastic layer, and the valve cover 2 and the middle flange 9 of the valve body 1 are connected by a long bolt 28 and a nut 29, and the long bolt 28 passes through the outer side of the pipe joint 27;
  • the concave surface 30, the pipe joint 27 is tightly fitted in the concave surface 30; the pipe joint 27 has the function of fixing the bellows, effectively preventing the deformation of the Teflon bellows and causing leakage, thereby prolonging the service life.
  • the packing sealing mechanism 11 is a V-type multi-stage sealing ring assembly 31.
  • the V-type multi-stage sealing ring assembly 31 is disposed in the stuffing box 32 between the valve cover 2 and the valve stem 3, and the packing gland is screwed at the opening of the stuffing box 32. 33.
  • the packing gland 33 presses the V-type multi-stage seal ring assembly 31, and the packing gland 33 is placed on the valve stem 3; the packing seal here serves as a safety seal for the upper portion of the bellows.
  • the valve core 4 includes a valve flap 34, the valve flap 34 is covered with a layer of polytetrafluoroethylene composite material, the valve flap 34 is matched with the sealing surface of the valve body 1, and the end of the polytetrafluoroethylene bellows 13 is assembled with the valve flap 34.
  • the fluoroethylene composite material layer is welded integrally; a cone and a flat sealing structure are adopted between the valve flap 34 and the sealing end surface of the valve body 1 water channel.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Details Of Valves (AREA)

Abstract

公开了一种电动衬氟波纹管单座调节阀,其包括阀体(1)、阀盖(2)、阀杆(3)、阀芯(4),阀体(1)还设有安装连接口(7),安装连接口(7)设置中法兰(9),阀体(1)进、出口(5、6)之间的水道中段设置有与阀芯(4)配合的密封端面(10),阀芯(4)固定在阀杆(3)的一端,阀芯(4)设置在阀体(1)内,安装连接口(7)通过中法兰(9)连接阀盖(2),在阀盖(2)与阀杆(3)的上部之间设置填料密封机构(11);在阀体(1)内的阀杆(3)上设置聚四氟乙烯波纹管(13),聚四氟乙烯波纹管(13)两端分别与阀盖(2)内端面、阀芯(4)端面抵触,在阀体(1)的上端通过支架(35)固定连接电动执行器(36),电动执行器(36)的输出端与阀杆(3)的顶端固定连接。该电动衬氟波纹管单座调节阀采用聚四氟乙烯波纹管作为第一道密封,有效保护介质无法从阀杆处泄漏,构成零泄漏;通过电动执行器控制阀门打开、关闭,行程准确,安全可靠。

Description

电动衬氟波纹管单座调节阀 技术领域
本发明涉及一种特种阀门,特别涉及氯气、氯水专用阀。
技术领域
为了克服现有技术的缺陷,本发明提供一种电动衬氟波纹管单座调节阀。
本发明包括阀体、阀盖、阀杆、阀芯,所述阀体包括进口、出口,所述阀体还设有安装连接口,所述进、出口分别设置接口法兰,所述安装连接口设置中法兰,所述阀体进、出口之间的水道中段设置有与阀芯配合的密封端面,所述阀芯固定在所述阀杆的一端,所述阀芯设置在所述阀体内,所述阀芯与所述水道的密封端面紧密配合,所述安装连接口通过中法兰连接所述阀盖,连接所述阀芯的一段阀杆设置在所述阀体内,所述阀盖通过螺栓、螺母与所述中法兰固定连接,所述阀杆穿过阀盖中心通孔,在所述阀盖与所阀杆的上部之间设置填料密封机构;在所述阀体内侧壁、中法兰端面、接口法兰端面分别全衬氟塑料层;在所述阀体内的阀杆上设置聚四氟乙烯波纹管,所述聚四氟乙烯波纹管两端分别与阀盖内端面、阀芯端面抵触,在所述聚四氟乙烯波纹管上端部与所述阀盖之间设置密封机构,在所述阀体的上端通过支架固定连接电动执行器,所述电动执行器的输出端与所述阀杆的顶端固定连接。
本发明采用聚四氟乙烯波纹管作为第一道密封,有效保护介质无法从阀杆处泄漏,构成零泄漏;另外通过电动执行器控制阀门打开,关闭,行程准确,安全可靠。
本发明在所述阀盖与所述阀体之间设置一段管接,所述管接的一端与所述中法兰端面紧密配合,所述管接的另一端与所述阀盖端面紧密配合,所述管接内侧壁及两端端面全衬氟塑料,所述阀盖与所述阀体的中法兰之间通过长螺栓、螺母连接,长螺栓经过所述管接外侧;管接有固定波纹管的作用,有效防止聚四氟乙烯波纹管变形而损坏,造成泄漏,从而使用寿命更长。
进一步的,所述中法兰端面设置一圈凹面,所述管接紧密配合在所述凹面内,通过凹面连接更稳定、密封效果更好。
本发明所述填料密封机构为V型多级密封圈组合,所述V型多级密封圈组合设置在阀盖与所述阀杆之间的填料函内,在填料函开口处螺纹连接填料压盖,填料压杆压紧所述V型多级密封圈组合,所述填料压盖穿置在所述阀杆上;此处的填料密封作为波纹管上部的保险密封,是防止戒指外漏,波纹管不坏的情况下,该填料函处于休眠状态,一旦发现从阀杆处外漏,才收紧填料压盖上的螺母,达到保险作用。
本发明所述阀芯包括阀瓣,所述阀瓣包覆有聚四氟乙烯复合材料层,所述阀瓣与所述阀体水道密封端面配合,所述聚四氟乙烯波纹管的一端与所述阀瓣的聚四氟乙烯复合材料层焊接为一体;一体设置可以保证阀门长期持续使用的寿命要求。
本发明所述阀瓣与所述阀体水道的密封端面之间采用锥、平面型密封结构。
本发明所述阀杆的上端连接阀杆升降装置,所述阀杆升降装置包括与支架配合的定位块,连接电动执行器的所述支架下端固定在所述阀盖上部,所述支架包括两根支柱、上支撑板、下支撑板,所述下支撑板中心设置通孔,所述下支撑板通过通孔套置在所述阀盖上端部并搁置于阀盖上台阶上,在所述阀盖上端部外侧壁设置螺纹,阀盖上端通过螺纹连接螺母,螺母压紧所述下支撑板;所述上、下支撑板之间通过两根所述支柱支撑连接,在所述两根支柱之间设置所述定位块,所述定位块由两半定位板组成,两半所述定位板从侧面通过螺栓、螺母固定成定位块,各定位板中部分别设有弧形凹槽,两半弧形凹槽合成一个球头容纳腔,各定位板的其中一个端部设置弧形面,两个定位板端部的弧形面拼合成一个大弧面,所述定位块其中一端通过大弧面与两侧所述支柱吻合,形成定位、导向;所述阀杆的上端设置球头;所述电动执行器固定在所述支架顶端,所述电动执行器的输出端设置成球头,所述阀杆的上端、电动执行器的下端分别通过球头限位连接在所述球头容纳腔内。
本发明通过定位块与支柱配合导向,阀杆、电动执行器的输出端分别通过球头连接在定位块内,启动后,电动执行器的输出端旋转做上、下运动,电动执行器通过定位块带动阀杆上、下运动,这样保证下部阀杆只做升降运动,不做旋转运动,如果做旋转运动,会扭坏波纹管,同时这个横的定位块又作阀门开度指示,就是阀门打开多少,现在通过电动执行器调整,控制更为精确。
本发明在所述支架未连接所述定位块的支柱上设置刻度标尺,所述定位块的自由端设置成三角尖头,所述定位块的尖头端与所述刻度标尺对应设置。通过标尺和尖头的直观显示,可以看出阀杆的行程距离。
背景技术
目前,国内使用在含水量高的氯气管路上的阀门,是传统的氟塑料全衬截止阀,该类阀门结构陈旧,为普通平面型,一般为普通碳钢衬里,有的甚至是铸铁衬里,其产品使用性能不能满足工况实际运行的安全要求,经常泄漏,壳体易穿孔,使得化工企业特别是氯碱化工企业,该系统阀门经常需要维护和更换,给企业生产带来极大影响。
附图说明
图1为本发明的一种结构示意图。
具体实施方式
如图1所示,本电动衬氟波纹管单座调节阀,包括阀体1、阀盖2、阀杆3、阀芯4,阀体1包括进口5、出口6,阀体1还设有安装连接口7,进、出口5、6分别设置接口法兰8,安装连接口7设置中法兰9,阀体1进、出口之间的水道中段设置有与阀芯4配合的密封端面10,阀芯4固定在阀杆3的一端,阀芯4设置在阀体1内,阀芯4与水道的密封端面10紧密配合,安装连接口7通过中法兰9连接阀盖,连接阀芯4的一段阀杆3设置在阀体1内,阀盖2通过螺栓、螺母与中法兰9固定连接,阀杆3穿过阀盖2中心通孔,在阀盖2与阀杆3的上部之间设置填料密封机构11;在阀体1内侧壁、中法兰9端面、接口法兰8端面分别全衬氟塑料层12;在阀体1内的阀杆3上设置聚四氟乙烯波纹管13,聚四氟乙烯波纹管13两端分别与阀盖内端面、阀芯端面抵触,在聚四氟乙烯波纹管13上端部与阀盖2之间设置密封机构14,在阀体1的上端通过支35固定连接电动执行器36,电动执行器36的输出端与阀杆3的顶端固定连接。
阀杆3的上端连接阀杆升降装置15,阀杆升降装置15包括与支架35配合的定位块19,连接电动执行器36的支架35下端固定在阀盖2上部,支架35包括两根支柱18、上支撑板16、下支撑板17,下支撑板17中心设置通孔,下支撑板17通过通孔套置在阀盖2上端部并搁置于阀盖2上台阶上,在阀盖2上端部外侧壁设置螺纹,阀盖2上端通过螺纹连接螺母22,螺母22压紧下支撑板17;上、下支撑板16、17之间通过两根支柱18支撑连接,在两根支柱18之间设置定位块19,定位块19由两半定位板24组成,两半定位板24从侧面通过螺栓、螺母固定成定位块19,各定位板24中部分别设有弧形凹槽,两半弧形凹槽合成一个球头容纳腔,各定位板19的其中一个端部分别设置弧形面,定位板19此端部的弧形面拼合成一个大弧面,定位块19其中一端通过大弧面与其中一根支柱18吻合,形成定位、导向;阀杆3的上端设置球头,电动执行器36固定在支架35顶端,电动执行器36的输出端设置成球头,阀杆3的上端、电动执行器36的下端分别通过球头限位连接在球头容纳腔内。在支架35未连接定位块19的支柱上设置刻度标尺20,定位块19的自由端设置成三角尖头,定位块19的尖头端与刻度标尺20对应设置。
进一步的在阀盖2与阀体1之间设置一段管接27,管接27的一端与中法兰9端面紧密配合,管接27的另一端与阀盖2端面紧密配合,管接27内侧壁及两端端面全衬氟塑料层,阀盖2与阀体1的中法兰9之间通过长螺栓28、螺母29连接,长螺栓28经过管接27外侧;中法兰9端面设置一圈凹面30,管接27紧密配合在凹面30内;管接27有固定波纹管的作用,有效防止聚四氟乙烯波纹管变形而损坏,造成泄漏,从而使用寿命更长。
填料密封机构11为V型多级密封圈组合31,V型多级密封圈组合31设置在阀盖2与阀杆3之间的填料函32内,在填料函32开口处螺纹连接填料压盖33,填料压盖33压紧V型多级密封圈组合31,填料压盖33穿置在阀杆3上;此处的填料密封作为波纹管上部的保险密封。
阀芯4包括阀瓣34,阀瓣34包覆有聚四氟乙烯复合材料层,阀瓣34与阀体1水道密封端面配合,聚四氟乙烯波纹管13的一端与阀瓣34的聚四氟乙烯复合材料层焊接为一体;阀瓣34与阀体1水道的密封端面之间采用锥、平面型密封结构。

Claims (8)

  1. 电动衬氟波纹管单座调节阀,包括阀体、阀盖、阀杆、阀芯,所述阀体包括进口、出口,所述阀体还设有安装连接口,所述进、出口分别设置接口法兰,所述安装连接口设置中法兰,所述阀体进、出口之间的水道中段设置有与阀芯配合的密封端面,所述阀芯固定在所述阀杆的一端,所述阀芯设置在所述阀体内,所述阀芯与所述水道的密封端面紧密配合,所述安装连接口通过中法兰连接所述阀盖,连接所述阀芯的一段阀杆设置在所述阀体内,所述阀盖通过螺栓、螺母与所述中法兰固定连接,所述阀杆穿过阀盖中心通孔,在所述阀盖与所阀杆的上部之间设置填料密封机构;在所述阀体内侧壁、中法兰端面、接口法兰端面分别全衬氟塑料层;在所述阀体内的阀杆上设置聚四氟乙烯波纹管,所述聚四氟乙烯波纹管两端分别与阀盖内端面、阀芯端面抵触,在所述聚四氟乙烯波纹管上端部与所述阀盖之间设置密封机构,其特征在于在所述阀体的上端通过支架固定连接电动执行器,所述电动执行器的输出端与所述阀杆的顶端固定连接。
  2. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于在所述阀盖与所述阀体之间设置一段管接,所述管接的一端与所述中法兰端面紧密配合,所述管接的另一端与所述阀盖端面紧密配合,所述管接内侧壁及两端端面全衬氟塑料,所述阀盖与所述阀体的中法兰之间通过长螺栓、螺母连接,长螺栓经过所述管接外侧。
  3. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于所述中法兰端面设置一圈凹面,所述管接紧密配合在所述凹面内。
  4. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于所述填料密封机构为V型多级密封圈组合,所述V型多级密封圈组合设置在阀盖与所述阀杆之间的填料函内,在填料函开口处螺纹连接填料压盖,填料压杆压紧所述V型多级密封圈组合,所述填料压盖穿置在所述阀杆上。
  5. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于所述阀芯包括阀瓣,所述阀瓣包覆有聚四氟乙烯复合材料层,所述阀瓣与所述阀体水道密封端面配合,所述聚四氟乙烯波纹管的一端与所述阀瓣的聚四氟乙烯复合材料层焊接为一体。
  6. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于所述阀瓣与所述阀体水道的密封端面之间采用锥、平面型密封结构。
  7. 根据权利要求1所述的电动衬氟波纹管单座调节阀,其特征在于所述阀杆的上端连接阀杆升降装置,所述阀杆升降装置包括与支架配合的定位块,连接电动执行器的所述支架下端固定在所述阀盖上部,所述支架包括两根支柱、上支撑板、下支撑板,所述下支撑板中心设置通孔,所述下支撑板通过通孔套置在所述阀盖上端部并搁置于阀盖上台阶上,在所述阀盖 上端部外侧壁设置螺纹,阀盖上端通过螺纹连接螺母,螺母压紧所述下支撑板;所述上、下支撑板之间通过两根所述支柱支撑连接,在所述两根支柱之间设置所述定位块,所述定位块由两半定位板组成,两半所述定位板从侧面通过螺栓、螺母固定成定位块,各定位板中部分别设有弧形凹槽,两半弧形凹槽合成一个球头容纳腔,各定位板的其中一个端部设置弧形面,两个定位板端部的弧形面拼合成一个大弧面,所述定位块其中一端通过大弧面与两侧所述支柱吻合,形成定位、导向;所述阀杆的上端设置球头;所述电动执行器固定在所述支架顶端,所述电动执行器的输出端设置成球头,所述阀杆的上端、电动执行器的下端分别通过球头限位连接在所述球头容纳腔内。
  8. 根据权利要求7所述的电动衬氟波纹管单座调节阀,其特征在于在所述支架未连接所述定位块的支柱上设置刻度标尺,所述定位块的自由端设置成三角尖头,所述定位块的尖头端与所述刻度标尺对应设置。
PCT/CN2018/073992 2017-02-24 2018-01-24 电动衬氟波纹管单座调节阀 WO2018153203A1 (zh)

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