Patent classifications
F16K41/103
Diaphragm assembly for a diaphragm valve, and diaphragm valve
A diaphragm assembly for a diaphragm valve is described, which has a diaphragm which includes a functional portion adapted to cooperate with further components of the diaphragm valve and to separate opposite chambers. The diaphragm further includes a tab projecting laterally from the functional portion and having a through-opening provided therein. A marking element is fastened in the through-opening. In addition, a diaphragm valve having such a diaphragm assembly is presented.
FLUID CONTROL VALVE
A regulator performing fluid control includes an annular protruding portion having a valve seat on its leading end and an annular diameter-decreasing surface formed by decreasing an inner diameter of the annular protruding portion toward a valve hole. The regulator includes a valve element provided with a contact surface to be in contact with the valve seat and a columnar step portion provided on an inner peripheral side of the valve seat protruding from the contact surface toward the valve hole, the step portion having a diameter larger than an inner diameter of the valve hole and being coaxially formed with the valve hole. An annular ridge is formed by an outer peripheral surface of the step portion intersecting an end face of the step portion on the valve-hole side with the annular diameter-decreasing surface to constitute a passage narrowing portion.
Selectable on/off sequencing valve
A disclosed system may add different irrigation timing intervals than those of a master flow irrigation system. Electronic timing systems are not used. Native water pressure flowing internally into the system to move components and otherwise control flow ports is used to control timing. A main fluid intake may accept fluid to pressurize and motivate a diaphragm. The diaphragm houses a ratchet flexure finger which may tangentially engage and rotate a gear spindle which is rotationally coupled to and houses one or multiple cams. A 2-way valve is in contact with one of the cams tangentially and centrically via a valve plunger. The cam(s) have lobe(s) with the peak of the profile being the nose and lower profile base circles. As the cam is rotated, it engages with the valve plunger at the nose or base circle, thus opening and closing the 2-way valve and allowing or stopping flow.
SUCK-BACK VALVE
To prevent a defect in which particles such as impurities flow into a liquid that flows in from an inlet flow path and discharged from an outlet flow path. Provided is a suck-back valve including: a housing part; a valve element part; a diaphragm part; an open-close mechanism that brings the valve element part and a valve seat part into contact or separates the valve element part and the valve seat part from each other to switch between a closed state and an open state; and a suck-back mechanism that moves the diaphragm part in a direction in which the diaphragm part separates from the valve seat part to increase a volume of a valve chamber. The valve element part and the diaphragm part are molded integrally, the open-close mechanism is disposed in an adjacent space, and the valve element part and the open-close mechanism are coupled in the adjacent space.
Flow rate control valve and producing method of flow rate control valve
[Object] The present invention provides a flaw rate control valve and a producing method of the flow rate control valve in which cross-linked PTFE having excellent abrasion resistance and capable of reducing a dust-generating amount is used only on a contact portion between a valve body and a valve seat. [Solving Means] According to a flow rate control valve 1 of the invention, a flow path-side body 10 and a valve body 40 are made of fluorine-based resin composed of PFA or PTFE, and an annular or circular seal member 81 made of cross-linked PTFE is joined to a valve body-side abutting portion 40a having a valve seat 13 against which the valve body 40 abuts and to a valve seat-side abutting portion 13a of the valve seat 13 against which the valve body 40 abuts.
Flow dividing valve
A valve element movement mechanism includes: a first valve stem having one end portion to which a first valve element to close and open an area between one of the large diameter portion and the small diameter portion is fixed; a second valve stem having one end portion to which a second valve element to close and open an area between the other of the large diameter portions and the small diameter portion is fixed; a first bellows having one end portion fixed to a first bellows flange and the other end portion fixed to the first valve element; a second bellows having one end portion fixed to a second bellows flange and the other end portion fixed to the second valve element; a frame disposed outside the main passage; and an actuator to move the frame in the directions in which valve elements are closed and opened.
VALVE AND VALVE MEMBER FOR CONTROLLING FLUID FLOW
This application provides a valve member that includes a diaphragm portion and a valve head attachable to the diaphragm portion. The valve head includes an engagement portion configured to engage with a valve seat defined in the valve. The engagement portion is formed of a melt processable material that contains at least one fluoropolymer. The diaphragm portion is formed of a material that is non-melt processable and contains at least one fluoropolymer. This application also provides a valve that includes the valve member and a passageway with the valve seat. The valve head is configured to be moveable relative to the valve seat.
Connection adapter as a test port, including shutoff device
A connection adapter for connecting a process chamber to a measuring system, in particular to a pressure, density or temperature measuring system, which includes at least three ports, having a process port, the process port being connected or connectable to the process chamber, a measuring port, the measuring system being connected or connectable to the measuring port, and an access port, which includes a self-sealing coupling. The connection adapter, furthermore includes a line system, having lines and at least one closable shutoff device. The line system connecting the process port to the measuring port and the access port, the connection between the process port and the measuring port being blockable gas-tight with the aid of the shutoff device, and the access port being connected or connectable to the measuring port via the line system. A measuring apparatus having a connection adapter is also provided.
One-way storage basin valve
A one-way valve is provided. The one-way valve includes a base having a first ring wall including a first aperture disposed therethrough. The base further includes a second ring wall coaxial with the first ring wall. The second ring wall includes a second aperture disposed therethrough and angularly offset from the first aperture. The base further includes a central arching surface. The one-way valve includes a diaphragm disposed on the central arching surface. The one-way valve further includes a cover secured to the base and defining an annular skirt region. The one-way valve further includes a seal disposed in the annular skirt region.
Control plate in a valve
A control plate for effecting superior shut-off in a proportional control valve comprises a moveable disk-shaped element that has a flat surface, generally perpendicular to the valve axis of symmetry when closed, and translates toward or away from an orifice surrounded by a narrow lip or orifice ridge. Enhanced leak tightness in the valve shut-off condition is achieved by selectively incorporating into the control plate materials that are softer than the material comprising the orifice ridge.