Valve automation mechanism and valve automation method
US-2024019041-A1 · Jan 18, 2024 · US
US11506301B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11506301-B2 |
| Application number | US-202117452088-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 25, 2021 |
| Priority date | Nov 16, 2020 |
| Publication date | Nov 22, 2022 |
| Grant date | Nov 22, 2022 |
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A flow rate adjusting valve, in which a needle valve is arranged so as to face a fluid passage of a main body, is equipped with a handle configured to enable a rotational operation to be performed manually, an electric motor configured to be operated remotely, and a motive power transmission mechanism that selectively switches between a rotational operating force of the handle and a driving force of the electric motor, and to transmit the force to the needle valve. The switching is performed by causing the handle to be moved in a direction of an axis of rotation.
Opening claim text (preview).
What is claimed is: 1. A flow rate adjusting valve in which a needle valve is arranged so as to face a fluid passage of a main body, the flow rate adjusting valve comprising: a handle configured to enable a rotational operation to be performed manually; an electric motor configured to be operated remotely; and a motive power transmission mechanism configured to selectively switch between a rotational operating force of the handle and a driving force of the electric motor, and to transmit the force to the needle valve, wherein the switching is performed by causing the handle to be moved in a direction of an axis of rotation, wherein: the handle is configured to be moved along the axis of rotation of the handle in first and second directions that are mutually opposite to each other; when the handle is pulled and moved in the first direction, a motive power transmission path between the handle and the needle valve is made continuous, and a motive power transmission path between the electric motor and the needle valve is interrupted midway; and when the handle is pushed and moved in the second direction, the motive power transmission path between the handle and the needle valve is interrupted midway, and the motive power transmission path between the electric motor and the needle valve is made continuous, and wherein: each of the handle and a handle supporting member of the main body comprises splines, the splines of the handle and the splines of the handle supporting member being configured to be mutually engaged; and when the handle is moved in the second direction from an end of movement in the first direction, the splines of the handle encase with the splines of the handle supporting member, whereby rotation of the handle is prevented. 2. The flow rate adjusting valve according to claim 1 , further comprising a cover configured to accommodate the electric motor and the motive power transmission mechanism in cooperation with the main body, wherein the cover includes a recess into which the handle enters when the handle is moved to an end of movement in the second direction. 3. The flow rate adjusting valve according to claim 1 , wherein: the motive power transmission mechanism includes a feed screw configured to be screw-engaged with the needle valve, rotation of the needle valve about a central axis is restricted; movement of the feed screw in an axial direction is restricted; and when the screw is rotated, the needle valve moves in the axial direction. 4. The flow rate adjusting valve according to claim 3 , wherein: the motive power transmission mechanism includes a stem configured to move in an axial direction of the feed screw; the feed screw rotates integrally with the stem; and the rotational operating force of the handle and the driving force of the electric motor are transmitted to the needle valve via the stem and the feed screw. 5. The flow rate adjusting valve according to claim 4 , wherein: when the handle moves in the first direction from an end of movement in the second direction, splines provided on the handle engage with splines provided on a handle holder fixed to the stem; and when the handle moves in the second direction, the stem moves in a same direction, and splines provided on the stem engage with splines provided on a valve gear configured to operate in conjunction with an output shaft of the electric motor. 6. The flow rate adjusting valve according to claim 5 , wherein: when the stem, which is integrated with the handle holder configured to be moved by abutment against the handle, abuts against a step portion provided on a handle supporting member, the handle reaches an end of movement in the first direction; and when the handle abuts against an end part of the handle supporting member, the handle reaches the end of movement in the second direction. 7. The flow rate adjusting valve according to claim 6 , wherein: when the handle reaches the end of movement in the first direction, a rib provided on the handle snap-engages with a first rib provided on the handle supporting member; and when the handle reaches the end of movement in the second direction, the rib provided on the handle snap-engages with a second rib provided on the handle supporting member. 8. The flow rate adjusting valve according to claim 3 , wherein: the needle valve is inserted and arranged inside a valve seat body fixed to the main body; and a needle packing in sliding contact with the valve seat body is mounted on an outer circumference of the needle valve.
Forms or constructions of slides; Attachment of the slide to the spindle · CPC title
with toothed gearing · CPC title
using a motor · CPC title
with screw-spindle {or internally threaded actuating means} · CPC title
specially adapted for operating hand-operated valves or for combined motor and hand operation · CPC title
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