Valve device having a rotating support member for converting rotational displacement into linear displacement of a valve
US-10352461-B2 · Jul 16, 2019 · US
US11473697B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11473697-B2 |
| Application number | US-202117178034-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 17, 2021 |
| Priority date | Feb 21, 2020 |
| Publication date | Oct 18, 2022 |
| Grant date | Oct 18, 2022 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A flow rate adjusting device of the present invention includes a flow channel member and a valve mechanism. The valve mechanism includes a rod, a knob and a lock mechanism. The lock mechanism is switched by the knob moving in the traverse direction between a prohibited state in which the engaging portion is engaged with the to-be-engaged portion so that the rotation of the rod relative to the flow channel member is prohibited via the knob and a permitted state in which the engagement between the engaging portion and the to-be-engaged portion is undone so that the rod is permitted to rotate relative to the flow channel member.
Opening claim text (preview).
What is claimed is: 1. A flow rate adjusting device comprising: a flow channel member having a flow channel and a female screw portion formed therein, the flow channel configured and arranged for air to flow therethrough to a cylinder of a door; and a valve mechanism for adjusting a ratio of opening of the flow channel, wherein the valve mechanism includes: a rod extending in a traverse direction traversing the flow channel, the rod having a male screw portion configured to be threaded with the female screw portion of the flow channel member, the rod being movable in the traverse direction when rotated on an axis extending along the traverse direction, so that the rod touches or separates from a valve seat formed on an inner surface of the flow channel; a knob attached to a portion of the rod that is outside the flow channel member, the knob being integrally rotatable with the rod and being movable in the traverse direction relative to the rod; and a lock mechanism having an engaging portion and a to-be-engaged portion, the engaging portion protruding from one of the flow channel member and the knob, the to-be-engaged portion being formed in the other of the flow channel member and the knob and configured to be engaged with the engaging portion when accommodating the engaging portion therein, and wherein the male screw portion of the rod is fastened by the female screw portion of the flow channel member in response to rotation of the knob, wherein the engaging portion protrudes from the flow channel member in the traverse direction, wherein the to-be-engaged portion is a depression in a surface of the knob facing the flow channel member and depressed in the traverse direction, wherein the engaging portion is engaged with the to-be-engaged portion in a circumferential direction around the axis when the knob is in a prohibited state, wherein the engaging portion is a pin pressed into a depression formed in the flow channel member, and wherein the lock mechanism is switched by the knob moving in the traverse direction between (i) the prohibited state in which the engaging portion is engaged with the to-be-engaged portion so that the rotation of the rod relative to the flow channel member is prohibited via the knob and (ii) a permitted state in which the engagement between the engaging portion and the to-be-engaged portion is undone so that the rod is permitted to rotate relative to the flow channel member. 2. The flow rate adjusting device of claim 1 , wherein the knob is closer to the flow channel member in the prohibited state than in the permitted state. 3. The flow rate adjusting device of claim 1 , wherein the valve mechanism includes an energizing member for energizing the knob in such a direction that the prohibited state is to be achieved. 4. The flow rate adjusting device of claim 3 , wherein the rod has: a shaft extending in the traverse direction; and a rod flange having a larger outer diameter than the shaft, wherein the knob has a knob flange facing the rod flange in the traverse direction, and wherein the energizing member is interposed between the rod flange and the knob flange with the shaft being inserted into the energizing member. 5. The flow rate adjusting device of claim 1 , wherein the knob surrounds the rod. 6. The flow rate adjusting device of claim 5 , wherein the knob has a grip depressed into an outer peripheral surface of the knob. 7. The flow rate adjusting device of claim 5 , wherein an outer peripheral surface of the rod and an inner peripheral surface of the knob have a flat surface, and the knob is not allowed to rotate relative to the rod when the flat surface of the outer peripheral surface of the rod is engaged with the flat surface of the inner peripheral surface of the knob. 8. The flow rate adjusting device of claim 1 , wherein a plurality of the engaging portions and a plurality of the to-be-engaged portions are arranged in the circumferential direction, and wherein the number of the to-be-engaged portions is greater than the number of the engaging portions. 9. The flow rate adjusting device of claim 1 , wherein the flow channel member has a communicating portion formed therein through which the inside of the flow channel is in communication with the outside of the flow channel in the traverse direction, and the rod is inserted through the communicating portion, and wherein a sealing ring is interposed between an outer peripheral surface of the rod and an inner peripheral surface of the communicating portion, surrounds the rod, and seals, in a direction intersecting the traverse direction in a planar view as seen in the traverse direction, between the outer peripheral surface of the rod and the inner peripheral surface of the communicating portion. 10. A flow rate adjusting device comprising: a flow channel member having a flow channel and a female screw portion formed therein, the flow channel configured and arranged for air to flow therethrough to a cylinder of a door; and a valve mechanism for adjusting a ratio of opening of the flow channel, wherein the valve mechanism includes: a rod extending in a traverse direction traversing the flow channel, the rod having a male screw portion configured to be threaded with the female screw portion of the flow channel member, the rod being movable in the traverse direction when rotated on an axis extending along the traverse direction, so that the rod touches or separates from a valve seat formed on an inner surface of the flow channel; a knob attached to a portion of the rod that is outside the flow channel member, the knob being integrally rotatable with the rod and being movable in the traverse direction relative to the rod; and a lock mechanism having an engaging portion and a to-be-engaged portion, the engaging portion protruding from one of the flow channel member and the knob, the to-be-engaged portion being formed in the other of the flow channel member and the knob and configured to be engaged with the engaging portion when accommodating the engaging portion therein, and wherein the male screw portion of the rod is fastened by the female screw portion of the flow channel member in response to rotation of the knob, wherein the engaging portion protrudes from the flow channel member in the traverse direction, wherein the to-be-engaged portion is a depression in a surface of the knob facing the flow channel member and depressed in the traverse direction, wherein the engaging portion is engaged with the to-be-engaged portion in a circumferential direction around the axis when the knob is in a prohibited state, wherein a plurality of the engaging portions and a plurality of the to-be-engaged portions are arranged in the circumferential direction, wherein the number of the to-be-engaged portions is greater than the number of the engaging portions, and wherein the lock mechanism is switched by the knob moving in the traverse direction between (i) the prohibited state in which the engaging portion is engaged with the to-be-engaged portion so that the rotation of the rod relative to the flow channel member is prohibited via the knob and (ii) a permitted state in which the engagement between the engaging portion and the to-be-engaged portion is undone so that the rod is permitted to rotate relative to the flow channel member. 11. The flow rate adjusting device of claim 10 , wherein the knob is closer to the flow channel member in the prohibited state than in the permitted state. 12. The flow rate adjusting device of claim 10 , wherein the valve mechanism includes an energizing member for energizing the knob in such a direction that the prohibited state is to be achi
for railway cars or mass transit vehicles · CPC title
with screw-spindle {or internally threaded actuating means} · CPC title
the locking mechanism being actuated by pushing or pulling the valve actuator, the valve actuator being rotated subsequently to bring the valve closure element in the desired position · CPC title
with a cut-off member rigid with the spindle, e.g. main valves · CPC title
for swinging wings · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.