Threaded type valve connector
US-11300224-B2 · Apr 12, 2022 · US
US9353884B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9353884-B2 |
| Application number | US-201414282287-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 20, 2014 |
| Priority date | May 22, 2013 |
| Publication date | May 31, 2016 |
| Grant date | May 31, 2016 |
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Official abstract text for this publication.
Provided is a flow regulating apparatus 100 including a flow regulating mechanism including: a flow regulation knob 3 ; a screw rod 10 that adjusts an insertion amount of a diaphragm needle 5 into a valve hole 32 ; and a spring roll pin 13 that is fixed to the flow regulation knob 3 , wherein the screw rod 10 includes a first male threaded portion that is fastened to a female threaded portion 9 a formed on an inner circumferential surface of a cover section 9 , and a through hole 10 d penetrating in the direction substantially perpendicular to the center axis C and having a predetermined width in the direction of the center axis C, and the spring roll pin 13 is inserted into the through hole 10 d.
Opening claim text (preview).
The invention claimed is: 1. A flow regulating apparatus comprising: a valve body section where a projection portion is provided at a distal end; a main body section where a valve chamber and an air introduction port are formed, the valve chamber being formed so as to house the valve body section, the air introduction port being formed so as to introduce compressed air from outside; a valve hole that allows the projection portion to be inserted therein, and brings an inflow channel for a fluid and the valve chamber into communication with each other; a flow regulating mechanism that adjusts an insertion amount of the projection portion into the valve hole to regulate a flow rate of a fluid flowing into the valve chamber from the valve hole; a piston section that is coupled to the valve body section, and is movable along a center axis along with the valve body section; a spring section that gives a first urging force in a direction to bring the valve body section close to the valve hole via the piston section, wherein the flow regulating mechanism includes a knob section that rotates around the center axis of the valve body section according to an operation by an operator, a rod member that extends along the center axis, and adjusts the insertion amount by moving along the center axis, a pin member that is fixed to the knob section, and extends in a direction substantially perpendicular to the center axis, and a moving member that is arranged coaxially with the valve body section, the moving member being a cylindrical shape, the rod member including a first threaded portion that is fastened to a body-side threaded portion formed on an inner circumferential surface of the main body section, a second threaded portion that is fastened to a moving member threaded portion formed on an inner circumferential surface of the moving member at a distal end portion closer to the valve hole than the first threaded portion, and a through hole penetrating in the direction substantially perpendicular to the center axis and having a predetermined width according to a moving range of the valve body section along the center axis, the pin member being inserted into the through hole, wherein a second urging force in a direction to bring the valve body section away from the valve hole is generated on the valve body section via the piston section by the compressed air introduced into a pressure chamber in communication with the air introduction port, the moving member and the piston section are separated from each other when the first urging force exceeds the second urging force, and the moving member and the piston section come into contact with each other when the second urging force exceeds the first urging force, and the piston section and the moving member are restricted by a restriction member so as not to relatively rotate around the center axis, the restriction member being arranged in contact with the piston section and the moving member. 2. The flow regulating apparatus according to claim 1 , wherein a pitch of the second threaded portion being smaller than a pitch of the first threaded portion. 3. The flow regulating apparatus according to claim 2 , wherein a diameter of an outer circumferential surface of the moving member is smaller than a diameter of the inner circumferential surface of the main body section. 4. The flow regulating apparatus according to claim 1 , wherein a first recessed groove portion is formed extending in a direction parallel to the center axis in an outer circumferential surface of the moving member, a second recessed groove portion is formed extending in a direction parallel to the center axis in an inner circumferential surface of a recessed portion provided in the piston section, and the restriction member being arranged in contact with the first recessed groove portion and the second recessed groove portion.
for limiting the maximum flow rate, using a stop · CPC title
the diaphragm being mechanically actuated, e.g. by screw-spindle or cam · CPC title
the fluid acting on a piston · CPC title
with plural sets of thread, e.g. with different pitch · CPC title
the diaphragm being actuated by fluid pressure · CPC title
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