VALVE ACTUATOR DEVICE WITH DRIVING ARM HAVING A MODULAR STRUCTURE
20170261012 · 2017-09-14
Inventors
- Pier Paolo PARADISO (Porcari (Lucca), IT)
- Marco BORSELLI (Porcari (Lucca), IT)
- Nicola BATISTONI (Porcari (Lucca), IT)
- Stefano VETTORI (Porcari (Lucca), IT)
- Anselmo NICOLINI (Porcari (Lucca), IT)
Cpc classification
F16K31/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B15/226
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B15/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/363
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve actuator device includes a supporting body, a driving shaft, and a fluid cylinder having a body connected to one side of the supporting body. The cylinder has a rod that controls rotation of a driving arm rigidly connected to the driving shaft. Linear movement of the rod is converted into rotation of the driving arm by engagement of a cam-follower pin carried by the rod within a slot formed in the driving arm. The slot is formed in an insert that constitutes an element separate from the driving arm body and that is received and held within a seat of the driving arm body. Thus, a single main body for the driving arm provided, having a plurality of inserts for selective mounting within the seat and are differentiated from one another in the dimensions and shape of the slot and/or in the material of the insert.
Claims
1. A valve actuator device, comprising: a supporting body (2); a driving shaft (5) for actuating a valve, rotatably mounted on the supporting body (2) around a main axis (4); and a fluid cylinder (6) for controlling rotation of said driving shaft (5), including: a cylinder body (6A, 6B, 6C), connected to said supporting body (2), on one side thereof, and having an axis (6X) directed transversely to said main axis (4), said axes (6X, 4) being arranged in mutually perpendicular planes; a piston (7) slidably mounted within the cylinder body (6A, 6B, 6C); and a rod (8) connected to the piston (7) and carrying a cam-follower member (12), said valve actuator device further comprising: a driving arm (10), connected to said driving shaft (5), having a body and a cam track in a form of a slot (11), cooperating with said cam-follower member (12) in such a way that a displacement of the piston (7) of said fluid cylinder (6) between two end operating positions causes a rotation of said driving arm (5) between two end operating positions, wherein said slot (11) is formed in an insert (20) constituting a separate element from the body of said driving arm (10) and adapted to be received and held in a seat (19) of the body of the driving arm (10).
2. The valve actuator device according to claim 1, wherein a plurality of inserts (20) are provided in association thereto, which are configured to be selectively mounted on the driving arm (10), each of said plurality of inserts being different from each other in one or more of the following characteristics: the material forming the insert (20), the size of the insert (20) and/or the slot (11) formed in the insert (20), the shape of the slot (11), in such a way that said actuator device is configured to be quickly prepared according to different configurations, in response to specific needs of an application of the valve actuator device.
3. The valve actuator device according to claim 1, wherein said driving arm (10) comprises a body in a form of a flat plate, having one end connected to said driving shaft (5) for rotating therewith and a remaining part having said seat (19) within which there is slidably received said insert (20).
4. The valve actuator device according to claim 1, wherein said slot (11) is a rectilinear slot.
5. The valve actuator device according to claim 4, wherein said slot is aligned along a radial direction (R) perpendicular to said main axis (4).
6. The valve actuator device according to claim 4, wherein said rectilinear slot (11) is directed according to a direction (R′) inclined with respect to a radial direction (R) perpendicular to said main axis (4).
7. The valve actuator device according to claim 1, wherein said slot (11) has a curved profile, defined by a polynomial function with a degree greater than 2.
8. The valve actuator device according to claim 7, wherein said curved profile is substantially S-shaped.
9. The valve actuator device according to claim 8, wherein said S-shaped curved profile of the slot (11) has opposite ends (A, B) aligned along a direction (R) intersecting the main axis (4) orthogonally.
10. The valve actuator device according to claim 8, wherein said S-shaped curved profile of the slot (11) has opposite ends (A, B) aligned along a direction (R′) inclined with respect to a direction (R) intersecting said main axis (4) orthogonally.
11. The valve actuator device according to claim 1, wherein the body of said driving arm (10) is formed as a yoke, with two flat plates (10A) parallel and spaced from each other, each plate having one seat (19) which receives therewithin a respective insert (20) with one slot (11).
12. The valve actuator device according to claim 1, further comprising a fail-safe safety device (14) for biasing said driving arm (10) towards a safety position corresponding to one of said end operating positions, said safety device (14) comprising a casing (15) fixed to said supporting body (2) on an opposite side with respect to said fluid cylinder (6) and having an axis parallel to the axis (6X) of the fluid cylinder (6), a plunger (16) movably mounted within said housing (15), a rod (8′) connected to the plunger (16) and connected to said cam-follower member (12), and at least one helical spring (18) contained within said casing (15) and tending to bias said driving arm (10) towards said safety position.
13. A method for the production of an actuator device according to claim 1, wherein body (10, 10A) is provided for said driving arm and also a plurality of inserts (20) are provided which are configured to be selectively associated to the body (10), said plurality of inserts comprising at least one insert (20) with a slot (11) aligned along a radial direction (R) perpendicular to the main axis of rotation (4) or inclined with respect thereto, and at least one insert (20) with a curved slot (11) having its opposite ends aligned according to the radial direction (R) perpendicular to the main axis of rotation (4) or along a direction (R′) inclined with respect to said radial direction (R), and wherein said method further comprises selecting one of said inserts (20) and mounting the selected insert (20) on the body of the driving arm (10) as a function of a specific application requirement of the valve actuator device.
Description
DESCRIPTION OF SOME PREFERRED EMBODIMENTS
[0023] Further characteristics and advantages of the invention will emerge from the ensuing description with reference to the annexed drawings, which are provided purely by way of non-limiting example and in which: [0024]
[0032] With reference to
[0033] As may be clearly seen in
[0034] The actuator device according to the invention controls rotation of the driving shaft 5, which in turn governs rotation of the movable member of the valve between a completely closed position and a completely open position. According to a usual technique, the movable member of the valve may, for example, be of the type in which passage from the open position to the closed position of the valve occurs with a rotation of 90° around the main axis 4.
[0035] The example of embodiment illustrated herein regards an application with a rotation of from 0° to 90° (a quarter of a turn), with a tolerance of approximately 10° on the end values. However, in theory, the principle that underlies the invention is of general application. Moreover, the actuator device according to the invention may be used both for displacing the movable member of a valve between the position of complete opening and the position of complete closing, and possibly also, for the applications where this is required, for positioning the movable member of the valve in any intermediate position.
[0036] Rigidly connected on one side of the central supporting body 2 is an end plate 6A of the body of a fluid cylinder 6 designed to govern rotation of the driving shaft 5. The fluid cylinder 6 may be either a hydraulic cylinder or a pneumatic cylinder. The example illustrated regards in particular the case of a pneumatic cylinder. In any case, the cylinder 6 comprises a cylinder body having an axis 6X. The axis 6X of the cylinder 6 and the axis 4 of the driving shaft 5 are not incident with respect to one another, but are contained in mutually orthogonal planes. The cylinder body is defined by a cylindrical wall 6B closed at one end by the aforesaid end plate 6A and at the opposite end by an end plate 6C. In the example illustrated, the end plates 6A, 6C are held against the opposite ends of the cylindrical wall 6B by a plurality of screw-operated tie rods 6D.
[0037] With reference to
[0038] The rod 8 of the fluid cylinder 6 is designed to govern rotation of the driving shaft 5 by means of a pin-slot transmission, which enables conversion of the linear movement of the rod 8 into a rotation of the driving shaft 5 around the axis 4. For this purpose, rigidly connected on the driving shaft 5 is a driving arm 10 carrying a cam track in the form of a slot 11 engaged by a cam-follower pin 12 carried by the rod 8. As will be illustrated in greater detail in what follows, according to the present invention the slot 11 is formed in an insert 20 assembled on the body of the driving arm 10.
[0039] With reference to the example illustrated in the annexed drawings, the driving arm 10 has a yoke conformation, with two plates 10A parallel and set apart from one another (see
[0040] As referred to above, the two plates 10A constitute together the driving arm of the actuator device. Engagement of the cam-follower pin 12 within the slots 11 of the plates 10A enables conversion of the linear movement of the rod 8 of the fluid cylinder 6 into a rotation of the driving shaft 5, which transmits rotation to the control rod (not illustrated) of the movable member of the valve, this rod being coupled inside the bushing constituting the shaft 5.
[0041] Of course, the conformation described herein for the driving arm 10 is provided purely by way of example. The driving arm could have any other configuration and in particular could be constituted by a single plate having a single slot engaged by a cam-follower pin carried by the rod of the fluid cylinder.
[0042] With reference once again to
[0043] According to an important characteristic of the present invention, each slot 11 is formed in an insert 20 constituting an element separate from the respective plate 10A and received in a seat 19 provided in the plate 10A (see
[0044] With reference to the specific example illustrated, the insert 20 is constituted, for example, by a prismatic block that is slidably received within the seat 19. The insert 20 is held within the seat 19 so as to be rigidly connected to the respective plate 10A, by means of any known technique, for example by an interference fit or using adhesive.
[0045] Of course, the solution consisting in the provision of the slot 11 in a separate insert, mounted on the driving arm 10, can be adopted with any other configuration of the driving arm, also different from the one illustrated herein purely by way of example.
[0046] According to the invention, it is possible to provide a single basic body 10 for the actuator device, and a plurality of inserts 20 (see
[0047] It follows, in particular, that with the invention it is possible to produce, in a short time and with considerable saving in production costs, an actuator device provided with a slot having a specific conformation, according to the characteristics of movement that is to be imparted on the driving shaft as a function of the driving torque required.
[0048] Finally, constituting a further aspect of the present invention (that forms the subject also of a co-pending patent application filed in the name of the present applicant) is the fact that the slot 11 presents, in particular, a conformation such as to render possible easy adaptation of the device to the requirements of each specific application, enabling a desired profile of the driving torque to be obtained.
[0049] Each of
[0050] In the case of
[0051] Studies conducted by the present applicant have shown that configurations of the type illustrated in
[0052]
[0053] Of course, to return to the exemplification illustrated in
[0054] Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to what has been described and illustrated herein purely by way of example, without thereby departing from the scope of the present invention.