The present invention relates to an actuator device, in particular for the actuation of fluid valves, for instance boiler or refrigeration plant valves.
An actuator device of this type is known, for instance, from British Patent 2 316 152 in the name of the same Applicant.
The actuator device known from this document comprises two electric switches provided with respective moving contact members controlled by respective feeler members which cooperate with a radial cam profile of a rotary control member. Respective helical recall springs are also associated with each of the feeler members.
This known device is therefore rather complex in structural terms and in terms of its embodiment.
An object of the present invention is therefore to provide an improved electromechanical actuator device, which has a simpler structure, is easier to assemble and is also more reliable.
These and other objects are achieved according to the invention by an electromechanical actuator device whose salient features are set out in the accompanying claim 1.
Other advantages and features of the present invention will become clear from the following detailed description, given purely by way of non-limiting example, with reference to the appended drawings, in which:
a to 4d show part of the actuator device of the preceding drawings, in four different operating conditions;
a and 6b are similar to
In the drawings, and in particular
A support structure 4 (
The shaft 6 of the electric motor 5 is coupled to a geared transmission which, in the embodiment shown, comprises three toothed wheels 8, 9 and 10 (
The set of teeth of smaller diameter of the toothed output wheel 10 engages with a toothed crown 11a (
On the side opposite to the electric motor 5, the rotary control member 11 has a formation 11b with a cam profile 11c. In the embodiment shown, the front formation 11b comprises two arcuate sectors each having a peripheral extension of approximately 180° and having a respective summit profile which, proceeding from one end to the other, rises progressively from a minimum level to a predetermined maximum level and then drops back to the minimum level at the other end.
With reference to
The member 20 bears a central axial pin 20a mounted in a corresponding axial through hole 21 of the half-shell 2b (
The axial pin or rod 20a is adapted to cooperate with a corresponding control pin or rod of a fluid valve to which the actuator device 1 is adapted to be coupled.
On the side facing the rotary control member 11, the controlled member 20 also has a projecting front formation, substantially complementary with the formation 11b of the control member described above. In
The facing front portions of the control member 11 and the controlled member 20 are such that when the electric motor 5 is actuated, the rotation of the control member 11 is able to cause the controlled member 20 to move in translation. In particular, the controlled member 20 may assume a first position, shown in
By actuating the electric motor 5, preferably (but not necessarily) in the same direction of rotation, it is therefore possible to cause the controlled member 20 to move from the first to the second position described above, and then from the second to the first position, and so on, in order to control the fluid valve or other device associated with the actuator device 1 by means of the corresponding displacement of the control pin or rod 20a.
With reference to
The switching control device 30 is in particular adapted to assume a first and a second state (
Two electrical switches, shown overall by 31 and 32 in
These switches comprise respective fixed contact members 31b and 32b connected to the connection terminals 26 and 27 respectively.
The switches 31 and 32 comprise a single common moving contact member 33 formed from a single piece of electrically conducting material, in particular a metal material, produced by stamping and bending (see
The common moving contact 33 has a substantially bowed shape, with two folded flanges 33a and 33b offset transversely from one another in order to explore, in operation, respective control profiles formed by two adjacent circumferential portions of the periphery of the rotary control member 11 (see
As a result of the interaction between the feeler projections 33a and 33b and the associated profiles of the rotary control member 11, the common moving contact 33, in operation, oscillates substantially between two different operating positions, one shown in
In the second position described above, the common moving contact 33 is remote from the fixed contact 31b and touches the contact 32b.
In its intermediate portion, the common moving contact 33 has a further flange or projection 33c, folded upwards. This flange or projection 33c is permanently connected to a supply terminal of the electric motor 5 by means of a conducting connection member 34 (
The other supply terminal of the electric motor 5 is permanently connected to the connection terminal 28 by means of a similar connection member 35 shaped as a helical spring (see
With reference to
The peripheral cam profiles of the rotary control member 11 with which the feeler projections 33a and 33b of the common moving contact 33 cooperate are embodied such that when the external control device 30 is in the first state shown in
If, in this state, the external control member 30 changes state again, i.e. moving to the state shown in
On reaching this latter position (
The state of the actuator device 1 may change again when the state of the external control device 30 subsequently changes again, moving to the position shown in
The operation of the actuator device therefore takes place cyclically, passing through the various states described above with reference to
a, 6b show a variant. In these drawings, parts and components already described bear the same reference numerals as above.
In this variant, the common moving contact 33 is mounted to oscillate in the support structure or housing about an axis shown by 40 in
The feelers 50, 51 may be made for instance from a plastics material.
The methods of operation of the variant of
In this variant, the actuator device 1 has been provided with two electrical connectors 25a and 25b provided respectively in the half-shell 2a and the half-shell 2b and facing each other from opposite sides to enable the connection method which is most convenient for the user.
Naturally, the principle of the invention remaining the same, the forms of embodiment and details of construction may be varied widely with respect to those described and illustrated, which have been given purely by way of example, the invention extending to all embodiments which achieve equivalent utility using the same innovative concepts.
Number | Date | Country | Kind |
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TO20070044 U | Mar 2007 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB2008/051128 | 3/26/2008 | WO | 00 | 9/25/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2008/117251 | 10/2/2008 | WO | A |
Number | Name | Date | Kind |
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5568911 | Kim | Oct 1996 | A |
Number | Date | Country |
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2316152 | Feb 1998 | GB |
Number | Date | Country | |
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20100102260 A1 | Apr 2010 | US |