ELECTRIC SWITCHING DEVICE WITH IMPROVED ACTUATION MECHANISM
20240312751 ยท 2024-09-19
Inventors
Cpc classification
H01H13/18
ELECTRICITY
H01H2003/3084
ELECTRICITY
International classification
H01H13/18
ELECTRICITY
Abstract
Some embodiments relate to an electric switching device, which comprises a switching contact, an actuation mechanism coupled to the switching contact and a motor coupled to the actuation mechanism. The actuation mechanism comprises a first spring, a first actuation plate coupled with the switching contact and a second actuation plate coupled with the motor. The actuation mechanism also comprises a first blocking element, which blocks the first actuation plate in a rotational blocking position and releases the first actuation plate in a rotational release position. The first spring is loaded by a movement of the motor. At some point in time, the second actuation plate or an actuating element connected thereto turns the first blocking element and thus releases the first actuation plate. As a consequence, the first actuation plate starts to move and finally actuates the switching contact.
Claims
1. An Electric switching device, comprising: a switching contact, an actuation mechanism coupled to the switching contact and a motor coupled to the actuation mechanism, characterized in that the actuation mechanism comprises a first spring, a first actuation plate connected to or contacting the first spring and coupled with the switching contact, a second actuation plate connected to or contacting the first spring and coupled with the motor, wherein the second actuation plate is spaced from the first actuation plate with at least a part of the first spring in-between, and a first blocking element, which comprises a rotatable first flattened shaft and a first lever connected to the first flattened shaft and which is designed to block the first actuation plate in a rotational blocking position and to release the first actuation plate in a rotational release position, wherein the second actuation plate is movable in a first direction by the motor, wherein the first spring or said part thereof upon movement of the second actuation plate in the first direction is loaded, wherein the second actuation plate or an actuating element connected thereto upon further movement of the second actuation plate in the first direction contacts the first lever, wherein the second actuation plate or the actuating element upon further movement of the second actuation plate in the first direction turns the rotatable first flattened shaft from its rotational blocking position in its rotational release position and wherein the first flattened shaft upon reaching its release position releases the first actuation plate, which in turn is moved in the first direction by a release of the loaded first spring or said loaded part of the first spring and as a consequence transfers the switching contact into a first switching state.
2. The Electric switching device as claimed in claim 1, wherein the electric switching device comprises a second blocking element, which comprises a rotatable second flattened shaft and a second lever connected to the second flattened shaft and which is designed to block the first actuation plate in a rotational blocking position and to release the first actuation plate in a rotational release position, wherein the second actuation plate is movable in a second direction opposite to the first direction by the motor, wherein the first spring upon movement of the second actuation plate in the second direction is loaded, wherein the second actuation plate or an actuating element connected thereto upon further movement of the second actuation plate in the second direction contacts the second lever, wherein the second actuation plate or the actuating element upon further movement of the second actuation plate in the second direction turns the rotatable second flattened shaft from its blocking position in its release position and wherein the second flattened shaft upon reaching its release position releases the first actuation plate which in turn is moved in the second direction by a release of the loaded first spring and as a consequence transfers the switching contact into a second switching state.
3. The Electric switching device as claimed in claim 1, wherein the electric switching device comprises a second spring, a third actuation plate connected to or contacting the second spring and coupled with the motor, wherein actuation plate in the second direction turns the rotatable first flattened shaft from its blocking position in its release position and the first flattened shaft upon reaching its release position releases the first actuation plate which in turn is moved in the second direction by a release of the loaded second spring and as a consequence transfers the switching contact into a second switching state or Wherein in a Case b) the electric switching device comprises a second blocking element, which comprises a rotatable second flattened shaft and a second lever connected to the second flattened shaft and which is designed to block the first actuation plate in a rotational blocking position and to release the first actuation plate in a rotational release position, the third actuation plate or an actuating element connected thereto upon further movement of the third actuation plate in the second direction contacts the second lever, the third actuation plate or the actuating element upon further movement of the third actuation plate in the second direction turns the rotatable second flattened shaft from its blocking position in its release position and the second flattened shaft upon reaching its release position releases the first actuation plate which in turn is moved in the second direction by a release of the loaded second spring and as a consequence transfers the switching contact into a second switching state.
4. The Electric switching device as claimed in claim 1, wherein the electric switching device comprises a second spring, a third actuation plate connected to or contacting the second spring and coupled with the motor, a fourth actuation plate connected to or contacting the second spring and coupled with the switching contact, wherein the third actuation plate is spaced from the fourth actuation plate with the second spring in-between, and wherein the third actuation plate is movable in a second direction opposite to the first direction by the motor, wherein the second spring upon movement of the third actuation plate in the second direction is loaded, Wherein in a Case a) the third actuation plate or an actuating element connected thereto upon further the third actuation plate is spaced from the first actuation plate with the second spring in-between, and wherein the third actuation plate is movable in a second direction opposite to the first direction by the motor, wherein the second spring upon movement of the third actuation plate in the second direction is loaded and Wherein in a Case a) the third actuation plate or an actuating element connected thereto upon further movement of the third actuation plate in the second direction contacts the first lever, the third actuation plate or the actuating element upon further movement of the third movement of the third actuation plate in the second direction contacts the first lever, the third actuation plate or the actuating element upon further movement of the third actuation plate in the second direction turns the rotatable first flattened shaft from its blocking position in its release position and the first flattened shaft upon reaching its release position releases the fourth actuation plate which in turn is moved in the second direction by a release of the loaded second spring and as a consequence transfers the switching contact into a second switching state or Wherein in a Case b) the electric switching device comprises a second blocking element, which comprises a rotatable second flattened shaft and a second lever connected to the second flattened shaft and which is designed to block the fourth actuation plate in a rotational blocking position and to release the fourth actuation plate in a rotational release position, wherein the third actuation plate or an actuating element connected thereto upon further movement of the third actuation plate in the second direction contacts the second lever, wherein the third actuation plate or the actuating element upon further movement of the third actuation plate in the second direction turns the rotatable second flattened shaft from its blocking position in its release position and wherein the second flattened shaft upon reaching its release position releases the fourth actuation plate which in turn is moved in the second direction by a release of the loaded second spring and as a consequence transfers the switching contact into a second switching state.
5. The Electric switching device as claimed in claim 3, wherein the first spring and the second spring are formed by a first part and a second part of a common spring.
6. The Electric switching device as claimed in claim 5, wherein the actuating element is embodied as an elastic actuating element.
7. The Electric switching device as claimed in claim 6, wherein a micro switch, which is designed to interrupt a movement of the motor when the first actuation plate passes the first blocking element or when the fourth actuation plate passes the second blocking element.
8. The Electric switching device as claimed in claim 7, wherein the first spring and/or the second spring is embodied as a longitudinal spring.
9. The Electric switching device as claimed in claim 8, wherein the first spring and/or the second spring is embodied as a compression spring, tension spring or combined compression and tension spring.
10. The Electric switching device as claimed in claim 9, wherein the motor is embodied as a linear motor.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0059] The presently disclosed subject matter now is described in more detail hereinafter with reference to particular embodiments, which the presently disclosed subject matter however is not limited to.
[0060]
[0061]
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[0065]
[0066]
DETAILED DESCRIPTION
[0067] Generally, same parts or similar parts are denoted with the same/similar names and reference signs. The features disclosed in the description apply to parts with the same/similar names respectively same/similar reference signs. Indicating the orientation and relative position is related to the associated figure, and indication of the orientation and/or relative position has to be amended in different figures accordingly as the case may be.
[0068]
[0069] For example, the motor 5 can be embodied as a linear motor (e.g. as a pneumatic cylinder, hydraulic cylinder or as a spindle motor) or also as a rotational motor (e.g. with a crank or a lever mounted to the motor shaft). In
[0070] The actuation mechanism 1 comprises a first spring 9, a first actuation plate 10, which is connected to or contacts the first spring 9 and which is coupled with the switching contact 2, here by means of a switch push rod 11 and the switch link 4. Furthermore, the actuation mechanism 1 comprises a second actuation plate 12, which is connected to or contacts the first spring 9 and which is coupled with the motor 5, here by means of a motor push rod 13 and the motor link 6. The second actuation plate 12 is spaced from the first actuation plate 10 with the first spring 9 in-between and has an optional first actuating element 14a. Moreover, the actuation mechanism 1 comprises a first blocking element 15, which comprises a rotatable first flattened shaft 16 (also called as D-shaft) and a first lever 17 connected to the first flattened shaft 16. The first blocking element 15 is designed to block the first actuation plate 10 in a rotational blocking position and to release the first actuation plate 10 in a rotational release position. In
[0071] In addition, the actuation mechanism 1 comprises an optional second spring 18 and a third actuation plate 19, which is connected to or which contacts the second spring 18 and which is coupled with the motor 5, again by means of the motor push rod 13 and the motor link 6. The third actuation plate 19 is spaced from the first actuation plate 10 with the second spring in-between 17 and has an optional second actuating element 14b. In fact, the third actuation plate 19 is arranged vis-?-vis of the second actuation plate 12 in view of the first actuation plate 10. Moreover, the actuation mechanism 1 comprises an optional second blocking element 20, which comprises a rotatable second flattened shaft 21 and a second lever 22 connected to the second flattened shaft 21. The second blocking element 20 is designed to block the first actuation plate 10 in a rotational blocking position and to release the first actuation plate 10 in a rotational release position. In
[0072] In this embodiment, both the first spring 9 and the second spring 19 are embodied as longitudinal springs, in particular as a helical springs. However, other springs can be used as well.
[0073]
[0074] In
[0075] In
[0076] In the state depicted in
[0077] In
[0078] In
[0079]
[0080] In more detail, the second actuation plate 12 and third actuation plate 19 then move in a downward, second direction D2 opposite to the first direction D1 by the motor 5, wherein the first spring 9 and the second spring 18 upon movement of the second actuation plate 12 and the third actuation plate 19 in the second direction D2 are loaded. In detail, the first spring 9 is tensioned and the second spring 18 is compressed now. Upon further movement of the second actuation plate 12 and the third actuation plate 19, the actuating element 14 contacts the second lever 22 and upon further movement turns the rotatable second flattened shaft 21. When the second flattened shaft 21 has turned from the blocking position into its release position, the first actuation plate 10 is released and in turn is moved by a release of the loaded first spring 9 and second spring 18. As a consequence the switching contact is transferred into a second switching state, which in this example is the closed state.
[0081] By use of the first spring 9 and the second spring 18, switching takes place very fast.
[0082]
[0083]
[0084]
[0085] The reason for the provision of the elastic first actuating element 14a and the elastic second actuating element 14b is explained by use
[0086]
[0087] It should be noted that the elastic actuating elements 14a, 14b of
[0088] Furthermore, one should note that the embodiments of
[0089]
[0090] In each switch base 36 there is a fixed contact, and in each switching cap 35 there is a movable contact. When the push rod 11b is moved upwards in the first direction D1, the switching frame 34 together with the switching caps 35 is moved from the right to the left thus closing the switching contacts 2. When the push rod 11b is moved downwards in the second direction D2, the switching frame 34 together with the switching caps 35 is moved from the left to the right thus opening the switching contacts 2. For example, the electric switching device 1b can be embodied as three-phase switching device.
[0091] In the lower left corner,
[0092] As can be realized from
[0093] In reality, the electric switching device 1a, 1b and the actuation mechanisms 3a . . . 3f may have more or less parts than shown in the figures. Moreover, the description may comprise subject matter of further independent embodiments.
[0094] It should also be noted that the term comprising does not exclude other elements and the use of articles a or an does not exclude a plurality. Also elements described in association with different embodiments may be combined. It should also be noted that reference signs in the claims should not be construed as limiting the scope of the claims.
LIST OF REFERENCE NUMERALS
[0095] 1a, 1b electric switching device [0096] 2 switching contact [0097] 3a . . . 3f actuation mechanism [0098] 4 switch link [0099] 5 motor [0100] 6 motor link [0101] 7 piston [0102] 8 cylinder [0103] 9 first spring [0104] 10 first actuation plate [0105] 11 switch push rod [0106] 12 second actuation plate [0107] 13 motor push rod [0108] 14, 14a . . . 14b actuating element [0109] 15 first blocking element [0110] 16 first flattened shaft [0111] 17 first lever [0112] 18 second spring [0113] 19 third actuation plate [0114] 20 second blocking element [0115] 21 second flattened shaft [0116] 22 second lever [0117] 23 first stop [0118] 24 second stop [0119] 25 fourth actuation plate [0120] 26a. 26b actuating element base [0121] 27a. 27b actuating element spring [0122] 28a. 28b actuating element pusher [0123] 29 micro switch [0124] 30 motor line [0125] 31 actuation bump [0126] 32 pivoted lever [0127] 33 bearing [0128] 34 switching frame [0129] 35 switching cap [0130] 36 switch base [0131] 37 switch [0132] 38 common frame [0133] 39 terminal [0134] 40 first return spring [0135] 41 second return spring [0136] D1 first direction [0137] D2 second direction