Lock and lid lock for appliance
11661765 · 2023-05-30
Assignee
Inventors
Cpc classification
E05B47/0001
FIXED CONSTRUCTIONS
International classification
E05B47/00
FIXED CONSTRUCTIONS
Abstract
A lock and lid lock for an appliance are provided. The lock has a base supporting a driving mechanism, a sliding mechanism, a connecting mechanism and a locking mechanism. The driving mechanism includes a driving unit that drives rotation of a screw rod. A sliding block is connected to a gear that is engaged with the screw rod and drives the sliding block to move linearly back and forth with the rotation of the screw rod. One end of the connecting mechanism is connected to the sliding block and the other end is connected to the locking mechanism. This allows linear movement of the sliding block to be converted into rotational movement of the locking mechanism. The locking mechanism is rotatably connected to the base and may include a locking portion which is configured to unfold or retract relative to the base along with the rotation of the locking mechanism.
Claims
1. A lock for an appliance, the lock comprising a base, a housing connected to the base and defining a cavity therein, a driving mechanism arranged within the housing cavity, a sliding mechanism, a connecting mechanism and a locking mechanism which are disposed on the base, the driving mechanism comprising a driving unit and a screw rod, the driving unit driving the screw rod to rotate; the sliding mechanism comprising a gear and a sliding block connected to the gear, the gear being engaged with the screw rod, to drive the sliding block to move linearly with the rotation of the screw rod; the connecting mechanism comprising a first end connected to the sliding block, and a second end connected to the locking mechanism, the connecting mechanism converting the linear movement of the sliding block into rotational movement of the locking mechanism; the locking mechanism having a main body and being rotatably connected to the base to define an axis of rotation of the locking mechanism main body; and the locking mechanism further comprising a locking portion that extends from the locking mechanism main body has an outer end, to unfold or retract relative to the base along with the rotation of the locking mechanism, wherein the outer end of the locking portion moves outside of the housing cavity while unfolding relative to the base by rotating in unison with the locking mechanism main body.
2. A lock for an appliance, the lock comprising a base, a driving mechanism, a sliding mechanism, a connecting mechanism and a locking mechanism which are disposed on the base, the driving mechanism comprising a driving unit and a screw rod, the driving unit driving the screw rod to rotate; the sliding mechanism comprising a gear and a sliding block connected to the gear, the gear being engaged with the screw rod, to drive the sliding block to move linearly with the rotation of the screw rod; the connecting mechanism comprising a first end connected to the sliding block, and a second end connected to the locking mechanism, the connecting mechanism converting the linear movement of the sliding block into rotational movement of the locking mechanism; the locking mechanism being rotatably connected to the base; the locking mechanism comprising a locking portion, to unfold or retract relative to the base along with the rotation of the locking mechanism; and wherein the sliding mechanism comprises a pair of gears which are engaged on two opposite sides of the screw rod symmetrically.
3. A lock for an appliance, the lock comprising a base, a driving mechanism, a sliding mechanism, a connecting mechanism and a locking mechanism which are disposed on the base, the driving mechanism comprising a driving unit and a screw rod, the driving unit driving the screw rod to rotate; the sliding mechanism comprising a gear and a sliding block connected to the gear, the gear being engaged with the screw rod, to drive the sliding block to move linearly with the rotation of the screw rod; the connecting mechanism comprising a first end connected to the sliding block, and a second end connected to the locking mechanism, the connecting mechanism converting the linear movement of the sliding block into rotational movement of the locking mechanism; the locking mechanism being rotatably connected to the base; the locking mechanism comprising a locking portion, to unfold or retract relative to the base along with the rotation of the locking mechanism; and wherein the gear is connected to the sliding block via a gear shaft, and an elastic element is disposed between the gear and the gear shaft for providing a frictional force between the gear and the gear shaft to prevent a relative rotation therebetween.
4. The lock according to claim 3, wherein the gear shaft has a stepped contour and comprises a first stepped portion and a second stepped portion, the inner surface of the gear is matched with the stepped contour of the gear shaft and comprises a first stepped surface corresponding to the first stepped portion and a second stepped surface corresponding to the second stepped portion, and the elastic element is clamped on the first stepped portion and is in interference fit with the second stepped surface.
5. The lock according to claim 3, wherein the elastic element is sheathed on the gear shaft and comprises a protruding end clamped in a recess in the inner wall of the gear.
6. A lock for an appliance, the lock comprising a base, a driving mechanism, a sliding mechanism, a connecting mechanism and a locking mechanism which are disposed on the base, the driving mechanism comprising a driving unit and a screw rod, the driving unit driving the screw rod to rotate; the sliding mechanism comprising a gear and a sliding block connected to the gear, the gear being engaged with the screw rod, to drive the sliding block to move linearly with the rotation of the screw rod; the connecting mechanism comprising a first end connected to the sliding block, and a second end connected to the locking mechanism, the connecting mechanism converting the linear movement of the sliding block into rotational movement of the locking mechanism; the locking mechanism being rotatably connected to the base; the locking mechanism comprising a locking portion, to unfold or retract relative to the base along with the rotation of the locking mechanism; and wherein the sliding block comprises a guide portion, the guide portion comprises an extension portion perpendicular to the movement direction of the sliding block, the extension portion comprising a guide hole, the screw rod passing through the guide hole of the guide portion, and a gap is left between the guide hole and the screw rod.
7. The lock according to claim 6, wherein the connecting mechanism comprises a crank rod, and the locking mechanism comprises a main rotational shaft, the locking portion being sheathed on the main rotational shaft, the crank rod comprises one end connected to the sliding block and the other end connected to the main rotational shaft, and when the sliding block moves, the main rotational shaft is capable of rotating relative to the base under the driving of the crank rod, so as to drive the locking portion to rotate.
8. The lock according to claim 7, further comprising a housing, the housing being buckled to the base, and an accommodating cavity being formed between the housing and the base; the accommodating cavity accommodating the driving mechanism, the sliding mechanism, the connecting mechanism and the locking mechanism; the housing defining a rotation area allowing the locking portion to rotate; and a joint between the main rotational shaft and the housing being sealed by a sealing ring.
9. The lock according to claim 8, wherein a receiving window is disposed on the outer side of the housing, to accommodate the locking portion in an initial position.
10. The lock according to claim 9, wherein the housing is matched with and connected to the base via a saw-teethed surface, or the housing is sealed to the base by welding.
11. The lock according to claim 10, wherein the driving mechanism further comprises a socket, the socket is connected with a power source to power the driving unit and is connected to the driving unit, and a joint between the socket and the base is sealed by a sealing ring.
12. The lock according to claim 11, further comprising a circuit board and an indication block, wherein the circuit board is configured to control the driving unit and is electrically connected to the socket, and the sliding block is connected to the indication block and drives the same to slide; the indication block is connected to an elastic piece which contacts a trigger unit of the circuit board when the indication block slides to a position; and the circuit board control the driving unit to stop the rotation of the screw rod driven by the driving unit according to the contact between the elastic piece and the trigger unit.
13. A lock for an appliance, the lock comprising a base, a driving mechanism, a sliding mechanism, a connecting mechanism and a locking mechanism which are disposed on the base, the driving mechanism comprising a driving unit and a screw rod, the driving unit driving the screw rod to rotate; the sliding mechanism comprising a gear and a sliding block connected to the gear, the gear being engaged with the screw rod, to drive the sliding block to move linearly with the rotation of the screw rod; the connecting mechanism comprising a first end connected to the sliding block, and a second end connected to the locking mechanism, the connecting mechanism converting the linear movement of the sliding block into rotational movement of the locking mechanism; the locking mechanism being rotatably connected to the base; the locking mechanism comprising a locking portion, to unfold or retract relative to the base along with the rotation of the locking mechanism; wherein: the upper lid is configured to be buckled to the casing; the lock is configured to be disposed in the casing a locking hole is disposed in the upper lid at a position corresponding to the lock; and the locking portion is configured to be rotatable relative to the casing to extend out of the same, for being locked in the locking hole.
14. The lid lock according to claim 13, wherein the lock is arranged in the casing in a vertical manner, and the locking portion rotates outwards towards the upper portion of the casing.
15. The lid lock according to claim 13, wherein the lock is arranged in the casing in a horizontal manner, and the locking portion rotates outwards towards the interior of the casing.
16. The lid lock according to claim 13, wherein a gap is provided between the upper lid and the casing, to accommodate a sheet-like plate which slides in the gap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The same reference numerals in the drawings will be used to refer to the same or like parts or elements throughout the drawings, unless specified otherwise. These drawings may not be necessarily drawn according to the scales. It should be understood that these drawings only depict some embodiments of the present application, and shall not be regarded as limiting to the scope of the present application.
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(18) In the following, only some embodiments are briefly described. As can be recognized by those skilled in the art, various modifications may be made to the described embodiments without departing from the spirit or scope of the present application. Therefore, the drawings and the description are substantially regarded as exemplary intrinsically rather than restrictive.
(19) In the first aspect of the present application, a lock 100 is provided.
(20) The lock 100 of the present application will be described below with reference to the drawings.
(21) Referring to
(22) According to an embodiment, the driving mechanism 2 includes a screw rod 21 and a driving unit 22. The driving unit 22 can drive the screw rod 21 to rotate. In addition, the driving mechanism 2 further includes a socket 23 (which will be described later).
(23) The sliding mechanism 3 includes a gear 301 and a sliding block 302 connected to the gear 301. The gear 301 engages with the screw rod 21. Thus, when the screw rod 21 rotates, the gear 301 will also move linearly in an axial direction of the screw rod 21. Further, the gear 301 is capable of driving the sliding block 302 connected thereto to slide linearly.
(24) The connecting mechanism 4 includes one end connected to the sliding block 302, and the other end connected to the locking mechanism 5. The connecting mechanism 4 is rotatably connected to the base 1. In this way, the linear movement of the sliding block 302 may be converted by the connecting mechanism 4 into rotation of the locking mechanism 5 relative to the base 1.
(25) The locking mechanism 5 is provided with a locking portion 501, which may rotate along with the rotation of the locking mechanism 5 and may form different angles with the direction of motion of the sliding block 302 in the rotation process, i.e., the locking portion 501 may rotate to unfold or to retract relative to the base. It can be easily understood that the locking portion 501 has an angle range which may be set as required.
(26) In an embodiment, specifically as shown in the state transition from
(27) As shown in the state transition from
(28) It should be noted that the directions such as “front”, “rear”, “upper” and “lower” as used herein are intended for convenience of description and do not necessarily correspond exactly to the space in practical work.
(29) In an embodiment, the sliding mechanism comprises a pair of gears 301 which is engage on two opposite sides of the screw rod 21 symmetrically. In this way, when the screw rod 21 rotates, the pair of symmetrically engaged gear 301 jointly drive the sliding block 302 to move linearly, so that the transmission of the movement between the screw rod 21 and the sliding block 302 can be smoothed and stabilized.
(30) As shown in
(31) Further, when the external load exceeds the frictional force provided by the elastic element 304, for example, when the sliding block 302 moves to an extreme position or the sliding block 302 is stuck in movement, the reaction force suffered by the sliding block 302 may exceed the frictional force provided by the elastic element 304, and the gear 301 at this moment starts to engage with the screw rod 21 against the frictional force and rotates relative to the gear shaft 303. In this way, the occurrence of the “jamming” phenomenon in the rotation of the screw rod 21 is avoided, the overheating of the driving mechanism 2 is prevented, and the driving mechanism 2 is protected.
(32) As shown in
(33) As shown in
(34) As shown in
(35) As shown in
(36) There is a variety of available shapes for the elastic element and a variety of connection manners among the elastic element and the gear and the gear shaft. The shapes and the connection manners are not limited to those listed in the present application. Any elastic element in the existing art and the future art that can be connected between the gear and the gear shaft and provides frictional force can be applied to the present application, which will not be elaborated herein.
(37) Referring to
(38) Referring to
(39) The housing 6 is buckled to the base 1, and an accommodating cavity is formed between the housing 6 and the base 1. The accommodating cavity may be configured to accommodate the driving mechanism 2, the sliding mechanism 3, the connecting mechanism 4 and the locking mechanism 5.
(40) The housing 6 defines a rotation area 601 allowing the locking portion 501 to rotate, such that the locking portion 501 may rotate flexibly to unfold or retract.
(41) Further, due to the presence of the rotation area 601, the housing 6 is not completely sealed, and moisture or impurities may enter the accommodating cavity via a gap between the housing 6 and the main rotational shaft 502. As shown in
(42) Referring to
(43) Referring to
(44) In an embodiment, the housing 6 is sealed to the base 1 by ultrasonic welding.
(45) Referring to
(46) Further, referring to
(47) Referring to
(48) According to an embodiment, the socket 23 may also be connected to a magnetic reed switch 231. The magnetic reed switch 231 is connected to the control system and is conducted by the magnetic force, i.e., when the magnetic reed switch 231 is not subjected to the magnetic force, the magnetic reed switch 231 is not conducted; while, when the magnetic reed switch 231 is subjected to the magnetic force, the magnetic reed switch 231 is conducted. For example, further Referring to
(49) According to a second aspect of embodiments of the present application, a lid lock structure in which the lock 100 is disposed is provided. The lock 100 may be applied to various fields in the lid lock structure, and preferably suitable for a lid lock structure of a wave-type washing machine.
(50) Referring to
(51) Referring to
(52) Referring to
(53) Referring to
(54) As shown in the state transition from
(55) As shown in the state transition from
(56) According to a third aspect of embodiments of the present application, a manual unlocking mode is provided.
(57) Referring to
(58) Further Referring to
(59) In the description of the present specification, the reference terms such as “an embodiment”, “some embodiments”, “an example”, “a specific example” or “some examples” and the like mean that the particular features, structures, materials or characteristics described in combination of the embodiments or examples are included in at least one embodiment or example of the present application. Furthermore, the described particular features, structures, materials or characteristics may be combined in a proper manner in any one or more embodiments or examples. In addition, in the absence of contradiction, one skilled in the art can integrate and combine different embodiments or examples described in this specification and the features of different embodiments or examples.
(60) In addition, the terms “first” and “second” are used for a descriptive purpose only and shall not be construed as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, features defining “first” and “second” may explicitly or implicitly include at least one of the features. In the description of the present application, “a plurality of” means two or more, unless expressly limited otherwise.
(61) In addition, the functional units in the embodiments of the present application may be integrated in a processing module, or may exist as physically independent units. Two or more units may also be integrated into one module. The integrated module can be realized in the form of hardware or in the form of a software function module. When the integrated module is realized in a form of the software function module and is sold or used as an independent product, it may be stored in a computer-readable storage medium. The storage medium may be a read-only memory, a magnetic disk, an optical disk, or the like.
(62) The content described above are specific embodiments of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art may easily anticipate various alternations or replacements of these embodiments within the technical scope disclosed in the present application, and all these alternations or replacements should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be defined by the claims.