Washing machine and washing drum thereof
11634850 · 2023-04-25
Assignee
Inventors
- Lei Xi (Hefei, CN)
- Chouguo Zhou (Hefei, CN)
- Fei Zhao (Hefei, CN)
- Jian Wang (Hefei, CN)
- Xiaowei Xie (Hefei, CN)
Cpc classification
D06F37/12
TEXTILES; PAPER
D06F31/00
TEXTILES; PAPER
D06F37/14
TEXTILES; PAPER
International classification
D06F37/12
TEXTILES; PAPER
D06F37/14
TEXTILES; PAPER
Abstract
Provided are a locking mechanism and a washing machine. The washing machine includes a washing drum, the washing drum includes a container body having a via hole. The locking mechanism includes a locking shell connected to the container body and internally provided with an accommodating cavity communicated with the via hole; and a locking member inserted into the accommodating cavity.
Claims
1. A locking mechanism, applied to a washing machine comprising a washing drum and a drive shaft, wherein the washing drum comprises a small container, the small container comprises a container body having a via hole, and the locking mechanism is detachably locked on the drive shaft and comprises: a locking shell connected to the container body and internally provided with an accommodating cavity communicated with the via hole, wherein the drive shaft is inserted in the accommodating cavity after passing through the via hole; and a locking member inserted into the accommodating cavity and connected with the drive shaft; wherein one end of the drive shaft inserted into the accommodating cavity comprises a spline or a positioning recess, the locking member comprises a fixing pedestal and a fixing block positioned on the fixing pedestal, and the fixing block is propped to the spline or propped inside the positioning recess.
2. The locking mechanism of claim 1, wherein the washing machine further comprises a drive motor connected to the drive shaft.
3. The locking mechanism of claim 1, wherein the two sides of the spline or the positioning recess are defined at an outer peripheral surface of the drive shaft, and the locking member is configured to extend along a radial direction of the drive shaft.
4. A locking mechanism, applied to a washing machine comprising a washing drum and a drive shaft, wherein the washing drum comprises a small container, the small container comprises a container body having a via hole, and the locking mechanism is detachably locked on the drive shaft and comprises: a locking shell connected to the container body and internally provided with an accommodating cavity communicated with the via hole, wherein the drive shaft is inserted in the accommodating cavity after passing through the via hole; and a locking member inserted into the accommodating cavity and connected with the drive shaft; wherein one end of the drive shaft inserted into the accommodating cavity comprises a spline or a positioning recess, the locking member comprises a fixing pedestal and two fixing blocks positioned on the fixing pedestal at interval, two sides of the fixing blocks facing with each other are propped to two sides of the spline of the drive shaft respectively or propped inside the positioning recess, another two sides of the fixing blocks opposite to each other are respectively propped to walls of the accommodating cavity.
5. The locking mechanism of claim 4, wherein an outer peripheral surface of the drive shaft located in the accommodating cavity defines a recess, and the locking member is partially received in the recess.
6. The locking mechanism of claim 4, wherein the locking shell comprises a cylindrical tube around the drive shaft, a wall connected to the tube and extended along a radial direction of the drive shaft, and a protrusion protruded from the wall, and the locking member is located between the wall and the protrusion.
7. The locking mechanism of claim 6, wherein the protrusion comprises a pair of recessed portions recessed towards the drive shaft and approaching each other as approaching the drive shaft.
8. The locking mechanism of claim 4, wherein the washing drum further comprises a large container, the small container is detachably disposed in the large container, an opening of the small container is faced with an opening of the large container, and a gap is between an external wall of the small container and an internal wall of the large container.
9. A washing machine, comprising: a washing drum comprising a small container, wherein the small container comprises a container body having a via hole; and a locking mechanism comprising: a locking shell connected to the container body and internally provided with an accommodating cavity communicated with the via hole; and a locking member inserted into the accommodating cavity.
10. The washing machine of claim 9, wherein the washing machine further comprises a drive motor and a drive shaft connected to the drive motor, and the locking mechanism is detachably locked on the drive shaft.
11. The washing machine of claim 10, wherein the drive shaft is inserted in the accommodating cavity after passing through the via hole, and the locking member is connected with the drive shaft.
12. The washing machine of claim 11, wherein one end of the drive shaft inserted into the accommodating cavity comprises a spline or a positioning recess, the locking member comprises a fixing pedestal and a fixing block positioned on the fixing pedestal, and the fixing block is propped to the spline or propped inside the positioning recess.
13. The washing machine of claim 11, wherein one end of the drive shaft inserted into the accommodating cavity comprises a spline or a positioning recess, the locking member comprises a fixing pedestal and two fixing blocks positioned on the fixing pedestal at interval, two sides of the fixing blocks facing with each other are propped to two sides of the spline of the drive shaft respectively or propped inside the positioning recess, another two sides of the fixing blocks opposite to each other are respectively propped to walls of the accommodating cavity.
14. The washing machine of claim 12, wherein the two sides of the spline or the positioning recess are defined at an outer peripheral surface of the drive shaft, and the locking member is configured to extend along a radial direction of the drive shaft.
15. The washing machine of claim 10, wherein an outer peripheral surface of the drive shaft located in the accommodating cavity defines a recess, and the locking member is partially received in the recess.
16. The washing machine of claim 10, wherein the locking shell comprises a cylindrical tube around the drive shaft, a wall connected to the tube and extended along a radial direction of the drive shaft, and a protrusion protruded from the wall, and the locking member is located between the wall and the protrusion.
17. The washing machine of claim 16, wherein the protrusion comprises a pair of recessed portions recessed towards the drive shaft and approaching each other as approaching the drive shaft.
18. The washing machine of claim 9, wherein the washing drum further comprises a large container, the small container is detachably disposed in the large container, an opening of the small container is faced with an opening of the large container, and a gap is between an external wall of the small container and an internal wall of the large container.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) To illustrate the technical solutions according to the embodiments of the present disclosure or in the prior art more clearly, the accompanying drawings for describing the embodiments or the prior art are introduced briefly in the following. Apparently, the accompanying drawings in the following description are only about some embodiments of the present disclosure, and persons of ordinary skill in the art can derive other drawings from the accompanying drawings without creative efforts.
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(25) Objective achieving, function features, and advantages of the present disclosure are further described with reference to the embodiments and the accompany drawings.
DETAILED DESCRIPTION
(26) Technical solutions of the present disclosure are further described in detail with reference to the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are merely used for describing the present disclosure, but are not intended to limit the present disclosure.
(27) It needs to be understood that, when an element is regarded as “connected with/to” another element, it may be directly carried on another element or also has a centering element. When one element is regarded as “connected with/to” another element, it may be directly connected with another element or probably has the centering element. In the present disclosure, the terms “perpendicular”, “horizontal”, “left”, “right” and other similar expressions are just for a purpose of interpretation, but not being limited within a sole embodiment.
(28) Unless otherwise defined, the meaning of all the technical and scientific terms in the present disclosure belongs to the same meaning understood by the technical personnel in the technical field of the present disclosure. The terms utilized by the present disclosure are just used for describing specific purposes of the embodiments, not aims to limit the present disclosure. Each technical feature in above embodiments can be randomly combined. To describe simply, all possible combinations of each technical feature in the above embodiment can be described, however, as long as all combinations of those technical features have no contradictions, which should be regarded as within the scope of the present disclosure.
(29) The present disclosure provides a washing drum of the washing machine that includes a large container and a small container. The small container is detachably disposed in the large container, and an opening of the small container and an opening of the large container are positioned opposite to each other. Between an external wall of the small container and an internal wall of the large container has a gap. When the small container is disposed in the large container, the clothes may be set in the small container for separate washing, meanwhile, the gap space between the large container and the small container may also wash clothes, thus the water in the large container won't flow into the small container so as to separate the clothes in the small container from the clothes in the large container. When there is no need of separate washing, the small container may be detached from the large container, and just the large container is used to wash normal clothes. Next several specific embodiments related to the washing drum of the present disclosure will be interpreted in detail.
(30) With reference to
(31) The washing drum 10 is disposed in the case of the washing machine. The washing drum 10 is configured for accommodating the clothes needing washing, water for washing clothes and laundry detergents etc. A machine cover is disposed on top of the case of the washing machine, also pivoted with the top of the case of the washing machine.
(32) With reference to
(33) With reference to
(34) More specifically, the positioning column 210 may be a spline, or a section of the positioning column 210 may be a regular polygon. If the positioning column 210 is a polygon column, an outer diameter of the positioning column 20 is further defined decreasing from the bottom to the top, such as in the embodiment that the section of the positioning column 210 is pentagon, that is, the positioning column 210 is a pentagon column. Not only can the small container 300 be assembled on the wave wheel 200, but also can provide power for the rotation of the small container 300. Of course, in other embodiments, the section of the positioning column 210 may be a regular triangle, a square or a hexagon etc.
(35) A height of the positioning column 210 is greater than or equal to 70 mm, ensuring when the small container 300 is carried on the wave wheel 200, the small container 300 won't depart from the positioning column 210. For example, in the embodiment that the height of the positioning column 210 is determined as 120 mm so as not to cause a large eccentric of the small container 300 during rotation.
(36) The positioning column 210 has a positioning hole 211, a fastener (not shown) is passing through the positioning column 210, which enables the wave wheel 200 to be positioned on the first bottom part 100b of the large container 100. More specifically, the positioning hole 211 may be a screw hole and the fastener is a nut bolt. When it is used, there is no need to disassemble the original washing machine complicatedly, it only needs to replace an original wave wheel with the wave wheel 200 in the embodiments of the present disclosure.
(37) With reference to
(38) The bevel 300c of the small container 300 tilts outwards, enabling the diameter of the small container 300 to be increasing along the direction from the second bottom 300b to the second opening 300a. More specifically, the bevel 300c of the small container 300 may tilt outwards 1.5° or bigger than 1.5°, but the bevel 300c of the small container 300 can't tilt outwards too much, avoiding the clothes in the small container 300 spun off during the rotation of the small container 300. Since the bevel 300c of the small container 300 is segregated from the bottom part 300b of the large container 100, water in the small container 300 can only be spun off from the second opening end 300a along the tilted bevel 300c, then the water flows into the large container 100, afterwards flowing out of the washing machine with the water in the large container 100. Of course, in other embodiments, the bevel 300c of the small container 300 is not tilted, but a one-way valve is given on the small container 300 to cause the water in the large container 100 can't flow into the small container 300, while the water in the small container 300 can flow into the large container 100 in the process of dehydration.
(39) The second bottom part 300b concaves to form a recess 310 matched with a positioning column 210, making the positioning column 210 inserted into the recess 310. More specifically, the shape of the recess 310 is the same as the shape of the positioning column 210. After being assembled, the fitting between the bottom of the small container 300 and the wave wheel 200 is gapless.
(40) Or after the second bottom part 300b of the small container 300 is assembled on the positioning column 210 of the wave wheel 200, an adequate gap is existed between the exterior of the positioning column 210 and the lateral of the recess 310, then an anti-slip mat (not shown) is set between the second bottom part 300b of the small container 300 and the wave wheel 200, strengthening a frictional force between the small container 300 and the wave wheel 200, thus the assembling reliability is improved to avoid the small container 300 being departed from the wave wheel 200 in the process of rotation.
(41) More specifically, the anti-slip mat is an anti-slip rubber pad. When the small container 300 with the anti-slip rubber pad is disposed on the wave wheel 200, complete contact of the surfaces of the anti-slip mat and the wave wheel 200 ensures a certain extrusion pressure.
(42) With reference to
(43) With reference to
(44) In the embodiment that the small container 300 is assembled easily, if needed, the recess 310 of the small container 300 is set to align with the positioning column 210 of the wave wheel 200, then the small container 300 is disposed herein. In a process of disassembling, the small container 300 moves upward to depart from the recess 310 and the positioning column 210 successively.
(45) Specifically, in other embodiments that the small container 300 may be integrated with the wave wheel 200, the bottom part 300b of the small container 300 is disposed on the wave wheel 200 and the wave wheel 200 is detachably disposed on the first bottom part 100b of the large container 100. For example, by means of a fastener such as a nut bolt or a method of slap-fit, the wave wheel 200 is detachably disposed on the first bottom part 100b of the large container 100. The diameter of the wave wheel 200 is bigger than the outer diameter of the small container 300. Detaching the wave wheel 200 from the large container 100 quickly, then the small container 300 and the wave wheel 200 integrated as one is assembled.
(46) Specifically, in the embodiment that the small container 300 and the large container 100 are respectively given a dynamic structure and a washing procedure, thus when the small container 300 acts solely, in the original washing machine, the large container 100 may reach the aim of saving energy without rotation. Specifically, the washing machine includes a first dynamic structure, a first control device, a second dynamic structure and a second control device, the first control device controls the first dynamic structure to drive the large container rotating, the second control device controls the second dynamic structure to drive the small container 300 rotating. The first dynamic structure and the second dynamic structure may be independent with each other.
(47) For instance, to realize rotation of the small container 300 is independent of the large container 100, the washing machine is powered by direct-drive mode, meanwhile, the washing procedure of the washing machine is designed. And a separated button is disposed thereon, after the user choses the washing procedure of the small container 300 by the button, of which the washing procedure is the same as an ordinal procedure. In a process of dehydration that the clutch and the large container 100 are not working, just the wave wheel 200 and the small container 300 assembled on the wave wheel 200 are driven by the washing shaft to rotate so as to reach the aim of dehydration. Consequently when the small container 300 is used to separately wash small pieces of clothes, the large container 100 is not working, therefore saving lots of electricity as well as reaching the aim of saving water and electricity.
(48) Of course, in other embodiments that the small container 300 and the large container 100 may share one same dynamic structure and one same washing procedure, an aim that the small container 300 and the large container 100 are used to wash simultaneously may come true.
(49) The above washing machine and washing drum 10 at least own following advantages:
(50) In the present disclosure that an independent small container 300 disposed in the large container 100 may be fitted with the recess 310 by using the positioning column 210 or integrated with the wave wheel 200, and thus with the large container 100 which may form a container-in-container structure. In a washing process that the special clothes are disposed in the small container 300 while the water in the large container 100 fail to flow into the small container 300 during dehydration, the water in the small container 300 is spun off the bevel of the small container 300 into the large container 100, afterwards draining any water out of the large container 100, whereby separate washing of the clothes needing special care is realized. If no need to wash special clothes, just the small container is detached from the large container 100 and the positioning column 210 is assembled with the recess 310, which is convenient and quick.
(51) With reference to
(52) The washing drum 10h is disposed in the case of the washing machine, configured for accommodating the clothes needing washing, water and detergent etc. A machine cover that is pivoted is also disposed on the top of the case.
(53) With reference to
(54) With reference to
(55) A side of the wave wheel 200h that the side thereof is away from the first bottom part 100hb protrudes to form a water string 220h with a certain height. With reference to
(56) With reference to
(57) With reference to
(58) With reference to
(59) With reference to
(60) The bevel 300hc of the small container 300h includes convex ribs 330h. The number of the convex ribs 330h is multiple, multiple convex ribs 330h are interval arranged on a periphery of the bevel 300hc of the small container 300h. Each convex rib 330h extends along an axial direction of the bevel 300hc of the small container 300h, so as to strengthen the container wall and the water string, to increase the frictional forces between the container wall, the water string with the clothes, also to fix the clothes during dehydration, with consequently contributing to dehydration effect.
(61) An anti-slip mat (not shown) is disposed between external of the second bottom part 300hb of the small container 300h and the wave wheel 200h, for enhancing the frictional force between the small container 300h and the wave wheel 200h, further enhancing reliability of assembling, so as not to cause the detaching of the small container 300h from the wave wheel 200h during rotation.
(62) More specifically, the anti-slip mat is an anti-slip rubber mat. After the small container 300h having the anti-slip rubber mat is disposed on the wave wheel 200h, the anti-slip rubber mat and the wave wheel 200h are completely contacted to ensure a certain pressure. Between the small container 300h and the wave wheel 200h has a gap for avoiding, if the small container 300h contacts the wave wheel 200h beforehand, in a case infirmness of the contact when the anti-slip rubber mat is pressed to deform.
(63) With reference to
(64) More specifically, the number of the hinge mechanisms 400 is two, two hinge mechanisms 400 are respectively disposed at two sides of the pull ring 340h, it is selectable to respectively dispose the two mechanisms 400 at two different sides of the small container 300h in the radial direction. The number of the slide blocks 410 of each hinge mechanism 400 is two, two slide blocks 410 are respectively disposed in the mounting holes 210h.
(65) The connecting rod 420 includes a first connecting rod 421, a second connecting rod 422 and a third connecting rod 423, each slide block 410 is hinged with one end of the first connecting rod 421. Therefore, the number of the first connecting rods 421 is four, each slide block 410 is corresponding with a first connecting rod 421. The other end of the first connecting rod 421 is hinged with one end of the second connecting rod 422, that is, one end of the second connecting rod 422 has two first connecting rods 421. The other end of the second connecting rod 422 is hinged with one end of the third connecting rod 423, the other end of the third connecting rod 423 is connected with the pull ring 340, one end of the spring 430 is connected with the third connecting rod 423, the other end is fixed with the lateral wall 300hc of the small container 300h.
(66) When the user lifts pull ring 340h to lift the small container 300h, the pull ring 340h drives the third connecting rod 423 to move upwards, when the second connecting rod 422 moves upwards, the spring 430 is stretched thus the first connecting rod 421 moves upwards too, so as to drive two opposite slide blocks 410 to move closer with each other, and hence the slide blocks 410 departs from the mounting hole 210h. On the contrary, when the small container 300h is disposed on the wave wheel 200h, the pull ring 340h is drop back due to the action of the spring 430. Because of the gravity and the spring force, the third connecting rod 423, the second connecting rod 422 and the first connecting rod 421 move downwards, thus ensuring the two slide blocks 410 to move departing from each other until move into corresponding mounting holes 210h, which reaches a purpose of fixing.
(67) More specifically, in the embodiment, each of the small container 300h and the large container 100h has an independent dynamic structure and a washing procedure, therefore when the small container 300h is in a sole operation, the large container 100h doesn't need to operate, which reaches a purpose of saving energy. More specifically, the washing machine includes a first dynamic mechanism, a first control device, a second dynamic mechanism and a second control device. The first control device controls the first dynamic mechanism to drive the rotation of the large container 100h, the second control device controls the second dynamic mechanism to drive the rotation of the small container 300h. The first dynamic mechanism and the second dynamic mechanism are independent with each other.
(68) For example, to realize the rotation of the small container 300h is independent with the large container 100h, the washing machine adopts a direct driving system. Moreover, by means of designing the washing procedure of the washing machine, a sole button is added, whereby users may choose the small container 300h to wash. The washing procedure of the washing machine is the same as an ordinal procedure, during dehydration the clutch is not working while the large container 100h is not working, only the washing shaft drives the wave wheel 200h and the small container 100h mounted on the wave wheel 200h to rotate in high speed to realize the purpose of dehydration. In that case, when the small container 300h is solely washing small pieces of clothes, the large container 100h doesn't work, which saves a great amount of electricity as well as reaches the purposes of saving water and electricity.
(69) Of course, in other embodiments that the small container 300h and the large container 100h share one same dynamic structure and control device, so as to realize the purpose that the small container 300h and the large container 100h wash simultaneously.
(70) The aforementioned washing machine and the washing drum thereof own at least following characters:
(71) By means of a sole small container 300h disposed in the large container 100h, the small container 300h may be detachably disposed in the large container 100h by using a hinge mechanism 400, so as to form a container-in-container structure. In the process of washing, the clothes needing special care are disposed in the small container 300h, the water in the large container 100h can't flow into the small container 300h, and the water in the small container 300h may be thrown into the large container 100h along the tilted bevel 300hc of the small container 300h during dehydration, which realize the purpose of separate washing of clothes needing special care. When users lift the pull ring 340h to lift the small container 300h, the pull ring 340h drives the connecting rod 420 to move upwards, so as to drive the slide block 410 to move until departing from the mounting holes 210h. On the contrary, when the small container 300h is disposed on the wave wheel 200h, the pull ring 340h is drop back due to the action of the spring 430. Because of the gravity and the spring force, the connecting rod 421 move downwards, thus the slide blocks 410 move into the mounting holes 210h on the wave wheel 200h, which reaches a purpose of fixing.
(72) With reference to
(73) In the embodiment, each leave 231 is evenly disposed on a periphery wall of the mixing column 230, which ensures the strength of the mixing column 230 is evenly distributed so as to mix more evenly. Moreover, in the embodiment, an end of the leave 231 that nears to the wave wheel 200g is integrally connected with the wave wheel, extending outwards along an axis of the wave wheel. Therefore, the stress of the leaves 231 is increased as well as the mixing area of the leaves 231 is increased, improving the cleaning effect.
(74) With reference to
(75) To cause the rotation of the container body 710 more smoothly, such as, as shown in
(76) To cause the clothes can be more easily disposed in the container body 710 and get a better cleaning effect, for instance, as shown in
(77) To further improve the cleaning effect, for instance, as shown in
(78) For instance, as shown in
(79) For instance, as shown in
(80) According to the third embodiment of the present disclosure, furthermore, as shown in
(81) To reduce the thickness of the container wall 720 and reduce occupation space of the small container 700, to provide a larger washing space, for instance, as shown in
(82) The foregoing descriptions are merely embodiments of the present invention, and are not intended to limit the scope of the present invention. An equivalent structural or equivalent process alternation made by using the content of the specification and drawings of the present invention, or an application of the content of the specification and drawings directly or indirectly to another related technical field, shall fall within the protection scope of the present invention.
(83) Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.