The present invention relates to a washing machine having a dual-drum of a main drum and a sub drum, and more particularly, to a sub drum capable of enhancing a coupling structure with a sub drum spider, capable of increasing an inner capacity thereof, and capable of improving roundness and an assembly structure, a washing machine having the sub drum and a main drum, and an assembly method thereof.
Generally, a washing machine serves to forcibly move laundry inside a drum which rotates by receiving a driving force of a driving motor, using a mechanical force such as a frictional force between the drum and the laundry, in a state where a detergent, washing water and the laundry have been introduced into the drum. As the laundry receives a physical force such as friction or impact, a washing operation is performed. The washing operation may be performed by a chemical reaction through a contact between the laundry and the detergent. The chemical reaction of the detergent may be accelerated as the laundry moves in the drum.
In a drum type washing machine much used recently, a rotation shaft of a drum is formed in a horizontal direction. The rotation shaft of the drum may be inclined from the horizontal direction. In such drum type washing machine where the rotation shaft is formed in a horizontal direction, laundry moves in a circumferential direction along an inner circumferential surface of the drum.
Laundry moves along the inner circumferential surface of the drum by a centrifugal force due to rotation of the drum, and by friction with the inner circumferential surface of the drum. A lifter, configured to help such movement of the laundry, may be provided on the inner circumferential surface of the drum. According to a rotation speed of the drum, the laundry may perform a circular motion along the inner circumferential surface of the drum, or may perform a falling motion from an upper side of the drum by gravity. Such falling motion greatly influences on a washing effect.
Movement of the laundry in the drum greatly influences on a washing effect. More specifically, various movements of the laundry result in a uniform washing operation by changing contact surfaces between the laundry and the inner circumferential surface of the drum. Further, a washing effect can be enhanced by increasing a physical force applied to the laundry.
In the conventional drum type washing machine, a single drum is rotated to move laundry. The laundry can move only in a circumferential direction of the drum along the inner circumferential surface of the drum on the initial position. That is, the laundry cannot perform a complicated movement such as a movement in a shaft direction or a rotation movement. The laundry can perform only a 2D movement. The reason is because an additional external force to generate a complicated movement of the laundry is not generated. Under such configuration, the movement of the laundry is limited, and thus the washing effect is limited. Further, a washing time (duration) and power consumption are increased.
Therefore, an object of the present invention is to provide a dual-drum washing machine capable of enhancing roundness and durability, and capable of reducing the material cost by improving a sub drum, and an assembly method thereof.
Another object of the present invention is to provide a dual-drum washing machine capable of enhancing a coupling structure between a sub drum and a sub drum spider, of increasing an inner capacity of the sub drum, and of facilitating an operation to process dehydration holes and patterns, and an assembly method thereof.
To achieve these and other advantages and in accordance with the purpose of the present invention, as embodied and broadly described herein, there is provided a washing machine having a dual-drum, comprising: a cabinet which forms an appearance of the washing machine; a tub provided in the cabinet; a main drum rotatably mounted in the tub; a sub drum mounted in the main drum so as to perform a relative rotation with the main drum; a hollow type outer shaft connected to the main drum; an inner shaft connected to the sub drum in the outer shaft; a main drum spider configured to connect the main drum and the outer shaft to each other; a sub drum spider configured to connect the sub drum and the inner shaft to each other; and a driving motor.
The driving motor may include: a stator; an outer rotor connected to the inner shaft, and rotated outside the stator; and an inner rotor connected to the outer shaft, and rotated inside the stator. Under such configuration, the main drum and the sub drum can be rotated in an independent manner.
The sub drum may include: a cylindrical portion which forms an outer circumferential surface of the sub drum; and a sub drum back which forms a rear surface of the sub drum, and to which the sub drum spider is coupled. The sub drum back may include an accommodation portion forward-concaved from the sub drum back and configured to accommodate the sub drum spider at a rear side thereof.
The sub drum spider may be provided with a plurality of cantilevers radially extending from the inner shaft, and may be coupled to the sub drum back.
According to another embodiment of the present invention, the sub drum may be a single member where the cylindrical portion and the sub drum back have been integrated with each other.
The accommodation portion may be provided with coupling holes for coupling the sub drum spider thereto. The coupling holes formed at the accommodation portion may be adjacent to an end of the accommodation portion in a radius direction. And the accommodation portion may be formed at an inner side of the sub drum back by being spaced from an outer circumference of the sub drum back. The sub drum spider may be provided with coupling holes corresponding to the coupling holes of the accommodation portion. The cantilevers of the sub drum spider may be formed such that a length thereof is smaller than a radius of the sub drum back so as to be accommodated in the accommodation portion.
According to another embodiment of the present invention, the cylindrical portion and the sub drum back of the sub drum may be configured as independent members. The sub drum back may be coupled to an outer circumference of the rear of the cylindrical portion to close a rear side opening of the cylindrical portion.
The accommodation portion of the sub drum back may be extending up to an outer circumference of the sub drum back.
The cylindrical portion may include sub drum back coupling holes formed at a rear end thereof. And the sub drum back may include a bending portion formed as an outer circumference of the sub drum back is bent in a lengthwise direction of the sub drum, and cylindrical portion coupling holes formed at the bending portion.
The sub drum spider may be formed such that its cantilevers are extending up to the outer circumference of the sub drum back, and each end of the cantilevers of the sub drum spider may be coupled to the sub drum back on an outer circumference of a rear surface of the cylindrical portion.
To achieve these and other advantages and in accordance with the purpose of the present invention, as embodied and broadly described herein, there is also provided an assembly method of a washing machine, the method comprising: forming a rear surface of a sub drum; and coupling the sub drum spider with the rear surface of the sub drum.
The sub drum may be driven independently from a main drum rotatably disposed in a tub fixed to a cabinet, and may be rotatably disposed in the main drum.
The step of forming the rear surface of the sub drum may include covering a rear side opening of a cylindrical portion which forms an outer circumference of the sub drum, with a sub drum back which forms the rear surface of the sub drum.
The sub drum back may include an accommodation portion forward-concaved from the sub drum back.
The step of coupling the sub drum spider to the rear surface of the sub drum may include: accommodating the sub drum spider into an accommodation portion forward-concaved from the sub drum back; and coupling the sub drum spider to the sub drum back via bolts.
In the step of coupling the sub drum spider to the sub drum back via bolts, the sub drum spider may be coupled to the sub drum back through coupling holes formed at a rear end of the cylindrical portion of the sub drum, and coupling holes formed at a bending portion of the sub drum back.
The present invention can have the following advantages.
According to an embodiment, the sub drum of the dual-drum washing machine can be formed as an integrated type. This can allow roundness and durability to be enhanced, and the material cost to be reduced.
According to another embodiment, a coupling structure between the sub drum spider and the sub drum back can be enhanced as the cylindrical portion of the sub drum and the sub drum back are adopted in an independent manner. An inner capacity of the drum can be increased. Further, an operation to process dehydration holes and patterns can be facilitated.
Reference will now be made in detail to the preferred embodiments of the present invention, examples of which are illustrated in the accompanying drawings. It will also be apparent to those skilled in the art that various modifications and variations can be made in the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.
Description will now be given in detail of a washing machine having a dual-drum and an assembly method thereof according to embodiments, with reference to the accompanying drawings.
Referring to
The introduction opening 20 is open and closed by a door rotatably fixed to a cabinet. A control panel 30, having various types of manipulation buttons for manipulating the washing machine, is disposed above the introduction opening. A detergent supply device (not shown), configured to supply a detergent, etc., is provided at one side of the control panel 30.
A tub 40 of a cylindrical shape, a main drum 50 and a sub drum 60 are provided at an accommodation space in the cabinet 10. The tub 40 is configured to store therein washing water. The main drum 50 and the sub drum 60 are rotatably installed in the tub 40, and laundry is introduced thereinto. A driving motor 70, configured to drive the main drum and the sub drum, is provided at a rear side of the tub 40.
The tub 40 of a cylindrical shape can accommodate therein the main drum 50 and the sub drum 60. A front surface of the tub 40 is open so as to be connected to the open introduction opening 20 of the cabinet. Accordingly, a gasket, which encloses the front surface of the tub 40 and the introduction opening of the cabinet, is provided between the front surface of the tub and the introduction opening of the cabinet. Such configuration is implemented in order to prevent washing water in the tub 40 from being introduced into the cabinet.
The main drum 50 of a cylindrical shape is rotatably mounted in the tub 40. A plurality of through holes, through which washing water is discharged out, may be formed on side surfaces of the main drum 50.
The sub drum 60 of a cylindrical shape is rotatably mounted in the main drum 50. The sub drum 60 is mounted so as to perform a relative rotation with the main drum. That is, as the main drum and the sub drum can be driven in an independent manner, various relative rotations can be implemented according to a rotation speed and a rotation direction of the drums.
The driving motor 70, a device configured to generate a driving force for driving the main drum and the sub drum, is mounted on a rear surface of the tub 40. The driving motor 70 includes a stator 71, an outer rotor 72 rotated outside the stator, and an inner rotor 73 rotated inside the stator. The driving motor having such two rotors is called a dual-rotor motor.
If a current flowing to coils wound on the inner winding portion and the outer winding portion of the driving motor 70 is controlled, the inner rotor and the outer rotor are rotated in an independent manner. As a result, as shown in
Such configuration is implemented to independently drive the main drum and the sub drum by the driving motor, and to make laundry rotate by a speed difference between relative rotations of the two drums. Under such configuration, laundry is rotated in the drum with 3D motions.
The main drum 50 and the outer shaft 81 are connected to each other by a main drum spider 91. Referring to
Referring to
The outer shaft coupling portion 92 is formed at a central portion of the main drum spider 91, and is provided with coupling holes to which the outer shaft 81 is coupled. The main drum spider supporting portion is configured as a plurality of cantilevers 93 radially extending from the central portion of the main drum spider 91. The main drum fixing portion 94 is configured as a ring which connects the respective ends of the plurality of cantilevers 93 of the main drum spider supporting portion to each other. The main drum spider supporting portion is configured to support the main drum spider, so that a driving force of the outer shaft 81 can be transmitted to the main drum through the main drum spider. In a modified embodiment, the main drum spider supporting portion may be configured as a disc extending from the outer shaft coupling portion 92.
The main drum spider 91 is coupled to an outer circumferential surface of the main drum. That is, the main drum fixing portion of a ring shape is coupled to the end of the outer circumferential surface of the main drum. The outer circumferential surface of the main drum may be coupled to the main drum fixing portion 94 by welding or via screws.
The sub drum 60 and the inner shaft 82 are connected to each other by a sub drum spider 95. Referring to
The sub drum spider 95 includes an inner shaft coupling portion 96 coupled to the inner shaft 82, and a sub drum fixing portion having a plurality of cantilevers 97 radially extending from the inner shaft coupling portion 96.
Each end of the cantilevers 97 of the sub drum fixing portion is fixed to the sub drum back 62. The sub drum back 62 further includes an accommodation portion 63 inward-concaved from the sub drum back in correspondence to a shape of the sub drum spider. The sub drum spider 95 is accommodated in the accommodation portion 63, thereby being adhered to the sub drum back 62. The cantilevers 97 of the sub drum fixing portion and the sub drum back 62 may be coupled to each other by welding or via screws.
Referring to
As the sub drum spider 95 rotates independently from the main drum spider 91, the main drum 50 and the sub drum 60 can rotate independently from each other. The aforementioned configurations provide a washing machine where the main drum and the sub drum are independently driven by the driving motor using additional spiders.
Referring to
As the outer rotor and the inner rotor are independently driven, the main drum and the sub drum can perform a relative rotation in various manners. That is, the main drum and the sub drum can perform a relative rotation in different rotation directions. Alternatively, the main drum and the sub drum can perform a relative rotation at different speeds in the same rotation direction.
Referring to
An inner circumferential surface of the main drum may be divided into a first surface 50a not facing an outer circumferential surface of the sub drum, and a second surface 50b facing the outer circumferential surface of the sub drum. The main drum lifters 101 are provided on the first surface 50a. The main drum lifters 101 may be disposed with the same interval therebetween along an inner circumferential surface of the main drum. And, the sub drum lifters 102 may be disposed with the same interval therebetween along an inner circumferential surface of the sub drum. A plurality of lifters are provided on the inner circumferential surface of the drum so that laundry inside the drum may perform 3D motions.
A length ratio of the main drum lifters 101 and the sub drum lifters 102 in an axial direction may be proportional to a length of the first surface 50a of an inner circumferential surface of the main drum, and a length of an inner circumferential surface 60a of the sub drum. Referring to
Referring to
Hereinafter, the sub drum and an assembly method thereof according to the present invention will be explained in more detail with reference to
The sub drum includes a cylindrical portion which forms an outer circumferential portion; and a sub drum back which forms a rear surface of the sub drum, and to which the sub drum spider is coupled. The sub drum back includes an accommodation portion forward-concaved from the sub drum back and configured to accommodate the sub drum spider on a rear surface of the sub drum back.
As aforementioned, the sub drum spider is provided with the sub drum fixing portion having the plurality of cantilevers 97 radially extending from the inner shaft, and is coupled to the sub drum back.
Referring to
The sub drum 60 in this embodiment may be implemented as the sub drum back coupling holes 61aa and the cylindrical portion coupling holes 62aa are coupled to each other via coupling bolts, etc. in an aligned state.
An accommodation portion 63 of the sub drum back 62 may be extending up to an outer circumference of the sub drum back 62. A plurality of cantilevers 97 of a sub drum fixing portion provided at the sub drum spider 95 may be extending up to an outer circumference of the sub drum back 62, from the inner shaft 82 in a radial direction. Referring to
When compared with a sub drum 60′ according to another embodiment of the present invention to be explained later, the sub drum 60 according to one embodiment of
In this embodiment, the cylindrical portion 61 and the sub drum back 62 are assembled to each other to implement the sub drum 60. Dehydration holes, patterns, etc. are formed at each member before assembly processes. Accordingly, in the sub drum according to this embodiment, an operation to process dehydration holes, patterns, etc. is facilitated.
However, in this embodiment, the sub drum 60 is implemented as independent members are assembled to each other. This may cause a bonding intensity of the members to be weaker than that of an integrated type sub drum 60′.
An assembly method of the washing machine including the sub drum 60 of
An assembly method of the washing machine according to one embodiment of the present invention comprises: forming a rear surface of the sub drum; and coupling the sub drum spider 95 to the rear surface of the sub drum.
The step of forming the rear surface of the sub drum includes closing a rear side opening of the cylindrical portion 61 with the sub drum back 62.
The step of coupling the sub drum spider 95 to the sub drum 60 includes: accommodating the sub drum spider 95 into the accommodation portion 63 forward-concaved from the sub drum back 62; and coupling each end of cantilevers 97 of the sub drum spider 95 to the sub drum back 62 via bolts.
In the step of coupling each end of cantilevers 97 of the sub drum spider 95 to the sub drum back 62 via bolts, the coupling may be performed through the coupling holes 61aa formed at a rear end of the cylindrical portion 61 of the sub drum 60, the coupling holes 62aa formed at the bending portion 62a of the sub drum back 62, and coupling holes 98 formed at the end portion of each cantilevers 97.
In a case where the sub drum 60′ is configured as a single member, the intensity of the member can be enhanced, and the durability can be enhanced due to no additional coupling operation. Further, roundness of the sub drum can be enhanced.
In this embodiment, the sub drum 60′ should be formed as a single member. For this, as shown in
Referring to
The accommodation portion 63′ is configured to accommodate therein the sub drum spider 95′ having a plurality of cantilevers 97′ in a radial direction, so that a rotational force of the sub drum spider 95′ can be transmitted to the sub drum 60′.
The sub drum spider 95′, which has been accommodated in the accommodation portion 63′, is stably coupled to the sub drum back 62′ by coupling bolts, etc. For this, the spider coupling holes 63aa are formed at the accommodation portion 63′, and coupling holes 98′ are provided at the sub drum spider 95′.
Referring to
Number | Date | Country | Kind |
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10-2012-0112047 | Oct 2012 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2013/008991 | 10/8/2013 | WO | 00 |