The present invention relates to subject matter contained in priority Korean Application No. 10-2007-0022177, filed on Mar. 6, 2007, which is herein expressly incorporated by reference in its entirety.
1. Field of the Invention
The present invention relates to a foreign materials filtering apparatus, and more particularly, to a foreign materials filtering apparatus for a washing machine and a washing machine having the same.
2. Description of the Background Art
Generally, a washing machine is largely classified into a drum type washing machine that a washing tub rotates in a horizontal direction with respect to the ground, and a pulsator type washing machine the washing tub rotates in a vertical direction with respect to the ground. According to the drum type washing machine, while a washing tub rotates, laundry comes into friction with an inner wall of the washing tub or drops from the washing tub thereby to be cleaned. On the contrary, according to the pulsator type washing machine, laundry comes into friction with a water current generated while a pulsator rotates, or is entangled by the pulsator, thereby being cleaned.
In the conventional pulsator type washing machine, a foreign materials filtering apparatus for filtering each kind of foreign materials such as nap generated from laundry during a washing process is installed above the washing tub.
In the foreign materials filtering apparatus, a filtering net for filtering foreign materials is attached to a frame detachably mounted at the washing tub. The frame is formed of an elastic material in a rectangular belt shape so as to be detachably mounted at the washing tub. And, the filtering net is formed of a mesh-shaped fibrous material or a material similar thereto having a certain aperture ratio so as to pass washing water and filter foreign materials.
In a washing machine having the foreign materials filtering apparatus, a pulsator provided on a bottom surface of a washing tub rotates to generate a water current, and by the generated water current, washing water rises along a passage formed between an inner wall and an outer wall of the washing tub. The risen washing water is introduced into the washing tub via the foreign materials filtering apparatus. While the washing water passes through the foreign materials filtering apparatus, foreign materials such as nap detached from laundry and mixed with the washing water are filtered by passing through a filtering net of the foreign materials filtering apparatus.
However, the conventional foreign materials filtering apparatus has the following problems.
The filtering net is installed to be exposed to inside of the washing tub, thereby repeatedly coming in contact with laundry. Accordingly, the filtering net or laundry may be damaged, or the frame may be detached from the washing tub, which causes the entire appearance to be degraded.
Therefore, it is an object of the present invention to provide a foreign materials filtering apparatus capable of preventing a filtering net and laundry from being damaged by preventing friction therebetween, and capable of preventing a frame from being detached from a washing tub, and a washing machine having the same.
It is another object of the present invention to provide a foreign materials filtering apparatus capable of easily installing a filtering net and enhancing the entire appearance, and a washing machine having the same.
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 foreign materials filtering apparatus, comprising: a washing water circulating duct having one or more washing water inlets; a filter cover mounted so as to cover the washing water inlets; and a net filter disposed between the washing water circulating duct and the filter cover, for filtering foreign materials from washing water introduced through the washing water inlets.
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 a washing machine having a foreign materials filtering apparatus, comprising: a cabinet; a reservoir received in the cabinet, for containing washing water therein; a washing tub received in the reservoir, and rotated at the time of a washing or dehydrating process, for containing laundry therein; a pulsator installed at the washing tub, for stirring laundry; and a foreign materials filtering apparatus comprising: a washing water circulating duct installed on an inner circumferential surface of the washing tub, having a washing water guiding passage, and having one or more washing water inlets inside the washing water guiding passage, for circulating washing water when the pulsator rotates; a filter cover mounted at the washing water circulating duct and having drain holes so as to communicate with the washing water inlets; and a net filter disposed between the washing water circulating duct and the filter cover, for filtering foreign materials from washing water.
The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent from the following detailed description of the present invention when taken in conjunction with the accompanying drawings.
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention.
In the drawings:
Reference will now be made in detail to the preferred embodiments of the present invention, examples of which are illustrated in the accompanying drawings.
Hereinafter, a foreign materials filtering apparatus and a washing machine having the same according to the present invention will be explained in more detail with reference to the attached drawings.
As shown, a washing machine 100 to which a foreign materials filtering apparatus according to the present invention is applied, comprises: a cabinet 110 that forms the appearance; a top cover 120 mounted at an upper side of the cabinet 110; and a lid 130 mounted at an upper side of the top cover 120, for opening and closing a washing tub 150 to be later explained.
A reservoir 140 for containing washing waster therein is installed in the cabinet 110, and a washing tub 150 containing laundry therein and washing the laundry while rotating is installed in the washing tub 140. A pulsator 160 for stirring laundry is installed at a lower surface of the washing tub 150, and a foreign materials filtering apparatus 200 is installed at a part on an inner wall of the washing tub 150.
A control panel 170 for controlling an operation of the washing machine is installed at one side of the top cover 120, and a detergent box 180 is inserted into an inner inclination surface of the top cover 120.
Unexplained reference numeral 190 denotes a driving unit.
The operation of the washing machine according to the present invention will be explained.
First, laundry is put into the washing tub 150, and washing conditions are inputted by pressing a course selection button, etc. mounted at the control panel 170. Then, an operation button is pressed to start a washing process, and thereby washing water is introduced into the washing tub 150. As the washing water reaches a certain level, the pulsator 160 rotates thus to start a washing process.
As the pulsator 160 rotates, a centrifugal force is applied to the washing water. By the centrifugal force, the washing water is moved toward an inner wall of the washing tub 150, and circulates along the inner wall. As the washing tub 150 and the pulsator 160 alternately rotate with a certain time gap therebetween in opposite directions to each other, a washing process is performed while water current and laundry are mixed to each other. Here, the washing water passes through the foreign materials filtering apparatus 200 while circulating toward inside of the washing tub 150. As the washing water passes through the foreign materials s filtering apparatus 200, foreign materials such as nap mixed with the washing water are filtered by the foreign materials filtering apparatus 200.
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The frame 231 is formed to have the same shape as the filter fixing rib 226 of the cap 221, and preferably, is formed to have a diamond shape or a rectangular shape, etc. so as to form an inlet of the filtering net 232. The frame may be formed so that its upper, right and left sides can have the same height as the filter fixing rib of the cap 221, but its lower side can have a height lower than the filter fixing rib so as to downwardly extend the filtering net. A stopping jaw 231 a for limiting an inserted depth of the frame 231 to the cap 221 by locking the frame 231 by the filter fixing rib is outwardly curved at a rear end of the frame.
Although not shown, the net filter 230 may be insertion-coupled to an outer surface of the filer fixing rib 226.
Unexplained reference numeral 215 denotes a duct fixing protrusion.
Hereinafter, processes for assembling the foreign materials filtering apparatus according to the present invention will be explained.
First, the fixing groove 228b of the handle 222 is fitted into the handle fixing rib 225 of the cap 221, and the hook protrusion 229 of the handle 222 is inserted into the hook inserting groove 221a of the cap 221, thereby coupling the handle 222 to the cap 221. Here, the handle locking protrusion 221b is protrudingly formed at right and left sides of the hook inserting groove 221a in a circumferential direction, thereby supporting upper and lower sides of the handle 222 by locking an extended portion between the handle body 228 of the body 222 and the hook protrusion 229.
Then, the frame 231 of the net filter 230 is coupled to the filter fixing rib 226 of the cap 221, thereby detachably mounting the cap 221, the handle 222, and the net filter 230 to the washing water circulating duct 210 as a unit. Here, a fixing jaw 231a is formed at the frame 231 of the net filter 230 with a multi-step, thereby being supported by being locked by the end of the filter fixing rib 226.
Then, the hook protrusion 229 of the handle 222 being held by a user's thumb and index finger is pressed, and then is released when mounted at the hook groove 214 of the washing water circulating duct 210. Accordingly, the handle body 228 is elastically restored to the original shape, and thus the hook protrusion 229 is fitted into the hook groove 214. Here, the net filter 230 becomes positioned between the washing water circulating duct 210 and the filter cover 220.
Hereinafter, processes for filtering foreign materials from the washing machine to which the foreign materials filtering apparatus is applied will be explained.
First, once the pulsator 160 rotates to generate a water current, washing water is moved toward an inner wall surface of the washing tub 150 by a centrifugal force due to the water current. The washing water rises along the washing water circulating duct 210 mounted on the inner wall surface of the washing tub 150, and then is introduced into the foreign materials filtering apparatus 200 through the washing water inlet 212 formed at an intermediate height of the washing water circulating duct 210.
Then, the washing water introduced into the foreign materials filtering apparatus 200 is guided to the filtering net 232 of the net filter 230 by the cap 221 disposed at the front side, and then is introduced into the washing tub 150 through the drain holes 224 of the cap 221 via the filtering net 232. Here, foreign materials such as nap are filtered by the filtering net 232. While the washing water is introduced into the filtering net 232, the drain holes 224 of the cap 221 may be blocked by the filtering net 232. However, the drain holes 224 can maintain a certain interval from the filtering net 232 owing to the interval protrusion 225. Accordingly, the washing water having passed through the filtering net 232 can smoothly drain.
Next, the foreign materials filtering apparatus 200 is disassembled in a reverse order to the aforementioned assembling order, thereby separating the net filter 232 therefrom 200 and removing foreign materials from the net filter 232. Then, the foreign materials filtering apparatus 200 is assembled again to perform a washing process.
Hereinafter, another embodiment of the filter cover of the foreign materials filtering apparatus according to the present invention will be explained.
According to the aforementioned embodiment, the cap 221 and the handle 222 of the filter cover 220 are individually fabricated to be assembled to each other. However, according to another embodiment, the cap 221 and the handle 222 are integrally fabricated. As shown in
The filter cover according to another embodiment has the configuration, assembly processes, and processes for filtering foreign materials similar to those according to the aforementioned embodiment, and thus its detailed explanation will be omitted except the following advantages. As the cap portion 220a and the handle portion 220b are integrally formed, the process for assembling them to each other is not required thus to reduce the fabrication cost. Furthermore, as the cap portion 220a and the handle portion 220b are integrally formed, the handle portion 220b is prevented from being detached from the cap portion 220a thus to enhance the reliability of the washing machine.
Hereinafter, still another embodiment of the filter cover of the foreign materials filtering apparatus according to the present invention will be explained.
According to still another embodiment, the filter cover 220 is screw-coupled to the washing water circulating duct 210 differently from the aforementioned embodiments using hooks instead of screws. To this end, through holes 222a are formed at the handle 222 or a handle portion (not shown), coupling holes (not shown) are formed at the washing water circulating duct 210 in correspondence to the through holes 222a, and the through holes 222a and the coupling holes are coupled to each other by screws (not shown). Here, the screws (not shown) may be formed of a corrosion-resistant metallic material or a plastic material with consideration of contact to washing water.
The screw-coupling between the filter cover 220 and the washing water circulating duct 210 provides more enhanced coupling force than the hook-coupling therebetween, even though it causes more inconvenience when detachably mounting the filter cover 220 to the washing water circulating duct 210. By the screw-coupling, the foreign materials filtering apparatus can be more stably maintained.
Hereinafter, an assembled position of the net filter of the foreign materials filtering apparatus according to the present invention will be explained.
The net filter 230 is coupled to the filter cover 220 to be modularized according to the aforementioned embodiments, whereas according to still another embodiment shown in
As the net filter 230 and the filter cover 220 are not modularized but are separately fabricated from each other, a double operation is required at the time of assembly or disassembly processes. However, the separate fabrication enables the filter cover 220 to be easily fabricated, and the net filter to be assembled to a precise position of the washing water inlet 212 of the washing water circulating duct 210. Furthermore, the net filter 230 is prevented from directly contacting laundry due to the filter cover 220, thereby preventing the net filter 230 or the laundry from being damaged, which is the same effect as the aforementioned embodiments.
In the foreign materials filtering apparatus and the washing machine having the same according to the present invention, the filter cover is installed at the washing water circulating duct disposed inside the washing tub, and the net filter is installed at an inner side of the filter cover. Accordingly, the net filter is prevented from directly contacting laundry, thereby preventing the net filter and laundry from being damaged. Furthermore, since the net filter is covered by the filter cover, the entire appearance is enhanced. Additionally, when the net filter is mounted at the filter cover, the filter unit becomes modularized to facilitate a detachable mounting.
The foregoing embodiments and advantages are merely exemplary and are not to be construed as limiting the present invention. The present teachings can be readily applied to other types of apparatuses. This description is intended to be illustrative, and not to limit the scope of the claims. Many alternatives, modifications, and variations will be apparent to those skilled in the art. The features, structures, methods, and other characteristics of the exemplary embodiments described herein may be combined in various ways to obtain additional and/or alternative exemplary embodiments.
As the present features may be embodied in several forms without departing from the characteristics thereof, it should also be understood that the above-described embodiments are not limited by any of the details of the foregoing description, unless otherwise specified, but rather should be construed broadly within its scope as defined in the appended claims, and therefore all changes and modifications that fall within the metes and bounds of the claims, or equivalents of such metes and bounds are therefore intended to be embraced by the appended claims.
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