1. Field of Invention
The present invention pertains to the art of washing machines and, more particularly, to a vertical axis washing machine including a rotating/tipping agitator.
2. Discussion of Prior Art
As environmentally friendly washing machines are more and more demanded by the public, manufacturers are faced with the problem of designing machines that use less water and, by extension, less energy to perform a washing cycle without causing a degradation in the quality of machine performance. One approach is to offer horizontal axis machines which use less water to thoroughly soak articles of clothing rotated within an inner tub. While this approach is an effective solution, it does not address the concerns of many consumers which, either by custom, or by spatial requirements, desire vertical axis machines.
Vertical axis machines have certain advantages over their horizontal axis counterparts. For example, vertical axis machines have fewer sealing requirements and therefore are less prone to leakage, and are arguably easier to load. For at least these reasons, many users find it advantageous to have a top loading machine. However, washing machine manufacturers find themselves faced with governmental regulations requiring more energy efficient laundry machines. In view of these new requirements, manufacturers have sought out designs which can make a vertical axis washer more energy efficient, while still being economically feasible. To this end, manufacturers have proposed various profile designs for agitators in attempting to more effectively move the wash load, or to vary the cycle to promote a better mixing of laundry. While each of these methods are effective to a degree, improvements are still deemed necessary.
The water level in a standard vertical axis machine cannot be lowered without negatively impacting wash performance. In addition, to effectively perform a wash cycle, the agitator must generate movement within the wash load as clothes tend to rest on the bottom of the machine and move in unison with the agitator. Tests on low water use machines have shown that some form of vertical motion is required to cause the wash load to turn over, thereby enabling each article of clothing to receive a corresponding amount of washing action.
Accordingly, a design that incorporates both the traditional oscillatory/rotating motion, coupled with a vertical or tipping motion, will enable a washing machine to use less water without negatively affecting wash quality. The prior art actually has many examples of machines that utilize a combination horizontal/vertical movement of clothing. However, most are either very complicated, possessing multiple failure points, or are not readily retrofittable to current designs, thereby not defining a cost effective solution. Accordingly, based on at least these reasons, there is a need in the art for a rotating/tipping agitator arrangement which will provide the necessary motion to clothing being washed in the tub of a vertical axis washing machine, while enabling the washing machine to utilize lower amounts of water, and be both easily serviceable and retrofittable into current designs.
The present invention pertains to a tipping mechanism designed to impart a combination rotating/tipping movement to the agitator of a clothes washing machine. In accordance with a preferred embodiment of the invention, the tipping mechanism includes an agitator, a driving member, a tipping member, and a stationary pivot member. The pivot member includes a ball portion having at least one guide member disposed on an outer surface of the ball portion, and a central bore through which a drive shaft extends. The tipping member is preferably constituted by two, substantially identical, saucer-like components having an outer peripheral rim, a central depression, and at least one additional guide member, preferably in the form of an arcuate channel having both vertical and horizontal components extending at least partially about the interface of the peripheral rim and the central depression. The two components are joined together over the ball portion to form a ball and socket mechanism with the guide members extending into the arcuate channel. The driving member is interposed between the tipping member and the agitator. Rotating/oscillating movement of the drive shaft is transmitted to the drive member which, in turn, causes both the tipping member and agitator to rotate about the pivot ball. At the same time, the guide members travel along the arcuate channels such that a combination rotating and tipping movement is imparted to the agitator.
With this construction, the present invention establishes a combination rotating and tipping movement for the agitator. The present invention lends itself to be readily retrofitted to current vertical axis machines. In any event, additional objects, features and advantages of the present invention will become more readily apparent from the following detailed description of a preferred embodiment when taken in conjunction with the drawings wherein like reference numerals refer to corresponding parts in the several views.
With initial reference to
At a rear portion of cabinet shell 4 is arranged a control panel 28 that includes various control units which can be used to program a desired laundering operation for appliance 2. In the embodiment shown, control panel 28 includes a first control unit 30 constituted by a vertically shiftable knob 32. Knob 32 is adapted to be shifted between raised and lowered positions in order to enable a user of appliance 2 to select a desired load size. Control panel 28 also includes a second control unit 35 that is defined by a plurality of buttons 38-41 provided for establishing wash and rinse temperatures. Adjacent second control unit 35 is a third control unit 45 defined by a plurality of buttons 48-50 which is used by a consumer to select a pre-established wash operation through the use of button 48, the application of a second rinse through button 49, and to cancel either of these control features through button 50. Finally, control panel 28 includes a rotary knob 59 which is used by a consumer to select a desired wash cycle.
The present invention is particularly directed to the mechanism and structure which enable agitator assembly 16 to simultaneously rotate about a rotational axis and pivot about a pivotal axis to impart a combination rotating and tipping washing movement to clothes being laundered within inner tub 10. More specifically, with reference to
In the most preferred form of the invention, pivot member 70 includes a rod 86 supporting a spherical pivot ball portion 89. Rod 86 includes a first end extending into and being fixedly secured to a housing (not shown) below inner tub 10, and a second end carrying pivot ball portion 89. Pivot ball portion 89 includes at least one guide member 94 which, in the preferred embodiment shown, constitutes a projection extending from an outer surface of ball 89. In one preferred form of the invention, a roller member 96 is mounted on each guide member 94. Pivot member 70 also includes a central bore 100 through which a rotating/oscillating drive shaft (not shown) extends. At this point, it should be understood that, while pivot ball portion 89 is described in terms of a spherical ball, other pivot members could be used to establish the pivot structure, including dome and other semi-spherical shaped members, multi-axis joints, and the like.
With particular reference to
In a like manner, lower section 106 includes a lower central depression 123 having a lower central opening 129, a lower peripheral lip portion 133 extending about lower section 106, and a lower arcuate channel half 137 extending at least partially about lower section 106. Lower arcuate channel half 137 is positioned at the junction of lower depression 123 and lower lip portion 133. Like upper arcuate channel half 118, lower arcuate channel half 137 includes both horizontal and vertical components.
In the most preferred form of the invention, upper section 104 and lower section 106 are assembled about pivot ball 89 of pivot member 70 and joined at peripheral lip portions 112 and 133 such that a central socket 140 and an arcuate channel 142, which also constitutes a guide member in accordance with the invention, are formed. Central socket 140 is sized to receive pivot ball 89, with the at least one guide member 94 extending into arcuate channel 142. In the most preferred form of the invention, the guide roller 96 mounted on each guide member 94 extends into arcuate channel 142 such that tipping member 75 is able to freely rotate about pivot member 70. In either case, when tipping member 75 is rotated about pivot ball 89 as will be detailed more fully below, guide member 94 travels within arcuate channel 142 thereby causing tipping member 75 to shift in both horizontal and vertical planes simultaneously.
As indicated above, drive member 80 functions to transfer drive power to both agitator assembly 16 and tipping member 75. In the most preferred form of the invention, drive member 80 includes a semi-spherical domed portion 150 including a lower portion 152 which is spaced above peripheral lip portion 112 of tipping member 75. As shown in
Having described the various components of tipping mechanism, the operation of the invention will now be further detailed with reference to
Although described with respect to a preferred embodiment of the invention, it should be readily understood that various changes and/or modifications can be made to the invention without departing from the spirit thereof. For example, the relative locations of guide members 94 and arcuate channel 142 could be reversed, such that the arcuate channel is arranged about the pivot ball portion and the guide member(s) about the tipping member so long as the requisite guide path is established. In any event, the invention is only intended to be limited by the scope of the following claims.
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