The invention concerns a wringer for a mop with a receptacle in which the mop can be wrung out by pressure, where the receptacle has a number of wall parts, each of which has an inner leg and an outer leg, which are connected together.
Wringers of this kind are known from EP 0 489 237 A1. The wringer shown there has a receptacle that has wall parts formed of a number of V-shaped wall parts, where the outer legs are fixed in position on the receptacle and the inner legs are connected together at their free ends. When a mop is pressed in, the connected free ends of the inner legs move downward, which causes the wall parts to deform, so that the free clearance of the receptacle is reduced and in this way the mop is additionally pressed at the sides.
A general object of the invention is providing available a wringer for a mop that has an improved wringing power with simple operation.
To this end, at least one spacer is arranged between the inner legs and outer legs. The inner and outer legs, moreover, are connected together at their free ends; the inner and outer legs are designed in accordance with the invention to be elastic and the spacer is designed to be stable in tension or under pressure in order to be able to transfer forces from the inner leg to the outer leg. When a mop is pressed into the receptacle, the inner leg gives and, in doing so, becomes elastically deformed. The deflection of the inner leg is transferred through the minimum of one spacer to the outer leg due to the connection between the inner and outer legs. The outer leg acts as a compressive and elastic bending rod. When a force is applied to the inner leg, the inner leg exerts a tensile force on the end of the outer leg, which stretches the outer leg and bends it in an arc. The outer leg produces a counterforce to the tensile force, and the outer leg is subject to a compressive bending stress. The outer leg is preferably designed so that, as it deforms as a result of the tensile force of the inner leg, the curve is convex. The minimum of one spacer keeps the middle part of the outer leg farther from the inner leg than is given by the length of the spacer so that the middle part of the outer leg cannot move outward. This brings about an arc-shaped bending of the outer leg, and the end of the outer leg moves inward, in the direction of the central axis of the wringer device, and surrounds and holds the mop. In doing so, the outer leg carries the free end of the inner leg with it so that the inner leg presses with all of its surface against the mop and surrounds it like a compressive band. The flow of forces in the wringer in accordance with the invention thus produces a mechanically coupled motion: the stronger the inward pressure of the mop into the receptacle, the greater the tensile force on the connection of the inner and outer legs will be and, accordingly, the greater the elastic compressive bending deformation of the outer leg will be, which is converted by the minimum of one spacer into an inward motion of the connection in the direction toward the mop. Because of this, the space available for the mop in the receptacle becomes smaller. The mop is pressed together on all sides at the same time. The more force with which the mop is pressed into the receptacle, the narrower and more tightly the device closes. This improves the wringer performance. The minimum of one spacer prevents bending of the outer leg, so that the outer leg accepts greater forces and, while having the same level of shatterproofness, can be made thinner and more flexible. This allows a savings of material and improves the wringer performance, as the same wringer performance can be achieved with less force. Moreover, the spacer limits the vertical motion of the inner leg, and the diameter of the inner part of the receptacle becomes wider and higher as the outer leg bends convexly. In this way, the bucket can be made shallower or can be filled with more mop water. An embodiment with just one spacer can be produced especially simply and cheaply, and the spacer can be molded on the inner and outer leg in a single operation in an injection molding process.
The spacers can be hinged to the inner legs and outer legs. This improves the transfer of force from the inner to the outer leg, and the flexibility of the wringer.
The hinged connection of the spacers to the inner legs and outer legs can be made by means of film hinges. Film hinges have a simple design and therefore are easy to make. In addition, film hinges have only one degree of freedom, so that while they have high flexibility high stability of the wringer device is achieved at the same time.
At least the inner legs can be designed to be spiral-shaped. In view of the spiral shape, a simultaneous rotary motion of the inner legs takes place in addition to the inward motion when a mop is pressed into the recess. Through this, the strings of the mop becomes twisted, so that the wringer performance is improved still further.
The outer legs and inner legs can have a penetration in the transition region. This results in a savings of material and simplifies manufacture, since production tools can be inserted into the penetration.
The spacers can be arranged in the upper third of the outer leg. In this embodiment, there is only one spacer provided for each inner/outer leg pair. This results in ease of manufacturing while providing better performance.
The receptacle can consist of at least eight wall parts. This results in an easily produced and flexible receptacle, in which sliding of the mop strings past the receptacle is prevented.
The wall parts can be designed to be essentially v-shaped. In doing so, the inner legs can additionally be designed to be concave. Mops can easily be inserted into receptacles with such inner legs, and this results in high wringer performance.
A funnel can be attached to the receptacle. This simplifies the insertion of a string mop.
The receptacle can consist of a single material and be designed to be one piece. Such receptacles are easy and cheap to make.
The receptacle can consist of injected molded plastic. Receptacles of injected molded plastic are easy and cheap to make in high quantities.
Some embodiment examples of the wringer in accordance with the invention are explained in more detail below by means of the figures. The figures show, in each case schematically:
Number | Date | Country | Kind |
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10 2006 045 615 | Sep 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2007/008017 | 9/14/2007 | WO | 00 | 3/24/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2008/037361 | 4/3/2008 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3406422 | Nichols | Oct 1968 | A |
5611104 | DeMars | Mar 1997 | A |
20020095739 | Dingert | Jul 2002 | A1 |
20070094834 | Gil | May 2007 | A1 |
Number | Date | Country |
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0489237 | Oct 1992 | EP |
1224901 | Jul 2002 | EP |
Number | Date | Country | |
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20090288266 A1 | Nov 2009 | US |