The present invention relates to a grid for cutting vegetables, which provides essential features of novelty and remarkable advantages with regard to the already known and used means for the same purposes in the current state of the art.
More particularly, the invention develops a grid of the kind that is assembled in machines like vegetable choppers or kitchen robots, structured on the basis of a cutting grid, either of the kind that allow cutting vegetables in the form of squares or cubes, or either of the type that allows cutting vegetables in long strips of a predetermined width, surrounded in the perimeter by a plastic material formed by means of an overinjection molding operation as a perimeter and endowed with a reinforcement metal rim in its interior. The cutting grid includes at least two blades of a considerably larger height than the rest of the blades that form the framework of the grid, in order to provide the whole area with a greater rigidity against bending, while the outer perimeter optionally includes positioning lugs integrated in it and radially projected outwards from diametrically opposing positions.
The field of application of the invention is comprised within the industrial sector engaged in the manufacture of machinery for kitchen equipment, such as food slicers, kitchen robots, etc.
Diverse vegetable chopping machines, used in kitchens, are known in the state of the art, providing for the cutting of vegetables in a multiplicity of portions, generally with the shape of a square or cube (for example, carrots, potatoes, etc.), or with elongated shapes based on the length of the vegetable and with a predetermined width (for example, strips of potatoes for frying, etc.). These machines generally include a feed tube with an opening for the introduction of the vegetable, either pushed by hand or with a food pusher, so that, as it penetrates, the vegetable is reached by a cutting disc driven by a twisting motion that progressively divides it in slices that, when being cut, are pushed toward a cutting grid formed by cutting blades arranged so that they form a framework as a grid (squared openings), or also the blades run in parallel, mutually separated by a predetermined distance, so that in the first case, the slices of vegetable are divided into squares or cubes when passing through the cutting grid, while in the second case, they are divided into sections or elongated strips of the same length as the slice of the vegetable. The end product is expelled out of the machine with the help of an ejection disc which rotates jointly with the rotation axis of the cutting disc itself, getting out through a product outlet.
In general, current cutting grids are composed by a central grid element formed by a multiplicity of cutting blades that, depending on the desired result, constitute a network of squared or elongated openings, as mentioned above.
This central grid element, normally with a circular shape, is supported by an also circular exterior frame, in which center has a tubular, cylindrical, short formation, which allows the passage of the rotating drive shaft and helps to a centered positioning of the central grid element when it is placed in the interior of the exterior frame and supported on the above mentioned diametric reinforcements.
Thus, the central grid element is attached to the exterior frame without possibility of detaching, while the direct support on the frame allows absorbing the stress resulting from the use of the cutting grid, especially when this is of the type composed by open parallel blades to cut food into longitudinal strips.
Although the cutting grids of the type discussed above perfectly perform the function for which they were developed, the investigations of the applicant have led to the execution of a new version that substantially simplifies the structure of this type of device, at the same time facilitating the productive process, without the resultant cutting grid losing effectiveness or presenting any loss in terms of its operational capacity with respect to the current cutting grids.
A cutting grid with enhanced features is the object of the present invention, as it will be described below.
In essence, the cutting grid proposed by the present invention comprises a central cutting central grid element with characteristics similar to the one incorporated in current grids, composed of a multiplicity of cutting blades arranged in a framework of quadrangular opening or in parallel with longitudinal passage openings, depending on the cutting desired result, but unlike conventional chopping grids it presents the following characteristics:
In this way, a cutting grid in one piece is obtained, which guarantees a perfect performance during its use once incorporated in the interior of a vegetable cutting machine or a kitchen robot.
Understandably, the size of the openings of the grid's framework, or the separation distance between parallel blades of open longitudinal passage, will vary depending on the desired size of the squares or cubes, or the vegetable elongated strips to be obtained.
These and other features and advantages of the invention will be more clearly apparent from the following detailed description of a preferred embodiment of the invention, given only as an illustrative and not limiting example, with reference to the drawings that accompany it, in which:
a illustrates a detail of the coupling among the cutting blades of the central cutting grid element in
As it has been mentioned above, the detailed description of the preferred embodiment of the object of the invention is to be carried out below with the help of the attached drawings, through which the same numerical references to designate equal or equivalent parts are used.
Thus, taking into account in the first place the representation in
All of the components of the cutting grid of the invention shown in
Optionally, the external perimeter 2 has at least two integrated lugs 4 formed during the same overinjection operation, radially extended outwards from diametrically opposing positions, and which can take various configurations. The lugs 4, regardless of the configuration they adopt, are all positioning means that maintain the whole of the cutting grid in its operational position in the interior of the machine, without the possibility of rotating.
Now referring to
Although the description carried out corresponds only to a preferred embodiment, it will be understood that, within its essentiality, many changes and variations in detail could be introduced, also comprised within the scope of the invention, and in particular may affect characteristics such as shape, size, or certain types of materials used in the manufacture of the components of the whole, or any other that do not alter the invention as has been described throughout the present specification, and as defined in the claims that follow.
Number | Date | Country | Kind |
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201001159 | Nov 2010 | ES | national |
201100592 | Jun 2011 | ES | national |