The present invention relates generally to food slicers and more particularly to a new design for a product fence for the food slicer that provides for an enhanced sanitary environment, enables easier operation and cleaning and incorporates a number of enhanced ergonomic features.
The basic design of both manual and automatic food slicers has proven to be quite effective and durable throughout the years. Although various important improvements have been made to such slicers, the overall design has not changed very much particularly with regard to the overall cleanliness, ergonomics, or ease of operation.
Today, food slicers are utilized to slice a number of food products such as meats, cheeses and the like in a variety of environments such as delicatessens, supermarkets, and restaurants to name a few. Such food slicers need to be quite durable since they tend to be used for many hours during a day by many different individuals while providing the desired performance, safety and cleanliness.
Additionally, food slicers need to be designed to allow adaptability since they need to handle a variety of products of different shapes, sizes, and textures while readily providing slices of different thicknesses of the product being sliced. The speed at which a particular product is moved across the cutting blade can also vary on automatic food slicers to improve productivity.
Gravity food slicers with reciprocating food product tables typically have a feature called a “pusher” that engages the food product on its top surface or end opposite the blade to assist in holding the food product and increase its stability during slicing and movement of the food product table. When a long piece of food product is to be sliced (such as a long salami or the like) pushers can be removed or rotated out of the way to enable slicing of the long food product.
For some food product, typically those with a “high aspect ratio” (tall and thin), a product fence can be used to hold and stabilize the food product during slicing. Product fences typically are multi-piece assemblies made from cast aluminum, metal or both that rely on a thumb screw or the like for attachment to the product table and holding the fence in a desired position.
In accordance with an embodiment, a food slicer is provided having a support member including a base portion and an upstanding portion integrally formed with the base portion. The upstanding portion includes a rotating cutting blade secured thereto for slicing food product and at least one motor positioned within the upstanding portion for rotating the cutting blade.
The base portion includes a food product table slidably secured thereto and is movable across the cutting blade for holding product while it is being sliced by the cutting blade. An adjustable gage plate also is provided for determining the thickness of a food product to be sliced by the cutting blade.
A product fence for assisting in holding and stabilizing food product during slicing is included where the fence is removably secured to a portion of the food product table by frictional engagement therebetween
The present disclosure will become better understood with reference to the following description and accompanying drawings, wherein:
The food slicer of the present invention is generally illustrated by numeral 10 of
The food handling portion 12 substantially includes a product table 16, a push arm or pusher 18 and a product table support arm 20. The support portion 14 substantially includes a base portion or member 22, an upstanding portion or member 23, a rotating circular slicing knife or cutting blade 24, a ring guard 25, a knife cover 26, an adjustable gage plate 28 for determining slicing thickness and a control member or operator interface 30 having a gage plate support and adjustment mechanism 32 for the gage plate 28 and control buttons 34 as illustrated in
The support portion 14 also includes at least one motor (not illustrated) positioned within the inside of the upstanding portion 23. If desired, a second motor (not illustrated) may be positioned within the inside of the support portion 14 along with associated structure for automatically moving the product table 16.
Briefly, for manual slicing, a food product (not illustrated) is placed on the product table 16 beneath the pusher 18 with the end to be cut or sliced resting upon the gage plate 28 with the product table 16 in its forward position. The operator adjusts the gage plate adjustment mechanism 32 which directly moves the gage plate 28 with respect to the blade 24 to provide a slice thickness gap therebetween that corresponds to the desired thickness for slicing of the product and gets bigger with thicker slices. The control buttons 34 are then accessed to turn the motor on which in turn rotates the blade 24.
The operator then pushes the product table 16 preferably via a handle 36 or other contact point forward or to the right with respect to
As
As
To enhance its rigidity, the fence 40 can be formed to include additional strengthening members, such as reinforcement ribs or gussets 52 positioned along its length between the first and second side walls 42 and 44 or a strengthening material or additive, such as glass or the like. In practice, using 30% glass filled nylon provides the desired rigidity. It is to be understood, however, that the specific design, material, shape and method of making the fence 40 as well as the type and amount of any strengthening additive or member can vary and may include a metal such as stainless steel or aluminum or a ceramic and can be insert molded, for example.
Additionally, to assist in reinforcing the fence 40, one or more hollow channels (not illustrated) may be formed therein. These channels can be formed, for example, by an gas-assist injection molding process where a gas, typically nitrogen, is injected into the material during molding at desired locations at a specific temperature and pressure at a desired point in time during the molding process.
As
As
To remove the fence 40, an operator pushes down on the fence 40 at point 56 above a cut out 58 formed on the bottom side of the fence 40. As
The particular design or geometry of the fence 40 and hook member 50 resists loosening and, when a slicing load is applied, tends to increase the frictional engagement of the fence 40 with the product table 16. Additionally, the angle at which the product fence is installed and removed is a function of the geometry of the hook member 50 and product table 16 and can be modified to accommodate a greater or lesser degree of rotation of the fence 40 as needed.
Thus, the fence 40 relies only on frictional engagement with the product table 16 to be secured in position on the product table 16. This is accomplished by the resilient deformation of the hook member 50 which can be adjusted merely by increasing or decreasing the width of the hook member 50.
If desired, a bottom surface of the fence 40 (not illustrated) can be formed to positively lock within flutes 58 (see
With this design of the fence 40, no additional fasteners are needed to secure the fence 40 to the product table and the installation can be done by hand with no tools or fixtures needed. Additionally, an inexpensive fence 40 is provided that is smooth, continuous, seamless and easy to clean surface that can be easily removed for sterilization of the fence 40.
Numerous modifications and alternative embodiments of the present disclosure will be apparent to those skilled in the art in view of the foregoing description. Accordingly, this description is to be construed as illustrative only and is for the purpose of teaching those skilled in the art the best mode for carrying out the present disclosure. Details of the structure may vary substantially without departing from the spirit of the present disclosure, and exclusive use of all modifications that come within the scope of the appended claims is reserved. It is intended that the present disclosure be limited only to the extent required by the appended claims and the applicable rules of law.
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