Dual slice bread machine
10226876 ยท 2019-03-12
Inventors
Cpc classification
B26F1/18
PERFORMING OPERATIONS; TRANSPORTING
B26D7/0625
PERFORMING OPERATIONS; TRANSPORTING
B26D1/11
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D3/28
PERFORMING OPERATIONS; TRANSPORTING
B26D1/11
PERFORMING OPERATIONS; TRANSPORTING
B26D7/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A dual slice bread machine for cutting slits into loaves of bread perpendicular to a conventional bread slice. The present system has an actuating rack having a series of regularly spaced piercing knives mounted thereon. The actuating rack is configured to be raised and lowered automatically. In use, a loaf of bread is placed underneath the actuating rack. When the actuating rack is lowered, the knives puncture the loaf, creating a series of vertical slits along the length of the loaf. The loaf is then cut with a conventional bread slicing machine where the slices alternate between a slice that dissects a vertical slit and a cut that is positioned exactly in between two adjacent vertical slits. This creates a loaf with slices having a centered living hinge capable of being easily folded and separated into equal halves.
Claims
1. A bread cutting assembly comprising: an actuating rack wherein the actuating rack is vertically movable between a raised position and a lowered position; a plurality of knives affixed to the actuating rack at regular intervals therealong; wherein the width of each of the plurality of knives lies along a singular plane; a conveyor affixed to the actuating rack, wherein the conveyor is configured to deliver a loaf of bread along an axis perpendicular to that of the plurality of knives; a stopping plate disposed parallel to the singular plane of the plurality of knives; wherein the stopping plate is configured to selectively move between a raised position and a lowered position; wherein the raised position, the stopping plate extends through the conveyor posterior to the actuating rack; and wherein the raised position, the stopping plate is configured to position the loaf of bread beneath the plurality of knives such that a midline disposed along a longitudinal axis of the loaf of bread is positioned along the singular plane of the plurality of knives.
2. The bread cutting assembly of claim 1, further comprising a vibrating mechanism mounted onto the actuating rack, configured to create oscillating motion in the plurality of knives.
3. The bread cutting assembly of claim 1, wherein the conveyor is a roller conveyor assembly.
4. The bread cutting assembly of claim 1, wherein the actuating rack further comprises a piston and a pneumatic arm.
5. The bread cutting assembly of claim 1, further comprising a linear vertical track, wherein the actuating rack moves along said linear vertical rack.
6. The bread cutting assembly of claim 1, wherein each of the plurality of knives taper to a point at a distal end thereof.
7. The bread cutting assembly of claim 1, wherein each of the plurality of knives taper inwardly from a front side thereof and a rear side thereof such that a sharpened edge is formed on opposing sides of each of the plurality of knives.
8. The bread cutting assembly of claim 1, wherein the actuated rack is configured to move from the raised position to the lowered position when a sensor detects the loaf of bread positioned below the plurality of knives.
9. The bread cutting assembly of claim 1, wherein the actuated rack is configured to move from the raised position to the lowered position at a set interval of time.
10. A bread cutting assembly comprising: an actuating rack wherein the actuating rack is vertically movable between a raised position and a lowered position; a plurality of knives affixed to the actuating rack at regular intervals therealong; wherein the width of each of the plurality of knives lies along a singular plane; a conveyor affixed to the actuating rack, wherein the conveyor is configured to deliver a loaf of bread along an axis perpendicular to that of the plurality of knives; a stopping plate disposed parallel to the singular plane of the plurality of knives; wherein the stopping plate is configured to selectively move between a raised position and a lowered position; wherein the raised position, the stopping plate extends through the conveyor posterior to the actuating rack; wherein the raised position, the stopping plate is configured to position the loaf of bread beneath the plurality of knives such that a midline disposed along a longitudinal axis of the loaf of bread is positioned along the singular plane of the plurality of knives; a plurality of blades; the plurality of knives disposed along the conveyor anteriorly relative to the plurality of blades, wherein a width of each of the plurality of knives is equal to a distance between each of the plurality of blades; the width of each of the plurality of knives is positioned perpendicularly to a width of each of the plurality of blades; a plane of the cutting surface of each of the plurality of blades bisects a plane of the cutting surface of the plurality of knives; wherein the plurality of blades are configured to cut the loaf of bread into a plurality of slices, wherein each slice of the plurality of slices comprises a living hinge created by the plurality of knives.
11. The bread cutting assembly of claim 10, further comprising a vibrating mechanism mounted onto the actuating rack, configured to create oscillating motion in the plurality of knives.
12. The bread cutting assembly of claim 10, wherein the conveyor is a roller conveyor assembly.
13. The bread cutting assembly of claim 10, wherein the actuating rack further comprises a piston and a pneumatic arm.
14. The bread cutting assembly of claim 10, further comprising a linear vertical track, wherein the actuating rack moves along said linear vertical track.
15. The bread cutting assembly of claim 10, wherein each of the plurality of knives taper to a point at a distal end thereof.
16. The bread cutting assembly of claim 10, wherein each of the plurality of knives taper inwardly from a front side thereof and a rear side thereof such that a sharpened edge is formed on opposing sides of each of the plurality of knives.
17. The bread cutting assembly of claim 10, wherein the actuated rack is configured to move from the raised position to the lowered position when a sensor detects the loaf of bread positioned below the plurality of knives.
18. The bread cutting assembly of claim 10, wherein the actuated rack is configured to move from the raised position to the lowered position at a set interval of time.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Although the characteristic features of this invention will be particularly pointed out in the claims, the invention itself and manner in which it may be made and used may be better understood after a review of the following description, taken in connection with the accompanying drawings wherein like numeral annotations are provided throughout.
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DETAILED DESCRIPTION OF THE INVENTION
(8) Reference is made herein to the attached drawings. Like reference numerals are used throughout the drawings to depict like or similar elements of the dual slice bread machine. The figures are intended for representative purposes only and should not be considered to be limiting in any respect.
(9) Referring now to
(10) The plurality of knives 15 are vertically mounted to the actuating rack 14 at regular intervals. The width of the knives 15 runs parallel to the longitudinal axis of the actuating rack 14, such that the width of each blade lie along a singular plane. In use, a loaf of bread is positioned directly beneath the knives 15 of the actuating rack 14. The knives 15 are lowered by the moveable assembly and penetrate the loaf of bread, creating a series of vertical slits along a longitudinal axis of the bread. The bread is subsequently sliced with a conventional bread slicing machine, wherein the knives of the conventional bread slicing machine are configured to create a series of two cuts. A first cut slices directly through the center of the vertical slit created by the bread cutting assembly and a second cut slices through the middle of the uncut portion of the bread, equidistant to each neighboring vertical slit. This results in slices with cuts running through half the thickness of each slice of bread wherein the other half of the thickness of the slice remains uncut, creating a slice of bread having a living hinge down the center of the slice, capable of being easily folded and separated, if desired.
(11) In some embodiments of the dual slice bread machine, there is a vibrating mechanism 26 disposed on the actuating rack 14 configured to move the plurality of knives 15 in an oscillating motion. The oscillating motion is configured to assist an initial penetration of knives 15 into the top of a loaf of bread when creating the vertical slits. Additionally, the oscillating motion helps release the knives 15 from the loaf of bread once a cut is complete. In one embodiment of the vibrating mechanism, the oscillating motion is a 1/16 side to side motion.
(12) Referring now to
(13) In some embodiments of the dual slice bread machine, a loaf stop 40 is mounted to the conveyor assembly 30 below the bread cutting assembly 10. The loaf stop 40 comprises a plate 42 secured to an actuating mechanism 44 configure to move the plate 42 between a lowered position shown in
(14) The knives 15 are lowered by the movable assembly and puncture the loaf, creating the vertical slits. Some embodiments of the dual slice bread machine incorporate a conventional bread slicing machine 60 that can be mounted onto the conveyor assembly following the bread cutting assembly. The conventional bread slicing machine comprises a plurality of blades that are positioned perpendicular to the longitudinal axis of a loaf of bread. The bread cutting assembly is disposed along the conveyer anteriorly relative to the plurality of blades. Further, the width of each of the plurality of knives is equal to a distance between each of the plurality of blades. As such, the spacing for the slicing knives 62 of the conventional bread slicer is positioned to ensure that the conventional slicing alternates between dissecting the middle of each vertical slit created by the bread cutting assembly and slicing exactly in between each vertical slit.
(15) Referring now to
(16) It is therefore submitted that the instant invention has been shown and described in various embodiments. It is recognized, however, that departures may be made within the scope of the invention and that obvious modifications will occur to a person skilled in the art. With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the invention, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present invention.
(17) Therefore, the foregoing is considered as illustrative only of the principles of the invention. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the invention to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the invention.