CONTAINER AND SYSTEM FOR HOLDING A CUTTING TOOL OF A FOOD PROCESSING DEVICE
20180213978 ยท 2018-08-02
Assignee
Inventors
- David J. Gushwa (Mishawaka, IN, US)
- Euan Skinner MacLeod (New Territories, HK)
- Edith M. Wine (Pittsburgh, PA, US)
Cpc classification
B65D85/70
PERFORMING OPERATIONS; TRANSPORTING
A47J43/0716
HUMAN NECESSITIES
B65D25/10
PERFORMING OPERATIONS; TRANSPORTING
B65D55/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
A47J43/07
HUMAN NECESSITIES
B65D55/02
PERFORMING OPERATIONS; TRANSPORTING
B65D25/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A container and system for holding a cutting tool of a food processing device is disclosed. The container includes a shell defining a chamber sized to receive one of at least a first cutting tool and a second cutting tool. The shell has a slot that receives a stem of the first cutting tool when the first cutting tool is positioned in the chamber and another slot that receives a stem of the second cutting tool when the second cutting tool is positioned in the chamber. The shell also has a plurality of openings that are sized to permit fluid to pass into the chamber.
Claims
1. A container to hold a cutting tool comprising: a base and a top that form a chamber configured to receive a cutting tool, the base and the top having a coupled position wherein the base is coupled to the top and an uncoupled position wherein the base is not coupled to the top; the base comprising upwardly extending tabs configured to engage with the cutting tool to position the cutting tool within the chamber; and both the base and the top comprising a plurality of openings sized to permit passage of fluid into the chamber.
2. The container of claim 1, the base further comprising a hub, a body extending radially outward from the hub, and a rim extending vertically from an outer perimeter of the body; wherein, the upwardly extending tabs extend upwardly from the hub.
3. The container of claim 2, the hub of the base including a slot defined therein.
4. The container of claim 2, wherein, the plurality of openings of the base are defined in the body of the base and each opening of the plurality of openings extends radially outward from the hub toward the rim of the base.
5. The container of claim 4, the rim of the base further including a plurality of openings also configured to permit the passage of fluid into the chamber.
6. The container of claim 1, the top further comprising a cylindrical slot.
7. The container of claim 6, the top further comprising a hub with the cylindrical slot defined therein, a body extending radially outward from the hub, and a rim extending vertically from an outer perimeter of the body.
8. The container of claim 7, wherein, the plurality of openings are defined in the body of the top, and each opening of the plurality of openings extend outward from the hub toward the rim.
9. The container of claim 1, either the top or the base includes a tab and the other of the top or the base that does not include the tab includes a groove; wherein, in the coupled position, the groove receives the tab to secure the base to the top.
10. The container of claim 9, the base further comprising a hub with a cylindrical slot defined therein, a body extending radially outward from the hub, and a rim extending vertically from an outer perimeter of the body, the rim having an outer surface with the groove defined therein; and the top further comprising a hub with the cylindrical slot defined therein, a body extending radially outward from the hub, a rim extending vertically from an outer perimeter of the body, and a flange extending downwardly from the rim, the tab inwardly extending from the flange; wherein, the upwardly extending tabs extend upwardly from the hub of the base.
11. A container for holding a cutting tool of a food processing device, the container comprising: a shell defining a chamber sized to receive one of at least a first cutting tool and a second cutting tool, the shell comprising: a first outer surface, a second outer surface positioned opposite the first outer surface, and a side wall extending between the first outer surface and the second outer surface, wherein the shell has (i) a first slot defined in the first outer surface, the first slot receiving a stem of the first cutting tool when the first cutting tool is positioned in the chamber, (ii) a second slot defined in the second outer surface that is aligned with the first slot, the second slot receiving a stem of the second cutting tool when the second cutting tool is positioned in the chamber, and (iii) a plurality of openings defined in the first outer surface, each opening being arranged circumferentially around the first slot and being sized to permit fluid to pass into the chamber; and wherein the shell includes a first piece including the first slot, and a second piece removably coupled to the first piece, the second piece including the second slot.
12. A cutting tool system for a food processing device comprising: a cutting tool container comprising a base and a top defining a chamber; the top having a hub with a cylindrical slot defined therein, a body extending radially outward from the hub, and a rim extending vertically from an outer perimeter of the body of the top; the base having a hub, a body extending radially outward from the hub, a rim extending vertically from an outer perimeter of the body of the base, and a plurality of alignment tabs extending upwardly from the hub; a cutting blade unit disposed in the chamber of the cutting tool container, the cutting blade unit including: a stem disposed within the cylindrical slot of the hub of the top of the cutting tool container and engaged with the plurality of alignment tabs of the base to position the cutting blade unit within the chamber; and at least one cutting blade extending outwardly from the stem; and both the body of the top and the body of the base further including a plurality of openings defined therein configured to permit passage of fluid into the chamber.
13. The cutting tool system of claim 12, the hub of the base of the cutting tool container further including a cylindrical slot defined therein; and the cutting blade unit further including a second stem secured to the stem, and the second stem is disposed within the cylindrical slot of the hub of the base.
14. The cutting tool system of claim 13, the stem and the second stem of the cutting blade unit each having an outer diameter, and the outer diameter of the second stem is less than the outer diameter of the stem.
15. The cutting tool system of claim 12, each opening of the plurality of openings of the top extend radially outward from the hub of the top toward the rim of the top; and each opening of the plurality of openings of the base extend radially outward from the hub of the base toward the rim of the base.
16. The cutting tool system of claim 12, the rim of the base having a plurality of openings defined therein that are configured to permit the passage of fluid into the chamber of the cutting tool container.
17. The cutting tool system of claim 12, the cutting tool container having a locked state, and in the locked state the base and the top are releasably coupled to each other; the base further including a groove defined in an outer surface of the rim of the base; the top further including a flange extending downwardly from the rim, the flange including a tab extending inwardly from the flange; and wherein, the groove of the base receives the tab of the top to releasably couple the top and the base.
18. The cutting tool system of claim 17, the cutting tool container further having an unlocked state, wherein the top and the base are not coupled together, and the tab of the top is not disposed within the groove of the base.
19. The cutting tool system of claim 12, wherein, the top of the cutting tool container is formed of more than one part, each of which are hinged to the base.
20. The cutting tool system of claim 12, the hub of the top of the cutting tool container extends upward from the body of the top.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The detailed description particularly refers to the following figures, in which:
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032] While the concepts of the present disclosure are susceptible to various modifications and alternative forms, specific exemplary embodiments thereof have been shown by way of example in the drawings and will herein be described in detail. It should be understood, however, that there is no intent to limit the concepts of the present disclosure to the particular forms disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the disclosure.
[0033] Referring now to
[0034] The adjustable slicing assembly 16 of the cutting tools 12 includes a rotating disk 22 and a blade assembly 24. The rotating disk 22 has a central hub 26, a planar body 28 extending radially outward from the central hub 26, and a rim 30 extending vertically from the outer perimeter of the planar body 28. The blade assembly 24 includes a stem 32 that is positioned in an aperture 34 defined in the central hub 26 of the rotating disk 22 and a mounting arm 36 that is secured to the stem 32. The mounting arm 36 extends radially outward from the stem 32 and has a cutting blade 38 secured thereto.
[0035] As shown in
[0036] The cutting blade unit 18 of the system 10 includes a stem 46 and a pair of cutting blades 48 that extend outwardly from the stem 46. The stem 46 has a body 50 that extends from an end 52 to an end 54. As shown in
[0037] The other cutting blade unit 20 of the system 10 includes a stem 60, a stem 62 secured to the stem 60, and a pair of cutting blades 64 that extend outwardly from the stem 60. The stem 60 has a body 66 that extends from an end 68 to an end 70. As shown in
[0038] As described above, the system 10 also includes a cutting tool container 14 configured to selectively carry or hold one of the cutting tools 12. The cutting tool container 14 includes a shell 80 that defines a chamber 82 sized to receive one of the cutting tools 12. As shown in
[0039] As shown in
[0040] The side wall 92 of the shell 80 has an internal surface 102 that extends between the internal surfaces 96, 98 of the side plates 88, 90. As shown in
[0041] Returning to
[0042] The inner wall 110 of the side plate 88 includes a planar surface 112 and a planar surface 114 that extends parallel to the planar surface 112. A width 116 of the slot 104 is defined between the surfaces 112, 114. In the illustrative embodiment, the magnitude of the width 116 is greater than the outer diameter 58 of the stem 46 of the cutting blade unit 18 such that the stem 46 may be received in the slot 104. Similarly, the magnitude of the width 116 is greater than the outer diameter 74 of the stem 60 of the cutting blade unit 20 such that the stem 60 may be received in the slot 104.
[0043] As shown in
[0044] As shown in
[0045] The inner wall 132 of the side plate 90 includes a planar surface 134 and a planar surface 136 that define the sides of the slot 106. The inner wall 132 of the side plate 90 also includes a concave surface 138 that connects an edge 140 of the planar surface 134 with an edge 142 of the planar surface 136. As shown in
[0046] The concave surface 138 of the inner wall 132 is defined by a radius 146 such that the slot 106 has a curved end. As shown in
[0047] As shown in
[0048] The openings 162 defined in the shell 80 also include a plurality of oblong openings 170 that extend between the external surface 100 and the internal surface 98 of the side plate 90. As shown in
[0049] In the illustrative embodiment, the shell 80 is formed as a single monolithic component from a molded polymeric material, such as, for example, nylon. It should be appreciated that in other embodiments the shell 80 may be from a metallic material such as, for example, steel. It should also be appreciated that in other embodiments the shell may be formed from multiple pieces that are later assembled.
[0050] As shown in
[0051] The retaining door 182 of the container 14 includes a pair of arms 184, 186 that are pivotally coupled to the shell 80 and a connecting wall 188 that extends between the arms 184, 186. As shown in
[0052] As shown in
[0053] As shown in
[0054] The retaining door 182 of the container 14 has a pair of slots 220, 222 defined therein that extend from a side 226 of the retaining door 182 and correspond to the slots 104, 106 defined in the shell 80. Like the slots 104, 106, each of the slots 220, 222 is sized to receive a stem of a cutting tool 12 when the cutting tool 12 is positioned in the chamber 82 and the retaining door 182 is in the closed position. As shown in
[0055] The inner wall 230 of the arm 184 includes a concave surface 232 that is defined by a radius 234. The radius 234 has an origin 236 that is positioned in the middle of the slot 220. When the retaining door 182 is in the closed position shown in
[0056] As shown in
[0057] The inner wall 242 of the arm 184 includes a concave surface 244 that is defined by a radius 246 such that the slot 222 has a curved end. As shown in
[0058] In the illustrative embodiment, the magnitude of the radius 246 of the arm 186 is equal to the magnitude of the radius 146 of the side plate 90, and the slot 222 has a width that is approximately equal to the width 144 of the slot 106. As such, the width of the slot 222 is greater than the outer diameter 78 of the stem 62 of the cutting blade unit 20 such that the stem 62 of the cutting blade unit 20 may be received in the slot 222.
[0059] As shown in
[0060] The container 14 of the system 10 also includes a locking mechanism 270 operable to secure the retaining door 182 in the closed position. As shown in
[0061] In use, any of the cutting tools 12 may be positioned in the container 14 for cleaning or storage. For example, a user may move the retaining door 182 into the open position shown in
[0062] As shown in
[0063] As described above, the container 14 may also be used with the other cutting blade unit 20. To do so, the cutting blade unit 20 may be advanced into the chamber 82 through the access opening 84 when the retaining door 182 is open. As the cutting blade unit 20 is advanced into the chamber 82, the stem 60 of the unit 20 is received in the slot 104 defined in the shell 80 and the stem 62 is received in the slot 106. The user may then close the retaining door 182. As the door 182 closes, the stem 60 of the unit 18 is advanced into the slot 220 of arm 184 of the retaining door 182, and the stem 62 of the unit 20 is advanced into the slot 222 of the arm 186. When the connecting wall 188 of the door 182 is positioned over the access opening 84 of the shell 80, the door 182 is in the closed position and the tab 272 of the locking mechanism 270 is positioned in the groove 274.
[0064] The stem 60 of the cutting blade unit 20 is positioned in the enclosure 280, and the stem 62 of the unit 20 is positioned in an enclosure 282 defined by the slots 106, 222. The inner walls 110, 230 that define the slots 104, 220 engage the cylindrical outer surface 72 of the stem 60 and the inner walls 132, 230 that define the slots 106, 222 engage the cylindrical body 76 to locate and position the cutting blades 64 of the unit 20 within the chamber 82. As shown in
[0065] Referring now to
[0066] The collar 294 of the adjustment device 290 includes a body 304 having a cylindrical passageway 308 defined therein. The body 304 includes a cylindrical outer surface 306, and a channel 310 is defined in the outer surface 306 of the collar 294. The channel 310 is sized to receive the inner wall 132 defining the slot 106 of the shell 80.
[0067] As described above, the adjustment device 290 engages the rotating disk 22 and the blade assembly 24 of the adjustable slicing assembly 16 to position the slicing assembly 16 in the chamber 82. To do so, the collar 292 of the adjustment device 290 is positioned over a lower end 312 of the central hub 26 of the rotating disk 22, and the other collar 294 is positioned over the tip 314 of the stem 32 of the blade assembly 24, as shown in
[0068] To align the channel 302 of the collar 292 with the slot 104, the user may move the collar 292 along the central hub 26 to engage a lower surface 316 of the collar 292 with the mounting arm 36 of the blade assembly 24. Similarly, the collar 294 may be moved along the stem 32 of the blade assembly 24 to engage an upper surface 318 of the collar 294 with the upper end 320 of the central hub 26 and align the channel 310 with the slot 106. After the collars 292, 294 are aligned with the slots 104, 106, respectively, the collars 292, 294 may be advanced into the slots 104, 106 such that the inner walls 110, 132 are received in the channels 302, 310.
[0069] As shown in
[0070] It should be appreciated that in other embodiments the adjustment device 290 may take other forms. For example, the adjustment device might include only a single collar. In other embodiments, the adjustment device may include a number of wedges, ramps, projections, or other structures that are integrated into the shell and engage the slicing assembly to position the cutting blade relative to the rotating disk.
[0071] Referring now to
[0072] The base 420 of the shell 416 has a hub 426, a body 428 extending radially outward from the hub 426, and a rim 430 that extends vertically from the outer perimeter of the body 428. The hub 426 has a cylindrical slot 432 defined therein that is sized to receive, for example, the stem 62 of the cutting blade unit 20. A plurality of alignment tabs 434 extend upwardly from the hub 426. The tabs 434 are configured to engage, for example, the stem 60 of the cutting blade unit 20 to locate and position the cutting blade unit 20 within the chamber 418.
[0073] The body 428 of the base 420 has a plurality of openings 436 defined therein. Each opening 436 extends radially outward from the hub 426 to the rim 430. The openings 436 are sized to permit the passage of fluid into the chamber 418 of the shell 416. In the illustrative embodiment, each opening 436 has a trapezoidal shape. In other embodiments, the openings 436 may be circular, triangular, or other geometric shape. It should be appreciated that in other embodiments the openings 436 may vary in size. The rim 430, like the body 428, has a plurality of openings 438 defined therein that are sized to permit the passage of fluid into the chamber 418 of the shell 416.
[0074] The top 422 of the shell 416 has a hub 440, a body 442 extending radially outward from the hub 440, and a rim 444 that extends vertically from the outer perimeter of the body 442. The hub 440 has a cylindrical slot 446 defined therein that is sized to separately receive, for example, the stem 46 of the cutting blade unit 18 and the stem 60 of the cutting blade unit 20. As shown in
[0075] As described above, the container 414 includes a locking mechanism 424 configured to secure the base 420 to the top 422. As shown in
[0076] In other embodiments, the base 420 may include a tab that is received in a groove. It should be appreciated that in other embodiments the locking mechanism may include any combination of latches, retainers, keys, and so forth necessary to secure the base 420 to the top 422. In still other embodiments, the top of the shell may be formed from two parts that are hinged to the base of the shell.
[0077] There are a plurality of advantages of the present disclosure arising from the various features of the method, apparatus, and system described herein. It will be noted that alternative embodiments of the method, apparatus, and system of the present disclosure may not include all of the features described yet still benefit from at least some of the advantages of such features. Those of ordinary skill in the art may readily devise their own implementations of the method, apparatus, and system that incorporate one or more of the features of the present invention and fall within the spirit and scope of the present disclosure.