Rotary cutting device
The rotary cutting device addresses inefficiencies in conventional devices by rotating and cutting potatoes efficiently, reducing waste and enhancing usability for both small and large ingredient quantities.
Patent Information
- Application Number
- PCT/KR2025/095420
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-22
- Filing Date
- 2025-06-16
- Publication Date
- 2026-01-29
AI Technical Summary
Conventional potato cutting devices are complex in structure, large in size, and inefficient, leading to significant waste due to structural issues during cutting, particularly when forming screw-shaped French fries.
A rotary cutting device that allows lump-shaped food materials to rotate while being cut by a protruding projection, featuring a frame, housing, rotary cutting, and driving parts, with detachable blades and a discharge unit for efficient cutting and material handling.
Enables efficient cutting of potatoes or sweet potatoes with minimal waste, suitable for both home and restaurant use, by minimizing discarded portions and improving cutting efficiency.
Smart Images

Figure KR2025095420_29012026_PF_FP_ABST
Abstract
Description
rotary cutting device
[0001] The present invention relates to a rotary cutting device, and more specifically, to a rotary cutting device that is configured to be used in homes that use small quantities of ingredients and restaurants that use large quantities of ingredients, by allowing the ingredients to rotate while a protruding projection is pressed and fixed on the upper side of the ingredients in order to cut lump-shaped ingredients such as potatoes or sweet potatoes, and cutting the ingredients with blades formed inside a housing case in which the ingredients are seated.
[0002] In general, potatoes are rich in carbohydrates and are widely used as snacks and dietary supplements in addition to staple foods, and their consumption has been increasing recently.
[0003] In addition, various types of food using potatoes are continuously being developed, and among them, screw-shaped French fries have recently become very popular.
[0004] These screw-shaped French fries are appealing to consumers of all ages and genders due to their unique shape, and are consumed as a convenient and easy-to-eat snack.
[0005] Meanwhile, since it is very inefficient to make French fries by slicing potatoes into thin screw shapes manually, a separate cutting device is used to automatically cut potatoes into screw shapes.
[0006] However, conventional potato cutting devices are not only complex in structure and large in size, but also have structural issues that result in significant portions of the potato being discarded due to structural issues around the joints or cutting sections when combining and cutting the potatoes. Therefore, the development of a new cutting device that minimizes discarded portions and enables cutting of the majority of the potato, thereby increasing efficiency and cost-effectiveness, was necessary.
[0007] Meanwhile, the background technology described above is technical information that the inventor possessed for the purpose of deriving the present invention or acquired in the process of deriving the present invention, and cannot necessarily be said to be publicly known technology disclosed to the general public prior to the application for the present invention.
[0008] The purpose of the present invention is to enable cutting of a lump-shaped food material such as a potato or sweet potato by allowing the food material to rotate while a protruding projection is pressed and fixed on the upper side of the food material.
[0009] Additionally, the rotary cutting device is intended for use in homes that use small quantities of ingredients and restaurants that use large quantities of ingredients.
[0010] The present invention is characterized by a rotary cutting device for cutting lump-shaped food materials such as potatoes or sweet potatoes.
[0011] In one embodiment, the rotary cutting device includes a frame part formed as a square frame to support a housing part and to be movable, a housing part formed to be seated on the upper side of the frame part so that food can be built in and fixed, a rotary cutting part formed on the bottom side inside the housing part to cut food that is put into the housing part and rotated, and a rotary driving part for generating power to rotate the food that is put into the housing part, and the frame part includes a housing support frame formed as a square frame to support a housing case, a lower support plate formed on the lower side of the housing support frame so that a case for containing cut material to be cut and dropped can be seated, a housing settling plate formed on the upper side of the center of the settling plate support so that the housing case can be seated, a settling plate support formed as a pair to be parallel on the upper side of the housing support frame so that the housing settling plate can be fixed to the upper side of the housing support frame, and a settling plate support formed on the upper side of the housing support frame so that the cut material to be cut and dropped can fall through the housing settling plate. It includes a discharge hole formed in the center of the housing mounting plate, and the housing part is formed in a form that the upper side is open so that food materials can be placed therein, and is formed in a form that the lower side is open so that a cutting support plate can be coupled thereto, and includes a support plate coupling end formed on the lower side of the housing case so that a cutting support plate equipped with a cutting blade can be detachably attached to the lower side of the housing case, and the rotating cutting part is formed in a cutting support plate so that the cutting blade can be detachably attached to the lower side of the housing case so that the food materials do not fall out inside the housing case when put into the housing case, and is formed so that the cutting blade can be detachably attached to the inside of the support plate coupling end, and a cutting blade formed on one side of the upper side of the cutting support plate so that the rotating food materials can be slid-cut and dropped toward the discharge hole, and a rotation guide groove formed on the upper surface of the cutting support plate so that friction between the rotating food materials and the upper surface of the cutting support plate is reduced and rotation can be performed smoothly, and the rotating driving part isA handle formed on the upper side of the shaft case to press the food material toward the cutting support plate, a drive motor formed on one side of the inside of the shaft case to generate power to rotate the rotation drive shaft by pressing the switch, a switch formed on the upper side of the shaft case to input a signal to drive the drive motor, an shaft case formed to protect the rotation drive shaft from the outside and to allow a detachable drive case to be attached or detached on the lower side, and having a handle formed on the upper side, a rotation drive shaft formed inside the shaft case so that one side is connected to the drive motor so that it rotates by the rotational power provided from the drive motor and the other side is connected to the rotational shaft, a detachable drive case formed to prevent the rotational shaft and the fixed plate from being exposed to the outside, and formed so that one side can be inserted into the housing case and is detachably formed on the lower side of the shaft case, and a rotational drive case that receives rotational power from the rotational drive shaft and is formed to be detachably connected to the rotational drive shaft, and the other side is formed to be detachably connected to the rotational drive shaft. It is characterized by including a rotating shaft formed to be coupled with a fixed plate, a fixed plate formed to be connected to the lower side of the rotating shaft and to receive rotational power from the rotating shaft to rotate the food material, and a plurality of fixed projections formed on the lower side of the fixed plate to fix and rotate the food material.
[0012] In another embodiment, the rotary cutting device further includes a cutting material discharge unit for detecting the weight of the cut food material to be discharged and slidingly moving the cutting material according to the weight sensing to discharge it to the outside, and the cutting material discharge unit includes a slide conveyor formed on the upper side of the lower support plate for moving the conveyor bar in one direction or the other direction, a plurality of conveyor bars formed on the slide conveyor and formed to move in one direction or the other direction, a product settling frame formed on the upper side of the slide conveyor for settling the cut material when it falls, a frame fixing member formed on the lower side of the product settling frame so as to be detachable from the conveyor bar, a product settling plate formed so as to be raised and lowered according to the weight of the cut material inside the product settling frame, a spring fixing member formed so as to be able to fix a settling spring to a corresponding position on the lower side of the product settling plate and the inner bottom surface of the product settling frame, and a spring fixing member formed on the lower side of the product settling plate and the inner bottom surface of the product settling frame. A mounting spring formed between spring fixing members so that the product mounting plate can be raised and lowered according to the weight of the cutting material loaded on the product mounting plate, a weight detection sensor formed in the center of the inner bottom surface of the product mounting frame to detect the product mounting plate lowering according to the weight of the cutting material and to provide the detected information to the slide conveyor so that the product mounting frame can be moved to the discharge detection sensor side, an opening and closing door formed so that it can be opened and closed on one side of the product mounting frame to discharge the cutting material, an opening and closing hinge formed on the lower side of the opening and closing door so that the opening and closing door can rotate on the product mounting frame, an attachment magnet formed on one side of the product mounting frame at the same position as the magnetic member when the opening and closing door is closed so that the magnetic member can be attached by magnetism, a magnetic member formed on one side of the opening and closing door so that the magnetic member can be attached by magnetism to the attachment magnet, and a sensor formed on one side of the opening and closing door so that the product mounting frame moving to discharge the cutting material can be provided with the detected information to the slide conveyor side. An exhaust detection sensor formed on one side of the slide conveyor,It is characterized by including a return detection sensor formed on the other side of the slide conveyor to detect that the cut material has been discharged and returned to the initial position and to provide the detected information to the slide conveyor side.
[0013] As described above, the present invention provides an effect that allows it to be used in both places where food ingredients are used, such as homes that use small amounts of food ingredients and restaurants that use large amounts of food ingredients.
[0014] Additionally, it provides the effect of making it easy to cut lump-shaped food materials such as potatoes or sweet potatoes by pressing the protrusions and rotating the food materials.
[0015] Figure 1 is a cross-sectional view of the rotary cutting device of the present invention.
[0016] Figure 2 is a perspective view showing a housing portion, a rotary cutting portion, and a rotary driving portion.
[0017] FIG. 3 is a product photo for home use according to one embodiment of FIG. 1.
[0018] Figure 4 is a product photograph for restaurant use according to one embodiment of Figure 1.
[0019] Figure 5 is a drawing of a cutting material scattering prevention unit, which is another embodiment of the present invention.
[0020] Figure 6 is a detailed view of Figure 5.
[0021] Figure 7 is a drawing of a cutting material discharge unit, which is another embodiment of the present invention.
[0022] Figure 8 is a detailed view of Figure 7.
[0023] Figure 9 is a drawing of a non-product suction unit, which is another embodiment of the present invention.
[0024] Figure 10 is a detailed view of Figure 9.
[0025] The following detailed description of the present invention refers to the accompanying drawings, which illustrate specific embodiments in which the present invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the present invention. It should be understood that the various embodiments of the present invention, while different from each other, are not necessarily mutually exclusive. For example, specific shapes, structures, and characteristics described herein may be implemented in other embodiments without departing from the spirit and scope of the present invention. Furthermore, it should be understood that the positions or arrangements of individual components within each disclosed embodiment may be modified without departing from the spirit and scope of the present invention. Accordingly, the following detailed description is not intended to be limiting, and the scope of the present invention is defined only by the appended claims, along with the full scope of equivalents to which such claims are entitled, if properly described. Like reference numerals in the drawings designate the same or similar functionality throughout the several aspects.
[0026] Hereinafter, the present invention will be described in detail with reference to the drawings.
[0027]
[0028] Fig. 1 is a cross-sectional view of a rotary cutting device of the present invention, Fig. 2 is a perspective view showing a housing part, a rotary cutting part, and a rotary driving part, Fig. 3 is a product photo for home use according to one embodiment of Fig. 1, and Fig. 4 is a product photo for restaurant use according to one embodiment of Fig. 1.
[0029] As shown in the above drawing, the rotary cutting device (10) of the present invention is characterized by being used to cut lump-shaped food materials such as potatoes or sweet potatoes.
[0030] The above rotary cutting device (10) includes a frame portion (100), a housing portion (110), a rotary cutting portion (120), and a rotary driving portion (130). The frame portion (100) is characterized in that it is formed as a square frame to support the housing portion (110) and is formed to be movable.
[0031] The above frame part (100) is characterized by including a housing support frame (101), a lower support plate (102), a housing mounting plate (103), a mounting plate support (104), and a discharge hole (105).
[0032] The above housing support frame (101) is formed to support the housing case (111), and the housing support frame (101) is characterized in that it is formed to be a square frame.
[0033] The lower support plate (102) is formed so that a case for containing the cut material that is cut and dropped can be placed thereon, and the lower support plate (102) is characterized in that it is formed on the lower side of the housing support frame (101).
[0034] The above housing mounting plate (103) is formed so that the housing case (111) can be mounted, and the housing mounting plate (103) is characterized in that it is formed at the upper center of the mounting plate support (104).
[0035] The above-mentioned mounting plate support member (104) is formed so that the housing mounting plate (103) can be fixed to the upper side of the housing support frame (101), and the above-mentioned mounting plate support members (104) are characterized by being formed as a pair so as to be parallel to the upper side of the housing support frame (101).
[0036] The above discharge hole (105) is formed so that the cut material that is cut and falls can fall through the housing mounting plate (103), and the discharge hole (105) is characterized by being formed in the center of the housing mounting plate (103).
[0037] The above housing part (110) is characterized in that it is formed to be fixedly positioned on the upper side of the frame part (100) so that food materials can be embedded and fixed.
[0038] The above housing part (110) is characterized by including a housing case (111) and a support plate connecting member (112).
[0039] The above housing case (111) is formed so that food materials can be stored therein, and the housing case (111) is formed in an open shape on the upper side and is formed in an open shape so that a cutting support plate (121) can be coupled to the lower side.
[0040] The above support plate connecting portion (112) is formed to enable the cutting support plate (121) equipped with a cutting blade (122) to be detachably attached to the lower side of the housing case (111), and the above support plate connecting portion (112) is characterized in that it is formed on the lower side of the housing case (111).
[0041] The above-mentioned rotary cutting part (120) is characterized by being formed on the bottom side inside the housing part (110) to cut the food material that is introduced into the housing part (110) and rotated.
[0042] The above rotary cutting part (120) is characterized by including a cutting support plate (121), a cutting blade (122), and a rotary guide groove (123).
[0043] The above cutting support plate (121) is formed to prevent food from falling out from the inside of the housing case (111) when food is put into the housing case (111), and the cutting blade (122) is formed to be detachable, and is characterized by being formed to be detachable into the inside of the support plate joint (112).
[0044] The above cutting blade (122) is formed so that the rotating food material can be slide-cut and dropped toward the discharge hole (105), and the cutting blade (122) is characterized by being formed on one side of the upper portion of the cutting support plate (121).
[0045] The above rotation guide groove (123) is formed to reduce friction between the rotating food material and the upper surface of the cutting support plate (121) and to enable smooth rotation. The above rotation guide groove (123) is characterized by being formed on the upper surface of the cutting support plate (121).
[0046] The above rotary drive unit (130) is characterized by generating power to rotate food materials placed inside the housing unit (110).
[0047] The above rotary drive unit (130) is characterized by including a handle (131), a drive motor (132), a switch (133), an axis case (134), a rotary drive shaft (135), a detachable drive case (136), a rotary shaft (137), a fixed plate (138), and a fixed projection (139).
[0048] The above handle (131) is formed to press the food material toward the cutting support plate (121), and the handle (131) is characterized by being formed toward the upper side of the shaft case (134).
[0049] The above driving motor (132) is formed to generate power to rotate the rotary drive shaft (135) when the switch (133) is pressed, and the driving motor (132) is characterized in that it is formed on one side inside the shaft case (134).
[0050] The above switch (133) is formed to input a signal for driving the drive motor (132), and the switch (133) is characterized in that it is formed on the upper side of the shaft case (134).
[0051] The above-mentioned shaft case (134) protects the rotary drive shaft (135) from the outside, and is characterized by being formed so that a detachable drive case (136) can be attached or detached to the lower side, and a handle (131) is formed on the upper side.
[0052] The above-mentioned rotary drive shaft (135) is formed to rotate by the rotary power provided from the drive motor (132), and the above-mentioned rotary drive shaft (135) is characterized in that one side is connected to the drive motor (132) and the other side is formed inside the shaft case (134) so that it can be connected to the rotary shaft (137).
[0053] The above detachable drive case (136) is formed to prevent the rotation shaft (137) and the fixed plate (138) from being exposed to the outside, is formed so that one side can be inserted into the housing case (111), and is characterized in that it is formed so that it can be detachably attached to the lower side of the shaft case (134).
[0054] The above-mentioned rotary shaft (137) is rotated by receiving rotary power from the rotary drive shaft (135), and is characterized in that one side is formed to be detachably connected to the rotary drive shaft (135), and the other side is formed to be coupled with a fixed plate (138).
[0055] The above fixed plate (138) is formed to be connected to the lower side of the rotation shaft (137) and is characterized in that it is formed to receive rotational power from the rotation shaft (137) to rotate the food material.
[0056] The above fixed protrusion (139) is formed to fix and rotate the food material, and is characterized in that a plurality of the fixed protrusions (139) are formed on the lower surface of the fixed plate (138).
[0057] FIG. 5 is a drawing of a cutting material scattering prevention unit (200) which is another embodiment of the present invention, and FIG. 6 is a detailed drawing of FIG. 5.
[0058] As seen in the above drawing, the cutting material scattering prevention unit (200) is a configuration further included in the rotary cutting device (10) of the present invention, and the cutting material scattering prevention unit (200) is characterized by preventing flying materials flying inside the housing case (111) when cutting food materials from scattering outside the housing case (111).
[0059] The above-mentioned cutting material scatter prevention part (200) is characterized by including a frame joining member (210), a joining groove (211), and a wrinkle pad (212).
[0060] The above frame-joining member (210) is formed so that it can be joined to the upper circumference of the housing case (111), and the above frame-joining member (210) is characterized in that it is formed of a rubber material.
[0061] The above-mentioned joining groove (211) is formed so that it can be joined and fixed to the upper circumference of the housing case (111), and the joining groove (211) is characterized by being formed along the lower circumference of the frame joining member (210).
[0062] The above wrinkle pad (212) is formed to prevent the cutting material that is cut by rotation by the detachable driving case (136) that is inserted into the housing case (111) from flying toward the upper side of the housing case (111), and the wrinkle pad (212) is characterized in that it is formed around the inner surface of the frame joining member (210).
[0063]
[0064] Figure 3 is an example of a case for storing cut pieces that are dropped into a home.
[0065] As shown in the above drawing, a case box is shown that is connected to the lower part of the cutting support plate.
[0066] It is characterized in that the cutting support plate is formed to be detachable from the bottom of the case.
[0067]
[0068] FIG. 4 is a drawing of one embodiment, which is used in a restaurant, characterized in that, as shown in the drawing, the lower part of the cutting support plate is seated on the housing mounting plate, and the cut material is discharged from the lower part of the cutting support plate toward the discharge hole formed on the housing mounting plate.
[0069]
[0070] FIG. 7 is a drawing of a cutting material discharge unit (300) which is another embodiment of the present invention, and FIG. 8 is a detailed drawing of FIG. 7.
[0071] As seen in the above drawing, the cutting material discharge unit (300) is a configuration further included in the rotary cutting device (10) of the present invention, and the cutting material discharge unit (300) is characterized in that it detects the weight of the cut food material to be discharged and slides and discharges it to the outside according to the weight sensing.
[0072] The above-mentioned cutting material discharge unit (300) is characterized by including a slide conveyor (311), a conveyor bar (312), a product settling frame (313), a frame fixing member (314), a product settling plate (315), a spring fixing member (316), a settling spring (317), a weight detection sensor (318), an opening / closing door (319), an opening / closing hinge (320), an attachment magnet (321), a magnetic member (322), an discharge detection sensor (323), and a return detection sensor (324).
[0073] The above slide conveyor (311) is formed to move the conveyor bar (312) in one or the other direction, and the slide conveyor (311) is characterized in that it is formed on the upper side of the lower support plate (102).
[0074] The above conveyor bar (312) is characterized in that it is formed in multiple numbers on the slide conveyor (311) and is formed to move in one direction or the other direction.
[0075] The above product settling frame (313) is formed so that the cut material can be settling when the cut material falls, and the above product settling frame (313) is characterized in that it is formed on the upper side of the slide conveyor (311).
[0076] The above frame fixing member (314) is formed so as to be detachable from the conveyor bar (312), and the above frame fixing member (314) is characterized in that it is formed at the bottom of the product mounting frame (313).
[0077] The above product mounting plate (315) is characterized in that it is formed so that it can be raised and lowered according to the weight of the cut material inside the product mounting frame (313).
[0078] The above spring fixing member (316) is characterized in that it is formed so as to be able to fix the fixing spring (317) at positions corresponding to each other on the lower surface of the product fixing plate (315) and the inner bottom surface of the product fixing frame (313).
[0079] The above-mentioned settling spring (317) is formed between a spring fixing member (316) formed on the lower surface of a product settling plate (315) and a spring fixing member (316) formed on the inner bottom surface of a product settling frame (313), and is characterized in that it is formed so that it can be raised and lowered according to the weight of the cut material loaded on the product settling plate (315).
[0080] The above weight detection sensor (318) is formed to detect the product settling plate (315) that is lowered according to the weight of the cut material. The weight detection sensor (318) is formed in the center of the inner bottom surface of the product settling frame (313), and is characterized by providing the detected information to the slide conveyor (311) so that the product settling frame (313) can be moved toward the discharge detection sensor (323).
[0081] The above opening / closing door (319) is formed for the discharge of cut material, and is characterized in that the opening / closing door (319) is formed so that it can be opened / closed on one side of the product mounting frame (313).
[0082] The above opening / closing hinge (320) is formed to enable the opening / closing door (319) to rotate on the product mounting frame (313), and the opening / closing hinge (320) is characterized by being formed on the lower side of the opening / closing door (319).
[0083] The above attachment magnet (321) is formed so that the magnetic member (322) can be attached by magnetism, and the above attachment magnet (321) is characterized in that it is formed on one side of the product mounting frame (313) at the same position as the magnetic member (322) when the opening / closing door (319) is closed.
[0084] The above magnetic member (322) is formed so that it can be magnetically attached to the attachment magnet (321), and the magnetic member (322) is characterized in that it is formed on one side of the opening / closing door (319).
[0085] The above discharge detection sensor (323) is formed to detect the product mounting frame (313) that is moved to discharge the cut material and to provide the detected information to the slide conveyor (311), and the discharge detection sensor (323) is characterized in that it is formed on one side of the slide conveyor (311).
[0086] The above return detection sensor (324) is formed to detect that the cut material has been discharged and returned to the initial position and to provide the detected information to the slide conveyor (311), and the above return detection sensor (324) is characterized in that it is formed on the other side of the slide conveyor (311).
[0087]
[0088] FIG. 9 is a drawing of a non-product suction unit (400) which is another embodiment of the present invention, and FIG. 10 is a detailed drawing of FIG. 9.
[0089] As seen in the above drawing, the non-dust suction unit (400) is a configuration further included in the rotary cutting device (10) of the present invention, and the non-dust suction unit (400) is characterized by being for suctioning non-dust around the housing support frame (101) in the cut material that is cut and discharged.
[0090] The above-mentioned non-product suction unit (400) is characterized by including a suction pipe (410), a suction moving pipe (411), a suction chamber (412), a suction fan (413), a scatter prevention plate (414), a spray liquid tank (415), a spray nozzle (416), a drain pipe (417), a drain valve (418), a suction opening / closing panel (419), and a panel spring (420).
[0091] The above suction pipe (410) is formed to suck up flying dust around the falling cutting material, and the suction pipe (410) is characterized in that it is formed around the inside of the housing support frame (101).
[0092] The above suction moving pipe (411) is formed to move flying dust sucked through the suction pipe (410) toward the suction chamber (412), and the suction moving pipe (411) is characterized in that one side is connected to one side of the suction pipe (410) and the other side is connected to one side of the suction chamber (412).
[0093] The above suction chamber (412) is formed to capture flying dust moving through the suction pipe (411), and the above suction chamber (412) is characterized in that it is formed on one side outside the housing support frame (101).
[0094] The above suction fan (413) is formed to generate suction power for sucking flying dust toward the suction chamber (412), and the suction fan (413) is characterized in that it is formed on one side of the upper portion of the suction chamber (412).
[0095] The above anti-scattering plate (414) is formed to prevent the spray liquid sprayed through the spray nozzle (416) from being discharged through the suction fan (413), and the anti-scattering plate (414) is characterized in that it is formed on the upper side inside the suction chamber (412).
[0096] The above-mentioned injection liquid tank (415) is formed so that the injection liquid can be stored, and the above-mentioned injection liquid tank (415) is characterized in that it is formed on one side of the suction chamber (412).
[0097] The above injection nozzle (416) is formed to inject the injection liquid into the suction chamber (412), and the injection nozzle (416) is characterized in that it is formed on one side of the inside of the suction chamber (412).
[0098] The above drain pipe (417) is formed to discharge contaminated water inside the suction chamber (412) to the outside, and the drain pipe (417) is characterized in that it is formed on one side of the lower portion of the suction chamber (412).
[0099] The above drain valve (418) is formed to control the discharge of contaminated water discharged through the drain pipe (417), and the drain valve (418) is characterized in that it is formed on the drain pipe (417).
[0100] The above suction opening / closing panel (419) is formed to automatically open / close by air sucked through the suction moving pipe (411) when the suction fan (413) is driven, and the above suction opening / closing panel (419) is characterized in that it is formed on one side of the suction chamber (412).
[0101] The above panel spring (420) is formed so that the suction opening / closing panel (419) can be rotated and opened / closed by air pressure when the suction opening / closing panel (419) is automatically opened / closed, and the panel spring (420) is characterized in that it is formed on the upper side of the suction opening / closing panel (419).
[0102]
[0103] The embodiments described above are provided for illustrative purposes only, and those skilled in the art will readily appreciate that the embodiments described above can be readily modified into other specific forms without altering the technical concepts or essential characteristics of the embodiments described above. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. For example, components described as being single may be implemented in a distributed manner, and similarly, components described as being distributed may be implemented in a combined manner.
[0104] The scope of protection sought through this specification is indicated by the claims described below rather than the detailed description above, and should be interpreted to include all changes or modifications derived from the meaning and scope of the claims and their equivalent concepts.
Claims
1. A rotary cutting device for cutting lump-shaped food ingredients such as potatoes or sweet potatoes.
2. In paragraph 1, The above rotary cutting device, A frame part formed into a square frame to support the housing part and formed to be movable, and A housing portion formed to be fixedly formed on the upper side of the frame portion so that food materials can be built in and fixed, and A rotating cutting section formed on the bottom side of the housing section to cut the food material that is rotated and inserted into the housing section, and It includes a rotary drive unit for generating power to rotate food materials placed inside the housing unit, The above frame part, A housing support frame formed to be a square frame to support the housing case, A lower support plate formed on the lower side of the housing support frame so that a case for containing the cut material that is cut and dropped can be placed, A housing mounting plate formed on the upper center of the mounting plate support so that the housing case can be mounted, A pair of mounting plate supports formed parallel to the upper side of the housing support frame so that the housing mounting plate can be fixed to the upper side of the housing support frame, It includes a discharge hole formed in the center of the housing mounting plate so that the cut material that is cut and falls can fall through the housing mounting plate, The above housing part, A housing case formed in an open shape on the upper side so that food materials can be stored therein, and formed in an open shape so that a cutting support plate can be combined on the lower side, It includes a support plate joint formed on the lower side of the housing case to enable a cutting support plate equipped with a cutting blade to be detachably attached to the lower side of the housing case. The above rotary cutting part, When food is put into the housing case, it is formed so that it does not fall out from the inside of the housing case, and the cutting support plate is formed so that the cutting blade can be attached or detached, and is formed so that it can be attached or detached to the inside of the support plate joint. A cutting blade formed on one side of the upper part of the cutting support plate so that the rotating food material can be slide-cut and dropped toward the discharge hole, It includes a rotation guide groove formed on the upper surface of the cutting support plate to reduce friction between the rotating food material and the upper surface of the cutting support plate and to enable smooth rotation. The above rotary drive unit is, A handle formed on the upper side of the shaft case to press the food material toward the cutting support plate, A drive motor formed on one side of the shaft case to generate power to rotate the rotary drive shaft when the switch is pressed, A switch formed on the upper side of the shaft case to input a signal to drive the drive motor, An axle case that protects the rotating drive shaft from the outside, is formed so that a detachable drive case can be attached or detached at the bottom, and has a handle formed at the top, A rotary drive shaft formed inside the shaft case so that one side is connected to the drive motor so that it can be rotated by the rotational power provided from the drive motor and the other side can be connected to the rotation shaft, A detachable drive case formed to prevent the rotating shaft and the fixed plate from being exposed to the outside, formed so that one side can be inserted into the housing case, and formed so that it can be detached from the lower side of the shaft case, A rotating shaft that receives rotational power from a rotating drive shaft and rotates, and is formed to be connected so that one side can be attached or detached from the rotating drive shaft, and is formed so that a fixed plate can be combined on the other side, A fixed plate formed to rotate the food material by receiving rotational power from the rotational axis and connected to the lower side of the rotational axis, A rotary cutting device characterized by including a plurality of fixing projections formed on the lower surface of a fixing plate to fix and rotate food materials.
3. In paragraph 1, The above rotary cutting device, It further includes a cutting material discharge unit for detecting the weight of the cut food material to be cut and discharged, and moving the slide according to the weight sensing to discharge it to the outside. The above cutting material discharge section is, A slide conveyor formed on the upper side of the lower support plate to move the conveyor bar in one or the other direction, A conveyor bar formed in multiple numbers on a slide conveyor and formed to move in one or the other direction, A product settling frame formed on the upper side of the slide conveyor so that the cut material can be settling when it falls, A frame fixing member formed at the bottom of the product mounting frame so that it can be attached and detached from the conveyor bar, A product settling plate formed so that it can be raised and lowered according to the weight of the cutting material inside the product settling frame, A spring fixing member formed to fix a fixing spring at a mutually corresponding position on the bottom surface of the product fixing plate and the inner bottom surface of the product fixing frame, A settling spring formed between a spring fixing member formed on the lower surface of the product settling plate and a spring fixing member formed on the inner bottom surface of the product settling frame, so that the product settling plate can be raised and lowered according to the weight of the cut material loaded thereon, A weight detection sensor is formed in the center of the bottom surface inside the product setting frame to detect the product setting plate that descends according to the weight of the cutting material, and provides the detected information to the slide conveyor so that the product setting frame can move to the discharge detection sensor side. An opening door formed to be able to open and close on one side of the product mounting frame for discharge of cut materials, An opening hinge formed on the lower side of the opening door to enable the opening door to rotate on the product mounting frame, An attachment magnet formed on one side of the product mounting frame at the same position as the magnetic member when the door is closed so that the magnetic member can be attached by magnetism, A magnetic member formed on one side of the opening / closing door so that it can be attached to the attachment magnet by magnetism, An exhaust detection sensor formed on one side of the slide conveyor to detect the product mounting frame moving for discharge of cut material and provide the detected information to the slide conveyor side, A rotary cutting device characterized by including a return detection sensor formed on the other side of the slide conveyor to detect that the cutting material has been discharged and returned to the initial position and to provide the detected information to the slide conveyor side.
Citation Information
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