Stable support facilitating vegetable peeling
By designing a stabilizing mechanism and a locking mechanism for the stable support, the problem of uneven force distribution in the middle part of the winter melon during the rotating peeling process was solved, achieving stable support and complete peeling of the winter melon.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAANXI SHIGU RUNFENG AGRI TECH DEV CO LTD
- Filing Date
- 2025-05-15
- Publication Date
- 2026-04-17
AI Technical Summary
Existing technology causes uneven stress on the middle part of the winter melon during the rotary peeling process, resulting in breakage and an inability to achieve a peeling effect with an intact shape.
A vegetable peeling support was designed, which includes a stabilizing mechanism and a snap-fit mechanism. The stabilizing mechanism provides different forms of support through a pressing component and a stabilizing component, while the snap-fit mechanism drives the winter melon to rotate, ensuring the stability of the winter melon during the peeling process.
It provides stable support for both regular and irregular winter melons, preventing the middle part from breaking during rotation and achieving a peeling effect with intact shape.
Smart Images

Figure CN224125696U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vegetable peeling, specifically to a stable support that facilitates vegetable peeling. Background Technology
[0002] Winter melon is rich in water and dietary fiber, and extremely low in calories. It increases satiety, promotes intestinal peristalsis, and helps eliminate toxins and waste from the body, making it an excellent choice for those trying to lose weight. Preparing winter melon products requires large-scale peeling; current peeling technology utilizes rotary peeling.
[0003] Existing technology only fixes the two ends of the winter melon during the rotation peeling process. Winter melons are mostly cylindrical, but they are not always regular cylindrical. Some winter melons are slightly thicker in the middle and may have some protrusions. Therefore, during rotation, the centrifugal force will cause uneven stress on the middle part of the winter melon, which will cause the middle part of the winter melon to break and make it impossible to get a peeled winter melon with a complete shape.
[0004] Therefore, a stable support is needed to facilitate the peeling of vegetables and solve the above-mentioned technical problems. Utility Model Content
[0005] To achieve the above objectives, this utility model provides the following technical solution: a stable support for facilitating vegetable peeling, comprising:
[0006] A tool holder with a crossbar fixed at its upper end, and tool mechanisms slidably mounted on both sides of the crossbar;
[0007] The base is connected to the bottom end of the tool holder via a connecting part;
[0008] A stabilizing mechanism is slidably mounted on the base;
[0009] The locking mechanism is configured in two sets, and the two sets of locking mechanisms are respectively slidably disposed on the base at positions located on both sides of the stabilizing mechanism;
[0010] The stabilizing mechanism includes:
[0011] The stabilizing frame has an arc-shaped base at its bottom, an installation cavity in its inclined section, and a recessed section in the upper middle part of the stabilizing frame.
[0012] The control cavity is located within the arc-shaped seat;
[0013] A slide is provided inside the control cavity;
[0014] The pressing component is mounted on the recessed portion; and
[0015] A stabilization component is installed inside the mounting cavity, and a main control is connected between the pressing component and the stabilization component.
[0016] Furthermore, preferably, the pressing component includes:
[0017] The column is fixedly connected to the bottom of the control cavity, and a downward pressure sleeve is slidably sleeved on its upper end. The two ends of the bottom of the downward pressure sleeve are slidably disposed in the slide rail, and the upper end of the downward pressure sleeve passes through the recess and extends to the outside of the stabilizing frame.
[0018] An arc-shaped seat is fixedly installed on the upper end of the lower pressure sleeve rod, and connecting springs are equidistantly arranged on the end of the arc-shaped seat away from the lower pressure sleeve rod; and
[0019] The pressure seat is fixedly connected to the end of the connecting spring away from the arc seat.
[0020] Furthermore, as a preferred embodiment, the end of the pressure seat away from the connecting spring is configured as an arc-shaped portion, and multiple sets of rotating columns are rotatably arranged on the arc-shaped portion.
[0021] Furthermore, preferably, the stabilization component includes:
[0022] A stabilizing base is disposed within the mounting cavity. One end of the stabilizing base is rotatably provided with a rotating part, and a torsion spring is provided at the connection between the rotating part and the stabilizing base.
[0023] The arms are configured in two sets, with each set of arms fixedly connected to the outer side of the rotating part; and
[0024] The rotating wheels are configured in two sets, and the two sets of rotating wheels are respectively rotatably mounted on the two sets of extended arms, and the two sets of rotating wheels are connected by a stabilizing belt.
[0025] Furthermore, preferably, the overall control includes:
[0026] The receiving end is located on one side of the stabilizing base;
[0027] The transmitting end is disposed within the slide rail, and the receiving end is connected to the transmitting end via a connecting line; and
[0028] The control terminals are located at both ends of the bottom of the lower pressure sleeve rod within the slide rail.
[0029] Furthermore, as a preferred embodiment, the base includes: a base frame, a movable platform slidably mounted on the base frame, a motor at one end of the base frame, a rotating rod at the output end of the motor, the rotating rod being connected to the lower end of the movable platform, and the bottom end of the stabilizing frame being connected to the upper end of the movable platform.
[0030] Furthermore, as a preferred embodiment, the locking mechanism includes: a locking seat, which is slidably disposed on the upper end of the base, and a second motor is installed on one side of the locking seat, with the locking end connected to the output end of the second motor via a transmission part.
[0031] Furthermore, as a preferred embodiment, the cutting tool mechanism includes: a base plate, one side of which is slidably connected to the crossbar, and a lifting plate is mounted on the other side. A mounting bracket is fixedly provided on the side of the lifting plate away from the base plate, and a cutting head is mounted at the end of the mounting bracket.
[0032] Compared with the prior art, this utility model provides a stable support for easy peeling of vegetables, which has the following beneficial effects:
[0033] Advantage 1: This utility model features a stabilizing mechanism with a pressing component and a stabilizing component, providing different forms of stable support for both regular and irregular columnar winter melons. It enhances stability during rotation, prevents uneven stress in the middle section from causing breakage, and results in a whole, peeled winter melon.
[0034] Advantage 2: Both sets of snap-fit mechanisms in this utility model have the function of driving the winter melon to be peeled to rotate. Depending on the specific situation, one or both sets of snap-fit mechanisms can be activated to drive the winter melon to be peeled to rotate. Attached Figure Description
[0035] Figure 1 A schematic diagram of a stable support structure that facilitates the peeling of vegetables;
[0036] Figure 2 A schematic diagram of a stabilizing mechanism for a stable support that facilitates vegetable peeling;
[0037] Figure 3 A schematic diagram of a stable support pressing component that facilitates vegetable peeling;
[0038] Figure 4 A schematic diagram of a stabilizing support component for facilitating vegetable peeling;
[0039] Figure 5 A schematic diagram of a stable support base structure that facilitates vegetable peeling;
[0040] Figure 6 A schematic diagram of a stable support clip mechanism for facilitating vegetable peeling;
[0041] Figure 7 A schematic diagram of a stable support knife mechanism for facilitating vegetable peeling;
[0042] In the diagram: 1. Tool holder; 2. Crossbar; 3. Tool mechanism; 31. Base plate; 32. Lifting plate; 33. Tool head; 4. Base; 41. Motor 1; 42. Rotating rod; 43. Moving table; 5. Stabilizing mechanism; 51. Stabilizing frame; 52. Arc-shaped seat; 53. Control cavity; 54. Slide rail; 6. Snap-fit mechanism; 61. Snap-fit seat; 62. Motor 2; 63. Transmission part; 64. Snap-fit end; 7. Pressing assembly; 71. Column; 72. Pressing sleeve; 73. Arc seat; 74. Connecting spring; 75. Pressure seat; 76. Rotating column; 8. Stabilizing assembly; 81. Stabilizing seat; 82. Rotating part; 83. Extending arm; 84. Rotating wheel; 85. Stabilizing belt; 86. Torsion spring; 9. Main control unit; 91. Receiving end; 92. Transmitting end; 93. Connecting line; 94. Control end. Detailed Implementation
[0043] Please see Figures 1-7 This utility model provides a stable support for facilitating vegetable peeling, comprising:
[0044] A tool holder 1 has a crossbar 2 fixed at its upper end, and tool mechanisms 3 are slidably arranged on both sides of the crossbar 2.
[0045] The base 4 is connected to the bottom end of the tool holder 1 via a connecting part;
[0046] The stabilizing mechanism 5 is slidably mounted on the base 4;
[0047] The locking mechanism 6 is configured as two sets, and the two sets of locking mechanisms 6 are respectively slidably disposed on the base 4 at positions located on both sides of the stabilizing mechanism 5.
[0048] In this embodiment, the positions of the two sets of locking mechanisms 6 and the stabilizing mechanism 5 are first adjusted according to the length of the winter melon to be peeled. Then, the two ends of the winter melon are fixed to the two sets of locking mechanisms 6 respectively, and the cutting mechanism 3 is adjusted to the initial peeling position. Then, the locking mechanism 6 is started to drive the winter melon to be peeled to rotate. During the rotation, the cutting mechanism 3 performs the peeling operation. At the same time, the middle part of the winter melon is stabilized by the stabilizing mechanism 5. After peeling is completed, the winter melon is removed and the winter melon skin is cleaned. Then, the peeling operation is repeated.
[0049] The stabilizing mechanism 5 includes:
[0050] The stabilizer 51 has an arc-shaped base 52 at its bottom. The inclined part of the stabilizer 51 has an installation cavity, and the upper part of the middle section of the stabilizer 51 is a recessed part.
[0051] The control cavity 53 is located within the arc-shaped seat 52;
[0052] Slide 54 is provided inside the control cavity 53;
[0053] The pressing component 7 is mounted on the recessed portion; and
[0054] The stabilization component 8 is installed in the mounting cavity, and the pressure-down component 7 is connected to the stabilization component 8 by a main control 9.
[0055] As a preferred embodiment, the stabilizing mechanism 5 with the pressing component 7 and the stabilizing component 8 can provide different stabilizing support for regular columnar winter melons and irregular columnar winter melons (here, "irregular" refers to the winter melon being slightly thicker in the middle and possibly having some protrusions; if the term "irregular columnar winter melon" appears again below, it will have the same meaning as here), which will be described in detail below.
[0056] It should be noted that while the winter melon to be peeled is rotated in the same position, the cutting mechanism 3 moves horizontally to complete the peeling operation.
[0057] Furthermore, the pressing component 7 includes:
[0058] The column 71 has its bottom end fixedly connected to the bottom end of the control cavity 53, and its upper end is slidably fitted with a pressing sleeve 72. The two ends of the bottom of the pressing sleeve 72 are slidably disposed in the slide rail 54, and the upper end of the pressing sleeve 72 passes through the recess and extends to the outside of the stabilizing frame 51.
[0059] An arc seat 73 is fixedly installed on the upper end of the lower pressure sleeve 72, and connecting springs 74 are equidistantly arranged at one end of the arc seat 73 away from the lower pressure sleeve 72; and
[0060] The pressure seat 75 is fixedly connected to the end of the connecting spring 74 away from the arc seat 73.
[0061] Furthermore, the end of the pressure seat 75 away from the connecting spring 74 is configured as an arc-shaped part, and multiple sets of rotating columns 76 are rotatably arranged on the arc-shaped part.
[0062] Furthermore, the stabilization component 8 includes:
[0063] A stabilizing base 81 is disposed in the mounting cavity. A rotating part 82 is rotatably disposed at one end of the stabilizing base 81. A torsion spring 86 is provided at the connection between the rotating part 82 and the stabilizing base 81.
[0064] The arms 83 are configured in two sets, with each set of arms 83 fixedly connected to the outer side of the rotating part 82; and
[0065] The rotating wheel 84 is configured in two sets, and the two sets of rotating wheels 84 are respectively rotatably mounted on the two sets of extended arms 83, and the two sets of rotating wheels 84 are connected by a stabilizing belt 85.
[0066] Example 1: The object of the peeling operation is an irregular columnar winter melon.
[0067] During the peeling process, the winter melon continues to rotate. The thinner parts near its ends are suspended in the air, while the thicker middle part comes into contact with the two sets of stabilizing components 8 located in the inclined mounting cavities of the stabilizing frame 51 (the contact is moderate and does not affect the rotation of the winter melon or the stabilizing components 8 themselves). At this time, the stabilizing components 8 are in a non-working state. As the winter melon rotates, it slightly drives the movement of the stabilizing band 85. It should be noted that the stabilizing band 85 can cooperate with the outer surface of the winter melon, and the extension arm 83 can swing slightly under the action of the torsion spring 86 to adapt to the rotation of the winter melon, thus preventing the thicker middle part of the winter melon from being suspended in the air during rotation.
[0068] If the thicker part of the winter melon has a protrusion, it will be more likely to break when the protrusion is rotated downwards. When the protrusion is rotated away from the... Figure 2 When the stabilizing component 8 on the right is in operation, the protruding part presses the pressure seat 75 downwards in the vertical direction, and drives the lowering sleeve 72 to move downwards synchronously. With the help of the main control 9, the stabilizing component 8 enters the working state, the rotating wheel 84 starts to rotate, and drives the stabilizing belt 85 to move synchronously. On the basis of the original stability, the stability of the middle part of the winter melon is enhanced, preventing the middle part from breaking during rotation, so that a peeled winter melon with a complete shape can be obtained.
[0069] When the protruding part rotates away from the pressing component 7, the pressing sleeve 72 instantly returns to its original position, and the stabilizing component 8 returns to its non-working state. In other words, the stabilizing component 8 only enters the working state to enhance the stability of the gourd's rotation when the protruding part rotates to the lower position.
[0070] Example 2: The peeling operation was performed on a regular columnar winter melon.
[0071] The regular columnar winter melon has a uniform thickness and no protruding parts. Therefore, the stability of the winter melon during rotation can be guaranteed by the movement of the stabilizing belt 85 when the stabilizing component 8 is not in working state.
[0072] Furthermore, the total control 9 includes:
[0073] The receiver 91 is located on one side of the stabilizer 81;
[0074] The transmitting end 92 is disposed within the slide rail 54, and the receiving end 91 is connected to the transmitting end 92 via a connecting line 93; and
[0075] The control terminal 94 is located at both ends of the bottom of the pressing sleeve 72 within the slide rail 54.
[0076] In this embodiment, when the pressure sleeve 72 moves down to the control end 94 and contacts the transmitting end 92, the receiving end 91 and the transmitting end 92 are connected through the connecting line 93, which enables the stabilization component 8 to enter the working state.
[0077] It should be noted that the driving method of the main control 9 can be electromagnetic power supply.
[0078] Furthermore, the base 4 includes: a base frame, a movable platform 43 slidably mounted on the base frame, a motor 41 mounted at one end of the base frame, a rotating rod 42 mounted at the output end of the motor 41, the rotating rod 42 being connected to the lower end of the movable platform 43, and the bottom end of the stabilizing frame 51 being connected to the upper end of the movable platform 43.
[0079] In this embodiment, motor 41 drives rotating rod 42 to rotate. Rotating rod 42 is threadedly connected to the lower end of moving platform 43. The upper end of moving platform 43 is slidably mounted on the base frame as a limit. Therefore, moving platform 43 can move left and right in the horizontal direction, thereby realizing the position change of stabilizing mechanism 5 to realize the stabilizing operation of different positions of the peeled winter melon.
[0080] Furthermore, the latching mechanism 6 includes: a latching seat 61, which is slidably disposed on the upper end of the base 4, a second motor 62 is installed on one side of the latching seat 61, and the latching end 64 is connected to the output end of the second motor 62 through a transmission part 63.
[0081] In this embodiment, the transmission part 63 is a belt drive mechanism.
[0082] Motor 62 can drive the snap-fit end 64 to rotate through the transmission part 63. The snap-fit end 64 can be a connector with a plug-in knife or a connector with a clamping function, as long as it does not fall off when the winter melon to be peeled is rotated.
[0083] It should be noted that both sets of locking mechanisms 6 in this utility model have the function of driving the winter melon to be peeled to rotate. Depending on the specific situation (such as a shorter winter melon only needs to be started by one set of locking mechanisms 6, while a longer winter melon needs to be started by two sets of locking mechanisms 6), one or two sets of locking mechanisms 6 can be started to drive the winter melon to be peeled to rotate.
[0084] The rotation speed of the winter melon to be peeled driven by the snap-fit mechanism 6 is moderate and will not affect the realization of the functions of other mechanisms and components in this utility model.
[0085] Furthermore, the cutting tool mechanism 3 includes: a base plate 31, one side of which is slidably connected to the crossbar 2, and a lifting plate 32 is installed on the other side. A mounting bracket is fixedly provided on the side of the lifting plate 32 away from the base plate 31, and a cutting head 33 is installed at the end of the mounting bracket.
[0086] In this embodiment, the user can choose which side of the cutting mechanism 3 to use for the peeling operation.
[0087] Specifically, the lifting plate 32 can raise and lower the cutter head 33 in the vertical direction, so that the cutter head 33 reaches the initial peeling position. During the peeling process, the base plate 31 will move horizontally along the crossbar 2 (the driving source of the base plate 31 is a common linear motion drive mechanism, which will not be described in detail here), thereby completing the peeling operation.
[0088] In practice, firstly, adjust the positions of the two sets of locking mechanisms 6 and stabilizing mechanisms 5 according to the length of the winter melon to be peeled. Then, fix both ends of the winter melon to the two sets of locking mechanisms 6 respectively, adjust the cutting mechanism 3 to the initial peeling position, and then start the locking mechanism 6 to drive the winter melon to be peeled to rotate. During the rotation, the cutting mechanism 3 performs the peeling operation. At the same time, the middle part of the winter melon will be stabilized by the stabilizing mechanism 5. After peeling, remove the winter melon and clean the winter melon skin. Then, continue to repeat the peeling operation.
[0089] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A stable support for facilitating peeling of vegetables, characterized in that: include: A tool holder (1) has a crossbar (2) fixed at its upper end, and tool mechanisms (3) are slidably arranged on both sides of the crossbar (2); The base (4) is connected to the bottom end of the tool holder (1) via a connecting part; The stabilizing mechanism (5) is slidably mounted on the base (4); The locking mechanism (6) is configured in two sets, and the two sets of locking mechanisms (6) are respectively slidably disposed on the base (4) at positions on both sides of the stabilizing mechanism (5); The stabilizing mechanism (5) includes: The stabilizing frame (51) has an arc-shaped seat (52) at its bottom. The inclined part of the stabilizing frame (51) has an installation cavity, and the upper part of the middle section of the stabilizing frame (51) is a recessed part. The control cavity (53) is located within the arc-shaped seat (52); The slide (54) is located inside the control cavity (53); The pressing component (7) is installed on the recessed portion; as well as The stabilization component (8) is installed in the mounting cavity, and a main control (9) is connected between the pressing component (7) and the stabilization component (8).
2. The stable support for facilitating vegetable peeling according to claim 1, characterized in that: The pressing component (7) includes: The column (71) is fixedly connected to the bottom of the control cavity (53) and the upper end is slidably fitted with a pressing sleeve (72). The two ends of the pressing sleeve (72) are slidably set in the slide rail (54). The upper end of the pressing sleeve (72) passes through the recess and extends to the outside of the stabilizing frame (51). An arc seat (73) is fixedly installed on the upper end of the lower pressure sleeve (72), and connecting springs (74) are equidistantly arranged on the end of the arc seat (73) away from the lower pressure sleeve (72); and The pressure seat (75) is fixedly connected to the end of the connecting spring (74) away from the arc seat (73).
3. A stable support for facilitating vegetable peeling according to claim 2, characterized in that: The end of the pressure seat (75) away from the connecting spring (74) is configured as an arc-shaped part, and multiple sets of rotating columns (76) are rotatably arranged on the arc-shaped part.
4. A stable support for facilitating peeling of vegetables as claimed in claim 2 wherein: The stabilization component (8) includes: A stabilizing base (81) is disposed in the mounting cavity. A rotating part (82) is rotatably disposed at one end of the stabilizing base (81). A torsion spring (86) is provided at the connection between the rotating part (82) and the stabilizing base (81). The arms (83) are configured in two sets, with each set of arms (83) fixedly connected to the outside of the rotating part (82); and The rotating wheel (84) is configured in two sets, and the two sets of rotating wheels (84) are respectively rotatably mounted on the two sets of extended arms (83), and the two sets of rotating wheels (84) are connected by a stabilizing belt (85).
5. A secure holder for facilitating peeling of vegetables as claimed in claim 4 wherein: The overall control (9) includes: The receiving end (91) is disposed on one side of the stabilizer (81); The transmitting end (92) is disposed within the slide rail (54), and the receiving end (91) is connected to the transmitting end (92) via a connecting line (93); and The control end (94) is located at both ends of the bottom of the pressure sleeve (72) within the slide (54).
6. A secure holder for facilitating peeling of vegetables as claimed in claim 1, wherein: The base (4) includes: a base frame, on which a movable platform (43) is slidably mounted, a motor (41) is mounted at one end of the base frame, a rotating rod (42) is mounted at the output end of the motor (41), the rotating rod (42) is connected to the lower end of the movable platform (43), and the bottom end of the stabilizing frame (51) is connected to the upper end of the movable platform (43).
7. A stable support for facilitating peeling of vegetables as claimed in claim 1 wherein: The snap-fit mechanism (6) includes: a snap-fit base (61) which is slidably disposed on the upper end of the base (4), a second motor (62) is installed on one side of the snap-fit base (61), and the snap-fit end (64) is connected to the output end of the second motor (62) through a transmission part (63).
8. A stable support for facilitating peeling of vegetables as claimed in claim 1 wherein: The cutting tool mechanism (3) includes: a base plate (31), one side of which is slidably connected to the crossbar (2), and a lifting plate (32) is installed on the other side. A mounting bracket is fixedly provided on the side of the lifting plate (32) away from the base plate (31), and a cutting head (33) is installed at the end of the mounting bracket.