Adjustable knife disc and peeler
By setting adjustable pads and adjustment structures on the blade disc of the fruit peeler, the problem of non-adjustable cutting thickness caused by fixed blades in the existing technology is solved, thus achieving the goal of adapting to the peeling needs of different fruits and improving peeling efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
- Filing Date
- 2025-09-18
- Publication Date
- 2026-08-04
AI Technical Summary
The fixed blade design of existing fruit peeling machines makes it difficult to adjust the cutting thickness, thus failing to meet the peeling requirements of different types of fruit.
Design an adjustable blade holder by setting a movable pad and adjustment structure on the blade holder, adjusting the distance between the pad and the blade edge, and changing the cut size to adapt to the peeling needs of different fruits.
It allows for adjusting the cutting thickness according to the type of fruit, improving peeling efficiency and flexibility, and avoiding fruit pulp waste.
Smart Images

Figure CN224584555U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of peeling machine technology, and specifically to an adjustable blade, and discloses a peeling machine. Background Technology
[0002] Fruits typically need to be washed and peeled before consumption. Traditionally, peeling is done manually with a fruit knife, requiring a high level of skill, and it's difficult to control the peel thickness, resulting in significant waste. To reduce the difficulty, a peeler can be used. Of course, fruit peelers on the market can automatically peel fruit. However, for some thin-skinned fruits, such as grapes and cherry tomatoes, manual peeling and fruit peelers are difficult to handle, time-consuming, laborious, and ineffective.
[0003] Chinese patent CN220631857U provides a peeling accessory and a peeling machine, comprising: a cup body having an upwardly open end to accommodate the juice and peel produced after fruit peeling; a drive shaft disposed inside the cup body; a blade disc disposed above the vertical projection range of the cup body; the blade disc being mounted on the drive shaft; and a top cover disposed on the top of the cup body, with a cylindrical receiving wall disposed below the top surface of the top cover, the receiving wall being used to prevent the fruit from being thrown away from the peeling area of the blade disc when the blade disc rotates.
[0004] In the aforementioned prior art, the cutting disc is provided with at least one blade; an elongated through hole is provided in front of the cutting edge of the blade to allow the peel and juice generated during peeling to drain downwards through the through hole. The problem with the prior art is that the blade is fixedly mounted on the cutting disc, making the spacing (cutting thickness) formed by the blades on the cutting disc unadjustable. This means it cuts a single thickness of peel; for example, it can peel apples but not oranges, making it difficult to meet the peeling needs of different types of fruit.
[0005] Therefore, existing technologies still need to be improved and developed. Utility Model Content
[0006] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing an adjustable blade that is structurally sound, flexible and convenient to use, and can meet the peeling needs of different fruits.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] The present invention discloses an adjustable blade disc, comprising a blade holder and a blade. The blade holder has a slot, and the blade is fixedly connected to the blade holder with its cutting edge extending into the slot. A movable pad is provided in the slot, and the pad and the cutting edge of the blade are spaced apart to form a cut. The blade holder has an adjustment structure connected to the pad, and the adjustment structure can drive the pad to change the size of the cut.
[0009] The pad and the blade edge are paired and set in the groove to form a cut. The adjustment structure can drive the pad to move in the groove, so that the pad can change the distance between itself and the blade edge, that is, adjust the size of the cut. The size of the cut refers to the thickness of the peel that the blade can remove.
[0010] Understandably, there is a height difference between the blade and the upper surface of the pad. When the blade rotates, the fruit rolls on the blade holder and the upper surface of the pad. When the fruit rolls onto the pad and contacts the blade's edge, the speed difference between the blade and the fruit allows the blade to peel off the fruit's skin. Therefore, the pad can be moved up and down to change this height difference, thus changing the size of the cut to meet the peeling needs of different types of fruit.
[0011] For example, when peeling thin-skinned and small fruits like apples, pears, grapes, and cherry tomatoes, the cutting block needs to be raised to make the cut smaller, thus avoiding over-cutting and wasting fruit. Conversely, lowering the cutting block to make the cut larger is suitable for peeling thick-skinned fruits like oranges.
[0012] According to the above scheme, the knife holder is provided with several slots, which are spaced at equal angles around the center of the knife holder. The knife holder is provided with several blades, each corresponding to one of the slots. Each slot contains a pad, and all pads are connected to the adjustment structure. To improve peeling efficiency, the conventional approach is to increase the number of blades, so that multiple blades pass over the fruit surface with each rotation of the blade disc, thereby improving peeling efficiency.
[0013] According to the above scheme, this utility model also includes a support, which connects all the pads. An adjusting structure is connected to the support to drive several pads. The support has several chip removal ports, which are located on one side of the pads to match the cutting edges. Further, the support has multiple pads, and the support and pads are an integral structure. The adjusting structure drives the support to simultaneously move several pads, adjusting the size of multiple cutting edges on the blade disc and maintaining uniformity. It can be understood that after the support connects several pads into an integral structure, for ease of processing and assembly, the support and the blade holder are also disc-shaped. Therefore, chip removal ports need to be opened on the support, allowing the peel cut by the blade at the cutting edge to be discharged through the chip removal ports.
[0014] According to the above scheme, the adjustment structure includes a knob and a spring, and an extension sleeve is provided on the bottom surface of the tool holder; the bracket has a through hole, through which the extension sleeve passes, allowing the bracket to move up and down; the spring is located between the tool holder and the bracket; the knob is fitted onto the extension sleeve and supports the bracket, and a fastening structure is provided between the knob and the extension sleeve. The knob can move up and down along the extension sleeve, causing the bracket and several pads on it to rise and fall, thereby changing the size of the cut. When the knob is adjusted downwards, the spring can push the bracket to fall accordingly. It is understood that after the cut size is adjusted to the correct position, the knob needs to be fixed to the extension sleeve by the fastening structure to ensure the stability of the cut size.
[0015] The fastening structure includes existing structures such as threaded connections and rotary latches. This utility model preferably uses a threaded connection method, that is, the outer wall of the extension bushing is provided with an external thread, the inner wall of the knob is provided with an internal thread, and the knob can move up and down along the extension bushing through the threaded transmission method.
[0016] According to the above scheme, the tool holder is provided with several anchoring terminals, and each blade is fixed to the tool holder by at least two anchoring terminals; the bracket is provided with several positioning holes, and each anchoring terminal passes through the corresponding positioning hole. Similarly, the bracket and the tool holder are vertically fixed by a knob and a spring. A pad is placed in the slot and abuts against the inner wall of the side without the blade, allowing for structural mating between the bracket and the tool holder in the circumferential direction. The anchoring terminals enhance the connection strength between the blade and the tool holder, and the blade can be fixed to the anchoring terminals with screws. Furthermore, the anchoring terminals can be paired with the positioning holes to facilitate assembly between the bracket and the tool holder. The anchoring terminals inserted into the positioning holes also enhance the circumferential structural strength of the tool holder and the bracket.
[0017] According to the above scheme, a step is formed between the upper end of the extension bushing and the bottom surface of the tool holder. A ring is provided on the bracket, surrounding the through hole, and a retaining ring is provided at the lower end of the ring. The spring is located between the extension bushing and the ring, with the upper end of the spring supporting the step and the lower end of the spring supporting the retaining ring. The bracket, through the ring and the retaining ring, cooperates with the step at the upper end of the extension bushing to house the spring. The spring is paired with the knob to stabilize the position between the bracket and the tool holder and the size of the cut.
[0018] According to the above scheme, a central bushing is provided on the top surface of the blade holder, and an engagement interface is provided at the upper end of the central bushing; the lower end of the central bushing passes through the blade holder to form the extension bushing, and the central bushing, the extension bushing, and the blade holder are integrally formed. The central bushing is used for mounting the blade disc on the peeling machine and forms a transmission connection through the engagement structure.
[0019] A peeler includes a main unit, a cup assembly, and an adjustable blade. The main unit has an output interface on its mounting platform. The cup assembly includes a cup body and an adapter terminal. A central sleeve is located within the cup body, with its inner hole penetrating the bottom plate of the cup body and its upper end open. The adapter terminal passes through the central sleeve. The cup body is placed on the main unit's mounting platform so that the lower end of the adapter terminal mates with the output interface. The blade holder is rotatably mounted within the cup body, and the central sleeve passes through a central bushing so that the upper end of the adapter terminal mates with a meshing interface. The cup assembly can be used as an accessory for kitchen appliances such as blenders and juicers, achieving compatibility and universality between devices. To ensure compatibility, the cup assembly of this invention is equipped with an adapter terminal. The adapter terminal has a universal transmission structure, such as a square or spline-shaped input / output port, to improve compatibility.
[0020] Specifically, the adapter terminal is first inserted into the output interface, and then the cup body is placed on the assembly table of the main unit to form a fixed position. At this time, the upper end of the adapter terminal passes through and extends out of the central sleeve. Then, the cutter head is installed into the cup body, so that the central bushing and the central sleeve are concentrically set, and the upper end of the adapter terminal can be paired and engaged with the interface to complete the transmission connection between the main unit and the cutter head, so that the cutter head can rotate inside the cup body.
[0021] According to the above scheme, the inner cavity of the cup below the blade holder forms a residue storage chamber, and a guide cover is provided inside the upper port of the cup, forming a processing area above the blade holder. A conduit is provided on one side of the cup, and a discharge port corresponding to the conduit is provided on the side wall of the guide cover. When the blade rotates in the forward direction, it peels the fruit. The inner wall of the guide cover has a spiral curve feature. When the fruit rolls along the inner wall of the guide cover, it passes the discharge port and is thrown back into the processing area. When the blade rotates in the reverse direction, the fruit will enter the conduit from the discharge port along the inner wall of the guide cover.
[0022] According to the above scheme, the cup assembly also includes a cup lid, which is detachably mounted on the upper port of the cup body and is in contact with the top of the guide cover. The cup lid is provided with a centering interface, and the upper end of the adapter terminal is provided with a shaft, which is rotatably inserted through the centering interface. The cup lid is used to seal the cup body to prevent juice from splashing during peeling. In particular, the cup lid can also improve the rotational stability of the adapter terminal through the cooperation of the centering interface and the shaft, so that the adapter terminal can output greater power.
[0023] This utility model discloses an adjustable blade disc, in which the blade is fixed on the blade holder and a pad is placed in the groove to form a cutting slit with the blade. By adjusting the structure, the pad and the blade can move relative to each other to change the size of the cutting slit and achieve the change of cutting thickness to meet the peeling needs of different fruits. Attached Figure Description
[0024] Figure 1This is a schematic diagram of the adjustable cutter head assembly structure of this utility model;
[0025] Figure 2 This is a schematic diagram of the adjustable cutter head disassembly structure of this utility model;
[0026] Figure 3 This is a front cross-sectional view of the adjustable cutter head of this utility model;
[0027] Figure 4 This is a partial cross-sectional view of the structure of the present invention when the cut is at its minimum.
[0028] Figure 5 This is a partial cross-sectional view of the cut at its maximum extent in this utility model.
[0029] Figure 6 yes Figure 5 Enlarged structural diagram of section A
[0030] Figure 7 This is a schematic cross-sectional view of the peeling machine of this utility model;
[0031] Figure 8 This is a schematic diagram of the disassembled structure of the main unit and cup assembly of this utility model;
[0032] Figure 9 This is a schematic diagram of the cup assembly structure of this utility model.
[0033] In the picture:
[0034] 1. Tool holder; 2. Pad; 3. Knob; 4. Main unit; 10. Blade; 100. Cutting edge; 11. Groove; 12. Extension sleeve; 13. Anchoring terminal; 14. Step; 15. Central sleeve; 16. Engaging interface; 21. Bracket; 22. Chip discharge port; 23. Through hole; 24. Positioning hole; 25. Ring sleeve; 26. Retaining ring; 31. Spring; 41. Output interface; 42. Cup body; 43. Adapter terminal; 44. Central sleeve; 45. Guide cover; 46. Cup lid; 420. Slag storage chamber; 421. Guide tube; 431. Shaft; 450. Processing area; 451. Discharge port; 461. Centering interface. Detailed Implementation
[0035] The technical solution of this utility model will be described below with reference to the accompanying drawings and embodiments.
[0036] like Figure 1-6As shown, the adjustable blade disc of this utility model includes a blade holder 1 and a blade 10. The blade holder 1 is provided with a slot 11. The blade 10 is fixedly connected to the blade holder 1 and its cutting edge extends into the slot 11. A movable pad 2 is provided in the slot 11. The pad 2 and the cutting edge of the blade 10 are spaced apart to form a cut 100. The blade holder 1 is provided with an adjustment structure connected to the pad 2. The adjustment structure can drive the pad 2 to change the size of the cut 100.
[0037] The pad 2 is paired with the cutting edge of the blade 10 and set in the groove 11 to form a cut 100. The adjustment structure can drive the pad 2 to move in the groove 11, so that the pad 2 can change the distance between itself and the cutting edge of the blade 10, that is, adjust the size of the cut 100. The size of the cut 100 refers to the thickness of the peel that the blade 10 can cut off.
[0038] It is understood that there is a height difference between the blade 10 and the upper surface of the pad 2. When the blade disc rotates, the fruit rolls on the blade holder 1 and the upper surface of the pad 2. When the fruit rolls onto the pad 2 and contacts the cutting edge of the blade 10, the speed difference between the blade disc and the fruit allows the blade 10 to peel off the fruit's skin. Therefore, the pad 2 can be moved up and down to change the height difference, that is, to change the size of the cut 100, in order to meet the peeling needs of different types of fruit.
[0039] For example, when peeling thin-skinned and small fruits such as apples, pears, grapes, and cherry tomatoes, the pad 2 needs to be raised to make the cut 100 smaller, in order to avoid over-cutting and wasting fruit pulp. Of course, when the pad 2 is lowered to make the cut 100 larger, it can be used to peel fruits with thicker skins such as oranges.
[0040] The blade holder 1 has several slots 11, which are spaced at equal angles around the center of the blade holder 1. The blade holder 1 has several blades 10, each corresponding to one of the slots 11. Each slot 11 contains a pad 2, and all pads 2 are connected to an adjustment mechanism. To improve peeling efficiency, a common practice is to increase the number of blades 10, so that multiple blades 10 pass over the fruit surface with each rotation of the blade disc, thus improving peeling efficiency.
[0041] This utility model also includes a bracket 21, which connects all the pads 2. An adjusting structure is connected to the bracket 21 to drive several pads 2. The bracket 21 is provided with several chip discharge ports 22, which are located on one side of the pads 2 and paired with the cuts 100. Further, the bracket 21 is provided with multiple pads 2, and the bracket 21 and the pads 2 are an integral structure. The adjusting structure drives the bracket 21 to simultaneously drive several pads 2, and at the same time adjust the size of the multiple cuts 100 on the cutter head and keep them uniform. It can be understood that after the bracket 21 connects several pads 2 into an integral structure, in order to facilitate processing and assembly, the bracket 21 and the cutter holder 1 are also disc structures. Therefore, it is necessary to open chip discharge ports 22 on the bracket 21 so that the peel cut by the blade 10 from the cuts 100 can be discharged from the chip discharge ports 22.
[0042] The adjustment structure includes a knob 3 and a spring 31. An extension sleeve 12 is provided on the bottom surface of the tool holder 1. A through hole 23 is provided on the support 21, through which the extension sleeve 12 passes, allowing the support 21 to move up and down. The spring 31 is located between the tool holder 1 and the support 21. The knob 3 is fitted onto the extension sleeve 12 and supports the support 21. A fastening structure is provided between the knob 3 and the extension sleeve 12. The knob 3 can move up and down along the extension sleeve 12, causing the support 21 and several pads 2 on it to rise and fall, thereby changing the size of the cut 100. When the knob 3 is adjusted downwards, the spring 31 can push the support 21 downwards accordingly. It is understood that after the size of the cut 100 is adjusted to the correct position, the knob 3 needs to be fixed to the extension sleeve 12 by the fastening structure to ensure the stability of the cut 100 size.
[0043] The fastening structure includes existing structures such as threaded connections and rotary latches. This utility model preferably uses a threaded connection method, that is, the outer wall of the extension bushing 12 is provided with an external thread, and the inner wall of the knob 3 is provided with an internal thread. The knob 3 can move up and down along the extension bushing 12 through the threaded transmission method.
[0044] The tool holder 1 is provided with a plurality of anchoring terminals 13, and each blade 10 is fixed to the tool holder 1 by at least two anchoring terminals 13. The bracket 21 is provided with a plurality of positioning holes 24, and any anchoring terminal 13 passes through the corresponding positioning hole 24. As described above, the bracket 21 and the tool holder 1 are fixed vertically by a knob 3 and a spring 31. The pad 2 is set in the slot 11 and abuts against the inner wall of the side without blade 10, which can form a structural pairing between the bracket 21 and the tool holder 1 in the circumferential direction. The anchoring terminals 13 can enhance the connection strength between the blade 10 and the tool holder 1, and the blade 10 can be fixed to the anchoring terminals 13 with screws. Furthermore, the anchoring terminals 13 can be paired with the positioning holes 24 to facilitate the assembly between the bracket 21 and the tool holder 1. The anchoring terminals 13 inserted into the positioning holes 24 can also enhance the structural strength of the tool holder 1 and the bracket 21 in the circumferential direction.
[0045] A step 14 is formed between the upper end of the extension sleeve 12 and the bottom surface of the tool holder 1. A ring 25 is provided on the bracket 21, which surrounds the through hole 23. A retaining ring 26 is provided at the lower end of the ring 25. The spring 31 is located between the extension sleeve 12 and the ring 25. The upper end of the spring 31 supports the step 14, and the lower end of the spring 31 supports the retaining ring 26. The bracket 21, through the ring 25 and the retaining ring 26, cooperates with the step 14 at the upper end of the extension sleeve 12 to set the spring 31. The spring 31 is paired with the knob 3 to stabilize the position between the bracket 21 and the tool holder 1 and the size of the cut 100.
[0046] The top surface of the blade holder 1 is provided with a central bushing 15, and the upper end of the central bushing 15 is provided with a meshing interface 16; the lower end of the central bushing 15 passes through the blade holder 1 to form the extension bushing 12, and the central bushing 15, the extension bushing 12 and the blade holder 1 are integrally formed. The central bushing 15 is used for mounting the blade disc on the peeling machine and forms a transmission connection through the meshing structure.
[0047] like Figure 7-9As shown, a peeler includes a main unit 4, a cup assembly, and an adjustable blade. The main unit 4 has an output interface 41 on its mounting platform. The cup assembly includes a cup body 42 and an adapter terminal 43. A central sleeve 44 is located inside the cup body 42, with its inner hole penetrating the bottom plate of the cup body 44 and an opening at its upper end. The adapter terminal 43 passes through the central sleeve 44. The cup body 42 is placed on the mounting platform of the main unit 4 so that the lower end of the adapter terminal 43 is paired with the output interface 41. The blade holder 1 is rotatably mounted inside the cup body 42, and the central sleeve 44 passes through a central bushing 15 so that the upper end of the adapter terminal 43 is paired with a meshing interface 16. The cup assembly can be used as an accessory for kitchen appliances such as blenders and juicers, achieving compatibility and universality between devices. To ensure compatibility, the cup assembly of this invention is equipped with an adapter terminal 43, which has a universal transmission structure, such as a square or spline-shaped input / output port, to improve compatibility.
[0048] Specifically, firstly, the adapter terminal 43 is inserted into the output interface 41, and then the cup body 42 is placed on the assembly table of the main unit 4 to form a fixed position. At this time, the upper end of the adapter terminal 43 passes through and extends out of the central sleeve 44. Then, the cutter disc is installed into the cup body 42, so that the central bushing 15 and the central sleeve 44 are concentrically set, and the upper end of the adapter terminal 43 can be paired and engaged with the interface 16 to complete the transmission connection between the main unit 4 and the cutter disc, so that the cutter disc can rotate inside the cup body 42.
[0049] The inner cavity of the cup body 42 below the blade holder 1 forms a residue storage chamber 420. A guide cover 45 is provided inside the upper port of the cup body 42, forming a processing area 450 above the blade holder 1. A conduit 421 is provided on one side of the cup body 42, and a discharge port 451 corresponding to the conduit 421 is provided on the side wall of the guide cover 45. When the blade rotates in the forward direction, it peels the fruit. The inner wall of the guide cover 45 has a spiral curve feature. When the fruit rolls along the inner wall of the guide cover 45 and passes through the discharge port 451, it is thrown back into the processing area 450. When the blade rotates in the reverse direction, the fruit will enter the conduit 421 from the discharge port 451 along the inner wall of the guide cover 45.
[0050] The cup assembly also includes a cup lid 46, which is detachably mounted on the upper port of the cup body 42 and is in contact with the guide cover 45. The cup lid 46 has a centering interface 461, and the upper end of the adapter terminal 43 has a shaft 431, which rotatably passes through the centering interface 461. The cup lid 46 is used to seal the cup body 42, preventing juice from splashing during peeling. In particular, the cup lid 46, through the cooperation of the centering interface 461 and the shaft 431, can improve the rotational stability of the adapter terminal 43, allowing the adapter terminal 43 to output greater power.
[0051] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. An adjustable cutter head, comprising a cutter holder (1) and a blade (10), characterized in that, The tool holder (1) is provided with a slot (11), and the blade (10) is fixedly connected to the tool holder (1) so that its cutting edge extends into the slot (11). The slot (11) is provided with a movable pad (2), and the pad (2) and the cutting edge of the blade (10) are spaced apart to form a cut (100). The tool holder (1) is provided with an adjustment structure connected to the pad (2). The adjustment structure can drive the pad (2) to change the size of the cut (100).
2. The adjustable cutterhead of claim 1, wherein, The tool holder (1) is provided with a number of slots (11), which are arranged at equal angles around the center of the tool holder (1). The tool holder (1) is provided with a number of blades (10), which are arranged one-to-one with the slots (11). Each slot (11) is provided with a pad (2), and all pads (2) are connected to the adjustment structure.
3. The adjustable cutterhead of claim 2, wherein, It also includes a bracket (21), which connects all the pads (2), and the adjustment structure is connected to the bracket (21) to drive several pads (2); the bracket (21) is provided with several chip discharge ports (22), which are located on one side of the pads (2) and are paired with the cut (100).
4. The adjustable cutterhead of claim 3, wherein, The adjustment structure includes a knob (3) and a spring (31). An extension sleeve (12) is provided on the bottom surface of the tool holder (1). A through hole (23) is provided on the bracket (21). The extension sleeve (12) passes through the through hole (23) so that the bracket (21) can move up and down along it. The spring (31) is provided between the tool holder (1) and the bracket (21). The knob (3) is fitted on the extension sleeve (12) and supports the bracket (21). A fastening structure is provided between the knob (3) and the extension sleeve (12).
5. The adjustable cutterhead of claim 4, wherein, The tool holder (1) is provided with a number of anchoring terminals (13), and each blade (10) is fixed to the tool holder (1) by at least two anchoring terminals (13); the bracket (21) is provided with a number of positioning holes (24), and any anchoring terminal (13) is inserted into the corresponding positioning hole (24).
6. The adjustable cutter head according to claim 4, characterized in that, A step (14) is formed between the upper end of the extension bushing (12) and the bottom surface of the tool holder (1). A ring (25) is provided on the bracket (21). The ring (25) is arranged around the through hole (23). A retaining ring (26) is provided at the lower end of the ring (25). The spring (31) is located between the extension bushing (12) and the ring (25). The upper end of the spring (31) supports the step (14), and the lower end of the spring (31) supports the retaining ring (26).
7. The adjustable cutter head according to claim 4, characterized in that, The tool holder (1) has a central bushing (15) on its top surface and a meshing interface (16) at its upper end. The lower end of the central bushing (15) passes through the tool holder (1) to form the extension bushing (12). The central bushing (15), the extension bushing (12), and the tool holder (1) are integrally formed.
8. A peeling machine, comprising a main unit (4), a cup assembly, and an adjustable blade disc as described in any one of claims 1-7, wherein the main unit (4) has an output interface (41) on its mounting table, characterized in that, The cup assembly includes a cup body (42) and an adapter terminal (43). A central sleeve (44) is provided inside the cup body (42). The inner hole of the central sleeve (44) penetrates the bottom plate of the cup body (42), and the upper end of the central sleeve (44) is open. The adapter terminal (43) is inserted into the central sleeve (44). The cup body (42) is placed on the assembly table of the host (4) so that the lower end of the adapter terminal (43) is paired with the output interface (41). The tool holder (1) is rotatably arranged inside the cup body (42). The central sleeve (44) is inserted into the central bushing (15) so that the upper end of the adapter terminal (43) is paired with the meshing interface (16).
9. The peeling machine according to claim 8, characterized in that, The inner cavity of the cup body (42) below the knife holder (1) forms a slag storage chamber (420). A guide cover (45) is provided in the upper port of the cup body (42), and the guide cover (45) forms a processing area (450) above the knife holder (1). A conduit (421) is provided on one side of the cup body (42), and a discharge port (451) corresponding to the conduit (421) is provided on the side wall of the guide cover (45).
10. The peeling machine according to claim 8, characterized in that, The cup assembly also includes a cup lid (46), which is detachably mounted on the upper port of the cup body (42) and is in contact with the guide cover (45); the cup lid (46) is provided with a centering interface (461), and the upper end of the adapter terminal (43) is provided with a shaft (430), which is rotatably inserted through the centering interface (461).