Transverse cutting machine capable of adjusting cutting depth and width
By combining the lifting base and the moving base, the cross-cutting machine can stably cut plates of different thicknesses, solving the problem of insufficient adaptability of existing cross-cutting machines, improving cutting efficiency and quality, and reducing debris pollution through the exhaust system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-04-03
AI Technical Summary
Existing cross-cutting machines are difficult to adapt to boards of different thicknesses, resulting in insufficient cutting or wasted cutting passes, especially when cutting small boards, and insufficient cutting passes when cutting large boards.
An adjustable cutting depth and width cross-cutting machine was designed. Through the cooperation of the lifting base and the moving base, it can fix and cut plates of different thicknesses. Precise cutting is achieved by moving the cutting base and the cutting blade. Debris is collected by the exhaust motor and the filter cotton plate to reduce pollution.
It enables stable cutting of plates of different thicknesses, avoids positional deviation and material waste, improves cutting efficiency and quality, and reduces debris contamination through the ventilation system.
Smart Images

Figure CN224073435U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cross-cutting machines, and more particularly to a cross-cutting machine with adjustable cutting depth and width. Background Technology
[0002] Cross-cutting machines are mainly used to cut rolls or sheets laterally along their width, and are commonly used in industries such as textiles, printing, packaging, and stone processing. Their core function is to precisely cut large rolls or whole pieces of material to a set length or size, thereby improving production efficiency and ensuring cutting quality.
[0003] However, traditional cross-cutting machines are difficult to adapt to materials of different thicknesses and require readjustment of cutting distance, parameters and blades. In particular, when dealing with materials with a small cross-section, the traditional cutting path can easily waste unnecessary cutting time, while when dealing with materials with a large cross-section, directional cutting can easily lead to insufficient cutting. Therefore, it is necessary to develop a cross-cutting machine that can cut different depths and widths. Utility Model Content
[0004] To address the technical deficiencies in the background technology, this utility model proposes a cross-cutting machine with adjustable cutting depth and width, which solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows:
[0005] A cross-cutting machine with adjustable cutting depth and width includes: a base plate, a cross plate, an inlet plate, an outlet track, a lifting base, a drive base, a rotating housing, a fan motor, and a cutting blade. The inlet plate and the outlet track are respectively arranged in a straight line above the base plate, with a gap between them. At least two cross plates are arranged above the gap between the inlet plate and the outlet track, extending in one direction along the gap. A fixed seat is provided at each end of the two cross plates. A lifting block is connected to the opposite side of each of the two cross plates via each fixed seat. Each lifting block has two protruding strips embedded in a vertical groove in the lifting base, and each lifting block reciprocates along the two vertical grooves of the corresponding lifting base. A sliding groove is provided on the vertical surface of one of the two cross plates, extending... At both ends of the horizontal plate, a movable base is embedded in the sliding groove. The movable base is fixed to the drive base on the side away from the sliding groove. A first lifting air pump is provided in the drive base. A limiting frame is provided above the drive base. A dragging block is embedded in the inner side of the limiting frame. A connecting plate extends from one side of the dragging block to the outside of the limiting frame. A top rod is connected between the limiting frame extending to the outside and the first lifting air pump. A cutting base is provided on the side of the dragging block away from the top rod. A cutting blade is placed on the outside of the cutting base. A storage groove is provided on the bottom plate facing the guide plate and the guide track. The storage groove corresponds to the area below the gap between the guide plate and the guide track. A suction motor is provided between the guide plate and the bottom plate. The suction port of the suction motor faces the storage groove.
[0006] A scraper is horizontally arranged on the upper surface of the base plate; an inclined surface is provided at the upper end of the scraper, and the inclined surface of the scraper is attached to the lower surface of the guide track; a support frame is provided on the side of the base plate away from the guide plate and the base plate.
[0007] A gap is provided between the two horizontal plates; a pressing plate is provided on the lower side of each of the two horizontal plates, and on the outward side; a trapezoidal groove is provided in the sliding groove, on the lower side.
[0008] A moving motor is provided on the inner side of the moving base, and at least two pulleys are provided on the outer side of the moving motor. One surface of each pulley protrudes from the bottom of the moving base. The moving base is placed in a trapezoidal groove within the sliding groove using the two pulleys. A protruding plate is provided at one edge of the upper part of the drive base. The drive base is placed on top of a horizontal plate using the protruding plate, and a protrusion is provided below the protruding plate of the drive base. A strip groove is provided on the upper part of the horizontal plate connected to the drive base. The protrusion of the drive base is embedded in the strip groove of the horizontal plate, and the drive base reciprocates along the extension direction of the strip groove via the protrusion and the protruding plate.
[0009] A shaft-rotating motor is installed inside the cutting machine base; a clamping plate is installed on the side of the cutting machine base away from the drag block, and the clamping plate is fixed to the surface of the cutting machine base with screws, and the cutting blade is clamped between the cutting machine base and the clamping plate; a shaft runs through the center of the cutting blade, and the two ends of the shaft run through the lower ends of the cutting machine base and the clamping plate respectively; a drive gear set is installed inside the cutting machine base, and the drive gear set is composed of two gears that are meshed in a straight line from top to bottom. One gear of the drive gear set is meshed with the drive shaft of the shaft-rotating motor, and the other gear of the drive gear set is meshed with one end of the shaft of the cutting blade.
[0010] Each of the aforementioned lifting bases has a hollow inner side, and a second lifting air pump is vertically arranged inside the lifting base; each of the second lifting air pumps has a top rod at its upper end, and the top rod is connected to the lower part of the lifting block; an extension plate is provided at one edge of each of the aforementioned fixed bases, and the outer side of one of the two horizontal plates is fixed to the outside of the extension plate of the fixed base.
[0011] A central housing is provided on one side of the exhaust motor, and the air outlet of the exhaust motor faces the opening of the central housing; a filter cotton plate is embedded on the surface of the exhaust outlet of the exhaust motor.
[0012] A baffle is provided on each side of the inlet plate opposite to the outlet track, and the lower edges of the two baffles are fixed to the outside of the base plate.
[0013] The guide track is connected end to end, and several transverse toothed strips are formed on the inner surface of the guide track; a toothed rod is transversely arranged at both ends of the guide track, and the two ends of the two toothed rods are transversely connected to the baffles arranged on both sides; one of the two toothed rods extends to the outward side of the baffle, and the end of the toothed rod is connected to the motor inside the rotating housing in a gear-like manner.
[0014] The guide track faces one side of the inlet plate, and a guide plate is provided on its outer surface; the lower end of the guide plate is fixed to the upper surface of the base plate; one side of the guide plate is arc-shaped and fits the surface of the guide track, and the upper edge of the other side of the guide plate is inclined, with the inclined surface of the guide plate facing the inlet plate.
[0015] The beneficial effects of this utility model are as follows:
[0016] By moving the cutting machine base up and down, metal sheets of different thicknesses can be cut. Furthermore, by moving the machine base along the horizontal plate in one direction, the cutting distance can be controlled.
[0017] The metal sheet to be processed is placed on the surface of the guide plate, and an external pushing or guiding device moves the metal sheet towards the guide track. When one end of the metal sheet reaches the guide track, the area to be cut laterally is located below the two horizontal plates. At this point, the lifting bases on both sides are activated to press the two horizontal plates downwards. The pressure applied by the two horizontal plates fixes the metal sheet, preventing positional displacement during cutting. After the two horizontal plates have compacted the metal, the moving base moves along one end of the sliding groove of the horizontal plate. When the machine moves to the endpoint, the internal cutting blade is activated. The cutting blade, now in cutting mode, moves between the two horizontal plates via the cutting machine base (while the cutting machine base moves the cutting blade from top to bottom, the first lifting air pump exhausts air outwards. During the exhaust process, the top rod is pulled downwards while air is being drawn out, causing the drag block to move downwards in the limit frame). Once the corresponding height is reached, the machine base moves along the other direction of the sliding groove, moving the cutting machine base and the cutting blade in the same direction, thus achieving transverse cutting of the compacted metal sheet. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of a cross-cutting machine with adjustable cutting depth and width.
[0019] Figure 2 This is a schematic diagram of the combined structure of two horizontal plates and a drive base of a cross-cutting machine with adjustable cutting depth and width.
[0020] Figure 3 This is another structural diagram of a cross-cutting machine with adjustable cutting depth and width, consisting of two horizontal plates and a drive base.
[0021] Figure 4 This is a partial side view of a cross-cutting machine with adjustable cutting depth and width.
[0022] Figure 5This is a schematic diagram of the internal structure of the lifting base of a cross-cutting machine with adjustable cutting depth and width.
[0023] Figure 6 This is a schematic diagram of the three-dimensional structure of a guide plate for a cross-cutting machine with adjustable cutting depth and width. Detailed Implementation
[0024] The embodiments of this utility model will be described below with reference to the accompanying drawings and related examples. The embodiments of this utility model are not limited to the following examples, and this utility model relates to relevant necessary components in this technical field, which should be regarded as well-known technology in this technical field and can be known and mastered by those skilled in this technical field.
[0025] like Figures 1 to 6 As shown, a cross-cutting machine with adjustable cutting depth and width includes: a base plate 1, a cross plate 2, an inlet plate 3, an outlet track 4, a lifting base 5, a drive base 6, a rotating housing 7, an exhaust motor 8, and a cutting blade 9. The inlet plate 3 and the outlet track 4 are respectively arranged in a straight line above the base plate 1, with a gap between them. At least two cross plates 2 are arranged above the gap between the inlet plate 3 and the outlet track 4, and the two cross plates 2 extend in one direction along the gap. A fixed seat 52 is provided at each end of the two cross plates 2. A lifting block 51 is connected to the side of each fixed seat 52 opposite to the two cross plates 2. Each lifting block 51 has two protruding strips embedded in the vertical groove of the lifting base 5, and each lifting block 51 reciprocates along the two vertical grooves of the corresponding lifting base 5. A sliding groove 22 is provided on the vertical surface of one of the two cross plates 2, and the sliding groove 22 extends... At both ends of the horizontal plate 2, a movable base 61 is embedded in the sliding groove 22. The movable base 61 is fixed to the drive base 6 on the side away from the sliding groove 22. A first lifting air pump 69 is opened in the drive base 6. A limiting frame 62 is set above the drive base 6. A drag block 66 is embedded in the inner side of the limiting frame 62. A connecting plate 64 extends from one side of the drag block 66 to the outside of the limiting frame 62. A top rod 65 is connected between the limiting frame 62 extending to the outside and the first lifting air pump 69. A cutting base 63 is set on the side of the drag block 66 away from the top rod 65. A cutting blade 9 is placed on the outside of the cutting base 63. A storage groove 11 is opened on the side of the bottom plate 1 facing the guide plate 3 and the guide track 4. The storage groove 11 corresponds to the lower part of the gap between the guide plate 3 and the guide track 4. A suction motor 8 is set between the guide plate 3 and the bottom plate 1. The suction port of the suction motor 8 faces the storage groove 11.
[0026] By moving the cutting base 63 up and down, metal sheets of different thicknesses can be cut. Furthermore, by moving the base 61 along the horizontal plate 2 in one direction, the cutting distance can be controlled.
[0027] The metal sheet to be processed is placed on the surface of the guide plate 3, and an external pushing or guiding device moves the metal sheet to the guide track 4. When one end of the metal sheet reaches the guide track 4, the area to be cut laterally is below the two horizontal plates 2. At this time, the lifting bases 5 on both sides are activated to press the two horizontal plates 2 downwards. The two horizontal plates 2 apply pressure to the metal sheet, fixing it in place and preventing positional displacement during cutting. After the two horizontal plates 2 have compacted the metal, the moving base 61 moves along one end of the sliding groove 22 of the horizontal plate 2 until it reaches the end. At the point, the cutting machine base 63 activates the internal cutting blade 9. The cutting blade 9, now in cutting mode, moves between the two horizontal plates 2 via the cutting machine base 63 (while the cutting machine base 63 moves the cutting blade 9 from top to bottom, the first lifting air pump 69 exhausts air outwards. During the exhaust process, the top rod 65 is pulled down by the air extraction process, causing the drag block 66 to move downwards in the limit frame). After reaching the corresponding height, the moving machine base 61 moves along the other direction of the sliding groove 22, driving the cutting machine base 63 and the cutting blade 9 to move in one direction, thereby achieving transverse cutting of the compacted metal sheet.
[0028] With the above structure, it should be further explained that the electrical component of this utility model is connected to an external control device via an electrical conduit, and the start and stop of the electrical component and the lifting height of the lifting component are controlled by the external control device, which includes a computer, etc.
[0029] A scraper 12 is horizontally arranged on the upper surface of the base plate 1; an inclined surface is provided at the upper end of the scraper 12, and the inclined surface of the scraper 12 is attached to the lower surface of the guide track 4; a support frame is provided on the side of the base plate 1 away from the guide plate 3 and the base plate 1.
[0030] With the above structure, it should be further explained that the scraper 12 can modify the outer surface of the guide track 4 above the guide track 4 when the guide track 4 is rolled back towards the bottom plate 1. Therefore, it can further clean the residual dirt and debris on its surface and avoid scratching the surface of the metal plate that is driven later.
[0031] The addition of a support frame allows this invention to be separated from the ground. Therefore, the height of the support frame can be changed as needed to adapt to the feeding of external feeding equipment.
[0032] A gap is provided between the two horizontal plates 2; a pressing plate 21 is provided on the lower side of each of the two horizontal plates 2 and on the outward side; a trapezoidal groove is provided in the sliding groove 22 on the lower side.
[0033] With the above structure, it should be further explained that the gap between the two horizontal plates 2 supports is used to provide the embedding of the cutting machine base 63, and to perform transverse cutting through the extension direction of the gap, and the gap of the cutting machine base 63 is greater than the thickness of the cutting machine base 63.
[0034] The pressing plate 21 provided below each horizontal plate 2 can increase the pressing area of the horizontal plate 2 on the metal sheet, thereby making the pressing of the metal sheet more stable.
[0035] The trapezoidal groove provided below the sliding groove 22 is used to limit the two pulleys of the moving base 61. The two sides of the two pulleys match the inclined surface of the trapezoidal groove. Therefore, when the two pulleys move in the sliding groove 22, they can be prevented from going out of the sliding groove 22.
[0036] A moving motor is provided inside the moving base 61, and at least two pulleys are provided outside the moving motor of the moving base 61. One surface of the two pulleys protrudes from the bottom of the moving base 61. The moving base 61 uses two pulleys placed in a trapezoidal groove opened in the sliding groove 22. A protruding plate is opened at one edge of the upper part of the drive base 6. The drive base 6 is placed on the upper part of a horizontal plate 2 using the protruding plate, and a protrusion is opened below the protruding plate of the drive base 6. A strip groove is opened on the upper part of the horizontal plate 2 connected to the drive base 6. The protrusion of the drive base 6 is embedded in the strip groove of the horizontal plate 2, and the drive base 6 moves back and forth along the extension direction of the strip groove through the protrusion and the protruding plate.
[0037] With the above structure, it should be further explained that the convex plate of the drive base 6 covers the horizontal plate 2 and the convex plate's protrusion is embedded in the strip groove above the horizontal plate 2. This arrangement can further restrict the drive base 6 outside the horizontal plate 2 and prevent loosening during the sliding process.
[0038] A shaft-rotating motor 60 is installed inside the cutting machine base 63; a clamping plate 68 is installed on the side of the cutting machine base 63 away from the drag block 66, and the clamping plate 68 is fixed to the surface of the cutting machine base 63 with screws, and the cutting blade 9 is clamped between the cutting machine base 63 and the clamping plate 68; a shaft runs through the center of the cutting blade 9, and the two ends of the shaft of the cutting blade 9 run through the lower ends of the cutting machine base 63 and the clamping plate 68 respectively; a drive gear set 601 is installed inside the cutting machine base 63, which is composed of two gears and is meshed in a straight line from top to bottom. One gear of the drive gear set 601 is meshed with the drive shaft of the shaft-rotating motor 60, and the other gear of the drive gear set 601 is meshed with one end of the shaft of the cutting blade 9.
[0039] With the above structure, it should be further explained that during the installation of the cutting blade 9, the cutting blade 9 and its shaft are embedded into the pre-installed hole of the cutting machine base 63 and meshed with the gear in the hole. At this time, the clamping plate 68 is covered on the outer surface of the cutting blade 9 and the other end of the shaft is fixed to clamp and fix it.
[0040] Each lifting platform base 5 has a hollow inner side, and a second lifting air pump 53 is vertically installed inside the lifting platform base 5; each second lifting air pump 53 has a top rod at its upper end, and the top rod is connected to the lower part of the lifting block 51; an extension plate is opened at one edge of each fixed base 52, and the outer side of one of the two horizontal plates 2 is fixed to the extension plate of the fixed base 52.
[0041] With the above structure, it should be further explained that the two second lifting air pumps 53 start synchronously. This setting can avoid uneven clamping force on both sides, which could lead to loosening or other problems.
[0042] The use of an extension plate further secures the horizontal plate.
[0043] A central housing 81 is provided on one side of the exhaust motor 8, and the air outlet of the exhaust motor 8 faces the opening of the central housing 81; a filter cotton plate 82 is embedded on the surface of the exhaust outlet of the exhaust motor 8.
[0044] With the above structure, it should be further explained that after the cutting blade 9 cuts the metal sheet, the debris generated during the cutting process falls down into the collection groove 11. This setting can collect the debris and prevent it from scattering outwards, thereby reducing the trouble of cleaning.
[0045] The exhaust motor 8 can absorb the odor generated by the cutting blade 9 during the cutting process, preventing pollution of the outside world. The filter cotton plate 82 can isolate the debris in the air. By the exhaust motor 8, the debris in the air is drawn in and adheres to the outside of the filter cotton plate 82, making it easier to collect and process the finer debris.
[0046] A baffle 40 is provided on each side opposite to the inlet plate 3 and the outlet track 4, and the lower edges of the two baffles 40 are fixed to the outside of the base plate 1.
[0047] With the above structure, it should be further explained that the baffle 40 can prevent the metal plates on the guide plate 3 and the guide track 4 from falling outward.
[0048] The guide track 4 is connected end to end, and several transverse toothed strips are opened on the inner surface of the guide track 4; inside the guide track 4, a toothed rod 43 is arranged transversely at both ends, and the two ends of the two toothed rods 43 are respectively transversely connected to the baffles 40 arranged on both sides; one end of the two toothed rods 43 extends to the outward side of the baffle 40, and the end of the toothed rod 43 is connected to the motor inside the rotating housing 7 in a gear-like manner.
[0049] The guide track 4 faces the guide plate 3 on one side, and a guide plate 41 is provided on its outer surface; the lower end of the guide plate 41 is fixed to the upper surface of the base plate 1; one side of the guide plate 41 is arc-shaped and fits the surface of the guide track 4, and the upper edge of the other side of the guide plate 41 is inclined, and the inclined surface of the guide plate 41 faces the guide plate 3.
[0050] With the above structure, it should be further explained that the guide plate 41 is arc-shaped on one side to fit the guide track 4 and avoid obstruction during the driving process. The upper edge of the other side of the guide plate 41 is inclined, which can facilitate the movement of relatively soft and sheet-like metal sheets from the guide plate 3 to the guide track 4, and prevent the end edge from bending downward and causing it to push against the vertical surface of the guide plate 41. The inclined surface can also bring such metal sheets upward out of the guide.
[0051] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A cross-cut machine with adjustable cutting depth and width, comprising: The bottom plate, the horizontal plate, the guide-in plate, the guide-out track, the elevator seat, the belt driving seat, the rotating machine box, the exhaust motor and the cutting blade are characterized in that the guide-in plate and the guide-out track are arranged in a straight line above the bottom plate, a gap is arranged between the guide-in plate and the guide-out track, at least two horizontal plates are arranged above the gap between the guide-in plate and the guide-out track, the two horizontal plates extend in a direction along the gap respectively, each of the two horizontal plates is provided with a fixed seat at two ends thereof, each of the fixed seats is connected with a lifting block on a side opposite to the two horizontal plates, each of the lifting blocks is embedded into a vertical slot of the elevator seat by two protrusions, each of the lifting blocks moves reciprocally in the two vertical slots of the corresponding elevator seat, a sliding slot is arranged at a vertical surface of one of the two horizontal plates, the sliding slot extends to both ends of the horizontal plate, a moving seat is embedded into the sliding slot, the moving seat is fixed to the belt driving seat on a side away from the sliding slot, a first lifting air pump is arranged in the belt driving seat, a limiting frame is arranged above the belt driving seat, a dragging block is embedded into the limiting frame, an extension plate is arranged on one side of the dragging block to extend to outside of the limiting frame, a top rod is connected between the limiting frame and the first lifting air pump on the outside, a cutting seat is arranged on a side of the dragging block away from the top rod, and a cutting blade is arranged outside the cutting seat. The bottom plate is provided with a receiving slot on a side facing the guide-in plate and the guide-out track. An exhaust motor is arranged between the guide-in plate and the bottom plate, and an exhaust port of the exhaust motor faces the receiving slot.
2. The cross-cut machine capable of adjusting cutting depth and width according to claim 1, wherein: a scraper is arranged on the upper surface of the bottom plate in a transverse direction; an inclined surface is arranged on the upper end of the scraper, and the inclined surface of the scraper is attached to the lower surface of the guide-out track; a support frame is arranged on a side of the bottom plate away from the guide-in plate and the bottom plate.
3. The cross-cut machine capable of adjusting cutting depth and width according to claim 1, wherein: a gap is arranged between the two horizontal plates; a pressing plate is arranged on a side of each of the two horizontal plates facing outward; a trapezoidal slot is arranged in the sliding slot and on a side thereof facing downward.
4. The cross-cut machine capable of adjusting cutting depth and width according to claim 1, wherein: a moving motor is arranged inside the moving seat, at least two pulleys are arranged outside the moving motor of the moving seat, one surface of each of the pulleys protrudes downward from the moving seat, and the moving seat is placed in the trapezoidal slot arranged in the sliding slot by the two pulleys; a convex plate is arranged at an edge of the belt driving seat, the belt driving seat is placed above one of the horizontal plates by the convex plate, and a convex block is arranged below the convex plate of the belt driving seat; a slot is arranged above the horizontal plate connected with the belt driving seat. The driving block is embedded in the strip-shaped slot of the horizontal plate, and the driving block moves back and forth along the extension direction of the strip-shaped slot through the engagement of the block and the lug.
5. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: An axle rotation motor is arranged inside the cutting seat; A clamping plate is arranged on the side of the cutting seat away from the driving block, and the clamping plate is fixed on the surface of the cutting seat by screws, and the cutting blade is clamped between the cutting seat and the clamping plate; A shaft rod is transversely arranged at the center of the cutting blade, and the shaft rod of the cutting blade transversely extends through the lower ends of the cutting seat and the clamping plate; A driving gear set is arranged in the cutting seat, the driving gear set is composed of two gears which are linearly engaged from top to bottom, the gear of one of the driving gear set is in engagement with the driving shaft rod of the axle rotation motor, and the gear of the other of the driving gear set is in engagement with one end of the shaft rod of the cutting blade.
6. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: Each of the lifting seats is hollow inside, and a second lifting air pump is vertically arranged in each of the lifting seats; A top rod is arranged on the upper end of each of the second lifting air pumps, and the top rod is connected to the lower side of the lifting block; An extension plate is arranged at the edge of each of the fixing seats, and the outer side of one of the two horizontal plates is fixed to the extension plate of the fixing seat.
7. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: A centralized box is arranged on one side of the air suction motor, and the air outlet of the air suction motor faces the opening of the centralized box; A filter cotton plate is embedded on the surface of the air suction port of the air suction motor.
8. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: A baffle is arranged on each of the opposite sides of the guide-in plate and the guide-out track, and the lower edges of the two baffles are fixed to the outer side of the bottom plate.
9. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: The guide-out tracks are connected in a loop, and a plurality of transverse toothed strips are arranged on the inner surface of the guide-out tracks; A toothed rod is transversely arranged in each of the guide-out tracks at the front and back ends, and the two ends of the two toothed rods transversely extend through the two baffles arranged on the sides; One of the two toothed rods extends to the side away from the baffle at one end, and the end of the toothed rod is in gear connection with the motor inside the rotating machine box.
10. The cutting machine with adjustable cutting depth and width according to claim 1, characterized in that: A guide plate is arranged on the side of the guide-out track facing the guide-in plate; The lower end of the guide plate is fixed to the upper surface of the bottom plate; One side of the guide plate is arranged in an arc shape and fits the surface of the guide-out track, and the upper edge of the other side of the guide plate is arranged in an inclined surface, and the inclined surface of the guide plate faces the guide-in plate.