Slitting machine with blade adjusting function
By designing a stripper with blade adjustment function, using a combined blade and a driving shaft system with staggered settings, the problem of fixed blade spacing between existing strippers is solved, and the rapid cutting of metal coils of different widths is achieved, which improves efficiency and convenience.
Patent Information
- Application Number
- CN202510467744.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-05-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When cutting metal coils, the blade spacing is fixed and cannot be adjusted quickly, which makes it necessary to replace or adjust the blade when cutting materials of different widths, which is time-consuming and troublesome.
A striping machine with blade adjustment function is designed, using a combined blade arranged in an interlaced manner. Through the design of the driving shaft and the driving base, the blade is disassembled and adjusted, so that metal coils of different widths can be cut out.
It realizes rapid adjustment of blade spacing, and can cut out metal coils of different widths, saving time and manpower, and simplifying the installation and disassembly of equipment.
Smart Images

Figure CN120038381A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of slitting machines, and particularly to a slitting machine with a blade adjustment function. Background Art
[0002] A slitting machine is a core device widely used in the field of industrial material processing. It longitudinally cuts metal coils into narrow materials with specified widths, providing a basis for subsequent processing, production, and assembly.
[0003] When the slitting machine cuts metal coils, it has a fixed blade spacing, resulting in a single specification for the cut metal coils. When it is necessary to process narrow materials of another width, another slitting machine needs to be replaced or the entire blade holder of the slitting machine needs to be replaced. This replacement method is likely to waste a certain amount of time and manpower, and the installation and disassembly are rather troublesome. Summary of the Invention
[0004] In view of the technical defects in the background art, the present invention provides a slitting machine with a blade adjustment function, which solves the above technical problems and meets the actual needs. The specific technical solutions are as follows:
[0005] A slitting machine with a blade adjustment function, comprising: side plates, a cross plate, driving shafts, a first driving machine base, a second driving machine base, a lift machine base, vertical plates and guide frames. There are two side plates, and the two side plates are arranged vertically. The cross plate is connected above the two side plates. On one side of each side plate facing the other side plate, there are the first driving machine base and the second driving machine base. The first driving machine base and the second driving machine base provided on one side plate are respectively arranged longitudinally and linearly. Each first driving machine base and each second driving machine base are respectively transversely connected with a driving shaft. An installation groove is provided inside each side plate. Each installation groove of each side plate has an opening, and the opening faces downward. The vertical plates are inserted into the installation grooves of each side plate and along the openings. A number of card slots are provided on the outer surface of each driving shaft and are arranged in sequence along the extension direction of the driving shaft. A blade is installed in each card slot of the driving shaft. In each card slot of the driving shaft, a number of grooves are provided along its surface. Each blade is composed of two combined blades, a number of fixing blocks, a number of inserting pieces and a number of embedding grooves. The two combined blades are respectively arranged in a semi-circular ring shape, and the two ends of the two combined blades are respectively attached and connected. A number of the inserting pieces extend outward from both ends of one of the two combined blades, and the two ends of the other combined blade are respectively provided with the embedding grooves that match the number of the inserting pieces. After the two combined blades are attached and connected at both ends, a number of the inserting pieces are inserted into a number of the embedding grooves. On one side of each combined blade that fits with the card slot of the driving shaft, there are a number of fixing blocks that match a number of the grooves provided in the card slot of the driving shaft. The two combined blades are respectively fixed in the card slot of the driving shaft by the corresponding fixing blocks, and their ends are attached and connected.
[0006] At least four sliding grooves are provided in the installation groove of each side plate, and every two sliding grooves are respectively provided on both sides in contact with the vertical plate. A number of sliding protrusions are provided on both sides of each vertical plate that fits with the installation groove of the side plate. The number of sliding protrusions of the vertical plate is a number, and they are respectively embedded in the corresponding sliding grooves. The side plate is slidably engaged with the sliding grooves and the sliding protrusions and reciprocates in the reverse direction along the extension of the sliding grooves.
[0007] A base is provided at one end of each vertical plate away from the side plate. A guiding track is vertically provided on the upper surface of each base plate. The guiding track is parallel to the vertical plate. A moving groove is provided on the side of the guiding track away from the vertical plate. The moving groove extends along the swinging direction of the vertical plate. A transverse tooth pattern is provided inside the moving groove. A horizontally arranged limiting top plate is provided at one end of the moving groove away from the base.
[0008] Each of the lift seats is provided with a vertically penetrating groove, and the guiding track on the bottom plate runs through the vertically penetrating groove provided in the lift seat, and the lift seat reciprocates in the longitudinal direction of the penetrating groove; a guiding wheel set is arranged in each of the lift seats, and at least two gears and a rotating motor are arranged on the guiding wheel set. The rotating motor is connected to the two gears respectively by at least two shafts. The two gears of the guiding wheel set are respectively meshed outside the transverse tooth patterns of the guiding track; a baffle is arranged at the top end of each of the lift seats, and the baffle is in mutual contact with the limit top plate.
[0009] Each of the first driving seats is hollow inside, and an opening is provided on one side in the transverse direction of the first driving seat; a first gear motor is embedded in each of the first driving seats; a fixing seat is embedded at the opening of each of the first driving seats. An inwardly concave arc-shaped groove is provided on one side of the fixing seat facing the first gear motor; a gear is provided on one side of the first gear motor facing the arc-shaped groove, and one end of the driving shaft is clamped between the gear of the first gear motor and the arc-shaped groove; at least two auxiliary wheel belts are embedded in the arc-shaped groove of each fixing seat.
[0010] Each of the second driving seats is hollow inside, and an embedding port is provided above; a cushion plate is arranged inside each of the second driving seats and at the embedding port above. A biting seat is arranged above the cushion plate. Semi-circular grooves are respectively provided between the biting seat and the cushion plate, and the semi-circular grooves of the biting seat and the cushion plate are combined into a circular groove and bite one end of the driving shaft; at least two auxiliary wheel belts are arranged in the semi-circular groove of the biting seat and are in mutual contact with the driving shaft; a contact opening is provided in the semi-circular groove of the cushion plate. A second gear motor is arranged inside the second driving seat. The second gear motor is provided with a gear, and the gear extends to the contact opening and is in meshing connection with one end of the driving shaft.
[0011] The two auxiliary wheel belts respectively arranged on each of the first driving seats and each of the second driving seats are arc-shaped; a plurality of fixing grooves are provided on each of the auxiliary wheel belts, and an auxiliary wheel is embedded in each fixing groove. A shaft rod runs through the circular part of each auxiliary wheel, and the shaft rod runs through the corresponding fixing groove.
[0012] Tooth patterns are respectively arranged at both ends of the two driving shafts; both ends of one of the two driving shafts are connected to the two first driving seats; both ends of the other driving shaft are connected to the two second driving seats; the two driving shafts are arranged in an up-and-down stacked manner, and the plurality of blades arranged up and down are arranged in a mutually staggered manner, and the edge of each blade arranged above is in mutual contact with the edge of a corresponding blade arranged below.
[0013] The inner side of the horizontal plate is hollowed out; a blower housing is arranged above the horizontal plate, and an exhaust blower is installed inside the blower housing. The exhaust port of the exhaust blower faces the hollow area of the horizontal plate downward; a storage box is arranged at one edge of the blower housing, a conduit is arranged on one side of the storage box, the conduit of the storage box is inserted into the blower housing, and is connected to one end of an air pipe inside the blower housing. The other end of the air pipe of the exhaust blower box is connected to the air outlet of the exhaust blower box; the storage box is embedded in the outer side of the blower housing by the spring buckle. The spring buckle is embedded at the bottom of an extension plate extending from the outer side of the storage box, and is connected to the spring buckle and the extension plate by a spring.
[0014] One guide frame is respectively arranged on one side of the two second driving bases, and the two guide frames are respectively inclined downward at the ends far away from the second driving bases; a guide plate is arranged between the two guide frames, and the guide plate has the same swinging direction as the two guide frames.
[0015] The beneficial effects of the present invention are as follows:
[0016] The present invention uses two sets of combined blades arranged in a staggered manner to cut metal coils. The combined blades for cutting the metal coils are arranged in sequence along a fixed driving shaft in one direction. When cutting the metal coils, the metal coils are introduced in one direction of the two driving shafts. During the introduction process, the metal coils are cut by the combined blades that are staggered and mutually attached. Among them, when cutting metal coils with different widths, the combined blades outside the two driving shafts can be disassembled, so as to adjust the distance between the combined blades, enabling the present invention to cut metal coils with different widths. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a three-dimensional structural schematic diagram of a slitting machine with a blade adjustment function.
[0018] Figure 2 It is a combined structural schematic diagram of two driving shafts of a slitting machine with a blade adjustment function.
[0019] Figure 3 It is a structural schematic diagram of blade disassembly of a slitting machine with a blade adjustment function.
[0020] Figure 4 It is a combined structural schematic diagram of the side plate and the vertical plate of a slitting machine with a blade adjustment function.
[0021] Figure 5 It is a schematic diagram of the internal structure of the first driving machine box of a slitting machine with a blade adjustment function.
[0022] Figure 6Schematic diagram of the internal structure of the second driving machine box of a slitting machine with a blade adjustment function.
[0023] Figure 7 Schematic diagram of the three-dimensional structure of the auxiliary wheel belt of a slitting machine with a blade adjustment function.
[0024] Figure 8 Schematic diagram of the combined structure of the cross plate and the storage box of a slitting machine with a blade adjustment function.
[0025] Among them: 1, side plate; 2, cross plate; 3, driving shaft; 4, first driving machine base; 5, second driving machine base; 6, elevator base; 7, vertical plate; 8, guide frame; 9, storage box; 11, sliding groove; 21, fan housing; 22, exhaust fan; 23, annular fluorescent tube; 24, V-shaped plate; 25, absorption chamber; 30, blade; 301, combined blade; 302, fixing block; 303, insert piece; 304, embedding groove; 41, first gear motor; 42, fixing seat; 421, auxiliary wheel belt; 422, auxiliary wheel; 51, engaging seat; 52, second gear motor; 53, backing plate; 61, guide track; 62, moving groove; 63, guide wheel set; 64, limiting top plate; 65, baffle; 71, sliding rib; 72, base; 81, guide plate; 91, spring buckle; 92, filter cotton core. Specific embodiments
[0026] The following describes the embodiments of the present invention in conjunction with the accompanying drawings and related embodiments. The embodiments of the present invention are not limited to the following embodiments, and the relevant necessary components involved in the present invention should be regarded as well-known technologies in the technical field, which can be known and mastered by those skilled in the technical field.
[0027] As Figures 1 to 8As shown in the figure, a slitting machine with a blade adjustment function includes: side plates 1, a cross plate 2, a driving shaft 3, a first driving machine base 4, a second driving machine base 5, a lift machine base 6, vertical plates 7 and a guide frame 8. There are two side plates 1, and the two side plates 1 are arranged vertically. The cross plate 2 is connected above the two side plates 1. On one side of each side plate 1 facing the other side plate 1, there are a first driving machine base 4 and a second driving machine base 5. The first driving machine base 4 and the second driving machine base 5 on one side plate 1 are respectively arranged longitudinally and linearly. Each first driving machine base 4 and each second driving machine base 5 are respectively connected across a driving shaft 3. An installation groove is provided inside each side plate 1. Each installation groove of each side plate 1 has an opening, and the opening is arranged downward. The vertical plate 7 is inserted into the installation groove of each side plate 1 and along the opening; a number of card slots are opened on the outer surface of each driving shaft 3, and are arranged in sequence along the extension direction of the driving shaft 3. A blade 30 is installed in each card slot of the driving shaft 3. In each card slot of the driving shaft 3, a number of grooves are opened along its surface; each blade 30 is composed of two combined blades 301, a number of fixing blocks 302, a number of inserting pieces 303 and a number of embedding grooves 304. The two combined blades 301 are respectively arranged in a semi-circular ring shape, and the two ends of the two combined blades 301 are respectively attached and connected. A number of inserting pieces 303 extend outward from both ends of one of the two combined blades 301, and embedding grooves 304 corresponding to the number of inserting pieces 303 are respectively provided at both ends of the other combined blade 301. After the two combined blades 301 are respectively attached and connected at both ends, a number of inserting pieces 303 are embedded in a number of embedding grooves 304; on one side of each combined blade 301 that fits with the card slot of the driving shaft 3, a number of fixing blocks 302 that coincide with the number of grooves opened in the card slot of the driving shaft 3 are provided. The two combined blades 301 are respectively fixed in the card slot of the driving shaft 3 by corresponding fixing blocks 302, and their ends are attached and connected.
[0028] The present invention uses two staggered combined blades 301 to cut the metal coil. And the combined blades 301 for cutting the metal coil are arranged in sequence along the fixed driving shaft 3 in one direction. When cutting the metal coil, the metal coil is introduced in one direction of the two driving shafts 3. During the introduction process, the metal coil is cut by the staggered and mutually attached combined blades 301. Among them, when cutting metal coils with different widths, the combined blades 301 outside the two driving shafts 3 can be disassembled, so as to adjust the blade distance between the combined blades 301, enabling the present invention to cut metal coils with different widths.
[0029] After adopting the above structure, it should be further explained that the present invention can lift or lower the height through the two side plates 1 and the two vertical plates 7.
[0030] Moreover, the present invention can also adjust the vertical height of the two side plates 1 and the two vertical plates 7 according to the thickness of the metal coil. In the case of vertical height adjustment, by starting the elevator base 6, the top ends of the side plate 1 and the vertical plate 7 are lifted. At this time, the first driving machine base 4 fixed to the side plate 1 drives the driving shaft 3 upward together, so that the driving shaft 3 fixed between the two vertical plates 7 moves away from the driving shaft 3 connected between the first driving machine bases 4, increasing the gap between the two driving shafts 3, thereby adapting to a thicker metal coil. And in order to ensure the cutting bite between the upper and lower combined blades 301, when the gap between the two driving shafts 3 increases, the combined blades 301 with a suitable diameter are replaced.
[0031] The blade 30 of the present invention is clamped in the card slot of the driving shaft 3 by two combined blades 301. And each combined blade 301 is aligned and inserted into the corresponding embedding groove 304 by several fixing blocks 302. This installation method can prevent the two combined blades 301 from loosening and slipping during the process of cutting the metal coil when they surround and bite the groove, making it difficult to cut the metal coil. Further, it also avoids the pulling and loosening of one blade 30 due to friction when the upper and lower blades 30 are combined to cut the metal coil.
[0032] One of the two combined blades 301 inserts two insertion pieces 303 at each of the front and rear ends into the embedding groove 304 of the other combined blade 301. This connection method can strengthen the firmness between the two and prevent loosening and falling off.
[0033] At least four sliding grooves 11 are provided in the installation groove of each side plate 1, and every two sliding grooves 11 are respectively arranged on both sides adjacent to the vertical plate 7; on both sides of each vertical plate 7 that fit with the installation groove of the side plate 1, sliding ridges 71 are provided. There are several sliding ridges 71 on the vertical plate 7, and they are respectively embedded in the corresponding sliding grooves 11. The side plate 1 is slidably engaged with the sliding ridges 71 of the sliding grooves 11 and reciprocates in the opposite direction along the extension of the sliding grooves 11.
[0034] After adopting the above structure, it should be further noted that when the side plate 1 moves up and down along the vertical plate 7, to prevent the side plate 1 from shaking left and right. Therefore, the present invention adds four sliding grooves 11 in the installation groove inside the side plate 1, and the vertical plate 7 uses the sliding ridges 71 to be embedded in the corresponding sliding grooves 11, thereby limiting the up and down movement of the side plate 1.
[0035] One end of each vertical plate 7 away from the side plate 1 is provided with a base 72; on the upper surface of each base plate 72, a guiding track 61 is vertically arranged, the guiding track 61 is arranged parallel to the vertical plate 7, a moving groove 62 is provided on the side of the guiding track 61 away from the vertical plate 7, the moving groove 62 extends along the swinging direction of the vertical plate 7, a transverse tooth pattern is arranged inside the moving groove 62; one end of each moving groove 62 away from the base 72 is provided with a horizontally arranged limiting top plate 64.
[0036] After adopting the above structure, it should be further explained that the base 72 is used to support the vertical plate 7 and the guiding track 61, and limit the distance between the two, so as to avoid bifurcation between the two caused by the upward force, resulting in deformation.
[0037] The guiding track 61 is used to provide a guiding path for the lifting seat 6 to move up and down. At the same time, the length of the guiding track 61 is the range within which the vertical plate 7 and the side plate 1 can move up and down.
[0038] Among them, in order to prevent the lifting seat 6 from exceeding the upper limit of the movable range of the guiding track 61 when rising, the guiding track 61 of the present invention is provided with a limiting top plate 64, and when the lifting seat 6 moves to the upper limit of the guiding track 61, the baffle 65 of the lifting seat 6 abuts against the limiting top plate 64, so as to limit the baffle 65.
[0039] Each lifting seat 6 is provided with a vertically penetrating groove, the guiding track 61 on the base plate 72 runs through the vertically penetrating groove opened by the lifting seat 6, and the lifting seat 6 reciprocates along the longitudinal direction of the penetrating groove; a guiding wheel set 63 is arranged inside each lifting seat 6, and the guiding wheel set 63 is provided with at least two gears and a rotating motor 60, the rotating motor 60 is connected to the two gears respectively by at least two shafts, and the two gears of the guiding wheel set 63 are respectively meshed outside the transverse tooth pattern of the guiding track 61; a baffle 65 is arranged at the top of each lifting seat 6, and the baffle 65 is mutually attached to the limiting top plate 64.
[0040] After adopting the above structure, it should be further explained that the moving mode adopted by the lifting seat 6 is meshed connection between the internally arranged gears and the guiding track 61, and moves up and down by means of meshing. By using this method to drive the side plate 1 to lift up and down, the distance of up and down movement can be better controlled. And in order to ensure that the guiding wheel set 63 will not move up and down when stopping moving, a braking structure is arranged inside the guiding wheel set 63 of the present invention. Among them, the braking structure adopted is a disc brake structure, and the two brake pads are used to clamp and brake the gears of the guiding wheel set 63, so as to fixedly brake the two gears.
[0041] Each first driving machine base 4 is hollow inside, and there is an opening on one side of the first driving machine base 4 in the transverse direction; a first gear motor 41 is embedded in each first driving machine base 4; a fixing base 42 is embedded at the opening of each first driving machine base 4, and an inwardly concave arc-shaped groove is provided on the side of the fixing base 42 facing the first gear motor 41; a gear is provided on the side of each first gear motor 41 facing the arc-shaped groove, and one end of the driving shaft 3 is clamped between the gear of the first gear motor 41 and the arc-shaped groove; at least two auxiliary wheel belts 421 are embedded in the arc-shaped groove of each fixing base 42.
[0042] After adopting the above structure, it should be further noted that the two first driving machine bases 4 are respectively connected to both ends of the driving shaft 3. Among them, by placing one end of the driving shaft 3 in the arc-shaped groove of the fixing base 42 and then loading the fixing base 42 and the driving shaft 3 into the first driving machine base 4 (grooves for receiving and placing the driving shaft 3 are respectively provided on the opposite sides of the two first driving machine bases 4, and the diameter of the groove is the same as the diameter of the driving shaft 3). At this time, the first gear motor 41 meshes with the driving shaft 3 through the gear and tops it, and the fixing base 42 also wraps and tops the driving shaft 3 towards the first gear motor 41 through the arc-shaped groove. Among them, in order to avoid the arc-shaped groove causing certain friction to the driving shaft 3 during the rotation of the driving shaft 3, two auxiliary wheel belts 421 are installed in the arc-shaped groove of the present invention to assist in rotation.
[0043] Each second driving machine base 5 is hollow inside, and an embedding opening is provided above; a backing plate 53 is provided inside each second driving machine base 5 and at the embedding opening above. A biting seat 51 is provided above the backing plate 53. Semi-circular grooves are respectively provided between the biting seat 51 and the backing plate 53, and the semi-circular grooves of the biting seat 51 and the backing plate 53 are combined into a circular groove to bite one end of the driving shaft 3; at least two auxiliary wheel belts 421 are provided in the semi-circular groove of the biting seat 51 and are in mutual fit with the driving shaft 3; a contact opening is provided in the semi-circular groove of the backing plate 53. A second gear motor 52 is provided inside the second driving machine base 5. The second gear motor 52 is provided with a gear, and the gear extends to the contact opening and is in meshing connection with one end of the driving shaft 3.
[0044] After adopting the above structure, it should be further noted that the above-mentioned second driving machine base 5 is similar in structure to the first driving machine base 4, and will not be elaborated here.
[0045] The two auxiliary wheel belts 421 respectively provided on each first driving machine base 4 and each second driving machine base 5 are arc-shaped; a plurality of fixing grooves are provided on each auxiliary wheel belt 421, and an auxiliary wheel 422 is embedded in each fixing groove. A shaft rod runs across the circular part of each auxiliary wheel 422, and the shaft rod runs across the corresponding fixing groove.
[0046] After adopting the above structure, it should be further noted that the area where the auxiliary wheel belt 421 is provided is a sunken area for installing the auxiliary wheel belt 421, and it is fixed at the corresponding area by means of screws. The rotation direction of the auxiliary wheel 422 of the auxiliary wheel belt 421 is the same as the rotation direction of the driving shaft 3 in contact, and the auxiliary wheel belt 421 can also push the outer surface of the driving shaft 3 outwards through the auxiliary wheel 422, so as to reduce the friction generated when the first driving machine base 4 and each second driving machine base 5 rotate on the driving shaft 3.
[0047] Toothed patterns are respectively provided at both ends of the two driving shafts 3; both ends of one of the two driving shafts 3 are connected to the two first driving machine bases 4; both ends of the other driving shaft 3 are connected to the two second driving machine bases 5; the two driving shafts 3 are arranged in an up-and-down stacked manner, and a plurality of blades 30 arranged up and down are arranged in an interlaced manner, and the edge of each blade 30 arranged above is in contact with the edge of a corresponding blade 30 arranged below.
[0048] The inner side of the cross plate 2 is hollowed out; a blower housing 21 is arranged above the cross plate 2, and an exhaust blower 22 is installed in the blower housing 21. The air suction port below the exhaust blower 22 faces the hollowed-out area of the cross plate 2; a storage box 9 is arranged at one edge of the blower housing 21. A conduit is arranged on one side of the storage box 9. The conduit of the storage box 9 is inserted into the blower housing 21 and is connected to one end of an air pipe in the blower housing 21. The other end of the air pipe of the blower housing 21 is connected to the air outlet of the exhaust blower 22; the storage box 9 is embedded in the outer side of the blower housing 21 by a spring buckle 91. The spring buckle 91 is embedded at the bottom of an extension plate extending from the outer side of the storage box 9 and is connected to the extension plate by a spring between the spring buckle 91 and the extension plate.
[0049] After adopting the above structure, it should be further noted that when the storage box 9 is attached to the blower housing 21, the conduit of the storage box 9 is squeezed into the air pipe of the blower housing 21 (the squeezing method can make the gap between the conduit and the air pipe smaller to avoid air leakage). The exhaust gas generated by cutting is sucked along the hollow of the cross plate 2 by the exhaust blower 22, and an absorption chamber 25 is formed between the hollow area of the cross plate 2 and the inside of the blower housing 21. Thus, after the exhaust gas and debris are extracted by the exhaust blower 22, they are collected through the absorption chamber 25 and are concentrated and led out through an air outlet, and finally are introduced into the storage box 9 through the conduit and the air pipe.
[0050] An air outlet is arranged on one side of the storage box 9 away from the blower housing 21, and a filter cotton core 92 is embedded at the air outlet. After the debris and exhaust gas introduced by the exhaust blower 22, the debris is blocked by the filter cotton core 92 and falls into the storage box 9, and the exhaust gas can be filtered by the filter cotton core 92, so as to avoid polluting the outside world by the exhaust gas and debris.
[0051] On the lower surface of the horizontal plate 2, an annular light tube 23 is provided at the edge of the hollowed-out area. The annular light tube 23 can provide light for the processing area, facilitating better observation of the processing process.
[0052] Several V-shaped plates 24 are horizontally arranged in the hollowed-out area of the horizontal plate 2. Among them, the V-shaped plates 24 can allow some of the absorbed debris to be received through the upper openings of the V-shaped plates 24 when the debris tumbles, preventing it from falling downward.
[0053] A control unit 20 is horizontally arranged inside the horizontal plate 2 of the present invention. The control unit 20 is composed of several circuit boards, and the control unit 20 is electrically connected to the electrical components and electric control devices such as motors of the present invention by wire tubes.
[0054] The control unit 20 is electrically connected to an external power supply and a computer by wire tubes, and is controlled to start and stop through the external computer. The control instructions are transmitted to the control unit 20, and then imported into the electrical components through the control unit 20 to start and stop.
[0055] On one side of each of the two second driving machine bases 5, a guiding frame 8 is provided. The two guiding frames 8 are inclined downward at the ends away from the second driving machine bases 5 respectively; a guiding plate 81 is arranged between the two guiding frames 8, and the guiding plate 81 is in the same swinging direction as the two guiding frames 8.
[0056] After adopting the above structure, it should be further explained that the second driving machine base 5 does not move, and the guiding frame 8 is fixed to the ground by the vertical feet arranged below. Therefore, the vertical feet form a support base with the guiding frame 8 and the vertical plate 7.
[0057] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. A slitting machine with a blade adjustment function, comprising: A side panel, a transverse panel, a driving shaft, a first driving machine base, a second driving machine base, a lifting base, a vertical panel and a guide frame, characterized in that the side panels are provided with two pieces, and the two side panels are vertically arranged, the transverse panel is connected between and above the two side panels, the first driving machine base and the second driving machine base are provided on one side of each side panel facing the other side of the side panel, and the first driving machine base and the second driving machine base provided on one side panel are respectively longitudinally and linearly arranged, each of the first driving machine base and each of the second driving machine base is respectively transversely connected with a driving shaft, a mounting groove is provided on the inner side of each side panel, each of the mounting grooves of the side panels is provided with an opening, and the opening is arranged downward, and the vertical panel is inserted into and along the mounting groove of each side panel; A plurality of slots are provided on the outer surface of each of the driving shafts and are arranged in sequence along the extension direction of the driving shaft. A blade is installed in each slot of the driving shaft. A plurality of grooves are provided in each slot of the driving shaft and along its surface. Each of the blades is composed of two combined blades, a plurality of fixed blocks, a plurality of inserts and a plurality of embedding grooves. The two combined blades are arranged in a semicircular ring, and the two ends of the two combined blades are respectively fitted and connected. One of the two combined blades has a plurality of inserts extending outward at both ends, and the two ends of the other combined blade are respectively provided with the embedding grooves that match the plurality of inserts. After one of the two combined blades is fitted and connected with the two ends of the other combined blade, the plurality of inserts are embedded in the plurality of embedding grooves. A plurality of fixing blocks are provided on one side of each of the combined blades that fits in with the slot of the driving shaft and are matched with the plurality of grooves provided in the slot of the driving shaft. The two combined blades are fixed in the slot of the driving shaft using corresponding fixing blocks respectively, and the ends of the two are fitted and connected.
2. The slitting machine with blade adjustment function according to claim 1, characterized in that: At least four sliding grooves are arranged in the installation groove of each side plate, and every two sliding grooves are arranged on two sides adjacent to the vertical plate respectively; Each vertical plate is provided with sliding ridges on both sides of the mounting grooves of the side plates. The vertical plate has a plurality of sliding ridges which are respectively embedded in the corresponding sliding grooves. The side plates are slidably engaged with the sliding grooves and the sliding ridges and move back and forth in the opposite direction along the extension of the sliding grooves.
3. The slitting machine with blade adjustment function according to claim 1, characterized in that: A base is provided at one end of each of the vertical plates away from the side plates; A guide track is vertically arranged on the upper surface of each bottom plate, the guide track is arranged parallel to the vertical plate, a movable groove is arranged on the side of the guide track away from the vertical plate, the movable groove extends along the swing direction of the vertical plate, and a horizontal tooth pattern is arranged on the inner side of the movable groove; A transversely arranged limiting top plate is arranged at one end of each of the movable grooves away from the base.
4. The slitting machine with blade adjustment function according to claim 1, characterized in that: Each of the lift seats is provided with a vertical through slot, the guide rail on the bottom plate vertically passes through the vertical transmission slot provided on the lift seat, and the lift seat reciprocates along the vertical direction of the transmission slot; Each of the lift seats is provided with a guide wheel group, and the guide wheel group is provided with at least two gears and a rotating motor, the rotating motor is connected to two gears by at least two shafts, and the two gears of the guide wheel group are respectively meshed with the outside of the transverse tooth pattern of the guide track; A baffle is arranged on the top of each lift seat, and the baffle and the limiting top plate are fitted to each other.
5. The slitting machine with blade adjustment function according to claim 1, characterized in that: Each of the first driving machine bases is hollow inside, and an opening is provided on one lateral side of the first driving machine base; A first gear motor is embedded in each of the first driving machine bases; A fixing seat is embedded in the opening of each of the first driving machine seats, and an inwardly recessed arc groove is provided on the side of the fixing seat facing the first gear motor; Each of the first gear motors is provided with a gear on one side facing the arc groove, and one end of the driving shaft is clamped between the gear of the first gear motor and the arc groove; At least two auxiliary wheel belts are embedded in the arc groove of each fixing seat.
6. The slitting machine with blade adjustment function according to claim 1, characterized in that: Each of the second driving machine bases is hollow and has an embedding opening on the top; A pad is provided in each of the second driving machine bases and at the upper embedding opening, an engaging seat is provided above the pad, a semicircular groove is provided between the engaging seat and the pad, and the engaging seat and the semicircular groove of the pad are combined into a circular groove and engage one end of the driving shaft; At least two auxiliary belts are arranged in the semicircular groove of the engagement seat and are in close contact with the driving shaft; A contact opening is provided in the semicircular groove of the pad, and a second gear motor is provided in the second driving base. The second gear motor is provided with a gear, and the gear is extended to the contact opening and meshed with one end of the driving shaft.
7. The slitting machine with blade adjustment function according to claim 1, characterized in that: The two auxiliary belts respectively arranged on each of the first driving machine bases and each of the second driving machine bases are arranged in an arc shape; Each of the auxiliary wheels is provided with a plurality of fixing grooves, each fixing groove is embedded with an auxiliary wheel, and each of the auxiliary wheels has a shaft rod running through the circular part, and the shaft rod is used to run through the corresponding fixing groove.
8. The slitting machine with blade adjustment function according to claim 1, characterized in that: Both ends of the two driving shafts are respectively provided with tooth patterns; Two ends of one of the two driving shafts are connected to two of the first driving machine bases; Two ends of the other driving shaft are connected to two of the second driving machine bases; The two driving shafts are stacked up and down, and the plurality of blades placed up and down are staggered, and the edge of each blade arranged at the top is in contact with the edge of a corresponding blade arranged at the bottom.
9. The slitting machine with blade adjustment function according to claim 1, characterized in that: The inner side of the horizontal plate is hollowed out; A fan housing is arranged above the horizontal plate, an exhaust fan is installed in the fan housing, and an exhaust port below the exhaust fan faces the hollow area of the horizontal plate; A storage box is provided at one edge of the fan housing, a conduit is provided on one side of the storage box, the conduit of the storage box is inserted into the fan housing and connected to one end of an air pipe in the fan housing, and the other end of the air pipe of the exhaust box is connected to the air outlet of the exhaust box; The storage box is embedded in the outer side of the fan housing by using the spring buckle, the spring buckle is embedded in the bottom of an extension plate extending from the outer side of the storage box, and a spring is used to connect between the spring buckle and the extension plate.
10. The slitting machine with blade adjustment function according to claim 1, characterized in that: A guide frame is respectively arranged on one side of the two second driving machine bases, and the two guide frames are respectively arranged to be tilted downward away from one end of the second driving machine base; A guide plate is arranged between the two guide frames, and the guide plate and the two guide frames have the same swing direction.
Citation Information
Cited By
Aluminum alloy strip slitting machine
CN120533160A