Repair processing machine tool for intelligent manufacturing of brake disc
By introducing an arc-shaped air vent and an oil removal component into the brake disc processing machine, the problems of iron filings entering and oil stains being cleaned were solved, achieving efficient cleaning and stability in brake disc processing and reducing labor costs.
Patent Information
- Application Number
- CN202610072998.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-20
- Publication Date
- 2026-03-03
AI Technical Summary
In the current brake disc manufacturing process, fine iron filings can easily enter the brake disc through the heat dissipation holes, making subsequent cleaning difficult. In addition, oil stains on the surface of the brake disc are difficult to remove, increasing labor costs.
A repair and processing machine tool for intelligent manufacturing of brake discs was designed. It adopts an arc plate and air blowing structure. The air blowing through the air blowing port prevents iron filings from entering the brake disc. At the same time, an oil removal component is set up to use a nozzle to spray oil removal agent to remove surface oil stains. Combined with a buffer component, the roller can adapt to brake discs of different sizes.
It effectively prevents iron filings from entering the brake disc, simplifies the subsequent cleaning process, reduces labor costs, ensures the cleanliness of the brake disc surface, and improves processing stability and the applicability of the equipment.
Smart Images

Figure CN121589652A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of brake disc processing technology, specifically to a repair and processing machine tool for intelligent manufacturing of brake discs. Background Technology
[0002] Brake discs (also known as brake discs) are a key component in the braking systems of vehicles such as automobiles and motorcycles. They are mainly used to decelerate or stop the vehicle. Currently, brake discs are usually manufactured by drilling and turning the surface of the brake disc. Drilling the surface of the brake disc helps to dissipate heat during braking. In order to reduce the impact of burrs generated by drilling on the working surface of the brake disc, the existing technology adopts drilling the brake disc first and then turning it to eliminate burrs at the junction of the working surface of the brake disc and the heat dissipation holes.
[0003] Chinese patent CN120734364A, authorized and published on October 3, 2025, discloses a brake disc processing device, including a machine body. The machine body includes a processing table, and a positioning and clamping mechanism is provided on the processing table. The positioning and clamping mechanism includes a rotatable clamping component for positioning and clamping the brake disc. A turning mechanism is also provided on the processing table. In the aforementioned application, during the turning process, small iron filings cut off from the front surface of the brake disc can easily enter the interior of the brake disc through the front heat dissipation holes, making the subsequent cleaning process of the brake disc quite troublesome. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a repair and processing machine tool for intelligent manufacturing of brake discs, solving the problems mentioned in the background section. To achieve the above objectives, this invention is implemented through the following technical solution: a repair and processing machine tool for intelligent manufacturing of brake discs, comprising: The base has a fixed seat on its top, and a rotating fixing device with a rotation function is provided on the top of the fixed seat on the left side. A threaded rod is provided between the fixed seats, and a movable plate is provided on the outer side of the threaded rod. A brake disc is provided on the inner side of the rotating fixing device. Hydraulic blocks are fixedly connected to both sides of the fixed base on the left. A push block is movably connected to the right side of the hydraulic block, and a movable plate is fixedly connected to the right side of the push block. A spring is fixedly connected between the movable plate and the hydraulic block. An L-shaped fixed block is fixedly connected to the inner side of the fixed base. A sliding groove is formed inside the L-shaped fixed block, and a slider is movably connected inside the sliding groove. The left side of the hydraulic block is movably connected to the arc-shaped plate through a transmission component. The arc-shaped plate and air vent are designed so that when the brake disc begins processing, the internal pressure of the hydraulic blocks increases, causing the arc-shaped plate to move downwards, bringing the roller into contact with the outer side of the brake disc. The fan is then activated, blowing air from the air vent into the internal heat dissipation structure of the brake disc. This prevents fine iron filings generated during brake disc processing from entering the brake disc through the heat dissipation holes on its front surface, making subsequent cleaning of the brake disc easier and saving labor.
[0005] Preferably, the transmission components include a first hose, a second hydraulic block, a fixing buckle, a second push block, rollers, an air outlet, and a fan. The left side of the first hydraulic block is fixedly connected to one end of the first hose, and the other end of the first hose is fixedly connected to the top of the second hydraulic block. The outer side of the second hydraulic block is fixedly connected to the outer side of the L-shaped fixing block via the fixing buckle. The bottom of the second hydraulic block is movably connected to the second push block, and the bottom of the second push block is fixedly connected to a slider. The outer side of the slider is fixedly connected to an arc-shaped plate, and rollers are movably connected to both sides of the arc-shaped plate. An air outlet is provided at the bottom of the arc-shaped plate, and the top of the air outlet is fixedly connected to the top of the fan via an air duct. The bottom of the fan is fixedly connected to the top of the fixing base.
[0006] Preferably, a mobile device is movably connected to the top of the movable plate, a cutting tool is fixedly connected to the top of the mobile device, degreasing components are movably connected to both sides of the rotating fixing device, and a buffer component is movably connected inside the arc-shaped plate.
[0007] Preferably, there are two movable plates, two push blocks, two springs, two hydraulic blocks, each hydraulic block being symmetrically distributed about the centerline of the fixed seat; two hoses; two hydraulic blocks, each hydraulic block being symmetrically distributed about the centerline of the brake disc; two L-shaped fixing blocks; four fixing buckles, with two fixing buckles forming a group; two sliding grooves; two push blocks; two sliders; two arc-shaped plates; and four rollers, with two rollers forming a group.
[0008] Preferably, the oil removal assembly includes a second hose, a third hydraulic block, a fixed block, a third push block, a rotating block, a rotating plate, a nozzle, a connecting pipe, and a storage tank. The left side of the first hydraulic block is fixedly connected to one end of the second hose, and the other end of the second hose is fixedly connected to the rear side of the third hydraulic block. Fixed blocks are fixedly connected to both sides of the fixed base. The bottom of the third hydraulic block is fixedly connected to the top of the fixed block. A third push block is movably connected to the front side of the third hydraulic block. A rotating block is fixedly connected to the front side of the third push block. A rotating plate is rotatably connected inside the fixed block via a rotating shaft. The top of the rotating shaft is fixedly connected to the bottom of the rotating block. A nozzle is fixedly connected to the inner side of the rotating plate. The outer side of the rotating plate is fixedly connected to the rear side of the storage tank via a connecting pipe. The inner side of the storage tank is fixedly connected to both sides of the fixed base. The degreasing component is installed so that after the equipment completes processing, the internal pressure of the hydraulic block decreases, causing the rotating block to rotate and drive the rotating plate to close. This allows the degreasing agent in the reservoir to be sprayed from the nozzle onto the processed surface of the brake disc, thereby removing the oil stains from the surface of the brake disc. This makes the subsequent cleaning process of the brake disc more convenient, ensures the braking function of the brake disc, and saves labor.
[0009] Preferably, the number of hoses 2 is two, the number of hydraulic blocks 3 is two, the number of fixing blocks is two, the number of push blocks 3 is two, the number of rotating blocks is two, the number of rotating plates is two, the number of nozzles is six, with three nozzles forming a group, the number of connecting pipes is two, and the number of liquid storage tanks is two.
[0010] Preferably, the width of the rotating plate is the same as the width of the groove inside the fixed block.
[0011] Preferably, the buffer assembly includes a movable groove, a second sliding groove, a rotating shaft, and a second spring. The movable groove is formed on the surface of the arc-shaped plate, and the second sliding groove is formed on the front and rear surfaces inside the movable groove. The rotating shaft is movably connected inside the second sliding groove, and a roller is slidably connected to the inner side of the rotating shaft. The second spring is fixedly connected between the top of the rotating shaft and the second sliding groove. By providing the buffer assembly, when the equipment is processing the brake disc, the roller contacts the outer side of the brake disc. When the brake disc rotates under the drive of the rotating and fixed equipment, the outer side of the brake disc, in contact with the roller, encounters an uneven area, causing the roller to wobble up and down. This causes the rotating shaft to move up and down along the second sliding groove, allowing the second spring to absorb the force of the roller's wobbling and convert it into elastic potential energy. This makes the roller's movement more stable, thus making the brake disc processing process more stable. Furthermore, when processing brake discs of different sizes, the roller's position can be changed according to the brake disc diameter, thereby increasing the applicability of the equipment.
[0012] Preferably, the number of movable slots is four, with two movable slots forming a group; the number of sliding grooves is eight, with two sliding grooves forming a group; the number of rotating shafts is eight; and the number of springs is eight, with two springs forming a group.
[0013] Preferably, a rotating bearing is movably connected to the inner side of the rotating shaft.
[0014] This invention provides a repair and processing machine tool for intelligent manufacturing of brake discs. It has the following beneficial effects: (1) The intelligent manufacturing repair and processing machine tool for brake disc starts the threaded rod, and works with movable plate one, movable equipment, movable plate two, push block one, hydraulic block one, hose one, hydraulic block two, push block two, slider, and arc plate to make the arc plate move downward, so that the roller contacts the outside of the brake disc, and the air blower blows air into the inside of the brake disc, so that iron filings will not be mixed into the inside of the brake disc, making subsequent cleaning more convenient.
[0015] (2) When the internal pressure of the hydraulic block 1 decreases, it works with the hose 2, hydraulic block 3, push block 3, rotating block and rotating plate to make the rotating plate rotate inward, so that the degreasing agent in the reservoir is sprayed from the nozzle onto the surface of the brake disc, making the subsequent brake disc cleaning process more convenient.
[0016] (3) When the arc plate moves downward, it works with the rotating shaft and spring 2 to drive the roller to move up and down along the slide groove 2, so that the roller can be used for brake discs of different sizes, and at the same time the roller is more stable when rotating, making the equipment processing process smoother. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall front structure of the present invention; Figure 2 This is a schematic diagram of the overall right-side structure of the present invention; Figure 3 This is a schematic diagram of some of the components of the present invention; Figure 4 For the present invention Figure 3 Enlarged structural diagram at point A in the middle; Figure 5 This is a schematic diagram of the oil removal component structure of the present invention; Figure 6 For the present invention Figure 5 Enlarged structural diagram at point B; Figure 7 This is a schematic diagram of the buffer component structure of the present invention; Figure 8 For the present invention Figure 7 Enlarged structural diagram at point C.
[0018] In the picture: 100. Base; 200. Fixed seat; 300. Rotating and fixing device; 400. Threaded rod; 500. Movable plate 1; 600. Moving device; 700. Cutting tool device; 800. Brake disc; 901. Movable plate 2; 902. Push block 1; 903. Spring 1; 904. Hydraulic block 1; 905. Hose 1; 906. Hydraulic block 2; 907. L-shaped fixing block; 908. Fixing buckle; 909. Slide groove 1; 910. Push block 2; 911. Sliding block; 912. Arc plate; 913. Roller; 914. Air outlet; 915. Fan; 1000. Oil removal assembly; 1001. Hoses II; 1002. Hydraulic block III; 1003. Fixing block; 1004. Push block III; 1005. Rotating block; 1006. Rotating plate; 1007. Nozzle; 1008. Connecting pipe; 1009. Liquid storage tank; 1100, Buffer assembly; 1101, Movable groove; 1102, Second slide groove; 1103, Rotating shaft; 1104, Second spring. Detailed Implementation
[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0020] Example 1, please refer to Figures 1-4 A repair and processing machine tool for intelligent manufacturing of brake discs, comprising: A base 100 has a fixed seat 200 on its top. A rotating fixing device 300 with a rotation function is set on the top of the left fixed seat 200. A threaded rod 400 is set between the fixed seats 200. The threaded rod 400 can drive the movable plate 500 to move left and right when rotated. The movable plate 500 is set on the outside of the threaded rod 400. A brake disc 800 is set on the inside of the rotating fixing device 300. A moving device 600 is movably connected to the top of the movable plate 500. The moving device 600 can adjust the front and rear position of the cutting tool 700. The cutting tool 700 is fixedly connected to the top of the moving device 600. The cutting tool 700 can process the surface of the brake disc 800. An oil removal assembly 1000 is movably connected to both sides of the rotating fixing device 300. A buffer assembly 1100 is movably connected inside the arc plate 912. Hydraulic blocks 904 are fixedly connected to both sides of the left fixed seat 200. Push block 902 is movably connected to the right side of hydraulic block 904. Movable plate 901 is fixedly connected to the right side of push block 902. Spring 903 is fixedly connected between movable plate 901 and hydraulic block 904. L-shaped fixed block 907 is fixedly connected to the inside of the fixed seat 200. Slide groove 909 is provided inside L-shaped fixed block 907. Slide groove 909 is provided so that slider 911 can move along slide groove 909. Slide slider 911 is movably connected inside slide groove 909. The left side of hydraulic block 904 is movably connected to arc plate 912 through transmission component. The transmission components include a first hose 905, a second hydraulic block 906, a fixing buckle 908, a second push block 910, a roller 913, an air outlet 914, and a fan 915. The left side of the first hydraulic block 904 is fixedly connected to one end of the first hose 905, and the other end of the first hose 905 is fixedly connected to the top of the second hydraulic block 906. The first hose 905 is installed so that the interior of the first hydraulic block 904 communicates with the interior of the second hydraulic block 906. The outer side of the second hydraulic block 906 is fixedly connected to the outer side of an L-shaped fixing block 907 via the fixing buckle 908. The bottom of block 2 906 is movably connected to push block 2 910, the bottom of push block 2 910 is fixedly connected to slider 911, the outer side of slider 911 is fixedly connected to arc plate 912, the two sides of arc plate 912 are movably connected to rollers 913, the bottom of arc plate 912 is provided with air outlet 914, the top of air outlet 914 is fixedly connected to the top of fan 915 through air duct, fan 915 is set so that fan 915 provides cold air to air outlet 914, the bottom of fan 915 is fixedly connected to the top of fixed base 200; There are two movable plates 901, two push blocks 902, two springs 903, two hydraulic blocks 904, each hydraulic block 904 is symmetrically distributed about the center line of the fixed seat 200, two hoses 905, two hydraulic blocks 906, each hydraulic block 906 is symmetrically distributed about the center line of the brake disc 800, two L-shaped fixed blocks 907, four fixed buckles 908, each pair of fixed buckles 908 forms a group, two slides 909, two push blocks 910, two sliders 911, two arc plates 912, and four rollers 913, each pair of rollers 913 forms a group. The arc-shaped plate 912 and the air outlet 914 are designed so that when the brake disc 800 begins processing, the internal pressure of the hydraulic blocks 904 on both sides increases, causing the arc-shaped plate 912 to move downwards, making the roller 913 contact the outer side of the brake disc 800. The fan 915 is then activated, causing the air outlet 914 to blow air into the internal heat dissipation structure of the brake disc 800. This prevents the fine iron filings generated during the processing of the brake disc 800 from entering the interior of the brake disc 800 through the heat dissipation holes on its front surface, making the subsequent cleaning process of the brake disc 800 after processing more convenient and saving labor.
[0021] During operation, at the start of processing, the brake disc 800 is fixed on the rotating fixed device 300. Rotating the threaded rod 400 moves the movable plate 500 to the left, causing the cutting tool device 700 to move to the left. At this time, the movable plate 901 moves to the left under the influence of the movable plate 500, causing the push block 902 to move to the left. This increases the internal pressure of the hydraulic block 904, which is then transmitted through the hose 905 to the hydraulic block 906, further increasing the internal pressure of the hydraulic block 906 and causing the push block 901 to move to the left. Pushing the slider 911 inward along the slide groove 909 causes the slide block 911 to move inward along the slide groove 909, and the arc plate 912 to move inward along with the slider 911, so that the roller 913 contacts the outer surface of the brake disc 800. At this time, the blower 915 is started, so that air is blown into the brake disc 800 from the air outlet 914. This prevents the fine iron filings generated during the processing of the brake disc 800 from entering the brake disc 800 through the heat dissipation holes on its front surface, making the subsequent cleaning process of the brake disc 800 more convenient and saving labor.
[0022] Example 2, please refer to Figures 1-6Based on Embodiment 1, the oil removal assembly 1000 includes a second hose 1001, a third hydraulic block 1002, a fixing block 1003, a third push block 1004, a rotating block 1005, a rotating plate 1006, a nozzle 1007, a connecting pipe 1008, and a storage tank 1009. The left side of the first hydraulic block 904 is fixedly connected to one end of the second hose 1001, and the other end of the second hose 1001 is fixedly connected to the rear side of the third hydraulic block 1002. The second hose 1001 is arranged so that the interior of the first hydraulic block 904 communicates with the interior of the third hydraulic block 1002. Fixing blocks 1003 are fixedly connected to both sides of the fixing base 200, and the bottom of the third hydraulic block 1002 is fixedly connected to the top of the fixing block 1003. Push block 1004 is movably connected to the front side of the three 1002. Rotating block 1005 is fixedly connected to the front side of push block 1004. Rotating plate 1006 is rotatably connected to the inside of fixed block 1003 via rotating shaft. The width of rotating plate 1006 is the same as the width of the groove inside fixed block 1003. The top of rotating shaft is fixedly connected to the bottom of rotating block 1005. Spray nozzle 1007 is fixedly connected to the inside of rotating plate 1006. Spray nozzle 1007 is set so that spray degreasing agent onto the surface of brake disc 800. The outside of rotating plate 1006 is fixedly connected to the rear side of reservoir 1009 via connecting pipe 1008. The inside of reservoir 1009 is fixedly connected to both sides of fixed seat 200. There are two hoses 1001, two hydraulic blocks 1002, two fixing blocks 1003, two push blocks 1004, two rotating blocks 1005, two rotating plates 1006, six nozzles 1007, three nozzles 1007 form a group, two connecting pipes 1008, and two liquid storage tanks 1009. The degreasing component 1000 is installed. After the equipment completes processing, the internal pressure of the hydraulic block 904 decreases, causing the rotating block 1005 to rotate and drive the rotating plate 1006 to rotate and close. This allows the degreasing agent in the reservoir 1009 to be sprayed from the nozzle 1007 onto the processed surface of the brake disc 800, thereby removing the oil stains from the surface of the brake disc 800. This makes the subsequent cleaning process of the brake disc 800 more convenient, ensures the braking function of the brake disc 800, and saves labor.
[0023] In use, based on Example 1, when the internal pressure of hydraulic block 904 increases, the excess pressure inside hydraulic block 904 is transmitted to hydraulic block 1002 through hose 1001, increasing the internal pressure of hydraulic block 1002. This causes push block 1004 to push outward, rotating block 1005 to rotate, causing rotating plate 1006 to rotate with rotating block 1005 and open outward, thus stopping the degreasing process. When the equipment finishes processing, the internal pressure of hydraulic block 904 decreases, causing rotating block 1005 to rotate in the opposite direction, and rotating plate 1006 to rotate in the opposite direction with rotating block 1005 and close inward. This causes the degreasing agent inside the oil tank to be sprayed out from nozzle 1007, thereby removing oil stains from the surface of brake disc 800. This makes subsequent cleaning of brake disc 800 more convenient, ensures the braking function of brake disc 800, and saves labor.
[0024] Example 3, please refer to Figures 1-8 Based on Embodiment 1 and Embodiment 2, the buffer assembly 1100 includes a movable groove 1101, a second sliding groove 1102, a rotating shaft 1103, and a second spring 1104. The movable groove 1101 is provided on the surface of the arc plate 912. The second sliding groove 1102 is provided on the front and rear sides of the inner side of the movable groove 1101. The second sliding groove 1102 is provided so that the rotating shaft 1103 can move along the direction of the second sliding groove 1102. The rotating shaft 1103 is movably connected inside the second sliding groove 1102. A rotating bearing is movably connected to the inner side of the rotating shaft 1103. A roller 913 is slidably connected to the inner side of the rotating shaft 1103. A second spring 1104 is fixedly connected between the top of the rotating shaft 1103 and the second sliding groove 1102. The second spring 1104 is provided so that it converts the kinetic energy of the roller 913's shaking into its own elastic potential energy. There are four movable slots 1101, with two movable slots 1101 forming a group; there are eight sliding slots 1102, with two sliding slots 1102 forming a group; there are eight rotating shafts 1103; and there are eight springs 1104, with two springs 1104 forming a group. The buffer assembly 1100 is set up so that when the equipment is processing the brake disc 800, the roller 913 contacts the outer side of the brake disc 800. When the brake disc 800 rotates under the drive of the rotating and fixing device 300, when the outer side of the brake disc 800 in contact with the roller 913 encounters a concave or convex area, the roller 913 wobbles up and down, causing the rotating shaft 1103 to move up and down along the second slide groove 1102. This causes the second spring 1104 to absorb the power of the roller 913's up and down wobbling and rotate it into elastic potential energy, thereby making the movement of the roller 913 more stable and the processing of the brake disc 800 more stable. At the same time, when processing brake discs 800 of different sizes, the roller 913 can change its position according to the diameter of the brake disc 800, thereby increasing the applicability of the equipment.
[0025] In use, based on Embodiment 1 and Embodiment 2, when the arc plate 912 moves downward, the roller 913 contacts the outer surface of the brake disc 800. When the brake disc 800 rotates under the drive of the rotating fixing device 300, the roller 913 will wobble when it contacts the concave and convex parts on the outer side of the brake disc 800. This causes the roller 913 to move up and down along the slide groove 1102 along the rotating shaft 1103. At this time, the kinetic energy of the roller 913's up and down wobbling is converted into the elastic potential energy of the spring 1104, thereby making the movement of the roller 913 more stable and the processing of the brake disc 800 more stable. At the same time, when processing brake discs 800 of different sizes, the roller 913 can change its position according to the diameter of the brake disc 800, thereby increasing the applicability of the equipment.
[0026] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A repair and processing machine tool for intelligent manufacturing of brake discs, characterized in that, include: A base (100) is provided with a fixed seat (200) on the top of the base (100). A rotating fixing device (300) with a rotating function is provided on the top of the fixed seat (200) on the left side. A threaded rod (400) is provided between the fixed seats (200). A movable plate (500) is provided on the outside of the threaded rod (400). A brake disc (800) is provided on the inside of the rotating fixing device (300). Hydraulic blocks (904) are fixedly connected to both sides of the fixed base (200) on the left. Push block (902) is movably connected to the right side of the hydraulic block (904). Movable plate (901) is fixedly connected to the right side of the push block (902). Spring (903) is fixedly connected between the movable plate (901) and the hydraulic block (904). L-shaped fixed block (907) is fixedly connected to the inner side of the fixed base (200). Slide groove (909) is opened inside the L-shaped fixed block (907). Slider (911) is movably connected inside the slide groove (909). The left side of the hydraulic block (904) is movably connected to the arc plate (912) through a transmission component.
2. The intelligent manufacturing repair and processing machine tool for brake discs according to claim 1, characterized in that: The transmission components include a first hose (905), a second hydraulic block (906), a fixing buckle (908), a second push block (910), a roller (913), an air outlet (914), and a fan (915). The left side of the first hydraulic block (904) is fixedly connected to one end of the first hose (905), and the other end of the first hose (905) is fixedly connected to the top of the second hydraulic block (906). The outer side of the second hydraulic block (906) is fixedly connected to the outer side of the L-shaped fixing block (907) through the fixing buckle (908). The bottom of the second (906) is movably connected to a push block second (910), the bottom of the push block second (910) is fixedly connected to a slider (911), the outer side of the slider (911) is fixedly connected to an arc plate (912), the two sides of the arc plate (912) are movably connected to rollers (913), the bottom of the arc plate (912) is provided with an air outlet (914), the top of the air outlet (914) is fixedly connected to the top of the fan (915) through an air duct, and the bottom of the fan (915) is fixedly connected to the top of the fixed seat (200).
3. The intelligent manufacturing repair and processing machine tool for brake discs according to claim 1, characterized in that: The top of the movable plate (500) is movably connected to a mobile device (600), the top of the mobile device (600) is fixedly connected to a cutting tool (700), the two sides of the rotating fixed device (300) are movably connected to an oil removal assembly (1000), and the inside of the arc plate (912) is movably connected to a buffer assembly (1100).
4. The intelligent manufacturing repair and processing machine tool for brake discs according to claim 1, characterized in that: The number of the second movable plate (901) is two, the number of the first push block (902) is two, the number of the first spring (903) is two, the number of the first hydraulic block (904) is two, each of the first hydraulic block (904) is symmetrically distributed about the center line of the fixed seat (200), the number of the first hose (905) is two, the number of the second hydraulic block (906) is two, each of the second hydraulic block (906) is symmetrically distributed about the center line of the brake disc (800), the number of the L-shaped fixed block (907) is two, the number of the fixed buckle (908) is four, each pair of fixed buckles (908) forms a group, the number of the first slide groove (909) is two, the number of the second push block (910) is two, the number of the slider (911) is two, the number of the arc plate (912) is two, the number of the roller (913) is four, each pair of rollers (913) forms a group.
5. The intelligent manufacturing repair machine tool for brake discs according to claim 3, characterized in that: The oil removal assembly (1000) includes a second hose (1001), a third hydraulic block (1002), a fixed block (1003), a third push block (1004), a rotating block (1005), a rotating plate (1006), a nozzle (1007), a connecting pipe (1008), and a storage tank (1009). The left side of the first hydraulic block (904) is fixedly connected to one end of the second hose (1001), and the other end of the second hose (1001) is fixedly connected to the rear side of the third hydraulic block (1002). Fixed blocks (1003) are fixedly connected to both sides of the fixed base (200), and the bottom of the third hydraulic block (1002) is connected to the fixed block (1003). The top of the fixed block (1003) is fixedly connected to the top of the fixed block (1004), and the front side of the hydraulic block (1002) is movably connected to the push block (1004). The front side of the push block (1004) is fixedly connected to the rotating block (1005). The inside of the fixed block (1003) is rotatably connected to the rotating plate (1006) via a rotating shaft. The top of the rotating shaft is fixedly connected to the bottom of the rotating block (1005). The inner side of the rotating plate (1006) is fixedly connected to the nozzle (1007). The outer side of the rotating plate (1006) is fixedly connected to the rear side of the liquid storage tank (1009) via a connecting pipe (1008). The inner side of the liquid storage tank (1009) is fixedly connected to both sides of the fixed seat (200).
6. The intelligent manufacturing repair and processing machine tool for brake discs according to claim 5, characterized in that: The number of hoses 2 (1001) is two, the number of hydraulic blocks 3 (1002) is two, the number of fixing blocks (1003) is two, the number of push blocks 3 (1004) is two, the number of rotating blocks (1005) is two, the number of rotating plates (1006) is two, the number of nozzles (1007) is six, with three nozzles (1007) forming a group, the number of connecting pipes (1008) is two, and the number of liquid storage tanks (1009) is two.
7. The intelligent manufacturing repair machine tool for brake discs according to claim 5, characterized in that: The width of the rotating plate (1006) is the same as the width of the groove inside the fixed block (1003).
8. The intelligent manufacturing repair machine tool for brake discs according to claim 5, characterized in that: The buffer assembly (1100) includes a movable groove (1101), a second sliding groove (1102), a rotating shaft (1103), and a second spring (1104). The surface of the arc plate (912) is provided with a movable groove (1101). The front and rear surfaces of the movable groove (1101) are provided with a second sliding groove (1102). The rotating shaft (1103) is movably connected inside the second sliding groove (1102). A roller (913) is slidably connected to the inner side of the rotating shaft (1103). The second spring (1104) is fixedly connected between the top of the rotating shaft (1103) and the second sliding groove (1102).
9. A repair and processing machine tool for intelligent manufacturing of brake discs according to claim 8, characterized in that: The number of movable grooves (1101) is four, and every two movable grooves (1101) form a group. The number of sliding grooves (1102) is eight, and every two sliding grooves (1102) form a group. The number of rotating shafts (1103) is eight. The number of springs (1104) is eight, and every two springs (1104) form a group.
10. A repair and processing machine tool for intelligent manufacturing of brake discs according to claim 8, characterized in that: The inner side of the rotating shaft (1103) is movably connected to a rotating bearing.
Citation Information
Patent Citations
Brake disc machining device
CN120734364A