Automatic blanking device of blade chamfering machine
By designing a blade chamfer automatic discharge device including a cutting rack, a cutting channel, a guiding channel and an automatic pushing structure, the problem of automatic discharge sorting of blades in the prior art is solved, efficient automatic discharge is achieved, and labor intensity and cost are reduced.
Patent Information
- Application Number
- CN202422156843.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The prior art is difficult to realize automatic discharge and sorting of chamfered blades, resulting in a low degree of automation, a large number of workers and a high labor intensity.
An automatic feeding device for blade chamfering machine is designed, including a feeding frame, a feeding channel, a guide channel, a feeding conveying assembly, a first and second automatic pushing structure. Through these components and structures, the automatic feeding, pushing and neat arrangement of the blades is realized, and finally automatic feeding is realized.
The automatic discharge of blades is realized, which reduces the workload of manually placing blades, reduces the intensity and cost of labor, improves the degree of automation, and has a compact and reasonable structure and is easy to use.
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Figure CN223012075U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mechanical manufacturing automation, and relates to automation equipment, in particular to an automatic unloading device for a blade chamfering machine. Background Art
[0002] The blade of a rotary air-conditioning compressor is one of the most important sliding parts of the compressor. The blade divides the compressor cylinder into two sealed spaces. When the compressor rotates, the volume of the two spaces changes, and the air is sucked and compressed alternately to complete the working cycle of the compressor. Since the compressor uses the blades and other parts to seal through contact and sliding, the precision of the blades is extremely high. In the manufacturing of blades, the blades need to be chamfered. During the processing, manual unloading is used, and the blades are manually arranged and then placed in the blade box, which requires a lot of manual time, resulting in each worker only being able to look after one chamfering machine at the same time.
[0003] In order to overcome the shortcomings of the prior art, people have proposed various solutions through continuous exploration. For example, a Chinese patent discloses a feeding device for an automatic chamfering machine [application number: 202323050095.1], which includes a chassis, a fixed frame fixedly connected to the back of the chassis, a conveying mechanism provided on the fixed frame, and a conveying mechanism including an auger, a fixed plate fixedly connected to both sides of the upper surface of the fixed frame, a movable groove is provided in the middle of the upper surface of the fixed frame, and a limit mechanism is provided above the fixed plate. However, during use, this solution still makes it difficult to automatically sort the chamfered blades, and has the disadvantages of low automation, requiring more workers, and high labor intensity. Utility Model Content
[0004] The purpose of the utility model is to provide an automatic unloading device for a blade chamfering machine in view of the above problems. The technical problem to be solved by the utility model is how to realize automatic unloading and sorting of chamfered blades.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] An automatic unloading device for a blade chamfering machine comprises a unloading frame, the unloading frame is provided with a unloading channel and a guide channel, the unloading channel is provided with a unloading conveying assembly for conveying blades to the head end of the guide channel, the head end of the guide channel is provided with a first automatic pushing structure for pushing blades from the tail end of the unloading channel into the guide channel, the tail end of the guide channel is provided with a second automatic pushing structure for pushing blades pushed out from the tail end of the guide channel to a storage area, the feeding direction of the unloading channel is perpendicular to the feeding direction of the guide channel, and a blocking block is placed in the guide channel to prevent the blades from lying down.
[0007] In the above-mentioned automatic blanking device of the blade chamfering machine, the first automatic material pushing structure includes a guide rail and a slider. The bottom of the guide rail is fixedly connected to the blanking machine frame. The slider can slide horizontally along the axial direction of the guide rail. A material pushing mounting plate is fixedly arranged on the top of the slider, and a material pushing block is fixedly arranged at the end of the material pushing mounting plate. The material pushing block faces the head end of the guiding channel.
[0008] In the above-mentioned automatic blanking device of the blade chamfering machine, a cylinder fixing plate and a cylinder are arranged on the blanking machine frame. A floating joint is connected to the power shaft of the cylinder. One end of the floating joint is connected to the power shaft of the cylinder, and the other end is connected to the material pushing mounting plate.
[0009] In the above-mentioned automatic blanking device of the blade chamfering machine, a fixed discharge baffle and an adjustable discharge baffle for forming a guiding channel are arranged on the blanking machine frame. A plurality of wear-resistant pads are laid at the bottom of the guiding channel. The bottom of the wear-resistant pads is fixed to the blanking machine frame. The adjustable discharge baffle is provided with a screwing groove, and the adjustable discharge baffle is fixed to the blanking machine frame through bolts or screws.
[0010] In the above-mentioned automatic blanking device of the blade chamfering machine, the second automatic material pushing structure includes a wide plate, a side plate and a material pushing plate that can reciprocate linearly in the horizontal direction. The notch formed by the wide plate, the side plate and the material pushing plate is communicated with the tail end of the guiding channel. The wide plate is fixed to the blanking machine frame through a connecting plate.
[0011] In the above-mentioned automatic blanking device of the blade chamfering machine, a material pushing cylinder is fixedly arranged on the wide plate. The power shaft of the material pushing cylinder is connected to the material pushing plate. The axis line of the power shaft of the material pushing cylinder is perpendicular to the center line of the guiding channel. An inductor fixing block and an inductor are also arranged on the wide plate. The inductor faces the opening at the tail end of the guiding channel.
[0012] In the above-mentioned automatic blanking device of the blade chamfering machine, the blanking conveying component includes a discharge port belt mounting plate and a blanking conveyor belt. The blanking conveyor belt is fixed to the side of the discharge port belt mounting plate through a driving belt pulley and a driven belt pulley. The driving belt pulley is driven by a motor and a reducer. An adjustable guiding member is arranged above the blanking conveyor belt.
[0013] In the above-mentioned automatic blanking device of the blade chamfering machine, a blanking side transition plate is installed on one side of the discharge port belt mounting plate close to the driving belt pulley. Belt support plate mounting blocks and round belt support plates for fixing the blanking conveyor belt are arranged on the discharge port belt mounting plate.
[0014] In the above-mentioned automatic blanking device of the blade chamfering machine, the adjustable guiding member includes an adjustable guiding block for the blanking belt raceway and a fixed guiding block for the blanking belt raceway. The fixed guiding block for the blanking belt raceway is fixed to the belt support plate mounting block. The adjustable guiding block for the blanking belt raceway is provided with a screwing groove, and the adjustable guiding block for the blanking belt raceway and the belt support plate mounting block are fixed by bolts or screws. A reinforcing rib plate is provided between the blanking port belt mounting plate and the blanking frame.
[0015] In the above-mentioned automatic blanking device of the blade chamfering machine, a water receiving frame seat and a blanking side water receiving tray are further provided on the blanking frame.
[0016] Compared with the existing technology, the advantages of the present utility model are as follows:
[0017] 1. During the process of transporting the blades in the present utility model, the blades located at the blanking channel are transmitted to the position between the first automatic pushing structure and the head end of the guiding channel through frictional force by the blanking conveying assembly. The blades are pushed leftward into the guiding channel by the first automatic pushing structure. The baffle block can prevent the blades from lying down and can neatly arrange the blades. When the blades exit from the tail end of the guiding channel, the whole row of blades is pushed out by the second automatic pushing structure and loaded into the blade box. This device can automatically blank the blades, reducing the workload of manually placing the blades, greatly reducing the manual labor intensity and labor cost. The structure is compact and reasonable, and it is convenient to use.
[0018] 2. In the present utility model, the blanking conveyor belt, the adjustable guiding block for the blanking belt raceway and the fixed guiding block for the blanking belt raceway form a blanking channel for guiding the transmission of the blades. The adjustable guiding block for the blanking belt raceway can be adjusted horizontally through the screwing groove in cooperation with bolts or screws, facilitating the formation of blanking channels with different widths to adapt to the transmission of blades with different thicknesses.
[0019] Other advantages, objectives and features of the present utility model will be partially reflected by the following description, and partially will also be understood by those skilled in the art through the research and practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of the present utility model.
[0021] Figure 2 is a top view of the present utility model.
[0022] Figure 3 is a partial structural schematic diagram of the present utility model.
[0023] Figure 4 is a partial structural schematic diagram of the present utility model in another direction.
[0024] Figure 5 It is a schematic structural diagram in another direction of the present utility model.
[0025] In the figure: blanking frame 1, water receiving frame base 2, blanking channel 200, blanking side water receiving tray 3, fixed discharge baffle 5, adjustable discharge baffle 6, guiding channel 7, wear-resistant backing plate 7a, material blocking block 7b, first automatic material pushing structure 8, guide rail 8a, slider 8b, material pushing mounting plate 8c, material pushing block 8d, cylinder fixing plate 8e, cylinder 8f, floating joint 8g, second automatic material pushing structure 9, wide plate 9a, side plate 9b, material pushing plate 9c, connecting plate 9d, material pushing cylinder 9e, inductor fixing block 9f, blanking conveying assembly 400, blanking conveyor belt 10, driving pulley 10a, driven pulley 10b, motor 10c, reducer 10d, blanking side transition plate 10e, belt supporting plate mounting block 10f, round belt supporting plate 10g, discharge port belt mounting plate 100, adjustable guiding member 20, discharge belt raceway adjustable guiding block 20a, discharge belt raceway fixed guiding block 20b. Specific embodiments
[0026] The present utility model will be further described below with reference to the accompanying drawings.
[0027] As Figures 1-5 shown, an automatic blanking device for a blade chamfering machine includes a blanking frame 1, and is characterized in that the blanking frame 1 is provided with a blanking channel 200 and a guiding channel 7. A blanking conveying assembly 400 for conveying blades to the head end of the guiding channel 7 is arranged at the blanking channel 200. A first automatic material pushing structure 8 for pushing the blades from the tail end of the blanking channel 200 into the guiding channel 7 is arranged at the head end of the guiding channel 7. A second automatic material pushing structure 9 for pushing the blades pushed out from the tail end of the guiding channel 7 to the storage area is arranged at the tail end of the guiding channel 7. The feeding direction of the blanking channel 200 is perpendicular to the feeding direction of the guiding channel 7. A material blocking block 7b for preventing the blades from lying down is placed in the guiding channel 7.
[0028] In this embodiment, during the transportation of the blades, the blades located at the blanking channel 200 are transmitted to the position between the first automatic material pushing structure 8 and the head end of the guiding channel 7 by the blanking conveying assembly 400 through friction. The blades are pushed leftward into the guiding channel 7 by the first automatic material pushing structure 8. The material blocking block 7b can prevent the blades from lying down and can neatly arrange the blades. When the blades go out from the tail end of the guiding channel 7, the whole row of blades is pushed out by the second automatic material pushing structure 9 and loaded into the blade box. This device can automatically blank the blades, reduce the workload of manually placing the blades, greatly reduce the labor intensity and labor cost of the workers, and has a compact and reasonable structure and is convenient to use.
[0029] Combined with Figures 1-5As shown, the first automatic feeding structure 8 includes a guide rail 8a and a slider 8b. The bottom of the guide rail 8a is fixedly connected to the blanking frame 1. The slider 8b can slide horizontally along the axial direction of the guide rail 8a. A feeding mounting plate 8c is fixedly provided on the top of the slider 8b. A feeding block 8d is fixedly provided at the end of the feeding mounting plate 8c. The feeding block 8d faces the front end of the guiding channel 7. A cylinder fixing plate 8e and a cylinder 8f are provided on the blanking frame 1. A floating joint 8g is connected to the power shaft of the cylinder 8f. One end of the floating joint 8g is connected to the power shaft of the cylinder 8f, and the other end is connected to the feeding mounting plate 8c.
[0030] In this embodiment, when the blade is conveyed by the blanking conveying assembly 400 to the position between the feeding block 8d and the guiding channel 7, the cylinder 8f is started at this time. The floating joint 8g of the cylinder 8f drives the feeding mounting plate 8c and the feeding block 8d to move leftward. The blade is pushed into the guiding channel 7 by the feeding block 8d. During the movement of the feeding block 8d, the sliding fit between the slider 8b and the guide rail 8a plays a limiting role on the feeding block 8d, and the feeding accuracy is high.
[0031] Combined Figure 1 、 Figure 2 As shown, a fixed discharge baffle 5 and an adjustable discharge baffle 6 for forming the guiding channel 7 are provided on the blanking frame 1. A plurality of wear-resistant pads 7a are laid at the bottom of the guiding channel 7. The bottom of the wear-resistant pads 7a is fixed to the blanking frame 1. The adjustable discharge baffle 6 is provided with a screwing groove. The adjustable discharge baffle 6 is fixed to the blanking frame 1 by bolts or screws.
[0032] In this embodiment, the position of the adjustable discharge baffle 6 can be adjusted so that the guiding channel 7 forms a reasonable width to adapt to the transmission of blades with different widths. When the blade moves in the guiding channel 7, the wear-resistant pads 7a contact the bottom of the blade, which can prevent the wear-resistant pads 7a from being worn.
[0033] The second automatic feeding structure 9 includes a wide plate 9a, a side plate 9b, and a pushing plate 9c that can reciprocate linearly in the horizontal direction. The notch formed by the wide plate 9a, the side plate 9b, and the pushing plate 9c is communicated with the tail end of the guiding channel 7. The wide plate 9a is fixed to the blanking frame 1 through a connecting plate 9d. A pushing cylinder 9e is fixedly provided on the wide plate 9a. The power shaft of the pushing cylinder 9e is connected to the pushing plate 9c. The axis of the power shaft of the pushing cylinder 9e is perpendicular to the center line of the guiding channel 7. An inductor fixing block 9f and an inductor are also provided on the wide plate 9a. The inductor faces the opening at the tail end of the guiding channel 7.
[0034] In this embodiment, after the blade is pushed out from the guiding channel 7, it enters the wide plate 9a from the notch formed by the wide plate 9a, the side plate 9b and the pusher plate 9c. When the sensor on the sensor fixing block 9f senses the material blocking block 7b, the pusher cylinder 9e is started. The piston rod of the pusher cylinder 9e drives the pusher plate 9c to push out the whole row of blades, arrange them on the wide plate 9a, and finally load them into the blade box.
[0035] Combined with Figures 2-5 As shown, the blanking conveying assembly 400 includes a discharge port belt mounting plate 100 and a blanking conveyor belt 10. The blanking conveyor belt 10 is fixed to the side of the discharge port belt mounting plate 100 through a driving pulley 10a and a driven pulley 10b. The driving pulley 10a is driven by a motor 10c and a speed reducer 10d. An adjustable guiding member 20 is arranged above the blanking conveyor belt 10. A blanking side transition plate 10e is installed on one side of the discharge port belt mounting plate 100 close to the driving pulley 10a. Belt support plate mounting blocks 10f and round belt support plates 10g for fixing the blanking conveyor belt 10 are arranged on the discharge port belt mounting plate 100.
[0036] In this embodiment, during the transportation of the blades, the adjustable guiding member 20 can adjust the conveying gap to adapt to blades of different thicknesses. The discharge port belt mounting plate 100 is used to fix the driving pulley 10a and the driven pulley 10b. The blanking conveyor belt 10 is wound around the driving pulley 10a and the driven pulley 10b. The driving pulley 10a is driven by the motor 10c and the speed reducer 10d. The blanking side transition plate 10e plays a role in transitioning the blades. The belt support plate mounting blocks 10f and the round belt support plates 10g can keep the upper surface of the blanking conveyor belt 10 horizontal, enabling better and more stable transportation of the blades.
[0037] Combined with Figures 3-4 As shown, the adjustable guiding member 20 includes a discharge belt raceway adjustable guiding block 20a and a discharge belt raceway fixed guiding block 20b. The discharge belt raceway fixed guiding block 20b is fixed to the belt support plate mounting block 10f. The discharge belt raceway adjustable guiding block 20a is provided with a screwing groove. The discharge belt raceway adjustable guiding block 20a and the belt support plate mounting block 10f are fixed by bolts or screws. A reinforcing rib plate is arranged between the discharge port belt mounting plate 100 and the blanking rack 1.
[0038] In this embodiment, the blanking conveyor belt 10, the discharge belt raceway adjustable guiding block 20a and the discharge belt raceway fixed guiding block 20b form a blanking channel 200 for guiding the transmission of the blades. The discharge belt raceway adjustable guiding block 20a can be adjusted horizontally through the screwing groove in cooperation with bolts or screws, facilitating the formation of blanking channels 200 with different widths to adapt to the transmission of blades of different thicknesses.
[0039] Combined with Figures 1-2 As shown, a water receiving frame seat 2 and a blanking side water receiving tray 3 are further provided on the blanking rack 1.
[0040] In this embodiment, the water receiving frame seat 2 and the blanking side water receiving tray 3 are used to collect the coolant carried on the blades into the water storage tank of the equipment.
[0041] The working principle of the present utility model is as follows:
[0042] During the transportation of the blades, the blanking conveyor belt 10, the adjustable guide block 20a of the discharge belt raceway, and the fixed guide block 20b of the discharge belt raceway form a blanking channel 200 together, which is used for guiding the transmission of the blades. The adjustable guide block 20a of the discharge belt raceway can be adjusted horizontally through the screw connection groove in cooperation with bolts or screws, facilitating the formation of blanking channels 200 with different widths to adapt to the transmission of blades with different thicknesses. The discharge port belt mounting plate 100 is used to fix the driving pulley 10a and the driven pulley 10b. The blanking conveyor belt 10 is wound around the driving pulley 10a and the driven pulley 10b. The driving pulley 10a is driven by a motor 10c and a speed reducer 10d. The blanking side transition plate 10e plays a role in transitioning the blades. The belt support plate mounting block 10f and the round belt support plate 10g can keep the upper surface of the blanking conveyor belt 10 horizontal, enabling better and more stable transportation of the blades. When the blades are transported to the position between the pushing block 8d and the guiding channel 7 by the blanking conveyor belt 10, the air cylinder 8f is started at this time. The floating joint 8g of the air cylinder 8f drives the pushing mounting plate 8c and the pushing block 8d to move leftward, and the blades are pushed into the guiding channel 7 through the pushing block 8d. During the movement of the pushing block 8d, the sliding fit between the slider 8b and the guide rail 8a plays a role in limiting the pushing block 8d, with high pushing accuracy. When the blades move in the guiding channel 7, the wear-resistant backing plate 7a contacts the bottom of the blades, which can prevent the wear-resistant backing plate 7a from being worn. The stop block 7b can prevent the blades from lying down, with good safety. When the blades are pushed out from the guiding channel 7, they enter the wide plate 9a from the notch formed by the wide plate 9a, the side plate 9b, and the pushing plate 9c. When the sensor on the sensor fixing block 9f senses the stop block 7b, the pushing air cylinder 9e is started. The piston rod of the pushing air cylinder 9e drives the pushing plate 9c to push out the whole row of blades and arrange them on the wide plate 9a, and finally they are loaded into the blade box. The water receiving frame seat 2 and the blanking side water receiving tray 3 are used to collect the coolant carried on the blades into the water storage tank of the equipment. This device can automatically blank the blades, reducing the workload of manually placing the blades, greatly reducing the labor intensity and labor cost of the workers. The structure is compact and reasonable, and it is convenient to use.
[0043] The specific embodiments described herein are merely illustrative of the spirit of the present utility model. Those skilled in the art to which the present utility model pertains can make various modifications or supplements to the described specific embodiments or use similar ways of substitution, but will not deviate from the spirit of the present utility model.
[0044] Although terms such as blanking frame 1, water receiving frame base 2, blanking channel 200, blanking side water receiving tray 3, fixed discharge baffle 5, adjustable discharge baffle 6, guiding channel 7, wear-resistant backing plate 7a, material blocking block 7b, first automatic material pushing structure 8, guide rail 8a, slider 8b, material pushing mounting plate 8c, material pushing block 8d, cylinder fixing plate 8e, cylinder 8f, floating joint 8g, second automatic material pushing structure 9, wide plate 9a, side plate 9b, material pushing plate 9c, connecting plate 9d, material pushing cylinder 9e, inductor fixing block 9f, blanking conveying assembly 400, blanking conveyor belt 10, driving pulley 10a, driven pulley 10b, motor 10c, speed reducer 10d, blanking side transition plate 10e, belt support plate mounting block 10f, round belt support plate 10g, discharge port belt mounting plate 100, adjustable guiding member 20, discharge belt raceway adjustable guiding block 20a, discharge belt raceway fixed guiding block 20b are used more frequently herein, the possibility of using other terms is not excluded. The use of these terms is only to more conveniently describe and explain the essence of the present utility model, and interpreting them as any kind of additional limitation is contrary to the spirit of the present utility model.
Claims
1. An automatic unloading device for a blade chamfering machine, comprising an unloading frame (1), characterized in that: The unloading frame (1) is provided with an unloading channel (200) and a guide channel (7); the unloading channel (200) is provided with an unloading conveying assembly (400) for conveying blades to the front end of the guide channel (7); the front end of the guide channel (7) is provided with a first automatic pushing structure (8) for pushing blades from the rear end of the unloading channel (200) into the guide channel (7); the rear end of the guide channel (7) is provided with a second automatic pushing structure (9) for pushing blades pushed out from the rear end of the guide channel (7) into a storage area; the feeding direction of the unloading channel (200) is perpendicular to the feeding direction of the guide channel (7); a blocking block (7b) is placed in the guide channel (7) to prevent the blades from lying down.
2. The automatic unloading device for blade chamfering machine according to claim 1 is characterized in that: The first automatic material pushing structure (8) comprises a guide rail (8a) and a slider (8b), wherein the bottom of the guide rail (8a) is fixedly connected to the unloading frame (1), and the slider (8b) can slide horizontally along the axial direction of the guide rail (8a), and a material pushing mounting plate (8c) is fixedly arranged on the top of the slider (8b), and a material pushing block (8d) is fixedly arranged at the end of the material pushing mounting plate (8c), and the material pushing block (8d) is directly opposite to the head end of the guide channel (7).
3. The automatic unloading device for blade chamfering machine according to claim 2 is characterized in that: The unloading machine frame (1) is provided with a cylinder fixing plate (8e) and a cylinder (8f), the power shaft of the cylinder (8f) is connected with a floating joint (8g), one end of the floating joint (8g) is connected to the power shaft of the cylinder (8f), and the other end is connected to the pusher mounting plate (8c).
4. The automatic unloading device for a blade chamfering machine according to any one of claims 1 to 3, characterized in that: The unloading frame (1) is provided with a fixed unloading baffle (5) and an adjustable unloading baffle (6) forming a guide channel (7); a plurality of wear-resistant pads (7a) are laid on the bottom of the guide channel (7); the bottom of the wear-resistant pads (7a) is fixed to the unloading frame (1); the adjustable unloading baffle (6) is provided with a screw connection groove; the adjustable unloading baffle (6) is fixed to the unloading frame (1) by bolts or screws.
5. The automatic unloading device for a blade chamfering machine according to any one of claims 1 to 3, characterized in that: The second automatic material pushing structure (9) comprises a wide plate (9a), a side plate (9b) and a material pushing plate (9c) capable of reciprocating linear motion in a horizontal direction; a notch formed by the wide plate (9a), the side plate (9b) and the material pushing plate (9c) is connected to the rear end of the guide channel (7); the wide plate (9a) is fixed to the unloading frame (1) via a connecting plate (9d).
6. The automatic unloading device for blade chamfering machine according to claim 5, characterized in that: A push cylinder (9e) is fixedly provided on the wide plate (9a), a power shaft of the push cylinder (9e) is connected to the push plate (9c), an axis of the power shaft of the push cylinder (9e) is perpendicular to the center line of the guide channel (7), and a sensor fixing block (9f) and a sensor are also provided on the wide plate (9a), and the sensor is directly opposite to the opening at the rear end of the guide channel (7).
7. The automatic unloading device for blade chamfering machine according to claim 3 is characterized in that: The unloading conveying assembly (400) comprises a discharge port belt mounting plate (100) and a unloading conveying belt (10); the unloading conveying belt (10) is fixed to the side of the discharge port belt mounting plate (100) via a driving pulley (10a) and a driven pulley (10b); the driving pulley (10a) is driven by a motor (10c) and a reducer (10d); an adjustable guide member (20) is provided above the unloading conveying belt (10).
8. The automatic unloading device for blade chamfering machine according to claim 7, characterized in that: A material discharge side transition plate (10e) is installed on the side of the discharge port belt mounting plate (100) close to the driving pulley (10a), and a belt support plate mounting block (10f) and a round belt support plate (10g) for fixing the material discharge conveyor belt (10) are provided on the discharge port belt mounting plate (100).
9. The automatic unloading device for a blade chamfering machine according to claim 8, characterized in that: The adjustable guide member (20) comprises an adjustable guide block (20a) of the discharge belt roller and a fixed guide block (20b) of the discharge belt roller. The fixed guide block (20b) of the discharge belt roller is fixed to the belt support plate mounting block (10f). The adjustable guide block (20a) of the discharge belt roller is provided with a screw connection groove. The adjustable guide block (20a) of the discharge belt roller is fixed to the belt support plate mounting block (10f) by bolts or screws. A reinforcing rib plate is provided between the discharge port belt mounting plate (100) and the unloading frame (1).
10. The automatic unloading device for blade chamfering machine according to claim 1, characterized in that: The unloading machine frame (1) is also provided with a water receiving frame seat (2) and a unloading side water receiving tray (3).
Citation Information
Patent Citations
A feeding device of automatic chamfering machine
CN221018964U