Quenching equipment and process for machining chain parts
By designing the cleaning roller and auxiliary cleaning components in the cleaning mechanism and combining them with gas injection, the problem of impurities adhering to the mesh belt is solved, the cleaning efficiency and cleanliness of the chain quenching equipment are improved, and the service life of the cleaning brush is extended.
Patent Information
- Application Number
- CN202510931061.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-10-10
AI Technical Summary
In a continuous mesh belt furnace, impurities generated during the quenching process tend to adhere to the mesh belt, affecting the chain transmission stability and quenching quality. The cleaning brush will also be contaminated with impurities while removing impurities, reducing the cleaning ability and service life.
A cleaning mechanism is designed, including a cleaning roller and an auxiliary cleaning component. The cleaning roller is driven to rotate by a linkage component, and impurities and residues are accurately scraped off by combining a cleaning rod and gas jet, thereby improving cleaning efficiency and cleanliness.
It achieves efficient cleaning of the mesh belt, extends the service life of the cleaning brush, improves quenching quality and production efficiency, and reduces mesh belt wear.
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Figure CN120758719A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of chain quenching, in particular to a quenching device and process for processing chain parts. Background Art
[0002] As a key component in mechanical transmission systems, the quality of chains is directly related to the operational stability and reliability of mechanical equipment. Quenching plays a crucial role in the chain component processing process, significantly improving the chain's core mechanical properties such as hardness, strength, and wear resistance. Currently, continuous mesh belt furnaces, with their efficient and continuous production capabilities, have become the mainstream equipment for chain component quenching. In these furnaces, chain components are transported via a mesh belt, undergoing heating and quenching operations in sequence. However, impurities generated during the quenching process tend to adhere to the mesh belt, disrupting the smoothness of the chain transmission and causing problems such as jamming and misalignment. They can also cause secondary contamination of the chain component surface, seriously impacting quenching quality. Long-term impurity accumulation can also accelerate mesh belt wear. In actual use, mesh belts are typically cleaned regularly with a cleaning brush. However, while removing impurities, the brush itself becomes contaminated. If not cleaned promptly, the brush's cleaning ability is significantly reduced. Furthermore, residual impurities accelerate brush wear, reducing the brush's service life. Summary of the Invention
[0003] The object of the present invention is to provide a quenching device and process for processing chain parts to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a quenching device for processing chain parts, comprising a quenching furnace body and a conveyor belt arranged in the quenching furnace body, and further comprising:
[0005] A cleaning mechanism is provided inside the quenching furnace body and is used to clean the conveyor belt;
[0006] The cleaning mechanism includes a lifting assembly and a supporting bucket, a connecting frame is fixedly mounted on the supporting bucket, and a cleaning roller is rotatably mounted on the connecting frame;
[0007] Both sides of the cleaning roller are provided with cleaning cavity plates, and a plurality of cleaning rods are connected to the cleaning cavity plates. The spacing between the cleaning rods is adapted to the gaps between the bristles on the cleaning roller, and the cleaning rods can be accurately inserted into the gaps between the bristles to scrape off impurities contained therein;
[0008] An auxiliary cleaning component is connected to the cleaning cavity plate, and a linkage component is provided on the cleaning roller and the auxiliary cleaning component. The linkage component is used to drive the cleaning roller to rotate and simultaneously drive the auxiliary cleaning component to generate gas. The gas is transmitted to the cleaning cavity plate and sprayed out through the cleaning rod to achieve auxiliary cleaning of the residue on the cleaning roller.
[0009] Preferably, the linkage assembly includes a connecting long rod rotatably mounted on a connecting frame, a worm 1 is fixedly mounted on the connecting long rod, and a worm wheel 1 is engaged with the worm 1.
[0010] Preferably, a connecting shaft is fixedly installed in the middle of the cleaning roller, the connecting shaft is rotatably connected to the connecting frame, and the worm gear is fixedly installed on the connecting shaft.
[0011] Preferably, a first bevel gear is fixedly mounted on the connecting rod, a matching bevel gear is meshed on the first bevel gear, a matching worm is fixedly connected to the lower end of the matching bevel gear, a supporting connecting plate is rotatably connected to the matching worm, a fixed support block is fixedly mounted on the supporting connecting plate, a connecting frame is fixedly mounted on the lower end of the fixed support block, and a connecting frame is fixedly mounted on the lower end of the connecting frame, and a matching worm wheel is meshed on the matching worm.
[0012] Preferably, one end of the connecting frame is fixedly connected to a connecting support plate, one end of the connecting support plate is fixedly connected to a support frame, the auxiliary cleaning assembly includes a reciprocating screw rotatably connected to a fixed support block, one end of the reciprocating screw is fixedly connected to a matching worm gear, and the reciprocating screw is threaded with a movable slider.
[0013] Preferably, the movable slider is slidably connected to the connecting support plate, one end of the movable slider is fixedly connected to a sliding connecting rod, one end of the reciprocating screw is rotatably connected to a cavity column, the cavity column is fixed on the support frame, the sliding connecting rod slides into the interior of the cavity column, and one end of the sliding connecting rod is fixedly connected to a movable piston plate.
[0014] Preferably, the movable piston plate is slidably arranged inside the cavity column, and one end of the cavity column is connected to an air inlet connecting pipe and an air outlet bent pipe, the air inlet connecting pipe is provided with a one-way air inlet valve, the air outlet bent pipe is provided with a one-way air outlet valve, the air outlet bent pipe is connected to a diverter cavity plate, the diverter cavity plate is fixedly mounted on the cavity column, and a plurality of air guide connecting pipes are connected on the diverter cavity plate, and the air guide connecting pipes are connected to the cleaning cavity plate.
[0015] Preferably, the lifting assembly includes a connecting cavity connected to the lower end of the support bucket, a telescopic hose is connected to the connecting cavity, a supporting connecting plate is fixedly connected to the lower end of the connecting cavity, and a telescopic connecting plate is fixedly connected to the lower end of the support connecting plate.
[0016] Preferably, the lower end of the telescopic connecting plate is fixedly connected to a fixed bottom plate, the fixed bottom plate is arranged inside the quenching furnace body, the middle part of the fixed bottom plate is fixedly connected to an electric telescopic rod, and the output end of the electric telescopic rod is fixedly connected to the supporting connecting plate.
[0017] A chain component processing and quenching process comprises the following steps:
[0018] S1: Place the chain parts on the conveyor belt and start the quenching furnace to quench the chain;
[0019] S2: After quenching is completed, the cleaning roller is driven by the lifting component to contact the conveyor belt, and the conveyor belt is started to transmit slowly;
[0020] S3: The linkage assembly operates to drive the cleaning roller to rotate and clean the conveyor belt. The impurities between the bristles of the cleaning roller are scraped off by the cleaning rod.
[0021] S4: The linkage assembly simultaneously drives the auxiliary cleaning assembly to generate gas. The gas is ejected from the cleaning rod through the cleaning cavity plate to further clean the residue remaining on the cleaning roller, ensuring the cleanliness of the cleaning roller so as to continuously and efficiently clean the conveyor belt.
[0022] Compared with the prior art, the present invention has the following beneficial effects:
[0023] 1. The cleaning cavity plates on both sides of the cleaning roller and the cleaning rods connected to them can be accurately inserted into the gaps between the brushes of the cleaning roller to completely scrape off the impurities. At the same time, the linkage assembly drives the auxiliary cleaning assembly to generate gas, which is ejected through the cleaning rod to further clean the residue remaining on the cleaning roller. By combining scraping and air jet cleaning, the cleaning roller is cleaned and the cleaning quality is effectively guaranteed.
[0024] 2. The auxiliary cleaning component realizes intermittent air jet cleaning of the cleaning roller by moving the slider back and forth on the connecting support plate. When the slider moves toward the side close to the cavity column, it jets and cleans, and when it moves away from the side, it accumulates air, thereby realizing auxiliary cleaning and improving the service life of the cleaning brush.
[0025] 3. The electric telescopic rod drives the supporting connecting plate and the supporting bucket to move upward, which can quickly make the cleaning roller contact with the surface of the conveyor belt. While the conveyor belt is slowly transmitted, the motor drives the cleaning roller to rotate, which improves the cleaning efficiency of the conveyor belt. Compared with traditional manual cleaning or simple mechanical cleaning methods, the cleaning work of the conveyor belt can be completed in a shorter time, thereby improving the cleaning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1The overall structure of the present application is shown in the schematic diagram.
[0027] Figure 2 The position of the cleaning mechanism of the present application is shown in the schematic diagram.
[0028] Figure 3 The overall structure of the cleaning mechanism of the present application is shown in the schematic diagram.
[0029] Figure 4 The structure of the cleaning roller of the present application is shown in the schematic diagram.
[0030] Figure 5 The structure of the cavity column of the present application is shown in the schematic diagram.
[0031] Figure 6 The position of the cleaning roller of the present application is shown in the schematic diagram.
[0032] Figure 7 The side view of the cavity column of the present application is shown in the schematic diagram.
[0033] Figure 8 The structure of the connecting support plate of the present application is shown in the schematic diagram.
[0034] Figure 9 The structure of the connecting shaft of the present application is shown in the schematic diagram.
[0035] Figure 10 The structure of the linkage assembly of the present application is shown in the schematic diagram.
[0036] Figure 11 The structure of the shunt cavity plate of the present application is shown in the schematic diagram.
[0037] Figure 12 The structure of the cleaning rod of the present application is shown in the schematic diagram.
[0038] Figure 13 The internal structure of the cavity column of the present application is shown in the schematic diagram.
[0039] In the figure: 1, quenching furnace body; 2, conveying mesh belt; 3, cleaning mechanism; 4, cleaning roller; 41, connecting shaft; 5, cleaning cavity plate; 51, cleaning rod; 6, linkage assembly; 7, auxiliary cleaning assembly; 8, connecting frame; 9, support hopper; 10, connecting cavity; 11, support connecting plate; 12, fixed bottom plate; 13, electric telescopic rod; 14, telescopic connecting plate; 15, telescopic hose; 16, support frame; 17, connecting support plate; 18, connecting frame; 19, fixed support block; 61, electric motor; 62, connecting long rod; 63, worm one; 64, worm gear one; 65, first bevel gear; 66, matching bevel gear; 67, matching worm; 68, support connecting plate; 69, matching worm gear; 71, moving sliding block; 72, reciprocating screw rod; 73, sliding connecting rod; 74, cavity column; 75, moving piston piece; 76, air inlet connecting pipe; 77, air outlet elbow; 78, shunt cavity plate; 79, air guide connecting pipe. DETAILED DESCRIPTION
[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0041] See also Figures 1 to 13 The present invention provides a technical solution: a quenching device for processing chain parts, comprising a quenching furnace body 1 and a conveyor mesh belt 2 arranged in the quenching furnace body 1, and further comprising: a cleaning mechanism 3, arranged inside the quenching furnace body 1, for cleaning the conveyor mesh belt 2; the cleaning mechanism 3 comprises a lifting assembly and a supporting bucket 9, a connecting frame 8 is fixedly mounted on the supporting bucket 9, and a cleaning roller 4 is rotatably arranged on the connecting frame 8; cleaning cavity plates 5 are arranged on both sides of the cleaning roller 4, and a plurality of cleaning rods 51 are connected to the cleaning cavity plates 5, and each cleaning rod The spacing of 51 is adapted to the gap between the bristles on the cleaning roller 4, and can be accurately inserted into the gap between the bristles to scrape off the impurities contained therein; an auxiliary cleaning component 7 is connected to the cleaning cavity plate 5, and a linkage component 6 is provided on the cleaning roller 4 and the auxiliary cleaning component 7. The linkage component 6 is used to drive the cleaning roller 4 to rotate and drive the auxiliary cleaning component 7 to generate gas. The gas is transmitted to the cleaning cavity plate 5 and sprayed out through the cleaning rod 51 to achieve auxiliary cleaning of the residue on the cleaning roller 4; the cleaning cavity plates 5 on both sides of the cleaning roller 4 and the cleaning cavity plates 5 and the cleaning cavity plates on the cleaning roller 4 are connected to the cleaning cavity plates 5 and the cleaning cavity plates on the cleaning cavity plates 5 and the cleaning cavity plates on the cleaning cavity plates The connected cleaning rod 51 can be accurately inserted into the gap between the cleaning roller 4 bristles to thoroughly scrape off the mixed impurities. At the same time, the linkage component 6 drives the auxiliary cleaning component 7 to generate gas, which is sprayed through the cleaning rod 51 to further clean the residue remaining on the cleaning roller 4. By combining scraping and air jet cleaning, the cleaning roller 4 is cleaned and the cleaning quality is effectively guaranteed. The auxiliary cleaning component 7 realizes intermittent air jet cleaning of the cleaning roller 4 by moving the slider 71 back and forth on the connecting support plate 17. When the slider 71 moves toward the side close to the cavity column 74, it sprays air and accumulates air when it moves away from the side, thereby improving the service life of the cleaning brush. The electric telescopic rod 13 drives the supporting connecting plate 11 and the supporting bucket 9 to move upward, which can quickly make the cleaning roller 4 contact with the surface of the conveyor mesh belt 2. While the conveyor mesh belt 2 is slowly driven, the motor 61 drives the cleaning roller 4 to rotate, which greatly improves the cleaning efficiency of the conveyor mesh belt 2. Compared with traditional manual cleaning or simple mechanical cleaning methods, the cleaning work of the conveyor mesh belt 2 can be completed in a shorter time, thereby improving the cleaning efficiency.
[0042] like Figures 8 to 10As shown, the linkage assembly 6 includes a connecting rod 62 rotatably mounted on the connecting frame 8, a motor 61 is fixedly mounted on the connecting frame 8, the output end of the motor 61 is fixedly connected to one end of the connecting rod 62, the motor 61 drives the connecting rod 62 to rotate, a worm 63 is fixedly mounted on the connecting rod 62, a worm gear 64 is engaged with the worm 63, a connecting shaft 41 is fixedly mounted in the middle of the cleaning roller 4, the connecting shaft 41 is rotatably connected to the connecting frame 8, and a worm gear 64 is fixedly mounted on the connecting rod. On the connecting shaft 41, a first bevel gear 65 is fixedly mounted on the connecting rod 62, a matching bevel gear 66 is meshed on the first bevel gear 65, a matching worm 67 is fixedly connected to the lower end of the matching bevel gear 66, a supporting connecting plate 68 is rotatably connected to the matching worm 67, a fixed support block 19 is fixedly mounted on the supporting connecting plate 68, a connecting frame 18 is fixedly connected to the lower end of the fixed support block 19, the connecting frame 18 is fixedly mounted on the lower end of the connecting frame 8, and a matching worm wheel 69 is meshed on the matching worm 67; start the motor 61, the motor 61 drives the connecting rod 62 to rotate, and the connecting rod 62 drives the worm 63 to rotate. Since the worm 63 is engaged with the worm gear 64, the rotation of the worm 63 drives the worm gear 64 to rotate, and the worm gear 64 drives the connecting shaft 41 to rotate, thereby driving the cleaning roller 4 to rotate. The rotating cleaning roller 4 cleans the conveyor mesh belt 2. During the cleaning process, impurities will be mixed between the bristles of the cleaning roller 4. Cleaning cavity plates 5 are provided on both sides of the cleaning roller 4. The cleaning cavity plates 5 are connected to the cleaning cavity plates 5. There are several cleaning rods 51, and the spacing between each cleaning rod 51 is adapted to the gap between the bristles on the cleaning roller 4, and can be accurately inserted into the gap between the bristles to scrape off impurities mixed therein. During the rotation of the connecting long rod 62, the first bevel gear 65 is driven to rotate, and the first bevel gear 65 is engaged with the matching bevel gear 66. The first bevel gear 65 drives the matching bevel gear 66 to rotate, thereby realizing the rotation of the matching worm 67. The matching worm 67 is engaged with the matching worm wheel 69, and the matching worm 67 drives the matching worm wheel 69 to rotate.
[0043] like Figures 10 to 13As shown, one end of the connecting frame 18 is fixedly connected with the connecting support plate 17, one end of the connecting support plate 17 is fixedly connected with the support frame 16, the auxiliary cleaning assembly 7 comprises a reciprocating screw rod 72 rotatably connected to the fixed support block 19, one end of the reciprocating screw rod 72 is fixedly connected with the cooperating worm wheel 69, the reciprocating screw rod 72 is threadedly connected with the moving sliding block 71, the moving sliding block 71 is slidably connected to the connecting support plate 17, one end of the moving sliding block 71 is fixedly connected with the sliding connecting rod 73, one end of the reciprocating screw rod 72 is rotatably connected with the cavity column body 74, the cavity column body 74 is fixed to the support frame 16, the sliding connecting rod 73 slidably extends into the cavity column body 74, one end of the sliding connecting rod 73 is fixedly connected with the moving piston sheet 75, the moving piston sheet 75 is slidably arranged in the cavity column body 74, one end of the cavity column body 74 is communicatively provided with the air inlet connecting pipe 76 and the air outlet elbow pipe 77, the air inlet connecting pipe 76 is provided with a one-way air inlet valve, the air outlet elbow pipe 77 is provided with a one-way air outlet valve, the air outlet elbow pipe 77 is communicatively provided with the shunt cavity plate 78, the shunt cavity plate 78 is fixedly installed on the cavity column body 74, the shunt cavity plate 78 is communicatively provided with a plurality of air guide connecting pipes 79, and the air guide connecting pipes 79 are communicatively provided with the cleaning cavity plate 5; the connecting long rod 62 drives the reciprocating screw rod 72 to rotate, the reciprocating screw rod 72 drives the moving sliding block 71 to reciprocally slide on the connecting support plate 17, the moving sliding block 71 drives the sliding connecting rod 73 to slide on the cavity column body 74, when the moving sliding block 71 moves towards one side close to the cavity column body 74, the moving piston sheet 75 is driven to slide in the cavity column body 74, the gas in the cavity column body 74 is unidirectionally pushed into the air outlet elbow pipe 77, the gas enters the shunt cavity plate 78 through the air outlet elbow pipe 77, then enters the cleaning cavity plate 5 through the air guide connecting pipe 79, and finally is sprayed out through the cleaning rod 51 to further clean the residues remaining on the cleaning wool roller 4, so that the cleanliness of the cleaning wool roller 4 is ensured, and the conveying mesh belt 2 can be continuously and efficiently cleaned, when the moving sliding block 71 moves away from one side away from the cavity column body 74, negative pressure is generated in the cavity column body 74, external gas enters the cavity column body 74 through the air inlet connecting pipe 76, gas storage is realized, and intermittent air jet cleaning of the cleaning wool roller 4 is realized.
[0044] As Figure 3As shown, the lifting assembly includes a connecting cavity 10 communicated with the lower end of the support hopper 9, a flexible hose 15 is communicated with the connecting cavity 10, the connecting cavity 10 is fixedly connected with a support connecting plate 11 at the lower end, the support connecting plate 11 is fixedly connected with an extension connecting plate 14 at the lower end, the extension connecting plate 14 is fixedly connected with a fixed bottom plate 12 at the lower end, the fixed bottom plate 12 is arranged in the quenching furnace body 1, the fixed bottom plate 12 is fixedly connected with an electric telescopic rod 13 at the middle part, the output end of the electric telescopic rod 13 is fixedly connected with the support connecting plate 11, in actual use, the flexible hose 15 is connected with a negative pressure cleaner, so that the residues cleaned by the cleaning roller 4 enter the connecting cavity 10 through the support hopper 9, and then are sucked away by the negative pressure cleaner through the flexible hose 15, avoiding flying and accumulation of the residues, and the flexible hose 15 can be extended to adapt to the lifting of the support hopper 9 and the connecting cavity 10.
[0045] A chain part machining and quenching process, comprising the following steps:
[0046] S1: placing the chain part on the conveying mesh belt 2, and starting the quenching furnace body 1 to quench the chain;
[0047] S2: after quenching, the cleaning roller 4 is brought into contact with the conveying mesh belt 2 by the lifting assembly, and the conveying mesh belt 2 is slowly driven;
[0048] S3: the linkage assembly 6 operates to drive the cleaning roller 4 to rotate and clean the conveying mesh belt 2, and the impurities between the bristles of the cleaning roller 4 are scraped off by the cleaning rod 51;
[0049] S4: the linkage assembly 6 simultaneously drives the auxiliary cleaning assembly 7 to generate gas, the gas is sprayed from the cleaning rod 51 through the cleaning cavity plate 5, and the residues remaining on the cleaning roller 4 are further cleaned, so as to ensure the cleanliness of the cleaning roller 4 and continuously and efficiently clean the conveying mesh belt 2.
[0050] In actual use, when the conveyor mesh belt 2 needs to be cleaned after quenching is completed, the electric telescopic rod 13 drives the supporting connecting plate 11 and the supporting bucket 9 to move upward, the cleaning roller 4 contacts the surface of the conveyor mesh belt 2, the conveyor mesh belt 2 is started to slowly drive, the motor 61 is started, the motor 61 drives the connecting long rod 62 to rotate, the connecting long rod 62 drives the worm 63 to rotate, because the worm 63 is engaged with the worm gear 64, the rotation of the worm 63 drives the worm gear 64 to rotate, the worm gear 64 drives the connecting shaft 41 to rotate, and then drives the cleaning roller 4 to rotate, and the rotating cleaning roller 4 drives the cleaning roller 4 to rotate. The roller 4 cleans the conveyor mesh belt 2. During the cleaning process, impurities will be mixed between the bristles of the cleaning roller 4. Cleaning cavity plates 5 are provided on both sides of the cleaning roller 4. A number of cleaning rods 51 are connected to the cleaning cavity plates 5. The spacing between the cleaning rods 51 is adapted to the gap between the bristles on the cleaning roller 4, and can be accurately inserted into the gap between the bristles to scrape off the impurities mixed therein. The connecting long rod 62 drives the first bevel gear 65 to rotate during the rotation process. The first bevel gear 65 is meshed with the matching bevel gear 66. The first bevel gear 65 drives the matching bevel gear 66 to rotate, realizing the matching bevel gear As the rod 67 rotates, the worm 67 meshes with the worm gear 69, and the worm 67 drives the worm gear 69 to rotate, and the connecting rod 62 drives the reciprocating screw 72 to rotate. The reciprocating screw 72 rotates to drive the moving slider 71 to slide back and forth on the connecting support plate 17, and the moving slider 71 drives the sliding connecting rod 73 to slide on the cavity column 74. When the moving slider 71 moves to the side close to the cavity column 74, it drives the moving piston piece 75 to slide inside the cavity column 74, pushing the gas in the cavity column 74 into the outlet elbow 77 in one direction. The gas passes through the outlet elbow 77. 7 enters the diversion cavity plate 78, and then enters the cleaning cavity plate 5 through the air guide connecting pipe 79, and finally is sprayed out through the cleaning rod 51 to further clean the residue remaining on the cleaning hair roller 4, ensuring the cleanliness of the cleaning hair roller 4, so as to continuously and efficiently clean the conveyor mesh belt 2. When the movable slider 71 moves to the side away from the cavity column 74, negative pressure is generated in the cavity column 74, and the outside gas enters the cavity column 74 through the air inlet connecting pipe 76, realizing air storage, and then realizing intermittent jet cleaning of the cleaning hair roller 4, thereby improving the service life of the cleaning brush.
[0051] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A quenching equipment for processing chain parts, comprising a quenching furnace body and a conveyor belt arranged in the quenching furnace body, characterized in that: Also includes: A cleaning mechanism is provided inside the quenching furnace body and is used to clean the conveyor belt; The cleaning mechanism includes a lifting assembly and a supporting bucket, a connecting frame is fixedly mounted on the supporting bucket, and a cleaning roller is rotatably mounted on the connecting frame; Both sides of the cleaning roller are provided with cleaning cavity plates, and a plurality of cleaning rods are connected to the cleaning cavity plates. The spacing between the cleaning rods is adapted to the gaps between the bristles on the cleaning roller, and the cleaning rods can be accurately inserted into the gaps between the bristles to scrape off impurities contained therein; An auxiliary cleaning component is connected to the cleaning cavity plate, and a linkage component is provided on the cleaning roller and the auxiliary cleaning component. The linkage component is used to drive the cleaning roller to rotate and simultaneously drive the auxiliary cleaning component to generate gas. The gas is transmitted to the cleaning cavity plate and sprayed out through the cleaning rod to achieve auxiliary cleaning of the residue on the cleaning roller.
2. The quenching equipment for processing chain parts according to claim 1, characterized in that: The linkage assembly includes a connecting long rod rotatably mounted on a connecting frame, a worm first is fixedly mounted on the connecting long rod, and a worm wheel first is meshed with the worm first.
3. The quenching equipment for processing chain parts according to claim 2, characterized in that: A connecting shaft is fixedly installed in the middle of the cleaning roller. The connecting shaft is rotatably connected to the connecting frame, and the worm gear is fixedly installed on the connecting shaft.
4. The quenching equipment for processing chain parts according to claim 3, characterized in that: A first bevel gear is fixedly mounted on the connecting rod, a matching bevel gear is meshed with the first bevel gear, a matching worm is fixedly connected to the lower end of the matching bevel gear, and a supporting connecting plate is rotatably connected to the matching worm; A fixed support block is fixedly installed on the support connecting plate, a connecting frame is fixedly connected to the lower end of the fixed support block, and the connecting frame is fixedly installed on the lower end of the connecting frame. A matching worm wheel is meshed with the matching worm.
5. The quenching equipment for processing chain parts according to claim 4, characterized in that: One end of the connecting frame is fixedly connected to a connecting support plate, one end of the connecting support plate is fixedly connected to the support frame, the auxiliary cleaning assembly includes a reciprocating screw rod rotatably connected to the fixed support block, one end of the reciprocating screw rod is fixedly connected to a matching worm gear, and a movable slider is threaded on the reciprocating screw rod.
6. The quenching equipment for processing chain parts according to claim 5, characterized in that: The movable slider is slidably connected to the connecting support plate, one end of the movable slider is fixedly connected to a sliding connecting rod, one end of the reciprocating screw rod is rotatably connected to a cavity column, the cavity column is fixed on the support frame, the sliding connecting rod slides into the interior of the cavity column, and one end of the sliding connecting rod is fixedly connected to a movable piston plate.
7. The quenching equipment for processing chain parts according to claim 6, characterized in that: The movable piston piece is slidably arranged inside the cavity column, and one end of the cavity column is connected to an air intake connecting pipe and an air outlet elbow. The air intake connecting pipe is provided with a one-way air intake valve, and the air outlet elbow is provided with a one-way air outlet valve.
8. The quenching equipment for processing chain parts according to claim 7, characterized in that: The outlet elbow is connected to a diverter cavity plate, which is fixedly mounted on the cavity column. The diverter cavity plate is connected to a plurality of air guide connecting pipes, which are connected to the cleaning cavity plate.
9. The quenching equipment for processing chain parts according to claim 1, characterized in that: The lifting assembly includes a connecting cavity connected to the lower end of the support bucket, a telescopic hose is connected to the connecting cavity, a supporting connecting plate is fixedly connected to the lower end of the connecting cavity, and a telescopic connecting plate is fixedly connected to the lower end of the supporting connecting plate.
10. The quenching equipment for processing chain parts according to claim 9, characterized in that: The lower end of the telescopic connecting plate is fixedly connected to a fixed bottom plate, the fixed bottom plate is arranged inside the quenching furnace body, the middle part of the fixed bottom plate is fixedly connected to an electric telescopic rod, and the output end of the electric telescopic rod is fixedly connected to the supporting connecting plate.
11. A chain component processing and quenching process, applied to the chain component processing and quenching equipment according to claim 1, characterized in that: The following steps are involved: S1: Place the chain parts on the conveyor belt and start the quenching furnace to quench the chain; S2: After quenching is completed, the cleaning roller is driven by the lifting component to contact the conveyor belt, and the conveyor belt is started to transmit slowly; S3: The linkage assembly operates to drive the cleaning roller to rotate and clean the conveyor belt. The impurities between the bristles of the cleaning roller are scraped off by the cleaning rod. S4: The linkage assembly simultaneously drives the auxiliary cleaning assembly to generate gas. The gas is ejected from the cleaning rod through the cleaning cavity plate to further clean the residue remaining on the cleaning roller, ensuring the cleanliness of the cleaning roller so as to continuously and efficiently clean the conveyor belt.
Citation Information
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