Automatic production device for shock absorber lifting ring
By combining external and internal oiling components, the problems of uneven coating and environmental pollution of shock absorber lifting rings are solved, achieving uniform coating and cost savings.
Patent Information
- Application Number
- CN202511161246.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2025-11-07
AI Technical Summary
The existing process of spraying anti-rust oil onto shock absorber rings suffers from problems such as uneven spraying, significant waste, and environmental pollution.
The system employs a combination of external and internal oiling components. The shock absorber's lifting ring is gripped by a moving clamping mechanism. Soft brushes on the outer and inner shells are used to spray rust-preventive oil, achieving uniform coating. The rust-preventive oil is circulated through the spray nozzle and the rotation of the inner shell.
It significantly improves the uniformity of spraying, reduces environmental pollution, and saves on usage costs.
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Figure CN120900898A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of shock absorber lifting ring production, and particularly relates to an automatic shock absorber lifting ring production device. BACKGROUND
[0002] The automatic shock absorber lifting ring production device is a high-efficiency, precise and flexible manufacturing system integrating machinery, electricity, control and information technology and specially designed for shock absorber lifting rings. The core goal is to replace manual operation with automation technology to realize unmanned production of the whole process from raw materials to finished products, and to improve efficiency, quality and safety.
[0003] According to the search of the application number CN201710542005.0, a shock absorber lifting ring production process and a production system thereof are disclosed, wherein the shock absorber lifting ring production process comprises the following steps: step S01, cutting, cutting a long pipe into a blank by using a cutting machine; step S02, turning an outer circle and an inner hole, turning an A surface, an outer circle and an inner hole by using a first numerical control machine; step S03, turning a B surface, turning a B surface by using a second numerical control machine; step S04, detecting, detecting the machined part by using a detection device; step S05, removing unqualified products, removing unqualified products by using a waste removal device; and step S06, boxing, placing finished lifting rings into a storage box by using a fourth mechanical arm. The shock absorber lifting ring production system comprises a cutting machine, a first numerical control machine, a second numerical control machine, a storage box and a finished product conveying belt arranged between the second numerical control machine and the storage box. The application can effectively prevent the shock absorber lifting ring from shaking and loosening during the clamping process.
[0004] In the production process of the shock absorber lifting ring, in order to protect the long-term performance and reliability of the metal part through multiple protection mechanisms, rust-proof oil needs to be sprayed on the outer wall. However, the existing oil pipe with a spray head is separately installed, directly sprays oil on the lifting ring in the storage area, has a simple structure, and is prone to uneven spraying, serious waste, and the sprayed rust-proof oil directly falls to the ground, causing environmental pollution. Therefore, it needs to be improved. SUMMARY
[0005] To solve the problem of uneven spraying, serious waste and environmental pollution caused by the existing oil pipe with a spray head directly spraying oil on the lifting ring in the storage area, the application provides an automatic shock absorber lifting ring production device. The external oil wiping member and the internal oil wiping member cooperate, the shock absorber lifting ring is clamped by the moving clamping mechanism and placed in the placement space between the outer shell and the inner shell, the soft hair brush on the two and the outward spraying of the rust-proof oil, compared with the existing oil pipe with a spray head directly spraying oil on the lifting ring in the storage area, greatly improve the uniformity of spraying, and reduce environmental pollution.
[0006] To achieve the above object, the present application provides the following technical scheme: a shock absorber lifting ring automatic production device, comprising a shock absorber lifting ring conveying mechanism and a moving clamping mechanism, further comprising: a placing bin arranged between the shock absorber lifting ring conveying mechanism and the moving clamping mechanism; a support assembly bolted to the bottom of the placing bin; an external oiling member installed in the interior of the placing bin, and an internal oiling member sleeved in the interior of the external oiling member; wherein the external oiling member comprises an outer shell, the upper and lower ends of the outer shell are arranged in the interior of the placing bin through a first support and a second support respectively, and the lower end of the inner cavity of the outer shell is fixedly connected with a hollow block; the internal oiling member comprises an inner shell, the inner shell is installed in the interior of the outer shell, a first pipeline and an oil injection capillary tube are arranged in the interior of the upper end of the inner shell, the lower end of the inner shell is rotatably connected with the hollow block, a third pipeline is installed on one side of the inner shell, and the bottom end of the third pipeline is movably connected with the inner cavity of the lower end of the outer shell, and a space is formed between the bottom end of the third pipeline and the inner cavity of the lower end of the outer shell.
[0007] Preferably, the support assembly comprises a base, a second fixed plate is installed on the side wall of the base, one end of the second fixed plate is connected with the placing bin through a bolt, and a plurality of limiting shells movably sleeved with the bottom end of the inner shell are fixedly connected with the top surface of the base.
[0008] Preferably, hydraulic cylinders are installed on both sides of the bottom end of the second support, the bottom end of the hydraulic cylinder is fixedly connected with the top surface of the base, and when the two hydraulic cylinders operate, the output end of the hydraulic cylinders drives the second support to move upward, the second support synchronously drives the outer shell and the first support to move upward in the interior of the placing bin, and the subsequent antirust oil smearing operation on the shock absorber lifting ring is facilitated.
[0009] Preferably, a plurality of soft hair brushes are installed on the inner wall of the upper end of the outer shell and the outer wall of the upper end of the inner shell, a containing space is arranged in the interior of the lower end of the outer shell, two plugging plugs are bolted on the bottom of the containing space, and the third pipeline is located in the containing space. It should be noted that the containing space in the interior of the lower end of the outer shell is used for collecting the antirust oil dripping downward from the soft hair brushes of the outer shell and the inner shell, the soft hair brushes on the outer shell and the inner shell are sprayed with antirust oil through the oil pipe, the soft hair brushes are filled with antirust oil, after the antirust oil is applied to the shock absorber lifting ring, more antirust oil drips downward due to gravity, and drips into the containing space in the lower end of the outer shell through the placing space between the outer shell and the inner shell. The plugging plugs used for plugging the containing space can also be taken out when it is necessary to clean the interior of the outer shell, so that subsequent cleaning is facilitated.
[0010] Preferably, the first pipeline bottom end is connected with a second pipeline through a conveying pump fixed in the inner shell, and the bottom end of the second pipeline is movably sleeved in the third pipeline.
[0011] Preferably, the outer side of the middle end of the inner shell is provided with a baffle for supporting the bottom of the shock absorber ring placed between the outer shell and the inner shell, and a plurality of notches are formed in the baffle. The middle ends of the inner shell and the outer shell are wide at the top and narrow at the bottom.
[0012] Preferably, the oil injection tube is provided with a plurality of groups, and the oil injection tubes in the plurality of groups are located between adjacent two soft hair brushes.
[0013] Preferably, the placing bin includes two plate bodies clamped at the upper end of the base, the two plate bodies are fixed through a first fixing plate, and the two plate bodies are connected with the base through a second fixing plate. It should be noted that the plate body is designed in two modular sections. When the inside of the placing bin needs to be cleaned, the bolts between the second fixing plate and the plate body are removed, so that the two are separated, and then the connection between the two plate bodies is released through the first fixing plate, and then the plate body can be taken out.
[0014] Preferably, the outer side of the plate body is provided with a distance sensor.
[0015] The application also provides a use method of the shock absorber ring automatic production device, and the use method comprises the following steps: S1, the shock absorber ring on the shock absorber ring conveying mechanism is clamped by the movable clamping mechanism, and the distance sensor on the plate body is used to correspond the shock absorber ring to each outer shell and inner shell respectively. Before that, the top surface of the outer shell is below the top surface of the inner shell, and they are not at the same horizontal plane. The movable clamping mechanism is used to press the shock absorber ring downward into the placing space between the outer shell and the inner shell, and the baffle supports the bottom of the shock absorber ring; S2, the hydraulic cylinder is started, and the output end drives the outer shell to move up and down through the second support. In the process of moving up and down, the inner shell rotates due to the rotating connection between the hollow block and the lower end of the inner shell. At this time, the soft hair brushes on the outer shell and the inner shell can apply rust-proof oil to the inner and outer walls of the shock absorber ring; S3, the conveying pump is started, and the output end of the conveying pump sucks the rust-proof oil in the containing space at the lower end of the outer shell through the second pipeline and the third pipeline, and then the rust-proof oil is conveyed to the inside of the oil injection tube through the first pipeline. The rust-proof oil is sprayed in the placing space between the outer shell and the inner shell through the rotation of the oil injection tube and the inner shell, so that the rust-proof oil can be fully sprayed on the shock absorber ring. S4, after the spraying is completed, the outer shell is lowered to the maximum value through the hydraulic cylinder, so that the top surface of the outer shell and the top surface of the inner shell have a height difference, and then the sprayed shock absorber lifting ring is clamped again through the moving clamping mechanism and is moved to the shock absorber lifting ring conveying mechanism for conveying.
[0016] Compared with the prior art, the beneficial effects of the present application are as follows: The present application cooperates the external oiling part and the internal oiling part, clamps the shock absorber lifting ring through the moving clamping mechanism, and places it in the placement space between the outer shell and the inner shell, sprays the rust-proof oil outward through the soft hair brush and the rust-proof oil on the two, which greatly improves the uniformity of spraying and reduces environmental pollution compared with the existing oil pipe with a spray head directly spraying the lifting ring of the storage area.
[0017] The present application cooperates the external oiling part and the internal oiling part, clamps the shock absorber lifting ring through the moving clamping mechanism, and places it in the placement space between the outer shell and the inner shell, sprays the rust-proof oil outward through the soft hair brush and the rust-proof oil on the two, which greatly improves the uniformity of spraying and reduces environmental pollution compared with the existing oil pipe with a spray head directly spraying the lifting ring of the storage area.
[0018] The present application cooperates the external oiling part and the internal oiling part, clamps the shock absorber lifting ring through the moving clamping mechanism, and places it in the placement space between the outer shell and the inner shell, sprays the rust-proof oil outward through the soft hair brush and the rust-proof oil on the two, which greatly improves the uniformity of spraying and reduces environmental pollution compared with the existing oil pipe with a spray head directly spraying the lifting ring of the storage area. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present application; Figure 2 It is a schematic diagram of the subdivision structure of the placement bin of the present application; Figure 3 It is a schematic diagram of the subdivision structure of the external oiling part of the present application; Figure 4 It is Figure 3 It is a schematic diagram of the local enlarged structure at A in the middle; Figure 5 It is Figure 3 It is a schematic diagram of the local enlarged structure at B in the middle; Figure 6 It is a schematic diagram of the structure of the outer shell and the limiting shell of the present application; Figure 7 It is a schematic diagram of the structure of the first pipeline and the oil spraying fine tube of the present application; Figure 8This is a schematic diagram of the outer shell, inner shell, and baffle of the present invention; Figure 9 This is a schematic diagram of the structure of the outer shell and the fuel injection capillary of the present invention.
[0020] In the diagram: 1. Shock absorber lifting ring conveying mechanism; 2. Moving clamping mechanism; 3. Placement compartment; 31. Plate; 32. First fixing plate; 4. Support assembly; 41. Base; 42. Second fixing plate; 43. Limiting shell; 5. External oiling component; 51. Outer shell; 52. First bracket; 53. Second bracket; 54. Hydraulic cylinder; 55. Hollow block; 6. Internal oiling component; 61. Inner shell; 62. First pipe; 63. Oil spray nozzle; 64. Delivery pump; 65. Second pipe; 66. Third pipe; 67. Baffle. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] like Figures 1 to 9 As shown, the present invention provides an automated production device for shock absorber lifting rings, including a shock absorber lifting ring conveying mechanism 1 and a moving clamping mechanism 2, and further comprising: Placement compartment 3 is located between shock absorber lifting ring conveying mechanism 1 and moving clamping mechanism 2; Support component 4 is bolted to the bottom of placement compartment 3; An external oiling component 5 is installed inside the placement chamber 3, and an internal oiling component 6 is fitted inside it; The external oiling component 5 includes an outer shell 51, with the upper and lower ends of the outer shell 51 respectively set inside the placement chamber 3 via a first bracket 52 and a second bracket 53. A hollow block 55 is fixedly connected to the lower end of the inner cavity of the outer shell 51. The internal oiling component 6 includes an inner shell 61, which is installed inside the outer shell 51. A first pipe 62 and an oil spraying capillary 63 are provided inside the upper end of the inner shell 61. The lower end of the inner shell 61 is rotatably connected to the hollow block 55. A third pipe 66 is installed on one side of the inner shell 61. The bottom end of the third pipe 66 is movably connected to the inner cavity at the lower end of the outer shell 51, and there is a gap between the two.
[0023] It should be noted that the rotating connection of the lower end of the inner shell 61 and the hollow block 55 is that the inner side of the hollow block 55 is fixedly provided with a ball, the outer side of the lower end of the inner shell 61 is provided with a spiral groove, and the ball is movably connected in the spiral groove, so that when the outer shell 51 moves up and down, the ball on the hollow block 55 will move up and down synchronously, and at this time the inner shell 61 will be driven to rotate through the spiral groove matched with the ball.
[0024] The support assembly 4 comprises a base 41, a second fixed plate 42 is mounted on the side wall of the base 41, one end of the second fixed plate 42 is connected with the placing bin 3 through bolts, and a plurality of limiting shells 43 movably sleeved with the bottom end of the inner shell 61 are fixedly connected to the top surface of the base 41.
[0025] The bottom end of the second support 53 is provided with a hydraulic cylinder 54 on both sides, and the bottom end of the hydraulic cylinder 54 is fixedly connected to the top surface of the base 41.
[0026] When the two hydraulic cylinders 54 operate, the output end will drive the second support 53 to move upwards, and the second support 53 will synchronously drive the outer shell 51 and the first support 52 to move upwards in the placing bin 3, facilitating the subsequent anti-rust oil smearing operation on the shock absorber lifting ring.
[0027] The inner wall of the upper end of the outer shell 51 and the outer wall of the upper end of the inner shell 61 are both provided with a plurality of soft brushes, the inner part of the lower end of the outer shell 51 is provided with an accommodating space, and two blocking plugs are bolted at the bottom of the accommodating space, and the third pipeline 66 is located in the accommodating space.
[0028] It should be noted that the anti-rust oil collected from the soft brushes of the outer shell 51 and the inner shell 61 and falling downwards is collected in the accommodating space at the lower end of the outer shell 51, the soft brushes of the outer shell 51 and the inner shell 61 are sprayed with anti-rust oil through the oil pipe, so that the soft brushes are filled with anti-rust oil, and after the anti-rust oil is applied to the shock absorber lifting ring, more anti-rust oil will fall downwards due to gravity and fall into the accommodating space at the lower end of the outer shell 51 through the placing space between the outer shell 51 and the inner shell 61. At the same time, the blocking plug for blocking the accommodating space can also be taken out when it is necessary to clean the inside of the outer shell 51, so as to facilitate the subsequent cleaning.
[0029] The bottom end of the first pipeline 62 is connected with the second pipeline 65 through the conveying pump 64, the conveying pump 64 is fixedly connected to the inside of the inner shell 61, and the bottom end of the second pipeline 65 is movably sleeved in the inside of the third pipeline 66.
[0030] It is not difficult to understand that the inner shell 61 is provided with a plurality of soft brushes on the inner wall of the upper end, and the outer shell 51 is provided with a plurality of soft brushes on the outer wall of the upper end. Figure 4 and Figure 5When the conveying pump 64 is started, the rust-proof oil in the containing space at the lower end of the outer shell 51 will be extracted through the second pipeline 65 and the third pipeline 66, and then conveyed to the inside of the oil injection tube 63 through the first pipeline 62, and then sprayed to the placing space between the outer shell 51 and the inner shell 61 through the oil injection tube 63, so that the soft hair brushes on the outer shell 51 and the inner shell 61 are soaked with rust-proof oil again, thereby facilitating the next spraying operation on the shock absorber lifting ring. Meanwhile, the bottom end of the third pipeline 66 is not entirely attached to the bottom of the containing space at the lower end of the inner shell 61, but only partially attached, thereby ensuring that the third pipeline 66 can always absorb the rust-proof oil dropped in the containing space.
[0031] The outer side of the middle end of the inner shell 61 is provided with a baffle 67, which is used to support the bottom of the shock absorber lifting ring placed between the outer shell 51 and the inner shell 61. A plurality of notches are formed in the baffle 67. The middle ends of the inner shell 61 and the outer shell 51 are large at the top and narrow at the bottom.
[0032] The oil injection tube 63 is provided with multiple groups, and the multiple groups of oil injection tubes 63 are located between adjacent two soft hair brushes.
[0033] It is not difficult to understand that when the rust-proof oil is sprayed outwards through the oil injection tube 63 by the third pipeline 66, the second pipeline 65, the conveying pump 64 and the first pipeline 62, at this time the outer shell 51 is driven by the hydraulic cylinder 54 to move up and down and the inner shell 61 is rotated by the hollow block 55, at this time the rotation of the inner shell 61 will occur while the rust-proof oil is sprayed outwards by the oil injection tube 63, and the sprayed rust-proof oil will be filled in the opposite direction because of the obstruction of the inner wall of the outer shell 51, so that the rust-proof oil will be sprayed on the soft hair brush in a large area and more comprehensively, thereby improving the coating effect on the shock absorber lifting ring.
[0034] The placing bin 3 includes two plate bodies 31 which are clamped at the upper end of the base 41, and the two plate bodies 31 are fixedly connected by the first fixed plate 32, and the two plate bodies 31 are connected with the base 41 by the second fixed plate 42.
[0035] It should be noted that the plate body 31 adopts a two-section modular design, when it is necessary to clean the inside of the placing bin 3, the bolts of the second fixed plate 42 and the plate body 31 are removed at this time, so that the two are separated, and then the connection between the two plate bodies 31 is released by the first fixed plate 32, so that the plate body 31 can be taken outwards.
[0036] The outer side of the plate body 31 is provided with a distance sensor.
[0037] It should be noted that the distance sensor outside the plate body 31 is controlled by the PLC control center data, which can accurately sense the position of the shock absorber lifting ring driven by the mobile clamping mechanism 2. When the position deviates, the distance sensor transmits data to the PLC control center, and the PLC control center transmits control commands to the mobile clamping mechanism 2 to adjust it, so that the shock absorber lifting ring clamped by the mobile clamping mechanism 2 can be accurately located between the outer shell 51 and the inner shell 61. The shock absorber lifting ring conveying mechanism 1 is composed of a support seat and a conveying belt placed on the top of the support seat, and the mobile clamping mechanism 2 is composed of a push plate and two drive cylinders. The mobile clamping mechanism 2 is provided with two groups, which are respectively located on both sides of the shock absorber lifting ring conveying mechanism 1, used for clamping the shock absorber lifting ring and conveying the shock absorber lifting ring to the inside of the placing warehouse 3. Manual assistance is required during operation. It should be noted that the shock absorber lifting ring that needs to be sprayed with rust-proof oil is clean and free of impurities on the outer wall.
[0038] The application also provides a use method of the shock absorber lifting ring automatic production device, which comprises the following steps: S1, the mobile clamping mechanism 2 clamps the shock absorber lifting ring on the shock absorber lifting ring conveying mechanism 1, and cooperates with the distance sensor on the plate body 31 to correspond the shock absorber lifting ring on each outer shell 51 and inner shell 61. Before that, the top surface of the outer shell 51 is below the top surface of the inner shell 61, and they are not at the same horizontal plane. The mobile clamping mechanism 2 presses the shock absorber lifting ring downward into the placing space between the outer shell 51 and the inner shell 61, and the baffle 67 supports the bottom of the shock absorber lifting ring. S2, start the hydraulic cylinder 54, and make the output end drive the outer shell 51 up and down through the second support 53. During the up and down movement of the outer shell 51, the inner shell 61 will rotate due to the rotating connection between the hollow block 55 and the lower end of the inner shell 61. At this time, the soft hair brushes on the outer shell 51 and the inner shell 61 will apply rust-proof oil to the inner and outer walls of the shock absorber lifting ring. S3, start the conveying pump 64, and make the output end of the conveying pump 64 suck the rust-proof oil in the containing space at the lower end of the outer shell 51 through the second pipeline 65 and the third pipeline 66, and convey the rust-proof oil to the inside of the oil injection fine tube 63 through the first pipeline 62. The rust-proof oil is sprayed in the placing space between the outer shell 51 and the inner shell 61 through the rotation of the oil injection fine tube 63 and the inner shell 61, and the rust-proof oil is sprayed on the shock absorber lifting ring. S4, after the spraying is completed, the outer shell 51 is lowered to the maximum by the hydraulic cylinder 54, so that the top surface of the outer shell 51 and the top surface of the inner shell 61 have a height difference, and then the sprayed shock absorber lifting ring is clamped again by the moving clamping mechanism 2 and moved to the shock absorber lifting ring conveying mechanism 1 for conveying.
[0039] The embodiments of the present specific embodiment are the preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, wherein the same parts are denoted by the same reference numerals. Therefore, any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. An automatic production device for shock absorber lifting rings, comprising a shock absorber lifting ring conveying mechanism (1) and a moving clamping mechanism (2), characterized in that: Also include: Put the warehouse (3) is set between the shock absorber ring conveying mechanism (1) and the moving clamping mechanism (2); Support assembly (4) is bolted to the bottom of the placement warehouse (3); External oiling parts (5) are installed inside the placement warehouse (3), and the inside is sleeved with internal oiling parts (6); Wherein, the external oiling parts (5) include an outer shell (51), the upper and lower ends of the outer shell (51) are respectively arranged in the inside of the placement warehouse (3) through the first support (52) and the second support (53), and the lower end of the inner cavity of the outer shell (51) is fixedly connected with a hollow block (55); the internal oiling parts (6) include an inner shell (61), the inner shell (61) is installed in the inside of the outer shell (51), a first pipeline (62) and an oil injection tube (63) are arranged in the inside of the upper end of the inner shell (61), the lower end of the inner shell (61) is rotatably connected with the hollow block (55), a third pipeline (66) is installed on one side of the inner shell (61), the bottom end of the third pipeline (66) is movably connected with the inner cavity of the lower end of the outer shell (51), and there is a gap between the two.
2. The shock absorber eye ring automated production device of claim 1, wherein: The support assembly (4) includes a base (41), a second fixed plate (42) is installed on the side wall of the base (41), one end of the second fixed plate (42) is connected with the placement warehouse (3) through a bolt, and a plurality of limiting shells (43) movably sleeved with the bottom end of the inner shell (61) are fixedly connected on the top surface of the base (41).
3. The shock absorber eye ring automated production device of claim 1, wherein: The bottom end of the second support (53) is provided with a hydraulic cylinder (54) on both sides, and the bottom end of the hydraulic cylinder (54) is fixedly connected with the top surface of the base (41).
4. The shock absorber eye ring automated production device of claim 3, wherein: The inner wall of the upper end of the outer shell (51) and the outer wall of the upper end of the inner shell (61) are both provided with a plurality of soft hair brushes, a containing space is formed in the inside of the lower end of the outer shell (51), and two plugging plugs are bolted on the bottom of the containing space, and the third pipeline (66) is located in the containing space.
5. The shock absorber eye ring automated production device of claim 1, wherein: The bottom end of the first pipeline (62) is connected with a second pipeline (65) through a conveying pump (64), the conveying pump (64) is fixedly connected in the inside of the inner shell (61), and the bottom end of the second pipeline (65) is movably sleeved in the inside of the third pipeline (66).
6. The shock absorber eye ring automated production device of claim 5, wherein: The outer side of the middle end of the inner shell (61) is provided with a baffle (67), the baffle (67) is used for supporting the bottom of the shock absorber ring placed between the outer shell (51) and the inner shell (61), and a plurality of notches are formed in the baffle (67); The middle end of the inner shell (61) and the outer shell (51) is large at the top and narrow at the bottom.
7. The shock absorber eye ring automated production device of claim 1, wherein: The oil injection tube (63) is provided with a plurality of groups, and the oil injection tubes (63) are located between adjacent two soft hair brushes.
8. The shock absorber eye ring automated production device of claim 1, wherein: The placement warehouse (3) includes two plate bodies (31), the two plate bodies (31) are clamped on the upper end of the base (41), the two plate bodies (31) are fixedly connected through the first fixed plate (32), and the two plate bodies (31) are connected with the base (41) through the second fixed plate (42).
9. The shock absorber eye ring automated production device of claim 8, wherein: The outer side of the plate body (31) is provided with a distance sensor.
10. The method of using the device for automated production of shaker ring according to any one of claims 1-9, wherein, The use method comprises the following steps: S1, use the mobile clamping mechanism (2) to clamp the shock absorber ring on the shock absorber ring conveying mechanism (1), and cooperate with the distance sensor on the plate body (31), and the shock absorber ring is respectively corresponding to each outer shell (51) and inner shell (61). Before this, the top surface of the outer shell (51) is below the top surface of the inner shell (61), and they are not in the same horizontal plane. The mobile clamping mechanism (2) is used to press the shock absorber ring downward to the placement space between the outer shell (51) and the inner shell (61), and the baffle (67) supports the bottom of the shock absorber ring; S2, start the hydraulic cylinder (54), and make its output end drive the outer shell (51) to move up and down through the second support (53). In the process of moving up and down, the inner shell (61) will rotate due to the rotating connection between the hollow block (55) and the lower end of the inner shell (61). At this time, the soft hair brush on the outer shell (51) and the inner shell (61) will apply rust-proof oil to the inner and outer walls of the shock absorber ring; S3, start the conveying pump (64), and make its output end suck the rust-proof oil in the containing space inside the lower end of the outer shell (51) through the second pipeline (65) and the third pipeline (66), and deliver it to the inside of the oil injection fine tube (63) through the first pipeline (62), and spray the rust-proof oil in the placement space between the outer shell (51) and the inner shell (61) through the rotation of the oil injection fine tube (63) and the inner shell (61), and then fully spray the rust-proof oil on the shock absorber ring; S4, after spraying, the outer shell (51) is pulled down to the maximum value by the hydraulic cylinder (54), so that the top surface of the outer shell (51) and the top surface of the inner shell (61) have height difference, and then the sprayed shock absorber ring is clamped again by the mobile clamping mechanism (2) and moved to the shock absorber ring conveying mechanism (1) for conveying.
Citation Information
Patent Citations
A manufacturing process and system for vibration damper lifting rings
CN107344282B