Automatic assembling equipment for oil cup of filter

By designing automatic assembly equipment for filter oil cups, the automatic assembly of diesel engine filter oil cups is realized, solving the problem of low efficiency of manual operation, improving production efficiency and reducing costs.

CN223394796UActive Publication Date: 2025-09-30JINWANXIN INTELLIGENT TECHNOLOGY (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202422581363.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-09-30
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The existing diesel engine filter oil cup assembly process is not fully automated and relies on a large amount of manual operation, resulting in high production costs, low efficiency and low yield rate.

Method used

A filter oil cup automatic assembly equipment is designed, which includes a first and a second assembly module, which are used for automatic loading and assembly of the reverse plug and the sealing ring respectively. The automatic transfer and assembly of the oil cup are realized through the first and second transfer mechanisms.

Benefits of technology

The automated assembly of diesel engine filter oil cups has been achieved, which has improved production efficiency, reduced production costs, and increased the yield rate of finished products.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a filter oil cup automatic assembling device which comprises a machine table, a first assembling module, a second assembling module, a first oil cup, a second oil cup and a second oil cup. The first assembling module comprises a first transferring mechanism used for bearing oil cups, a first feeding mechanism used for feeding reverse plugs is arranged on one side of the first transferring mechanism, and a first assembling mechanism is arranged between the first transferring mechanism and the first feeding mechanism. The second assembling module comprises a second transferring mechanism used for bearing oil cups, a second feeding mechanism used for feeding sealing rings is arranged on one side of the second transferring mechanism, and a second assembling mechanism is arranged between the second transferring mechanism and the second feeding mechanism. By means of the mode, automatic assembling of the diesel engine filter oil cup is achieved, manual cooperation work is not needed, the assembling speed of the diesel engine filter oil cup is increased, and the production cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of filters, in particular to automatic assembly equipment for a filter oil cup. Background Art

[0002] Fuel filters, also known as oil-water separators, are divided into three categories: diesel filters, gasoline filters, and natural gas filters. The function of a fuel filter is to prevent particulate matter, water, and impurities in the fuel, protecting the precision components of the fuel system from wear and other damage. Fuel filters generally have an oil cup, which is also called a water cup or water collection cup.

[0003] As attached Figure 10 As shown, the diesel engine filter oil cup is mainly composed of an oil cup 8, a reverse plug 9 and a sealing ring 10. The current oil cup assembly process has not achieved fully automated assembly, and requires a large amount of manual work, which increases production costs, takes a long time to assemble and has low efficiency. Utility Model Content

[0004] In order to solve the above problems, the utility model proposes an automatic assembly device for a filter oil cup which effectively improves the assembly efficiency.

[0005] The main contents of the utility model include: a machine platform, on which a first assembly module and a second assembly module are arranged;

[0006] The first assembly module includes a first transfer mechanism for carrying the oil cup, a first loading mechanism for loading the reverse plug is provided on one side of the first transfer mechanism, and a first assembly mechanism is provided between the first transfer mechanism and the first loading mechanism to transport the reverse plug from the first loading mechanism to the first transfer mechanism and complete the assembly of the reverse plug and the oil cup;

[0007] The second assembly module includes a second transferring mechanism for carrying the oil cup, a second loading mechanism for loading the sealing ring is provided on one side of the second transferring mechanism, and a second assembly mechanism is provided between the second transferring mechanism and the second loading mechanism to transport the sealing ring from the second loading mechanism to the second transferring mechanism and complete the assembly of the sealing ring and the reverse plug on the oil cup.

[0008] Preferably, the first transfer mechanism includes a first loading assembly and a first transverse movement assembly for driving the first loading assembly to move transversely, and the first loading assembly includes: a first placement plate and a first three-claw cylinder placed on the first placement plate.

[0009] Preferably, the first feeding mechanism includes: a first vibration plate, a first straight material channel connected to the first vibration plate, a first material dividing assembly arranged at one end of the first straight material channel away from the first vibration plate, and a matching first vibration motor is provided at the lower end of the first straight material channel.

[0010] Preferably, the first material dividing component includes a first material receiving plate with a material receiving channel, the first material receiving plate has a material receiving port corresponding to the discharge port of the first straight material channel, the material receiving port and the material receiving channel are connected to each other in a T-shaped structure, a pushing plate is provided in the material receiving channel, and a first horizontal cylinder is provided on one side of the pushing plate to push the pushing plate to move horizontally along the material receiving channel.

[0011] Preferably, the first assembly mechanism includes a first bracket, a second transverse movement component is provided on the first bracket, a first lifting component is provided at the moving end of the second transverse movement component, a first assembly component is provided at the lifting end of the first lifting component, the first assembly component includes a first connecting plate, a pneumatic screw gun is provided on the first connecting plate, and the output end of the pneumatic screw gun is downward and connected to a first clamping claw.

[0012] Preferably, the first clamping jaw is placed on the second connecting plate, a guide sleeve and a guide rod are arranged between the first connecting plate and the second connecting plate, a buffer spring is provided on the circumferential sleeve of the guide rod, and both ends of the buffer spring abut between the first connecting plate and the second connecting plate.

[0013] Preferably, the second transfer mechanism includes a second loading assembly and a third transverse movement assembly that drives the second loading assembly to move transversely. The second loading assembly includes a second placement plate, and the second placement plate is provided with a first lifting cylinder. The output end of the first lifting cylinder is connected to a second clamping claw for clamping the oil cup.

[0014] Preferably, the second feeding mechanism includes: a second vibration plate, a second straight material channel connected to the second vibration plate, a second material dividing assembly arranged at one end of the second straight material channel away from the second vibration plate, and a matching second vibration motor is provided at the lower end of the second straight material channel.

[0015] Preferably, the second material distribution component includes a first transverse moving cylinder, the output end of the first transverse moving cylinder is configured with a transverse plate, and the lower end of the transverse plate is provided with a third clamping jaw; the upper end of the transverse plate is configured with a second lifting cylinder, the output end of the second lifting cylinder is downward and is configured with a center hole positioning piece, and the center hole positioning piece is placed at the center of the clamping arm of the third clamping jaw.

[0016] Preferably, the second assembly mechanism includes a fourth transverse movement component and a second assembly component arranged at the movable end of the fourth transverse movement component. The second assembly component includes: a third placement plate and a second three-claw cylinder placed on the third placement plate. The second three-claw cylinder passes through the center hole of the sealing ring and opens to tighten the sealing ring. A third lifting cylinder is provided on one side of the second three-claw cylinder. The output end of the third lifting cylinder is upward and connected to a pushing ring. The pushing ring is circumferentially arranged on the clamping end of the second three-claw cylinder.

[0017] The beneficial effects of the present utility model are as follows: automatic loading and distribution of the reverse plug and the sealing ring are realized through the first feeding mechanism and the second feeding mechanism, the first transferring mechanism and the second transferring mechanism transfer and convey the oil cups in different states, the first assembling mechanism and the second assembling mechanism respectively complete the screwing assembly of the reverse plug and the oil cup and the assembly of the sealing ring and the reverse plug on the oil cup, thereby realizing the automatic assembly of the diesel engine filter oil cup without manual cooperation, improving the assembly speed of the diesel engine filter oil cup and reducing the production cost, and the mechanization cooperates with each other, effectively improving the yield rate of the finished product. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the three-dimensional structure of a preferred embodiment;

[0019] Figure 2 Schematic diagram of the three-dimensional structure of the first transfer mechanism in a preferred embodiment;

[0020] Figure 3 This is a schematic diagram of the three-dimensional structure of the first feeding mechanism in a preferred embodiment;

[0021] Figure 4 This is a schematic diagram of the three-dimensional structure of the first material distribution component in a preferred embodiment;

[0022] Figure 5 This is a schematic diagram of the three-dimensional structure of the first assembly mechanism of a preferred embodiment;

[0023] Figure 6 Schematic diagram of the three-dimensional structure of the second transfer mechanism in a preferred embodiment;

[0024] Figure 7 This is a schematic diagram of the three-dimensional structure of the second feeding mechanism in a preferred embodiment;

[0025] Figure 8 This is a schematic diagram of the three-dimensional structure of the second material distribution component in a preferred embodiment;

[0026] Figure 9 This is a schematic diagram of the three-dimensional structure of the second assembly mechanism of a preferred embodiment;

[0027] Figure 10Schematic diagram of the disassembled structure of the filter oil cup of the product assembled for this application;

[0028] Reference numerals:

[0029] 1. Machine; 101. First assembly module; 102. Second assembly module;

[0030] 2. First transfer mechanism; 21. First transverse movement assembly; 22. First loading assembly; 221. First placement plate; 222. First three-claw cylinder;

[0031] 3. First feeding mechanism; 31. First vibrating plate; 32. First straight material channel; 33. First vibrating motor; 34. First material dividing assembly; 341. First material dividing plate; 342. Material receiving port; 343. Material receiving channel; 345. Material pushing plate; 346. First transverse cylinder;

[0032] 4. First assembly mechanism; 41. First bracket; 42. Second traverse assembly; 43. First lifting assembly; 44. First assembly assembly; 441. First connecting plate; 442. Pneumatic screwdriver; 443. First clamping jaw; 444. Second connecting plate; 445. Buffer spring;

[0033] 5. Second transfer mechanism; 51. Third transverse movement assembly; 52. Second loading assembly; 521. Second placement plate; 522. First lifting cylinder; 523. Second clamping claw;

[0034] 6. Second feeding mechanism; 61. Second vibrating plate; 62. Second straight material channel; 63. Second vibrating motor; 64. Second material distribution assembly; 641. First transverse cylinder; 642. Transverse plate; 643. Third clamping jaw; 644. Second lifting cylinder; 645. Center hole positioning member; 646. Baffle plate;

[0035] 7. Second assembly mechanism; 71. Fourth transverse movement assembly; 72. Second assembly assembly; 721. Third placement plate; 722. Second three-claw cylinder; 723. Third lifting cylinder; 724. Push ring;

[0036] 8. Oil cup; 9. Reverse plug; 10. Sealing ring. DETAILED DESCRIPTION

[0037] The technical solution protected by the present utility model is described in detail below with reference to the accompanying drawings.

[0038] A filter oil cup (such as Figure 10 As shown), it includes an oil cup 8, on which a reverse plug 9 is threadedly assembled. The lower end of the reverse plug 9 is provided with a mounting groove along the circumferential direction, and a sealing ring 10 is sleeved in the mounting groove.

[0039] like Figure 1and 10 As shown, the present application proposes an automatic assembly device for a filter oil cup, which includes a machine 1, a first assembly module 101 and a second assembly module 102 arranged on the machine 1. The first assembly module 101 assembles the oil cup 8 and the reverse plug 9, and the second assembly module 102 assembles the sealing ring 10 and the reverse plug 9 on the oil cup, thereby realizing the automatic assembly of the filter oil cup and effectively improving the assembly efficiency.

[0040] like Figure 1 As shown, the first assembly module 101 includes: a first transfer mechanism 2 for accommodating the oil cup; a first loading mechanism 3 for feeding the reverse plug is disposed on one side of the first transfer mechanism 2; a first assembly mechanism 4 is disposed between the first transfer mechanism 2 and the first loading mechanism 3; the first assembly mechanism 4 is used to transfer the reverse plug from the first loading mechanism 3 to the first transfer mechanism 2 and complete the assembly of the reverse plug with the oil cup. The second assembly module 102 includes a second transfer mechanism 5 for carrying the oil cup; a second loading mechanism 6 for feeding the sealing ring is disposed on one side of the second transfer mechanism 5; a second assembly mechanism 7 is disposed between the second transfer mechanism 5 and the second loading mechanism 6; the sealing ring is transferred from the second loading mechanism 6 to the second transfer mechanism 5 and completes the assembly of the sealing ring with the reverse plug on the oil cup.

[0041] like Figure 1-2 As shown, the first transfer mechanism 2 includes a first transverse movement assembly 21 placed on the machine platform 1. A first carrier assembly 22 is configured on the movable end of the first transverse movement assembly 21. The first transverse movement assembly 21 drives the first carrier assembly 22 to move laterally. The first carrier assembly 22 includes a first placement plate 221, on which a first three-jaw cylinder 222 is mounted. When the first three-jaw cylinder 222 is retracted, the oil cup is placed on the first three-jaw cylinder 222. The first three-jaw cylinder 222 then expands, pressing against the inner wall of the oil cup, thereby securing the oil cup to the first placement plate 221 and facilitating the subsequent screwing and installation of the reverse plug.

[0042] like Figure 3-4As shown, the first feeding mechanism 3 includes: a first vibrating disk 31, a first straight material channel 32 connected to the first vibrating disk 31, a first material dividing assembly 34 provided at one end of the first straight material channel 32 away from the first vibrating disk 31, and a matching first vibration motor 33 provided at the lower end of the first straight material channel 32. The first material dividing assembly 34 includes a first material dividing plate 341 having a material receiving channel 343, the first material dividing plate 341 having a material receiving port 342 at a material outlet corresponding to the first straight material channel 32, the material receiving channel 343 and the material receiving port 342 are interconnected in a T-shaped structure, a material pushing plate 345 is movably provided in the material receiving channel 343, and a first transverse cylinder 346 is provided on one side of the material pushing plate 345 to push the material pushing plate 345 to move transversely along the material receiving channel 343. The first vibration plate 31 and the first straight material channel 32 cooperate with each other to realize the automatic discharging and loading of the reverse plug. The first material dividing assembly 34 realizes the single-piece material dividing action of the reverse plug, which is convenient for subsequent grabbing. The reverse plug automatically discharges and divides the material, effectively improving work efficiency.

[0043] like Figure 1-5 As shown, the first assembly mechanism 4 includes a first bracket 41, on which a second transverse movement assembly 42 is provided. The movable end of the second transverse movement assembly 42 is provided with a first lifting assembly 43, and the lifting end of the first lifting assembly 43 is provided with a first assembly assembly 44. The first assembly assembly 44 includes a first connecting plate 441, on which a pneumatic screw gun 442 is configured. The output end of the pneumatic screw gun 442 is downwardly directed and connected to a first clamping jaw 443, which is used to clamp the reverse plug. The feeding end of the second transverse movement assembly 42 is placed above the material receiving channel 343, and the processing end is placed above the processing end of the first transverse movement assembly 21, realizing automatic material collection and assembly of the reverse plug, effectively improving work efficiency. Preferably, the first clamping jaw 443 is placed on the second connecting plate 444. A guide sleeve and a guide rod are provided between the first connecting plate 441 and the second connecting plate 444. A buffer spring 445 is provided around the guide rod, and both ends of the buffer spring 445 abut against the first connecting plate 441 and the second connecting plate 444. The buffer spring 445 effectively prevents hard contact between the reverse plug and the oil cup when the first clamping jaw 443 drives the reverse plug downward for assembly, thereby ensuring that the reverse plug is properly assembled.

[0044] like Figure 1-6 As shown, the second transfer mechanism 5 includes a second loading assembly 52 and a third transverse movement assembly 51 that drives the second loading assembly 52 to move laterally. The second loading assembly 52 includes a second placement plate 521 arranged at the moving end of the third transverse movement assembly 51. The second placement plate 521 is provided with a first lifting cylinder 522. The output end of the first lifting cylinder 522 is connected to a second clamping claw 523 for clamping the oil cup. The loading end of the third transverse movement assembly 51 is close to the processing end side of the first transverse movement assembly 21, which is convenient for clamping the oil cup after the reverse plug assembly is completed.

[0045] like Figure 1-8 As shown, the second feeding mechanism 6 includes: a second vibration plate 61, a second straight material channel 62 connected to the second vibration plate 61, a second material distribution assembly 64 arranged at one end of the second straight material channel 62 away from the second vibration plate 61, and a second vibration motor 63 is provided at the lower end of the second straight material channel 62. The second material distribution assembly 64 includes a first transverse cylinder 641, the output end of the first transverse cylinder 641 is provided with a transverse plate 642, and the lower end surface of the transverse plate 642 is provided with a third clamping jaw 643. The clamping end of the third clamping jaw 643 faces one side of the second straight material channel 62 and is used to clamp the sealing ring arranged for discharge on the second straight material channel 62. Preferably, notches are provided on both sides of the discharge end of the second straight material channel 62 to facilitate the third clamping jaw 643 to clamp from both sides of the sealing ring and provide avoidance space. The outer wall of the clamping arm of the third clamping jaw 643 away from the second assembly mechanism 7 is equipped with a material blocking plate 646. When the third clamping jaw 643 clamps the sealing ring and transfers it from the second straight material channel 62 to the top of the second assembly mechanism 7, the material blocking plate 646 is blocked in the second straight material channel 62 to prevent the sealing ring from continuing to discharge. Preferably, the upper end of the transverse plate 642 is equipped with a second lifting cylinder 644. The output end of the second lifting cylinder 644 is downward and equipped with a center hole positioning member 645. When the third clamping jaw 643 clamps the sealing ring, the center hole positioning member 645 is inserted into the center of the sealing ring to assist the clamping jaw in clamping the sealing ring. The second vibrating disk 61 and the second straight material channel 62 vibrate to discharge and load the sealing ring. The second material distributing assembly 64 separates and removes the sealing ring from the second straight material channel 62 and transfers it to the top of the second assembly mechanism 7, facilitating the material removal action of the second assembly mechanism 7, effectively improving work efficiency and saving material distributing time.

[0046] like Figure 1-9 As shown, the second assembly mechanism 7 includes: a fourth transverse movement assembly 71, and a second assembly assembly 72 disposed at the movable end of the fourth transverse movement assembly 71. The second assembly assembly 72 includes a third placement plate 721, and a second three-jaw cylinder 722 disposed on the third placement plate 721. The second three-jaw cylinder 722 can pass through the center hole of the sealing ring. When the second three-jaw cylinder 722 is opened, it presses the sealing ring against the clamping arm; a third lifting cylinder 723 is disposed on one side of the second three-jaw cylinder 722. The output end of the third lifting cylinder 723 is upward and connected to a push ring 724. The clamping end of the second three-jaw cylinder 722 passes through the center of the push ring 724.

[0047] Preferably, the machine 1 is provided with a discharge port (not shown) below the second assembly mechanism 7 , and the oil cup assembled with the reverse plug and the sealing ring can drop directly from the discharge port to realize product discharge, effectively saving equipment space.

[0048] In this embodiment, the first transverse moving assembly, the second transverse moving assembly, the third transverse moving assembly, the fourth transverse moving assembly, and the first lifting assembly may be composed of cylinders, guide rails, sliders or motors, screw rods, guide rails, sliders and other components, and no specific restrictions are made here.

[0049] Working principle:

[0050] The first transverse movement component 21 drives the first placement plate 221 to move to the loading end, and the first three-claw cylinder 222 is in a retracted state, receiving the external manipulator to grab the oil cup for loading; the first three-claw cylinder 222 opens to tighten the oil cup, and the first transverse movement component 21 continues to drive the first placement plate 221 to move to the processing end to install the reverse plug.

[0051] The first vibrating disk 31 vibrates and discharges the reverse plug, which is then vibrated and arranged on the first straight material channel 32 to load the material. The reverse plug vibrates to the first dividing plate 341 and enters the material receiving channel 343 through the material receiving port 342. The first transverse cylinder 346 pushes the push plate 345 to move transversely, pushing the reverse plug to move along the material receiving channel 343, forming an offset with the material receiving port 342. The push plate 345 blocks the material receiving port 342, preventing further feeding in the material receiving channel 343, making it convenient for the first assembly mechanism 4 to remove the single reverse plug in the material receiving channel.

[0052] The second transverse movement component 42 drives the first lifting component 43 to move to the top of the material receiving channel, the first lifting component 43 drives the first assembly component 44 to move downward, the first clamping claw 443 clamps the reverse plug in the material receiving channel, the second transverse movement component 42 drives the first lifting component 43 to move to the processing end of the first transverse movement component 21, the first lifting component 43 drives the first assembly component 44 to move downward, and places the reverse plug in the installation hole of the oil cup. The pneumatic screw gun 442 drives the first clamping claw 443 to rotate to complete the threaded assembly of the reverse plug and the oil cup.

[0053] The third transverse movement component 51 drives the second loading component 52 to move to the processing end of the first transverse movement component 21, the first lifting cylinder 522 drives the second clamping jaw 523 to descend, the second clamping jaw 523 clamps the oil cup on the first three-jaw cylinder 222, the first three-jaw cylinder 222 contracts, the first lifting cylinder 522 drives the second clamping jaw 523 to rise, and removes the oil cup from the first three-jaw cylinder 222, and the third transverse movement component 51 drives the second loading component 52 to move to the processing end direction.

[0054] The second vibration disk 61 performs vibration discharging of the sealing ring, and the sealing ring is arranged in the second straight material channel 62 for vibration loading. The third clamping jaw 643 clamps the sealing ring at the notch, and the second lifting cylinder 644 drives the center hole positioning piece 645 to descend and is inserted into the center hole of the sealing ring. The first transverse cylinder 641 drives the third clamping jaw 643 to move to the top of the second assembly mechanism 7, the third clamping jaw 643 opens, and the second lifting cylinder 644 drives the center hole positioning piece 645 to rise and retreat.

[0055] The fourth transverse movement component 71 drives the second assembly component 72 to move to the side of the discharge end of the second straight material channel 62. The second three-claw cylinder 722 is in a retracted state to receive the sealing ring clamped on the third clamping jaw 643. The second three-claw cylinder 722 opens to tighten the sealing ring. The fourth transverse movement component 71 drives the second assembly component 72 to move to the side of the processing end of the third transverse movement component 51. The second three-claw cylinder 722 is located at the bottom of the oil cup. The third lifting cylinder 723 pushes the pushing ring 724 to rise, and pushes the sealing ring on the second three-claw cylinder 722 upward, so that it is set in the installation groove below the reverse plug.

[0056] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A filter oil cup automatic assembly equipment, characterized in that: Mainly include: A machine platform, wherein a first assembly module and a second assembly module are provided on the machine platform; The first assembly module includes a first transfer mechanism for carrying the oil cup, a first loading mechanism for loading the reverse plug is provided on one side of the first transfer mechanism, and a first assembly mechanism is provided between the first transfer mechanism and the first loading mechanism to transport the reverse plug from the first loading mechanism to the first transfer mechanism and complete the assembly of the reverse plug and the oil cup; The second assembly module includes a second transferring mechanism for carrying the oil cup, a second loading mechanism for loading the sealing ring is provided on one side of the second transferring mechanism, and a second assembly mechanism is provided between the second transferring mechanism and the second loading mechanism to transport the sealing ring from the second loading mechanism to the second transferring mechanism and complete the assembly of the sealing ring and the reverse plug on the oil cup.

2. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The first transfer mechanism includes a first material carrying assembly and a first transverse movement assembly for driving the first material carrying assembly to move transversely. The first material carrying assembly includes: a first placement plate and a first three-claw cylinder placed on the first placement plate.

3. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The first feeding mechanism includes: a first vibration plate, a first straight material channel connected to the first vibration plate, a first material dividing assembly arranged at one end of the first straight material channel away from the first vibration plate, and a matching first vibration motor is provided at the lower end of the first straight material channel.

4. The filter oil cup automatic assembly equipment according to claim 3, characterized in that: The first material dividing component includes a first material receiving plate with a material receiving channel. The first material receiving plate has a material receiving port corresponding to the discharge port of the first straight material channel. The material receiving port and the material receiving channel are interconnected in a T-shaped structure. A pushing plate is provided in the material receiving channel. A first horizontal cylinder is provided on one side of the pushing plate, which can push the pushing plate to move horizontally along the material receiving channel.

5. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The first assembly mechanism includes a first bracket, a second transverse movement component is provided on the first bracket, a first lifting component is provided at the moving end of the second transverse movement component, a first assembly component is provided at the lifting end of the first lifting component, the first assembly component includes a first connecting plate, a pneumatic screw gun is provided on the first connecting plate, and the output end of the pneumatic screw gun is downward and connected to a first clamping claw.

6. The filter oil cup automatic assembly equipment according to claim 5, characterized in that: The first clamping jaw is placed on the second connecting plate, a guide sleeve and a guide rod are arranged between the first connecting plate and the second connecting plate, a buffer spring is provided on the circumferential sleeve of the guide rod, and both ends of the buffer spring abut between the first connecting plate and the second connecting plate.

7. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The second transfer mechanism includes a second loading assembly and a third transverse movement assembly that drives the second loading assembly to move transversely. The second loading assembly includes a second placement plate, and a first lifting cylinder is configured on the second placement plate. The output end of the first lifting cylinder is connected to a second clamping claw for clamping the oil cup.

8. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The second feeding mechanism includes: a second vibration plate, a second straight material channel connected to the second vibration plate, a second material dividing assembly arranged at one end of the second straight material channel away from the second vibration plate, and a matching second vibration motor is provided at the lower end of the second straight material channel.

9. The filter oil cup automatic assembly equipment according to claim 8, characterized in that: The second material distribution component includes a first transverse moving cylinder, the output end of the first transverse moving cylinder is equipped with a transverse plate, and the lower end of the transverse plate is provided with a third clamping jaw; the upper end of the transverse plate is equipped with a second lifting cylinder, the output end of the second lifting cylinder is downward and equipped with a center hole positioning piece, and the center hole positioning piece is placed at the center of the clamping arm of the third clamping jaw.

10. The filter oil cup automatic assembly equipment according to claim 1, characterized in that: The second assembly mechanism includes a fourth transverse movement component and a second assembly component arranged at the moving end of the fourth transverse movement component. The second assembly component includes: a third placement plate and a second three-claw cylinder placed on the third placement plate. The second three-claw cylinder passes through the center hole of the sealing ring and opens to tighten the sealing ring. A third lifting cylinder is provided on one side of the second three-claw cylinder. The output end of the third lifting cylinder is upward and connected to a pushing ring. The pushing ring is circumferentially arranged on the clamping end of the second three-claw cylinder.