Double assembling mechanism for inner section of oil seal chain
By using a double assembly mechanism for the inner section of the oil seal chain to assemble chains on both sides simultaneously, the problems of low efficiency and inconvenient replacement of stamping sleeves are solved, thereby improving production efficiency and equipment maintenance efficiency.
Patent Information
- Application Number
- CN202520331777.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The existing oil seal chain inner section assembly machine has low efficiency, and the stamping sleeve is inconvenient to replace after wear, which affects production efficiency and equipment maintenance costs.
A double assembly mechanism for the inner section of an oil seal chain is designed. It uses an installation component and a lifting component to achieve simultaneous assembly of the chains on both sides, and can be easily replaced through a detachable stamped sleeve structure.
It improves assembly efficiency, meets the demand for high-capacity production, reduces equipment downtime and maintenance costs, and enhances the practicality and competitiveness of the equipment.
Smart Images

Figure CN223848543U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to chain assembly technical field, more specifically, especially relate to oil seal chain inner joint double assembly mechanism. BACKGROUND
[0002] In the modern mechanical transmission system, oil seal chain plays a pivotal role, especially in the scene of high requirement for chain sealing, wear resistance, such as high performance motorcycle transmission chain, precision industrial equipment power transmission chain, oil seal chain inner joint needs to use assembly machine for assembly production when producing.
[0003] Based on the prior art, the existing oil seal chain inner joint assembly machine has some shortcomings,
[0004] Firstly, oil seal chain inner joint assembly generally adopts single assembly, which directly leads to low overall assembly efficiency, and it is difficult to meet the strong production capacity demand caused by the rapid development of industry, and the design assembly machine also needs to consider the balance of assembly force, which undoubtedly further increases the difficulty and complexity of technology implementation.
[0005] On the other hand, the stamping sleeve of the key component of the assembly machine will inevitably be worn after long time and high strength continuous operation, which will affect the assembly precision and product quality, but the current stamping sleeve generally adopts fixed installation mode, which makes it very inconvenient to replace when it needs to be replaced, and cannot realize quick and convenient disassembly and replacement process, greatly reduces the maintenance efficiency of the equipment, increases the equipment downtime and operation and maintenance cost, and becomes a great obstacle to the continuity and efficiency of production. INVENTION CONTENTS
[0006] In view of the above technical problems, the utility model relates to an oil seal chain inner joint double assembly mechanism to solve the problems of the existing oil seal chain inner joint assembly machine, firstly, oil seal chain inner joint assembly generally adopts single assembly, which not only has low efficiency, but also needs to consider the balance of assembly force when designing the assembly machine; Secondly, the stamping sleeve of the oil seal chain inner joint assembly machine is easy to wear after long time use, but since the stamping sleeve is usually fixedly installed, it is inconvenient to quickly disassemble and replace the stamping sleeve.
[0007] The first aspect of the present disclosure provides an oil seal chain inner joint double assembly mechanism, which is achieved by the following specific technical means:
[0008] An oil seal chain inner joint double assembly mechanism comprises:
[0009] The installation assembly comprises a main body, a sliding groove and a moving groove, the main body is of a rectangular structure, a rectangular groove is formed in the middle of the rear side of the main body, the sliding grooves are formed at the two ends of the front side of the main body, wedge-shaped blocks are arranged at the two sides of the sliding grooves, the moving grooves are formed at the two ends of the interior of the main body, an upper feeding assembly is arranged on the installation assembly, the bases of the upper feeding assembly are symmetrically arranged at the two upper ends of the main body, the front end of the base is adjacent to the push plate and the guide rail on the main body, a pushing assembly is arranged on the installation assembly, the sliding block of the pushing assembly is slidably arranged in the moving groove, the rear end of the sliding block is in contact with the driving plate on the main body, the feeding plate on the sliding block can enter the inner groove in the base, a lifting assembly is arranged on the installation assembly, the lifting plate of the lifting assembly is slidably arranged in the fixed frame at the upper end of the main body, the lifting plate is connected with the electric telescopic rod, the side end of the lifting plate is adjacent to the base, and the lifting plate is in sliding fit with the side rod at the side end of the fixed frame.
[0010] According to some schemes of the present application, the installation assembly comprises a moving plate and a push plate, the moving plate is slidably arranged in the sliding groove, the moving plate is connected with the electric telescopic rod, and the upper end of the moving plate is provided with a rectangular rod, and the push plate is arranged at the upper end of the moving plate, and the rectangular groove in the push plate is in sliding fit with the rectangular rod on the moving plate.
[0011] According to some schemes of the present application, the installation assembly comprises a fixed frame and a side rod, the fixed frame is arranged at the middle of the upper end of the main body, and the side rod is arranged at the upper end of the main body and is located at the two sides of the fixed frame.
[0012] According to some schemes of the present application, the installation assembly comprises a driving plate and a guide rail, the driving plate is slidably arranged in the rectangular groove at the rear side of the main body, the driving plate is connected with the electric telescopic rod, and the guide rails are symmetrically arranged at the two sides of the main body.
[0013] According to some schemes of the present application, the upper feeding assembly comprises a base and an inner groove, the base is of a rectangular structure, and the inner grooves are equidistantly arranged in the interior of the base.
[0014] According to some schemes of the present application, the upper feeding assembly comprises a guide plate and a limiting rod, the guide plates are symmetrically arranged at the upper end of each group of inner grooves, and the limiting rods are arranged at the front side of each group of inner grooves.
[0015] According to some schemes of the present application, the pushing assembly comprises a sliding block and a feeding plate, the upper end of the sliding block is equidistantly provided with a rectangular groove, and the feeding plate is fixedly arranged in the rectangular groove at the upper end of the sliding block.
[0016] According to some schemes of the present application, the lifting assembly comprises a lifting plate, a side groove and a gasket, the lifting plate is of a rectangular structure, the side grooves are symmetrically arranged at the lower ends of the two sides of the lifting plate, and the gaskets are arranged at the upper ends of the two sides of the lifting plate.
[0017] According to some schemes of the utility model, the lifting assembly comprises: a punch sleeve and a fixing groove, the punch sleeve is equidistantly inserted into the side groove, and two groups of circular rods on the upper end of the punch sleeve penetrate the lifting plate, the fixing groove is arranged on the side end of the cylindrical structure on the upper end of the punch sleeve, and the fixing groove is inserted with the gasket.
[0018] Compared with the prior art, the utility model has the beneficial effects that:
[0019] 1、In the device, the installation assembly and the lifting assembly are arranged, the feeding assembly is arranged at both ends of the main body, the sliding block with the feeding plate is arranged at the position close to the feeding assembly, the T-shaped driving plate is movably installed at the rear side of the main body, the driving plate is in contact with the sliding blocks on both sides, the lifting plate is movably installed on the fixed frame of the main body, the punch sleeve for machining is arranged at both ends of the lifting plate, and in actual operation, the chain to be assembled enters from the rear side of the two guide rails and then moves stably to both sides, when the chain passes through the feeding assembly, the driving plate can efficiently drive the two groups of feeding assemblies to work synchronously by mechanical linkage, and the assembly process is accurately completed, then the punch sleeves at both ends of the lifting plate apply pressing force, so that the assembly is compact and stable, through the optimization design, the assembly tasks of the two groups of chains can be completed in the same period, compared with the traditional assembly mode, the assembly efficiency is greatly improved, the urgent needs of modern industrial production for high efficiency are greatly met, and the balance of assembly on both sides can be effectively ensured.
[0020] 2、In the device, the lifting assembly is arranged, the side groove is arranged at both ends of the lifting plate, the punch sleeve is inserted into the side groove, the cylindrical structure on the upper end of the punch sleeve extends from the top of the lifting plate, the gasket is inserted with the fixing groove on the punch sleeve, the punch sleeve is fixed on the lifting plate, when the punch sleeve is abraded due to long-time use and needs to be replaced, the gasket is moved to one side, the limiting constraint of the punch sleeve is released, the punch sleeve can be quickly disassembled, a brand-new punch sleeve can be replaced in time, the equipment downtime caused by replacement of the punch sleeve is greatly shortened, the overall maintenance efficiency of the equipment is effectively improved, solid guarantee is provided for continuous and efficient production operation, the operation and maintenance cost is reduced, and the practicality and competitiveness of the device in the actual production scene are enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0021] The present disclosure will be better understood by those skilled in the art from the following drawings, and the advantages of the present disclosure will be more clearly embodied, and the drawings described herein are only for the purpose of illustrating selected embodiments, not all possible embodiments, and are intended to limit the scope of the present disclosure.
[0022] In the drawings:
[0023] Figure 1It is the three-dimensional structure schematic diagram of the utility model.
[0024] Figure 2 It is the explosion drawing of the utility model.
[0025] Figure 3 It is the rear view structure schematic diagram of the utility model.
[0026] Figure 4 It is the plane section structure schematic diagram of the utility model.
[0027] Figure 5 It is the side end partial structure schematic diagram of the utility model.
[0028] Figure 6 It is the lifting assembly partial three-dimensional structure schematic diagram of the utility model.
[0029] Figure 7 It is the mounting assembly three-dimensional structure schematic diagram of the utility model.
[0030] In the drawing, the corresponding relationship of component name and drawing number is:
[0031] 1, mounting assembly;
[0032] 101, main body; 1011, sliding groove; 1012, moving groove;
[0033] 102, moving plate; 1021, push plate;
[0034] 103, fixed frame; 1031, side rod;
[0035] 104, drive plate; 105, guide rail;
[0036] 2, feeding assembly;
[0037] 201, base; 2011, inner groove;
[0038] 202, guide plate; 203, limiting rod;
[0039] 3, pusher assembly;
[0040] 301, sliding block; 302, feeding plate;
[0041] 4, lifting assembly;
[0042] 401, lifting plate; 4011, side groove; 4012, gasket;
[0043] 402, stamping sleeve; 4021, fixed groove. DETAILED DESCRIPTION
[0044] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely below with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without any inventive effort fall within the scope of protection of the present application.
[0045] Embodiment one: as shown in the accompanying Figure 1 to the accompanying Figure 7 :
[0046] The utility model provides a kind of oil seal chain inner joint double assembly mechanism, comprising: installation component 1;Installation component 1 includes main body 101, sliding slot 1011 and mobile groove 1012, main body 101 is rectangular structure, and rectangular groove is set in the middle position of the rear side of main body 101;Sliding slot 1011 is set in the front side both ends of main body 101, and the both sides of sliding slot 1011 are equipped with wedge-shaped block;Mobile groove 1012 is set in the inside both ends of main body 101;Feeding assembly 2 is equipped on installation component 1, the base 201 of feeding assembly 2 is symmetrically equipped in the upper end both sides of main body 101, and the front end of base 201 is adjacent to the push plate 1021 and guide rail 105 on main body 101;Pushing assembly 3 is equipped on installation component 1, the sliding block 301 of pushing assembly 3 is slidably installed in mobile groove 1012, and the rear end of sliding block 301 is in contact with the driving plate 104 on main body 101, and the feeding plate 302 on sliding block 301 can be in the inner groove 2011 in base 201;Lifting assembly 4 is equipped on installation component 1, the lifting plate 401 of lifting assembly 4 is slidably installed in fixed frame 103 on the upper end of main body 101, and the lifting plate 401 is connected with electric telescopic rod, and the side end of lifting plate 401 is adjacent to base 201, and lifting plate 401 and side rod 1031 of fixed frame 103 side end are slidably matched.
[0047] As the second embodiment of the present application, on the basis of embodiment one, as shown in the accompanying Figure 7 , installation component 1 includes: moving plate 102 and push plate 1021;Moving plate 102 is slidably installed in sliding slot 1011, and moving plate 102 is connected with electric telescopic rod, and the upper end of moving plate 102 is equipped with rectangular rod;Push plate 1021 is equipped on the upper end of moving plate 102, and the rectangular groove in push plate 1021 is slidably matched with the rectangular rod on moving plate 102;Fixed frame 103 and side rod 1031;Fixed frame 103 is equipped in the middle position of the upper end of main body 101;Side rod 1031 is on the upper end of main body 101, and side rod 1031 is on both sides of fixed frame 103;Driving plate 104 and guide rail 105;Driving plate 104 is slidably installed in the rectangular groove on the rear side of main body 101, and driving plate 104 is connected with electric telescopic rod;Guide rail 105 is symmetrically set in both sides of main body 101.
[0048] The application sets the rectangular main body 101, and chain assembly can be performed on the main body 101; the rectangular sliding groove 1011 is arranged, the moving plate 102 is slidably installed on the main body 101 through the sliding groove 1011; the rectangular moving groove 1012 is arranged, the sliding block 301 is slidably installed on both sides of the main body 101 through the moving groove 1012; the rectangular push plate 1021 is arranged, the protrusion at the outer end of the push plate 1021 is inserted into the chain, and the assembled chain can be driven to move when the push plate 1021 moves; the rectangular fixing frame 103 is arranged, the lifting plate 401 is slidably installed on the main body 101 through the fixing frame 103; the cylindrical side rod 1031 is arranged, the side rod 1031 is slidably matched with the lifting plate 401, and the movement of the lifting plate 401 on the main body 101 is guided; the T-shaped driving plate 104 is arranged, the two groups of sliding blocks 301 are simultaneously pushed to move by moving the driving plate 104, and the pushing work on both sides is completed; the L-shaped guide rail 105 is arranged, and the chain parts are assembled and processed by moving in the guide rail 105.
[0049] As a third embodiment of the application, on the basis of the first embodiment, as shown in Figure 3 The feeding assembly 2 comprises a base 201 and an inner groove 2011; the base 201 is of a rectangular structure; the inner grooves 2011 are equidistantly arranged in the inner part of the base 201; a guide plate 202 and a limiting rod 203; the guide plate 202 is symmetrically arranged at the upper end of each group of inner grooves 2011; the limiting rod 203 is arranged at the front side of each group of inner grooves 2011.
[0050] The application sets the rectangular base 201, and the guide plate 202 is installed on the base 201; the guide plate 202 is arranged, and the chain parts for processing are stored through the guide plate 202; the L-shaped limiting rod 203 is arranged, and the parts pushed out from the inner groove 2011 are limited.
[0051] As a fourth embodiment of the application, on the basis of the first embodiment, as shown in Figure 3 The pushing assembly 3 comprises a sliding block 301 and a feeding plate 302; the rectangular groove is equidistantly arranged at the upper end of the sliding block 301; and the feeding plate 302 is fixedly installed in the rectangular groove at the upper end of the sliding block 301.
[0052] The application sets the rectangular sliding block 301, and the feeding plate 302 is installed on the sliding block 301; the rectangular feeding plate 302 is arranged, and the parts in the inner groove 2011 can be pushed out when the feeding plate 302 is inserted into the inner groove 2011, so that feeding is completed.
[0053] As a fifth embodiment of the application, on the basis of the first embodiment, as shown in Figure 3 and 6As shown, the lifting assembly 4 comprises a lifting plate 401, side grooves 4011 and gaskets 4012; the lifting plate 401 is of a rectangular structure; the side grooves 4011 are symmetrically arranged at the lower ends of the two sides of the lifting plate 401; the gaskets 4012 are arranged at the upper ends of the two sides of the lifting plate 401; a stamping sleeve 402 and a fixing groove 4021; the stamping sleeve 402 is equidistantly inserted into the side groove 4011, and two groups of circular rods at the upper end of the stamping sleeve 402 penetrate through the lifting plate 401; the fixing groove 4021 is arranged at the side end of the cylindrical structure at the upper end of the stamping sleeve 402, and the fixing groove 4021 is inserted into the gasket 4012.
[0054] According to the application, the stamping sleeve 402 can be installed at the two ends of the lifting plate 401, the stamping sleeve 402 can be installed to the two sides of the lifting plate 401 through the rectangular side groove 4011, the stamping sleeve 402 can be fixed on the lifting plate 401 by inserting the gasket 4012 made of rubber into the fixing groove 4021, the stamping sleeve 402 can be used to complete the compression assembly of the chain, and the stamping sleeve 402 can be fixed at the side end of the lifting plate 401 by inserting the fixing groove 4021 into the gasket 4012.
[0055] The specific use mode and effect of the embodiment are as follows:
[0056] In the utility model, Figures 1-7As shown, the base 201 is fixedly installed at both ends of the main body 101, the chain plate is vertically placed into the guide plate 202, the sliding block 301 is slidably installed on the main body 101 near the base 201, the feeding plate 302 corresponding to the number of inner grooves 2011 is arranged on the sliding block 301, the rear end of the sliding block 301 on both sides is in contact with the driving plate 104 on the main body 101, the lifting plate 401 controlled by the electric telescopic rod is movably installed on the fixed frame 103 of the main body 101, the stamping sleeve 402 is inserted into the side groove 4011 at both ends of the lifting plate 401, the gasket 4012 is inserted into the fixed groove 4021 at the top of the stamping sleeve 402 to fix the stamping sleeve 402 on the side groove 4011, the moving plate 102 is slidably installed in the sliding groove 1011 of the main body 101, and the push plate 1021 is slidably installed on the moving plate 102. When the chain enters the inside of the main body 101 through the guide rail 105, the driving plate 104 pushes the sliding block 301 to reciprocate, so that the feeding plate 302 feeds the chain plate in the inner groove 2011 out and completes the assembly with the chain. At this time, the electric telescopic rod controls the lifting plate 401 to descend, and the chain plate is pressed on the chain. After the pressing is completed, the moving plate 102 drives the push plate 1021 to move. Since the protrusion at the outer end of the push plate 1021 is inserted into the inside of the chain, the push plate 1021 moves to drive the chain to move, and the chain is loosened after passing through the wedge structure at the side end of the sliding groove 1011 and returns to the original position. Thus, the assembly and processing of the chain on both sides can be completed.
[0057] The foregoing disclosure provides illustration and description, but is not intended to be exhaustive or to limit the embodiments to the precise form disclosed. Modifications and variations can be made in light of the above disclosure or can be acquired from practice of the embodiments.
[0058] Even though specific combinations of features are recited in the claims and / or disclosed in the specification, those combinations are not intended to limit the disclosure of various embodiments. Indeed, many combinations of features can be made without departing from the scope of the embodiments. Although each dependent claim listed below can only directly depend on one claim, the disclosure of various embodiments includes each dependent claim in combination with every other claim in the claim set.
Claims
1. An oil seal chain inboard link double assembly mechanism comprising: The utility model provides an installation component (1), the installation component (1) includes main part (101), sliding slot (1011) and mobile groove (1012), the main part (101) is rectangular structure, and the middle position of main part (101) rear side is equipped with rectangular slot, the sliding slot (1011) is equipped in the front side both ends of main part (101), and the both sides of sliding slot (1011) are equipped with wedge, the mobile groove (1012) is equipped in the inside both ends of main part (101), characterized by, the installation component (1) is equipped with feeding assembly (2), the base (201) of feeding assembly (2) is symmetrically equipped in the upper end both sides of main part (101), and the base (201) front end is adjacent with the push plate (1021) and guide rail (105) on main part (101), the installation component (1) is equipped with push material component (3), the sliding block (301) of push material component (3) is slidably installed in mobile groove (1012), and the back end of sliding block (301) is in contact with the drive plate (104) on main part (101), and the feeding plate (302) on sliding block (301) can enter the inner groove (2011) in base (201), the installation component (1) is equipped with lifting assembly (4), and the lifting plate (401) of lifting assembly (4) is slidably installed in the fixed frame (103) on the upper end of main part (101), and the lifting plate (401) is connected with electric telescopic rod, and the side end of lifting plate (401) is adjacent with base (201), and the lifting plate (401) is slidably fitted with the side rod (1031) of fixed frame (103) side end.
2. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, characterized in that, The installation component (1) includes: a moving plate (102) and a push plate (1021); the moving plate (102) is slidably installed in the sliding slot (1011), and the moving plate (102) is connected with an electric telescopic rod, and a rectangular rod is arranged on the upper end of the moving plate (102); the push plate (1021) is arranged on the upper end of the moving plate (102), and a rectangular slot in the push plate (1021) is slidably fitted with the rectangular rod on the moving plate (102).
3. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, characterized in that, The installation component (1) includes: a fixed frame (103) and a side rod (1031); the fixed frame (103) is arranged at the middle position of the upper end of the main body (101); and the side rod (1031) is arranged at the upper end of the main body (101) and located on both sides of the fixed frame (103).
4. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, wherein The installation component (1) includes: a drive plate (104) and a guide rail (105); the drive plate (104) is slidably installed in the rectangular slot at the rear side of the main body (101), and the drive plate (104) is connected with an electric telescopic rod; and the guide rail (105) is symmetrically arranged on both sides of the main body (101).
5. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, wherein The feeding assembly (2) includes: a base (201) and an inner groove (2011); the base (201) is of a rectangular structure; and the inner groove (2011) is equidistantly arranged in the inner part of the base (201).
6. A double assembly mechanism for an oil-sealed chain inner link according to claim 5, wherein The feeding assembly (2) comprises a guide plate (202) and a limiting rod (203); the guide plate (202) is symmetrically arranged at the upper end of each group of inner grooves (2011); and the limiting rod (203) is located at the front side of each group of inner grooves (2011).
7. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, wherein The pushing assembly (3) comprises a sliding block (301) and a feeding plate (302); the upper end of the sliding block (301) is provided with a rectangular groove at equal intervals; and the feeding plate (302) is fixedly installed in the rectangular groove at the upper end of the sliding block (301).
8. A double assembly mechanism for an oil-sealed chain inner link according to claim 1, characterized in that, The lifting assembly (4) comprises a lifting plate (401), a side groove (4011) and a gasket (4012); the lifting plate (401) is of a rectangular structure; the side grooves (4011) are symmetrically arranged at the lower ends of the two sides of the lifting plate (401); and the gaskets (4012) are arranged at the upper ends of the two sides of the lifting plate (401).
9. An oil seal chain double assembly mechanism according to claim 8, wherein The lifting assembly (4) comprises a stamping sleeve (402) and a fixing groove (4021); the stamping sleeve (402) is inserted into the side groove (4011) at equal intervals, and the two groups of circular rods at the upper end of the stamping sleeve (402) penetrate through the lifting plate (401); and the fixing groove (4021) is arranged at the side end of the cylindrical structure at the upper end of the stamping sleeve (402), and the fixing groove (4021) is inserted into the gasket (4012).