Engine lock plate press machine

By designing the material feed, filling and tablet press components of the engine lock plate press, the problems of inaccurate lock plate placement and difficult to control the pressure in traditional manual operations are solved, and the accuracy and efficiency of lock plate pressing are improved, reducing production costs and safety risks.

CN119589357BActive Publication Date: 2025-09-02GUANGZHOU HANDONG IND AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202510012811.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-09-02
Estimated Expiration
2045-01-03

AI Technical Summary

Technical Problem

The traditional engine lock plate pressing process relies on manual operation, and there are problems such as inaccurate placement of the lock plate, difficult to control the pressure, low efficiency and high cost.

Method used

An engine lock plate pressing machine is designed, including material conveying components, filling components and tablet pressing components. The precise conveying, filling and compression of the lock plate is achieved through components such as sliding carriers, sliding blocks, servo motors, etc., to ensure the precise alignment of the lock plate holes and the compression head and the stable compression assembly.

Benefits of technology

It improves the accuracy and efficiency of lock plate pressing, reduces the difficulty and error of manual operation, improves the degree of automation of the production line, and reduces production costs and safety hazards.

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Abstract

The present invention discloses an engine lock piece press machine, which relates to the technical field of engine lock piece press fitting, comprising: a base, a press fitting mechanism is provided on the upper surface of the base, the press fitting mechanism comprises a feeding assembly, a filling assembly and a tablet pressing assembly, the feeding assembly comprises: a sliding carrier, the sliding carrier is fixedly mounted on the upper surface of the base, the upper surface of the sliding carrier is provided with two sliding bars, the upper surface of the sliding bars is provided with a plurality of slidable sliding blocks, the upper surface of the sliding blocks is fixedly mounted with two connecting platforms, the tablet pressing assembly comprises: four supporting columns, the supporting columns are fixedly mounted on the upper surface of the base, the upper surface of the supporting columns is provided with a top frame plate, the filling assembly comprises: a storage table, the storage table is provided on one side surface of the base, and the upper surface of the storage table is provided with a storage barrel. In this solution, by arranging the feeding assembly, the filling assembly and the tablet pressing assembly, the pressing accuracy and efficiency are improved, and the degree of automation of the production line is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of engine locking piece press-fitting, in particular to an engine locking piece press-fitting machine. Background Art

[0002] Engine locking plate press-fitting is a critical process in engine manufacturing. It involves precisely pressing locking plates into the locking plate holes of engine components to ensure tight connection and stable operation of engine components. Traditional engine locking plate press-fitting processes rely primarily on manual operation. This manual press-fitting method has accumulated rich experience through long-term practice and has formed a relatively mature process flow. However, with the continuous development of engine manufacturing technology, the requirements for locking plate press-fitting accuracy and efficiency are becoming increasingly higher.

[0003] In the traditional engine locking plate press-fitting process, the locking plates are mainly transported, filled and pressed by manual operation. This method also has some inconveniences. When the engine parts are manually transported to the pressing position, it is difficult to ensure the accuracy and consistency of each placement on site, which increases the difficulty and error of subsequent pressing. At the same time, the filling process of the locking plates often relies on manual selection and placement one by one, which is not only time-consuming and labor-intensive, but also difficult to ensure the precise alignment of the locking plates with the locking plate holes of the engine parts. In the pressing process, manual operation is also difficult to accurately control the pressing force and position, which can easily lead to the locking plates being pressed loosely or damaging the engine parts. Summary of the Invention

[0004] The object of the present invention is to provide an engine locking plate press assembly machine to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: an engine locking plate press assembly machine, comprising:

[0006] A base, wherein the upper surface of the base is provided with a pressing mechanism, and the pressing mechanism includes a feeding component, a filling component and a tablet pressing component;

[0007] The feeding assembly includes: a sliding carrier, the sliding carrier is fixedly mounted on the upper surface of the base, the upper surface of the sliding carrier is provided with two sliding bars, the upper surface of the sliding bars is provided with a plurality of slidable sliding blocks, the upper surface of the sliding blocks is fixedly mounted with two connecting platforms, a rotatable rotating platform is provided between the two connecting platforms, the upper surface of the sliding carrier is further provided with a pressing frame, and the side surface of the pressing frame is provided with two pressing plates that cooperate with the rotating platform;

[0008] The tablet pressing assembly includes: four support columns, each of which is fixedly mounted on the upper surface of the base; a top frame is provided on the upper surface of the support columns; two sliding guide rails are provided on the upper surface of the top frame; a slidable pressing plate is provided on the upper surface of the two sliding guide rails; a plurality of pressing heads are provided below the pressing plate; a suction cup for fixing the locking sheet is provided inside the pressing head; and a connecting spring for assisting filling and pressing is also provided on the surface of the pressing head;

[0009] Furthermore, a placement plate is provided on the upper surface of the rotating platform, an axis is provided at the connection between the connecting platform and the rotating platform, a driving motor for driving it to slide is provided on one side of the connecting platform, a servo motor is provided on the side surface of one of the connecting platforms, and the output shaft of the servo motor is connected to one side surface of the rotating platform.

[0010] Furthermore, the filling assembly includes: a material storage table, which is arranged on one side surface of the base, a material storage barrel is provided on the upper surface of the material storage table, a feeding port is opened above the material storage barrel, a locking plate transmission pipe is provided on one side surface of the material storage barrel, a material feed rack for mounting the locking plate transmission pipe is provided on the upper surface of the material storage table, a discharge head is provided at one end of the locking plate transmission pipe, a bottom support frame is also provided on the upper surface of the base, a filling workbench is provided on the upper surface of the bottom support frame, a material picking slide is provided on the upper surface of the filling workbench, a material picking slide is provided on the upper surface of the material picking slide, a slidable material picking slide is provided on the upper surface of the material picking slide, a plurality of storage tubes are provided on the upper surface of the storage tubes, and a filling spring is provided on the bottom surface of the storage tubes.

[0011] Furthermore, a control motor for driving a press-fitting plate is provided on the upper surface of the top frame plate, a lateral adjustment block is provided on the upper surface of the press-fitting plate body, a descending slide is also provided on the side surface of the press-fitting plate body, the lateral adjustment block is provided on one side surface of the descending slide, a pressure head substrate is provided on the output shaft of the lateral adjustment block, and the press-fitting head is provided on the bottom surface of the pressure head substrate.

[0012] Furthermore, the feeding assembly also includes an auxiliary assembly, which includes: a connecting plate body, the connecting plate body is fixedly installed on one side surface of the connecting platform, one side surface of the connecting plate body is provided with a fixed side plate body, one side surface of the fixed side plate body is provided with a main small motor, one side surface of the fixed side plate body is also provided with a connecting shaft body, the output shaft of the main small motor is connected to one side surface of the connecting shaft body, and one side surface of the connecting shaft body is provided with a bottom block body.

[0013] Furthermore, an electric push rod is provided on the upper surface of the bottom block, a top block is provided on the upper surface of the electric push rod, a telescopic motor is provided at the center of the top block, two limiting supports are provided on one side surface of the top block, a slidable sliding plate frame is provided on the surface of the limiting supports, the end of the output shaft of the pressing head is connected to one side surface of the sliding plate frame, and a limiting groove cooperating with the limiting support bar is provided on the side surface of the sliding plate frame.

[0014] Furthermore, a rotatable detection block is provided at the center of the sliding plate frame, the bottom surface of the detection block is provided with a fitting base plate, the upper surface of the detection block is fixedly installed with an arc groove base plate, and two fixed plates are fixedly installed on the upper surface of the sliding plate frame, the side surface of one of the fixed plates is provided with a sub-small motor, the output end of the sub-small motor is provided with a threaded rod, the other end of the threaded rod is connected to the side surface of the other fixed plate, the surface of the threaded rod is engaged with a slidable engaging block, and the side surface of the engaging block is fixedly installed with a sliding support bar.

[0015] Furthermore, a slidable follower block is provided on the upper surface of the sliding plate frame, and a sliding path is opened on the upper surface of the sliding plate frame to facilitate the sliding of the follower block. The sliding support passes through the center of the arc groove base plate and is connected to one side surface of the follower block.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. In this solution, by providing a feeding assembly, the cooperation of the sliding carrier, the sliding bar and the sliding block realizes the flexible movement of the rotating platform, thereby improving the efficiency and accuracy of the placement of engine components. The design of the clamping plate ensures the stability of the engine components during the press-fitting process, avoiding press-fitting errors caused by shaking. In addition, the auxiliary assembly can ensure that the locking plate hole can be accurately aligned with the press-fitting head by accurately detecting and adjusting the rotation angle of the rotating platform, further improving the press-fitting accuracy and efficiency, increasing the degree of automation of the production line, and significantly reducing the difficulty and error of manual operation, providing a strong guarantee for the precise press-fitting of the engine locking plate;

[0018] 2. In this solution, by providing a filling assembly, the automatic conveying and precise filling of the locking pieces are achieved through the cooperation of the material storage barrel, the locking piece transmission pipe, the discharge head and the material taking slide. The material storage barrel can store the locking pieces in an orderly manner, avoiding confusion and loss of the locking pieces. The precise docking of the locking piece transmission pipe and the material taking slide ensures that the locking pieces can be accurately conveyed to the filling workbench. The material taking slide and the material taking slide can realize the rapid retrieval and filling of the locking pieces, thereby improving the efficiency and flexibility of the production line, simplifying the filling process of the locking pieces, and reducing the complexity of manual operation.

[0019] 3. In this solution, by providing a pressing assembly, precise positioning and stable pressing of the pressing head are achieved through components such as the support column, top frame, sliding guide rail, and pressing plate. The coordinated work of the control motor and the lateral adjustment block ensures that the pressing head can accurately align with the locking plate hole, avoiding pressing errors caused by position deviation. The pressing assembly has a high degree of automation, which can reduce the intervention of manual operation, reduce production costs and safety hazards, and improve the quality and efficiency of engine locking plate pressing. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 This is a schematic structural diagram of the material feeding assembly of the present invention;

[0022] Figure 3 This is a schematic diagram of the filling assembly structure of the present invention;

[0023] Figure 4 It is a structural schematic diagram of the material storage platform of the present invention;

[0024] Figure 5 Schematic diagram of the tablet pressing assembly structure of the present invention;

[0025] Figure 6 Schematic diagram of the rotating platform structure of the present invention;

[0026] Figure 7 This is a schematic diagram of the auxiliary component structure of the present invention;

[0027] Figure 8 It is a schematic diagram of the sliding plate frame structure of the present invention.

[0028] In the figure: 1, base; 2, sliding carrier; 3, connecting plate; 4, rotating carrier; 5, pressing frame; 6, filling workbench; 7, top frame; 8, pressing head; 9, storage barrel; 10, storage platform; 11, feeding rack; 12, descending slide; 13, sliding bar; 14, sliding block; 15, connecting platform; 16, servo motor; 17, placing plate; 18, driving motor; 19, pressing plate; 20, material removal slide; 21, material removal slide; 22, film storage tube; 23, bottom support frame; 24, locking film transmission pipe; 25, feeding port; 26, Discharge head; 27. Support column; 28. Sliding guide rail; 29. ​​Press-fit plate; 30. Control motor; 31. Lateral adjustment block; 32. Fixed side plate; 33. Main small motor; 34. Connecting shaft; 35. Bottom block; 36. Electric push rod; 37. Top block; 38. Telescopic motor; 39. Sliding plate frame; 40. Limiting support bar; 41. Auxiliary small motor; 42. Engaging block; 43. Threaded rod; 44. Detection block; 45. Arc groove base plate; 46. Sliding support bar; 47. Fitting base plate; 48. Follower block; 49. Sliding way. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] Example 1: Please refer to Figures 1 to 8 , an engine locking plate press machine, comprising:

[0031] The base 1 is provided with a pressing mechanism on the upper surface of the base 1, and the pressing mechanism includes a feeding assembly, a filling assembly and a tablet pressing assembly. The feeding assembly includes: a sliding carrier 2, the sliding carrier 2 is fixedly mounted on the upper surface of the base 1, and the upper surface of the sliding carrier 2 is provided with two sliding bars 13, and the upper surface of the sliding bar 13 is provided with a plurality of slidable sliding blocks 14, and the upper surface of the sliding block 14 is fixedly installed with two connecting platforms 15, and a rotatable rotating platform 4 is provided between the two connecting platforms 15, and a placing plate 17 is provided on the upper surface of the rotating platform 4. A shaft is provided at the connection between the connecting platform 15 and the rotating platform 4, and a driving motor 18 for driving it to slide is provided on one side of the connecting platform 15, and a servo motor 16 is provided on the side surface of one of the connecting platforms 15, and the output shaft of the servo motor 16 is connected to the side surface of the rotating platform 4, and a pressing frame 5 is also provided on the upper surface of the sliding carrier 2, and the side surface of the pressing frame 5 is provided with two pressing plates 19 cooperating with the rotating platform 4;

[0032] The base 1 is the supporting structure of the entire engine lock piece press machine. A pressing mechanism including a feeding component, a filling component and a pressing component is installed on its upper surface. These components work together to complete the feeding, filling and pressing processes of the lock piece. The base provides a stable working platform to ensure the precise alignment and stable operation of each component. The feeding component realizes the flexible movement of the rotating platform 4 through the sliding bar 13 and the sliding block 14 on the sliding carrier 2 so as to place the engine components. Subsequently, the two pressing plates 19 are lowered to press the engine components against the upper surface of the rotating platform 4. Subsequently, the rotating platform 4 is driven by the servo motor 16 to The servo motor 16 drives the rotating platform 4 to rotate in the opposite direction, so that the locking hole on one side of the engine surface is kept horizontal, which is convenient for the subsequent press-fitting operation. After the press-fitting of the locking hole on one side is completed, the servo motor 16 drives the rotating platform 4 to rotate in the opposite direction, so that the locking hole on the other side is rotated to a horizontal state, which is convenient for the press-fitting work. The pressing plate 19 can move synchronously with the rotating platform 4 when it rotates, and continue to press the engine components. The auxiliary component is used to detect the rotation angle of the rotating platform 4. After the servo motor 16 drives the rotating platform 4 to rotate once, the main small motor 33 is controlled by the staff signal The motor 38 is then driven to extend, causing the sliding plate frame 39 to slide to the end of the limiting support bar 40 and stop due to the limiting effect of the end of the limiting support bar 40. Subsequently, the electric push rod 36 is retracted to drive the sliding plate frame 39 to descend, and the fitting bottom plate 47 at the center of the sliding plate frame 39 is fitted with the upper surface of the engine component. Subsequently, the threaded rod 43 is driven to rotate by the auxiliary small motor 41, and the sliding support bar is driven by the engagement of the engagement block 42 with the threaded rod 43. 46 slides at the center of the arc groove base plate 45. If the angle of the rotating platform 4 does not reach the horizontal state, the sliding support bar 46 and the arc groove base plate 45 will move in cooperation with the bonding base plate 47. If the angle does not deviate, the sliding of the sliding support bar 46 will be restricted under the action of the in-situ bonding base plate 47 and the surface of the engine component. The auxiliary small motor 41 stops the braking effect immediately after sensing that the engaging block 42 is restricted. Subsequently, the detection signal is transmitted to the staff's observation equipment through the sensor connected to the auxiliary small motor 41, so that the staff can adjust the rotation amplitude of the servo motor 16.

[0033] The feeding assembly also includes an auxiliary assembly, which includes: a connecting plate body 3, the connecting plate body 3 is fixedly mounted on one side surface of the connecting platform 15, a fixed side plate body 32 is provided on one side surface of the connecting plate body 3, a main small motor 33 is provided on one side surface of the fixed side plate body 32, a connecting shaft body 34 is also provided on one side surface of the fixed side plate body 32, the output shaft of the main small motor 33 is connected to one side surface of the connecting shaft body 34, a bottom block body 35 is provided on one side surface of the connecting shaft body 34, an electric push rod 36 is provided on the upper surface of the bottom block body 35, a top block body 37 is provided on the upper surface of the electric push rod 36, a telescopic motor 38 is provided at the center of the top block body 37, two limiting supports 40 are provided on one side surface of the top block body 37, a slidable sliding plate frame 39 is provided on the surface of the limiting support 40, the end of the output shaft of the press-fitting head 8 is connected to one side surface of the sliding plate frame 39, and the side surface of the sliding plate frame 39 The surface is provided with a limiting groove that cooperates with the limiting support bar 40, and a rotatable detection block 44 is provided at the center of the sliding plate frame 39. The bottom surface of the detection block 44 is provided with a fitting bottom plate 47, and the upper surface of the detection block 44 is fixedly mounted with an arc groove base plate 45. Two fixed plates are fixedly mounted on the upper surface of the sliding plate frame 39, and the side surface of one of the fixed plates is provided with a sub-small motor 41. A threaded rod 43 is provided on the output end of the sub-small motor 41, and the other end of the threaded rod 43 is connected to the side surface of the other fixed plate. The surface of the threaded rod 43 is meshed with a slidable meshing block 42, and a sliding support bar 46 is fixedly mounted on the side surface of the meshing block 42. The upper surface of the sliding plate frame 39 is also provided with a slidable driven block 48, and the upper surface of the sliding plate frame 39 is provided with a sliding path 49 that facilitates the sliding of the driven block 48. The sliding support bar 46 passes through the center of the arc groove base plate 45 and is connected to one side surface of the driven block 48;

[0034] The feeding assembly realizes the flexible movement of the placement plate 17 through the sliding bar 13 and the sliding block 14 on the sliding carrier 2. When placing the engine parts, the staff controls the drive motor 18 to extend it, and then drives 4 to slide to the front end of 2 through 14. Then, the engine parts are placed on the top of the placement plate 17 manually or by a loading robot, and the drive motor 18 immediately drives the rotating carrier 4 back to its original position.

[0035] The tablet pressing assembly includes: four support columns 27, the support columns 27 are fixedly mounted on the upper surface of the base 1, the upper surface of the support columns 27 is provided with a top frame plate 7, the upper surface of the top frame plate 7 is provided with two sliding guide rails 28, the upper surfaces of the two sliding guide rails 28 are provided with a slidable pressing plate 29, the upper surface of the top frame plate 7 is provided with a control motor 30 for driving the pressing plate 29, the upper surface of the pressing plate 29 is provided with a lateral adjustment block 31, the side surface of the pressing plate 29 is also provided with a descending slide 12, the lateral adjustment block 31 is provided on one side surface of the descending slide 12, a pressing head base plate is provided on the output shaft of the lateral adjustment block 31, a plurality of pressing heads 8 are provided on the bottom surface of the pressing head base plate, a suction cup for fixing the locking sheet is provided inside the pressing head 8, and a connecting spring for assisting filling and pressing is provided on the surface of the pressing head 8;

[0036] The pressing assembly is supported by a top frame 7 through four supporting columns 27, and is equipped with a sliding guide rail 28 and a slidable pressing plate 29. The control motor 30 drives the pressing plate 29 to move along the sliding guide rail 28 to achieve lateral adjustment of the pressing head. The lateral adjustment block 31 further fine-tunes the position of the pressing head to ensure that the pressing head 8 is accurately aligned with the locking plate. The pressing head 8 then descends to press the locking plate into the locking plate hole of the engine component. The suction cup inside the pressing head 8 is used to fix the locking plate when the filling assembly is used to replenish the locking plate, and the connecting spring assists the filling and pressing process, so that the pressing head 8 presses the locking plate into the inside of the locking plate hole to facilitate the resetting of the end of the pressing head 8.

[0037] The filling assembly includes: a storage table 10, the storage table 10 is arranged on one side surface of the base 1, a storage barrel 9 is provided on the upper surface of the storage table 10, a feeding port 25 is opened above the storage barrel 9, a lock piece transmission pipe 24 is provided on one side surface of the storage barrel 9, a feeding rack 11 for setting up the lock piece transmission pipe 24 is provided on the upper surface of the storage table 10, a discharge head 26 is provided at one end of the lock piece transmission pipe 24, a bottom support frame 23 is further provided on the upper surface of the base 1, a filling workbench 6 is provided on the upper surface of the bottom support frame 23, a material picking slide 20 is provided on the upper surface of the filling workbench 6, a material picking slide 20 is provided on the upper surface of the material picking slide 20, a slidable material picking slide 21 is provided, a plurality of storage tubes 22 are provided on the upper surface of the material picking slide 21, and a filling spring is provided on the bottom surface of the storage tube 22;

[0038] The storage barrel 9 on the storage table 10 can be used to store locking plates, and the locking plates are transported to the filling workbench 6 through the lock plate transmission pipe 24 and the discharge head 26. The feeding port 25 above the storage barrel 9 is convenient for adding locking plates. The material collection slide 20 and the material collection slide 21 on the filling workbench 6 work together to use the lock plate transmission pipe 24 and the filling spring to take out the locking plates one by one and place them inside multiple storage tubes 22. When the tabletting assembly is taken, the pressing head 8 descends and contacts the storage tube 22, and the pressing plate is elastically loaded into the pressing head 8 through the spring inside the storage tube 22, and fixed by the suction cup inside the pressing head 8, preparing for subsequent pressing operations.

[0039] The working principle of the present invention is:

[0040] The base 1 is the supporting structure of the entire engine locking plate press. The press mechanism, including the feeding assembly, filling assembly, and pressing assembly, is mounted on its upper surface. These components work together to complete the conveying, filling, and pressing processes of the locking plates. The base provides a stable working platform to ensure precise alignment and stable operation of each component.

[0041] The feeding assembly realizes the flexible movement of the rotating platform 4 through the sliding bar 13 and the sliding block 14 on the sliding carrier 2 so as to place the engine parts. The feeding assembly realizes the flexible movement of the placement plate 17 through the sliding bar 13 and the sliding block 14 on the sliding carrier 2. When placing the engine parts, the staff controls the driving motor 18 to extend, and then drives 4 to slide to the front end of 2 through 14. Then, the engine parts are placed on the placement plate 17 manually or by a loading robot, and the driving motor 18 immediately drives the rotating platform 4 back to its original position.

[0042] Afterwards, the two pressing plates 19 are lowered to press the engine components against the upper surface of the rotating platform 4. Subsequently, the servo motor 16 drives the rotating platform 4 to rotate slightly, so that the locking hole on one side of the engine surface is kept horizontal, which is convenient for subsequent pressing operations. After the pressing of the locking hole on one side is completed, the servo motor 16 drives the rotating platform 4 to rotate in the opposite direction, so that the locking hole on the other side is rotated to a horizontal state, which is convenient for pressing. The pressing plate 19 can follow the rotating platform 4 to move synchronously when it rotates and continue to press the engine components. The auxiliary component is used to detect the rotation angle of the rotating platform 4. After the servo motor 16 drives the rotating platform 4 to rotate once, the main small motor 33 is started by the staff signal, and drives the connecting shaft 34 to rotate, so that the bottom block 35 is rotated to fit with the upper surface of the connecting plate body 3. Subsequently, the telescopic motor 38 is driven to extend, so that the sliding plate frame 39 slides to the end of the limiting support bar 40. The end is stopped by the limiting effect of the end of the limiting support bar 40. Subsequently, the electric push rod 36 is retracted to drive the sliding plate frame 39 to descend, and the fitting base plate 47 at the center of the sliding plate frame 39 is fitted with the upper surface of the engine component. Subsequently, the threaded rod 43 is driven to rotate by the auxiliary small motor 41, and the engagement of the engaging block 42 with the threaded rod 43 drives the sliding support bar 46 to slide at the center of the arc groove base plate 45. If the angle of the rotating platform 4 does not reach the horizontal state, the fitting base plate 47 will move under the cooperation of the sliding support bar 46 and the arc groove base plate 45. If the angle does not deviate, the sliding of the sliding support bar 46 will be restricted under the action of the in-situ fitting base plate 47 and the surface of the engine component. The auxiliary small motor 41 stops the braking effect immediately after sensing that the engaging block 42 is restricted. Subsequently, the detection signal is transmitted to the staff's observation equipment through the sensor connected to the auxiliary small motor 41, so that the staff can adjust the rotation amplitude of the servo motor 16.

[0043] The pressing assembly is supported by a top frame 7 on four support columns 27, on which a sliding guide rail 28 and a slidable pressing plate 29 are installed. The control motor 30 drives the pressing plate 29 to move along the sliding guide rail 28 to achieve lateral adjustment of the pressing head. The lateral adjustment block 31 further fine-tunes the position of the pressing head to ensure that the pressing head 8 is accurately aligned with the locking piece. Then the pressing head 8 is lowered to press the locking piece into the locking piece hole of the engine component. The suction cup inside the pressing head 8 is used to fix the locking piece when the filling assembly is used to replenish the locking piece, and the connecting spring assists the filling and pressing process, so that the pressing head 8 presses the locking piece into the locking piece hole to facilitate the reset of the end of the pressing head 8.

[0044] The storage barrel 9 on the storage table 10 can be used to store locking plates, and the locking plates are transported to the filling workbench 6 through the lock plate transmission pipe 24 and the discharge head 26. The feeding port 25 above the storage barrel 9 is convenient for adding locking plates. The material collection slide 20 and the material collection slide 21 on the filling workbench 6 work together to use the lock plate transmission pipe 24 and the filling spring to take out the locking plates one by one and place them inside multiple storage tubes 22. When the tabletting assembly is taken, the pressing head 8 descends and contacts the storage tube 22, and the pressing plate is elastically loaded into the pressing head 8 through the spring inside the storage tube 22, and fixed by the suction cup inside the pressing head 8, preparing for subsequent pressing operations.

[0045] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An engine lock plate press machine, characterized in that: include: A base (1), wherein the upper surface of the base (1) is provided with a pressing mechanism, the pressing mechanism comprising a feeding component, a filling component and a tablet pressing component; The feeding assembly comprises: a sliding carrier (2), the sliding carrier (2) being fixedly mounted on the upper surface of the base (1), the upper surface of the sliding carrier (2) being provided with two sliding bars (13), the upper surface of the sliding bars (13) being provided with a plurality of slidable sliding blocks (14), the upper surface of the sliding blocks (14) being fixedly mounted with two connecting platforms (15), a rotatable rotating platform (4) being provided between the two connecting platforms (15), the upper surface of the sliding carrier (2) being further provided with a pressing frame (5), the side surface of the pressing frame (5) being provided with two pressing plates (19) cooperating with the rotating platform (4); The tablet pressing assembly comprises: four support columns (27), the support columns (27) are fixedly mounted on the upper surface of the base (1), the upper surface of the support columns (27) is provided with a top frame (7), the upper surface of the top frame (7) is provided with two sliding guide rails (28), the upper surfaces of the two sliding guide rails (28) are provided with a slidable pressing plate (29), a plurality of pressing heads (8) are provided below the pressing plate (29), a suction cup for fixing the locking sheet is provided inside the pressing head (8), and a connecting spring for assisting filling and pressing is also provided on the surface of the pressing head (8); The feeding assembly further includes an auxiliary assembly, the auxiliary assembly including: a connecting plate body (3), the connecting plate body (3) being fixedly mounted on a side surface of the connecting platform (15), a fixed side plate body (32) being provided on one side surface of the connecting plate body (3), a main small motor (33) being provided on one side surface of the fixed side plate body (32), a connecting shaft body (34) being further provided on the side surface of the fixed side plate body (32), an output shaft of the main small motor (33) being connected to a side surface of the connecting shaft body (34), and a bottom block body (35) being provided on one side surface of the connecting shaft body (34); An electric push rod (36) is provided on the upper surface of the bottom block (35), a top block (37) is provided on the upper surface of the electric push rod (36), a telescopic motor (38) is provided at the center of the top block (37), two limiting supports (40) are provided on one side surface of the top block (37), a slidable sliding plate frame (39) is provided on the surface of the limiting supports (40), the end of the output shaft of the pressing head (8) is connected to the side surface of the sliding plate frame (39), and a limiting groove that matches the limiting supports (40) is provided on the side surface of the sliding plate frame (39); A rotatable detection block (44) is provided at the center of the sliding plate frame (39), a fitting bottom plate (47) is provided on the bottom surface of the detection block (44), an arc groove base plate (45) is fixedly installed on the upper surface of the detection block (44), two fixed plates are fixedly installed on the upper surface of the sliding plate frame (39), a side surface of one of the fixed plates is provided with a sub-small motor (41), a threaded rod (43) is provided on the output end of the sub-small motor (41), the other end of the threaded rod (43) is connected to the side surface of the other fixed plate, a surface of the threaded rod (43) is meshed with a slidable meshing block (42), and a sliding support bar (46) is fixedly installed on the side surface of the meshing block (42); The upper surface of the sliding plate frame (39) is also provided with a slidable driven block (48), and the upper surface of the sliding plate frame (39) is provided with a sliding path (49) for facilitating the sliding of the driven block (48), and the sliding support bar (46) passes through the center of the arc groove base plate (45) and is connected to a side surface of the driven block (48).

2. The engine locking plate press machine according to claim 1, characterized in that: A placement plate (17) is provided on the upper surface of the rotating platform (4), a shaft is provided at the connection between the connecting platform (15) and the rotating platform (4), and a driving motor (18) for driving the connecting platform (15) to slide is provided on one side of the connecting platform (15), wherein a servo motor (16) is provided on the side surface of one of the connecting platforms (15), and an output shaft of the servo motor (16) is connected to a side surface of the rotating platform (4).

3. The engine locking plate press machine according to claim 1, characterized in that: The filling assembly comprises: a material storage platform (10), the material storage platform (10) is arranged on a side surface of the base (1), a material storage barrel (9) is arranged on the upper surface of the material storage platform (10), a feeding port (25) is opened above the material storage barrel (9), a locking piece transmission pipe (24) is arranged on the side surface of the material storage barrel (9), a material feeding rack (11) for setting up the locking piece transmission pipe (24) is arranged on the upper surface of the material storage platform (10), and one end of the locking piece transmission pipe (24) is provided. A discharge head (26) is provided, and a bottom support frame (23) is further provided on the upper surface of the base (1), a filling workbench (6) is provided on the upper surface of the bottom support frame (23), a material taking slide (20) is provided on the upper surface of the filling workbench (6), a slidable material taking slide (21) is provided on the upper surface of the material taking slide (20), a plurality of film storage tubes (22) are provided on the upper surface of the film storage tubes (22), and a filling spring is provided on the bottom surface of the film storage tubes (22).

4. The engine locking plate press machine according to claim 1, characterized in that: The upper surface of the top frame (7) is provided with a control motor (30) for driving the pressing plate (29), the upper surface of the pressing plate (29) is provided with a lateral adjustment block (31), the side surface of the pressing plate (29) is also provided with a descending slide (12), the lateral adjustment block (31) is provided on a side surface of the descending slide (12), a pressure head substrate is provided on the output shaft of the lateral adjustment block (31), and the pressing head (8) is provided on the bottom surface of the pressure head substrate.

Citation Information

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