Sliding block multi-stroke and multi-station press machine

By integrating the storage and transfer section, the blowing and guiding section, and the brush adjusting section into the press, the automated transfer of workpieces and the automatic cleaning of the transparent plate are realized, solving the problems of high workpiece transfer difficulty and low cleaning efficiency in existing presses, and improving operational safety and production efficiency.

CN121340685AActive Publication Date: 2026-01-16XIAMEN ZHAOTANG MASCH TOOL CO LTD
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Patent Information

Application Number
CN202511926340.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-19
Publication Date
2026-01-16
Estimated Expiration
2045-12-19

AI Technical Summary

Technical Problem

Existing presses suffer from low levels of automation integration in workpiece transfer and transparent protective plate cleaning, resulting in inconvenient operation and low efficiency.

Method used

A multi-stroke, multi-station slider press was designed, integrating a storage and transfer section, a blowing and guiding section, and a brush adjusting section. It utilizes a motor, a winding wheel, and a rope structure to achieve automatic auxiliary transfer of workpieces, and uses a motor in conjunction with transmission parts to achieve automatic wiping of transparent plates.

Benefits of technology

It enables automated collection of workpieces and efficient cleaning of transparent plates, reducing operational difficulty and safety risks, and improving production efficiency.

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Abstract

The invention relates to the technical field of press machines, and discloses a sliding block multi-stroke multi-station press machine which comprises a press machine body and a pressing base arranged in the press machine body through a cam shaft in a reciprocating lifting mode, a plurality of pressing heads are fixed to the lower end of the pressing base, a sliding base is fixed to the inner side of the bottom wall of the press machine body, and a sliding block multi-station mold is arranged on the sliding base in a reciprocating sliding mode. The sliding block multi-station mold is located below the pressing head, discharging openings are formed in the front faces of the sliding block multi-station mold and the sliding base, and a transparent plate is fixed to the front face of the press machine. The storing and moving part is arranged on the front face of the sliding seat and used for automatically collecting and transferring machined workpieces; the blowing and guiding part is arranged between the collecting and supporting piece and the sliding seat and is used for automatically blowing and cleaning stations of the sliding block multi-station mold; and the brush adjusting part is arranged on the outer side of the transparent plate and used for automatically wiping and cleaning the transparent plate. By integrating the functional modules, automatic collection and transfer of workpieces, automatic cleaning of stations and automatic wiping of transparent plates are achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of press machine, in particular to a slider multi-stroke multi-station press machine. BACKGROUND

[0002] The press machine is a device for stamping and forming metal by reciprocating the press head driven by the cam shaft and cooperating with the forming die. The processed workpieces need to be collected in time by the container and transferred at the appropriate time. The processing station of the die is prone to accumulate impurities after long-term use, which affects the processing accuracy of the workpiece and the service life of the die, and needs to be cleaned regularly. In addition, in order to ensure the safety of the operator and facilitate the observation of the processing process, the press machine usually has a transparent protective plate. However, these protective plates are prone to be contaminated by dust, oil stains and other contaminants after long-term use, affecting the observation effect and being inconvenient to clean and maintain.

[0003] The container is placed on the press machine, and the bottom of the container is not conducive to the support and movement of the worker, increasing the difficulty of movement. The cleaning of the transparent plate usually requires manual wiping, which has safety hazards and low efficiency. Therefore, how to integrate the auxiliary transfer of the workpiece and the automatic wiping function of the protective plate into the press machine is an important problem faced by the current press machine technology development. SUMMARY

[0004] The present application provides a slider multi-stroke multi-station press machine to solve the problems of low integration of auxiliary transfer of workpieces and automatic wiping function of transparent protective plate, high difficulty of transferring workpieces, inconvenient operation and low efficiency of cleaning transparent plate.

[0005] To solve the above technical problems, the technical scheme of the present application is as follows: In a first aspect, a slider multi-stroke multi-station press machine includes a press machine and a press seat arranged in the press machine by reciprocating lifting of a cam shaft. The lower end of the press seat is fixed with a plurality of press heads. The inner side of the bottom wall of the press machine is fixed with a sliding seat. A slider multi-station die is arranged on the sliding seat by reciprocating sliding. The slider multi-station die is located below the press head. The front of the slider multi-station die and the sliding seat is provided with a discharge port. The front of the press machine is fixed with a transparent plate to protect the press seat and the press head. The slider multi-station press machine is characterized in that it further comprises: A storage and transfer part is arranged on the front of the sliding seat and below the transparent plate. The storage and transfer part includes a collecting and supporting part arranged on the front of the sliding seat. The collecting and supporting part corresponds to the discharge port. The storage and transfer part further includes a motor arranged between the collecting and supporting part and the transparent plate, a winding wheel connected to the driving end of the motor by lifting, and a pulling rope connected to the winding wheel and the collecting and supporting part. A blowing and guiding part is arranged between the collecting and supporting part and the sliding seat. The blowing and guiding part includes a blowing part arranged obliquely above the sliding seat. The blowing part is connected to the press machine. A sliding support part is slidingly arranged on the outer side of the blowing part. The sliding support part is connected to the motor. The brush part is arranged outside the transparent plate and above the driving member, and comprises a U-shaped plate arranged outside the lower end of the transparent plate, a push plate rotatably connected to the lower end of the U-shaped plate, a driving connecting member connected to the winding wheel, a transmission part rotatably penetrating the U-shaped plate and connected to the push plate and in contact with the transparent plate, and a brush part arranged on the U-shaped plate.

[0006] Further, the set supporting member comprises: The supporting part is movably arranged in the press and below the motor; The tray is fixed on both sides of the supporting part; The inclined plate is arranged on the side of the tray and the supporting part close to the discharge port and in contact with the sliding seat and below the discharge port.

[0007] Further, the driving member further comprises: The track is arranged above the supporting part and penetrates the supporting part close to the sliding seat; The supporting sliding plate is fixed at one end to the front of the sliding seat and extends to the track at the other end; The rotating shaft is connected to the driving end of the motor; The push bar is symmetrically fixed outside the rotating shaft; The pulling moving part penetrates the supporting sliding plate and is connected to the winding wheel and the tray.

[0008] Further, the pulling moving part comprises: The through slot is symmetrically arranged through the winding wheel and cooperates with the push bar; The through hole is arranged through the supporting sliding plate; The connecting ring is fixed on the tray; The pulling rope is knotted at one end to the outside of the connecting ring and penetrates the through hole and is connected to the winding wheel at the other end.

[0009] Further, the blowing part comprises: The support is symmetrically fixed in the press and between the tray and the sliding seat; The air pipe is fixed on the support; The flange is connected to both ends of the air pipe; The blow holes are uniformly arranged on the air pipe close to the sliding block multi-station die.

[0010] Further, the sliding supporting member comprises: The C-shaped sleeve is slidably arranged outside the air pipe; The sleeve ring is fixed outside the motor; The supporting plate is fixed on the C-shaped sleeve close to the motor and is connected to the U-shaped plate and the sleeve ring.

[0011] Further, the driving connecting member further comprises: Inclined rubber wheel, fixed at the lower end of the push disc; Inclined rubber sleeve, fixed at the lower end of the push sleeve, below the inclined rubber wheel, and connected with the winding wheel; Supporting fork, arranged outside the rotating shaft, below the winding wheel.

[0012] Further, the transmission part comprises: Movable groove, arranged inside the U-shaped plate; Rotating rod, arranged in the movable groove, rotating through the lower end of the U-shaped plate, and connected with the push disc at the lower end; Belt wheel, fixed at the upper end of the rotating rod, and arranged in the movable groove; Driven wheel, rotating and symmetrically arranged in the movable groove; Belt, arranged outside the driven wheel and the belt wheel; Rotary push sub-part, arranged through the U-shaped plate, and connected with the driven wheel.

[0013] Further, the rotary push sub-part comprises: Rotary hole, symmetrically arranged inside the U-shaped plate, and communicated with the movable groove; Movable port, arranged through the U-shaped plate near the side of the transparent plate, and communicated with the rotary hole; Rubber wheel, movably arranged through the movable port, rotatingly connected with the U-shaped plate, and in contact with the transparent plate; Rotary rod, rotatingly arranged through the rotary hole, one end axially connected with the rubber wheel, and the other end axially connected with the driven wheel.

[0014] Further, the wiping part comprises: Fixed plate, symmetrically fixed outside the U-shaped plate by the fixing member, and arranged at the inner and outer sides of the transparent plate; Cotton brush, fixed on the side of the fixed plate near the transparent plate by the fixing member, and in contact with the transparent plate.

[0015] The above scheme of the present application at least has the following beneficial effects: By arranging the storage and moving part, the blowing guide part, and the brush adjusting part, the press machine can automatically move the tray and the supporting part forward after completing the multi-stroke pressing, by using the motor, the winding wheel, and the pull rope structure, automatically assisting the transfer and collection of the workpieces, and cooperating with the blowing guide part and the brush adjusting part to automatically wipe the transparent plate by the motor and the transmission part, so as to keep the observation window clean, compact the overall structure, improve the cleaning efficiency of the transparent plate, and reduce the difficulty and safety of moving and collecting the containers. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The overall perspective view of the press machine provided by the embodiment of the present application; Figure 2 The overall perspective view of the press machine provided by the embodiment of the present application; Figure 1structure schematic view of the structure at A in the figure; Figure 3 perspective view of the tray, air pipe and cotton brush combination provided by the embodiment of the present application; Figure 4 structure schematic view of the structure at B in the figure; Figure 3 Figure 5 cross-sectional plan view of the tray, motor and U plate combination provided by the embodiment of the present application; Figure 6 structure schematic view of the structure at C in the figure; Figure 5 Figure 7 perspective exploded view of the pulley, inclined rubber sleeve, winding wheel, rotating shaft and supporting fork provided by the embodiment of the present application; Figure 8 perspective view of the pulley, inclined rubber sleeve, winding wheel, rotating shaft, supporting fork, belt and rubber wheel combination provided by the embodiment of the present application; Figure 9 structure schematic view of the structure at D in the figure; Figure 5 Figure 10 plan schematic view of the supporting fork sleeve set in the winding wheel provided by the embodiment of the present application; Figure 11 perspective structure schematic view of the separation and engagement of the inclined rubber wheel, pushing disc, inclined rubber sleeve and pushing sleeve provided by the embodiment of the present application; Figure 12 perspective structure schematic view of the motor and supporting fork provided by the embodiment of the present application.

[0017] Explanation of reference numerals: In the figure: 1, press; 2, controller; 3, maintenance door; 4, transparent plate; 5, pressing seat; 6, pressing head; 7, feeding pipe; 8, sliding seat; 9, sliding block multi-station die; 10, discharge port; 11, inclined plate; 12, supporting support; 13, tray; 14, track; 15, supporting sliding plate; 16, through port; 17, connecting ring; 18, pulling rope; 19, motor; 20, rotating shaft; 21, pushing strip; 22, winding wheel; 23, through slot; 24, supporting fork; 25, support; 26, air pipe; 27, flange; 28, spout; 29, C sleeve; 30, supporting plate; 31, sleeve ring; 32, U plate; 33, movable slot; 34, rotating rod; 35, pushing disc; 36, inclined rubber wheel; 37, inclined rubber sleeve; 38, pushing sleeve; 39, pulley; 40, movable port; 41, rubber wheel; 42, rotating hole; 43, rotating rod; 44, driven wheel; 45, belt; 46, fixed plate; 47, cotton brush. DETAILED DESCRIPTION

[0018] ​​​Exemplary embodiments of the invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the invention are shown in the drawings, it should be understood that the invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.

[0019] like Figures 1 to 10 As shown, an embodiment of the present invention provides a multi-stroke, multi-station sliding block press, including a press 1 and a pressure seat 5 reciprocatingly raised and lowered within the press 1 via a camshaft. Multiple pressure heads 6 are fixed to the lower end of the pressure seat 5. A slide block 8 is fixed to the inner side of the bottom wall of the press 1. A multi-station sliding block mold 9 is reciprocally slidably mounted on the slide block 8, and the multi-station sliding block mold 9 is located below the pressure heads 6. A discharge port 10 is provided on the front of the multi-station sliding block mold 9 and the slide block 8. A transparent plate 4 is fixed to the front of the press 1 to protect the pressure seat 5 and the pressure heads 6. The press also includes: The storage and transfer section is located on the front of the slide 8 and below the transparent plate 4. It includes a collection support member located on the front of the slide 8, and the collection support member corresponds to the outlet 10. It also includes a drive and transfer member consisting of a motor 19 located between the collection support member and the transparent plate 4, a wheel 22 that is vertically connected to the drive end of the motor 19, and a pull rope 18 connected to the wheel 22 and the collection support member. The blowing guide is disposed between the collection support and the slide 8. It includes a blowing element disposed obliquely above the slide 8 and connected to the press 1, and a sliding support slidably disposed outside the blowing element and connected to the motor 19. The brush adjustment unit is located outside the transparent plate 4 and above the drive member. It includes a drive member consisting of a U-plate 32 located outside the lower end of the transparent plate 4, a push plate 35 rotatably connected to the lower end of the U-plate 32, and a push sleeve 38 connected to the swivel wheel 22. It also includes a transmission part that rotatably passes through the U-plate 32, and the transmission part is connected to the push plate 35 and in contact with the transparent plate 4, as well as a wiping brush member located on the U-plate 32.

[0020] Specifically, the front of the press 1 is provided with a controller 2, and the controller 2 is located on one side of the transparent plate 4. The front of the press 1 is provided with an inspection door 3 via a hinge, and the inspection door 3 is located on the other side of the transparent plate 4. The press 1 is provided with a feeding pipe 7, and the feeding pipe 7 corresponds to the position of the multi-station mold 9. The reciprocating up-and-down moving pressure seat 5 and the reciprocating horizontal moving sliding multi-station mold 9 form a multi-stroke system.

[0021] In practical application, the operator can control the press 1 by operating the controller 2 according to the actual needs, and can stop the press 1 in an emergency. The press 1 can drive the pressure seat 5 to move up and down reciprocally using the camshaft. The pressure seat 5 can provide stable support for the pressure head 6 and can drive the pressure head 6 to move together. The slide 8 can provide lateral reciprocating sliding support and guidance for the slider multi-station mold 9 under the support of the press 1. The slider multi-station mold 9 can perform one reciprocating lateral movement after the pressure head 6 reciprocates once. The feeding pipe 7 can inject the workpiece to be processed into the station of the slider multi-station mold 9 after one reciprocating lateral movement. The slider multi-station mold 9 can laterally squeeze the workpiece during one reciprocating lateral movement and discharge the workpiece into the discharge port 10 after squeezing. The operator can observe the working situation inside the press 1 through the transparent plate 4.

[0022] As a preferred embodiment of the present invention, the support member includes: Support 12 is movably disposed inside press 1 and located below motor 19; The tray 13 is fixed to both sides of the support 12; The inclined plate 11 is disposed on the side of the tray 13 and the support 12 near the outlet 10, and is in contact with the slide 8 and located below the outlet 10.

[0023] Specifically, the support 12 can provide support for the tray 13, and the press 1 can provide support for both the support 12 and the tray 13. The tray 13 and the support 12 work together to provide storage and collection space for the finished workpiece. The outlet 10 has an inclined angle, which allows the finished workpiece to slide onto the inclined plate 11. The inclined plate 11 can use the inclined angle to guide the finished workpiece into the support 12.

[0024] The driving component also includes: Track 14 is provided above support 12 and extends through one end of support 12 near slide 8; The slide plate 15 is fixed at one end to the front of the slide seat 8, and the other end extends into the track 14 to cooperate. The rotating shaft 20 is connected to the drive end of the motor 19; Push bar 21 is symmetrically fixed on the outside of rotating shaft 20; The pull-out component is set through the support slide plate 15 and is connected to the circumferential wheel 22 and the tray 13.

[0025] Specifically, the support 12 provides space for the track 14, the slide 8 provides stable support for the support plate 15, the support plate 15 can cooperate with the track 14 so that the support 12 can move back and forth under the guidance and limitation of the track 14 and the support plate 15, the motor 19 can drive the rotating shaft 20 to rotate through the drive end, the rotating shaft 20 can stably support the push bar 21 and drive the push bar 21 to rotate together.

[0026] The pull-out parts include: The through groove 23 is symmetrically opened through the circumferential wheel 22 and cooperates with the push bar 21; 16 openings, through which the skateboard support 15 is opened; Connecting ring 17 is fixed on tray 13; The pull rope 18 has one end knotted and connected to the outside of the connecting ring 17, and the other end passes through the opening 16 and is connected to the spool 22.

[0027] Specifically, the push bar 21 can cooperate with the slot 23 and use rotational power to drive the wheel 22 to rotate. The support plate 15 can provide opening space for the through 16, and the through 16 can provide a through channel for the pull rope 18, so that the support plate 15 can provide a blocking and limiting function for the pull rope 18, and the pull rope 18 can change the direction of movement under the action of external force. The tray 13 can provide stable support for the connecting ring 17, and the connecting ring 17 can facilitate the knotting and connection of the pull rope 18. The fork support is slidably connected to the upper end of the motor 19.

[0028] In practical application, after the workpieces are collected in the tray 13 and support 12, the worker needs to push the rotating wheel 22 upwards, so that the rotating wheel 22 is fitted onto the outside of the push bar 21 through the slot 23. Then, the fork 24 is fitted onto the outside of the rotating shaft 20 and below the rotating wheel 22, so that the fork can support the rotation of the rotating wheel 22. After that, the motor 19 is started, so that the motor 19 drives the rotating shaft 20 to rotate through the drive end. The rotating shaft 20 will then use the rotational power to drive the rotating wheel 22 to rotate through the push bar 21, so that the rotating wheel 22 uses the rotational power to wind and wrap the pull rope 18. The pull rope 18 can move through the opening 16 under the resistance of the support plate 15, so that the pull rope 18 can pass through the opening 16. Pull the tray 13 forward through the connecting ring 17, causing the tray 13 to move along with the support 12 under the action of external force. At the same time, the support 12 will move forward under the guidance and limitation of the support slide 15 by the track 14 under the action of external force. This allows the support 12 and the tray 13 to move together with the workpieces collected inside them through the bottom of the transparent plate 4 and move forward, so that the support 12 can be moved to the outside. This allows the staff to support the support 12 or the tray 13 from below. Then, the knotted pull rope 18 is separated from the connecting ring 17, and the support 12, the tray 13 and the collected workpieces can be transferred, making it convenient for the staff to remove the support 12, the tray 13 and the workpieces for transfer.

[0029] After the workpiece is transferred, the worker can put the empty support 12 and tray 13 back into the press 1, and tie the pull rope 18 to the connecting ring 17. At the same time, the support 12 needs to be fitted onto the lower outer side of the support slide plate 15 using the track 14, and slide to connect with the support slide plate 15. Then, push the support 12 and tray 13 to reset them in the direction closer to the slide block 8.

[0030] In a preferred embodiment of the present invention, the blowing component includes: The bracket 25 is symmetrically fixed inside the press 1 and is located between the tray 13 and the slide 8; Trachea 26, fixed on bracket 25; Flange 27 is connected to both ends of the air pipe 26; The nozzles 28 are evenly distributed on the air pipes 26 near the slider multi-station mold 9.

[0031] Specifically, the bracket 25 can stably support the air pipe 26 under the support of the press 1, the air pipe 26 can provide support for the flange 27, and the air pipe 26 can provide stable support for the nozzle 28. The nozzle 28 can provide an exhaust channel for the gas in the air pipe 26, and the flange 27 can provide a connection position with the pipeline that transports high-pressure gas, so that high-pressure gas can enter the air pipe 26.

[0032] The sliding support components include: C-shaped sleeve 29 is slidably positioned on the outside of the trachea 26; The collar 31 is fixed to the outside of the motor 19; The support plate 30 is fixed to the C sleeve 29 near the motor 19 and is connected to the U plate 32 and the collar 31.

[0033] Specifically, the air pipe 26 provides support and sliding guidance for the C-sleeve 29. The C-sleeve 29 has a C-shaped structure, and its C-shaped notch can prevent the nozzle 28 from blocking the sliding of the C-sleeve 29. It also allows the C-sleeve 29 to provide support for the support plate 30 under the support of the air pipe 26. The support plate 30 can stably support the U-plate 32 and the collar 31, so that the collar 31 can provide stable support for the motor 19.

[0034] In practical application, the operator can connect the high-pressure gas pipeline to the flange 27 according to actual needs, and control the high-pressure gas to enter the flange 27 through the high-pressure gas pipeline, and then enter the air pipe 26 through the flange 27. Subsequently, the high-pressure gas will enter each nozzle 28 through the air pipe 26, and then pass through the nozzle 28. Guided by the tilt angle of the nozzle 28, it will be sprayed onto the station of the slider multi-station mold 9, thereby using high-pressure air to blow away impurities in the station of the slider multi-station mold 9, and avoid impurities affecting the forming of the workpiece in the slider multi-station mold 9.

[0035] In a preferred embodiment of the present invention, the drive connector further includes: The inclined rubber wheel 36 is fixed to the lower end of the push plate 35; The inclined rubber sleeve 37 is fixed to the lower end of the push sleeve 38 and located below the inclined rubber wheel 36, and is connected to the winding wheel 22; The fork 24 is located outside the pivot 20 and below the wheel 22, and is connected to the motor 19.

[0036] Specifically, the push plate 35 provides support for the inclined rubber wheel 36. The inclined rubber wheel 36 and the inclined rubber sleeve 37 are made of rubber and can transmit rotational power through friction. The inclined rubber sleeve 37 can provide support for the push sleeve 38 under the support of the rotating wheel 22, so that the rotating wheel 22 can rotate together with the inclined rubber sleeve 37 under the drive of the rotating shaft 20 and the push bar 21. The through groove 23 can cooperate with the push bar 21 to provide a guiding function for the lifting and moving of the rotating wheel 22. The support fork 24 can provide support for the rotating wheel 22 under the support of the motor 19, so that the rotating wheel 22 can be kept in cooperation with the push bar 21 by using the through groove 23. The support fork 24 can be pulled off the motor 19 and put into the rotating wheel 22 (located above the pull rope 18).

[0037] Transmission components include: The movable slot 33 is located inside the U-plate 32; The rotating rod 34 is set in the movable groove 33 and passes through the lower end of the U plate 32 by rotating through the bearing. Its lower end is connected to the push plate 35. The pulley 39 is fixed to the upper end of the rotating rod 34 and is located in the movable groove 33; Driven wheel 44 is rotatably and symmetrically arranged in movable groove 33; The belt 45 is fitted over the outer side of the driven pulley 44 and the pulley 39; The rotary actuator component is installed through the U-plate 32 and is connected to the driven wheel 44.

[0038] Specifically, the U-plate 32 provides space for the movable groove 33, which provides space for the rotating rod 34, pulley 39, driven wheel 44 and belt 45 to rotate and move. The U-plate 32 can cooperate with the bearing to provide rotational support for the rotating rod 34, the rotating rod 34 can provide support for the pulley 39, and the belt 45 can transmit the rotational power of the pulley 39 to the driven wheel 44.

[0039] The rotary actuator components include: Rotary holes 42 are symmetrically opened inside the U-plate 32 and are connected to the movable groove 33; The movable opening 40 is opened through the side of the U-plate 32 near the transparent plate 4 and is connected to the rotating hole 42; The rubber wheel 41 is provided with a movable through-hole 40 and is rotatably connected to the U-plate 32 and in contact with the transparent plate 4; The rotating rod 43 is rotatably connected through the rotating hole 42, with one end axially connected to the rubber wheel 41 and the other end axially connected to the driven wheel 44.

[0040] Specifically, the driven wheel 44 can use rotational power to drive the rotating rod 43 to rotate within the rotating hole 42, and the rotating rod 43 can drive the rubber wheel 41 to rotate together. The movable opening 40 can provide rotational space for the rubber wheel 41. The rubber wheel 41 can use rotational power and the friction of the transparent plate 4 to push the U plate 32, the fixed plate 46 and the cotton brush 47 to move horizontally.

[0041] The brush components include: The fixed plate 46 is symmetrically fixed to the outside of the U plate 32 by fixing components, and is located on both the inner and outer sides of the transparent plate 4; The cotton brush 47 is fixed to the side of the fixed plate 46 near the transparent plate 4 by a fixing component, and the cotton brush 47 is in contact with the transparent plate 4.

[0042] Specifically, the U-plate 32 can provide support for the fixed plate 46 using the fixing components, so that the fixed plate 46 can stably support the cotton brush 47, and the staff can adjust it according to the actual needs.

[0043] In practical application, when the transparent plate 4 is dirty and affects the operator's observation of the working conditions inside the press 1, the operator can remove the tray 13 and support 12 from the press 1 and separate the pull rope 18 from the connecting ring 17. Then, the operator can pull the support fork 24 forward to separate it from the motor 19, and then place the support fork 24 inside the rotating wheel 22 (above the pull rope 18) and push the support fork 24 upward. Under the action of external force, the support fork 24 pushes the rotating wheel 22 upward, so that the rotating wheel 22 utilizes the through groove 23. The sleeve is fitted onto the outside of the push bar 21, allowing the winding wheel 22 to move upwards along with the inclined rubber sleeve 37 under external force. This causes the inclined rubber sleeve 37 to move upwards along with the push sleeve 38, allowing the push sleeve 38 to fit onto the outside of the push plate 35 after its upward movement. Simultaneously, the inclined rubber sleeve 37 will adhere to the inclined rubber wheel 36, allowing the push plate 35 to provide support for the inclined rubber sleeve 37 using the friction with the push sleeve 38. Then, the support fork 24 is pulled out, separating it from the winding wheel 22, and the pull rope 18 is wound around the outside of the winding wheel 22. After securing the knot, the motor 19 is controlled to run, causing it to drive the rotating wheel 22 to rotate via the rotating shaft 20 and push bar 21. This rotating wheel 22 then drives the inclined rubber sleeve 37 to rotate, which in turn drives the push sleeve 38 to rotate. The inclined rubber sleeve 37 and push sleeve 38 use rotational power and friction to push the inclined rubber wheel 36 and push plate 35 to rotate together. This push plate 35 then drives the pulley 39 to rotate via the rotating rod 34. The pulley 39 then uses rotational power and friction to drive the driven wheel via the belt 45. 44 rotates synchronously, so that the driven wheel 44 can drive the rubber wheel 41 to rotate together through the rotating rod 43. The rubber wheel 41 uses the rotational power and the friction with the transparent plate 4 to push the U plate 32, motor 19, support plate 30, C sleeve 29, fixed plate 46 and cotton brush 47 to move according to the direction of rotation. The cotton brush 47 can move along the transparent plate 4. At the same time, the support plate 30 and C sleeve 29 will move synchronously under the support and guidance of the air tube 26, so that the cotton brush 47 can wipe and clean the transparent plate 4 during the movement.

[0044] Staff can disassemble the fixed parts and remove the cotton brush 47 for cleaning and replacement as needed.

[0045] The above description represents the preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A slider multi-stroke multi-station press machine, comprising a press machine and a press seat arranged in the press machine through a cam shaft reciprocating lifting, the lower end of the press seat is fixed with a plurality of press heads, the inner side of the bottom wall of the press machine is fixed with a sliding seat, a slider multi-station die is arranged on the sliding seat through reciprocating sliding, and the slider multi-station die is located below the press head, the front of the slider multi-station die and the sliding seat is provided with a discharge port, and the front of the press machine is fixed with a transparent plate to protect the press seat and the press head, characterized in that, Also include: The storage and removal part is arranged in the front of the slide, and is located below the transparent plate, which includes a set of holders arranged in the front of the slide, and the set of holders corresponds to the discharge port, and also includes a drive removal part composed of a motor arranged between the set of holders and the transparent plate, a winding wheel connected with the driving end of the motor, and a pull rope connected with the winding wheel and the set of holders; The blowing guide part is arranged between the set of holders and the slide, which includes a blowing part arranged above the slide, and the blowing part is connected with the pressure machine, and a sliding support part is arranged outside the blowing part, and the sliding support part is connected with the motor; The brush adjusting part is arranged outside the transparent plate and above the drive removal part, which includes a drive connecting part composed of a U-shaped plate arranged outside the lower end of the transparent plate, a push disc rotatably connected with the lower end of the U-shaped plate, and a push sleeve connected with the winding wheel, and also includes a transmission part rotatably arranged through the U-shaped plate, which is connected with the push disc and in contact with the transparent plate, and a brush part arranged on the U-shaped plate.

2. Press according to claim 1, characterized in that The set of holders includes: The support is movably arranged in the pressure machine and below the motor; The tray is fixed on both sides of the support; The inclined plate is arranged on the side of the tray and the support close to the discharge port and is in contact with the slide and below the discharge port.

3. The press machine of claim 2, wherein, The drive removal part further includes: The track is arranged above the support and penetrates the support close to the slide; The support sliding plate is fixed on one end of the front of the slide and extends to the track on the other end; The rotating shaft is connected with the driving end of the motor; The push bar is fixed symmetrically on the outside of the rotating shaft; The pull removal part is arranged through the support sliding plate and connected with the winding wheel and the tray.

4. The press machine of claim 3, wherein, The pull removal part includes: The through slot is symmetrically arranged through the winding wheel and matched with the push bar; The through port is arranged through the support sliding plate; The connecting ring is fixed on the tray; The pull rope is knotted on one end outside the connecting ring and connected with the winding wheel on the other end through the through port.

5. The press machine of claim 4, wherein, The blowing part includes: The bracket is fixed symmetrically in the pressure machine and between the tray and the slide; The air pipe is fixed on the bracket; The flange is connected on both ends of the air pipe; The blow port is uniformly arranged on the air pipe close to the slide multi-station die.

6. The press machine of claim 5, wherein, The sliding support part includes: The C-shaped sleeve is slidably arranged outside the air pipe; The sleeve ring is fixed outside the motor; The support plate is fixed on the C-shaped sleeve close to the motor and connected with the U-shaped plate and the sleeve ring.

7. The press machine of claim 6, wherein, The drive connecting part further includes: The inclined rubber wheel is fixed on the lower end of the push disc; The inclined rubber sleeve is fixed on the lower end of the push sleeve and below the inclined rubber wheel and connected with the winding wheel; The fork is arranged outside the rotating shaft and below the winding wheel and connected with the motor.

8. The press machine of claim 7, wherein, The transmission part includes: The movable groove is arranged inside the U-shaped plate; The rotating rod is arranged in the movable groove and rotatably penetrates the lower end of the U-shaped plate through the bearing, and the lower end is connected with the push disc; The belt wheel is fixed on the upper end of the rotating rod and located in the movable groove; The driven wheel is rotatably and symmetrically arranged in the movable groove; The belt is sleeved outside the driven wheel and the belt wheel; The rotating push sub-part is arranged through the U-shaped plate and connected with the driven wheel.

9. The press machine of claim 8, wherein, The rotating push sub-part includes: The rotating hole is symmetrically arranged inside the U-shaped plate and communicated with the movable groove; The movable port is arranged through the U-shaped plate close to the transparent plate and communicated with the rotating hole; The rubber wheel is arranged through the movable hole and is rotationally connected with the U-shaped plate and in contact with the transparent plate. The rotating rod is arranged through the rotating hole and is axially connected with one end of the rubber wheel and the other end of the driven wheel.

10. The press machine of claim 8, wherein, The wiping and brushing member comprises: The fixed plate is symmetrically fixed on the outer side of the U-shaped plate by the fixing member and is located on the inner and outer sides of the transparent plate. The cotton brush is fixed on one side of the fixed plate close to the transparent plate by the fixing member and is in contact with the transparent plate.

Citation Information

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