Sliding block for stamping equipment and preparation process of sliding block

By designing slide tables, guide plates, oiled parts and cleaning components in stamping equipment slides, the problems of uneven lubrication of traditional sliders and the impact of iron filings are solved, and more uniform lubrication and longer equipment life are achieved.

CN120038975AActive Publication Date: 2025-05-27NINGBO BEILUN LISHENG MASCH CO LTD
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Patent Information

Application Number
CN202510528770.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-05-27
Estimated Expiration
2045-04-25

AI Technical Summary

Technical Problem

The lubrication of sliders in traditional stamping equipment is uneven, and butter needs to be added regularly, and iron filings are easily adhered to the guide rails to affect the lubrication effect.

Method used

A slider structure including a sliding table, a guide plate, an oil coating and a cleaning assembly is designed. The oil coating parts are moved to the guide surface and the iron film is prevented from adhesion by the cleaning assembly.

Benefits of technology

It achieves even application of butter, improves the lubricity of the slider, prevents iron filings from affecting the lubrication effect, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a sliding block for stamping equipment and a preparation process of the sliding block, and relates to the technical field of stamping devices. The oil coating device comprises a sliding table, guide rail pieces are installed on the two sides of the sliding table, each guide rail piece comprises two guide plates installed on the side face of the sliding table, one side of each guide plate is an involution face, the other opposite side of each guide plate is a guide face, an oil storage groove is formed in each involution face, and a plurality of oil coating pieces are installed on each oil storage groove. When the punching machine is started to drive the sliding table to vertically move in a reciprocating mode, the multiple oiling pieces are started due to movement of the sliding table at the moment, so that grease in the grease storage groove is smeared to the guide face of the guide plate, the uniformity of grease smearing is guaranteed, the lubricity of the sliding table in the running process is guaranteed, and the service life of the sliding table is prolonged. The cleaning assembly can effectively prevent scrap iron from adhering to the guide face of the guide plate in the operation process of the sliding table, and the situation that the lubricating effect is affected due to the fact that a large amount of scrap iron is left in grease is prevented.
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Description

Technical Field

[0001] The present invention relates to the technical field of stamping devices, and particularly to a slider for stamping equipment and its preparation process. Background Art

[0002] In the field of stamping equipment, as a core transmission component, the guide rail lubrication and cleaning performance of the slider assembly directly affect the equipment life and processing accuracy.

[0003] The traditional slider design generally uses an external oil injection hole to regularly inject grease. However, this method of adding grease not only easily results in uneven lubrication but also requires regular manual lubrication. Although some existing stamping equipment uses an oil pump to supply oil, the method of injecting grease into the oil injection hole still has problems such as uneven lubrication and poor lubrication effect. Moreover, during the operation of the slider, some iron filings are easily adhered to the guide rail, resulting in a large amount of iron filings remaining in the grease on the guide rail and affecting the lubrication effect.

[0004] Therefore, the present invention proposes a slider for stamping equipment and its preparation process. Summary of the Invention

[0005] The purpose of the present invention is to provide a slider for stamping equipment and its preparation process to solve the problems in the above background art.

[0006] The present invention specifically adopts the following technical solutions to achieve the above purpose: A slider for stamping equipment includes a slide table. Guide rail members are installed on both sides of the slide table. The guide rail members include two guide plates installed on the side surface of the slide table. One side of the guide plate is a mating surface, and the opposite side is a guiding surface. An oil storage groove is formed on the mating surface. A plurality of oil application members are installed on the oil storage groove. The mating surfaces of the two guide plates on the same side are closely attached to form a support guide plate. One end of the support guide plate is installed with a connecting plate, and an oil delivery pipe communicating with the oil storage groove is installed on the connecting plate. When the slide table moves, grease is applied to the guiding surface through the oil application members. A cleaning component is installed at the end of the support guide plate away from the connecting plate.

[0007] Further, a plurality of installation grooves communicating with the oil storage groove are formed on the guide plate. The oil application member includes an oil application roller rotatably installed in the installation groove. The outer peripheral side of the oil application roller passes through the installation groove and is closely attached to an external pressing plate. A plurality of oil delivery grooves are formed on the outer peripheral side of the oil application roller.

[0008] Further, a pressing plate is slidably installed in the oil delivery groove. An actuator acting on the pressing plate is installed on the installation groove. When the pressing plate passes through the actuator, the actuator causes the pressing plate to move.

[0009] Furthermore, an annular groove is provided on the outer peripheral side of the oil coating roller, the actuator includes a triangular block constructed on the mounting groove, a guide rod is installed in the oil delivery groove, the extrusion plate is slidably mounted on the guide rod, a return spring is installed between the guide rod and the extrusion plate, and one end of the extrusion plate is constructed with two forcing inclined surfaces, which are used to contact the triangular block.

[0010] Furthermore, the number of the oil delivery grooves is two groups, the proximal ends of the two oil delivery grooves on the same side are connected to the annular groove, the two oil delivery grooves on the same side are connected to each other through the annular groove and are V-shaped, and the two extrusion plates on the same side are in contact with each other at one end under normal conditions, and a partition is installed in the guide plate, through which the oil storage groove is divided into a first through groove and a second through groove, and a gap is left between the end of the partition away from the connecting plate and the inside of the guide plate, and the partition blocks the part of the annular groove located inside the supporting guide plate.

[0011] Furthermore, the oil delivery pipe is connected to the first through groove, the connecting plate is connected with an oil outlet pipe connected to the second through groove, and a transmission assembly acting on the oiling roller is installed on the guide plate. When the butter in the first through groove is in a flowing state, the oiling roller is rotated through the transmission assembly.

[0012] Furthermore, a gap is left between one end of the oil coating roller and one side of the mounting groove, and the transmission assembly includes a first driving gear installed at one end of the oil coating roller, and an arc plate is installed in the mounting groove, and the arc plate is located at the gap between the mounting groove and the oil coating roller, and the first driving gear is located in the arc plate, and a second driving gear meshing with the first driving gear is installed on the guide plate, and when the two guide plates are matched, the two second driving gears opposite to each other on the two guide plates are meshed with each other, and an arc blocking plate is installed in the first through groove, and a docking plane is constructed on one side of the arc blocking plate, and the docking plane is aligned with the matching surface.

[0013] Furthermore, a plurality of flow grooves are provided on one side of the guide plate away from the mating surface, and the plurality of mounting grooves are respectively located in the flow grooves. An X-shaped lubrication groove is provided between two adjacent flow grooves, and a pressure relief groove connected to the second through groove is provided on the lubrication groove, and a one-way valve is installed in the pressure relief groove.

[0014] Furthermore, the cleaning assembly includes a mounting plate installed on the support guide plate away from the connecting plate, a mounting seat is installed on the mounting plate, a cleaning brush is elastically slidably installed in the mounting seat, and a magnetic block is detachably installed on one side of the mounting seat away from the mounting plate.

[0015] The manufacturing process of the slider for stamping equipment is used to manufacture the slider for stamping equipment, comprising the following steps: S1: Slide the extrusion plate onto the guide rod, install the return spring between the guide rod and the extrusion plate, and then install the guide rod in the oil delivery groove to install the structure on the oiling roller. S2: Rotationally install the oiling roller in the installation groove, install the first driving gear in the gap between the oiling roller and the installation groove, then install the second driving gear to mesh with the first driving gear, install the arc plate in the gap between the oiling roller and the installation groove, install the partition plate at this time to form a first through groove and a second through groove in the guide plate, and finally install a plurality of arc-shaped blocking plates in the first through groove in sequence to complete the installation of the guide plate. S3: Fit the mating surfaces of the two guide plates and connect them with bolts. Install the connecting plate on one end face of the two guide plates, install the mounting plate on the other end of the two guide plates, install the cleaning brush and the magnetic block on the mounting seat, install the mounting seat on the mounting plate, and finally install the one-way valve in the pressure relief groove.

[0016] The beneficial effects of the present invention are as follows: When the punching machine of the present invention starts to drive the slide table to move vertically back and forth, at this time, a plurality of oiling parts will be activated due to the movement of the slide table, so as to apply the butter in the oil storage groove to the guiding surface of the guide plate, ensuring the uniformity of butter application and the lubricity of the slide table during operation. The cleaning component prevents iron filings from adhering to the guiding surface of the guide plate during the operation of the slide table, preventing too much iron filings from remaining in the butter and affecting the lubrication effect. Description of the Drawings

[0017] Figure 1 is a three-dimensional structural schematic diagram of the present invention; Figure 2 is the present invention Figure 1 partial three-dimensional sectional view; Figure 3 is the present invention Figure 1 another partial three-dimensional sectional view; Figure 4 is the structural diagram of the guide plate of the present invention; Figure 5 is the present invention Figure 4 schematic diagram of another perspective; Figure 6 is the present invention Figure 5 partial three-dimensional sectional view; Figure 7 is the present invention Figure 4 partial three-dimensional sectional view; Figure 8 is the structural diagram of the cleaning component of the present invention; Figure 9 is the present invention Figure 2 enlarged view of the structure at A in; Figure 10 is the enlarged view of the structure at position B in the present invention Figure 3 ; Figure 11 is the enlarged view of the structure at position C in the present invention Figure 6 ; Figure 12 is the enlarged view of the structure at position D in the present invention Figure 7 ; Figure 13 is the structural diagram of the oiling member of the present invention

[0018] Reference numerals: 1, sliding table; 2, guide plate; 3, mating surface; 4, oil storage tank; 401, first through groove; 402, second through groove; 5, oiling member; 501, oiling roller; 502, oil delivery groove; 503, extrusion plate; 6, connecting plate; 7, oil delivery pipe; 8, guide surface; 9, cleaning assembly; 10, installation groove; 11, magnetic block; 12, actuator; 1201, annular groove; 1202, triangular block; 1203, guide rod; 1204, return spring; 1205, forcing inclined surface; 13, partition plate; 14, oil outlet pipe; 15, transmission assembly; 1501, first driving gear; 1502, second driving gear; 1503, arc-shaped plug plate; 1504, docking plane; 16, flow groove; 17, lubricating groove; 18, pressure relief groove; 19, one-way valve; 20, mounting plate; 21, mounting seat; 22, cleaning brush; 23, arc-shaped plate; 24, slot; 25, connecting block; 26, elastic sheet; 27, slider; 28, connecting rod Detailed implementation manners

[0019] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention

[0020] As Figures 1 - 13 shown, a slider for a stamping device proposed in an embodiment of the present invention includes a sliding table 1, and guide rail members are installed on both sides of the sliding table 1 The guide rail members include two guide plates 2 installed on the side surface of the sliding table 1. One side of the guide plate 2 is a mating surface 3, and the opposite side is a guide surface 8. An oil storage tank 4 is formed on the mating surface 3, and a plurality of oiling members 5 are installed on the oil storage tank 4. The mating surfaces 3 of the two guide plates 2 on the same side are closely attached to form a support guide plate. The two guide plates 2 can be connected by means of bolt installation, and a rectangular groove can be formed on the mating surface 3, and a gasket can be installed in the rectangular groove to ensure the sealing performance (not shown in the figure). A plurality of counterbore holes are formed on the guide plate 2, and the support guide plate can be installed on the sliding table 1 by bolt installation One end of the support guide plate is installed with a connecting plate 6. The connecting plate 6 is installed on the two guide plates 2 through bolts, further improving the connection strength between the two guide plates 2. An oil delivery pipe 7 communicating with the oil storage tank 4 is installed on the connecting plate 6. The oil delivery pipe 7 can be used to manually pour butter into the oil storage tank 4, or a butter pump can be installed on the punching machine. The butter pump is communicated with the oil delivery pipe 7, so as to pour butter into the oil storage tank 4 through the butter pump. When the sliding table 1 moves, butter is applied to the guide surface 8 through the oiling member 5. That is to say, when the punching machine starts and drives the sliding table 1 to move vertically back and forth, at this time, multiple oiling members 5 will be activated due to the movement of the sliding table 1, so as to apply the butter located in the oil storage tank 4 to the guide surface 8 of the guide plate 2. The multiple oiling members 5 are arranged in a linear array, ensuring the uniformity of butter application and the lubricity of the sliding table 1 during operation. A cleaning component 9 is installed at one end of the support guide plate away from the connecting plate 6. The function of the cleaning component 9 can effectively prevent iron filings from adhering to the guide surface 8 of the guide plate 2 during the operation of the sliding table 1, and prevent too much iron filings from remaining in the butter and affecting the lubrication effect.

[0021] Such as Figures 9 - 10 , Figure 12 and Figure 13As shown, a partial structure of the oiling member 5 is disclosed. A plurality of mounting grooves 10 communicating with the oil storage tank 4 are formed in the guide plate 2. The oiling member 5 includes an oiling roller 501 rotatably mounted in the mounting groove 10. The outer peripheral side of the oiling roller 501 passes through the mounting groove 10 and is in close contact with the external pressure plate. The pressure plate is a structure on the existing punching machine equipment and is used to limit and support the movement of the guide plate. Both guiding surfaces 8 of the supporting guide plate are in contact with the pressure plate. That is to say, the mounting groove 10 penetrates through the guiding surface 8 of the guide plate 2, and the outer peripheral side of the oiling roller 501 is flush with the guiding surface 8 of the guide plate 2 after passing through the mounting groove 10. After the pressure plate is installed, the pressure plate is in contact with the guiding surface 8 of the guide plate 2, and the outer peripheral side of the oiling roller 501 forms a close fit with the pressure plate. Preferably, a slot 24 is formed in the guide plate 2. A connecting block 25 is inserted into the slot 24 and is installed on the guide plate 2 by bolts. An elastic piece 26 is installed on one side of the connecting block 25, and a slider 27 is installed on the other side of the elastic piece 26. Connecting rods 28 are constructed at opposite ends of the oiling roller 501, and the connecting rods 28 are rotatably inserted into the sliders 27. This can effectively ensure that the oiling roller 501 is in full contact with the pressure plate and is convenient for subsequent disassembly of the oiling roller 501. In this way, when the sliding table 1 moves to drive the supporting guide plate to move, the oiling roller 501 can fully form a tight contact with the pressure plate, ensuring that when the sliding table 1 moves, the oiling roller 501 can rotate. A plurality of oil delivery grooves 502 are formed on the outer peripheral side of the oiling roller 501. When butter is poured into the oil storage tank 4, some of the oil delivery grooves 502 will flow into the butter. Specifically, in order to ensure that the oil delivery grooves 502 are fully filled with butter, a butter pump can be used to apply pressure to the oil storage tank 4 to ensure that the butter can be filled and squeezed into the oil delivery grooves 502. When the sliding table 1 reciprocates, the contact between the oiling roller 501 and the external pressure plate will cause the oiling roller 501 to rotate. When the oiling roller 501 rotates, the oil delivery grooves 502 will move, so that the butter in the oil delivery grooves 502 can contact the external pressure plate, thereby improving the oiling effect. It should be noted that in this embodiment, the outer peripheral side and the end surface of the oiling roller 501 are in full contact with the mounting groove 10. Coupled with the fact that butter is a viscous liquid and is not easy to flow out from the fitting surface between the oiling roller 501 and the mounting groove 10.

[0022] As Figure 12 and Figure 13As shown, the lubrication effect brought by the oil delivery groove 502 is further optimized. An extrusion plate 503 is slidably installed in the oil delivery groove 502, and an actuator 12 acting on the extrusion plate 503 is installed on the installation groove 10. When the extrusion plate 503 passes by the actuator 12, the actuator 12 is used to move the extrusion plate 503. That is to say, when the oil application roller 501 rotates reciprocally, when the oil delivery groove 502 with butter rotates outside the installation groove 10 and is close to the pressing plate, at this time, the extrusion plate 503 moves as the oil application roller 501 rotates, and then it will pass by the actuator 12. The actuator 12 will cause the pressing plate to move. When the extrusion plate 503 moves, it squeezes the internal space of the oil delivery groove 502, thereby squeezing out the butter in the oil delivery groove 502, so that the butter in the oil delivery groove 502 can fully contact the external pressing plate, effectively improving the oiling effect on the pressing plate. At this time, the guide plate 2 is in a continuous moving state, and the guide plate 2 moves to evenly apply the lubricating oil on the pressing plate.

[0023] As Figure 12 and Figure 13 shown, the specific structure of the actuator 12 is disclosed. An annular groove 1201 is formed on the outer peripheral side of the oil application roller 501. The actuator 12 includes a triangular block 1202 constructed on the installation groove 10. A guide rod 1203 is installed in the oil delivery groove 502. The extrusion plate 503 is slidably sleeved on the guide rod 1203. A return spring 1204 is installed between the guide rod 1203 and the extrusion plate 503. Specifically, a column rod is constructed on the guide rod 1203. A cavity for accommodating the return spring 1204 is formed at one end of the extrusion plate 503. The column rod is located in the cavity, and the return spring 1204 is located between the column rod and the cavity. One end of the extrusion plate 503 with the cavity is installed with a sealing plate through bolts. The guide rod 1203 penetrates the sealing plate and passes through the return spring 1204. This not only facilitates the subsequent disassembly and installation of the extrusion plate 503, but also the butter in the oil delivery groove 502 is not easily in contact with the return spring 1204, which may affect the normal reset. Two forcing inclined surfaces 1205 are constructed at the end of the extrusion plate 503 away from the sealing plate, which are used to contact the triangular block 1202. In the normal state, the extrusion plate 503 is located at one end of the oil delivery groove 502 close to the triangular block 1202. When the oil application roller 501 rotates, one of the forcing inclined surfaces 1205 of the extrusion plate 503 can contact the inclined surface of the triangular block 1202, thereby causing the extrusion plate 503 to squeeze the butter in the oil delivery groove 502. The triangular block 1202 is designed at a position of the installation groove 10 close to the guide surface 8. Therefore, when the extrusion plate 503 contacts the triangular block 1202, the butter inside the oil delivery groove 502 squeezed by the extrusion plate 503 will accurately flow out of the installation groove 10 and contact the external pressing plate.

[0024] As Figure 5 , Figure 6 , Figure 12 and Figure 13As shown, the present invention further optimizes the structure of the oil storage groove 4 and the oil delivery groove 502. The number of the oil delivery grooves 502 is two groups. The two oil delivery grooves 502 on the same side are connected to the annular groove 1201 at the proximal ends. The two oil delivery grooves 502 on the same side are connected to each other through the annular groove 1201 and are V-shaped. Figure 13 As shown, the oil delivery groove 502 on the same side is designed in a V shape, which can make the oil delivery groove 502 contact the butter in the oil storage groove 4 more fully. The two extrusion plates 503 on the same side are in contact with each other at one end in normal state. In this way, when the oiling roller 501 rotates, it can ensure that the two extrusion plates 503 can contact with the triangular block 1202, further improving the oil delivery effect. In order to prevent butter from entering the annular groove 1201, a partition 13 is installed in the guide plate 2. The partition 13 is used to separate the oil storage groove 4 into a first through groove 401 and a second through groove 402. A gap is left between the end of the partition 13 away from the connecting plate 6 and the inside of the guide plate 2. The partition 13 blocks the part of the annular groove 1201 located inside the supporting guide plate. Because the supporting guide plate is formed by the combination of two guide plates 2, the two partitions 13 will also be close to each other to ensure that the oil is not leaking. The sealing performance is ensured. When the butter enters the first through groove 401 from the oil delivery pipe 7, because there is a gap between the partition 13 and the guide plate 2, the butter can enter the second through groove 402 from the first through groove 401, ensuring that the first through groove 401 and the second through groove 402 can be smoothly filled. Specifically, the depth of the annular groove 1201 is shallower than the depth of the oil delivery groove 502. In this way, when the extrusion plate 503 in the oil delivery groove 502 is in a normal state, one end of the extrusion plate 503 in the oil delivery groove 502 on the same side is located in the annular groove 1201, and the extrusion plate 503 can play a blocking role to prevent the butter in the oil storage groove 4 from entering the annular groove 1201 from the oil delivery groove 502. The design of the annular groove 1201 is to ensure that the oiling roller 501 rotates normally and the two extrusion plates 503 on the same side can contact the triangular block 1202.

[0025] like Figure 9 , Figure 12 and Figure 13As shown, in order to avoid the phenomenon of slipping due to too little frictional force when the butter on the pressing plate moves along with the guide plate 2, which affects the rotation of the oiling roller 501, the further optimization of the present invention lies in that the oil delivery pipe 7 is communicated with the first through groove 401, an oil outlet pipe 14 communicated with the second through groove 402 is communicated on the connecting plate 6, and a transmission assembly 15 acting on the oiling roller 501 is installed on the guide plate 2. When the butter in the first through groove 401 is in a flowing state, the oiling roller 501 is rotated by the transmission assembly 15. In this embodiment, after the first through groove 401 and the second through groove 402 in the support guide plate are filled with butter, the oil outlet pipe 14 of the butter pump is connected to the oil delivery pipe 7, and the oil inlet pipe of the butter pump is communicated with the oil outlet pipe 14. During use, an existing wire bundler can be used to prevent the oil inlet pipe and the oil outlet pipe 14 from being wound or bent when the sliding table 1 moves. When the sliding table 1 moves, the butter pump can be started to pump the butter in the second through groove 402 and convey the butter into the first through groove 401, so that the butter in the first through groove 401 and the second through groove 402 is in a flowing state, and thus the oiling roller 501 can be continuously rotated by the transmission assembly 15, ensuring the rotation effect of the oiling roller 501. When it is considered that the oiling efficiency is relatively low when the oiling roller 501 abuts against the external pressing plate for rotation, this oiling method can be adopted at this time. After sufficient oiling between the external pressing plate and the guide plate 2 is completed, the butter pump can be turned off.

[0026] As Figure 9 , Figure 12 and Figure 13As shown, the specific structure of the transmission component 15 is disclosed. There is a gap between one end of the oiling roller 501 and one side of the installation groove 10. The transmission component 15 includes a first driving gear 1501 installed at one end of the oiling roller 501. An arc-shaped plate 23 is installed in the installation groove 10. The arc-shaped plate 23 is located at the gap between the installation groove 10 and the oiling roller 501. The arc-shaped plate 23 can block the gap between the installation groove 10 and the oiling roller 501, so that the butter in the first through groove 401 will not flow out from the gap between the installation groove 10 and the first oiling roller 501. The first driving gear 1501 is located inside the arc-shaped plate 23. A second driving gear 1502 meshing with the first driving gear 1501 is installed on the guiding plate 2. After the two guiding plates 2 are aligned, the two second driving gears 1502 on the opposite sides of the two guiding plates 2 mesh with each other. An arc-shaped blocking plate 1503 is installed in the first through groove 401. One side of the arc-shaped blocking plate 1503 is provided with a butt joint plane 1504. The butt joint plane 1504 is aligned with the alignment surface 3. As shown in the figure, after the two guiding plates 2 are aligned, since the butt joint planes 1504 of the two arc-shaped blocking plates 1503 are in contact with each other at this time, the first through groove 401 is separated into multiple chambers. Because the second driving gear 1502 is installed at the gap between the oiling roller 501 and the installation groove 10, and the second driving gears 1502 on the two aligned guiding plates 2 rotate relative to each other, when the butter in the first through groove 401 is under the pressure applied by the butter pump, after the chambers are filled with butter, the butter will contact the two meshing second driving gears 1502, thereby driving the second driving gear 1502 to rotate. Through the rotation of the second driving gear 1502, the butter is conveyed to the next chamber to form the circulation of the butter. Because of the rotation of the second driving gear 1502, the first driving gear 1501 meshing with it will also rotate, so that when the butter is in a flowing state, the oiling roller 501 will also rotate continuously.

[0027] As Figure 4 and Figure 13As shown in the figure, in order to further improve the lubrication effect between the guide plate 2 and the external pressing plate, a plurality of flow grooves 16 are formed on the side of the guide plate 2 away from the mating surface 3. A plurality of mounting grooves 10 are respectively located in the flow grooves 16. An X-shaped lubrication groove 17 is communicated and formed between two adjacent flow grooves 16. When the lubrication groove 17 is filled with butter, the X-shaped design can increase the contact area between the butter and the external pressing plate. When the sliding table 1 continuously reciprocates, the butter can be smeared more fully. A pressure relief groove 18 communicated with the second through groove 402 is formed on the lubrication groove 17, and a one-way valve 19 is installed in the pressure relief groove 18. That is to say, when the pressing plate 503 in the oil delivery groove 502 moves due to contact with the triangular block 1202, the butter in the oil delivery groove 502 will be extruded into the flow groove 16. With the continuous rotation of the oil application roller 501 and the movement of the pressing plate 503, the butter in the flow groove 16 will be extruded into the lubrication groove 17 due to pressure until the lubrication groove 17 is also filled. As the butter continues to be supplied into the flow groove 16, a plurality of butters will enter the pressure relief valve and be discharged into the second through groove 402 from the one-way valve 19, preventing excessive butter in the flow groove 16 and the lubrication groove 17, and ensuring the continuous recycling of the butter.

[0028] As Figure 8 shown, the specific structure of the cleaning component 9 is disclosed. The cleaning component 9 includes a mounting plate 20 installed on the support guide plate away from the connecting plate 6. A mounting seat 21 is installed on the mounting plate 20. A cleaning brush 22 is elastically and slidably installed in the mounting seat 21. When the sliding table 1 moves, the support guide plate will also move accordingly, so that the cleaning brush 22 moves up and down. The iron filings splashed on the external pressing plate will prevent iron filings or other sundries from entering the contact surface between the support guide plate and the external pressing plate under the action of the cleaning brush 22 during the reciprocating movement of the support guide plate. A magnetic block 11 is detachably installed on the side of the mounting seat 21 away from the mounting plate 20. The design of the magnetic block 11 can effectively adsorb some of the splashed iron filings on the magnetic block 11, further preventing the iron filings from adhering between the external pressing plate and the support guide plate, and indirectly improving the lubrication effect.

[0029] As Figures 1 - 13 shown, the preparation process of the slider for the stamping equipment is used to prepare the above-mentioned slider for the stamping equipment, including the following steps: S1: Slide the pressing plate 503 onto the guide rod 1203, install the return spring 1204 between the guide rod 1203 and the pressing plate 503, and then install the guide rod 1203 in the oil delivery groove 502 to install the structure on the oil application roller 501; S2: Rotate and install the oiling roller 501 in the installation groove 10, install the first driving gear 1501 in the gap between the oiling roller 501 and the installation groove 10, then install the second driving gear 1502 to mesh it with the first driving gear 1501, install the arc-shaped plate 23 in the gap between the oiling roller 501 and the installation groove 10. At this time, install the partition plate 13 to form a first through groove 401 and a second through groove 402 in the guide plate 2, and finally install a plurality of arc-shaped blocking plates 1503 in the first through groove 401 in sequence to complete the installation of the guide plate 2; S3: Fit the mating surfaces 3 of the two guide plates 2 together and connect them with bolts. Install the connecting plate 6 on one end face of the two guide plates 2, install the mounting plate 20 on the other end of the two guide plates 2, install the cleaning brush 22 and the magnetic block 11 on the mounting seat 21, install the mounting seat 21 on the mounting plate 20, and finally install the one-way valve 19 in the pressure relief groove 18.

[0030] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather should be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A slider for a stamping device, characterized in that: The invention comprises a slide (1), wherein both sides of the slide (1) are provided with guide rails, wherein the guide rails comprise two guide plates (2) provided on the side of the slide (1), wherein one side of the guide plate (2) is a mating surface (3), and the other side opposite thereto is a guide surface (8), wherein an oil storage groove (4) is provided on the mating surface (3), wherein a plurality of oiling parts (5) are provided on the oil storage groove (4), wherein the mating surfaces (3) of the two guide plates (2) on the same side are closely attached to each other to form a supporting guide plate, wherein one end of the supporting guide plate is provided with a connecting plate (6), wherein an oil delivery pipe (7) connected to the oil storage groove (4) is provided on the connecting plate (6), wherein when the slide (1) moves, butter is applied to the guide surface (8) through the oiling part (5), and a cleaning component (9) is provided on the other end of the supporting guide plate.

2. The slider for stamping equipment according to claim 1, characterized in that: The guide plate (2) is provided with a plurality of mounting grooves (10) which are in communication with the oil storage groove (4); the oiling member (5) comprises an oiling roller (501) rotatably mounted in the mounting groove (10); the outer peripheral side of the oiling roller (501) passes through the mounting groove (10) and is tightly fitted with an external pressure plate; and the outer peripheral side of the oiling roller (501) is provided with a plurality of oil delivery grooves (502).

3. The slider for stamping equipment according to claim 2, characterized in that: An extrusion plate (503) is slidably mounted in the oil delivery groove (502), and an actuator (12) acting on the extrusion plate (503) is mounted on the mounting groove (10). When the extrusion plate (503) passes through the actuator (12), the actuator (12) causes the extrusion plate (503) to move.

4. The slider for stamping equipment according to claim 3, characterized in that: The outer peripheral side of the oil coating roller (501) is provided with an annular groove (1201), the actuator (12) comprises a triangular block (1202) constructed on the mounting groove (10), a guide rod (1203) is installed in the oil delivery groove (502), the extrusion plate (503) is slidably mounted on the guide rod (1203), a return spring (1204) is installed between the guide rod (1203) and the extrusion plate (503), and one end of the extrusion plate (503) is constructed with two forcing inclined surfaces (1205) for contacting the triangular block (1202).

5. The slider for stamping equipment according to claim 4, characterized in that: The number of the oil delivery grooves (502) is two groups, the proximal ends of the two oil delivery grooves (502) on the same side are connected to the annular groove (1201), the two oil delivery grooves (502) on the same side are connected to each other through the annular groove (1201) and are V-shaped, one end of the two extrusion plates (503) on the same side abuts against each other in a normal state, a partition (13) is installed in the guide plate (2), the partition (13) is used to separate the oil storage groove (4) into a first through groove (401) and a second through groove (402), a gap is left between the end of the partition (13) away from the connecting plate (6) and the inside of the guide plate (2), and the partition (13) blocks the part of the annular groove (1201) located inside the supporting guide plate.

6. The slider for stamping equipment according to claim 5, characterized in that: The oil delivery pipe (7) is in communication with the first through groove (401); the connecting plate (6) is in communication with an oil outlet pipe (14) in communication with the second through groove (402); a transmission assembly (15) acting on the oil coating roller (501) is mounted on the guide plate (2); when the butter in the first through groove (401) is in a flowing state, the transmission assembly (15) is used to rotate the oil coating roller (501).

7. The slider for stamping equipment according to claim 6, characterized in that: One end of the oil coating roller (501) leaves a gap with one side of the mounting groove (10), and the transmission assembly (15) includes a first driving gear (1501) installed at one end of the oil coating roller (501). An arc plate (23) is installed in the mounting groove (10), and the arc plate (23) is located in the gap between the mounting groove (10) and the oil coating roller (501). The first driving gear (1501) is located in the arc plate (23). A second driving gear (1502) meshing with the first driving gear (1501) is installed on the guide plate (2). When the two guide plates (2) are matched, the two second driving gears (1502) opposite to each other on the two guide plates (2) are meshed with each other. An arc blocking plate (1503) is installed in the first through groove (401), and a docking plane (1504) is constructed on one side of the arc blocking plate (1503), and the docking plane (1504) is aligned with the matching surface (3).

8. The slider for stamping equipment according to claim 5, characterized in that: A plurality of flow grooves (16) are provided on a side of the guide plate (2) away from the mating surface (3); the plurality of mounting grooves (10) are respectively located in the flow grooves (16); an X-shaped lubrication groove (17) is provided between two adjacent flow grooves (16); a pressure relief groove (18) is provided on the lubrication groove (17) and is connected to the second through groove (402); and a one-way valve (19) is installed in the pressure relief groove (18).

9. The slider for stamping equipment according to claim 1, characterized in that: The cleaning assembly (9) comprises a mounting plate (20) mounted on an end of the support guide plate away from the connecting plate (6), a mounting seat (21) being mounted on the mounting plate (20), a cleaning brush (22) being elastically slidably mounted in the mounting seat (21), and a magnetic block (11) being detachably mounted on a side of the mounting seat (21) away from the mounting plate (20).

10. A process for preparing a slider for a stamping device, used for preparing a slider for a stamping device as claimed in any one of claims 1 to 9, characterized in that: The following steps are involved: S1: Slidingly fitting the extrusion plate (503) onto the guide rod (1203), installing the return spring (1204) between the guide rod (1203) and the extrusion plate (503), and then installing the guide rod (1203) into the oil delivery groove (502) to install the structure on the oil coating roller (501); S2: The oil coating roller (501) is rotated and installed in the mounting groove (10), and the first driving gear (1501) is installed in the gap between the oil coating roller (501) and the mounting groove (10), and then the second driving gear (1502) is installed to mesh with the first driving gear (1501), and the arc plate (23) is installed in the gap between the oil coating roller (501) and the mounting groove (10). At this time, the partition plate (13) is installed to form a first through groove (401) and a second through groove (402) in the guide plate (2), and finally a plurality of arc blocking plates (1503) are installed in sequence in the first through groove (401) to complete the installation of the guide plate (2); S3: The mating surfaces (3) of the two guide plates (2) are fitted together and connected by bolts, the connecting plate (6) is installed on one end surface of the two guide plates (2), the mounting plate (20) is installed on the other end of the two guide plates (2), the cleaning brush (22) and the magnetic block (11) are installed on the mounting seat (21), and then the mounting seat (21) is installed on the mounting plate (20), and finally the one-way valve (19) is installed in the pressure relief groove (18).

Citation Information

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