Surface layer polishing mechanism for cold-drawn steel body

By designing a cold-pulling steel polishing mechanism including a drive motor, vertical screw, screw, mobile frame and polishing wheel, the problem of residual debris on the polishing wheel affecting the polishing effect is solved, and a wider steel polishing adaptability and equipment life are achieved.

CN120080245AActive Publication Date: 2025-06-03JIANGSU ZHONGXU COLD DRAWN SECTION STEEL CO LTD
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Patent Information

Application Number
CN202510559186.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2025-06-03
Estimated Expiration
2045-04-30

AI Technical Summary

Technical Problem

In existing cold-pulling steel polishing equipment, grinding debris is prone to remain on the polishing wheel, resulting in a gradual reduction in the polishing effect.

Method used

A surface polishing mechanism of cold-pulling steel body is designed, and a polishing component consisting of a driving motor, vertical screw, screw, mobile frame and polishing wheel is designed. Through automatic lubrication maintenance and pressure relief frame design on the polishing wheel, the steel surface is avoided from being overcompressed, and the residual debris on the polishing wheel is removed through the cooperation of the cavity plate and one-way leaf valves.

Benefits of technology

It effectively avoids the problem that residual debris on the polishing wheel affects the polishing effect, improves the polishing range of steels of different thicknesses, and extends the service life of the equipment through automatic lubrication and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a cold-drawn steel body surface layer polishing mechanism, and relates to the technical field of cold-drawn steel polishing. The cold-drawn steel body surface layer polishing mechanism comprises a rack, a protective plate is fixedly connected to the side face of the rack, transverse moving rod ends are fixedly connected to the two sides of the top end of the rack, and a supporting end is slidably connected to the side face of each transverse moving rod end; a cutting mechanism is arranged between the two supporting ends, a turning plate collecting mechanism is arranged at the bottom end of the interior of the rack, a positioning auxiliary mechanism is arranged below the cutting mechanism, the cutting mechanism comprises a driving motor, and the bottom end of an output shaft of the driving motor is fixedly connected with a vertical screw rod; the outer surface of each vertical screw rod is in threaded connection with a screw block, a moving frame is arranged between the two screw blocks, and a driving block is fixedly connected to the bottom end of the supporting end. According to the laser cutting head lens cleaning device, sprayed air is used for cleaning a lens of a laser cutting head, and the situation that dust on the surface of a lens of a laser lens pollutes the lens, so that the focusing effect of laser is affected is avoided; and equipment damage is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of cold-drawn steel polishing, and specifically provides a polishing mechanism for the surface layer of a cold-drawn steel body. Background Art

[0002] The surface polishing of cold-drawn steel is to polish the surface of cold-drawn steel plates by mechanical methods to improve their surface quality and smoothness. It is usually used for products with high appearance quality requirements. This process can not only remove the defects and impurities on the steel plate surface, but also improve its surface finish, increase the corrosion resistance, and at the same time enhance its aesthetics. The surface polishing of cold-drawn steel plates is a highly technical process that requires precise control of each link to ensure that the polishing effect meets the quality requirements of the product.

[0003] The patent with the publication number CN113523977A discloses a steel plate polishing device adaptable to multiple sizes. The steel plate is conveyed to the polishing conveying component by the feeding conveying component. The polishing conveying component polishes the surface of the steel plate and conveys the steel plate to the discharging conveying component. The discharging conveying component conveys the steel plate out. The polishing conveying component includes a conveyor belt mechanism. The bottom end of the conveyor belt mechanism is connected to an installation platform. An installation frame is connected to the installation platform. The installation frame is erected above the conveyor belt mechanism. A polishing mechanism for polishing the steel plate on the conveyor belt mechanism is connected to the installation frame. It can flexibly adjust the distance relative to the conveyor belt mechanism, thereby controlling the position of the polishing mechanism relative to the polishing surface of the steel plate, flexibly adapting to steel plates of different size specifications, ensuring the smooth progress of the polishing operation of steel plates of different size specifications, and improving the polishing efficiency and quality of the steel plate. However, this patent still has the problem that debris from grinding is likely to remain on the polishing wheel, which gradually increases the loss of the polishing disc and affects the polishing effect. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the present invention provides a polishing mechanism for the surface layer of a cold-drawn steel body, which solves the problems raised in the above background art.

[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A polishing mechanism for the surface layer of a cold-drawn steel body includes an outer frame. An observation door panel is fixedly connected to the side surface of the outer frame. A top plate is fixedly connected to the top surface of the outer frame. Transverse movement rod ends are fixedly connected to both sides of the top end of the inner bench. A support end is slidably connected to the side surface of each transverse movement rod end. A polishing mechanism is arranged between the two support ends. A flap collection mechanism is arranged at the bottom end inside the outer frame. A positioning and assisting mechanism is arranged below the polishing mechanism; The polishing mechanism includes a driving motor. The bottom end of the output shaft of the driving motor is fixedly connected to a vertical screw rod. A screw block is threadedly connected to the outer surface of the vertical screw rod. A moving frame is arranged between the two screw blocks. The bottom end of the supporting end is fixedly connected to a driving block. A polishing assembly is installed above the moving frame. The top end of the supporting end is fixedly connected to a top frame.

[0006] Preferably, a fuel tank is fixedly connected to the middle position of the top frame. A lubricating oil cavity is arranged on the right side of the fuel tank. A fixing piece is fixedly connected to the middle position of the inner wall of the lubricating oil cavity. An oil inlet pipe is fixedly connected to the bottom side of the lubricating oil cavity. A piston is slidably connected to the right side of the fixing piece. A piston rod is fixedly connected to the side of the piston away from the fixing piece. An air inlet port is fixedly connected to the top side of the right end of the lubricating oil cavity. An air delivery pipe is fixedly connected to the bottom side of the right end of the lubricating oil cavity. A one-way lobe is fixedly connected to the middle position of the fixing piece. An oil delivery pipe is fixedly connected to the left end of the lubricating oil cavity. The end of the oil delivery pipe away from the lubricating oil cavity is fixedly connected to a lubricating oil ring. A swing handle is arranged above the lubricating oil ring.

[0007] Preferably, the polishing assembly includes a pressure relief frame. The pressure relief frame is slidably connected above the moving frame. A cavity plate is fixedly connected to the top end of the pressure relief frame. Three polishing wheels are installed on the side of the pressure relief frame. Scraping pieces are fixedly connected to both sides of the cavity plate. A fixing frame block is fixedly connected to the front side of the moving frame. A fixing plate block is fixedly connected to the side of the pressure relief frame. A buffer spring is arranged between the fixing plate block and the fixing frame block, and both ends of the buffer spring are fixedly connected to the fixing plate block and the fixing frame block respectively. The inside of the cavity plate is a hollow structure, and small holes are formed in the cavity plate corresponding to the positions directly below the polishing wheels.

[0008] Preferably, the vertical screw rod is rotatably connected to the bottom end of the supporting end. The screw block is slidably connected to the inner wall of the supporting end. The screw block is fixedly connected to the moving frame. The lubricating oil cavity is fixedly connected to the top frame. The end of the oil inlet pipe away from the lubricating oil cavity is fixedly connected to the fuel tank. One-way lobes are fixedly connected to the inner walls of the air inlet port, the air delivery pipe and the oil inlet pipe.

[0009] Preferably, the swing handle is fixedly connected to the top end of the vertical screw rod, the lubricating oil ring is fixedly connected to the support end, a compression spring is arranged between the fixed piece and the piston, and both ends of the compression spring are fixedly connected to the fixed piece and the piston respectively. The steel is fed under the polishing wheel through the conveyor belt at the front end of the outer frame. At this time, the external control terminal controls the operation of the driving motor of the top frame, so that the driving motor drives the vertical screw rod connected to the output shaft to rotate. The rotation of the vertical screw rod drives the screw block to move downward. The movement of the screw block drives the connected moving frame to move downward, so that the polishing wheel on the moving frame operates under the drive of the external motor and approaches the steel plate below for polishing. When the polishing wheel contacts the steel, the moving frame continues to move downward, so that the polishing wheel moves upward reversely under force and drives the connected fixed plate to stretch the buffer spring upward. At the same time, the polishing wheel drives the connected pressure relief frame to slide upward along the moving frame, so as to make the polishing wheel adapt to fit the surface of the steel, avoid excessive pressure on the surface of the steel, and improve the polishing use range of steel with different thicknesses. The movement of the driving block adopts the existing technology and will not be elaborated here. While the driving motor drives the vertical screw rod to rotate through the output shaft, the swing handle connected to the vertical screw rod rotates to push the end of the plug rod to be stressed, so that the stressed plug rod slides along the lubricating oil cavity and drives the piston to move. At this time, the piston squeezes the connected compression spring to be stressed, and allows the outside air to pass through the one-way lobe in the air inlet port unidirectionally, so that the air fills into the lubricating oil cavity adjacent to the piston. When the plug rod is no longer stressed with the rotation of the swing handle, at this time, the compression spring releases the elastic force to push the piston to reset and unidirectionally output the air in the lubricating oil cavity adjacent to the piston through the one-way lobe in the air delivery pipe into the cavity plate, and the cavity plate discharges through the small holes on the bottom surface to blow off the residual debris on the polishing wheel, preventing the residual debris on the polishing wheel from affecting the polishing effect next time. In addition, when the piston resets away from the fixed piece under the action of the compression spring, the air pressure decreases due to the increase of the space between the fixed piece and the piston, and the liquid in the fuel tank will enter unidirectionally between the fixed piece and the piston through the connected oil inlet pipe. When the swing handle rotates again to push the plug rod to be stressed, the piston squeezes the liquid to flow into the side of the fixed piece away from the piston through the one-way lobe in the middle of the fixed piece and accumulates until the accumulated liquid level is higher than the height of the connection between the oil delivery pipe and the lubricating oil cavity, and part of the liquid accumulated in the lubricating oil cavity will enter the lubricating oil ring through the oil delivery pipe and lubricate and maintain the vertical screw rod with the rotation of the vertical screw rod in the lubricating oil ring, so as to reduce wear and structural damage through automatic lubrication and maintenance, avoid the influence of structural loss on polishing accuracy, and improve the service life of worn parts.

[0010] Preferably, the flap collecting mechanism includes a lower pressing plate, a resilient block is slidably connected below the lower pressing plate, a transverse groove rod is arranged below the resilient block, vertical sliders are fixedly connected to both the front and rear ends of the transverse groove rod, a vertical sliding rod is slidably connected to the middle position of the vertical sliders, an inclined push rod is hingedly connected to the side of the vertical slider, a transverse groove block is hingedly connected to the end of the inclined push rod away from the vertical slider, a lifting rod is hingedly connected to the top end of the transverse groove block, a filter screen convex plate is hingedly connected to the end of the lifting rod away from the transverse groove block, a lifting and telescopic rod is fixedly connected to the bottom end of the filter screen convex plate, a collecting groove is fixedly connected to the outer surface of the bottom end of the lifting and telescopic rod, a middle rod is fixedly connected to the middle position of the top end of the inner platform frame, and a flipping table plate is arranged above the filter screen convex plate.

[0011] A resistance spring is arranged between the resilient block and the lower pressing plate, and both ends of the resistance spring are fixedly connected to the resilient block and the lower pressing plate respectively. The vertical sliding rod is fixedly connected to the inner platform frame, and the vertical slider is slidably connected to the inner platform frame. A vertical spring is arranged outside the vertical sliding rod, and both ends of the vertical spring are fixedly connected to the vertical slider and the inner platform frame respectively. The bottom end of the lifting and telescopic rod is fixedly connected to the inner platform frame. The flipping table plate is hingedly connected to the outer frame. The filter screen convex plate protrudes upward. After polishing is completed, the screw block drives the moving frame to move the polishing assembly away from the steel. When the screw block drives the connected lower pressing plate to move upward, the resistance spring connected to the lower pressing plate releases elastic force to reset the resilient block. At this time, the transverse groove rod is no longer pressed by the resilient block, so that the transverse groove rod moves upward along the vertical sliding rod under the action of the vertical spring at the bottom side of the connected vertical slider. When the vertical sliding rod moves upward, it will drive the connected inclined push rod to pull the transverse groove block to move horizontally along the connection part of the inner platform frame. After the movement, the transverse groove block pulls the lifting rod, so that the end of the lifting rod away from the transverse groove block pulls the filter screen convex plate to contract the connected lifting and telescopic rod, so that the filter screen convex plate descends and approaches the collecting groove. When the flipping table plate is no longer supported by the protruding part of the filter screen convex plate structure, the flipping table plate will flip and tilt around the connection part of the inner platform frame to fit the protruding part of the filter screen convex plate structure. Thus, the debris after civil air defense polishing slides into the filter screen convex plate along the inclined flipping table plate, and the polishing debris and rust particles generated during the polishing process are separated and collected through filtration by the filter screen convex plate, avoiding the subsequent cleaning after polishing and preventing the polishing debris and rust particles from affecting the flatness of the subsequent accessory placement.

[0012] Preferably, the positioning and assisting mechanism includes a clamping plate, the clamping plate is slidably connected to the inner platform frame, two upper hinge rods are hingedly connected to both the front and rear sides of the moving frame, a retractable connecting rod is slidably connected to the end of each upper hinge rod away from the moving frame, a long connecting rod is hingedly connected to the end of the retractable connecting rod away from the upper hinge rod, a hinge block is fixedly connected to the side of the long connecting rod close to the retractable connecting rod, and a wheel is rotatably connected to the side of the hinge block.

[0013] Preferably, a pull-down spring is provided at the bottom end of the buckle plate, and two ends of the pull-down spring are respectively fixedly connected to the buckle plate and the bottom surface of the cross groove rod, and a spring sheet is provided inside the contraction connecting rod, and two ends of the spring sheet are respectively fixedly connected to the contraction connecting rod and the upper hinge rod, and one end of the long connecting rod away from the contraction connecting rod is hingedly connected to the supporting end, and when the screw block approaches downward to drive the lower pressure plate to move downward, the lower pressure plate pushes the elastic block to press the cross groove rod through the resistance spring. Since the elastic force of the resistance spring is greater than the elastic force of the vertical spring, the cross groove rod will move downward after being pushed by the elastic block and squeeze the pull-down spring to pull the buckle plate downward, so that the buckle plate moves vertically along the connection of the inner frame. The frame moves downward, and the edge of the auxiliary plate is pressed down by moving the buckle plate downward to avoid displacement of the auxiliary plate during laser polishing, which affects the accuracy of polishing. In addition, the upper hinge rod is driven by the downward movement of the mobile frame, so that the upper hinge rod pushes the spring sheet in the contraction link to push the contraction link, and the contraction link pushes the long connecting rod to flip downward around the connection point of the support end as a node. The flipped long connecting rod drives the connected hinge block and the wheel close to the plate below, so that the wheel applies pressure to the auxiliary plate. The polished plate will produce slight deformation and bending due to thermal expansion and contraction. By applying pressure to the polishing part, the plate can be prevented from deforming and bulging during polishing, which affects the polishing effect and quality.

[0014] The present invention provides a cold drawn steel body surface polishing mechanism, which has the following beneficial effects: The present invention drives the connected pressure relief frame to slide upward along the movable frame by driving the motor, the vertical screw, the screw block, the movable frame, the driving block, the polishing wheel, the polishing assembly, the top frame, the oil tank, the oil lubrication chamber, the oil inlet pipe, the fixed plate, the piston, the plug rod, the air inlet port, the air delivery pipe, the one-way vane, the oil delivery pipe, the swing handle and the oil lubrication ring. The polishing wheel is used to adapt to the steel surface to avoid excessive pressure on the steel surface, thereby improving the use range of polishing steels of different thicknesses. At the same time, the air inside the oil chamber is unidirectionally output to the inside of the cavity plate through the one-way vane in the air delivery pipe, and the cavity plate is discharged through the small holes on the bottom surface to blow off the residual debris on the polishing wheel, thereby preventing the residual debris on the polishing wheel from affecting the effect of the next polishing. In addition, only part of the liquid accumulated in the oil lubrication chamber will enter the oil lubrication ring through the oil delivery pipe, and the vertical screw in the oil lubrication ring is rotated to lubricate and maintain the vertical screw, thereby reducing wear and structural damage through automatic lubrication and maintenance, avoiding the influence of structural loss on the polishing accuracy, and improving the service life of the worn parts. The present invention is provided with a lower pressure plate, an elastic block, a horizontal groove rod, a vertical slider, a vertical slide rod, an inclined push rod, a horizontal groove block, a lifting rod, a filter convex plate, a lifting and retracting rod, a turning table, a middle rod, and a collecting groove. The debris after the civil air defense polishing slides into the filter convex plate along the inclined turning table, and the polishing debris and rust particles generated in the polishing process are filtered and collected separately by the filter convex plate, thereby avoiding subsequent cleaning after polishing is completed, and preventing the polishing debris and rust particles from affecting the flatness of the subsequent placement of auxiliary parts; In the present invention, there are provided a buckle plate, a long connecting rod, a hinge block, a wheel, a retractable connecting rod, and an upper hinge rod. The flipped long connecting rod drives the connected hinge block and the wheel to approach the lower plate, so that the wheel presses on the auxiliary plate. Since the polished plate is slightly deformed and bent due to the influence of thermal expansion and contraction, by applying pressure to the polished part, it is avoided that the plate bulges due to polishing deformation and affects the polishing effect and quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic perspective view of the whole of the present invention from the front; Figure 2 is a schematic structural diagram of the overall mechanism position distribution of the present invention; Figure 3 is a schematic structural diagram of the overall polishing assembly of the present invention; Figure 4 is a schematic structural diagram of the overall polishing mechanism of the present invention; Figure 5 is the whole of the present invention Figure 4 and is an enlarged schematic structural diagram of A in it; Figure 6 is a schematic structural diagram of the overall oil pipeline connection structure of the present invention; Figure 7 is a schematic structural diagram of the overall flap collection mechanism of the present invention; Figure 8 is a schematic structural diagram of the overall positioning auxiliary mechanism of the present invention; Figure 9 is the whole of the present invention Figure 8 and is an enlarged schematic structural diagram of B in it.

[0016] In the figure: 1. Outer frame; 2. Observation door panel; 3. Transverse rod end; 4. Support end; 5. Polishing mechanism; 51. Driving motor; 52. Vertical screw rod; 53. Screw block; 54. Moving frame; 55. Driving block; 56. Polishing wheel; 57. Polishing assembly; 571. Pressure relief frame; 572. Cavity plate; 573. Scraper; 574. Fixed plate block; 575. Fixed frame block; 58. Top frame; 59. Fuel tank; 510. Lubricating oil cavity; 511. Inlet oil pipe; 512. Fixed piece; 513. Piston; 514. Piston rod; 515. Intake port; 516. Air delivery pipe; 517. One-way flap; 518. Oil delivery pipe; 519. Swing handle; 520. Lubricating oil ring; 6. Flap collection mechanism; 61. Lower pressing plate; 62. Elastic block; 63. Transverse groove rod; 64. Vertical sliding block; 65. Vertical sliding rod; 66. Inclined push rod; 67. Transverse groove block; 68. Lifting rod; 69. Filter screen convex plate; 610. Lifting and retractable rod; 611. Flipping table plate; 612. Middle rod; 613. Collection tank; 7. Positioning auxiliary mechanism; 71. Buckle plate; 72. Long connecting rod; 73. Hinge block; 74. Wheel; 75. Retractable connecting rod; 76. Upper hinge rod; 8. Inner table frame; 9. Top plate. Detailed implementation mode

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0018] Please refer to Figure 1 - Figure 9 , the embodiment of the present invention is: a surface polishing mechanism for a cold-drawn steel body, including an outer frame 1, a viewing door panel 2 is fixedly connected to the side of the outer frame 1, a top plate 9 is fixedly connected to the top surface of the outer frame 1, and an inner bench 8 is fixedly connected to the inner bottom end of the outer frame 1. Transverse rod ends 3 are fixedly connected to both sides of the top end of the inner bench 8, a support end 4 is slidably connected to the side surface of each transverse rod end 3, and a polishing mechanism 5 is arranged between the two support ends 4; The polishing mechanism 5 includes a driving motor 51, a vertical screw rod 52 is fixedly connected to the bottom end of the output shaft of the driving motor 51, a screw block 53 is threadedly connected to the outer surface of the vertical screw rod 52, a moving frame 54 is arranged between the two screw blocks 53, and a polishing assembly 57 is installed above the moving frame 54. The polishing assembly 57 includes a pressure-relieving frame 571. A top frame 58 is fixedly connected to the top end of the support end 4, an oil tank 59 is fixedly connected to the middle position of the top frame 58, a lubricating oil chamber 510 is arranged on the right side of the oil tank 59, a fixing piece 512 is fixedly connected to the middle position of the inner wall of the lubricating oil chamber 510, and a one-way lobe 517 is fixedly connected to the middle position of the fixing piece 512. A lubricating oil pipe 518 is fixedly connected to the left end of the lubricating oil chamber 510, and a lubricating oil ring 520 is fixedly connected to the end of the lubricating oil pipe 518 away from the lubricating oil chamber 510.

[0019] At the inner bottom end of the outer frame 1, a flap collection mechanism 6 is provided. Below the polishing mechanism 5, a positioning auxiliary mechanism 7 is provided. At the bottom end of the support end 4, a driving block 55 is fixedly connected. At the bottom side of the lubricating oil chamber 510, an oil inlet pipe 511 is fixedly connected. On the right side of the fixed piece 512, a piston 513 is slidably connected. On the side of the piston 513 away from the fixed piece 512, a plug rod 514 is fixedly connected. At the top side of the right end of the lubricating oil chamber 510, an air inlet port 515 is fixedly connected. At the bottom side of the right end of the lubricating oil chamber 510, an air delivery pipe 516 is fixedly connected. Above the lubricating oil ring 520, a swing handle 519 is provided. The polishing assembly 57 includes a pressure relief frame 571. The pressure relief frame 571 is slidably connected above the moving frame 54. At the top end of the pressure relief frame 571, a cavity plate 572 is fixedly connected. On the side of the pressure relief frame 571, three polishing wheels 56 are installed. On both sides of the cavity plate 572, scraping blades 573 are fixedly connected. At the front side of the moving frame 54, a fixed frame block 575 is fixedly connected. On the side of the pressure relief frame 571, a fixed plate block 574 is fixedly connected. Between the fixed plate block 574 and the fixed frame block 575, a buffer spring is provided, and both ends of the buffer spring are fixedly connected to the fixed plate block 574 and the fixed frame block 575 respectively. The vertical screw rod 52 is rotatably connected to the bottom end of the support end 4. The screw block 53 is slidably connected to the inner wall of the support end 4. The screw block 53 is fixedly connected to the moving frame 54. The lubricating oil chamber 510 is fixedly connected to the top frame 58. The end of the oil inlet pipe 511 away from the lubricating oil chamber 510 is fixedly connected to an oil tank 59. On the inner walls of the air inlet port 515, the air delivery pipe 516 and the oil inlet pipe 511, one-way leaflets 517 are fixedly connected. The swing handle 519 is fixedly connected to the top end of the vertical screw rod 52. The lubricating oil ring 520 is fixedly connected to the support end 4. Between the fixed piece 512 and the piston 513, a contraction spring is provided, and both ends of the contraction spring are fixedly connected to the fixed piece 512 and the piston 513 respectively. The steel is fed through the front conveyor belt of the outer frame 1 to the lower part of the polishing wheel 56. At this time, the external control terminal controls the operation of the driving motor 51 of the top frame 58, so that the driving motor 51 drives the vertical screw rod 52 connected to the output shaft to rotate. The rotation of the vertical screw rod 52 drives the screw block 53 to move downward. The movement of the screw block 53 drives the connected moving frame 54 to move downward, so that the polishing wheel 56 on the moving frame 54 operates under the drive of the external motor and approaches the steel plate below for polishing. When the polishing wheel 56 contacts the steel, the moving frame 54 continues to move downward, so that the polishing wheel 56 moves upward against the force and drives the connected fixed plate block 574 to stretch the buffer spring upward. At the same time, the polishing wheel 56 drives the connected pressure relief frame 571 to slide upward along the moving frame 54, so as to adapt the polishing wheel 56 to fit the surface of the steel, avoid excessive pressure on the surface of the steel, and improve the polishing use range of steel with different thicknesses. The movement of the driving block 55 all adopts existing technologies and will not be elaborated too much. When the driving motor 51 drives the vertical screw rod 52 to rotate through the output shaft, the swing handle 519 connected to the vertical screw rod 52 rotates to push the end of the plug rod 514 to be stressed, so that the stressed plug rod 514 slides along the lubricating oil chamber 510 and pushes the piston 513 to move. At this time, the piston 513 squeezes the connected contraction spring and is compressed.And allow outside air to pass unidirectionally through the check valve flap 517 in the intake port 515, so that air fills into the lubricating oil chamber 510 adjacent to the piston 513. When the piston rod 514 is no longer under pressure as the swing handle 519 rotates, at this time the compression spring releases its elastic force to push the piston 513 back to its original position and unidirectionally output the air inside the lubricating oil chamber 510 adjacent to the piston 513 through the check valve flap 517 in the air delivery pipe 516 into the cavity plate 572, and let the cavity plate 572 discharge through the bottom surface small holes to blow off the residual debris on the polishing wheel 56, preventing the residual debris on the polishing wheel 56 from affecting the effect of the next polishing. In addition, when the piston 513 returns to its original position away from the fixing piece 512 under the action of the compression spring, the pressure in the space between the fixing piece 512 and the piston 513 increases and the pressure decreases, which will allow the liquid in the fuel tank 59 to enter unidirectionally through the connected oil inlet pipe 511 into the space between the fixing piece 512 and the piston 513. When the swing handle 519 rotates again to push the piston rod 514 to be stressed, the piston 513 squeezes the liquid to flow through the check valve flap 517 in the middle of the fixing piece 512 into the side of the fixing piece 512 away from the piston 513 and accumulates until the accumulated liquid level is higher than the height of the connection between the oil delivery pipe 518 and the lubricating oil chamber 510, and only then will a part of the liquid accumulated in the lubricating oil chamber 510 enter the lubricating oil ring 520 through the oil delivery pipe 518, and lubricate and maintain the vertical screw rod 52 as the vertical screw rod 52 rotates in the lubricating oil ring 520, so as to reduce wear and structural damage through automatic lubrication and maintenance, avoid the influence of structural loss on the polishing accuracy, and improve the service life of worn parts.

[0020] The flap collection mechanism 6 includes a lower pressing plate 61. A resilient block 62 is slidably connected below the lower pressing plate 61. A transverse groove rod 63 is provided below the resilient block 62. Vertical sliders 64 are fixedly connected to both the front and rear ends of the transverse groove rod 63. A vertical sliding rod 65 is slidably connected to the middle position of the vertical slider 64. An inclined push rod 66 is hinged to the side of the vertical slider 64. One end of the inclined push rod 66 away from the vertical slider 64 is hinged to a transverse groove block 67. A lifting rod 68 is hinged to the top end of the transverse groove block 67. One end of the lifting rod 68 away from the transverse groove block 67 is hinged to a filter screen convex plate 69. A lifting and telescoping rod 610 is fixedly connected to the bottom end of the filter screen convex plate 69. A collection groove 613 is fixedly connected to the outer surface of the bottom end of the lifting and telescoping rod 610. A middle rod 612 is fixedly connected to the middle position of the top end of the inner platform 8. A flipping table plate 611 is provided above the filter screen convex plate 69. A resistance spring is provided between the resilient block 62 and the lower pressing plate 61, and both ends of the resistance spring are fixedly connected to the resilient block 62 and the lower pressing plate 61 respectively. The vertical sliding rod 65 is fixedly connected to the inner platform 8, and the vertical slider 64 is slidably connected to the inner platform 8. A vertical spring is provided outside the vertical sliding rod 65, and both ends of the vertical spring are fixedly connected to the vertical slider 64 and the inner platform 8 respectively. The bottom end of the lifting and telescoping rod 610 is fixedly connected to the inner platform 8. The flipping table plate 611 is hinged to the outer frame 1. The filter screen convex plate 69 has a convex structure at the upward extension. After polishing is completed, the screw block 53 drives the moving frame 54 to move the polishing assembly 57 away from the steel. When the screw block 53 drives the connected lower pressing plate 61 to move upward, the resistance spring connected to the lower pressing plate 61 releases elastic force to reset the resilient block 62. At this time, the transverse groove rod 63 is no longer pressed by the resilient block 62, so that the transverse groove rod 63 moves upward along the vertical sliding rod 65 under the action of the vertical spring at the bottom side of the connected vertical slider 64. When the vertical sliding rod 65 moves upward, it will drive the connected inclined push rod 66 to pull the transverse groove block 67 to move horizontally along the connection with the inner platform 8. The moved transverse groove block 67 pulls the lifting rod 68, so that one end of the lifting rod 68 away from the transverse groove block 67 pulls the filter screen convex plate 69 to contract the connected lifting and telescoping rod 610, so that the filter screen convex plate 69 descends and approaches the collection groove 613. When the flipping table plate 611 is no longer supported by the convex structure of the filter screen convex plate 69, the flipping table plate 611 will rotate and tilt around the connection with the inner platform 8 to fit the convex structure of the filter screen convex plate 69. Thus, the debris after civil air defense polishing slides into the filter screen convex plate 69 along the inclined flipping table plate 611, and the polishing debris and rust particles generated during the polishing process are separated and collected through the filter screen convex plate 69 by filtration, avoiding the subsequent cleaning after polishing is completed and preventing the polishing debris and rust particles from affecting the flatness of the subsequent accessory placement.

[0021] The positioning auxiliary mechanism 7 includes a buckle plate 71. The buckle plate 71 is slidably connected to the inner bench 8. Two upper hinge rods 76 are hingedly connected to both the front and rear sides of the moving frame 54. One end of each upper hinge rod 76 away from the moving frame 54 is slidably connected to a retractable connecting rod 75. One end of the retractable connecting rod 75 away from the upper hinge rod 76 is hingedly connected to a long connecting rod 72. A hinge block 73 is fixedly connected to the side of the long connecting rod 72 near the retractable connecting rod 75. A wheel 74 is rotatably connected to the side of the hinge block 73. A downward pull spring is provided at the bottom end of the buckle plate 71, and the two ends of the downward pull spring are respectively fixedly connected to the buckle plate 71 and the bottom surface of the transverse groove rod 63. A spring piece is provided inside the retractable connecting rod 75, and the two ends of the spring piece are respectively fixedly connected to the retractable connecting rod 75 and the upper hinge rod 76. The end of the long connecting rod 72 away from the retractable connecting rod 75 is hingedly connected to the support end 4. When the screw block 53 moves downward and approaches to drive the lower pressure plate 61 to move downward, the lower pressure plate 61 pushes the elastic block 62 through the resistance spring to exert pressure on the transverse groove rod 63. Since the elastic force of the resistance spring is greater than the elastic force of the vertical spring, at this time, the transverse groove rod 63 will move downward after being pressed by the elastic block 62 and squeeze the downward pull spring to pull the buckle plate 71 downward, so that the buckle plate 71 moves vertically downward along the connection of the inner bench 8, presses the edge of the auxiliary component plate through the downward movement of the buckle plate 71, and avoids the displacement of the auxiliary component plate during the laser polishing process, which affects the accuracy of polishing. In addition, the downward movement of the moving frame 54 drives the connected upper hinge rods 76, so that the upper hinge rods 76 push the spring piece in the retractable connecting rod 75 to push the retractable connecting rod 75, and the retractable connecting rod 75 pushes the long connecting rod 72 to turn downward around the connection of the support end 4 as a node. The turned long connecting rod 72 drives the connected hinge block 73 and the wheel 74 to approach the lower plate, so that the wheel 74 exerts pressure on the auxiliary component plate. Since the polished plate is slightly deformed and bent due to the influence of thermal expansion and contraction, by pressing the polished part, it is avoided that the plate bulges during polishing deformation, which affects the polishing effect and quality.

[0022] Working principle: The steel is fed under the polishing wheel 56 through the front conveyor belt of the outer frame 1. At this time, the external control terminal controls the operation of the drive motor 51 of the top frame 58, so that the drive motor 51 drives the vertical screw rod 52 connected to the output shaft to rotate. The rotation of the vertical screw rod 52 drives the screw block 53 to move downward. The movement of the screw block 53 drives the connected moving frame 54 to move downward, so that the polishing wheel 56 on the moving frame 54 operates driven by the external motor and approaches the steel plate below for polishing. When the polishing wheel 56 touches the steel, the moving frame 54 continues to move downward, so that the polishing wheel 56 moves upward reversely after being stressed, driving the connected fixed plate 574 to stretch the buffer spring upward. At the same time, the polishing wheel 56 drives the connected pressure relief frame 571 to slide upward along the moving frame 54, using the polishing wheel 56 to adapt to and fit the surface of the steel, avoiding excessive pressure on the surface of the steel, and improving the polishing application range of steel with different thicknesses. The movement of the drive block 55 adopts existing technology and will not be elaborated here. When the drive motor 51 drives the vertical screw rod 52 to rotate through the output shaft, the swing handle 519 connected to the vertical screw rod 52 rotates to push the end of the plug rod 514 to be stressed. The stressed plug rod 514 slides along the lubricating oil cavity 510 and pushes the piston 513 to move. At this time, the piston 513 squeezes the connected compression spring to be stressed, and allows the outside air to pass through the one-way lobe 517 in the air inlet port 515 unidirectionally, filling the air into the lubricating oil cavity 510 adjacent to the piston 513. When the plug rod 514 is no longer stressed as the swing handle 519 rotates, the compression spring releases its elastic force to push the piston 513 to reset, and the air inside the lubricating oil cavity 510 adjacent to the piston 513 is unidirectionally output to the cavity plate 572 through the one-way lobe 517 in the air delivery pipe 516, and the cavity plate 572 discharges through the bottom small holes to blow off the residual debris on the polishing wheel 56, preventing the residual debris on the polishing wheel 56 from affecting the polishing effect of the next time. In addition, when the piston 513 resets away from the fixed piece 512 under the action of the compression spring, the air pressure decreases due to the increase in the space between the fixed piece 512 and the piston 513, and the liquid in the fuel tank 59 will enter unidirectionally between the fixed piece 512 and the piston 513 through the connected oil inlet pipe 511. When the swing handle 519 rotates again to push the plug rod 514 to be stressed, the piston 513 squeezes the liquid to flow into the side of the fixed piece 512 away from the piston 513 through the one-way lobe 517 in the middle of the fixed piece 512 and accumulates until the accumulated liquid level is higher than the height of the connection between the oil delivery pipe 518 and the lubricating oil cavity 510, and part of the liquid accumulated in the lubricating oil cavity 510 will enter the lubricating oil ring 520 through the oil delivery pipe 518, and lubricate and maintain the vertical screw rod 52 as the vertical screw rod 52 rotates in the lubricating oil ring 520, so as to reduce wear and structural damage through automatic lubrication and maintenance, avoid the influence of structural loss on polishing accuracy, and improve the service life of worn parts; After polishing is completed, the screw block 53 drives the moving frame 54 to move the polishing assembly 57 away from the steel. When the screw block 53 drives the connected lower pressure plate 61 to move upward, the resistance spring connected to the lower pressure plate 61 releases elastic force to reset the elastic block 62. At this time, the cross-groove rod 63 is no longer pressed by the elastic block 62, so that the cross-groove rod 63 moves upward along the vertical slide rod 65 under the action of the vertical spring at the bottom side of the connected vertical slider 64. When the vertical slide rod 65 moves upward, it will drive the connected inclined push rod 66 to pull the cross-groove block 67 to move horizontally along the connection with the inner platform 8. The moved cross-groove block 67 pulls the lifting rod 68, so that the end of the lifting rod 68 away from the cross-groove block 67 pulls the filter screen convex plate 69 to contract the connected lifting and retracting rod 610, so that the filter screen convex plate 69 descends and approaches the collection tank 613. When the flipping table plate 611 is no longer supported by the convex structure of the filter screen convex plate 69, the flipping table plate 611 will flip and tilt around the connection with the inner platform 8 as a node to fit the convex structure of the filter screen convex plate 69. Thus, the debris after civil air defense polishing slides into the filter screen convex plate 69 along the inclined flipping table plate 611, and the polishing debris and rust particles generated during the polishing process are separated and collected through the filter screen convex plate 69 by filtration, avoiding the subsequent cleaning after polishing is completed and preventing the polishing debris and rust particles from affecting the flatness of the subsequent accessory placement; When the screw block 53 moves downward and approaches to drive the lower pressure plate 61 to move downward, the lower pressure plate 61 pushes the elastic block 62 through the resistance spring to press the cross-groove rod 63. Since the elastic force of the resistance spring is greater than the elastic force of the vertical spring, at this time, the cross-groove rod 63 will move downward after being pressed by the elastic block 62 and squeeze the pull-down spring to pull down the buckle plate 71, so that the buckle plate 71 moves vertically downward along the connection of the inner platform 8, and presses the edge of the accessory plate through the downward movement of the buckle plate 71, avoiding the displacement of the accessory plate during the laser polishing process and affecting the accuracy of polishing. In addition, when the moving frame 54 moves downward to drive the connected upper hinge rod 76, the upper hinge rod 76 pushes the spring piece in the retracting connecting rod 75 to push the retracting connecting rod 75, so that the retracting connecting rod 75 pushes the long connecting rod 72 to flip downward around the connection of the supporting end 4 as a node. The flipped long connecting rod 72 drives the connected hinge block 73 and the wheel 74 to approach the lower plate, so that the wheel 74 presses the accessory plate. Due to the influence of thermal expansion and contraction, the polished plate will have slight deformation and bending. By pressing the polished part, it is avoided that the plate bulges due to polishing deformation and affects the polishing effect and quality.

[0023] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A cold-drawn steel body surface polishing mechanism, comprising an outer frame (1), a side of the outer frame (1) being fixedly connected to an observation door panel (2), a top surface of the outer frame (1) being fixedly connected to a top plate (9), an inner bottom end of the outer frame (1) being fixedly connected to an inner stand (8), both sides of the top of the inner stand (8) being fixedly connected to traverse rod ends (3), a side of each traverse rod end (3) being slidably connected to a support end (4), and a polishing mechanism (5) being arranged between two support ends (4); The polishing mechanism (5) comprises a driving motor (51), the bottom end of the output shaft of the driving motor (51) is fixedly connected to a vertical screw rod (52), the outer surface of the vertical screw rod (52) is threadedly connected to a screw block (53), a moving frame (54) is arranged between two screw blocks (53), a polishing assembly (57) is installed above the moving frame (54), the polishing assembly (57) comprises a pressure relief frame (571), the top end of the supporting end (4) is fixedly connected to a top frame (58), and the middle position of the top frame (58) is fixedly connected to an oil A box (59) is provided on the right side of the oil box (59), a lubricating chamber (510) is fixedly connected to a fixing plate (512) at a middle position of an inner wall of the lubricating chamber (510), a one-way leaflet (517) is fixedly connected to a middle position of the fixing plate (512), an oil delivery pipe (518) is fixedly connected to the left end of the lubricating chamber (510), an oil lubricating ring (520) is fixedly connected to one end of the oil delivery pipe (518) away from the lubricating chamber (510), and an air delivery pipe (516) is fixedly connected to the bottom side of the right end of the lubricating chamber (510).

2. A cold drawn steel body surface polishing mechanism according to claim 1, characterized in that: A flap collecting mechanism (6) is provided at the inner bottom end of the outer frame (1), a positioning auxiliary mechanism (7) is provided below the polishing mechanism (5), a driving block (55) is fixedly connected to the bottom end of the support end (4), an oil inlet pipe (511) is fixedly connected to the bottom side of the lubricating chamber (510), a piston (513) is slidably connected to the right side of the fixing plate (512), a plug rod (514) is fixedly connected to the side of the piston (513) away from the fixing plate (512), an air inlet port (515) is fixedly connected to the top side of the right end of the lubricating chamber (510), and a swing handle (519) is provided above the lubricating ring (520).

3. A cold drawn steel body surface polishing mechanism according to claim 2, characterized in that: The pressure relief frame (571) is slidably connected to the top of the movable frame (54); a cavity plate (572) is fixedly connected to the top of the pressure relief frame (571); three polishing wheels (56) are installed on the side of the pressure relief frame (571); scrapers (573) are fixedly connected to the two sides of the cavity plate (572); a fixed frame block (575) is fixedly connected to the front side of the movable frame (54); a fixed plate (574) is fixedly connected to the side of the pressure relief frame (571); a buffer spring is arranged between the fixed plate (574) and the fixed frame block (575); and two ends of the buffer spring are fixedly connected to the fixed plate (574) and the fixed frame block (575), respectively.

4. A cold drawn steel body surface polishing mechanism according to claim 3, characterized in that: The vertical screw rod (52) is rotatably connected to the bottom end of the support end (4), the screw block (53) is slidably connected to the inner wall of the support end (4), the screw block (53) is fixedly connected to the movable frame (54), the oil lubrication chamber (510) is fixedly connected to the top frame (58), and one end of the oil inlet pipe (511) away from the oil lubrication chamber (510) is fixedly connected to the oil tank (59).

5. A cold drawn steel body surface polishing mechanism according to claim 4, characterized in that: The inner walls of the air inlet port (515), the air delivery pipe (516) and the oil inlet pipe (511) are all fixedly connected with a one-way vane (517); the swing handle (519) is fixedly connected to the top end of the vertical screw (52); the oil lubrication ring (520) is fixedly connected to the support end (4); a contraction spring is provided between the fixing plate (512) and the piston (513); and the two ends of the contraction spring are respectively fixedly connected to the fixing plate (512) and the piston (513).

6. A cold drawn steel body surface polishing mechanism according to claim 5, characterized in that: The flap collecting mechanism (6) comprises a lower pressing plate (61), an elastic block (62) is slidably connected to the lower part of the lower pressing plate (61), a transverse groove rod (63) is arranged below the elastic block (62), the front and rear ends of the transverse groove rod (63) are fixedly connected to a vertical sliding block (64), the middle position of the vertical sliding block (64) is slidably connected to a vertical sliding rod (65), the side of the vertical sliding block (64) is hingedly connected to an inclined push rod (66), and the end of the inclined push rod (66) away from the vertical sliding block (64) is hingedly connected to the transverse groove The top end of the transverse groove block (67) is hingedly connected to a lifting rod (68), one end of the lifting rod (68) away from the transverse groove block (67) is hingedly connected to a filter convex plate (69), the bottom end of the filter convex plate (69) is fixedly connected to a lifting and retracting rod (610), the outer surface of the bottom end of the lifting and retracting rod (610) is fixedly connected to a collecting trough (613), the middle position of the top end of the inner stand (8) is fixedly connected to a center rod (612), and a flip table (611) is arranged above the filter convex plate (69).

7. A cold drawn steel body surface polishing mechanism according to claim 6, characterized in that: A resistance spring is provided between the elastic block (62) and the lower pressure plate (61), and the two ends of the resistance spring are respectively fixedly connected to the elastic block (62) and the lower pressure plate (61); the vertical sliding rod (65) is fixedly connected to the inner frame (8), and the vertical sliding block (64) is slidably connected to the inner frame (8); a vertical spring is provided on the outer side of the vertical sliding rod (65), and the two ends of the vertical spring are respectively fixedly connected to the vertical sliding block (64) and the inner frame (8); the bottom end of the lifting and retracting rod (610) is fixedly connected to the inner frame (8); the flip table (611) is hingedly connected to the outer frame (1); and the filter convex plate (69) is a convex structure extending upward.

8. A cold drawn steel body surface polishing mechanism according to claim 7, characterized in that: The positioning auxiliary mechanism (7) comprises a buckle plate (71), the buckle plate (71) is slidably connected to the inner stand (8), the front and rear sides of the movable frame (54) are both hingedly connected to two upper hinge rods (76), one end of each upper hinge rod (76) away from the movable frame (54) is slidably connected to a retractable connecting rod (75), one end of the retractable connecting rod (75) away from the upper hinge rod (76) is hingedly connected to a long connecting rod (72), the side surface of one end of the long connecting rod (72) close to the retractable connecting rod (75) is fixedly connected to a hinge block (73), and the side surface of the hinge block (73) is rotatably connected to a wheel (74).

9. A cold drawn steel body surface polishing mechanism according to claim 8, characterized in that: A pull-down spring is provided at the bottom end of the buckle plate (71), and the two ends of the pull-down spring are respectively fixedly connected to the buckle plate (71) and the bottom surface of the transverse groove rod (63); a spring sheet is provided inside the contraction connecting rod (75), and the two ends of the spring sheet are respectively fixedly connected to the contraction connecting rod (75) and the upper hinge rod (76); and one end of the long connecting rod (72) away from the contraction connecting rod (75) is hingedly connected to the support end (4).

Citation Information

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