Raw material straightening and cutting device for high-speed rail elastic strip fastener
By designing a straightening cutting device for the production of high-speed rail tracks, the scale and tumors on the surface of the press roller are cleaned by rolling columns and gear systems, the problem of low straightening accuracy of the rod is solved and higher straightening accuracy and forming accuracy are achieved.
Patent Information
- Application Number
- CN202510218633.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-26
AI Technical Summary
During the production process of high-speed rail rails, the cut rod is heated from medium frequency to about 1000°C, resulting in surface oxidation reaction to form an oxide scale. After peeling, it is easy to accumulate on the straightening roller, resulting in uneven roller surfaces and reducing the straightening accuracy of the rod.
A raw material straightening cutting device for high-speed rail rail elastic fastener is designed, including a rotary drive mechanism, a rolling column, a cylinder and a gear system. It contacts the surface of the rolling column, squeezes and crushes the surface tumor block, and restores the flatness of the roll surface after cleaning.
Effectively clean the scale and tumors on the surface of the press roller, restore surface flatness, improve the straightening accuracy of the rod, and reduce the dimensional error of the molded elastic strips.
Smart Images

Figure CN119972868A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of high-speed railway track spring bar fastener raw material processing, and in particular to a high-speed railway track spring bar fastener raw material straightening and cutting device. Background Art
[0002] The raw material of the spring clip is a bar of various lengths, which is straightened by coiling and then cut by a cutting machine. Although the bar has been straightened, its internal stress has not been completely released. When the spring clip is produced, the cut bar will be heated to about 1000℃ by medium frequency. During heating, the stress inside the bar will be further released. This stress will cause the bar to bend. When the bent bar is used to produce the spring clip, it will cause the robot to clamp inaccurately, resulting in material leakage and large deviation in the size of the formed spring clip. Therefore, the raw material of the spring clip needs to be straightened.
[0003] For example, the utility model patent with publication number CN209773317U discloses a CNC straightening and cutting machine, including a machine table, a trapezoidal cover is arranged in the middle position of the front side of the upper end of the machine table, strip plates are installed on the upper sides of the left and right end surfaces of the trapezoidal cover, two groups of square plates are symmetrically installed on the lower end surface of the strip plate by bolts, a damping spring is fixed to the lower end surface of the square plate, and a square plate two is fixed to the lower end of the damping spring, and the square plate two is fixedly connected to the machine table by bolts, a square cylinder is arranged in the middle position of the front end surface of the machine table, a fixing ear is welded on the right end surface of the square cylinder, and the fixing ear is fixedly connected to the machine table by bolts, a slide groove is fixed at the lower end of the trapezoidal cover, and the lower end of the slide groove extends to the upper side of the square cylinder, and a small vibrator is installed on the front end surface of the trapezoidal cover by bolts.
[0004] The above case has the following defects: since the cut rods will be heated to about 1000°C by medium frequency, an oxidation reaction will occur on the surface of the rods to form a layer of oxide scale. During the straightening process, this layer of oxide scale is easy to peel off and fall on the straightening roller. If the oxide layer accumulates on the roller surface and is not cleaned in time, it is easy to form lumps, resulting in an uneven surface of the straightening roller, which can easily reduce the straightening accuracy of the rods.
[0005] To this end, the present invention proposes a raw material straightening and cutting device for high-speed railway track spring clip fasteners to solve the above-mentioned problem. Summary of the invention
[0006] In order to achieve the above purpose, the technical solution adopted by the present invention is: a raw material straightening and cutting device for high-speed rail spring clip fasteners, comprising:
[0007] A processing table, wherein a plurality of first pressing rollers and second pressing rollers are rotatably connected in an array on the side wall of the processing table, and the second pressing rollers are located directly above the first pressing rollers;
[0008] A rotary drive mechanism, wherein the rotary drive mechanism is used to drive the first pressing roller and the second pressing roller to rotate so as to transport the parts to be processed in a horizontal direction;
[0009] Two mounting seats, the two mounting seats are symmetrically slidably connected to the side walls of the processing table, and mounting frames are symmetrically arranged on the left and right sides of the first pressing roller and the second pressing roller, and the mounting frames are respectively fixedly connected to the mounting seats at corresponding positions;
[0010] Slide blocks are slidably connected in the grooves of the left and right mounting frames of the first and second pressure rollers, and a first spring is fixedly connected between the slide blocks and the mounting frames;
[0011] A rolling column is rotatably connected between two sliders on the left and right sides of the first and second pressing rollers, and the two rolling columns are in contact with the bottom end surface of the first pressing roller and the top end surface of the second pressing roller respectively;
[0012] The ends of the left and right mounting frames of the first pressing roller and the second pressing roller are both provided with arc-shaped clearance grooves for allowing the parts to be processed to pass through;
[0013] In a specific implementation process, it also includes a first cylinder, which is fixedly connected to the processing table, and the top end of the telescopic rod of the first cylinder is fixedly connected to the mounting seat located above;
[0014] A second cylinder, wherein the second cylinder is fixedly connected to the bottom end of the processing table, and the top end of the telescopic rod of the second cylinder is fixedly connected to a mounting seat located below;
[0015] Specifically, in the prior art, since the cut bar is heated to about 1000°C by medium frequency, an oxidation reaction will occur on the surface of the bar to form a layer of oxide scale. During the straightening process, this layer of oxide scale is easy to peel off and fall on the straightening roller. If the oxide layer accumulates on the roller surface and is not cleaned in time, it is easy to form a lump, causing the surface of the straightening roller to be uneven, thereby easily reducing the straightening accuracy of the bar. This technical solution can solve the above problem. The specific operation is as follows:
[0016] The workpiece to be processed is passed between the first pressing roller and the second pressing roller, and then the rotary drive mechanism is started to rotate the first pressing roller and the second pressing roller, so that the workpiece to be processed is transported in a horizontal direction. During the transportation process, the workpiece to be processed is straightened by the pressing action of the first pressing roller and the second pressing roller, so as to reduce the dimensional error of the forming spring strip;
[0017] After the first and second rollers have been straightened for a long time, the first and second cylinders are started to make the two mounting seats close to each other, so that the two rolling columns are respectively close to the bottom end of the first roller and the top end of the second roller, and are in contact with the surfaces of the first and second rollers;
[0018] After the rolling column contacts the surfaces of the first roller and the second roller respectively, the slider slides along the inner groove of the mounting frame under the squeezing effect of the first roller and the second roller, and the first spring is compressed, thereby ensuring that the rolling column fully contacts the surfaces of the first roller and the second roller respectively;
[0019] Since the first and second rollers are always in a rotating state, the surfaces of the first and second rollers are squeezed with the rolling column, which is conducive to crushing the tumors on the surfaces of the first and second rollers, and then automatically falling off from the surfaces of the first and second rollers under the action of gravity, which is conducive to restoring the flatness of the surfaces of the first and second rollers and reducing the error of bar straightening;
[0020] After cleaning is completed, the two mounting seats are moved away from each other through the first cylinder and the second cylinder, so that the two rolling columns are respectively away from the bottom end of the first pressure roller and the top end of the second pressure roller, avoiding the problem of long-term contact between the rolling columns and the surfaces of the first pressure roller and the second pressure roller, causing wear of the first pressure roller and the second pressure roller.
[0021] Preferably, it also includes:
[0022] A first gear, the first gear being fixedly connected to the shaft of the rolling column;
[0023] A first rack plate, wherein the first rack plate is slidably connected to a side wall of the mounting frame at a corresponding position, and a second spring is fixedly connected between the first rack plate and the mounting frame;
[0024] A lining plate, wherein the lining plate is fixedly connected to a side wall of the first rack plate;
[0025] Cams are fixedly connected to the shafts of the first pressure roller and the second pressure roller, and the cams are used to push the lining plate so that the first rack plate slides along the side wall of the mounting frame.
[0026] Preferably, the two left side walls of the sliders of the first and second pressure rollers are fixedly connected to a bracket, the bottom end of the bracket is rotatably connected to a brush roller, and the two brush rollers are in contact with the left sides of the first and second pressure rollers respectively.
[0027] Preferably, it also includes:
[0028] A second gear, wherein the second gear is fixedly connected to the shaft of the brush roller;
[0029] a second rack plate, the second rack plate slidingly passing through the mounting frame and meshing with the second gear;
[0030] A driving plate, the driving plate is fixedly connected to the side wall of the second rack plate, and an oblique groove is formed on the top of the driving plate;
[0031] A driving frame, wherein the driving frame is slidably connected to the side wall of the slider, a straight groove is provided on the side wall of the driving plate, a connecting pin is fixedly connected to the bottom end of the driving frame, and the connecting pin is slidably connected in the oblique groove;
[0032] Two connecting plates are fixedly connected to the side walls of the first pressure roller shaft and the second pressure roller shaft. The side walls of the connecting plates are fixedly connected with push pins, and the push pins are slidably connected in the straight grooves.
[0033] Preferably, an air cavity is provided at the end of the rolling column near the brush roller, a plurality of air holes are provided in an array at the bottom end of the air cavity, a piston is slidably connected in the air cavity, a connecting frame is fixedly connected to the bottom end of the piston, and the connecting frame is fixedly connected to the second rack plate.
[0034] Preferably, the rotary drive mechanism comprises:
[0035] A driving motor, wherein the driving motor is fixedly connected to the side wall of the processing table, and a driving gear is fixedly connected to the end of the output shaft of the driving motor;
[0036] A transmission gear, the transmission gear is fixedly connected to the shaft of one of the first pressure rollers, the transmission gear is meshed with a driving gear, and a first belt is arranged between the shafts of the first pressure rollers;
[0037] A transmission belt is arranged between the surface of the output shaft of the driving motor and one of the second pressure roller shafts, and a second belt is arranged between a plurality of the second pressure rollers.
[0038] Preferably, a scraper is fixedly connected to the side wall of the sliding block, the end of the scraper extends toward the rolling column, and the bottom end of the scraper is in contact with the rolling column.
[0039] Preferably, it also includes:
[0040] A plurality of supporting roller groups are rotatably connected to the side wall of the processing table in an array to support the parts to be processed.
[0041] Compared with the prior art, the present invention has the following beneficial effects:
[0042] 1. The present invention arranges a rolling column, which contacts the surfaces of the first roller and the second roller respectively, so that the surfaces of the first roller and the second roller are squeezed by the rolling column, which is conducive to crushing the lumps on the surfaces of the first roller and the second roller, and then automatically falls off from the surfaces of the first roller and the second roller under the action of gravity, which is conducive to restoring the flatness of the surfaces of the first roller and the second roller and reducing the error of rod straightening.
[0043] 2. The present invention sets a first gear and a first rack plate. After the rolling column contacts the surfaces of the first pressure roller and the second pressure roller respectively, the liner is pushed by the cam, so that the liner drives the first rack plate to move along the side wall of the mounting frame, and the second spring is compressed. During the movement of the first rack plate, the first rack plate drives the first gear to rotate. During the continuous rotation of the cam, the first rack plate moves back and forth in the height direction under the elastic action of the second spring, so that the rolling column performs a reciprocating rotational motion to generate axial pressure on the tumor blocks on the surfaces of the first pressure roller and the second pressure roller, which is conducive to making the tumor blocks be crushed more thoroughly, further restoring the flatness of the surfaces of the first pressure roller and the second pressure roller, and reducing the error of rod straightening.
[0044] 3. The present invention arranges a brush roller, a second gear and a second rack plate. During the rotation of the rolling column, the connecting plate drives the pushing pin to push the driving frame, so that the driving frame moves along the side wall of the slider, and the connecting pin moves along the inclined groove. Driven by the inclined groove, the driving plate drives the second rack plate to move back and forth in a straight line, thereby driving the second gear to perform reciprocating rotational motion, so that the brush roller rotates back and forth, and the impurities remaining on the surfaces of the first pressure roller and the second pressure roller are further cleaned by the brush roller, the flatness of the surfaces of the first pressure roller and the second pressure roller is restored, and the error of rod straightening is further reduced.
[0045] 4. The present invention sets an air hole and a piston. During the reciprocating linear movement of the second rack plate, the piston is connected to the connecting frame so as to move back and forth linearly along the air cavity, so that the air in the air cavity is compressed and blows air to the surfaces of the brush roller and the first and second pressure rollers through the air holes. On the one hand, impurities remaining on the surfaces of the first and second pressure rollers are further cleaned, the flatness of the surfaces of the first and second pressure rollers is restored, and the error of rod straightening is reduced. On the other hand, impurities in the brush roller are cleaned to improve the cleanliness of the surface of the brush roller, thereby improving the cleaning ability of the brush roller to the first and second pressure rollers. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0047] Figure 2 It is a schematic diagram of the connection between the mounting seat and the mounting frame of the present invention;
[0048] Figure 3 It is a connection diagram of the driving motor, the driving gear and the transmission gear in the present invention;
[0049] Figure 4 It is a schematic diagram of the connection between the mounting frame, the sliding block and the rolling column in the present invention;
[0050] Figure 5 for Figure 4 Enlarged view of point A in the middle;
[0051] Figure 6 for Figure 4 Enlarged view of point B in the middle;
[0052] Figure 7 It is a schematic diagram of the connection between the rolling column and the brush roller in the present invention;
[0053] Figure 8 It is a three-dimensional diagram of the rolling column in the present invention.
[0054] In the figure: processing table 1, first pressure roller 2, second pressure roller 3, support roller group 4, mounting seat 5, mounting frame 6, arc-shaped give way groove 7, slider 8, first spring 9, rolling column 10, air cavity 11, air hole 12, piston 13, connecting frame 14, first gear 15, first rack plate 16, second spring 17, lining plate 18, cam 19, bracket 20, brush roller 21, second gear 22, second rack plate 23, drive plate 24, inclined groove 25, drive frame 26, straight groove 27, connecting pin 28, connecting plate 29, push pin 30, drive motor 31, drive gear 32, transmission gear 33, first belt 34, transmission belt 35, second belt 36, scraper 37. DETAILED DESCRIPTION
[0055] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are only examples, and those skilled in the art may think of other obvious variations.
[0056] like Figures 1 to 8 The raw material straightening and cutting device for high-speed rail spring clip fasteners shown in the figure comprises:
[0057] A processing table 1, a plurality of first pressing rollers 2 and second pressing rollers 3 are rotatably connected in an array on the side wall of the processing table 1, and the second pressing rollers 3 are located directly above the first pressing rollers 2;
[0058] A rotary drive mechanism, which is used to drive the first pressing roller 2 and the second pressing roller 3 to rotate so as to transport the parts to be processed in a horizontal direction;
[0059] Two mounting seats 5, the two mounting seats 5 are symmetrically slidably connected to the side wall of the processing table 1, and mounting frames 6 are symmetrically arranged on the left and right sides of the first pressing roller 2 and the second pressing roller 3, and the mounting frames 6 are respectively fixedly connected to the mounting seats 5 at corresponding positions;
[0060] Slide blocks 8 are slidably connected in the grooves of the mounting frames 6 on the left and right sides of the first pressing roller 2 and the second pressing roller 3, and a first spring 9 is fixedly connected between the slide blocks 8 and the mounting frames 6;
[0061] A rolling column 10 is rotatably connected between two sliders 8 on the left and right sides of the first pressing roller 2 and the second pressing roller 3. The two rolling columns 10 are in contact with the bottom end surface of the first pressing roller 2 and the top end surface of the second pressing roller 3 respectively.
[0062] The ends of the left and right mounting frames 6 of the first pressing roller 2 and the second pressing roller 3 are both provided with arc-shaped clearance grooves 7 for allowing the parts to be processed to pass through;
[0063] Specifically, in the prior art, since the cut bar is heated to about 1000°C by medium frequency, an oxidation reaction will occur on the surface of the bar to form a layer of oxide scale. During the straightening process, this layer of oxide scale is easy to peel off and fall on the straightening roller. If the oxide layer accumulates on the roller surface and is not cleaned in time, it is easy to form a lump, causing the surface of the straightening roller to be uneven, thereby easily reducing the straightening accuracy of the bar. This technical solution can solve the above problem. The specific operation is as follows:
[0064] The workpiece to be processed is passed between the first pressing roller 2 and the second pressing roller 3, and then the rotary drive mechanism is started to rotate the first pressing roller 2 and the second pressing roller 3, so that the workpiece to be processed is transported in a horizontal direction. During the transportation process, the workpiece to be processed is straightened by the pressing action of the first pressing roller 2 and the second pressing roller 3, so as to reduce the dimensional error of the forming spring strip;
[0065] After the first roller 2 and the second roller 3 have been straightened for a long time, the first cylinder 101 and the second cylinder 102 are started, so that the two mounting seats 5 are close to each other, and the two rolling columns 10 are close to the bottom end of the first roller 2 and the top end of the second roller 3 respectively, and are in contact with the surfaces of the first roller 2 and the second roller 3;
[0066] After the rolling column 10 contacts the surfaces of the first pressing roller 2 and the second pressing roller 3 respectively, the slider 8 slides along the inner groove of the mounting frame 6 under the squeezing effect of the first pressing roller 2 and the second pressing roller 3, and the first spring 9 is compressed, thereby ensuring that the rolling column 10 contacts the surfaces of the first pressing roller 2 and the second pressing roller 3 respectively.
[0067] Since the first pressing roller 2 and the second pressing roller 3 are always in a rotating state, the surfaces of the first pressing roller 2 and the second pressing roller 3 are squeezed with the rolling column 10, which is conducive to crushing the tumors on the surfaces of the first pressing roller 2 and the second pressing roller 3, and then automatically falling off from the surfaces of the first pressing roller 2 and the second pressing roller 3 under the action of gravity, which is conducive to restoring the flatness of the surfaces of the first pressing roller 2 and the second pressing roller 3 and reducing the error of bar straightening;
[0068] After cleaning, the two mounting seats 5 are moved away from each other by the first cylinder 101 and the second cylinder 102, so that the two rolling columns 10 are respectively away from the bottom end of the first pressure roller 2 and the top end of the second pressure roller 3, to avoid the problem of the rolling columns 10 being in contact with the surfaces of the first pressure roller 2 and the second pressure roller 3 for a long time, causing wear of the first pressure roller 2 and the second pressure roller 3.
[0069] As an optional embodiment of the rotary drive mechanism, the rotary drive mechanism includes:
[0070] A driving motor 31, which is fixedly connected to the side wall of the processing table 1, and a driving gear 32 is fixedly connected to the end of the output shaft of the driving motor 31;
[0071] A transmission gear 33, the transmission gear 33 is fixedly connected to the shaft of one of the first pressure rollers 2, the transmission gear 33 is meshed with the driving gear 32, and a first belt 34 is provided for transmission between the shafts of several first pressure rollers 2;
[0072] A transmission belt 35 is provided between the output shaft surface of the driving motor 31 and the shaft of one of the second pressing rollers 3, and a second belt 36 is provided between the plurality of second pressing rollers 3;
[0073] Specifically, the driving motor 31 is started to rotate the output shaft of the driving motor 31, the driving gear 32 rotates, the transmission gear 33 rotates, the first pressing roller 2 rotates, and the belt drives the first pressing rollers 2 to rotate synchronously.
[0074] And during the rotation of the output shaft of the driving motor 31, the second pressing roller 3 is rotated through the transmission belt 35, and the second pressing rollers 3 at other positions are rotated synchronously through the transmission of the second belt 36, thereby driving the rotation of the first pressing roller 2 and the second pressing roller 3, so as to transport the parts to be processed horizontally and straighten them.
[0075] It should be noted that the transmission gear 33 and the driving gear 32 have the same radius, so as to ensure that the first pressing roller 2 and the second pressing roller 3 rotate at the same speed.
[0076] As a further embodiment of the present invention, it also includes:
[0077] A first gear 15, the first gear 15 is fixedly connected to the shaft of the rolling column 10;
[0078] A first rack plate 16, the first rack plate 16 is slidably connected to the side wall of the mounting frame 6 at a corresponding position, and a second spring 17 is fixedly connected between the first rack plate 16 and the mounting frame 6;
[0079] A lining plate 18, wherein the lining plate 18 is fixedly connected to a side wall of the first rack plate 16;
[0080] The shafts of the first pressing roller 2 and the second pressing roller 3 are both fixedly connected with a cam 19, and the cam 19 is used to push the lining plate 18 so that the first rack plate 16 slides along the side wall of the mounting frame 6;
[0081] Specifically, by setting the first gear 15 and the first rack plate 16, after the rolling column 10 contacts the surfaces of the first pressure roller 2 and the second pressure roller 3 respectively, the lining plate 18 is pushed by the cam 19, so that the lining plate 18 drives the first rack plate 16 to move along the side wall of the mounting frame 6, and the second spring 17 is compressed. During the movement of the first rack plate 16, the first rack plate 16 drives the first gear 15 to rotate. During the continuous rotation of the cam 19, under the elastic action of the second spring 17, the first rack plate 16 moves back and forth in the height direction, so that the rolling column 10 performs a reciprocating rotational motion to generate axial pressure on the tumor blocks on the surfaces of the first pressure roller 2 and the second pressure roller 3, which is conducive to making the tumor blocks be crushed more thoroughly, further restoring the flatness of the surfaces of the first pressure roller 2 and the second pressure roller 3, and reducing the error of bar straightening.
[0082] As a further embodiment of the present invention, the side walls of the two sliders 8 on the left sides of the first pressing roller 2 and the second pressing roller 3 are fixedly connected with a bracket 20, and the bottom end of the bracket 20 is rotatably connected with a brush roller 21, and the two brush rollers 21 are in contact with the left sides of the first pressing roller 2 and the second pressing roller 3 respectively;
[0083] Also includes:
[0084] A second gear 22, the second gear 22 is fixedly connected to the shaft of the brush roller 21;
[0085] A second rack plate 23, which slides through the mounting frame 6 and meshes with the second gear 22;
[0086] A driving plate 24, the driving plate 24 is fixedly connected to the side wall of the second rack plate 23, and an oblique groove 25 is formed on the top of the driving plate 24;
[0087] A driving frame 26 is slidably connected to the side wall of the slider 8. A straight groove 27 is provided on the side wall of the driving plate 24. A connecting pin 28 is fixedly connected to the bottom end of the driving frame 26. The connecting pin 28 is slidably connected in the inclined groove 25.
[0088] Two connecting plates 29, the two connecting plates 29 are fixedly connected to the side walls of the shaft of the first pressing roller 2 and the shaft of the second pressing roller 3, and the side walls of the connecting plates 29 are fixedly connected with a push pin 30, and the push pin 30 is slidably connected in the straight groove 27;
[0089] Specifically, by setting the brush roller 21, the second gear 22 and the second rack plate 23, during the rotation of the rolling column 10, the connecting plate 29 drives the pushing pin 30 to push the driving frame 26, so that the driving frame 26 moves along the side wall of the slider 8, and the connecting pin 28 moves along the inclined groove 25. Driven by the inclined groove 25, the driving plate 24 drives the second rack plate 23 to move back and forth in a straight line, thereby driving the second gear 22 to perform reciprocating rotational motion, so that the brush roller 21 rotates back and forth, and the impurities remaining on the surfaces of the first pressure roller 2 and the second pressure roller 3 are further cleaned by the brush roller 21, the surface flatness of the first pressure roller 2 and the second pressure roller 3 is restored, and the error of rod straightening is further reduced.
[0090] As a further embodiment of the present invention, an air cavity 11 is provided at the end of the rolling column 10 near the brush roller 21, and a plurality of air holes 12 are provided in an array at the bottom end of the air cavity 11. A piston 13 is slidably connected in the air cavity 11, and a connecting frame 14 is fixedly connected to the bottom end of the piston 13. The connecting frame 14 is fixedly connected to the second rack plate 23.
[0091] Specifically, by setting the air hole 12 and the piston 13, during the reciprocating linear movement of the second rack plate 23, the piston 13 is connected to the connecting frame 14 so that the piston 13 is moved reciprocatingly along the air cavity 11, so that the air in the air cavity 11 is compressed, and air is blown toward the surfaces of the brush roller 21 and the first pressure roller 2 and the second pressure roller 3 through the air hole 12. On the one hand, impurities remaining on the surfaces of the first pressure roller 2 and the second pressure roller 3 are further cleaned, the flatness of the surfaces of the first pressure roller 2 and the second pressure roller 3 is restored, and the error of rod straightening is reduced. On the other hand, impurities in the brush roller 21 are cleaned to improve the cleanliness of the surface of the brush roller 21, thereby improving the cleaning ability of the brush roller 21 to the first pressure roller 2 and the second pressure roller 3.
[0092] As a further embodiment of the present invention, a scraper 37 is fixedly connected to the side wall of the slider 8, the end of the scraper 37 extends toward the rolling column 10, and the bottom end of the scraper 37 contacts the rolling column 10;
[0093] Specifically, a scraper 37 is provided to clean the surface of the rolling column 10 , and impurities remaining on the surface of the rolling column 10 are cleaned off, thereby improving the cleanliness of the surface of the rolling column 10 , thereby reducing the wear of the rolling column 10 on the first pressure roller 2 and the first pressure roller 2 .
[0094] As a further embodiment of the present invention, it also includes:
[0095] A plurality of support roller groups 4 are rotatably connected to the side wall of the processing table 1 in an array to support the parts to be processed.
[0096] The working principle of the present invention is as follows:
[0097] The workpiece to be processed is passed between the first pressing roller 2 and the second pressing roller 3, and then the rotary drive mechanism is started to rotate the first pressing roller 2 and the second pressing roller 3, so that the workpiece to be processed is transported in a horizontal direction. During the transportation process, the workpiece to be processed is straightened by the pressing action of the first pressing roller 2 and the second pressing roller 3, so as to reduce the dimensional error of the forming spring strip;
[0098] After the first roller 2 and the second roller 3 have been straightened for a long time, the first cylinder 101 and the second cylinder 102 are started, so that the two mounting seats 5 are close to each other, and the two rolling columns 10 are close to the bottom end of the first roller 2 and the top end of the second roller 3 respectively, and are in contact with the surfaces of the first roller 2 and the second roller 3;
[0099] After the rolling column 10 contacts the surfaces of the first pressing roller 2 and the second pressing roller 3 respectively, the slider 8 slides along the inner groove of the mounting frame 6 under the squeezing effect of the first pressing roller 2 and the second pressing roller 3, and the first spring 9 is compressed, thereby ensuring that the rolling column 10 contacts the surfaces of the first pressing roller 2 and the second pressing roller 3 respectively.
[0100] Since the first pressing roller 2 and the second pressing roller 3 are always in a rotating state, the surfaces of the first pressing roller 2 and the second pressing roller 3 are squeezed with the rolling column 10, which is conducive to crushing the tumors on the surfaces of the first pressing roller 2 and the second pressing roller 3, and then automatically falling off from the surfaces of the first pressing roller 2 and the second pressing roller 3 under the action of gravity, which is conducive to restoring the flatness of the surfaces of the first pressing roller 2 and the second pressing roller 3 and reducing the error of bar straightening;
[0101] After cleaning, the two mounting seats 5 are moved away from each other by the first cylinder 101 and the second cylinder 102, so that the two rolling columns 10 are respectively away from the bottom end of the first pressure roller 2 and the top end of the second pressure roller 3, to avoid the problem of the rolling columns 10 being in contact with the surfaces of the first pressure roller 2 and the second pressure roller 3 for a long time, causing wear of the first pressure roller 2 and the second pressure roller 3.
[0102] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments, and the above embodiments and descriptions only describe the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention, and these changes and improvements fall within the scope of the present invention claimed.
Claims
1. A raw material straightening and cutting device for high-speed rail spring clip fasteners, characterized in that: include: A processing table (1), wherein a plurality of first pressing rollers (2) and second pressing rollers (3) are rotatably connected in an array on the side wall of the processing table (1), and the second pressing rollers (3) are located directly above the first pressing rollers (2); A rotary drive mechanism, the rotary drive mechanism is used to drive the first pressing roller (2) and the second pressing roller (3) to rotate so as to transport the parts to be processed in a horizontal direction; Two mounting seats (5), the two mounting seats (5) are symmetrically slidably connected to the side walls of the processing table (1), and mounting frames (6) are symmetrically arranged on the left and right sides of the first pressing roller (2) and the second pressing roller (3), and the mounting frames (6) are respectively fixedly connected to the mounting seats (5) at corresponding positions; Slide blocks (8) are slidably connected in grooves of the mounting frames (6) on the left and right sides of the first pressing roller (2) and the second pressing roller (3), and a first spring (9) is fixedly connected between the slide block (8) and the mounting frame (6); A rolling column (10) is rotatably connected between two sliders (8) on the left and right sides of the first pressing roller (2) and the second pressing roller (3), and the two rolling columns (10) are in contact with the bottom end surface of the first pressing roller (2) and the top end surface of the second pressing roller (3) respectively; The ends of the left and right mounting frames (6) of the first pressing roller (2) and the second pressing roller (3) are both provided with arc-shaped clearance grooves (7) for allowing the parts to be processed to pass through.
2. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 1, characterized in that: Also includes: A first gear (15), the first gear (15) being fixedly connected to the shaft of the rolling column (10); A first rack plate (16), the first rack plate (16) being slidably connected to a side wall of a mounting frame (6) at a corresponding position, and a second spring (17) being fixedly connected between the first rack plate (16) and the mounting frame (6); A lining plate (18), wherein the lining plate (18) is fixedly connected to a side wall of the first rack plate (16); Cams (19) are fixedly connected to the shafts of the first pressing roller (2) and the second pressing roller (3), and the cams (19) are used to push the lining plate (18) so that the first rack plate (16) slides along the side wall of the mounting frame (6).
3. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 1, characterized in that: The side walls of the two left sliders (8) of the first pressing roller (2) and the second pressing roller (3) are fixedly connected to a bracket (20), and the bottom end of the bracket (20) is rotatably connected to a brush roller (21), and the two brush rollers (21) are in contact with the left side surfaces of the first pressing roller (2) and the second pressing roller (3), respectively.
4. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 3, characterized in that: Also includes: A second gear (22), the second gear (22) being fixedly connected to the shaft of the brush roller (21); A second rack plate (23), wherein the second rack plate (23) slides through the mounting frame (6) and then meshes with the second gear (22); A driving plate (24), the driving plate (24) being fixedly connected to the side wall of the second rack plate (23), and a top end of the driving plate (24) being provided with an oblique groove (25); A driving frame (26), wherein the driving frame (26) is slidably connected to the side wall of the slider (8), a straight groove (27) is provided on the side wall of the driving plate (24), a connecting pin (28) is fixedly connected to the bottom end of the driving frame (26), and the connecting pin (28) is slidably connected in the inclined groove (25); Two connecting plates (29), the two connecting plates (29) are fixedly connected to the side walls of the first pressure roller (2) shaft and the second pressure roller (3) shaft, the side walls of the connecting plates (29) are fixedly connected with a push pin (30), and the push pin (30) is slidably connected in the straight groove (27).
5. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 4, characterized in that: An air cavity (11) is provided at the end of the rolling column (10) close to the brush roller (21), a plurality of air holes (12) are provided in an array at the bottom end of the air cavity (11), a piston (13) is slidably connected in the air cavity (11), a connecting frame (14) is fixedly connected to the bottom end of the piston (13), and the connecting frame (14) is fixedly connected to the second rack plate (23).
6. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 1, characterized in that: The rotary drive mechanism comprises: A driving motor (31), the driving motor (31) being fixedly connected to a side wall of the processing table (1), and a driving gear (32) being fixedly connected to an end of an output shaft of the driving motor (31); A transmission gear (33), the transmission gear (33) is fixedly connected to the shaft of one of the first pressure rollers (2), the transmission gear (33) is meshed with the driving gear (32), and a first belt (34) is arranged between the shafts of several first pressure rollers (2); A transmission belt (35) is arranged between the output shaft surface of the driving motor (31) and the shaft of one of the second pressure rollers (3), and a second belt (36) is arranged between a plurality of the second pressure rollers (3).
7. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 1, characterized in that: A scraper (37) is fixedly connected to the side wall of the sliding block (8), the end of the scraper (37) extends toward the rolling column (10), and the bottom end of the scraper (37) is in contact with the rolling column (10).
8. The raw material straightening and cutting device for high-speed rail spring clip fasteners according to claim 1, characterized in that: Also includes: A plurality of support roller groups (4) are rotatably connected in an array to the side wall of the processing table (1) and are used to support the parts to be processed.
Citation Information
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