Pipe chamfering equipment

By designing a limited mechanism and a pipe adjustment mechanism in the pipe chamfering equipment, the problem that the chamfering knife in existing equipment cannot accurately correspond to the pipe is solved, the chamfering efficiency and stability are improved, and the chamfering quality is ensured.

CN222903485UActive Publication Date: 2025-05-27SUZHOU ZHAOGUAN PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202421959189.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-05-27
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

When the existing pipe chamfering equipment is transmitted, the chamfering knife cannot accurately correspond to the pipe due to inertia, resulting in poor chamfering quality and low efficiency, and manual adjustment of the pipe position is required.

Method used

A pipe chamfering device including a defining mechanism and a pipe adjustment mechanism is designed. The defining mechanism clamps the pipe through the first defining block and the second defining block to ensure its stable position during chamfering; the pipe adjustment mechanism adjusts the pipe position through the positioning block and the adjustment block to ensure that the chamfering knife can effectively correspond to the pipe.

Benefits of technology

By limiting the design of the mechanism and pipe adjustment mechanism, manual adjustment time is reduced, the efficiency and stability of pipe chamfering are improved, and the chamfering quality is ensured.

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Abstract

The utility model relates to the technical field of pipe machining, in particular to pipe chamfering equipment which comprises a rack, and the rack is sequentially provided with a feeding mechanism, a conveying mechanism, a machining mechanism and a discharging mechanism in the pipe machining direction. The device further comprises a limiting mechanism, the limiting mechanism comprises a first limiting block, a second limiting block and a lifting part, the first limiting block is arranged on the rack, and a limiting groove for containing a pipe is formed in the first limiting block; the second limiting block is connected to the rack through the lifting piece and abuts against the pipe located in the limiting groove. The method has the effect of improving the efficiency.
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Description

Technical Field

[0001] This application relates to the technical field of pipe processing, and in particular to a pipe chamfering device. Background Art

[0002] The outer end edge of plastic pipes needs to be chamfered.

[0003] Currently, a pipe chamfering device includes a frame, on which a conveyor belt is rotatably arranged; a cylinder is arranged on the frame, an adjusting block is connected to the piston rod of the cylinder, a driving motor is connected to the adjusting block, a rotating block is connected to the output shaft of the driving motor, and a chamfering tool is arranged on the rotating block. Place the pipe on the conveyor belt, then the conveyor belt conveys the pipe to a position corresponding to the chamfering tool, and then make the conveyor belt stop moving; then start the cylinder, the piston rod of the cylinder drives the adjusting block to move towards the pipe, so that the chamfering tool touches the pipe; then start the driving motor, the output shaft of the driving motor drives the rotating block to rotate, the rotating block drives the chamfering tool to rotate, and the chamfering tool will chamfer the pipe.

[0004] When the conveyor belt stops moving, due to inertia, the pipe will roll on the conveyor belt, so that the chamfering tool cannot well correspond to the pipe; in order to ensure the chamfering quality of the pipe, it is necessary for the operator to spend a certain amount of time adjusting the position of the pipe, so that the overall chamfering time of the pipe becomes longer, resulting in reduced efficiency. Utility Model Content

[0005] In order to improve efficiency, this application provides a pipe chamfering device.

[0006] A pipe chamfering device provided by this application adopts the following technical solutions:

[0007] A pipe chamfering device includes a frame, on which a feeding mechanism, a conveying mechanism, a processing mechanism and a discharging mechanism are sequentially arranged along the pipe processing direction; a limiting mechanism is also included, and the limiting mechanism includes a first limiting block, a second limiting block and a lifting member. The first limiting block is arranged on the frame, and a limiting groove for placing the pipe is opened on the first limiting block; the second limiting block is connected to the frame through the lifting member, and the second limiting block abuts against the pipe located in the limiting groove.

[0008] By adopting the above technical solution, the pipe in the feeding mechanism moves onto the conveying mechanism, and then the conveying mechanism transfers the pipe into the limiting groove of the first limiting block. Then, the lifting member is activated, and the lifting member drives the second limiting block to move towards the first limiting block, so that the second limiting block abuts against the pipe groove located in the limiting groove. Then, the processing mechanism is activated to process the pipe. The provided limiting mechanism can limit the position of the pipe during chamfering, thereby reducing the manual adjustment time and improving the efficiency; and it can improve the stability of the pipe during chamfering.

[0009] Optionally, the conveying mechanism includes a fixed plate, an adjusting plate, and a first adjusting component. There are two fixed plates, and placing grooves for placing pipes are formed on both of the two fixed plates, and the first limiting block is provided on each fixed plate; two adjusting plates are arranged between the two fixed plates, and adjusting grooves are formed on both of the two adjusting plates; the first adjusting component is located between the two fixed plates and is connected to the two adjusting plates; the fixed plate is located between the feeding mechanism and the processing mechanism.

[0010] By adopting the above technical solution, the pipe in the feeding mechanism enters the placing groove of the fixed plate; then, the first adjusting component drives the two adjusting plates to move, and the adjusting grooves on the two adjusting plates will transfer the pipe located in the placing groove to other placing grooves of the fixed plate.

[0011] Optionally, the first adjusting component includes a fixed block, a first slider, a first cylinder, an adjusting block, and a driving component. The fixed block is located between the two fixed plates, and the first slider is slidably arranged on the fixed block through the driving component; the cylinder body of the first cylinder is arranged on the first slider, the adjusting block is arranged on the piston rod of the first cylinder, and both of the two adjusting plates are arranged on the adjusting block; the driving component is arranged on the fixed block and is connected to the first slider.

[0012] By adopting the above technical solution, when the pipe is located in the fixed groove of the fixed plate, the first cylinder is activated first. The piston rod of the first cylinder drives the adjusting block to move away from the fixed block, and the adjusting block drives the two adjusting plates to move, so that the pipe is located in the adjusting grooves of the two adjusting plates and falls out of the fixed groove; then, the driving component is activated, and the driving component drives the first slider to move on the fixed block. The first cylinder on the first slider drives the adjusting block to move, and the two adjusting plates on the adjusting block will drive the pipe to move; when the pipe moves to a suitable position, the first cylinder is activated again, so that the adjusting block drives the two adjusting plates to move towards the fixed block, and the pipes on the two adjusting plates are transferred to other fixed grooves of the fixed plate.

[0013] Optionally, the driving component includes a first lead screw and a first motor. The first lead screw passes through the first slider and is threadedly connected to the first slider. The first motor is disposed on the fixed block and the output shaft thereof is connected to the first lead screw.

[0014] By adopting the above technical solution, when the first motor is started, the output shaft of the first motor drives the first lead screw to rotate, and the first lead screw will drive the first slider to move on the fixed block.

[0015] Optionally, the feeding mechanism includes a first support block, a material storage block, a blocking feeding block and a second adjusting component. The first support block is disposed at one end of the fixed plate away from the processing mechanism. The material storage block is inclined and disposed on one side of the first support block away from the feeding mechanism, and the relative height of the end of the material storage block away from the first support block is higher than the relative height of the end of the material storage block close to the first support block. The blocking feeding block is disposed on the first support block through the second adjusting component. A blocking feeding groove is formed in the blocking feeding block, and the blocking feeding block can block the pipe and transfer the pipe to the placing groove of the fixed plate.

[0016] By adopting the above technical solution, a plurality of pipes are placed on the material storage block. The pipes will move along the material storage block in the direction close to the processing mechanism, and one pipe will be located in the blocking feeding groove. Other pipes will be blocked by the blocking feeding block. Then, the second adjusting component is started, and the second adjusting component drives the blocking feeding block to rotate. The pipe located in the blocking feeding groove will move into the fixing groove of the fixed plate. And the next pipe will be located in another blocking feeding groove.

[0017] Optionally, the second adjusting component includes an adjusting shaft and a second motor. The adjusting shaft is rotatably disposed on the first support block, and the blocking feeding block is disposed on the adjusting shaft. The second motor is disposed on the first support block, and the output shaft of the second motor is connected to the adjusting shaft.

[0018] By adopting the above technical solution, when the second motor is started, the output shaft of the second motor drives the adjusting shaft to rotate, and the adjusting shaft will drive the blocking feeding block to rotate.

[0019] Optionally, a pipe adjusting mechanism is disposed on the frame. The pipe adjusting mechanism includes a positioning block, a second cylinder and an adjusting block. The positioning block is disposed on the frame. The cylinder body of the second cylinder is disposed on the frame. The adjusting block is disposed on the piston rod of the second cylinder, and the two fixed plates are respectively located between the positioning block and the adjusting block.

[0020] By adopting the above technical solution, when the pipe moves between the positioning block and the adjusting block, the second cylinder is started. The piston rod of the second cylinder drives the adjusting block to move towards the positioning block. The adjusting block will contact one end of the pipe and push the pipe to move, so that the end of the pipe away from the adjusting block contacts the positioning block, realizing the adjustment of the position of the pipe. The provided pipe adjusting mechanism adjusts the position before chamfering treatment, ensuring the chamfering quality when the subsequent processing mechanism performs chamfering.

[0021] Optionally, the processing mechanism includes a second support block, a second slider, a driving motor, a driving shaft, a rotating block, a chamfering tool and a third adjusting component. The second support block is arranged on the frame. The second slider is slidably arranged on the second support block through the third adjusting component. The driving motor is arranged on the second slider, and the driving shaft is arranged on the output shaft of the driving motor. The rotating block is arranged on the driving shaft. The chamfering tool is arranged on the rotating block.

[0022] By adopting the above technical solution, when the second limiting block presses against the pipe located in the upper limiting groove of the first limiting block, the third adjusting component is started. The third adjusting component drives the second slider to move towards the pipe on the second support block. The driving motor on the second slider drives the driving shaft to move, and the rotating block on the driving shaft drives the chamfering tool to move, so that the chamfering tool corresponds to the position where the pipe needs to be chamfered. Then the driving motor is started again. The output group of the driving motor drives the driving shaft to rotate, and the driving shaft drives the rotating block to rotate. The chamfering tool on the rotating block will chamfer the pipe.

[0023] Optionally, the third adjusting component includes a second lead screw and a third motor. The second lead screw passes through the second slider and is threadedly connected to the second slider. The third motor is arranged on the second support block and is connected to the second lead screw.

[0024] By adopting the above technical solution, the third motor is started. The output shaft of the third motor drives the second lead screw to rotate, and the second lead screw drives the second slider to move on the second support block.

[0025] In summary, the present application includes at least one of the following beneficial technical effects:

[0026] 1. The provided limiting mechanism can limit the position of the pipe during chamfering, thereby reducing the manual adjustment time and improving the efficiency; and can improve the stability of the pipe during chamfering;

[0027] 2. The provided pipe adjusting mechanism adjusts the position before chamfering treatment, ensuring the chamfering quality when the subsequent processing mechanism performs chamfering. Description of the Drawings

[0028] Figure 1It is a schematic structural diagram of the pipe chamfering device in the embodiment of the present application;

[0029] Figure 2 It is a schematic structural diagram of the feeding mechanism in the embodiment of the present application;

[0030] Figure 3 It is a schematic structural diagram of the first adjustment component in the embodiment of the present application;

[0031] Figure 4 It is a schematic structural diagram of the pipe adjustment mechanism in the embodiment of the present application;

[0032] Figure 5 It is a schematic structural diagram of the processing mechanism in the embodiment of the present application.

[0033] Reference numerals: 11, frame; 12, support frame; 2, limiting mechanism; 21, first limiting block; 211, limiting groove; 22, second limiting block; 23, lifting member; 3, conveying mechanism; 31, fixing plate; 311, placing groove; 32, adjusting plate; 321, adjusting groove; 4, first adjustment component; 41, fixing block; 411, first sliding groove; 42, first slider; 43, first cylinder; 44, adjusting block; 45, driving component; 451, first lead screw; 452, first motor; 5, feeding mechanism; 51, first support block; 52, material storage block; 53, blocking feeding block; 531, blocking feeding groove; 54, second adjustment component; 541, adjustment shaft; 542, second motor; 6, processing mechanism; 61, second support block; 611, second sliding groove; 62, second slider; 63, driving motor; 64, driving shaft; 65, rotating block; 66, chamfering tool; 67, third adjustment component; 671, second lead screw; 672, third motor; 7, discharging mechanism; 8, pipe adjustment mechanism; 81, positioning block; 82, second cylinder; 83, adjustment block. Detailed implementation manners

[0034] The following will Figures 1-5 further describe the present application in detail.

[0035] The embodiment of the present application discloses a pipe chamfering device.

[0036] Refer to Figure 1 , a pipe chamfering device, including a frame 11, a feeding mechanism 5, a conveying mechanism 3, a support frame 12 and a discharging mechanism 7 are sequentially arranged on the frame 11 along the movement direction of the pipe, and a processing mechanism 6 and a limiting mechanism 2 are connected to the support frame 12.

[0037] Refer to Figure 1 and Figure 2, the loading mechanism 5 includes a first support block 51 connected to the frame 11. On one side of the first support block 51 away from the support frame 12, two storage blocks 52 are fixedly connected obliquely. The relative height of the end of the storage block 52 away from the first support block 51 is higher than that of the end of the storage block 52 close to the first support block 51. A second adjustment component 54 is arranged on the first support block 51. The second adjustment component 54 includes an adjustment shaft 541 rotatably connected to the first support block 51. Two blocking loading blocks 53 are fixedly connected to the adjustment shaft 541. The two blocking loading blocks 53 are located between the two storage blocks 52. Two blocking loading grooves 531 are formed on each storage block 52. A second motor 542 is fixedly connected to the first support block 51. The output shaft of the second motor 542 is connected to one end of the adjustment shaft 541.

[0038] Place multiple pipes on the two storage blocks 52. The pipes will move along the two storage blocks 52 in the direction close to the support frame 12, and one pipe will be located in the blocking loading groove 531. Other pipes will be blocked by the blocking loading blocks 53. Then start the second motor 542. The output shaft of the second motor 542 drives the adjustment shaft 541 to rotate. The adjustment shaft 541 drives the blocking loading blocks 53 to rotate. The pipe located in the blocking loading groove 531 will move into the conveying mechanism 3. And the subsequent pipe will be located in another blocking loading groove 531.

[0039] Reference Figure 1 and Figure 3 , the conveying mechanism 3 includes two fixing plates 31 fixedly connected to the frame 11. A plurality of placement grooves 311 are formed on each of the two fixing plates 31. The plurality of placement grooves 311 on the two fixing plates 31 are all on the same horizontal plane, and the axes of the two corresponding placement grooves 311 on the two fixing plates 31 coincide.

[0040] A first adjustment component 4 is arranged between the two fixing plates 31. The first adjustment component 4 includes a fixing block 41 located between the two fixing plates 31 and connected to the frame 11. A first sliding groove 411 is formed on the fixing block 41. A first slider 42 is slidably connected in the first sliding groove 411. A driving component 45 is arranged on the fixing block 41. The driving component 45 includes a first lead screw 451 rotatably connected in the first sliding groove 411. The first lead screw 451 passes through the first slider 42 and is threadedly connected to the first slider 42. One end of the fixing block 41 is fixedly connected to a first motor 452. The output shaft of the first motor 452 is connected to one end of the first lead screw 451.

[0041] A first air cylinder 43 is provided on the first slider 42. The cylinder block of the first air cylinder 43 is connected to the first slider 42, and an adjusting block 44 is connected to the piston rod of the first air cylinder 43. A regulating plate 32 is fixedly connected to each of the two sides of the adjusting block 44, and the two regulating plates 32 are both located between the two fixing plates 31; a plurality of adjusting grooves 321 are formed in each of the two regulating plates 32, the plurality of adjusting grooves 321 on the two regulating plates 32 are all on the same horizontal plane, and the axes of the two corresponding adjusting grooves 321 on the two regulating plates 32 coincide.

[0042] At the very beginning, the adjusting groove 321 on the regulating plate 32 is located below the fixing groove on the fixing plate 31; the pipe located in the blocking feeding groove 531 will move into the fixing groove of the fixing plate 31 close to the first support block 51, and both ends of the pipe are respectively located in the fixing grooves of the two fixing plates 31. Then the first air cylinder 43 is started, and the piston rod of the first air cylinder 43 drives the adjusting block 44 to move away from the fixed block 41. The two regulating plates 32 on the adjusting block 44 will move away from the fixed block 41, and the pipe will enter into the two adjusting grooves 321 of the two regulating plates 32 and no longer be located in the placing grooves 311 of the two fixing plates 31; then the air cylinder is closed, and the first motor 452 is started. The output shaft of the first motor 452 drives the first lead screw 451 to rotate, and the first lead screw 451 drives the first slider 42 to move away from the first support block 51. The first air cylinder 43 on the first slider 42 drives the adjusting block 44 to move away from the first support block 51, so that the two regulating plates 32 on the adjusting block 44 drive the pipe to move; then the first motor 452 is closed, and the first air cylinder 43 is started, so that the piston rod of the first air cylinder 43 drives the adjusting block 44 to move towards the fixed block 41. The pipes on the two regulating plates 32 of the adjusting block 44 enter into the two placing grooves 311 of the two fixing plates 31, that is, the pipe moves from the placing grooves 311 of the two fixing plates 31 close to the first support block 51 to the placing grooves 311 of the next two fixing plates 31 in the direction away from the first support block 51. Finally, the first motor 452 is started to make the adjusting block 44 and the two regulating plates 32 return to the initial position, so that the pipe can move towards the support frame 12.

[0043] Reference Figure 1 and Figure 4 As shown in [relevant figure number] and [relevant figure number], a pipe adjusting mechanism 8 is provided on one side of the support frame 12 close to the first support block 51. The pipe adjusting mechanism 8 includes a positioning block 81 fixedly connected to one side of the frame 11; a second air cylinder 82 is provided on the side of the frame 11 away from the positioning block 81. The cylinder block of the second air cylinder 82 is fixed on the frame 11, and an adjusting block 83 is connected to the piston rod of the second air cylinder 82. The two fixing plates 31 are located between the positioning block 81 and the adjusting block 83.

[0044] When the pipe moves between the positioning block 81 and the adjusting block 83, the second cylinder 82 is activated. The piston rod of the second cylinder 82 drives the adjusting block 83 to move towards the positioning block 81. The adjusting block 83 will contact one end of the pipe and push the pipe to move, so that the end of the pipe away from the adjusting block 83 contacts the positioning block 81, realizing the adjustment of the position of the pipe. Finally, the second cylinder 82 is activated again to make the adjusting block 83 move away from the positioning block 81.

[0045] Reference Figure 1 and Figure 4 As shown in FIGS. 7 and 8, the limiting mechanism 2 includes two first limiting blocks 21. The two first limiting blocks 21 are respectively fixedly connected to the two fixing plates 31 and are located at one end of the fixing plates 31 away from the first support block 51. The two first limiting blocks 21 are located below the support frame 12. Limiting grooves 211 are formed on both of the two first limiting blocks 21. The axis of the limiting groove 211 on the first limiting block 21 is on the same horizontal plane as the axis of the placement groove 311, and the axes of the limiting grooves 211 on the two first limiting blocks 21 coincide. A lifting member 23 is arranged on the support frame 12. The lifting member 23 is a third cylinder. The cylinder body of the third cylinder is fixed on the support frame 12. A second limiting block 22 is connected to the piston rod of the third cylinder. The second limiting block 22 is located above the first limiting block 21, and a limiting groove 211 is also formed on the second limiting block 22. The axis of the limiting groove 211 on the first limiting block 21 is in the same vertical plane as the axis of the limiting groove 211 on the second limiting block 22.

[0046] The pipe with adjusted position is transferred into the limiting grooves 211 of the two first limiting blocks 21 through the adjusting grooves 321 on the two adjusting plates 32; then the third cylinder is activated. The piston rod of the third cylinder drives the second limiting block 22 to move towards the first limiting block 21, so that the second limiting block 22 presses against the pipe located in the limiting groove 211 on the first limiting block 21, realizing the clamping of the pipe by the first limiting block 21 and the second limiting block 22.

[0047] Reference Figure 1 and Figure 5 As shown in FIGS. 11 and 12, two processing mechanisms 6 are provided. The two fixing plates 31 are located between the two processing mechanisms 6. Each processing mechanism 6 includes a second support block 61 fixedly connected to the support frame 12. A second sliding groove 611 is formed on the second support block 61. A second sliding block 62 is slidably connected in the second sliding groove 611. A third adjusting assembly 67 is arranged on the second support block 61. The third adjusting assembly 67 includes a second lead screw 671 rotatably connected in the second sliding groove 611. The second lead screw 671 passes through the second sliding block 62 and is threadedly connected to the second sliding block 62; one end of the second support block 61 away from the support frame 12 is fixedly connected to a third motor 672. The output shaft of the third motor 672 is connected to one end of the second lead screw 671.

[0048] A driving motor 63 is fixedly connected to the second slider 62. A driving shaft 64 is connected to the output shaft of the driving motor 63. A rotating block 65 is fixedly connected to the end of the driving shaft 64 away from the driving motor 63. A chamfering tool 66 is fixedly connected to the rotating block 65.

[0049] After the first limiting block 21 and the second limiting block 22 both abut against the pipe, first start the third motor 672. The output group of the third motor 672 drives the second lead screw 671 to rotate. The second lead screw 671 drives the second slider 62 to move in the second chute 611 towards the pipe. The second slider 62 drives the driving motor 63 to move. The driving shaft 64 on the driving motor 63 drives the rotating block 65 to move towards the pipe, so that the chamfering tool 66 on the rotating block 65 abuts against the position of the pipe that needs to be chamfered. Then turn off the third motor 672 and start the driving motor 63. The output shaft of the driving motor 63 drives the driving shaft 64 to rotate. The driving shaft 64 drives the rotating block 65 to rotate, and the chamfering tool 66 on the rotating block 65 will chamfer the pipe.

[0050] Reference Figure 1 and Figure 4 Referring to

[0051] After the chamfering of the pipe is completed, the adjustment groove 321 on the adjustment plate 32 separates the chamfered pipe from the first limiting block 21. Then the adjustment groove 321 on the adjustment plate 32 drives the pipe to move to the position of the blanking slide bar, so that the pipe abuts against the blanking slide bar and is no longer in the adjustment groove 321, and the pipe will slide along the blanking slide bar.

[0052] The implementation principle of a pipe chamfering device according to an embodiment of the present application is as follows: Place a plurality of pipes on the two storage blocks 52. The pipes will move along the two storage blocks 52 towards the support frame 12, and one of the pipes will be located in the blocking feeding groove 531. The other pipes will be blocked by the blocking feeding block 53. Then start the second motor 542. The output shaft of the second motor 542 drives the adjustment shaft 541 to rotate. The adjustment shaft 541 drives the blocking feeding block 53 to rotate, and the pipe located in the blocking feeding groove 531 will move to the fixing groove of the fixing plate 31 close to the first support block 51.

[0053] Then start the first cylinder 43 and the first motor 452. Under the action of the adjustment grooves 321 of the two adjustment plates 32, the pipe can move towards the support frame 12.

[0054] When the pipe moves between the positioning block 81 and the adjustment block 83, start the second cylinder 82 to make the adjustment block 83 move towards the positioning block 81. The adjustment block 83 will contact one end of the pipe and push the pipe to move, so that the end of the pipe away from the adjustment block 83 contacts the positioning block 81. Then start the second cylinder 82 again to make the adjustment block 83 move away from the positioning block 81.

[0055] The pipe with adjusted position is transferred into the limiting grooves 211 of the two first limiting blocks 21 through the adjusting grooves 321 on the two adjusting plates 32; then start the third cylinder, and the piston rod of the third cylinder drives the second limiting block 22 to move towards the first limiting block 21, so that the second limiting block 22 presses against the pipe located in the limiting groove 211 on the first limiting block 21, realizing the clamping of the pipe by the first limiting block 21 and the second limiting block 22.

[0056] Then start the third motor 672 again to make the chamfering tool 66 on the rotating block 65 contact the position of the pipe that needs chamfering; then start the driving motor 63, the output shaft of the driving motor 63 drives the driving shaft 64 to rotate, the driving shaft 64 drives the rotating block 65 to rotate, and the chamfering tool 66 on the rotating block 65 will chamfer the pipe.

[0057] After the chamfering of the pipe is completed, the adjusting groove 321 on the adjusting plate 32 makes the chamfered pipe move from the limiting groove 211 of the first limiting block 21 to the position of the blanking slide bar, so that the pipe contacts the blanking slide bar and is no longer located in the adjusting groove 321, and the pipe will slide along the blanking slide bar.

[0058] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited hereby. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. A pipe chamfering device, comprising a frame (11), wherein the frame (11) is provided with a loading mechanism (5), a conveying mechanism (3), a processing mechanism (6) and a unloading mechanism (7) in sequence along a pipe processing direction; characterized in that: The invention also comprises a limiting mechanism (2), the limiting mechanism (2) comprising a first limiting block (21), a second limiting block (22) and a lifting member (23), the first limiting block (21) being arranged on the frame (11), the first limiting block (21) being provided with a limiting groove (211) for placing a pipe; the second limiting block (22) being connected to the frame (11) via the lifting member (23), the second limiting block (22) abutting against the pipe located in the limiting groove (211).

2. The pipe chamfering equipment according to claim 1, characterized in that: The conveying mechanism (3) comprises a fixed plate (31), an adjusting plate (32) and a first adjusting assembly (4); two fixed plates (31) are provided, and both fixed plates (31) are provided with a placement groove (311) for placing a pipe, and each fixed plate (31) is provided with a first limiting block (21); two adjusting plates (32) are provided between the two fixed plates (31), and both adjusting plates (32) are provided with an adjusting groove (321); the first adjusting assembly (4) is located between the two fixed plates (31) and is connected to the two adjusting plates (32); the fixed plate (31) is located between the feeding mechanism (5) and the processing mechanism (6).

3. The pipe chamfering equipment according to claim 2, characterized in that: The first adjustment component (4) comprises a fixed block (41), a first slider (42), a first cylinder (43), an adjustment block (44) and a drive component (45); the fixed block (41) is located between the two fixed plates (31); the first slider (42) is slidably arranged on the fixed block (41) through the drive component (45); the cylinder body of the first cylinder (43) is arranged on the first slider (42); the adjustment block (44) is arranged on the piston rod of the first cylinder (43), and the two adjustment plates (32) are both arranged on the adjustment block (44); the drive component (45) is arranged on the fixed block (41) and connected to the first slider (42).

4. The pipe chamfering equipment according to claim 3, characterized in that: The driving assembly (45) comprises a first screw rod (451) and a first motor (452); the first screw rod (451) passes through the first slider (42) and is threadedly connected to the first slider (42); the first motor (452) is arranged on the fixed block (41) and the output shaft is connected to the first screw rod (451).

5. The pipe chamfering equipment according to claim 2, characterized in that: The feeding mechanism (5) comprises a first support block (51), a material storage block (52), a blocking material loading block (53) and a second adjustment component (54); the first support block (51) is arranged at an end of the fixed plate (31) away from the processing mechanism (6); the material storage block (52) is arranged obliquely on a side of the first support block (51) away from the feeding mechanism (5); and the relative height of the end of the material storage block (52) away from the first support block (51) is higher than the relative height of the end of the material storage block (52) close to the first support block (51); the blocking material loading block (53) is arranged on the first support block (51) through the second adjustment component (54); a blocking material loading groove (531) is provided on the blocking material loading block (53); and the blocking material loading block (53) is capable of blocking the pipe and transferring the pipe into the placement groove (311) of the fixed plate (31).

6. The pipe chamfering device according to claim 5, characterized in that: The second adjustment component (54) comprises an adjustment shaft (541) and a second motor (542); the adjustment shaft (541) is rotatably arranged on the first support block (51), and the blocking loading block (53) is arranged on the adjustment shaft (541); the second motor (542) is arranged on the first support block (51), and an output shaft of the second motor (542) is connected to the adjustment shaft (541).

7. The pipe chamfering equipment according to claim 2, characterized in that: The frame (11) is provided with a pipe adjustment mechanism (8), the pipe adjustment mechanism (8) comprising a positioning block (81), a second cylinder (82) and an adjustment block (83), the positioning block (81) being provided on the frame (11), the cylinder body of the second cylinder (82) being provided on the frame (11), the adjustment block (83) being provided on the piston rod of the second cylinder (82), and the two fixing plates (31) being respectively located between the positioning block (81) and the adjustment block (83).

8. The pipe chamfering equipment according to claim 1, characterized in that: The processing mechanism (6) comprises a second support block (61), a second slider (62), a driving motor (63), a driving shaft (64), a rotating block (65), a chamfering knife (66) and a third adjusting component (67); the second support block (61) is arranged on the frame (11); the second slider (62) is slidably arranged on the second support block (61) through the third adjusting component (67); the driving motor (63) is arranged on the second slider (62); the driving shaft (64) is arranged on the output shaft of the driving motor (63); the rotating block (65) is arranged on the driving shaft (64); and the chamfering knife (66) is arranged on the rotating block (65).

9. The pipe chamfering device according to claim 8, characterized in that: The third adjustment component (67) comprises a second screw rod (671) and a third motor (672); the second screw rod (671) passes through the second slider (62) and is threadedly connected to the second slider (62); and the third motor (672) is arranged on the second support block (61) and is connected to the second screw rod (671).