A cutting machine tool capable of quickly clamping a pipe

By combining the transmission belt and support rod with the clamping rod and clamping seat design, the problem of long clamping and transfer time in pipe processing is solved, realizing rapid clamping and cutting processing and improving production efficiency.

CN120696492BActive Publication Date: 2026-01-20GUANGDONG GONGJI INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202511074763.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2026-01-20
Estimated Expiration
2045-08-01

AI Technical Summary

Technical Problem

In the process of pipe fitting processing, the clamping and transfer time of existing cutting machine tools is relatively long, resulting in insufficient clamping speed of pipe fittings and difficulty in meeting the needs of high-efficiency production.

Method used

The system employs a transmission belt and support rod in conjunction with a clamping rod and clamping seat to achieve rapid positioning and clamping of pipe fittings. The transmission belt drives the support rod to move, transporting the pipe fitting between the limiting seat and the clamping seat. The annular groove and recess of the clamping rod and clamping seat are used for precise positioning and clamping, adapting to pipe fittings of different diameters.

Benefits of technology

It enables rapid clamping and cutting of pipe fittings, reduces pipe fitting transfer time, improves production efficiency, and adapts to the processing needs of pipe fittings of different diameters.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of pipe processing technology, specifically to a cutting machine tool capable of quickly clamping pipe fittings. The machine tool includes an adjustment module with several positioning modules and a cutting module on its top. The adjustment module also includes a base, on the top of which are two identical clamping mechanisms. Clamping mechanism one contains two limiting seats. In this invention, a transmission belt with several support rods moves the pipe fitting between two connecting frames. The transmission belt drives the support rods downwards, causing the pipe fitting to roughly correspond to the annular groove and the recess. The two clamping rods and two clamping seats then clamp and position the pipe fitting. The two transmission belts continuously transport multiple pipe fittings via the support rods, facilitating the rapid transport of the next pipe fitting between the two limiting seats and enabling quick clamping of the pipe fitting.
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Description

Technical Field

[0001] This invention relates to the field of pipe fitting processing technology, specifically a cutting machine tool that can quickly clamp pipe fittings. Background Technology

[0002] During pipe fitting processing, cutting machine tools are typically used to cut the pipe fittings to the appropriate length to meet production requirements. While automatic clamping mechanisms are used to clamp the pipe fittings during the cutting process, a clamping and transfer structure is needed to transfer the pipe fittings to the machine tool, where they are then clamped by the machine tool's clamping mechanism. This transfer and clamping process is relatively time-consuming, and usually only one pipe fitting is transferred and clamped at a time, which is not conducive to the rapid clamping of pipe fittings. Summary of the Invention

[0003] The purpose of this invention is to provide a cutting machine tool that can quickly clamp pipe fittings, so as to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution:

[0005] A cutting machine tool capable of quickly clamping pipe fittings includes an adjustment module, which is provided with several positioning modules. A cutting module is provided on the top of the adjustment module. The adjustment module includes a base, and the cutting module is located at the end of the base. A clamping mechanism one and a clamping mechanism two with identical structures are provided on the top of the base. The clamping mechanism one is located between the clamping mechanism two and the cutting module. The clamping mechanism one has two limiting seats inside, and a clamping rod is rotatably connected inside the limiting seats. The clamping rod has two annular grooves. The clamping mechanism two has two clamping seats inside, and the clamping seats have two grooves.

[0006] The positioning module includes two connecting frames, which are fixedly mounted on the base. Two blocking frames are fixedly connected inside the connecting frames. Two drive shafts are rotatably mounted inside the blocking frames. Two drive wheels are fixedly sleeved on the drive shafts. A drive belt is drivingly connected to two adjacent drive wheels. The two drive belts are located inside the two blocking frames respectively. The drive belts are driven on two corresponding upper and lower drive wheels. Several support rods are provided on the two drive belts.

[0007] Furthermore, the cutting module includes a cutting frame, a mounting frame, a power box, and a cutting disc;

[0008] The cutting frame is fixedly connected to the top surface of the base, and a hydraulic rod is fixedly connected to the top of the cutting frame;

[0009] The mounting frame is slidingly arranged on the cutting frame, and the output end of the hydraulic rod is in transmission connection with the top of the mounting frame.

[0010] The power box is fixedly arranged on the bottom surface of the mounting frame, and the power box is internally provided with a connecting motor.

[0011] The cutting piece is arranged on one side of the power box, the cutting piece is fixedly connected with a rotating shaft in rotation connection with the power box, the output end of the connecting motor is in transmission connection with the end of the rotating shaft, and the cutting piece is located between the clamping mechanism and the cutting frame.

[0012] Further, the connecting frame is fixedly connected with a driving box, the driving box is internally fixedly connected with a driving motor, and the output end of the driving motor is in transmission connection with the end of the adjacent transmission shaft.

[0013] Further, the support rod is rotationally connected with a limiting frame, the limiting frame is provided with a positioning block at each end, and the positioning block is provided with a fixed block in fixed connection with the adjacent transmission belt.

[0014] Further, the two shielding frames are fixedly connected with a fixed frame.

[0015] Further, the clamping mechanism one comprises a positioning frame, two fixed frames, two clamping frames and four electric telescopic rods one.

[0016] The positioning frame is fixedly connected with the base;

[0017] The two fixed frames are fixedly arranged in the positioning frame;

[0018] The two clamping frames are slidingly connected in the two fixed frames respectively, the limiting seat is fixedly connected with the adjacent clamping frame, the clamping seat is fixedly connected with the clamping frame of the adjacent clamping mechanism two, the two limiting seats are located between the two clamping frames, and the two clamping seats are located between the two clamping frames of the clamping mechanism two.

[0019] The four electric telescopic rods one are fixedly arranged in the two fixed frames respectively, the output end of the electric telescopic rod one is slidingly connected with the adjacent clamping frame, the four electric telescopic rods one are in two groups, and the two groups of electric telescopic rods one are arranged in the two fixed frames respectively.

[0020] Further, the base is slidingly connected with an adjusting frame, the top of the adjusting frame is fixedly connected with the positioning frame of the clamping mechanism two, the base is internally provided with a power motor one, the output end of the power motor one is in transmission connection with a connecting lead screw one in rotation connection with the inside of the base, the connecting lead screw one is screw-connected with a sliding block one in sliding connection with the inside of the base, and the inside of the adjusting frame is fixedly connected with the bottom of the sliding block one.

[0021] Further in, the base is slidingly connected with a sliding frame, a positioning seat is fixedly connected to the top of the sliding frame, an abutting seat is rotatably connected to the positioning seat, a power motor two is fixedly connected inside the base, a connecting lead screw two is rotatably connected to the base, and a sliding block two is screwingly connected to the connecting lead screw two and fixedly connected to the sliding frame.

[0022] Preferably, a connecting frame is fixedly connected to the top of the base.

[0023] Further in, the base is slidingly connected with a sliding frame, a positioning seat is fixedly connected to the top of the sliding frame, an abutting seat is rotatably connected to the positioning seat, a power motor two is fixedly connected inside the base, a connecting lead screw two is rotatably connected to the base, and a sliding block two is screwingly connected to the connecting lead screw two and fixedly connected to the sliding frame.

[0024] The lifting mechanism comprises a bottom frame, a lifting frame and a second electric telescopic rod.

[0025] The bottom frame is fixedly connected to the top of the other connecting frame.

[0026] The lifting frame is slidingly arranged inside the bottom frame, and the top of the lifting frame is fixedly connected to the bottom surface of the support frame.

[0027] The second electric telescopic rod is fixedly connected inside the bottom frame, and the output end of the second electric telescopic rod is in transmission connection with the inside of the lifting frame.

[0028] Compared with the prior art, the beneficial effects of the present application are:

[0029] 1. The transmission belt is provided with a plurality of support rods, which can move the pipe fittings between the two connecting frames, support the pipe fittings through the corresponding two support rods, and then drive the support rods to move downward through the transmission belt, so as to convey the pipe fittings downward between the two limiting seats and the two clamping seats, so that the pipe fittings are roughly corresponding to the annular grooves and the grooves, and then the two clamping rods and the two clamping seats can be used to clamp and position the pipe fittings. The two transmission belts can continuously convey a plurality of pipe fittings through the support rods, so that after the processing of a pipe fitting is completed, the next pipe fitting can be quickly conveyed between the two limiting seats, and the pipe fitting can be quickly clamped.

[0030] 2. The clamping rod is provided with two annular grooves, and after the positioning module conveys a plurality of pipe fittings between the two limiting seats, the two pipe fittings can be clamped through the two annular grooves on the limiting seat, and the two pipe fittings can be clamped through the two grooves on the clamping seat. In this way, during machining, two pipe fittings can be machined, which facilitates rapid machining. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a schematic diagram of the overall structure of a cutting machine tool according to the present application, which can quickly clamp a pipe;

[0032] Figure 2 is a schematic diagram of the structure of the adjusting module in the present application;

[0033] Figure 3 is a schematic diagram of the internal structure of the base in the present application;

[0034] Figure 4 is a schematic diagram of the structure of the clamping mechanism in the present application;

[0035] Figure 5 is a schematic diagram of the internal structure of the clamping mechanism in the present application;

[0036] Figure 6 is a schematic diagram of the structure of the cutting module in the present application;

[0037] Figure 7 is a schematic diagram of the structure of the positioning module in the present application;

[0038] Figure 8 is a schematic diagram of the internal structure of the lifting mechanism in the present application;

[0039] Figure 9 is a schematic diagram of the structure of the connecting frame in the present application;

[0040] Figure 10 is a schematic diagram of the internal structure of the connecting frame in the present application;

[0041] Figure 11 is a schematic diagram of the internal structure of the shielding frame in the present application;

[0042] Figure 12 is a schematic diagram of the structure of the support rod in the present application.

[0043] In the figure: 100, adjustment module; 110, base; 111, adjustment frame; 112, sliding frame; 113, power motor one; 114, sliding block one; 115, connecting lead screw one; 116, power motor two; 117, sliding block two; 118, connecting lead screw two; 120, clamping mechanism one; 121, positioning frame; 122, fixed frame; 123, clamping frame; 124, electric telescopic rod one; 130, clamping mechanism two; 140, limiting seat; 141, clamping rod; 142, annular groove; 150, clamping seat; 151, groove; 160, positioning seat; 161, abutting seat; 200, positioning module; 210, connecting frame; 211, shielding frame; 212, transmission shaft; 213, transmission wheel; 214, transmission belt; 215, fixed frame; 220, support rod; 230, limiting frame; 231, fixed block; 232, positioning block; 240, drive box; 241, drive motor; 250, lifting mechanism; 251, bottom frame; 252, lifting frame; 253, electric telescopic rod two; 260, support frame; 261, side plate; 262, transmission roller; 263, conveying belt; 264, protection box; 270, guide plate; 300, cutting module; 310, cutting frame; 311, hydraulic rod; 320, mounting frame; 330, power box; 340, cutting piece. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0045] Please refer to Figures 1-11 In the embodiments of the present application, a cutting machine tool capable of quickly clamping pipe fittings comprises an adjustment module 100, the adjustment module 100 is provided with a plurality of positioning modules 200, the top of the adjustment module 100 is provided with a cutting module 300, the adjustment module 100 comprises a base 110, the cutting module 300 is arranged at the end of the base 110, the top of the base 110 is provided with a clamping mechanism one 120 and a clamping mechanism two 130 which are of the same structure, the clamping mechanism one 120 is arranged between the clamping mechanism two 130 and the cutting module 300, the clamping mechanism one 120 is internally provided with two limiting seats 140, the limiting seats 140 are internally rotatably connected with clamping rods 141, the clamping rods 141 are provided with two annular grooves 142, the clamping mechanism two 130 is internally provided with two clamping seats 150, and the clamping seats 150 are provided with two grooves 151;

[0046] The positioning module 200 comprises two connecting frames 210 fixedly arranged on the base 110, two shielding frames 211 fixedly connected inside the connecting frames 210, and a fixing frame 215 fixedly connected between the two shielding frames 211, which connects the two shielding frames 211 and is conducive to improving the stability of the shielding frames 211. Two transmission shafts 212 are rotatably arranged inside the shielding frames 211, two transmission wheels 213 are fixedly sleeved on the transmission shafts 212, adjacent two transmission wheels 213 are drivingly connected with a transmission belt 214, and the two transmission belts 214 are respectively arranged inside the two shielding frames 211. The transmission belt 214 is drivingly arranged on the upper and lower corresponding transmission wheels 213, and the two transmission belts 214 are provided with a plurality of supporting rods 220. The side away from the transmission belt 214 of the supporting rod 220 is provided with a tapered end portion. The connecting frame 210 is fixedly connected with a driving box 240, and the driving box 240 is fixedly connected with a driving motor 241 inside. The output end of the driving motor 241 is drivingly connected with the end portion of the adjacent transmission shaft 212. The transmission wheel 213 can be optionally replaced with a sprocket, and the transmission belt 214 can be optionally replaced with a chain.

[0047] Specifically, the pipe can be moved between the two connecting frames 210 of the positioning module 200, and the pipe can be supported by the tapered end portions of the corresponding two supporting rods 220. The two ends and the middle part of the pipe can be supported by the three positioning modules 200 respectively. The adjacent transmission shaft 212 can be driven to rotate by the driving motor 241, and the transmission shaft 212 can drive the transmission belt 214 to rotate, so that the transmission belt 214 drives the supporting rod 220 to move downward, so that the pipe can be conveyed downward between the two limiting seats 140 and the two clamping seats 150, so that the pipe substantially corresponds to the annular groove 142 and the groove 151. Then, the two clamping rods 141 can be clamped to the pipe by the clamping mechanism one 120, and the two clamping seats 150 can be clamped and positioned to the pipe by the clamping mechanism two 130, so that the annular groove 142 and the groove 151 abut against the corresponding pipe. Then, the pipe can be cut by the cutting module 300. The two transmission belts 214 can continuously convey a plurality of pipes by the supporting rods 220. Thus, after the processing of a pipe is completed, the next pipe can be quickly conveyed between the two limiting seats 140, which is conducive to the quick clamping of the pipe and can adapt to the clamping of pipes of different diameters.

[0048] Embodiment one

[0049] As Figure 7 With Figure 8As shown, in this embodiment, one connecting frame 210 is fixedly connected with a guide plate 270 at the top, the top surface of the guide plate 270 is inclinedly arranged, the guide plate 270 is provided with a support frame 260 at the top, the support frame 260 is provided with a lifting mechanism 250 at the bottom, the lifting mechanism 250 is arranged at the top of the other connecting frame 210, the support frame 260 is fixedly connected with two side plates 261, the lifting mechanism 250 can limit the support frame 260, thereby limiting the two side plates 261, the two side plates 261 are rotatably connected with two transmission rollers 262, the two transmission rollers 262 are drivingly connected with a conveying belt 263, a plurality of toothed rods are fixedly arranged on the conveying belt 263, one side plate 261 is fixedly connected with a protection box 264, the protection box 264 is provided with a conveying motor inside, the protection box 264 can protect the conveying motor, and the output end of the conveying motor is drivingly connected with the end portion of one transmission roller 262.

[0050] The lifting mechanism 250 comprises a bottom frame 251, a lifting frame 252 and a second electric telescopic rod 253.

[0051] The bottom frame 251 is fixedly connected at the top of the other connecting frame 210, the lifting frame 252 is slidingly arranged inside the bottom frame 251, the lifting frame 252 is fixedly connected with the bottom surface of the support frame 260 at the top, the second electric telescopic rod 253 is fixedly connected inside the bottom frame 251, and the output end of the second electric telescopic rod 253 is drivingly connected with the inside of the lifting frame 252.

[0052] In specific implementation, a plurality of pipe fittings can be placed on the guide plates 270 of the three positioning modules 200, the pipe fittings are supported by the guide plates 270, the pipe fittings can be blocked by the toothed rods on the conveying belt 263, when it is necessary to convey the pipe fittings between the two connecting frames 210, one transmission roller 262 can be driven to rotate by the conveying motor, the transmission roller 262 can drive the conveying belt 263 to rotate, so that the conveying belt 263 pushes the pipe fittings to roll between the two connecting frames 210, one support rod 220 can be driven to rotate to the top of the transmission belt 214 by the driving motor 241, so that when the pipe fittings are separated from the top of one connecting frame 210, the pipe fittings will roll between the side portion of one support rod 220 and the side portion of one connecting frame 210, the support rod 220 can be continuously driven to rotate by the transmission belt 214, so that the pipe fittings can gradually fall on the transmission belt 214, after the support rod 220 is rotated to a horizontal angle, the pipe fittings can roll on the tapered end portion of the support rod 220, the pipe fittings are supported by the tapered end portions of the corresponding two support rods 220, so that the pipe fittings can be continuously conveyed between the two connecting frames 210 by the conveying belt 263, which is favorable for quickly conveying the pipe fittings to the clamping position and favorable for quickly clamping the pipe fittings;

[0053] The electric telescopic rod 253 can support the support frame 260 through the lifting frame 252. Before processing the pipe fitting, the electric telescopic rod 253 can drive the lifting frame 252 to move up or down. The lifting frame 252 can drive the support frame 260 to move, thereby adjusting the height of the support frame 260 and the conveyor belt 263 so that the conveyor belt 263 abuts against the top of the pipe fitting, which is convenient for abutting and conveying pipe fittings of different diameters.

[0054] like Figure 6 As shown, in this embodiment, the cutting module 300 includes a cutting frame 310, a mounting frame 320, a power box 330, and a cutting blade 340;

[0055] The cutting frame 310 is fixedly connected to the top surface of the base 110. A hydraulic rod 311 is fixedly connected to the top of the cutting frame 310. The mounting frame 320 is slidably mounted on the cutting frame 310. The output end of the hydraulic rod 311 is connected to the top of the mounting frame 320. The hydraulic rod 311 can limit the height of the mounting frame 320, thereby limiting the height of the power box 330 and the cutting blade 340. The power box 330 is fixedly mounted on the bottom surface of the mounting frame 320. A connecting motor is installed inside the power box 330. The cutting blade 340 is located on one side of the power box 330. The cutting blade 340 is fixedly connected to a rotating shaft that is rotatably connected to the power box 330. The output end of the connecting motor is connected to the end of the rotating shaft. The cutting blade 340 is located between the clamping mechanism 120 and the cutting frame 310.

[0056] In practice, after clamping the pipe fitting, the hydraulic rod 311 can drive the mounting frame 320 to move downward, thereby causing the cutting blade 340 to move downward and causing the connecting motor to drive the rotating shaft to rotate. The rotating shaft can drive the cutting blade 340 to rotate, so that the cutting blade 340 can cut the pipe fitting. A corresponding nozzle can be used to spray coolant onto the cutting position. There is a certain distance between the two pipe fittings. After the cutting blade 340 cuts the upper pipe fitting, it can then cut the lower pipe fitting.

[0057] like Figure 4 and Figure 5 As shown, in this embodiment, the clamping mechanism 120 includes a positioning frame 121, two fixing frames 122, two clamping frames 123, and four electric telescopic rods 124.

[0058] Positioning frame 121 is fixedly connected to base 110. Two fixed frames 122 are fixedly set inside positioning frame 121. Two clamping frames 123 are slidably connected inside the two fixed frames 122. Limiting seat 140 is fixedly connected to adjacent clamping frame 123. Clamping seat 150 is fixedly connected to clamping frame 123 of adjacent clamping mechanism 2 130. Two limiting seats 140 are located between two clamping frames 123. Two clamping seats 150 are located between two clamping frames 123 of clamping mechanism 2 130. Four electric telescopic rods 124 are fixedly set inside the two fixed frames 122. The output end of electric telescopic rod 124 is slidably connected to the inside of adjacent clamping frame 123. Clamping frame 123 can slide inside fixed frame 122. The position of clamping frame 123 can be limited by electric telescopic rod 124. The four electric telescopic rods 124 are in pairs, and the two pairs of electric telescopic rods 124 are respectively set inside the two fixed frames 122.

[0059] In specific implementation, after the pipe is transported between the two limiting seats 140 and the two clamping seats 150 through the positioning module 200, and the pipe is roughly aligned between the annular groove 142 and the groove 151, the clamping frame 123 can be moved by the electric telescopic rod 124. The clamping frame 123 of the clamping mechanism 120 can move the limiting seats 140, and the clamping frame 123 of the clamping mechanism 2 130 can move the clamping seats 150, so that the two limiting seats 140 move towards each other and the two clamping seats 150 move towards each other. The limiting seats 140 can clamp the pipe through the clamping rod 141, and the clamping seats 150 can clamp the pipe. At this time, the clamping seats 150 can move the pipe towards the cutting module 300, and the clamping rod 141 can rotate within the limiting seats 140, so that the pipe moves between the two clamping rods 141.

[0060] like Figure 3 As shown, in this embodiment, the base 110 is slidably connected to an adjustment frame 111. The top of the adjustment frame 111 is fixedly connected to the positioning frame 121 of the clamping mechanism 130. The base 110 is equipped with a power motor 113. The output end of the power motor 113 is driven by a connecting screw 115 that is rotatably connected to the inside of the base 110. The connecting screw 115 is screwed to a sliding block 114 that is slidably connected to the inside of the base 110. The position of the sliding block 114 can be limited by the connecting screw 115. The bottom of the adjustment frame 111 is fixedly connected to the bottom of the sliding block 114.

[0061] In practice, after the pipe fitting is clamped by the clamping rod 141 and the clamping seat 150, the connecting screw 115 can be rotated by the power motor 113. The rotation of the connecting screw 115 can move the sliding block 114, which can move the adjusting frame 111. The adjusting frame 111 can move the positioning frame 121 of the clamping mechanism 130, thereby causing the clamping mechanism 130 to move the clamping seat 150 toward the clamping mechanism 120. The clamping seat 150 pushes the pipe fitting toward the cutting module 300. After roughly cutting half of the upper pipe fitting, the electric telescopic rod 124 can move the clamping frame 123, causing the two clamping rods 141 to move in opposite directions and the two clamping seats 150 to move in opposite directions to release the pipe fitting. The support rod 220 of the positioning module 200 supports the pipe fitting. The pipe is supported, and then the positioning module 200 continues to transport the pipe to the bottom annular groove 142, and a new pipe is transported to the top annular groove 142. At the same time, the power motor 113 can drive the connecting screw 115 to rotate in the opposite direction, so that the clamping mechanism 130 moves towards the positioning module 200 in the middle. Then, the two clamping rods 141 can move towards each other to clamp the end of the pipe, and the two clamping seats 150 can move towards each other to clamp the middle of the upper pipe and the end of the lower pipe. Then, the power motor 113 can continue to drive the connecting screw 115 to move forward, so that the clamping mechanism 130 and the clamping seat 150 move towards the clamping mechanism 120, and transport the pipe to the cutting module 300, where the cutting module 300 cuts the pipe.

[0062] Example 2

[0063] Based on Example 1, such as Figure 2 and Figure 3 As shown, in this embodiment, a sliding frame 112 is slidably connected to the base 110, a positioning seat 160 is fixedly connected to the top of the sliding frame 112, an abutment seat 161 is rotatably connected to the positioning seat 160, a second power motor 116 is fixedly connected inside the base 110, a second connecting screw 118 is rotatably connected to the output end of the second power motor 116, and a second sliding block 117 is spun into the connecting screw 118 and fixedly connected to the sliding frame 112. The second connecting screw 118 can limit the position of the second sliding block 117.

[0064] In the embodiment, when the pipe is conveyed by the positioning module 200 and corresponds to the upper annular groove 142, the power motor II 116 drives the connecting lead screw II 118 to rotate, the connecting lead screw II 118 rotates to move the sliding block II 117, the sliding block II 117 drives the sliding frame 112 to move, the sliding frame 112 drives the positioning seat 160 to move, the positioning seat 160 pushes the upper pipe through the abutting seat 161, and the pipe moves to the clamping mechanism I 120, so that the pipe moves between the two clamping rods 141, and the clamping rod 141 clamps the end of the pipe smoothly.

[0065] As shown in the figure, Figure 11 As shown in the figure, Figure 12 In the embodiment, the support rod 220 is rotationally connected to the limiting frame 230, the limiting frame 230 is provided with the positioning block 232 at both ends, and the positioning block 232 is provided with the fixed block 231 fixedly connected with the adjacent transmission belt 214.

[0066] In the embodiment, the transmission belt 214 drives the fixed block 231 to move, the fixed block 231 drives the positioning block 232 to move, the positioning block 232 drives the limiting frame 230 to move, so that the support rod 220 moves, and when the positioning seat 160 pushes the pipe, the support rod 220 rotates in the limiting frame 230, facilitating the smooth movement of the pipe.

[0067] The end of the limiting frame 230 is slidably arranged in the positioning block 232, and the positioning block 232 is rotationally arranged on the fixed block 231, so that when the two transmission belts 214 rotate out of sync, the heights of the two fixed blocks 231 will be different, the limiting frame 230 and the positioning block 232 will rotate relative to the fixed block 231, and the end of the limiting frame 230 will slide in the positioning block 232.

[0068] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and the present application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the foregoing description, and it is intended to encompass all changes falling within the meaning and scope of the equivalent elements of the claims. Any reference signs in the claims should not be considered as limiting the claims involved.

[0069] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A cutting machine tool capable of quickly clamping pipe, comprising an adjusting module (100), the adjusting module (100) is provided with a plurality of positioning modules (200), the top of the adjusting module (100) is provided with a cutting module (300), the adjusting module (100) comprises a base (110), the top of the base (110) is provided with a clamping mechanism one (120) and a clamping mechanism two (130) which are identical in structure, characterized in that, The clamping mechanism one (120) is internally provided with two limiting seats (140), the limiting seat (140) is internally rotatably connected with a clamping rod (141), the clamping rod (141) is provided with two annular grooves (142), the clamping mechanism two (130) is internally provided with two clamping seats (150), the clamping seat (150) is provided with two grooves (151); The positioning module (200) comprises two connecting frames (210), the connecting frame (210) is internally fixedly connected with two shielding frames (211), the shielding frame (211) is internally rotatably provided with two transmission shafts (212), the transmission shaft (212) is fixedly sleeved with two transmission wheels (213), adjacent two transmission wheels (213) are transmissionally connected with a transmission belt (214), and the two transmission belts (214) are provided with a plurality of supporting rods (220); The clamping mechanism one (120) comprises: A positioning frame (121) is fixedly connected on the base (110); Two fixed frames (122) are fixedly arranged in the positioning frame (121); Two clamping frames (123) are slidably connected in the two fixed frames (122), the limiting seat (140) is fixedly connected with the adjacent clamping frame (123), and the clamping seat (150) is fixedly connected with the clamping frame (123) of the adjacent clamping mechanism two (130); Four electric telescopic rods one (124) are fixedly arranged in the two fixed frames (122), and the output end of the electric telescopic rod one (124) is slidably connected with the adjacent clamping frame (123) in the inside; The base (110) is slidably connected with a sliding frame (112), the sliding frame (112) is fixedly connected with a positioning seat (160) at the top, the positioning seat (160) is rotatably connected with an abutting seat (161), the base (110) is fixedly connected with a power motor two (116) in the inside, the output end of the power motor two (116) is transmissionally connected with a connecting lead screw two (118) rotatably connected with the base (110), and the connecting lead screw two (118) is screw-connected with a sliding block two (117) fixedly connected with the sliding frame (112); The positioning module (200) further comprises a lifting mechanism (250) and a support frame (260), the support frame (260) is fixedly connected with two side plates (261), the two side plates (261) are rotatably connected with two transmission rollers (262), and the two transmission rollers (262) are transmissionally connected with a conveying belt (263).

2. The machine tool for cutting and processing of quickly clamped pipes according to claim 1, characterized in that, The cutting module (300) comprises: A cutting frame (310) is fixedly connected on the top surface of the base (110), and the cutting frame (310) is fixedly connected with a hydraulic rod (311) at the top; An installation frame (320) is slidably arranged on the cutting frame (310), and the output end of the hydraulic rod (311) is transmissionally connected with the top of the installation frame (320); A power box (330) is fixedly arranged on the bottom surface of the installation frame (320), and the power box (330) is internally provided with a connecting motor; A cutting piece (340) is arranged on one side of the power box (330), and the cutting piece (340) is fixedly connected with a rotating shaft rotatably connected with the power box (330), and the output end of the connecting motor is transmissionally connected with the end of the rotating shaft.

3. The machine tool according to claim 1, wherein The connecting frame (210) is fixedly connected with a driving box (240), the driving box (240) is fixedly connected with a driving motor (241) inside, and the driving motor (241) is in transmission connection with the end of the adjacent transmission shaft (212).

4. The machine tool according to claim 1, wherein The support rod (220) is rotationally connected with a limiting frame (230), the limiting frame (230) is provided with a positioning block (232) at both ends, and the positioning block (232) is provided with a fixed block (231) fixedly connected with the adjacent transmission belt (214).

5. The machine tool according to claim 1, wherein The two shielding frames (211) are fixedly connected with a fixed frame (215).

6. The machine tool according to claim 1, wherein The base (110) is slidingly connected with an adjusting frame (111), the adjusting frame (111) is fixedly connected with the positioning frame (121) of the clamping mechanism two (130) at the top, the base (110) is provided with a power motor one (113) inside, the power motor one (113) is in transmission connection with a connecting lead screw one (115) rotationally connected with the inside of the base (110) at the output end, the connecting lead screw one (115) is in screw connection with a sliding block one (114) slidingly connected with the inside of the base (110), and the adjusting frame (111) is fixedly connected with the sliding block one (114) inside.

7. A machine tool according to any one of claims 1 to 5, wherein the machine tool is a pipe cutting machine tool. The top of one connecting frame (210) is fixedly connected with a guide plate (270).

8. The machine tool according to claim 7, wherein One side plate (261) is fixedly connected with a protection box (264), the protection box (264) is provided with a conveying motor inside, and the conveying motor is in transmission connection with the end of one transmission roller (262) at the output end.

Citation Information

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