Titanium alloy seamless pipe processing equipment and processing technology
By designing titanium alloy seamless pipe processing equipment, using the coordinated cutting of adsorption shell and blade, the problem of powder wear in seamless pipe processing is solved, and efficient cutting and wear reduction is achieved.
Patent Information
- Application Number
- CN202310755564.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-25
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2043-06-25
AI Technical Summary
During the processing of seamless pipe, the thickness of the tool causes the powder to wear the inner side of the pipe, causing wear problems.
A titanium alloy seamless pipe processing equipment is designed. Through the coordination of the adjustment mechanism and the cutting mechanism, the adsorption shell and the blade are used to cut, and wear is reduced, and the processing materials of different sizes are adapted to the adjustment of the clamping mechanism and the telescopic mechanism.
It effectively reduces the wear of powder on the inner side of the pipe during seamless pipe processing, improves the accuracy of cutting and equipment adaptability, and reduces powder residue.
Smart Images

Figure CN116852159B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of seamless pipe processing, in particular to titanium alloy seamless pipe processing equipment and a processing technology thereof. Background Art
[0002] The types of seamless pipes include round, square, etc. After the seamless pipe is formed, there is no seam around the pipe. The seamless pipe processing equipment uses complete titanium alloy steel to perforate and remove the axial part to obtain the outer pipe sleeve. The seamless pipe has the characteristics of high pressure resistance and good toughness.
[0003] During the processing of seamless pipes, it is necessary to go through the perforation step. The tool is located at one end of the titanium steel during the perforation process. The side wall of the tool also has thickness. During the cutting process, the tool will gradually be located between the inner side of the titanium tube and the side wall of the titanium tube axis. In order to allow the tool to be inserted into it, a certain thickness must be ground off. Then the ground powder on the side wall of the tool will directly rub against the inner wall of the titanium tube along the tool, causing wear. Summary of the Invention
[0004] The purpose of the present invention is to solve the problem that when the axial part of a seamless pipe is removed, powder may cause wear on the inner side of the pipe due to the thickness of the tool. The present invention provides a titanium alloy seamless pipe processing equipment and a processing technology thereof.
[0005] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:
[0006] A titanium alloy seamless pipe processing equipment includes a lifting platform, a supporting base is provided at the left end of the lifting platform, an adjustment mechanism is provided at the right end of the lifting platform, the adjustment mechanism includes a strip plate, a parcel rack and a slide rod, the outer side of the slide rod passes through and is movably connected to the inner side of the strip plate, the inner lower end of the parcel rack is fixedly connected to the inner side of the strip plate, the top of the parcel rack is movably connected to a telescopic mechanism, a telescopic ring is sleeved on the outer side of the right end of the telescopic mechanism, and a clamping mechanism is passed through and connected around the side wall of the telescopic mechanism. The clamping mechanism includes a retaining clip, the inner side of the retaining clip is inserted into the inner side of the telescopic mechanism, the inner top end of the support base is provided with a support frame, the inner top end of the support frame is provided with a cutting mechanism, the cutting mechanism includes a control disk, a turntable, an outer shell, an adsorption shell and a blade, the inner ring of the turntable is sleeved on the right end of the control disk, the left end of the outer shell is fixedly connected to the right side of the turntable, the outer side of the adsorption shell passes through and is movably connected to the inner side of the outer shell, and the side walls of the blade are provided on the inner and outer sides of the adsorption shell.
[0007] Furthermore, the adjustment mechanism also includes a support platform and a telescopic frame. The top end of the support platform and the bottom end of the parcel rack are movably installed, and the left side of the support platform and the inner side of the right end of the lifting platform are fixedly installed together. When the side wall of the parcel rack slides toward the outer end, the two ends of the strip plate will be stretched, and the outer side of the sliding rod will penetrate to the inner center of the strip plate.
[0008] Furthermore, the left end of the telescopic frame is movably connected to the right side wall of the parcel frame, and the top end of the parcel frame moves within a range of movement as the entire telescopic mechanism extends and retracts inwards and outwards.
[0009] Furthermore, the inner right end of the telescopic ring is sleeved with an outer shell, and the telescopic mechanism includes an attachment frame and a tail ring. The outer ring of the tail ring is arranged on the inner ring part of the attachment frame, and the outer ring side wall of the attachment frame relies on the inner part of the clamping mechanism, and the outer side wall is attached to the inner ring side wall part of the tail ring. The inner side of the tail ring can be attached to the outer side of the seamless pipe.
[0010] Furthermore, the clamping mechanism also includes a slide, the inner side of the left end of the retaining clamp is overlapped with the outer side of the outer shell, the side wall of the retaining clamp is in an L-shaped shape that bends inward, and the inward convex end of the retaining clamp is attached to one side of the outer shell. The side wall of the slide can adjust the inner end of the retaining clamp, and the inner side of the retaining clamp can be attached to the left end of the seamless pipe.
[0011] Furthermore, the right end of the slide is movably mounted on the side wall of the telescopic ring, and the left end of the slide is inserted into the inner wall of the right end of the retaining clamp. The inner side of the retaining clamp can be fitted on the left end of the seamless tube, and the inner side of the slide can be fitted on the outer wall of the titanium steel material.
[0012] Furthermore, the cutting mechanism also includes a push rod, a ring and a support rod. The left end of the push rod passes through and is movably connected to the inner left end of the outer shell. The left end of the adsorption shell is arranged on the right side of the ring. The thickness of the outer shell can be used as the wall thickness of the seamless pipe. The diameter of the cutting mechanism can be adjusted according to the difference in diameter sizes of seamless pipes of different sizes.
[0013] Furthermore, the left side of the collar is fixedly connected to the right end of the push rod, and the left end of the support rod is fixedly installed on the right side of the collar.
[0014] Furthermore, a telescopic rod is provided between the top of the cutting mechanism and the top of the telescopic ring, a movable frame is provided on the top side of the lifting platform, and a folding belt is provided between the side wall gaps of the movable frame. After the movable frame drives the side wall of the folding belt to stretch, when the side wall of the folding belt is extended and retracted, the inner angle of the top side of the folding belt will switch between large and small.
[0015] A titanium alloy seamless pipe processing process comprises the following steps:
[0016] S1. The titanium steel to be processed is located on the inner wall of the telescopic mechanism, and the outer wall is attached to the inner side wall of the tail ring. The inner side of the tail ring can be attached to the outer side of the seamless pipe.
[0017] S2. The clamping mechanism is adjusted according to the size difference of the outer side of the titanium steel. The side wall of the slide can adjust the inner end of the retaining clamp. The inner side of the retaining clamp can be attached to the left end of the seamless pipe, and the inner side of the slide can be attached to the outer wall of the titanium steel material. The side wall of the attachment frame can be folded and extended to adjust the size of the inner ring, so as to adapt to processing materials of different sizes.
[0018] S3. The bottom end of the support frame is electrically controlled to push the cutting mechanism to the right. The support frame pushes the entire cutting mechanism until it overlaps with the inner circle of the telescopic mechanism, so that the inner end of the retaining clip can fit into the outer wall of the housing.
[0019] S4. As the entire cutting mechanism gradually slides toward the right, the left end of the retaining clip adheres to the outer side of the shell, driving the outer side of the shell to fold and retract toward the left. Then, the side wall of the shell folds to reveal the push rod, ferrule, support rod, and adsorption shell inside. The diameter of the cutting mechanism can be adjusted according to the diameter of seamless pipes of different sizes, so that seamless pipes of different sizes can be accurately cut.
[0020] S5. The position of the adsorption shell changes with the expansion and contraction of the ferrule. The adsorption shell and the blade are located at the right end of the entire cutting mechanism, wherein the blade is located at both inner and outer ends of the adsorption shell.
[0021] S6. When the blade drives the adsorption shell to rotate and cut, the blades are set on both sides to cut and separate the inner side of the pipe and the axis part and leave a small gap, which reduces the wear on the inner side of the pipe caused by cutting;
[0022] S7. The blade is located in the middle of the two adsorption shells. The dust cut by the blade can be collected by the adsorption shell, which can reduce the wear and tear on the pipeline.
[0023] S8. When the side wall of the parcel shelf slides outward, the two ends of the strip plate will be stretched. The outer side of the slide rod will penetrate to the inner center of the strip plate. The strip plate can be folded and slide inward and outward along the outer side wall of the slide rod, which can assist in adjusting the width of the movable frame at the bottom and catch the titanium steel powder falling from the top.
[0024] Compared with the prior art, the present invention provides a titanium alloy seamless pipe processing equipment and a processing technology thereof, which has the following beneficial effects:
[0025] 1. The titanium alloy seamless pipe processing equipment and its processing technology adjust the gap between the strip plates, and the parcel rack moves with the expansion and contraction of the entire telescopic mechanism. The parcel rack stretches the strip plates when sliding, and cooperates with each other to assist in adjusting the width of the movable rack at the bottom. It can catch the titanium steel powder falling from the top, thereby preventing particles accumulated during the seamless pipe processing from getting stuck in various parts of the equipment.
[0026] 2. The titanium alloy seamless pipe processing equipment and its processing technology adjust the clamping mechanism according to the size difference of the titanium steel outer side, and then the slide adjusts the retaining clamp, and the auxiliary package frame folds and stretches to adjust the size of the inner ring, so as to adapt to processing materials of different sizes and facilitate the processing of seamless pipes of different diameters.
[0027] 3. The titanium alloy seamless pipe processing equipment and its processing technology are as follows: as the entire cutting mechanism gradually slides toward the right end, the left end of the retaining clamp is attached to the outer side of the shell, which drives the outer side of the shell to fold and gather toward the left end. According to the difference in diameter of seamless pipes of different sizes, the diameter of the cutting mechanism can be adjusted, and seamless pipes of different sizes can be accurately cut.
[0028] 4. The titanium alloy seamless pipe processing equipment and its processing technology reduce the wear on the inner side of the pipe caused by cutting through the coordinated cutting and adsorption of the adsorption shell and the blade. The dust cut out by the adsorption shell can be collected by the blade, reducing the powder residue in the pipe, thereby reducing the wear problem of the pipe caused by the powder. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic diagram of the overall structural connection of the present invention;
[0030] Figure 2 It is a schematic diagram on the left side of the structural connection between the strip plate and the slide rod of the present invention;
[0031] Figure 3 This is a schematic diagram showing the structural details between the clamping mechanism, the telescopic mechanism and the outer shell of the present invention;
[0032] Figure 4 It is a left side cross-sectional view of the structural connection between the telescopic mechanism and the clamping mechanism of the present invention;
[0033] Figure 5 This is a schematic diagram of the internal structural connections of the cutting mechanism of the present invention;
[0034] Figure 6 The right side schematic diagram of the structure between the blade and the adsorption shell of the present invention is shown;
[0035] Figure 7 It is a left side cross-sectional view showing the structure between the movable clamp and the folding belt of the present invention.
[0036] Figure markings: 1. lifting platform; 2. supporting base; 3. adjusting mechanism; 301. supporting platform; 302. strip plate; 303. telescopic frame; 304. parcel rack; 305. slide rod; 4. telescopic ring; 5. outer shell; 6. telescopic mechanism; 601. parcel attachment frame; 602. tail ring; 7. clamping mechanism; 701. slide; 702. retaining clip; 8. support frame; 9. cutting mechanism; 901. control panel; 902. turntable; 903. outer shell; 904. adsorption shell; 905. push rod; 906. ring; 907. support rod; 908. blade; 10. telescopic rod; 11. movable frame; 12. folding belt. DETAILED DESCRIPTION
[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0038] like Figure 1-Figure 7 As shown, a titanium alloy seamless pipe processing equipment includes a lifting platform 1, a support base 2 is provided at the left end of the lifting platform 1, an adjustment mechanism 3 is provided at the right end of the lifting platform 1, the adjustment mechanism 3 includes a strip plate 302, a parcel rack 304 and a slide bar 305, the outer side of the slide bar 305 passes through and is movably connected to the inner side of the strip plate 302, the inner lower end of the parcel rack 304 is fixedly connected to the inner side of the strip plate 302, the top of the parcel rack 304 is movably connected to a telescopic mechanism 6, the outer side of the right end of the telescopic mechanism 6 is sleeved with a telescopic ring 4, the side wall of the telescopic mechanism 6 is passed through and connected with a clamping mechanism 7, and the clamping mechanism 7 It includes a retaining clip 702, the inner side of the retaining clip 702 is inserted into the inner side of the telescopic mechanism 6, the inner top end of the support base 2 is provided with a support frame 8, the inner top end of the support frame 8 is provided with a cutting mechanism 9, the cutting mechanism 9 includes a control disk 901, a turntable 902, an outer shell 903, an adsorption shell 904 and a blade 908, the inner ring of the turntable 902 is sleeved on the right end of the control disk 901, the left end of the outer shell 903 is fixedly connected to the right side of the turntable 902, the outer side of the adsorption shell 904 passes through and is movably connected to the inner side of the outer shell 903, and the side walls of the blade 908 are provided on the inner and outer sides of the adsorption shell 904.
[0039] like Figure 1-Figure 2As shown, in some embodiments, the adjustment mechanism 3 further includes a support platform 301 and a telescopic frame 303, the top end of the support platform 301 and the bottom end of the parcel shelf 304 are movably installed, the left side of the support platform 301 and the inner side of the right end of the lifting platform 1 are fixedly installed together, and the left end of the telescopic frame 303 is movably connected to the right side wall of the parcel shelf 304, wherein the gap between the side walls of the strip plate 302 is adjusted according to the movement of the parcel shelf 304, and the top end of the parcel shelf 304 moves within a range of movement as the entire telescopic mechanism 6 extends and contracts inwards and outwards. When the side walls of the parcel shelf 304 slide outwards, the two ends of the strip plate 302 are stretched. The outer side of the sliding rod 305 penetrates to the inner center of the strip plate 302. The folding movement of the strip plate 302 can slide inwards and outwards along the outer side wall of the sliding rod 305, which can assist in adjusting the width of the movable frame 11 at the bottom and can catch titanium steel powder falling from the top.
[0040] like Figure 1 and Figure 4 As shown, in some embodiments, the inner right end of the telescopic ring 4 is sleeved with an outer shell 5, the telescopic mechanism 6 includes a wrapping frame 601 and a tail ring 602, the outer ring of the tail ring 602 is arranged on the inner ring portion of the wrapping frame 601, and the outer ring side wall of the wrapping frame 601 relies on the inner side portion of the clamping mechanism 7, the seamless tube is formed by hollowing out titanium steel, and the titanium steel to be processed is located at the inner side wall portion of the telescopic mechanism 6, and its outer side wall is in contact with the inner ring side wall portion of the tail ring 602, and the inner side of the tail ring 602 can be in contact with the outer side of the seamless tube;
[0041] like Figure 1 、 Figure 3 and Figure 4 As shown, in some embodiments, the clamping mechanism 7 further includes a slide 701, the inner side of the left end of the retaining clip 702 is overlapped with the outer side of the shell 903, the side wall of the retaining clip 702 is in an L-shaped shape bent inward, and the convex end of the retaining clip 702 is fitted with one side of the shell 903, and the right end of the slide 701 is movably installed on the side wall of the telescopic ring 4, and the left end of the slide 701 is inserted into the inner side wall of the right end of the retaining clip 702. The clamping mechanism 7 is adjusted according to the size difference of the outer side of the titanium steel. The side wall of the slide 701 can adjust the inner end of the retaining clip 702, the inner side of the retaining clip 702 can be fitted on the left end of the seamless pipe, and the inner side of the slide 701 can be fitted on the outer wall of the titanium steel material. The side wall of the attachment frame 601 can be folded and retracted to adjust the size of the inner ring, so as to adapt to processing materials of different sizes.
[0042] like Figure 1 、 Figure 5 and Figure 6As shown, in some embodiments, the cutting mechanism 9 also includes a push rod 905, a collar 906 and a support rod 907. The left end of the push rod 905 passes through and is movably connected to the inner left end of the shell 903. The left end of the adsorption shell 904 is arranged on the right side of the collar 906. The left side of the collar 906 is fixedly connected to the right end of the push rod 905. The left end of the support rod 907 is fixedly installed on the right side of the collar 906. The bottom end of the support frame 8 is controlled by electricity to push the cutting mechanism 9 to the right end. The support frame 8 pushes the entire cutting mechanism 9 to coincide with the inner ring of the telescopic mechanism 6, so that the inner end of the retaining clip 702 can fit on the outer wall of the shell 903. As the cutting machine The entire structure 9 gradually slides toward the right end, and the left end of the retaining clip 702 is attached to the outer side of the shell 903, which will drive the outer side of the shell 903 to fold and retract toward the left end. Then, the side wall of the shell 903 will fold to expose the push rod 905, ring 906, support rod 907, and adsorption shell 904 inside. Since the side wall of the shell 903 has a certain thickness, and the inner side of the retaining clip 702 is attached to the outer side of the shell 903, the thickness of the shell 903 can be used as the wall thickness of the seamless tube. According to the difference in diameter of seamless tubes of different sizes, the diameter of the cutting mechanism 9 can be adjusted, and seamless tubes of different sizes can be accurately cut.
[0043] The position of the adsorption shell 904 changes with the extension and contraction of the ring 906. The adsorption shell 904 and the blade 908 are located at the right end of the entire cutting mechanism 9, wherein the blade 908 is located at the inner and outer ends of the adsorption shell 904. When the blade 908 drives the adsorption shell 904 to rotate and cut, the inner and outer sides of the blade 908 can cut and separate the inner side of the pipe and the axial part and reserve a small gap, thereby reducing the wear on the inner side of the pipe caused by cutting. The blade 908 is located in the middle of the two adsorption shells 904. The dust cut out by the adsorption shell 904 can be collected by the blade 908, thereby reducing the wear problem caused to the pipe.
[0044] like Figure 1 and Figure 7 As shown, in some embodiments, a telescopic rod 10 is provided between the top of the cutting mechanism 9 and the top of the telescopic ring 4, a movable frame 11 is provided on the top side of the lifting platform 1, and a folding belt 12 is provided between the side wall gaps of the movable frame 11. The movable frame 11 can be adjusted as the adjustment mechanism 3 is extended or retracted. After the movable frame 11 drives the side wall of the folding belt 12 to stretch, when the side wall of the folding belt 12 is extended or retracted, the inner angle of the top side of the folding belt 12 will switch in size, and the changes in the corresponding top telescopic mechanism 6 and the cutting mechanism 9 correspond to the adjustment width.
[0045] A titanium alloy seamless pipe processing process comprises the following steps:
[0046] S1. The titanium steel to be processed is located on the inner side wall of the telescopic mechanism 6, and the outer side wall is attached to the inner side wall of the tail ring 602. The inner side of the tail ring 602 can be attached to the outer side of the seamless pipe.
[0047] S2. The clamping mechanism 7 is adjusted according to the size difference of the outer side of the titanium steel. The side wall of the slide 701 can adjust the inner end of the retaining clip 702. The inner side of the retaining clip 702 can be attached to the left end of the seamless pipe, and the inner side of the slide 701 can be attached to the outer wall of the titanium steel material. The side wall of the attachment frame 601 can be folded and extended to adjust the size of the inner ring, so as to facilitate the adaptation to processing materials of different sizes.
[0048] S3. The bottom end of the support frame 8 is electrically controlled to push the cutting mechanism 9 to the right. The support frame 8 pushes the entire cutting mechanism 9 until it overlaps with the inner circle of the telescopic mechanism 6, so that the inner end of the retaining clip 702 can fit on the outer wall of the housing 903.
[0049] S4. As the entire cutting mechanism 9 gradually slides toward the right end, the left end of the retaining clip 702 is attached to the outer side of the shell 903, which drives the outer side of the shell 903 to fold and retract toward the left end. Then, the side wall of the shell 903 is folded to reveal the push rod 905, the ring 906, the support rod 907, and the adsorption shell 904 inside. According to the difference in diameter of seamless pipes of different sizes, the diameter of the cutting mechanism 9 can be adjusted, so that seamless pipes of different sizes can be accurately cut.
[0050] S5. The position of the adsorption shell 904 changes as the ring 906 expands and contracts. The adsorption shell 904 and the blade 908 are located at the right end of the entire cutting mechanism 9, wherein the blade 908 is located at both inner and outer ends of the adsorption shell 904.
[0051] S6. When the blade 908 drives the adsorption shell 904 to rotate and cut, the inner and outer sides of the blade 908 can cut and separate the inner side of the pipe and the axis part and leave a small gap, thereby reducing the wear on the inner side of the pipe caused by cutting;
[0052] S7. The blade 908 is located in the middle of the two adsorption shells 904. The dust cut by the blade 908 can be collected by the adsorption shell 904, thereby reducing the wear and tear on the pipeline.
[0053] S8. When the side wall of the parcel shelf 304 slides outward, the two ends of the strip plate 302 will be stretched, and the outer side of the slide bar 305 will penetrate to the inner center of the strip plate 302. The folding movement of the strip plate 302 can slide inward and outward along the outer side wall of the slide bar 305, which can assist in adjusting the width of the movable frame 11 at the bottom and can catch the titanium steel powder falling from the top.
[0054] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A titanium alloy seamless pipe processing device, comprising a lifting platform (1), characterized in that: The left end of the lifting platform (1) is provided with a support base (2), and the right end of the lifting platform (1) is provided with an adjustment mechanism (3), the adjustment mechanism (3) includes a strip plate (302), a parcel rack (304) and a slide bar (305), the outer side of the slide bar (305) passes through and is movably connected to the inner side of the strip plate (302), the inner lower end of the parcel rack (304) is fixedly connected to the inner side of the strip plate (302), the top of the parcel rack (304) is movably connected to a telescopic mechanism (6), the outer side of the right end of the telescopic mechanism (6) is sleeved with a telescopic ring (4), and the side wall of the telescopic mechanism (6) is passed through and connected with a clamping mechanism (7), the clamping mechanism (7) includes a retaining clip (702), the retaining clip (703) is fixedly connected to the inner side of the strip plate (302), and the top of the parcel rack (304) is movably connected to a telescopic mechanism (6). The inner side of the clamp (702) is plugged into the inner side of the telescopic mechanism (6); the inner top end of the support base (2) is provided with a support frame (8); the inner top end of the support frame (8) is provided with a cutting mechanism (9); the cutting mechanism (9) comprises a control disk (901), a turntable (902), an outer shell (903), an adsorption shell (904) and a blade (908); the inner ring of the turntable (902) is sleeved on the right end of the control disk (901); the left end of the outer shell (903) is fixedly connected to the right side of the turntable (902); the outer side of the adsorption shell (904) passes through and is movably connected to the inner side of the outer shell (903); and the side walls of the blade (908) are provided on both inner and outer sides of the adsorption shell (904); The inner right end of the telescopic ring (4) is sleeved with an outer shell (5), and the telescopic mechanism (6) comprises an attachment frame (601) and a tail ring (602), wherein the outer ring of the tail ring (602) is arranged on the inner ring portion of the attachment frame (601), and the outer ring side wall of the attachment frame (601) relies on the inner side portion of the clamping mechanism (7); The clamping mechanism (7) further comprises a slide (701), the inner side of the left end of the retaining clip (702) is overlapped with the outer side of the housing (903), the side wall of the retaining clip (702) is in an inwardly curved L-shaped shape, and the inwardly convex end of the retaining clip (702) is attached to one side of the housing (903); The right end of the slide (701) is movably mounted on the side wall of the telescopic ring (4), and the left end of the slide (701) is inserted into the inner side wall of the right end of the retaining clip (702); The cutting mechanism (9) further comprises a push rod (905), a collar (906) and a support rod (907), wherein the left end of the push rod (905) passes through and is movably connected to the inner left end of the outer shell (903), and the left end of the adsorption shell (904) is arranged on the right side of the collar (906).
2. The titanium alloy seamless pipe processing equipment according to claim 1, characterized in that: The adjustment mechanism (3) further comprises a support platform (301) and a telescopic frame (303), wherein the top end of the support platform (301) and the bottom end of the parcel frame (304) are movably mounted, and the left side of the support platform (301) and the inner side of the right end of the lifting platform (1) are fixedly mounted together.
3. The titanium alloy seamless pipe processing equipment according to claim 2, characterized in that: The left end of the telescopic frame (303) is movably connected to the right side wall of the parcel frame (304).
4. The titanium alloy seamless pipe processing equipment according to claim 1, characterized in that: The left side of the ferrule (906) is fixedly connected to the right end of the push rod (905), and the left end of the support rod (907) is fixedly installed on the right side of the ferrule (906).
5. The titanium alloy seamless pipe processing equipment according to claim 1, characterized in that: A telescopic rod (10) is provided between the top end of the cutting mechanism (9) and the top end of the telescopic ring (4), a movable frame (11) is provided on the top side of the lifting platform (1), and a folding belt (12) is provided between the side wall gaps of the movable frame (11).
6. A titanium alloy seamless pipe processing process, applied to a titanium alloy seamless pipe processing equipment according to any one of claims 1 to 5, characterized in that: The following steps are involved: S1. The titanium steel to be processed is located on the inner side wall of the telescopic mechanism (6), and the outer side wall is attached to the inner side wall of the tail ring (602). The inner side of the tail ring (602) can be attached to the outer side of the seamless pipe; S2. The clamping mechanism (7) is adjusted according to the size difference of the outer side of the titanium steel. The side wall of the slide (701) can adjust the inner side end of the retaining clamp (702). The inner side of the retaining clamp (702) can be attached to the left end of the seamless pipe. The inner side of the slide (701) can be attached to the outer side wall of the titanium steel material. The side wall of the attachment frame (601) can be folded and retracted to adjust the size of the inner ring, so as to facilitate the adaptation to processing materials of different sizes. S3. The bottom end of the support frame (8) is electrically controlled to push the cutting mechanism (9) toward the right end. The support frame (8) pushes the entire cutting mechanism (9) until it overlaps with the inner ring portion of the telescopic mechanism (6), so that the inner end of the retaining clip (702) can fit on the outer wall portion of the housing (903); S4. As the entire cutting mechanism (9) gradually slides toward the right end, the left end of the retaining clip (702) is attached to the outer side of the shell (903), which drives the outer side of the shell (903) to fold and close toward the left end. Then, the side wall of the shell (903) is folded to expose the push rod (905), the ring (906), the support rod (907), and the adsorption shell (904) on the inner side. According to the difference in the diameter of the seamless pipes of different sizes, the diameter of the cutting mechanism (9) can be adjusted, and seamless pipes of different sizes can be accurately cut. S5, the position of the adsorption shell (904) changes as the ring (906) expands and contracts, the adsorption shell (904) and the blade (908) are located at the right end of the entire cutting mechanism (9), wherein the blade (908) is located at both inner and outer ends of the adsorption shell (904); S6. When the blade (908) drives the adsorption shell (904) to rotate and cut, the inner and outer sides of the blade (908) can cut and separate the inner side of the pipe and the axis part and leave a small gap, thereby reducing the wear on the inner side of the pipe caused by cutting; S7. The blade (908) is located in the middle of the two adsorption shells (904). The dust cut by the blade (908) can be collected by the adsorption shell (904), thereby reducing the wear problem caused to the pipeline; S8. When the side wall of the parcel rack (304) slides outward, the two ends of the strip plate (302) are stretched, and the outer side of the slide bar (305) penetrates to the inner center of the strip plate (302). The folding movement of the strip plate (302) can slide inward and outward along the outer side wall of the slide bar (305), which can assist in adjusting the width of the movable rack (11) at the bottom and can catch the titanium steel powder falling from the top.
Citation Information
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