A fixture for welding long welds of titanium-steel composite plates
By designing the tooling for long welds for titanium steel composite plates, and using components such as correction rollers and spacer rings, the uneven welding area and stress concentration problems caused by bending or bending the welded edges of titanium steel composite plates are solved, and the flatness and strength of the welding area are improved, and the fatigue resistance and crack resistance of titanium steel composite plates are enhanced.
Patent Information
- Application Number
- CN202411901636.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2044-12-23
AI Technical Summary
During the welding process of titanium steel composite board, the welding edges of the titanium board are prone to bend or bend, resulting in uneven welding areas and local stress concentration, which reduces the strength and fatigue resistance of the welding area.
A titanium steel composite plate long weld welding tool is designed, including components such as base plate, guide rail, welding machine, compression frame, sealing cover, correction roller and spacer ring. The correction roller rolls during welding, flattening the bent and warped parts of the titanium plate, and the spacer rings keep the weld width consistent, ensuring the flatness and strength of the welding area.
By using this tooling, the welding area is kept flat, avoiding local stress concentration, improving the strength of the titanium plate after welding, enhancing the fatigue and crack resistance of the titanium steel composite plate, and avoiding cracks and failures in the welding area.
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Figure CN119609523B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of metal welding equipment, and in particular relates to a tool for welding a long weld of a titanium-steel composite plate. Background Art
[0002] Titanium steel composite plate is a composite material of titanium plate and steel plate. It has the corrosion resistance of titanium and the high strength of alloy steel, as well as excellent comprehensive properties such as good thermal conductivity. In the chemical industry, pressure vessel and other industries, titanium steel composite plate has become an indispensable structural material.
[0003] At present, titanium plates and steel plates are welded over a large area and composited by explosion welding. Since the overall area of the titanium plate is relatively small compared to the steel plate, several titanium plates need to be assembled and welded before composite. During assembly and welding, since the titanium plate is relatively thin and is more prone to deformation than the steel plate, the welding edge of the titanium plate may be partially bent or partially lifted. In this way, when the two titanium plates are assembled, there will be a height difference between the welding edges of the two titanium plates. If welding is performed directly, the welding area will be obviously uneven, which will cause local stress concentration in the welding area, resulting in insufficient strength of the welding area of the titanium plate after welding, thereby reducing the overall fatigue strength and crack resistance of the titanium-steel composite plate. In addition, microcracks are easily formed in the stress concentration area, and these cracks may expand during subsequent processing or use, resulting in failure of the welded titanium plate. Summary of the invention
[0004] The purpose of the present invention is to provide a tool for welding long welds of titanium-steel composite plates, aiming to solve the technical problem that there is a height difference between the welds on the two titanium plates in the prior art, and the welding area will be obviously uneven after welding, resulting in local stress concentration in the welding area, thereby causing insufficient strength of the welding area of the composite plate, reducing the overall fatigue strength and crack resistance of the composite plate.
[0005] The purpose of the present invention can be achieved through the following technical solutions:
[0006] A tool for welding a long weld of a titanium-steel composite plate, comprising a base plate, a guide rail mounted on the base plate, a welding machine movably mounted on the guide rail, and two clamping frames mounted on the base plate, wherein two titanium plates are held under the two clamping frames, and a long weld between the two titanium plates is located between the two clamping frames; the tool also comprises:
[0007] A sealing cover, wherein a connecting rod is arranged on the sealing cover, the other end of the connecting rod is fixed on a movable platform of the welding machine, and the welding head of the welding machine is located in the sealing cover;
[0008] Correction roller, on one side of the sealing cover, a second telescopic member is installed. The output end of the second telescopic member is provided with a U-shaped plate II. A correction roller is rotatably installed inside the U-shaped plate II. The correction roller is in close contact with the top surfaces of the two titanium plates. The correction roller is located at the front end in the moving direction of the sealing cover.
[0009] As a preference of the above technical solution, a number of first telescopic members are provided on the pressing frame. The output ends of the first telescopic members extend into the pressing frame and are installed with a U-shaped plate I. A pressing roller is rotatably installed inside the U-shaped plate I. The pressing roller is tightly pressed on the top surface of the titanium plate. One end of the pressing roller is installed with a driving member.
[0010] As a preference of the above technical solution, guide plates are provided on both sides of the sealing cover. Guide grooves are formed on the pressing frame. The guide plates are sleeved inside the guide grooves.
[0011] As a preference of the above technical solution, a spacer ring is arranged around the correction roller. The width of the spacer ring is equal to the width of the weld between the two titanium plates. An auxiliary ring is arranged around the spacer ring. The width of the auxiliary ring is smaller than the width of the weld. A guide groove is formed from the top downwards on the bottom plate. A part of the auxiliary ring is located inside the guide groove. The bottom of the guide groove is in an inclined state, and the inclined direction faces the moving direction of the sealing cover.
[0012] As a preference of the above technical solution, a number of activity grooves are respectively formed on both sides of the auxiliary ring. A number of cleaning components, degreasing components and wiping components are respectively installed in the a number of activity grooves. The cleaning components, degreasing components and wiping components form a set of components. A number of sets of components are arranged in a circular array. The cleaning components, degreasing components and wiping components in each set of components are connected together. When the correction roller rolls, the cleaning component first contacts the surface of the weld, then the degreasing component contacts the surface of the weld, and finally the wiping component contacts the surface of the weld.
[0013] As a preference of the above technical solution, the cleaning component includes a movable plate I, which is movably installed in the activity groove. A wire brush is arranged on the surface of the movable plate I; the degreasing component includes a movable plate II, which is movably installed in the activity groove. A degreasing block is arranged on the surface of the movable plate II. A layer of cotton cloth soaked with ethanol is arranged on the surface of the degreasing block; the wiping component includes a movable plate III, which is movably installed in the activity groove. A wiping block is arranged on the surface of the movable plate III. A layer of dry cloth is arranged on the surface of the wiping block; a number of elastic members are respectively connected between the movable plate I, the movable plate II and the movable plate III and the activity groove.
[0014] As a preference of the above technical solution, a gas transmission pipe is installed through one side of the sealing cover. The gas transmission pipe is connected with an external gas supply unit. The external gas supply unit supplies inert gas to the gas transmission pipe. A gas guide pipe is installed on one side close to the correction roller inside the cavity of the sealing cover.
[0015] As a preferred embodiment of the above technical solution, the airway tube includes:
[0016] An inclined plate 1, wherein both ends of the inclined plate 1 are fixed on the inner wall of the sealing cover;
[0017] Inclined plate 2, the inclined plate 2 is symmetrically arranged on one side of the inclined plate 1;
[0018] A main conduit is provided between the two inclined plates 2, the main conduit extends into the guide groove, and the thickness of the main conduit is smaller than the thickness of the guide groove;
[0019] An air blowing pipe, one side of the main pipe is connected with an air blowing pipe, and the air blowing pipe faces the bottom of the auxiliary ring;
[0020] A cooling pipe is connected to the other side of the main pipe. The cooling pipe is L-shaped, with its end facing the inside of the sealing cover, and the downward projection of the welding machine faces the air outlet of the cooling pipe.
[0021] As a preferred embodiment of the above technical solution, a monitoring device is installed in the sealing cover.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0023] 1. In the present invention, during welding, the sealing cover causes the correction roller to roll, and the rolling of the correction roller will flatten the bent part and the raised part on the titanium plate, and the correction roller rolls at the moving front end of the welding machine, so that when the welding machine is welding, the welding edges of the two titanium plates remain flush, so that there will be no obvious unevenness in the welding area, and the local stress concentration in the welding area is effectively avoided, thereby ensuring that the strength of the titanium plate after welding is sufficient, effectively avoiding the reduction of the overall fatigue strength and crack resistance of the titanium-steel composite plate after the welded titanium plate is composited with the steel plate, avoiding the presence of cracks in the welding area of the welded titanium plate, and thus avoiding the failure of the welded titanium plate;
[0024] 2. In the present invention, during welding, the correction roller drives the spacer ring to roll, and at the same time, the pressure roller is rotated by the driving member. The rotation directions of the pressure rollers on both sides are opposite, so that the titanium plates on both sides move toward each other. When the two titanium plates move toward each other, they are blocked by the spacer ring, so that the width of the weld between the two titanium plates is always consistent, thereby ensuring the strength of the welding area of the welded titanium plate, effectively avoiding the occurrence of stress concentration areas in the welding area, effectively avoiding the reduction of the strength and toughness of the welding area, and effectively avoiding deformation of the welding area, avoiding the problems of dimensional deviation or poor matching of the welded titanium plate during use;
[0025] 3. In the present invention, the groove surface is cleaned by the wire brush, degreasing block and wiping block on the auxiliary ring, which can effectively clean up the harmful gases such as hydrogen, oxygen and nitrogen at the weld groove, thereby improving the welding quality and strength of the welding area;
[0026] 4. In the present invention, the introduced argon gas not only serves as a protective gas and a cooling medium, but also, after the argon gas enters the sealing cover, the excess argon gas will enter the main duct through the guide of the inclined plate 1 and the two inclined plates 2, and a part of the argon gas will be blown out from the blowing pipe, and the blown argon gas can blow the impurities cleaned by the wire brush off the wire brush, thereby preventing the impurities from adhering to the wire brush and the impurities from adhering to the weld groove again, thereby avoiding affecting the welding quality. At the same time, the argon gas flows along the guide groove, so that the cleaned impurities are discharged along the guide groove; another part of the argon gas is blown out from the cooling pipe, and the blown argon gas contacts the bottom of the welding area, thereby further reducing the possibility of deformation of the titanium plate and the weld area. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0028] Figure 2 It is a partial structural schematic diagram of the present invention;
[0029] Figure 3 It is a schematic diagram of the sealing cover and the correction roller structure;
[0030] Figure 4 for Figure 3 The enlarged structural diagram at A in the middle;
[0031] Figure 5 It is a schematic diagram of the internal structure of the sealing cover;
[0032] Figure 6 It is a schematic diagram of the correction roller structure;
[0033] Figure 7 It is a schematic diagram of the structure of the spacer ring and the auxiliary ring;
[0034] Figure 8 Schematic diagram of the internal structure of the auxiliary ring;
[0035] Fig. 9 Schematic diagram of the airway structure.
[0036] In the figure:
[0037] 1. Bottom plate; 2. Guide rail; 3. Welding machine; 4. Pressing frame; 41. Telescopic part 1; 42. Profile plate 1; 43. Pressing roller; 44. Driving part; 45. Guide groove; 5. Sealing cover; 51. Connecting rod; 52. Guide plate; 53. Telescopic part 2; 54. Profile plate 2; 55. Heat sink; 6. Correction roller; 61. Spacer ring; 62. Auxiliary ring; 621. Movable groove; 7. Cleaning assembly; 71. Movable Plate one; 711, wire brush; 8, degreasing assembly; 81, movable plate two; 811, degreasing block; 9, wiping assembly; 91, movable plate three; 911, wiping block; 10, elastic part; 11, titanium plate; 12, air supply pipe; 13, air guide pipe; 131, inclined plate one; 132, inclined plate two; 133, main guide pipe; 134, air blowing pipe; 135, cooling pipe; 14, guide groove; 15, monitoring equipment. DETAILED DESCRIPTION
[0038] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0039] The specific implementation of the present invention is described in detail below in conjunction with specific embodiments.
[0040] like Figure 1-Figure 6 As shown, a tool for welding a long weld of a titanium-steel composite plate comprises a base plate 1, a guide rail 2 mounted on the base plate 1, a welding machine 3 movably mounted on the guide rail 2, and two clamping frames 4 mounted on the base plate 1, two titanium plates 11 are held under the two clamping frames 4, and the long weld between the two titanium plates 11 is located between the two clamping frames 4; the tool also comprises:
[0041] A sealing cover 5, on which a connecting rod 51 is disposed, the other end of which is fixed on a movable platform of the welding machine 3, and a welding head of the welding machine 3 is located in the sealing cover 5;
[0042] The correction roller 6 and the sealing cover 5 are installed with a telescopic part 53 on one side, and a shaped plate 54 is provided at the output end of the telescopic part 53. The correction roller 6 is rotatably installed in the shaped plate 54. The correction roller 6 is tightly against the top surfaces of the two titanium plates 11, and the correction roller 6 is located at the front end of the moving direction of the sealing cover 5.
[0043] Furthermore, a plurality of telescopic parts 41 are provided on the pressing frame 4, the output end of the telescopic part 41 extends into the pressing frame 4 and is installed with a shaped plate 42, a pressure roller 43 is rotatably installed in the shaped plate 42, the pressure roller 43 is tightly pressed against the top surface of the titanium plate 11, and a driving part 44 is installed at one end of the pressure roller 43.
[0044] Further, guide plates 52 are provided on both sides of the sealing cover 5, and guide grooves 45 are formed on the pressing frame 4. The guide plates 52 are sleeved in the guide grooves 45.
[0045] In one case of this embodiment, both the first telescopic member 41 and the second telescopic member 53 can be cylinders, or other components capable of telescopic driving; the driving member 44 can be a motor, or a component capable of driving the pressing roller 43 to rotate.
[0046] In actual application of this embodiment, a moving welding machine 3 is used to continuously weld the long weld between two titanium plates 11. Before welding, the second telescopic member 53 extends to make the straightening roller 6 abut against the two titanium plates 11. During welding, the moving welding machine 3 drives the sealing cover 5 to move through the connecting rod 51, so that the straightening roller 6 rolls. When the straightening roller 6 rolls, the bent and warped parts on the titanium plates 11 will be flattened. Moreover, the straightening roller 6 rolls at the front end of the movement of the welding machine 3, so that when the welding machine 3 is welding, the welding edges of the two titanium plates 11 are kept flush, so that there is no obvious unevenness in the welding area, effectively avoiding the occurrence of local stress concentration in the welding area, thus ensuring that the strength of the titanium plate after welding is sufficient, effectively avoiding reducing the overall fatigue resistance and crack resistance of the titanium-steel composite plate after the welded titanium plate is compounded with the steel plate, and avoiding cracks in the welding area of the welded titanium plate, thus avoiding the failure of the welded titanium plate;
[0047] When the sealing cover 5 moves, the sealing cover 5 is guided by the guide plates 52 to move on a horizontal plane, avoiding the up-and-down shaking of the sealing cover 5, so as to ensure that the straightening roller 6 is always rolling the two titanium plates 11, and further ensuring that the welding edges of the two titanium plates 11 are kept flush, avoiding problems after welding;
[0048] A heat dissipation member 55 is installed on the sealing cover 5. The heat dissipation member 55 can be a heat sink or a cooling water system. Through the heat dissipation member 55, the high temperature generated during the welding process can be effectively reduced, preventing the adverse effects of overheating during welding on the welding quality and welding equipment;
[0049] During welding, several first telescopic members 41 extend to lower the pressing roller 43, thereby pressing the two titanium plates 11, which can effectively prevent the titanium plates 11 from shifting when being rolled by the straightening roller 6, avoiding the dislocation of the two titanium plates 11, thus avoiding the deviation of the dimensions caused by the dislocation of the two sides of the welded titanium plate 11, and avoiding the waste of materials caused by cutting the welded titanium plate 11.
[0050] Such as Figure 4-Figure 8As shown, a spacer ring 61 is arranged on the periphery of the correction roller 6, and the width of the spacer ring 61 is equal to the width of the weld between the two titanium plates 11. An auxiliary ring 62 is arranged on the periphery of the spacer ring 61, and the width of the auxiliary ring 62 is smaller than the width of the weld. A guide groove 14 is opened from the top to the bottom of the bottom plate 1, and part of the auxiliary ring 62 is located in the guide groove 14. The bottom of the guide groove 14 is in an inclined state, and the inclination direction is toward the moving direction of the sealing cover 5.
[0051] It should be noted that during welding, there may be deviations in the weld width between the two titanium plates 11, which can easily lead to uneven stress distribution inside the weld and easily form stress concentration areas in the welding area. These stress concentration points may become the starting points for crack initiation and expansion, thereby reducing the strength and toughness of the welding area; at the same time, it may also cause welding deformation, which may cause the welded titanium plates 11 to have dimensional deviations or poor fit during use; based on this problem, a spacer ring 61 is set to adjust the width of the weld.
[0052] In actual application of this embodiment, the spacer ring 61 is located between the two titanium plates 11, and the width of the spacer ring 61 is equal to the width of the weld between the two titanium plates 11. During welding, the correction roller 6 drives the spacer ring 61 to roll, and at the same time, the pressure roller 43 is rotated by the driving member 44. The rotation directions of the pressure rollers 43 on both sides are opposite, so that the titanium plates 11 on both sides move toward each other. When the two titanium plates 11 move toward each other, they are blocked by the spacer ring 61, so that the width of the weld between the two titanium plates 11 is always consistent, thereby ensuring the strength of the welding area of the welded titanium plates 11, effectively avoiding the occurrence of stress concentration areas in the welding area, effectively avoiding reducing the strength and toughness of the welding area, and at the same time effectively avoiding deformation of the welding area, and avoiding problems such as dimensional deviation or poor fitting of the welded titanium plates 11 during use.
[0053] Furthermore, a plurality of movable grooves 621 are provided on both sides of the auxiliary ring 62, and a plurality of cleaning components 7, degreasing components 8 and wiping components 9 are respectively installed in the plurality of movable grooves 621. The cleaning components 7, degreasing components 8 and wiping components 9 form a group of components, and the plurality of groups of components are in a ring array. The cleaning components 7, degreasing components 8 and wiping components 9 in each group of components are connected together. When the correction roller 6 rolls, the cleaning component 7 first contacts the weld surface, then the degreasing component 8 contacts the weld surface, and finally the wiping component 9 contacts the weld surface.
[0054] Furthermore, the cleaning component 7 includes a movable plate 1 71, which is movably installed in the movable groove 621, and a wire brush 711 is arranged on the surface of the movable plate 1 71; the degreasing component 8 includes a movable plate 2 81, which is movably installed in the movable groove 621, and a degreasing block 811 is arranged on the surface of the movable plate 2 81, and a layer of cotton cloth soaked in ethanol is arranged on the surface of the degreasing block 811; the wiping component 9 includes a movable plate 3 91, which is movably installed in the movable groove 621, and a wiping block 911 is arranged on the surface of the movable plate 3 91, and a layer of dry cloth is arranged on the surface of the wiping block 911; a plurality of elastic members 10 are connected between the movable plate 1 71, the movable plate 2 81 and the movable plate 3 91 and the movable groove 621.
[0055] It should be noted that during welding, the groove on the weld of the titanium plate 11 is easily invaded by hydrogen, oxygen, nitrogen, etc. These gases will react with titanium at high temperature to form brittle compounds, reducing the mechanical properties of the weld. Based on this problem, a corresponding structure is set on the auxiliary ring 62 for cleaning.
[0056] In one case of this embodiment, the elastic member 10 may be a spring or other elastically expandable member. The elastic member 10 enables the movable plate 1 71 , the movable plate 2 81 and the movable plate 3 91 to always have a tendency to move out of the movable groove 621 .
[0057] In actual application of this embodiment, the correction roller 6 drives the auxiliary ring 62 to roll when rolling. When the auxiliary ring 62 rolls, the wire brush 711 first contacts the groove on the weld to clean the surface of the weld groove and remove impurities such as oil, scale, etc. on the surface of the weld groove. The cleaned impurities enter the guide groove 14 and fall to the bottom of the guide groove 14. After being cleaned by the wire brush 711, the degreasing block 811 contacts the groove surface. The degreasing block 811 is wrapped with a layer of cotton cloth soaked in ethanol, wherein the ethanol is sulfur-free ethanol. The degreasing block 811 degreases the groove surface, and then the wiping block 911 contacts the groove surface to wipe the groove surface clean, so that the groove surface reveals a metallic luster. The groove surface is cleaned by the wire brush 711, the degreasing block 811 and the wiping block 911, so that harmful gases such as hydrogen, oxygen, and nitrogen at the weld groove can be effectively cleaned, thereby improving the welding quality and strength of the welding area.
[0058] like Figure 5 and Fig. 9 As shown, an air pipe 12 is installed through one side of the sealing cover 5, and the air pipe 12 is connected to an external air supply unit, and the external air supply unit supplies inert gas to the air pipe 12. An air guide pipe 13 is installed on one side of the inner cavity of the sealing cover 5 close to the correction roller 6.
[0059] Further, the airway 13 comprises:
[0060] An inclined plate 131, both ends of which are fixed on the inner wall of the sealing cover 5;
[0061] The second inclined plate 132 is symmetrically arranged on one side of the inclined plate 131;
[0062] A main conduit 133 is provided between the two inclined plates 132, and the main conduit 133 extends into the guide groove 14. The thickness of the main conduit 133 is less than the thickness of the guide groove 14;
[0063] An air blowing pipe 134, one side of the main pipe 133 is connected with the air blowing pipe 134, and the air blowing pipe 134 faces the bottom of the auxiliary ring 62;
[0064] The cooling pipe 135 is connected to the other side of the main conduit 133 . The cooling pipe 135 is L-shaped, with its end facing the inside of the sealing cover 5 , and the downward projection of the welding machine 3 faces the air outlet of the cooling pipe 135 .
[0065] In one case of this embodiment, the inert gas may be argon gas, and the purity of argon gas is higher than 99.99%.
[0066] In actual application of this embodiment, argon gas is input into the sealing cover 5 through the gas pipe 12. Argon gas is used as a protective gas to form an inert atmosphere to prevent the weld and the titanium plate 11 from reacting with oxygen, nitrogen, etc. in the air, thereby avoiding adverse effects such as oxidation and nitridation, thereby improving the welding quality; at the same time, the injection of argon gas can cool the titanium plate 11 and the weld, which helps to quickly cool the welding area and reduce the size of the heat-affected zone, thereby reducing the possibility of deformation of the titanium plate 11 and the weld area; in addition, argon gas can remove impurities, oxides and other harmful substances generated during welding from the weld, maintain the purity of the welding area, and improve the quality and strength of the weld;
[0067] The argon gas is in the sealing cover 5, which can be guided to be evenly distributed around the welding area, thereby improving the protection effect, and at the same time can reduce the turbulence of the argon gas in the sealing cover 5, making the gas pressure and flow more stable, which is conducive to improving the welding quality;
[0068] After the argon gas enters the sealing cover 5, the excess argon gas will enter the main duct 133 through the guidance of the inclined plate 131 and the two inclined plates 132. A part of the argon gas is blown out from the blowing pipe 134. The blown argon gas can blow the impurities cleaned by the wire brush 711 off the wire brush 711, thereby preventing the impurities from adhering to the wire brush 711 and preventing the impurities from adhering to the weld groove, thereby avoiding affecting the welding quality. At the same time, the argon gas flows along the guide groove 14, so that the cleaned impurities are discharged along the guide groove 14; another part of the argon gas is blown out from the cooling pipe 135, and the blown argon gas contacts the bottom of the welding area, thereby further reducing the possibility of deformation of the titanium plate 11 and the weld area.
[0069] like Figure 5 As shown, a monitoring device 15 is installed in the sealing cover 5.
[0070] In actual application of this embodiment, the monitoring device 15 can be a camera or other device for transmitting images. The monitoring device 15 is connected to an external display to monitor the welding situation through the external display, so that when welding errors occur, they can be discovered in time and the welding can be terminated, effectively avoiding welding errors.
[0071] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, and these changes and improvements all fall within the scope of the present invention to be protected.
Claims
1. A tool for welding a long weld seam of a titanium-steel composite plate, comprising a base plate (1), a guide rail (2) mounted on the base plate (1), a welding machine (3) movably mounted on the guide rail (2), and two pressing frames (4) mounted on the base plate (1), wherein two titanium plates (11) are pressed under the two pressing frames (4), and a long weld seam between the two titanium plates (11) is located between the two pressing frames (4); characterized in that: The tooling also includes: A sealing cover (5), wherein a connecting rod (51) is provided on the sealing cover (5), the other end of the connecting rod (51) is fixed on a movable platform of the welding machine (3), and a welding head portion of the welding machine (3) is located inside the sealing cover (5); A correction roller (6), a telescopic member 2 (53) is installed on one side of the sealing cover (5), a second U-shaped plate (54) is provided at the output end of the telescopic member 2 (53), a correction roller (6) is rotatably installed inside the U-shaped plate (54), the correction roller (6) is tightly abutted against the top surfaces of the two titanium plates (11), and the correction roller (6) is located at the front end of the sealing cover (5) in the moving direction; A spacer ring (61) is disposed on the periphery of the correction roller (6), the width of the spacer ring (61) being equal to the width of the weld between the two titanium plates (11), an auxiliary ring (62) is disposed on the periphery of the spacer ring (61), the width of the auxiliary ring (62) being smaller than the width of the weld, a guide groove (14) is formed on the bottom plate (1) from the top downward, a portion of the auxiliary ring (62) is located in the guide groove (14), and the bottom of the guide groove (14) is in an inclined state, and the inclination direction is toward the moving direction of the sealing cover (5); A plurality of movable grooves (621) are provided on both sides of the auxiliary ring (62), and a plurality of cleaning components (7), degreasing components (8) and wiping components (9) are respectively installed in the plurality of movable grooves (621). The cleaning components (7), degreasing components (8) and wiping components (9) form a group of components, and the plurality of groups of components are arranged in a ring array. The cleaning components (7), degreasing components (8) and wiping components (9) in each group of components are connected together. When the correction roller (6) rolls, the cleaning component (7) first contacts the surface of the weld, then the degreasing component (8) contacts the surface of the weld, and finally the wiping component (9) contacts the surface of the weld.
2. The tooling for long weld seam welding of titanium steel composite plate according to claim 1 is characterized in that: The pressing frame (4) is provided with a plurality of telescopic members (41), the output end of the telescopic member (41) extends into the pressing frame (4) and is installed with a shaped plate (42), a pressure roller (43) is rotatably installed in the shaped plate (42), the pressure roller (43) is tightly pressed against the top surface of the titanium plate (11), and a driving member (44) is installed at one end of the pressure roller (43).
3. The tooling for long weld seam welding of titanium steel composite plate according to claim 1 is characterized in that: Guide plates (52) are provided on both sides of the sealing cover (5), a guide groove (45) is provided on the pressing frame (4), and the guide plates (52) are sleeved in the guide groove (45).
4. The tooling for long weld seam welding of titanium steel composite plate according to claim 1 is characterized in that: The cleaning assembly (7) comprises a movable plate 1 (71), the movable plate 1 (71) being movably mounted in the movable groove (621), and a wire brush (711) being arranged on the surface of the movable plate 1 (71); the degreasing assembly (8) comprises a movable plate 2 (81), the movable plate 2 (81) being movably mounted in the movable groove (621), and a degreasing block (811) being arranged on the surface of the movable plate 2 (81), and a layer of cotton cloth soaked in ethanol being arranged on the surface of the degreasing block (811); the wiping assembly (9) comprises a movable plate 3 (91), the movable plate 3 (91) being movably mounted in the movable groove (621), and a wiping block (911) being arranged on the surface of the movable plate 3 (91), and a layer of dry cloth being arranged on the surface of the wiping block (911); and a plurality of elastic members (10) are connected between the movable plate 1 (71), the movable plate 2 (81) and the movable plate 3 (91) and the movable groove (621).
5. The tooling for long weld seam welding of titanium steel composite plate according to claim 1 is characterized in that: An air supply pipe (12) is installed through one side of the sealing cover (5), and the air supply pipe (12) is connected to an external air supply unit, and the external air supply unit supplies inert gas to the air supply pipe (12). An air guide pipe (13) is installed on one side of the inner cavity of the sealing cover (5) close to the correction roller (6).
6. The tooling for long weld seam welding of titanium steel composite plate according to claim 5 is characterized in that: The airway tube (13) comprises: Inclined plate 1 (131), wherein both ends of the inclined plate 1 (131) are fixed on the inner wall of the sealing cover (5); Inclined plate 2 (132), the inclined plate 2 (132) being symmetrically arranged on one side of the inclined plate 1 (131); A main conduit (133) is provided between the two inclined plates (132), the main conduit (133) extends into the guide groove (14), and the thickness of the main conduit (133) is smaller than the thickness of the guide groove (14); An air blowing pipe (134), wherein one side of the main conduit (133) is connected to the air blowing pipe (134), and the air blowing pipe (134) faces the bottom of the auxiliary ring (62); A cooling pipe (135), wherein the other side of the main conduit (133) is connected to a cooling pipe (135), the cooling pipe (135) is L-shaped, the end of which faces the inside of the sealing cover (5), and the downward projection of the welding machine (3) faces the air outlet of the cooling pipe (135).
7. The tooling for long weld seam welding of titanium steel composite plate according to claim 1 is characterized in that: A monitoring device (15) is installed in the sealing cover (5).
Citation Information
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