Lateral stable type rotary cutting machine for corrugated pipe machining
By introducing arc-shaped pallets, inner support pieces, rotating wheels and cooling vaporization systems into the bellows cutting equipment, the cutting stability and temperature of large-pipe bellows are solved, and a stable and efficient cutting effect is achieved.
Patent Information
- Application Number
- CN202510714115.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2045-05-30
AI Technical Summary
When cutting large-diameter corrugated pipes, existing bellows cutting equipment has poor cutting stability, which can easily lead to deformation of the bellows and increase temperature, affecting the cutting efficiency.
A lateral stable rotary cutting machine is designed. By setting arc pallets and inner support members at both ends of the operating frame, multi-point cutting is performed using the rotating wheel body and support members, and cooling is combined with the cooling part and the vaporized part to ensure cutting stability and efficiency.
The stable cutting of large-diameter corrugated pipes is achieved, which avoids deformation, improves cutting speed and efficiency, and reduces the cutting temperature through cooling and vaporization measures.
Smart Images

Figure CN120228767A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of polypeptide elution equipment, and specifically to a laterally stable rotary cutting machine for corrugated pipe processing. Background Technique
[0002] A corrugated pipe is a tubular elastic element formed by connecting foldable corrugated sheets along the telescopic direction. For example, the shower pipe used in the bathroom in daily life is a corrugated pipe, and the corrugated pipe plays a protective role in fields such as drainage and electricity. When producing corrugated pipes, their lengths are different. During actual use, according to production needs, the corrugated pipes are cut into corresponding lengths by cutting.
[0003] For the cutting of daily-use corrugated pipes with small diameters such as shower pipes, a cutting knife is usually used. One side of the cutting knife abuts against the pipe wall, and then it rotates along the corrugated pipe to cut, thus cutting the corrugated pipe. However, for corrugated pipes with larger diameters, such as those used in electrical engineering, a cutting machine is used for cutting. The existing cutting machine is composed of a cutting grinding wheel and a base. The corrugated pipe is placed at the position of the base, and the cutting grinding wheel is located above the corrugated pipe. After starting the cutting grinding wheel and applying pressure downward, the corrugated pipe is cut. However, using a single cutting grinding wheel only cuts the fracture of the corrugated pipe. Since there is no effective limiting and supporting of the corrugated pipes on both sides of the cutting end, the cutting stability is poor.
[0004] To solve the problems of the existing grinding wheel cutting machine, a Chinese patent with the application publication number CN117943605A proposes a cutting machine. This cutting machine clamps the corrugated pipe by using an upper electric control flipping arm and a lower electric control flipping arm, and then cuts the corrugated pipe through a cutting arm. However, when clamping at both ends of the cutting position, when the cutting arm cuts downward unidirectionally, the acting force is single. Thus, it is easy to cause the corrugated pipe to be deformed downward under pressure along the cutting position. When cutting, the temperature rises, the cutting is blocked, and the cutting position is prone to deformation. At the same time, since both ends of the corrugated pipe are not restricted, when the cutting position is under pressure, both ends are in free swing, affecting the cutting of the cutting position by the cutting arm. Therefore, we propose a laterally stable rotary cutting machine for corrugated pipe processing. Summary of the Invention
[0005] The purpose of the present invention is to provide one to solve the problems raised in the above background technique.
[0006] To achieve the above object, the present invention provides the following technical solution: A lateral stable rotary cutting machine for corrugated pipe processing, including an operation frame body. Arc-shaped supporting plates for supporting the outer wall of the corrugated pipe are respectively installed at both ends of the operation frame body. An inner supporting member for abutting against the inner wall of the corrugated pipe is provided at the concentric position of the arc-shaped supporting plate. The inner supporting member includes a plurality of inner lining wheels sliding on the corrugations of the inner wall of the corrugated pipe; a material leakage notch is provided on the bottom plate of the operation frame body, and a rotating wheel body is provided at the material leakage notch. A rotating component for driving the rotating wheel body is installed on the top of the operation frame body. Three groups of electric rods are equally angularly distributed on the inner ring of the rotating wheel body, and a cutting knife is installed at the end of the electric rod. Limiting brackets are installed on the inner walls on both sides of the operation frame body, and a supporting bracket is installed on the inner wall of the material leakage notch. The limiting bracket and the supporting bracket are sleeved outside the rotating wheel body; Two groups of supporting components are respectively provided on both sides of the rotating wheel body. The supporting component includes a telescopic rod installed on the operation frame body. A clamping plate is installed at the end of the telescopic rod, and a plurality of wheel strips sliding outside the corrugated pipe are provided on the clamping plate. Cooling components are provided on the inner walls on both sides of the operation frame body, and a vaporization component is provided at the inner ring of the rotating wheel body.
[0007] Preferably, a fixing rod connected to the operation frame body is connected to the arc-shaped supporting plate. Disassembly and assembly seats are respectively provided at both ends of the operation frame body. The inner supporting member further includes a roller installed on the disassembly and assembly seat. A telescopic adjustment rod is installed in the middle of the roller, and a connecting curved rod is provided at one end of the telescopic adjustment rod. An installation block is connected to the connecting curved rod, and a plurality of adjustment sleeves are equally angularly distributed on the installation block. An adjustment strip is installed in the adjustment sleeve. An adjustment groove is provided on the adjustment sleeve, and a tightening block is provided on the adjustment strip. An extension rod is connected to one end of the adjustment strip, and the inner lining wheel is installed on the extension rod.
[0008] Preferably, rotating shafts are respectively installed at both ends of the arc-shaped supporting plate, and a driving motor is installed on the rotating shaft. An outer driving wheel is installed at the other end of the rotating shaft, and the outer driving wheel and the inner lining wheel cooperate to roll on the corrugated pipe wall.
[0009] Preferably, the top of the disassembly and assembly seat is a disassembly steel belt, and a rotating block is installed at one end of the roller.
[0010] Preferably, the rotating component includes an installation bridge plate provided on the top of the operation frame body. The two ends of the installation bridge plate are respectively connected to the inner walls on both sides of the operation frame body. A driving motor is installed in the middle of the installation bridge plate, and a driving gear is installed at the output end of the driving motor. A toothed ring meshing with the driving gear is installed on the outer ring of the rotating wheel body. Limiting sleeves are installed at the ends of the limiting bracket and the supporting bracket, and the limiting sleeve is sleeved outside the rotating wheel body. The two limiting brackets and the supporting bracket are equally angularly distributed at three points outside the rotating wheel body.
[0011] Preferably, the vaporization component includes three groups of vaporization troughs arranged at equal angles on the inner ring of the rotating wheel body, and a vaporization cover is installed outside the vaporization trough. A plurality of vaporization openings are formed in the vaporization cover, and a breathable film is covered on the vaporization openings. A partition is provided inside the vaporization trough, and a plurality of groups of spaced slopes are respectively provided at both ends of the partition. A condensate is provided in the space formed between the spaced slopes, and a notch for the condensate to pass through is formed on the spaced slope. The notch is made of an elastic material, and a plurality of groups of condensation holes are formed on both side walls of the vaporization trough.
[0012] Preferably, the cooling component includes a cooling box installed on the operation frame body, and a cooling gas is filled in the cooling box. An air charging and discharging port is formed at the top of the cooling box, and four cooling pipes are connected to the cooling box. Two cooling pipes are distributed as a group on one side of the rotating wheel body. A cooling nozzle is provided on the cooling pipe, and the cooling nozzle is bent towards the rotating wheel body.
[0013] Preferably, both sides of the cutting knife are wedge-shaped surfaces, and through holes are provided on the cutting knife.
[0014] Preferably, a pressing concave surface is provided on the back of the clamping plate.
[0015] Preferably, a guiding surface is provided at the notch position of the material leakage trough, and two groups of conveyor belts are provided at the material leakage trough. Rollers rotatably connected to the operation frame body are provided at both ends of the conveyor belt, and a conveyor motor is installed on one of the rollers.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: By providing inner support members and arc-shaped support plates at both ends of the operation frame body, the present invention limits both ends of the corrugated pipe. The rotating wheel body is distributed at the cutting position of the corrugated pipe. The support components support both sides of the cutting position. Three cutting knives act on the corrugated pipe position, so as to simultaneously perform multi-point cutting on the corrugated pipe, avoiding the deformation situation that occurs during single-sided cutting. At the same time, under the action of the rotating component, a complete cutting circle is quickly formed at the three cutting points, improving the cutting speed and effectively avoiding the deformation of the corrugated pipe along the cutting position during the cutting process.
[0017] By providing cooling components on both sides of the cutting position, the present invention cools the cutting knife to avoid the influence of high temperature on the cutting efficiency. A vaporization component is provided at the rotating wheel body, so that during the rotating cutting, the temperature of the cutting position is reduced through the effect of vaporization heat absorption. At the same time, during the process of the cooling component spraying cooling gas for cooling, the vaporization component is condensed at the same time, facilitating the recycling of the vaporization component. Description of the Drawings
[0018] Figure 1 It is a schematic structural diagram of the present invention after loading the corrugated pipe; Figure 2 isFigure 1 Schematic top view structure diagram; Figure 3 Schematic structure diagram at the operation frame of the present invention; Figure 4 Schematic overall structure diagram of the present invention; Figure 5 Schematic structure diagram at the inner support member of the present invention; Figure 6 Schematic structure diagram of the rotating member and the supporting member of the present invention; Figure 7 Schematic structure diagram of the rotating member and the vaporizing member of the present invention; Figure 8 Schematic structure diagram after the vaporizing member of the present invention opens the vaporizing cover; Figure 9 Schematic structure diagram of the supporting member of the present invention; Figure 10 is Figure 7 Enlarged structure schematic diagram of area A in Figure 11 is Figure 8 Enlarged structure schematic diagram of area B in
[0019] In the figure: 1, operation frame; 2, arc-shaped support plate; 3, inner support member; 4, rotating wheel body; 5, rotating member; 6, supporting member; 7, cooling member; 8, vaporizing member; 11, material leakage notch; 12, limiting bracket; 13, supporting bracket; 14, disassembly and assembly seat; 15, conveyor belt; 16, conveyor motor; 17, roller shaft; 21, rotating shaft; 22, driving motor; 23, outer driving wheel; 24, fixed rod; 31, inner lining wheel; 32, roller; 33, telescopic adjustment rod; 34, connecting curved rod; 35, mounting block; 36, adjustment sleeve; 37, adjustment strip; 38, tensioning block; 39, extension rod; 41, electric rod; 42, cutting knife; 43, through hole; 51, mounting bridge plate; 52, driving motor; 53, driving gear; 54, gear ring; 55, limiting sleeve; 61, telescopic rod; 62, clamping plate; 63, wheel bar; 64, pressing concave surface; 71, cooling box; 72, air release port; 73, cooling pipe; 74, cooling nozzle; 81, vaporizing tank body; 82, vaporizing cover; 83, vaporizing port; 84, partition piece; 85, spacer slope; 86, condensate; 87, condensate hole; 321, rotating block. Detailed implementation manners
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0021] Example 1, please refer to Figure 1-11 Figure 1-11
[0022] The two sections of the conveyor belt 15 are used to drive the corrugated pipe to move. When the cutting position of the corrugated pipe is conveyed to the position of the material leakage slot 11 for cutting, the cut metal waste leaks down from the material leakage slot 11. A frame or a collection bag for receiving the metal waste can be placed at the bottom of the material leakage slot 11 for waste recycling. The setting distance of the material leakage slot 11 does not necessarily have to be in the middle of the bottom plate of the operation frame body 1. Other proportional dimensions can be selected. For example, the distance between the material leakage slot 11 and the left end of the operation frame body 1: the distance between the material leakage slot 11 and the right end of the operation frame body 1 = 1:2. The specific dimensions are set according to the position to be cut. In the attached drawing of this solution, the common 1:1 is selected, that is, the material leakage slot 11 is located in the middle of the bottom of the operation frame body 1.
[0023] Arc-shaped support plates 2 that hold the outer wall of the corrugated pipe are respectively installed at both ends of the operation frame body 1. The design of the arc-shaped support plate 2 is as shown in the attached Figure 5 Figure 5
[0024] For the support inside the corrugated pipe, it is supported by the inner support member 3. Disassembly and assembly seats 14 are respectively provided at both ends of the operation frame body 1. The inner support member 3 further includes a roller 32 installed on the disassembly and assembly seat 14. A telescopic adjustment rod 33 is installed in the middle of the roller 32. One end of the telescopic adjustment rod 33 is provided with a connecting curved rod 34. An installation block 35 is connected to the connecting curved rod 34. A plurality of adjustment sleeves 36 are equiangularly distributed on the installation block 35. An adjustment strip 37 is installed in the adjustment sleeve 36. An adjustment groove is provided on the adjustment sleeve 36. A tightening block 38 is provided on the adjustment strip 37. One end of the adjustment strip 37 is connected to an extension rod 39. The inner lining wheel 31 is installed on the extension rod 39. The top of the disassembly and assembly seat 14 is a disassembly steel belt. A rotating block 321 is installed at one end of the roller 32. When assembling the roller 32, first disassemble the disassembly steel belt from the disassembly seat 14, then clamp the installation parts at both ends of the roller 32 in the groove of the disassembly and assembly seat 14, and then lock the disassembly steel belt. Before the corrugated pipe enters, by rotating the rotating block 321, the telescopic adjustment rod 33 is rotated and adjusted from the horizontal position to 90°. When the corrugated pipe is inserted, first rotate the rotating block 321 to make the telescopic adjustment rod 33 return to the initial horizontal position. According to the length of the corrugated pipe, lengthen or shorten the size of the telescopic adjustment rod 33 to make the connecting curved rod 34 in a state where it is about to contact but not contact the pipe orifice of the corrugated pipe, that is, the connecting curved rod 34 is about 1 mm away from the pipe orifice of the corrugated pipe, so that the installation block 35 and the inner lining wheel 31 are inside the corrugated pipe. Before the installation block 35 enters, by loosening the tightening 38, the adjustment strip 37 is adjusted in the adjustment sleeve 36, and the lengths of the adjustment strip 37 and the adjustment sleeve 36 are close to the radius of the corrugated pipe. At this time, the two ends of the corrugated pipe are limited inside by the inner lining wheel 31, and the outside of the corrugated pipe is limited by the outer driving wheel 23, so as to limit the two ends of the corrugated pipe and avoid the shaking of the corrugated pipe.
[0025] After the position to be cut of the corrugated pipe reaches the material leakage slot 11, it is necessary to fix the two sides of the corrugated pipe to be cut at this time. Two groups of support components 6 are respectively provided on both sides of the rotating wheel body 4. The support component 6 includes a telescopic rod 61 installed on the operation frame body 1. A clamping plate 62 is installed at the end of the telescopic rod 61. A pressing concave surface 64 is provided on the back of the clamping plate 62. And a plurality of strip-shaped wheels 63 sliding on the outside of the corrugated pipe are provided on the clamping plate 62. By starting the telescopic rod 61 to push forward until the strip-shaped wheels 63 fit on the external texture of the corrugated pipe. The strip-shaped wheels 63 are made of silica gel or other soft materials, so that the corrugated pipe is limited and clamped without relative offset rotation. At the same time, the selection of soft materials avoids damage to the surface of the corrugated pipe.
[0026] When cutting the corrugated pipe, a rotating wheel body 4 is provided at the material leakage slot 11. Refer to the attached Figure 1 、 2, a rotating component 5 for driving the rotating wheel body 4 is installed at the top of the operation frame body 1. Three groups of electric rods 41 are equiangularly distributed on the inner ring of the rotating wheel body 4, and a cutting knife 42 is installed at the end of the electric rod 41. Both sides of the cutting knife 42 are wedge-shaped surfaces, and through holes 43 are provided on the cutting knife 42. Limiting brackets 12 are installed on the inner walls of both sides of the operation frame body 1, and a support bracket 13 is installed on the inner wall of the material leakage slot 11. The limiting brackets 12 and the support bracket 13 are sleeved outside the rotating wheel body 4.
[0027] The rotating component 5 is as shown in the appendix Figures 6-8 shown, and includes a mounting bridge plate 51 arranged at the top of the operation frame body 1. Both ends of the mounting bridge plate 51 are respectively connected to the inner walls of both sides of the operation frame body 1. A driving motor 52 is installed in the middle of the mounting bridge plate 51, and a driving gear 53 is installed at the output end of the driving motor 52. A gear ring 54 meshing with the driving gear 53 is installed on the outer ring of the rotating wheel body 4. Limiting sleeves 55 are installed at the ends of the limiting brackets 12 and the support bracket 13, and the limiting sleeves 55 are sleeved outside the rotating wheel body 4. The two limiting brackets 12 and the support bracket 13 are equiangularly distributed at three points outside the rotating wheel body 4.
[0028] After the corrugated pipe passes through the rotating wheel body 4, at this time, by simultaneously starting the three electric rods 41, until the cutting edge of the cutting knife 42 acts on the surface of the corrugated pipe, and then when pressing down, the corrugated pipe can be cut. At the same time, cutting treatment is carried out at three points, which not only improves the cutting efficiency, but also through the three-point positioning method, the cutting stresses in three directions act on the surface of the corrugated pipe, so as to achieve force balance and avoid the cutting deformation of the corrugated pipe when using the existing single-point cutting equipment for cutting. When the three cutting points are cut, at this time, by starting the driving motor 52, the driving motor 52 drives the driving gear 53 to rotate, so that the gear ring 54 meshing with the driving gear 53 drives the rotating wheel body 4 to rotate, which is beneficial for the cutting knife 42 to respectively make a circular motion along the cut points along the outside of the corrugated pipe to complete the cutting treatment of the corrugated pipe.
[0029] In order to avoid the influence of temperature rise during cutting on the cutting force of the cutting knife 42, cooling components 7 are provided on the inner walls of both sides of the operation frame body 1, and a vaporization component 8 is provided at the inner ring of the rotating wheel body 4.
[0030] The vaporization component 8 includes three groups of vaporization tank bodies 81 arranged at equal angles on the inner circle of the rotating wheel body 4, and a vaporization cover 82 is installed on the outside of the vaporization tank body 81, and a plurality of vaporization ports 83 are opened on the vaporization cover 82, and the vaporization ports 83 are covered with a breathable film. A partition piece 84 is provided inside the vaporization tank body 81, and a plurality of groups of partition slopes 85 are respectively provided at both ends of the partition piece 84. A condenser 86 is provided in the space formed between the partition slopes 85, and a notch is opened on the partition slope 85 for the condenser 86 to pass through. The notch is made of elastic material, and a plurality of groups of condensation holes 87 are opened on the two side walls of the vaporization tank body 81.
[0031] The cooling member 7 includes a cooling box 71 installed on the operating frame 1, and the cooling box 71 is filled with cooling gas. A flushing and exhausting port 72 is opened on the top of the cooling box 71, and four cooling pipes 73 are connected to the cooling box 71. Two cooling pipes 73 are distributed on one side of the rotating wheel body 4 as a group. A cooling nozzle 74 is provided on the cooling pipe 73, and the cooling nozzle 74 is bent toward the rotating wheel body 4.
[0032] When cutting at three positioning points, the control valve of the cooling box 71 is opened, so that the cold air stored in the cooling box 71, such as liquid nitrogen or other cooling gas, is introduced from the cooling pipe 73 to the cooling nozzle 74. The control valve placed on the cooling box 71 adopts the existing commonly used control valve, and the cold air in the cooling box 71 is flushed and discharged through the external pipeline at the flushing and discharging port 72, thereby realizing the flushing and discharging of the cooling box 71. The cooling gas sprayed by the cooling nozzle 74 acts on the cutting knife 42, thereby cooling the cutting knife 42. After the three positioning points are cut, the drive motor 52 is started, and the drive motor 52 drives the drive gear 53 to rotate, so that the gear ring 54 meshing with the drive gear 53 drives the rotating wheel body 4 to rotate. At this time, the condensate 86 stored in the space of the interval slope 85 begins to shake. After the condensate 86 passes through the notch on the interval slope 85, it collides with the partition sheet 84. Because the condensate 86 is a pre-condensed solid ice ball, after contacting the high-temperature partition sheet, the condensate 86 begins to melt until it vaporizes and flows along the vaporization port 84. 3 is permeable, so it is convenient to blow out the corresponding gas to the cutting position. The condensate 86 absorbs heat during the vaporization process, thereby achieving a cooling treatment on the cutting position. At the same time, after the gas is blown out, it is convenient to blow away the fine waste at the cutting position, which is convenient for cutting. When the cooled cold gas is continuously poured into the vaporization tank 81 from the condensation hole 87, and after the rotating wheel body 4 continues to rotate, the dissolved water returns to the space formed by each interval slope 85, and is re-condensed into the condensate 86 under the action of the continuously poured cold air, so as to facilitate recycling.
[0033] The electric rod 41, the driving motor 22 and the driving motor 52 in the scheme are all selected from existing technology products, and will not be described in detail in this scheme.
[0034] During specific use: Before the corrugated pipe enters, by rotating the rotating block 321, the telescopic adjusting rod 33 is rotated and adjusted from the horizontal position to 90°. After the corrugated pipe is inserted, first rotate the rotating block 321 to make the telescopic adjusting rod 33 return to the initial horizontal position. According to the length of the corrugated pipe, the size of the telescopic adjusting rod 33 is lengthened or shortened so that the connecting curved rod 34 is in a state where it is about to contact but not contact the corrugated pipe orifice, that is, the connecting curved rod 34 is about 1 mm away from the corrugated pipe orifice, so that the mounting block 35 and the inner lining wheel 31 are inside the corrugated pipe. Before the mounting block 35 enters, by loosening the tension 38, the adjusting strip 37 is adjusted in the adjusting sleeve 36, and the lengths of the adjusting strip 37 and the adjusting sleeve 36 are close to the radius of the corrugated pipe. At this time, the two ends of the corrugated pipe are limited inside by the inner lining wheel 31 and outside by the outer driving wheel 23, so as to limit the two ends of the corrugated pipe and prevent the corrugated pipe from shaking. After the corrugated pipe passes through the rotating wheel body 4, at this time, by simultaneously starting the three electric rods 41, until the blade of the cutting knife 42 acts on the surface of the corrugated pipe and then presses down, the corrugated pipe can be cut. At the same time, cutting is performed at three points, which not only improves the cutting efficiency, but also through the three-point positioning method, the cutting stress in three directions acts on the surface of the corrugated pipe, so as to achieve force balance and avoid the cutting deformation of the corrugated pipe when using a single-point cutting of the existing cutting equipment. When the three cutting points are cut, at this time, by opening the control valve of the cooling box 71, the cold gas stored in the cooling box 71, such as cooling gas like liquid nitrogen, is introduced from the cooling pipe 73 to the position of the cooling nozzle 74. The control valve placed on the cooling box 71 uses a commonly used control valve in the existing technology. The cooling box 71 is flushed with cold gas through an external pipeline at the gas flushing port 72, so as to realize the flushing of the cooling box 71. The cooling gas sprayed by the cooling nozzle 74 acts on the cutting knife 42, thereby cooling the cutting knife 42.After the three positioning points are cut, the drive motor 52 is started, and the drive motor 52 drives the drive gear 53 to rotate, so that the gear ring 54 meshing with the drive gear 53 drives the rotating wheel body 4 to rotate. At this time, the condensate 86 stored in the space of the interval slope 85 begins to shake. After the condensate 86 passes through the notch on the interval slope 85, it collides with the partition sheet 84. Because the condensate 86 is a pre-condensed solid ice ball, after contacting the high-temperature partition sheet, the condensate 86 begins to melt until it vaporizes and flows along the vaporization port 84. 3 is permeable, so it is convenient to blow out the corresponding gas to the cutting position. The condensate 86 absorbs heat during the vaporization process, thereby achieving a cooling treatment on the cutting position. At the same time, after the gas is blown out, it is convenient to blow away the fine waste at the cutting position, which is convenient for cutting. When the cooled cold gas is continuously poured into the vaporization tank 81 from the condensation hole 87, and after the rotating wheel body 4 continues to rotate, the dissolved water returns to the space formed by each interval slope 85, and is re-condensed into the condensate 86 under the action of the continuously poured cold air, so as to facilitate recycling.
[0035] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0036] Although 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 the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A lateral-stabilized rotary cutting machine for corrugated pipe processing, comprising: It includes an operation frame body (1), and arc-shaped supporting plates (2) for supporting the outer wall of the corrugated pipe are respectively installed at both ends of the operation frame body (1); It is characterized in that it further includes: an inner supporting member (3) that abuts against the inner wall of the corrugated pipe is provided at the concentric position of the arc-shaped supporting plate (2), and the inner supporting member (3) includes a plurality of inner lining wheels (31) that slide on the corrugations of the inner wall of the corrugated pipe; A material leakage notch (11) is provided on the upper part of the bottom plate of the operation frame body (1), and a rotating wheel body (4) is provided at the material leakage notch (11). A rotating component (5) for driving the rotating wheel body (4) is installed on the top of the operation frame body (1). Three groups of electric rods (41) are equally angularly distributed on the inner ring of the rotating wheel body (4), and a cutting knife (42) is installed at the end of the electric rod (41). Limiting brackets (12) are installed on the inner walls on both sides of the operation frame body (1), and a supporting bracket (13) is installed on the inner wall of the material leakage notch (11). The limiting brackets (12) and the supporting brackets (13) are sleeved outside the rotating wheel body (4); Two groups of supporting components (6) are respectively provided on both sides of the rotating wheel body (4). The supporting component (6) includes a telescopic rod (61) installed on the operation frame body (1). A clamping plate (62) is installed at the end of the telescopic rod (61), and a plurality of wheel bars (63) that slide on the outside of the corrugated pipe are provided on the clamping plate (62). Cooling components (7) are provided on the inner walls on both sides of the operation frame body (1), and a vaporization component (8) is provided at the inner ring of the rotating wheel body (4).
2. The side-stabilized rotary cutting machine for corrugated pipe processing according to claim 1, wherein: Disassembly and assembly seats (14) are respectively provided at both ends of the operation frame body (1). The inner supporting member (3) further includes a roller shaft (32) installed on the disassembly and assembly seat (14). A telescopic adjustment rod (33) is installed in the middle of the roller shaft (32), and a connecting curved rod (34) is provided at one end of the telescopic adjustment rod (33). An installation block (35) is connected to the connecting curved rod (34), and a plurality of adjustment sleeves (36) are equally angularly distributed on the installation block (35). An adjustment strip (37) is installed in the adjustment sleeve (36). An adjustment groove is provided on the adjustment sleeve (36), and a tightening block (38) is provided on the adjustment strip (37). One end of the adjustment strip (37) is connected to an extension rod (39), and the inner lining wheel (31) is installed on the extension rod (39).
3. A laterally stable rotary cutting machine for corrugated pipe processing according to claim 2, characterized in that: A fixing rod (24) connected to the operation frame body (1) is connected to the arc-shaped supporting plate (2). Rotating shafts (21) are respectively installed at both ends of the arc-shaped supporting plate (2), and a driving motor (22) is installed on the rotating shaft (21). An outer driving wheel (23) is installed at the other end of the rotating shaft (21), and the outer driving wheel (23) and the inner lining wheel (31) cooperate to roll on the corrugated pipe wall.
4. A side-stable rotary cutting machine for corrugated pipe processing according to claim 2, characterized in that: The top of the disassembly and assembly seat (14) is a disassembled steel belt, and a rotating block (321) is installed at one end of the roller shaft (32).
5. A lateral stable rotary cutting machine for corrugated pipe processing according to claim 1, characterized in that: The rotating member (5) includes a mounting bridge plate (51) arranged on the top of the operation frame body (1), and both ends of the mounting bridge plate (51) are connected to the inner walls on both sides of the operation frame body (1). A driving motor (52) is installed in the middle of the mounting bridge plate (51), and a driving gear (53) is installed at the output end of the driving motor (52). A gear ring (54) meshing with the driving gear (53) is installed on the outer ring of the rotating wheel body (4). Limit sleeves (55) are installed at the ends of the limit support (12) and the support bracket (13), and the limit sleeves (55) are sleeved outside the rotating wheel body (4). The two limit supports (12) and the support brackets (13) are equally angularly distributed at three points outside the rotating wheel body (4).
6. The side-stable rotary cutting machine for corrugated pipe processing according to claim 5, characterized in that: The vaporization member (8) includes three groups of vaporization tank bodies (81) arranged equally angularly in the inner ring of the rotating wheel body (4). A vaporization cover (82) is installed outside the vaporization tank body (81). A plurality of vaporization openings (83) are formed in the vaporization cover (82), and a breathable film is covered on the vaporization openings (83). A partition piece (84) is arranged inside the vaporization tank body (81), and a plurality of groups of spaced slopes (85) are respectively arranged at both ends of the partition piece (84). A condensate (86) is arranged in the space formed between the spaced slopes (85). An opening through which the condensate (86) passes is formed in the spaced slope (85), and the opening is made of an elastic material. A plurality of groups of condensation holes (87) are formed in the two side walls of the vaporization tank body (81).
7. A lateral stable rotary cutting machine for corrugated pipe processing according to claim 6, characterized in that: The cooling member (7) includes a cooling box (71) installed on the operation frame body (1). The cooling box (71) is filled with a cooling gas. A charging and discharging port (72) is formed in the top of the cooling box (71). Four cooling pipes (73) are connected to the cooling box (71). Two cooling pipes (73) are arranged as a group on one side of the rotating wheel body (4). Cooling nozzles (74) are arranged on the cooling pipes (73), and the cooling nozzles (74) are bent towards the rotating wheel body (4).
8. A side-stable rotary cutting machine for corrugated pipe processing according to claim 1, characterized in that: Both sides of the cutting knife (42) are wedge-shaped surfaces, and a through hole (43) is arranged on the cutting knife (42).
9. A lateral-stabilized rotary cutting machine for corrugated pipe processing according to claim 1, characterized in that: A pressing concave surface (64) is arranged on the back of the clamping plate (62).
10. The lateral stable rotary cutting machine for corrugated pipe processing according to claim 1, characterized in that: A guiding surface is arranged at the notch position of the material leakage trough opening (11). Two groups of conveyor belts (15) are arranged at the material leakage trough opening (11). Roller shafts (17) rotatably connected to the operation frame body (1) are arranged at both ends of the conveyor belt (15). A conveyor motor (16) is installed on one of the roller shafts (17).
Citation Information
Patent Citations
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