CN217728327U - Nonrust steel pipe burnishing device - Google Patents

Nonrust steel pipe burnishing device Download PDF

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Publication number
CN217728327U
CN217728327U CN202221346390.4U CN202221346390U CN217728327U CN 217728327 U CN217728327 U CN 217728327U CN 202221346390 U CN202221346390 U CN 202221346390U CN 217728327 U CN217728327 U CN 217728327U
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China
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stainless steel
steel pipe
polishing
workbench
assembly
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CN202221346390.4U
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Chinese (zh)
Inventor
赵超明
潘军
赵义
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Anhui Dakang Pipe Technology Co ltd
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Anhui Dakang Pipe Technology Co ltd
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Abstract

The utility model discloses a stainless steel pipe polishing device, which comprises a frame, a limiting component, a rotating component, a moving component and a polishing component; the machine frame is provided with a workbench; the limiting assembly is arranged on the workbench and used for abutting against the stainless steel pipe and enabling the stainless steel pipe to move only along the length direction of the stainless steel pipe; the rotating assembly is arranged on the workbench and is used for detachably connecting the end part of the stainless steel pipe and enabling the stainless steel pipe to rotate in the circumferential direction; the moving assembly is arranged on the workbench and connected with the rotating assembly, and is used for driving the rotating assembly and the stainless steel pipe to move along the length direction of the stainless steel pipe; the polishing assembly is installed on the workbench and used for abutting against the outer surface of the stainless steel pipe and polishing the stainless steel pipe while the stainless steel pipe rotates in the circumferential direction, and compared with manual operation, the polishing assembly has the technical effects of high efficiency and uniform polishing.

Description

Nonrust steel pipe burnishing device
Technical Field
The utility model belongs to the technical field of the stainless steel polishing, especially, relate to a nonrust steel pipe burnishing device.
Background
Stainless steel refers to steel which resists corrosion by weak corrosive media such as air, steam, water and the like and chemical corrosive media such as acid, alkali, salt and the like, and is also called as stainless acid-resistant steel. In practice, steel resistant to corrosion by weakly corrosive media is often referred to as stainless steel, while steel resistant to corrosion by chemical media is referred to as acid-resistant steel. Due to the difference in chemical composition between the two, the former is not necessarily resistant to corrosion by chemical media, while the latter is generally non-corrosive. The corrosion resistance of stainless steel depends on the alloying elements contained in the steel.
Based on actual use requirements, the outer surface of stainless steel needs to be polished to achieve a certain degree of finish, and the existing polishing modes of some stainless steel pipes are manual polishing, so that the polishing mode is low in efficiency and uneven in polishing effect level.
SUMMERY OF THE UTILITY MODEL
The utility model provides a nonrust steel pipe burnishing device to solve above-mentioned technical problem at least.
The utility model provides a stainless steel tube polishing device, which comprises a frame, a limiting component, a rotating component, a moving component and a polishing component;
the machine frame is provided with a workbench;
the limiting assembly is arranged on the workbench and is used for abutting against the stainless steel pipe and enabling the stainless steel pipe to move only along the length direction of the stainless steel pipe;
the rotating assembly is arranged on the workbench and is used for detachably connecting the end part of the stainless steel pipe and enabling the stainless steel pipe to rotate in the circumferential direction;
the moving assembly is arranged on the workbench and connected with the rotating assembly, and is used for driving the rotating assembly and the stainless steel pipe to move along the length direction of the stainless steel pipe;
the polishing assembly is arranged on the workbench and used for abutting against the outer surface of the stainless steel pipe and polishing the stainless steel pipe while the stainless steel pipe rotates in the circumferential direction.
In an implementation mode, the machine frame comprises four supporting legs, one end of each supporting leg is connected with the workbench, and the other end of each supporting leg is connected with a universal wheel; the supporting legs are also connected with supporting rods with adjustable height.
In one embodiment, the stop assembly comprises an upper stop member and a lower stop member;
the upper limiting piece is fixed on the workbench, and a first cambered surface matched with the outer surface of the stainless steel pipe is arranged on the upper limiting piece;
the lower limiting piece is fixed on the workbench, and a second cambered surface matched with the outer surface of the stainless steel pipe is arranged on the lower limiting piece.
In one embodiment, the rotating assembly includes a motor and a coupling;
the first end of the connecting piece is fixedly arranged on the rotating shaft of the motor, and the second end of the connecting piece is detachably connected with the end part of the stainless steel pipe.
In one embodiment, the moving assembly comprises a first telescopic member, a sliding rail and a bearing platform;
the rotating assembly is mounted on the bearing platform;
the bearing platform is arranged on the slide rail and can move back and forth along the preset direction of the slide rail track;
the first telescopic piece is fixed on the workbench and connected with the bearing platform, and is used for driving the bearing platform, the rotating assembly and the stainless steel pipe to move along the preset direction of the track.
In one embodiment, the first expansion element is a cylinder.
In one embodiment, the polishing assembly comprises a second telescoping member and an abrading member;
the second telescopic piece is arranged on the workbench;
the polishing piece is installed on the second telescopic piece and used for being abutted against and polishing the outer surface of the stainless steel pipe under the driving of the second telescopic piece.
In one embodiment, the number of the polishing assemblies is two, and the two polishing assemblies are respectively arranged on two sides of the stainless steel pipe;
two the second extensible member sets up in opposite directions, and the roughness of polishing on every second extensible member is different.
In an implementation mode, the limiting assembly is provided with a through hole, and the second telescopic piece drives the polishing piece to abut against the outer surface of the stainless steel pipe after passing through the through hole.
The embodiment of the utility model provides an in, during the use, at first will treat nonrust steel pipe connection rotating assembly and spacing subassembly of polishing, start rotating assembly after that and make and drive nonrust steel pipe circumferential direction, the surface of the nonrust steel pipe of polishing subassembly butt is polished and is handled the contact surface, after polishing is handled a period, drive rotating assembly and nonrust steel pipe through removing the subassembly and remove to the length direction of nonrust steel pipe, at the removal in-process, polishing assembly polishes the processing gradually to the whole surface of the nonrust steel pipe in the pairing rotation, this process is for manual operation, possess efficient and polish even technological effect.
It is to be understood that the teachings of the present invention need not achieve all of the above-described benefits, but rather that certain aspects may achieve certain technical results, and that other embodiments of the present invention may achieve other benefits not mentioned above.
Drawings
The above and other objects, features and advantages of exemplary embodiments of the present invention will become readily apparent from the following detailed description read in conjunction with the accompanying drawings. Several embodiments of the present invention are illustrated by way of example, and not by way of limitation, in the figures of the accompanying drawings and in which:
FIG. 1 is a schematic view of the overall structure of a stainless steel tube polishing device according to an embodiment of the present invention;
FIG. 2 is an enlarged view taken at A in FIG. 1;
FIG. 3 is an enlarged view at B of FIG. 1;
fig. 4 is an enlarged view at C in fig. 1.
In the figure: 1. a frame; 11. a work table; 12. supporting legs; 13. a universal wheel; 14. a support bar; 2. a limiting component; 21. an upper limiting member; 22. a lower retainer; 3. a rotating assembly; 31. a motor; 32. a connecting member; 4. a moving assembly; 41. a first telescoping member; 42. a slide rail; 43. a load-bearing platform; 5. a polishing component; 51. a second telescoping member; 52. polishing the workpiece; 6. a stainless steel tube; 7. and (5) perforating.
Detailed Description
To make the objects, features and advantages of the present invention more obvious and understandable, the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention, and obviously, the described embodiments are only some embodiments, not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by the skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, in one aspect, the present application provides a stainless steel tube polishing apparatus, which includes a frame 1, a limiting assembly 2, a rotating assembly 3, a moving assembly 4, and a polishing assembly 5;
the frame 1 is provided with a workbench 11;
the limiting assembly 2 is arranged on the workbench 11 and is used for abutting against the stainless steel pipe 6 and enabling the stainless steel pipe 6 to move only along the length direction of the stainless steel pipe 6;
the rotating assembly 3 is arranged on the workbench 11 and is used for detachably connecting the end part of the stainless steel pipe 6 and enabling the stainless steel pipe 6 to rotate in the circumferential direction;
the moving assembly 4 is arranged on the workbench 11 and connected with the rotating assembly 3, and is used for driving the rotating assembly 3 and the stainless steel pipe 6 to move along the length direction of the stainless steel pipe 6;
the polishing assembly 5 is mounted on a table 11 for abutting against the outer surface of the stainless steel pipe 6 and polishing the stainless steel pipe 6 while the stainless steel pipe 6 is rotated circumferentially.
In this embodiment, during the use, at first, stainless steel pipe 6 that will wait to polish connects rotating assembly 3 and spacing subassembly 2, start rotating assembly 3 and make and drive 6 circumferential direction of stainless steel pipe after that, 5 butt stainless steel pipe 6's of polishing subassembly surface and to the contact surface carry out the polishing and polish the processing this moment, after polishing processing a period, drive rotating assembly 3 and stainless steel pipe 6 through removal subassembly 4 and remove to the length direction of stainless steel pipe 6, at the removal in-process, polishing subassembly 5 polishes the whole surface of stainless steel pipe 6 in the pairing rotation gradually, this process is for manual operation, possess efficient and polish even technological effect.
Further, the detachable connection of the rotating assembly 3 and the stainless steel tube 6 includes a screw connection or a snap connection.
In an implementation mode, the frame 1 comprises four supporting legs, one end of each of the four supporting legs is connected with the workbench 11, and the other end of each of the four supporting legs is connected with a universal wheel 13; the supporting legs are also connected with a supporting rod 14 with adjustable height.
In this embodiment, four supporting legs are located four angles of polishing platform respectively, and fixed workstation 11 of one end, universal wheel 13 are connected to the other end, if need remove, and the staff can conveniently carry out the translation with whole burnishing device. Further, support rods 14 are installed at the bottoms of the four support legs, the support rods 14 can be adjusted in height, the entire polishing apparatus can be placed on the ground through the support rods 14, and the workbench 11 can be kept in a horizontal state by adjusting the height of each support rod 14.
In an embodiment, the stop assembly 2 comprises an upper stop 21 and a lower stop 22;
the upper limiting piece 21 is fixed on the workbench 11, and a first cambered surface matched with the outer surface of the stainless steel pipe 6 is arranged on the upper limiting piece 21;
the lower limiting piece 22 is fixed on the workbench 11, and a second cambered surface matched with the outer surface of the stainless steel pipe 6 is arranged on the lower limiting piece 22.
In this embodiment, the upper limiting member 21 includes four supporting columns, and the four supporting columns are fixed on the worktable 11. The first cambered surface of the upper limiting piece 21 is specifically used for being attached to the top cambered surface of the stainless steel pipe 6.
The lower limiting member 22 is block-shaped and is fixedly connected with the worktable 11. The second arc of the lower retainer 22 is specifically adapted to engage with the bottom arc of the stainless steel tube 6.
The arrangement of the first cambered surface and the second cambered surface can limit the stainless steel pipe 6 to move only along the length direction thereof.
Furthermore, a soft wool layer is connected to the surfaces of the first cambered surface and the second cambered surface, so that the surface of the polished stainless steel pipe 6 can be wiped.
In one possible embodiment, shown in connection with fig. 2, the rotating assembly 3 comprises a motor 31 and a connection 32;
the first end of the connecting piece 32 is fixedly arranged on the rotating shaft of the motor 31, and the second end is detachably connected with the end part of the stainless steel pipe 6.
In this embodiment, the connecting member 32 is specifically set according to stainless steel pipes 6 of different specifications and different models, and if the end of the stainless steel pipe 6 is provided with an internal thread, the connecting member 32 may be a metal member with an external thread, and the metal member is in threaded connection with the stainless steel pipe 6; if the end of the stainless steel tube 6 is provided with a groove, the connecting member 32 may be a clamping structure connected and matched with the groove.
Under the condition that the first end of the connecting piece 32 is connected with the stainless steel tube 6 and the second end is connected with the end part of the stainless steel tube 6, the motor 31 drives the stainless steel tube 6 to synchronously rotate in the circumferential direction when rotating.
In an alternative embodiment, shown in fig. 3, the moving assembly 4 comprises a first telescopic member 41, a sliding rail 42 and a carrying platform 43;
the rotating assembly 3 is mounted on the carrying platform 43;
the bearing platform 43 is mounted on the slide rail 42 and can move back and forth along the preset direction of the slide rail 42;
the first telescopic member 41 is fixed on the working platform 11 and connected to the carrying platform 43 for driving the carrying platform 43, the rotating assembly 3 and the stainless steel tube 6 to move along the predetermined direction of the track.
In this embodiment, the bearing platform 43 specifically includes a roller, and the roller is installed on the rail of the slide rail 42;
the first telescopic member 41 may be a cylinder or an oil cylinder, and the cylinder or the oil cylinder has a telescopic rod, the telescopic rod is fixedly connected to the tail end of the bearing platform 43, and can drive the bearing platform 43, the motor 31, and the stainless steel tube 6 to move back and forth along the predetermined direction of the track.
In one possible embodiment, shown in conjunction with FIG. 4, polishing assembly 5 includes a second telescoping member 51 and a abrading member 52;
the second telescopic member 51 is mounted on the table 11;
the polishing part 52 is arranged on the second telescopic part 51 and is used for being abutted against the outer surface of the stainless steel pipe 6 and polishing under the driving of the second telescopic part 51.
In this embodiment, the second telescopic member 51 may specifically be an air cylinder or an oil cylinder, the telescopic rod in the air cylinder or the oil cylinder is fixedly connected to the polishing member 52, the polishing member 52 is specifically a polishing sheet adapted to the outer surface of the stainless steel tube 6, and the polishing sheet is detachably connected so that the polishing member 52 with other roughness can be replaced. After the second expansion piece 51 abuts the grinding piece 52 against the outer surface of the stainless steel pipe 6, the rotating stainless steel pipe 6 can be polished.
In one embodiment, two polishing assemblies 5 are respectively arranged on two sides of the stainless steel tube 6;
the two second telescopic members 51 are oppositely arranged, and the roughness of the grinding member 52 on each second telescopic member 51 is different.
In this embodiment, in the conventional polishing process, the rough polishing process is performed by using the higher roughness polishing sheet, and after a certain period of time, the fine polishing process is performed by using the lower roughness polishing sheet.
From this, through setting up two polishing subassemblies 5, during the use, at first carry out the coarse grinding to 6 surfaces of nonrust steel pipe by the higher polishing subassembly 5 of roughness, after the period of polishing, stop the coarse grinding, carry out the essence with the lower polishing subassembly 5 of roughness to 6 surfaces of nonrust steel pipe after that for the polishing effect is more smooth and exquisite at last.
In an implementation manner, a through hole 7 is formed in the limiting component 2, and the second telescopic part 51 drives the polishing part 52 to abut against the outer surface of the stainless steel pipe 6 after passing through the through hole 7.
In this embodiment, the through hole 7 is formed by two support columns in the limiting component 2 and the workbench 11, and the arrangement of the through hole 7 can prevent dust from splashing around in the grinding process.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Moreover, various embodiments or examples and features of various embodiments or examples described in this specification can be combined and combined by one skilled in the art without being mutually inconsistent.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or to implicitly indicate the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (9)

1. A stainless steel pipe polishing device is characterized by comprising a rack (1), a limiting component (2), a rotating component (3), a moving component (4) and a polishing component (5);
the rack (1) is provided with a workbench (11);
the limiting assembly (2) is mounted on the workbench (11) and used for abutting against the stainless steel pipe (6) and enabling the stainless steel pipe (6) to move only along the length direction of the stainless steel pipe (6);
the rotating assembly (3) is arranged on the workbench (11) and is used for detachably connecting the end part of the stainless steel pipe (6) and enabling the stainless steel pipe (6) to rotate in the circumferential direction;
the moving assembly (4) is installed on the workbench (11) and connected with the rotating assembly (3) and is used for driving the rotating assembly (3) and the stainless steel pipe (6) to move along the length direction of the stainless steel pipe (6);
the polishing assembly (5) is mounted on the workbench (11) and used for abutting against the outer surface of the stainless steel pipe (6) and polishing the stainless steel pipe (6) when the stainless steel pipe (6) rotates in the circumferential direction.
2. The stainless steel pipe polishing device as claimed in claim 1, wherein the frame (1) comprises four supporting legs, one end of each of the four supporting legs is connected with the workbench (11), and the other end of each of the four supporting legs is connected with a universal wheel (13); the supporting legs are also connected with supporting rods (14) with adjustable height.
3. A stainless steel tube polishing device according to claim 1, characterized in that said stop assembly (2) comprises an upper stop member (21) and a lower stop member (22);
the upper limiting piece (21) is fixed on the workbench (11), and a first cambered surface matched with the outer surface of the stainless steel pipe (6) is arranged on the upper limiting piece (21);
the lower limiting piece (22) is fixed on the workbench (11), and a second cambered surface matched with the outer surface of the stainless steel pipe (6) is arranged on the lower limiting piece (22).
4. A stainless steel tube polishing device according to claim 1, characterized in that said rotating assembly (3) comprises a motor (31) and a connecting member (32);
the first end of the connecting piece (32) is fixedly arranged on a rotating shaft of the motor (31), and the second end of the connecting piece is detachably connected with the end part of the stainless steel pipe (6).
5. The stainless steel tube polishing device according to claim 1, wherein the moving assembly (4) comprises a first telescopic member (41), a sliding rail (42) and a bearing platform (43);
the rotating assembly (3) is mounted on the carrying platform (43);
the bearing platform (43) is arranged on the sliding rail (42) and can move back and forth along the preset direction of the sliding rail (42) track;
the first telescopic piece (41) is fixed on the workbench (11) and connected with the bearing platform (43) and is used for driving the bearing platform (43), the rotating assembly (3) and the stainless steel pipe (6) to move along a preset direction of a track.
6. The stainless steel pipe polishing device according to claim 5, wherein said first telescopic member (41) is a cylinder.
7. A stainless steel tube polishing device according to claim 1, characterized in that said polishing assembly (5) comprises a second telescopic member (51) and a grinding member (52);
the second telescopic piece (51) is arranged on the workbench (11);
the polishing piece (52) is arranged on the second telescopic piece (51) and is used for being abutted against the outer surface of the stainless steel pipe (6) and polishing under the driving of the second telescopic piece (51).
8. The stainless steel pipe polishing device according to claim 7, wherein the number of the polishing assemblies (5) is two, and the two polishing assemblies are respectively arranged on two sides of the stainless steel pipe (6);
the two second telescopic pieces (51) are arranged oppositely, and the roughness of the grinding piece (52) on each second telescopic piece (51) is different.
9. The stainless steel tube polishing device according to claim 7, wherein a through hole (7) is formed in the limiting assembly (2), and the second telescopic piece (51) drives the grinding piece (52) to abut against the outer surface of the stainless steel tube (6) after passing through the through hole (7).
CN202221346390.4U 2022-05-31 2022-05-31 Nonrust steel pipe burnishing device Active CN217728327U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221346390.4U CN217728327U (en) 2022-05-31 2022-05-31 Nonrust steel pipe burnishing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221346390.4U CN217728327U (en) 2022-05-31 2022-05-31 Nonrust steel pipe burnishing device

Publications (1)

Publication Number Publication Date
CN217728327U true CN217728327U (en) 2022-11-04

Family

ID=83838336

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221346390.4U Active CN217728327U (en) 2022-05-31 2022-05-31 Nonrust steel pipe burnishing device

Country Status (1)

Country Link
CN (1) CN217728327U (en)

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