AU2015101299A4 - An efficient steel pipe polishing and grinding machine - Google Patents
An efficient steel pipe polishing and grinding machine Download PDFInfo
- Publication number
- AU2015101299A4 AU2015101299A4 AU2015101299A AU2015101299A AU2015101299A4 AU 2015101299 A4 AU2015101299 A4 AU 2015101299A4 AU 2015101299 A AU2015101299 A AU 2015101299A AU 2015101299 A AU2015101299 A AU 2015101299A AU 2015101299 A4 AU2015101299 A4 AU 2015101299A4
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- Australia
- Prior art keywords
- screw rod
- steel pipe
- upper rack
- drive motor
- thread
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- Grinding-Machine Dressing And Accessory Apparatuses (AREA)
- Grinding Of Cylindrical And Plane Surfaces (AREA)
- Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)
Abstract
This utility model discloses an efficient steel pipe polishing and grinding machine, including an upper rack, a lower rack and a support pillar set up between the upper rack and the lower rack. The first screw rod is set up in the upper rack. The first thread bushing matched with the thread of the first screw rod is set up on the first screw rod. A driven wheel is set up on the right end of the first screw rod. A driving wheel is set up on the driven wheel. A belt is set up between the driving wheel and the driven wheel. The driving wheel is rotatablely connected with the first drive motor. The first drive motor is fixedly connected with the upper rack. A friction block is connected with the bottom of the first thread bushing. A friction plate is fixed on the front end face of friction block. This utility model is simple in structure and easy to use. It applies machinery and electric device to polish fast. Operators do not need too much operation experience. So, it saves time and improves processing efficiency.
Description
EDITORIAL NOTE 2015101299 - There are 2 pages of Description which are not page numbered An efficient steel pipe polishing and grinding machine Technical field This utility model related to steel pipe processing machinery field, especially to an efficient steel pipe polishing and grinding machine. Background technology The steel pipe plays an important role in modern industrial production. It is not just used to transmit fluid and powdery solid, exchange heat energy and manufacture machine parts and containers. Meanwhile, it is also an economic steel material. If the steel pipe is used to manufacture net rack of building structure, pillar and machinery support, weight can be relieved and 20-40% of metal may be saved. Besides, industrial and mechanized construction can be achieved. Before semi-finished products of steel pipes are manufactured, it is hard to avoid corrosion and rust by water in the air. It is very difficult to eliminate such rust in the processing process, so rust removal treatment is still needed for processed steel pipe. In existing technology, workers generally hold the cutter by hand and install the grinding disc for rust removal and polishing. Workers have to own certain experience. Once polishing is done excessively, the surface of steel pipe will be damaged, and scrap material will form. If polishing is insufficient, rust cannot be eliminated. It is hard for processing. Invention content The technical problem to be solved by this utility model is to provide an efficient steel pipe polishing and grinding machine which utilizes machinery and electric unit to polish fast. Workers do not need operation experience and use it simply and conveniently. This utility model is achieved through the following technical proposal: an efficient steel pipe polishing and grinding machine includes an upper rack, a lower rack and a support pillar set up between the upper rack and the lower rack. The first screw rod is set up in the upper rack. The first thread bushing matched with the thread of the first screw rod is set up on the first screw rod. A driven wheel is set up on the right end of the first screw rod. A driving wheel is set up on the driven wheel. A belt is set up between the driving wheel and the driven wheel. The driving wheel is rotatablely connected with the first drive motor. The first drive motor is fixedly connected with the upper rack. A friction block is connected with the bottom of the first thread bushing. A friction plate is fixed on the front end face of friction block. A cavity is set up in the middle of the lower rack. The second screw rod and the third screw rod are set up in the cavity. The second thread bushing matched with the thread is set up on the second screw rod and the third screw rod. A bracket is set up on the top of the second thread bushing. The second drive motor is set up at the top of bracket. Clamps are set up at the opposite side of the second drive motor. A steel pipe is set up between the clamps. The steel pipe is connected with the friction plate. The third drive motor is set up at the left side of the lower rack. The bottom of friction block is embedded in the cavity. Dust suction inlets are set up at the bottom of left section part and right section part of upper rack, respectively. A dust exhaust apparatus is set up at the top of left side of upper rack. A dust collection conduit is connected between the dust exhaust apparatus and the dust suction inlet. Further, thread rotation directions of the second screw rod (14) and the third screw rod (13) are opposite. Further, the friction plate (18) is of "C" shape. Beneficial effects of this utility model are as follows: this utility model is simple in structure and easy to use. It applies machinery and electric device to polish fast. Operators do not need too much operation experience. So, it saves time and improves processing efficiency. Descriptions of attached figures To explain it easily, this utility model is detailed by the following specific implementation example and the attached figure. Fig.1 shows structure diagram of this utility model; Fig.2 shows structure diagram of friction block. Detailed implementation way As shown in Fig.1 and Fig.2, an efficient steel pipe polishing and grinding machine includes an upper rack 1, a lower rack 10 and a support pillar 9 set up between the upper rack 1 and the lower rack 10. The first screw rod 4 is set up in the upper rack 1. The first thread bushing 2 matched with the thread of the first screw rod 4 is set up on the first screw rod 4. A driven wheel 8 is set up on the right end of the first screw rod 4. A driving wheel 6 is set up on the driven wheel 8. A belt 7 is set up between the driving wheel 6 and the driven wheel 8. The driving wheel 6 is rotatablely connected with the first drive motor 5. The first drive motor 5 is fixedly connected with the upper rack 1. A friction block 3 is connected with the bottom of the first thread bushing 2. A friction plate 18 is fixed on the front end face of friction block 3. A cavity 19 is set up in the middle of the lower rack 10. The second screw rod 14 and the third screw rod 13 are set up in the cavity 19. The second thread bushing 11 matched with the thread is set up on the second screw rod 14 and the third screw rod 13. A bracket 15 is set up on the top of the second thread bushing 11. The second drive motor 17 is set up at the top of bracket 15. Clamps 20 are set up at the opposite side of the second drive motor 17. A steel pipe 12 is set up between the clamps 20. The steel pipe 12 is connected with the friction plate 18. The third drive motor 16 is set up at the left side of the lower rack 10. The bottom of friction block 3 is embedded in the cavity 19. Dust suction inlets 21 are set up at the bottom of left section part and right section part of upper rack 1, respectively. A dust exhaust apparatus 22 is set up at the top of left side of upper rack 1. A dust collection conduit 23 is connected between the dust exhaust apparatus 22 and the dust suction inlet 21. Thread rotation directions of the second screw rod (14) and the third screw rod (13) are opposite. The friction plate (18) is of "C" shape. Beneficial effects of this utility model are as follows: this utility model is simple in structure and easy to use. It applies machinery and electric device to polish fast. Operators do not need too much operation experience. So, it saves time and improves processing efficiency. The above is a specific implementation way of this utility model. However, the protection scope of this utility model is not limited to this. Any change or replacement without creative work shall be covered in the protection scope of this utility model. Therefore, the protection scope of this utility model shall be subject to that defined in the claim.
Claims (3)
1. An efficient steel pipe polishing and grinding machine is characterized by the following: it includes an upper rack (1), a lower rack (10) and a support pillar (9) set up between the upper rack (1) and the lower rack (10). The first screw rod (4) is set up in the upper rack (1). The first thread bushing (2) matched with the thread of the first screw rod (4) is set up on the first screw rod (4). A driven wheel (8) is set up on the right end of the first screw rod (4). A driving wheel (6) is set up on the driven wheel (8). A belt (7) is set up between the driving wheel (6) and the driven wheel (8). The driving wheel (6) is rotatablely connected with the first drive motor (5). The first drive motor (5) is fixedly connected with the upper rack (1). A friction block (3) is connected with the bottom of the first thread bushing (2). A friction plate (18) is fixed on the front end face of friction block (3). A cavity (19) is set up in the middle of the lower rack (10) . The second screw rod (14) and the third screw rod (13) are set up in the cavity (19). The second thread bushing (11) matched with the thread is set up on the second screw rod (14) and the third screw rod (13). A bracket (15) is set up on the top of the second thread bushing (11). The second drive motor (17) is set up at the top of bracket (15). Clamps (20) are set up at the opposite side of the second drive motor (17). A steel pipe (12) is set up between the clamps (20). The steel pipe (12) is connected with the friction plate (18). The third drive motor (16) is set up at the left side of the lower rack (10). The bottom of friction block (3) is embedded in the cavity (19). Dust suction inlets (21) are set up at the bottom of left section part and right section part of upper rack (1), respectively. A dust exhaust apparatus (22) is set up at the top of left side of upper rack (1). A dust collection conduit (23) is connected between the dust exhaust apparatus (22) and the dust suction inlet (21).
2. The efficient steel pipe polishing and grinding machine described in Claim 1 is characterized by that, thread rotation directions of the second screw rod (14) and the third screw rod (13) are opposite.
3. The efficient steel pipe polishing and grinding machine described in Claim 1 is characterized by that, the friction plate (18) is of "C" shape.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520487260.6U CN204843806U (en) | 2015-07-08 | 2015-07-08 | High -efficient steel pipe polishing and grinding machine |
CN2015204872606 | 2015-07-08 |
Publications (1)
Publication Number | Publication Date |
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AU2015101299A4 true AU2015101299A4 (en) | 2015-10-15 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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AU2015101299A Ceased AU2015101299A4 (en) | 2015-07-08 | 2015-09-16 | An efficient steel pipe polishing and grinding machine |
Country Status (2)
Country | Link |
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CN (1) | CN204843806U (en) |
AU (1) | AU2015101299A4 (en) |
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-
2015
- 2015-07-08 CN CN201520487260.6U patent/CN204843806U/en not_active Expired - Fee Related
- 2015-09-16 AU AU2015101299A patent/AU2015101299A4/en not_active Ceased
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WO2017080535A1 (en) | 2015-11-10 | 2017-05-18 | Vysoké Učení Technické V Brně | Method and device for surface machining of rotary components |
CN105619233A (en) * | 2016-03-18 | 2016-06-01 | 方星 | Machining structure for polishing axle part and application method of machining structure |
CN105690233A (en) * | 2016-03-18 | 2016-06-22 | 南安市蒂巧工艺品有限公司 | Shaft part polishing device capable of being stably clamped and using method thereof |
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