Full-automatic coating alloy steel strip winding machine
The design of the fully automatic alloy steel strip coating and winding machine solves the problem of excessive coating amount during the application of anti-rust oil to alloy steel strips, realizes uniform coating and recycling of anti-rust oil, reduces waste and pollution risks, and ensures continuous operation of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-18
- Publication Date
- 2026-03-27
AI Technical Summary
In the existing technology, when applying anti-rust oil to alloy steel strips, excessive application of anti-rust oil to the outer surface of the steel strip leads to waste of anti-rust oil and contamination inside the winding machine.
A fully automatic coating and winding machine for alloy steel strips was designed. Through the combination of an oiling chamber, an oil suction roller, a guide drum, and a return component, the machine achieves uniform coating and recycling of rust-preventive oil, avoiding excess rust-preventive oil dripping and waste.
It effectively reduces the consumption of rust-preventive oil, prevents internal contamination of the winding machine, ensures long-term continuous operation, and reduces management costs.
Smart Images

Figure CN121732369A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of alloy steel strip processing, and particularly relates to a full-automatic alloy steel strip coating and winding machine. BACKGROUND
[0002] In the manufacturing and processing of alloy steel strips, a winding device is needed to wind the plate-shaped alloy steel strips into bundles, so as to facilitate the transportation and storage of the alloy steel strip products.
[0003] The full-automatic alloy steel strip coating and winding device disclosed in the prior art document CN208771769U saves the amount of rust-proof oil by setting a coating machine to continuously apply the circulating dripping rust-proof oil to the outer surface of the steel strip. However, the excess rust-proof oil may still drip from the outer surface of the steel strip during the process of entering the winding machine from the coating machine, which may cause the interior of the winding machine to be easily contaminated by the rust-proof oil, and the outer surface of the wound steel strip to be coated with too much oil. Therefore, improvement is needed. SUMMARY
[0004] In view of the problem that the excessive application of rust-proof oil to the outer surface of the steel strip in the prior art leads to a large amount of waste of rust-proof oil, the technical solution adopted by the present application is as follows: a full-automatic alloy steel strip coating and winding machine, comprising: An oiling machine box, a winding part is arranged on the left side of the oiling machine box; The oiling machine box comprises: A container machine shell, a fan-shaped turning plate is rotatably connected to the right side of the outer surface of the container machine shell; A long steel strip is arranged in the interior of the container machine shell, and the left end of the long steel strip is slidably connected to the inner wall of the winding part; An oiling chamber is arranged at the bottom of the inner wall of the container machine shell, and is used for applying rust-proof oil to the outer surface of the long steel strip. The oiling chamber is separated from the inner wall of the container machine shell by a partition plate, and is used for containing rust-proof oil; A pressing and rolling part is arranged on the left side of the inner wall of the container machine shell; A reflux part is arranged at the lower part of the pressing and rolling part, and is used for guiding the rust-proof oil dripping from the pressing and rolling part to flow back to the interior of the oiling chamber; The pressing and rolling part comprises: An oil absorption roller, oil absorption grooves are uniformly arranged in the inner cavity of the oil absorption roller, and the oil absorption grooves extend to the outside of the oil absorption roller; Symmetrically arranged on both sides of the oil absorption roller, the oil extraction pump is inserted into the shaft center of the inner cavity of the oil absorption roller. When the oil extraction pump is used to extract and press the interior of the oil absorption roller, the rust-proof oil adhered to the outer surface can be extracted through the oil absorption grooves of the oil absorption roller; The guide cylinder has oil drain grooves evenly distributed in its inner cavity. One end of the guide cylinder is inserted into the oil drain port of the oil pump, and the other end of the guide cylinder is fitted with a sliding ball. The outer surface of the sliding ball is slidably connected to the inner wall of the container housing. The rust-removing oil pressurized into the guide cylinder will drip through the oil drain port of the guide cylinder to the lower return component, and then be guided into the interior of the oiling chamber.
[0005] Furthermore, the rolling component also includes: A fixed rotating machine, wherein the outer surface of the fixed rotating machine is fixedly connected to the inner wall of the container housing; The pressurized rotating box has its outer surface of the fixed rotating machine shaft inserted into the inner cavity of the fixed rotating machine. The push compression rod has one end inserted into the inner cavity of the pressurizing rotary box and the other end inserted into the outer surface of the oil extraction pump. The pressurizing rotary box can push the oil extraction pump to move by pressurizing the inside of the push compression rod, so that the oil suction roller sweeps across the outer surface of the long steel strip.
[0006] Furthermore, the oiling housing also includes: The internal monitoring panel monitors the rust-preventive oil inside the oiling chamber through a bayonet connected to the right side of the container housing. The lower pressure roller has two sides that are inserted into the top of the inner wall of the container housing through a lower pressure arm, and the outer surface of the lower pressure roller extends into the interior of the oiling chamber. The outer surface of the lower pressure roller is pressed against the outer surface of the long steel strip. An oiling component is installed inside the oiling chamber. Drainage components are symmetrically arranged on both sides of the oiling component. The drainage components are used to pressurize the rust-preventive oil inside the oiling chamber into the oiling component.
[0007] Furthermore, the tape winding component includes: An independent storage shell, wherein buffer rods are evenly arranged on the bottom of the independent storage shell, and the end of the buffer rod away from the independent storage shell is inserted into the outer surface of the oiling box; The upper flip cover has a traction handle inserted into its upper surface, and the left end of the upper flip cover is rotatably connected to the outer surface of the independent storage shell via a pivot. The suspension motor has its bottom end inserted into the bottom of the inner wall of the independent storage housing. A winding roller is inserted into the outer surface of the suspension motor shaft. The outer surface of the winding roller is inserted into the left end of a long steel strip via a clamp.
[0008] Furthermore, the recirculation component includes: An inclined flow guide plate, the right end of which is inserted into the left side of the oiling chamber cavity through an oil inlet groove, and the left side of the outer surface of the inclined flow guide plate is engaged with the inner wall of the container housing. The upper control board has its outer surface inserted into the inner cavity of the inclined flow guide plate via a slot. Oil detectors are symmetrically arranged on both sides of the upper control board. Rust removal oil dripping onto the upper surface of the inclined flow guide plate will flow from top to bottom along the inclined surface of the inclined flow guide plate. At this time, the upper control board observes the state of oil flow through the oil detectors on both sides.
[0009] Furthermore, the recirculation component also includes: The control base box has its bottom fixedly connected to the bottom of the inner wall of the container housing, and its top fixedly connected to the bottom of the upper control plate. The inner wall control console is located at the bottom of the control base box, and its two sides are connected to the inner cavity of the oiling chamber via external guide plates.
[0010] Furthermore, the oiling component includes: An inner guide tube, wherein a connecting tube is uniformly arranged in the inner cavity of the inner guide tube, and an anti-permeability tube is sleeved at the bottom end of the connecting tube; An externally coated oil pipe has evenly spaced penetration grooves in its inner cavity. The axial center of the inner wall of the externally coated oil pipe is sleeved with the outer surface of the inner guide pipe, and both ends of the inner guide pipe extend to the outside of the externally coated oil pipe. After the inner guide pipe is filled with rust-removing oil through a connecting pipe, the externally coated oil pipe can coat the outer surface of the long steel strip it contacts with rust-removing oil through its penetration grooves.
[0011] Furthermore, the drainage component includes: The oil injection side cylinder is symmetrically arranged at both ends of the inner guide pipe. The middle of the inner cavity of the oil injection side cylinder is uniformly provided with a drain port, which extends into the interior of the oil injection side cylinder.
[0012] Furthermore, the drainage component also includes: A control support plate, the top of which is inserted into the inner cavity of the oil injection side cylinder, and the outer surface of which is inserted into the end of the external guide plate away from the inner wall control console. An inner transmission pipe is located in the middle of the inner cavity of the control support plate. The bottom end of the inner transmission pipe extends to the outside of the control support plate, and the top end of the inner transmission pipe is inserted into the inner cavity of the oil injection side cylinder. The inner wall control console starts the control support plate through the external guide plate. The control support plate delivers the rust-removing oil inside the oiling chamber to the oil injection side cylinder through the bottom end of the inner transmission pipe. Then, the oil injection side cylinder pours the rust-removing oil into the interior of the inner guide pipe.
[0013] The beneficial effects of this invention are as follows: 1. This device applies rust-preventive oil to the outer surface of the long steel strip through the oiling chamber. As the long steel strip is about to slide out of the container housing, the rust-preventive oil on its outer surface is evenly applied by the oil suction rollers on both sides. The oil suction rollers then separate the excess rust-preventive oil from the long steel strip, thus ensuring that the long steel strip will not drip oil during the winding process after sliding out of the oiling machine box, and that there will be no oil overflow from the winding drum due to excessive oil application.
[0014] 2. The rust-preventive oil extracted by the pressing and rolling components drips into the oil discharge groove of the guide pipe and flows back into the oiling chamber through the inclined diversion plate, achieving an internal recovery effect. This constantly replenishes the total amount of rust-preventive oil inside the oiling chamber, reduces the consumption of rust-preventive oil, and avoids the problem of the oiling components being unable to extract rust-preventive oil due to the rapid drop in the rust-preventive oil level after working for a period of time, which would lead to the interruption of the oiling work. This allows the device to work continuously for a long time, thereby reducing management costs.
[0015] 3. The oiling component of this device is composed of an inner guide pipe and an outer oiling pipe. The flow-guiding effect of the connecting pipe ensures that the outer surface of the outer oiling pipe is always covered with anti-rust oil, so as to carry out oiling work on the long steel strip in contact. Since the oil does not completely fill the interior of the outer oiling pipe, the outer oiling pipe will not be in contact with the outside air for a long time due to the penetration groove, thus preventing the internal oil from easily deteriorating. This effectively ensures the permeability of the penetration groove.
[0016] 4. The rust-preventive oil will drip onto the upper surface of the inclined guide plate, and then enter the oiling chamber along both sides of the upper surface of the inclined guide plate. When the rust-preventive oil flows, it will be detected by the oil detector directly opposite it. At this time, the oil detector will feed back to the control box through the upper control board. Then, the control box will activate the drainage component inside the oiling chamber through the control panel on the inner wall. Since the oil flows into the interior of the oiling chamber, it means that there is oil at the bottom of the oiling chamber that can be drawn by the internal transmission pipe. Therefore, the oil injection side cylinder and the control support plate will not perform useless extraction work due to insufficient oil, thus avoiding the problem of wasted energy consumption. Attached Figure Description
[0017] Figure 1 This is the front view of the present invention; Figure 2 This is a cross-sectional view of the present invention; Figure 3 This is a schematic diagram of the structure of the rolling component of the present invention; Figure 4 This is a cross-sectional view of the tape winding component of the present invention; Figure 5 This is a schematic diagram of the structure of the reflux component of the present invention; Figure 6 This is a cross-sectional view of the oiling component of the present invention; Figure 7 This is a schematic diagram of the drainage component of the present invention.
[0018] In the diagram: 1. Oiling machine housing; 2. Long steel belt; 3. Pressing and rolling components; 4. Oiling components; 5. Drainage components; 6. Return components; 7. Belt winding components; 11. Container housing; 12. Fan blades; 13. Internal monitoring plate; 14. Lower pressure roller; 15. Oiling chamber; 31. Oil suction roller; 32. Oil extraction pump; 33. Guide cylinder; 34. Oil discharge trough; 35. Sliding ball bearing; 36. Fixed rotating machine; 37. Pressurizing rotating box; 38. Push compression rod 71. Independent storage shell; 72. Top flip cover; 73. Suspension motor; 74. Winding roller; 75. Buffer frame rod; 61. Control base box; 62. Inner wall control console; 63. Upper control panel; 64. Angled diversion plate; 65. Oil detector; 41. Inner guide pipe; 42. Outer oil coating pipe; 43. Permeation groove; 44. Transfer pipe; 45. Anti-permeation pipe; 51. Control support plate; 52. Oil injection side cylinder; 53. Inner transmission pipe; 54. External guide plate. Detailed Implementation
[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0020] Example 1, please refer to Figures 1-3 This invention provides a technical solution: a fully automatic alloy steel strip coating and winding machine, comprising: Oiling machine housing 1, with a tape reel component 7 installed on the left side of the oiling machine housing 1; Oiling casing 1 includes: The container housing 11 has a fan blade rotating plate 12 rotatably connected to the right side of its outer surface. The long steel strip 2 is set inside the container housing 11, and the left end of the long steel strip 2 is slidably connected to the inner wall of the winding component 7. The oiling chamber 15 is located at the bottom of the inner wall of the container housing 11 and is used to apply anti-rust oil to the outer surface of the long steel strip 2. The oiling chamber 15 is separated from the inner wall of the container housing 11 by a partition and is used to hold the anti-rust oil. The crushing component 3 is located on the left side of the inner wall of the container housing 11; The return component 6 is located at the lower part of the rolling component 3 and is used to guide the rust-preventive oil dripping from the rolling component 3 back into the oiling chamber 15. The rolling component 3 includes: The oil suction roller 31 has oil suction grooves evenly opened in its inner cavity, and the oil suction grooves extend to the outside of the oil suction roller 31. The oil pump 32 is symmetrically arranged on both sides of the oil suction drum 31, and the oil inlet of the oil pump 32 is inserted into the axis of the inner cavity of the oil suction drum 31. When the oil pump 32 pressurizes the inside of the oil suction drum 31, the rust removal oil attached to the outer surface can be extracted through the oil suction groove of the oil suction drum 31. The guide cylinder 33 has oil drain grooves 34 evenly distributed in its inner cavity. One end of the guide cylinder 33 is inserted into the oil drain port of the oil pump 32, and the other end of the guide cylinder 33 is fitted with a sliding ball 35. The outer surface of the sliding ball 35 is slidably connected to the inner wall of the container housing 11. The rust removal oil pressurized into the guide cylinder 33 will drip through the oil drain port of the guide cylinder 33 to the lower return component 6, and then be guided into the oiling chamber 15.
[0021] The rolling component 3 also includes: The fixed rotating machine 36 has its outer surface fixedly connected to the inner wall of the container housing 11; The pressure rotating box 37 has its outer surface of the rotating shaft of the fixed rotating machine 36 inserted into the inner cavity of the fixed rotating machine 36; The push compression rod 38 is inserted into the inner cavity of the pressurizing rotary box 37 at one end and into the outer surface of the extraction oil pump 32 at the other end. The pressurizing rotary box 37 can push the extraction oil pump 32 to move by pressurizing the inside of the push compression rod 38, so that the oil suction roller 31 sweeps across the outer surface of the long steel belt 2.
[0022] The oiling casing 1 also includes: The internal monitoring plate 13 monitors the rust-preventive oil inside the oiling chamber 15 by means of a bayonet and the right side of the inner cavity of the container housing 11. The lower pressure roller 14 has two sides that are inserted into the top of the inner wall of the container housing 11 through the lower pressure arm, and the outer surface of the lower pressure roller 14 extends into the interior of the oiling chamber 15. The outer surface of the lower pressure roller 14 is pressed against the outer surface of the long steel strip 2. The oiling component 4 is located inside the oiling chamber 15. The oiling component 4 is symmetrically provided with drainage components 5 on both sides. The drainage components 5 are used to pressurize the anti-rust oil inside the oiling chamber 15 into the oiling component 4.
[0023] Before using the device, first open the front shell plate of the container housing 11, and place the long steel strip 2 according to... Figure 2The sequence shown passes through the oiling chamber 15 and the rolling component 3 from right to left. Then, the left end of the long steel strip 2 is engaged inside the winding drum 74. After the preparation work is completed, the front shell plate of the container housing 11 is closed and the device is started to work.
[0024] The winding component 7 continuously winds the long steel strip 2, allowing the long steel strip 2 to slide continuously from right to left inside the device. When the long steel strip 2 passes through the oiling chamber 15, a large amount of anti-rust oil is applied to its lower surface by the oiling component 4 below. Then the long steel strip 2 slides out from inside the oiling chamber 15.
[0025] As the long steel strip 2 is about to slide out of the oiling machine housing 1, it will pass the location of the pressing and rolling component 3. At this time, the pressing and rolling component 3 will work, and the pressure rotating boxes 37 on both sides will pressurize the inside of the push compression rod 38 to push the corresponding oil extraction pump 32 and oil suction roller 31, so that the oil suction rollers 31 on both sides are in contact with the outer surface of the long steel strip 2. Then, the fixed rotating machine 36 twists the push compression rod 38 towards the side closer to the oiling chamber 15, so that the oil suction rollers 31 on both sides roll along the outer surface of the long steel strip 2. Then, the oil suction roller 31 is retracted, causing it to roll back and forth to spread the rust-preventive oil evenly on the outer surface of the long steel strip 2. Because the oil pump 32 exerts a suction force on the oil suction roller 31, the oil suction roller 31 can suck away the excess rust-preventive oil and transfer it to the inside of the guide cylinder 33. With the inertial effect generated by the movement of the oil suction roller 31, the rust-preventive oil inside the guide cylinder 33 drips down through the groove of the guide cylinder 33 into the return component 6, and then is transferred to the oiling chamber 15 to achieve the recycling work.
[0026] After the long steel strip 2, coated with anti-rust oil, is wound onto the outer surface of the winding drum 74, the operator opens the upper cover 72, takes out the suspension motor 73, removes the winding drum 74, and obtains the wound long steel strip 2.
[0027] Example 2, please refer to Figures 1-7 The present invention provides a technical solution: based on embodiment 1, the tape winding component 7 includes: Independent storage shell 71, with buffer rods 75 evenly arranged at the bottom of the independent storage shell 71, and the end of the buffer rod 75 away from the independent storage shell 71 is inserted into the outer surface of the oiling box 1. The upper flip cover 72 has a traction handle inserted into its upper surface, and the left end of the upper flip cover 72 is rotatably connected to the outer surface of the independent storage shell 71 via a pivot. The suspension motor 73 has its bottom end inserted into the bottom of the inner wall of the independent storage shell 71. A winding roller 74 is inserted into the outer surface of the shaft of the suspension motor 73. The outer surface of the winding roller 74 is inserted into the left end of the long steel strip 2 through a clamp.
[0028] The return flow component 6 includes: The inclined guide plate 64 has its right end inserted into the left side of the inner cavity of the oiling chamber 15 through the oil inlet groove, and the left side of the outer surface of the inclined guide plate 64 is engaged with the inner wall of the container housing 11. The upper control plate 63 has its outer surface inserted into the inner cavity of the inclined guide plate 64 via a slot. Oil detectors 65 are symmetrically arranged on both sides of the upper control plate 63. Rust-removing oil dripping onto the upper surface of the inclined guide plate 64 will flow from top to bottom along the inclined surface of the inclined guide plate 64. At this time, the upper control plate 63 observes the state of oil flow through the oil detectors 65 on both sides.
[0029] The return flow component 6 also includes: The bottom of the control base box 61 is fixedly connected to the bottom of the inner wall of the container housing 11, and the top of the control base box 61 is fixedly connected to the bottom of the upper control plate 63. The inner wall control console 62 is located at the bottom of the control box 61. The two sides of the inner wall control console 62 are connected to the inner cavity of the oiling chamber 15 through the external guide plate 54.
[0030] Oiling component 4 includes: An inner guide tube 41 is provided with a connecting tube 44 evenly arranged in the inner cavity of the inner guide tube 41, and an anti-permeability tube 45 is sleeved at the bottom end of the connecting tube 44. The outer oil-coating pipe 42 has evenly distributed penetration grooves 43 in its inner cavity. The axial part of the inner wall of the outer oil-coating pipe 42 is sleeved with the outer surface of the inner guide pipe 41, and both ends of the inner guide pipe 41 extend to the outside of the outer oil-coating pipe 42. After the inner guide pipe 41 is filled with rust-removing oil through the adapter pipe 44, the outer oil-coating pipe 42 can coat the outer surface of the long steel strip 2 it contacts with rust-removing oil through its penetration grooves 43.
[0031] Drainage component 5 includes: The oil injection side cylinder 52 is symmetrically arranged at both ends of the inner guide pipe 41. The middle of the inner cavity of the oil injection side cylinder 52 is evenly provided with a drain port, and the drain port extends into the interior of the oil injection side cylinder 52.
[0032] Drainage component 5 also includes: Control support plate 51, the top of control support plate 51 is inserted into the inner cavity of oil injection side cylinder 52, and the outer surface of control support plate 51 is inserted into the end of external guide plate 54 away from the inner wall control console 62. The inner transmission pipe 53 is located in the middle of the inner cavity of the control support plate 51. The bottom end of the inner transmission pipe 53 extends to the outside of the control support plate 51, and the top end of the inner transmission pipe 53 is inserted into the inner cavity of the oil injection side cylinder 52. The inner wall control console 62 starts the control support plate 51 through the external guide plate 54. The control support plate 51 delivers the rust removal oil inside the oiling chamber 15 to the oil injection side cylinder 52 through the bottom end of the inner transmission pipe 53. Then, the oil injection side cylinder 52 injects the rust removal oil into the inner guide pipe 41.
[0033] The rust-preventive oil drips onto the upper surface of the inclined guide plate 64 and then enters the oiling chamber 15 along both sides of the upper surface of the inclined guide plate 64. When the rust-preventive oil flows, it is detected by the oil detector 65. At this time, the oil detector 65 feeds back to the control box 61 through the upper control plate 63. Then, the control box 61 activates the guide component 5 inside the oiling chamber 15 through the inner wall control panel 62. Since the oil flows into the interior of the oiling chamber 15, it means that there is oil at the bottom of the oiling chamber 15 that can be drawn by the inner transmission pipe 53. Therefore, the oil injection side cylinder 52 and the control support plate 51 will not perform useless extraction work due to insufficient oil, thus avoiding the problem of wasted energy consumption.
[0034] The oil inside the oiling chamber 15 is drawn from bottom to top into the inner guide pipe 41 through the oil injection side cylinder 52, and then pumped into the outer oiling pipe 42 through the transfer pipe 44. Since the top of the transfer pipe 44 is directly facing the inner wall of the groove of the outer oiling pipe 42, the sprayed rust-preventive oil will be more evenly distributed on the outer surface of the outer oiling pipe 42, instead of directly filling the inside of the outer oiling pipe 42 and causing the problem of excessive oil application in the outer oiling pipe 42. The outer oiling pipe 42 applies rust-preventive oil to the long steel strip 2 it contacts through the groove at any time. When the transfer pipe 44 slides closer to the inner wall of the outer oiling pipe 42 due to the hydraulic pressure of the oil, the anti-permeability pipe 45 sleeved at its bottom end will also be further compressed, thereby preventing the oil from directly permeating into the inside of the outer oiling pipe 42 from the gap between the transfer pipe 44 and the groove of the inner guide pipe 41.
[0035] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A fully automatic alloy steel strip coating and winding machine, comprising: Oiling machine housing (1), with a tape reel component (7) provided on the left side of the oiling machine housing (1); The oiling machine housing (1) is characterized by comprising: The container housing (11) has a fan blade rotating plate (12) rotatably connected to the right side of the outer surface of the container housing (11). A long steel strip (2) is set inside the container housing (11), and the left end of the long steel strip (2) is slidably connected to the inner wall of the winding component (7); The oiling chamber (15) is located at the bottom of the inner wall of the container housing (11) and is used to apply anti-rust oil to the outer surface of the long steel strip (2). The crushing component (3) is located on the left side of the inner wall of the container housing (11); A return component (6) is provided at the lower part of the rolling component (3) to guide the anti-rust oil dripping from the rolling component (3) back into the oiling chamber (15); The rolling component (3) includes: Oil suction roller (31), the inner cavity of the oil suction roller (31) is evenly provided with oil suction grooves, and the oil suction grooves extend to the outside of the oil suction roller (31); The oil pump (32) is symmetrically arranged on both sides of the oil suction drum (31), and the oil inlet of the oil pump (32) is inserted into the center of the inner cavity of the oil suction drum (31). The guide cylinder (33) has oil drain grooves (34) evenly distributed in its inner cavity. One end of the guide cylinder (33) is inserted into the oil drain port of the oil pump (32), and the other end of the guide cylinder (33) is fitted with a sliding ball (35), and the outer surface of the sliding ball (35) is slidably connected to the inner wall of the container housing (11).
2. The fully automatic alloy steel strip winding machine according to claim 1, characterized in that: The rolling component (3) also includes: A fixed rotating machine (36) is fixedly connected to the inner wall of the container housing (11) on its outer surface. The outer surface of the rotating shaft of the fixed rotating machine (36) is inserted into the inner cavity of the fixed rotating machine (36); The push compression rod (38) is inserted into the inner cavity of the pressurized rotating box (37) at one end and into the outer surface of the oil pump (32) at the other end.
3. The fully automatic alloy steel strip winding machine according to claim 2, characterized in that: The oiling housing (1) also includes: The internal monitoring plate (13) monitors the rust-preventive oil inside the oiling chamber (15) through the bayonet and the right side of the inner cavity of the container housing (11); The lower pressure roller (14) is inserted into the top of the inner wall of the container housing (11) on both sides through the lower pressure arm, and the outer surface of the lower pressure roller (14) extends into the interior of the oiling chamber (15). The outer surface of the lower pressure roller (14) is pressed against the outer surface of the long steel strip (2). An oiling component (4) is installed inside the oiling chamber (15). Drainage components (5) are symmetrically arranged on both sides of the oiling component (4). The drainage components (5) are used to pressurize the rust-preventive oil inside the oiling chamber (15) into the oiling component (4).
4. The fully automatic alloy steel strip winding machine according to claim 1, characterized in that: The tape winding component (7) includes: Independent storage shell (71), the bottom of the independent storage shell (71) is evenly provided with buffer frame rods (75), and the end of the buffer frame rod (75) away from the independent storage shell (71) is inserted into the outer surface of the oiling machine box (1); The upper flip cover (72) has a traction handle inserted into its upper surface, and the left end of the upper flip cover (72) is rotatably connected to the outer surface of the independent storage shell (71) through a pivot. The suspension motor (73) has its bottom end inserted into the bottom of the inner wall of the independent storage shell (71). A winding roller (74) is inserted into the outer surface of the shaft of the suspension motor (73). The outer surface of the winding roller (74) is inserted into the left end of the long steel strip (2) by a clamp.
5. The fully automatic alloy steel strip winding machine according to claim 3, characterized in that: The recirculation component (6) includes: The inclined guide plate (64) is inserted into the left side of the oiling chamber (15) through the oil inlet groove at its right end. The left side of the outer surface of the inclined guide plate (64) is engaged with the inner wall of the container housing (11). The upper control plate (63) has its outer surface inserted into the inner cavity of the inclined flow guide plate (64) through a slot. Oil detectors (65) are symmetrically arranged on both sides of the upper control plate (63).
6. The fully automatic alloy steel strip winding machine according to claim 5, characterized in that: The reflux component (6) also includes: The bottom of the control base box (61) is fixedly connected to the bottom of the inner wall of the container housing (11), and the top of the control base box (61) is fixedly connected to the bottom of the upper control plate (63). The inner wall control console (62) is located at the bottom of the control base box (61), and the two sides of the inner wall control console (62) are connected to the inner cavity of the oiling chamber (15) through the external guide plate (54).
7. The fully automatic alloy steel strip winding machine according to claim 6, characterized in that: The oiling component (4) includes: An inner guide tube (41) is provided with a connecting tube (44) evenly arranged in the inner cavity of the inner guide tube (41), and an anti-permeability tube (45) is sleeved at the bottom end of the connecting tube (44). An externally coated oil pipe (42) has a uniformly provided penetration groove (43) in its inner cavity. The axial part of the inner wall of the externally coated oil pipe (42) is sleeved with the outer surface of the inner guide pipe (41), and both ends of the inner guide pipe (41) extend to the outside of the externally coated oil pipe (42).
8. The fully automatic alloy steel strip winding machine according to claim 7, characterized in that: The drainage component (5) includes: The oil injection side cylinder (52) is symmetrically arranged at both ends of the inner guide pipe (41). The middle part of the inner cavity of the oil injection side cylinder (52) is uniformly provided with a drainage port, and the drainage port extends into the interior of the oil injection side cylinder (52).
9. The fully automatic alloy steel strip winding machine according to claim 8, characterized in that: The drainage component (5) also includes: Control support plate (51), the top end of the control support plate (51) is inserted into the inner cavity of the oil injection side cylinder (52), and the outer surface of the control support plate (51) is inserted into the end of the external guide plate (54) away from the inner wall control console (62). An inner transmission pipe (53) is located in the middle of the inner cavity of the control support plate (51). The bottom end of the inner transmission pipe (53) extends to the outside of the control support plate (51), and the top end of the inner transmission pipe (53) is inserted into the inner cavity of the oil injection side cylinder (52).
Citation Information
Patent Citations
Full -automatic alloy steel strip coils that paints is around device
CN208771769U