Oiling device

By designing the oil coating part and oil supply components of the oil coating device, the automatic oil coating operation of wind power anchor bolts is realized, the problem of inefficient manual oil coating is solved, the oil coating efficiency is improved, and the grease is effectively managed, reducing waste and pollution.

CN222999041UActive Publication Date: 2025-06-20NINGBO DAZHI MACHINE TECH CO LTD
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Patent Information

Application Number
CN202421571767.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-04
Publication Date
2025-06-20
Estimated Expiration
2034-07-04

AI Technical Summary

Technical Problem

Wind power anchor bolts require manual oiling, resulting in low oiling efficiency and cannot meet the rapidly expanding production needs of wind power equipment.

Method used

An oil coating device is designed, including an oil coating part and an oil supply assembly. The oil coating part has a hollow oil coating space and a channel. The oil supply assembly conveys grease to the oil coating channel through the oil inlet hole to realize automatic oil coating operation of the oil coating object.

Benefits of technology

Through automated oil coating operations, the oil coating efficiency is improved, the time and cost of manual operation is reduced, and the excess oil is effectively managed and collected through the setting of the oil collection tank, avoiding waste of oil and environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an oil coating device, which comprises an oil coating part, a first oil coating part, a second oil coating part, a second oil coating part and a third oil coating part, the oil coating part is provided with a hollow oil coating space, and the two ends of the oil coating part are respectively provided with a first inlet and a first outlet; an oil coating channel for accommodating an oil coating object is formed among the first inlet, the oil coating space and the first outlet, and the oil coating part is provided with an oil inlet hole communicated with the oil coating channel; and the oil supply assembly communicates with the oil inlet hole so as to convey oil to the oil coating channel. The wind power anchor bolt oiling device solves the problem that the oiling efficiency is low due to the fact that wind power anchor bolts need to be oiled manually.
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Description

Technical Field

[0001] The utility model relates to the technical field of oiling, and particularly to an oiling device. Background Art

[0002] In the field of wind power equipment, as an important fixing component, the stability and durability of wind power anchor bolts are crucial for the safe operation of wind power equipment. To ensure that wind power anchor bolts are not corroded and oxidized, oiling maintenance is an essential operation.

[0003] In the prior art, the oiling operation of wind power anchor bolts needs to be carried out manually, but the efficiency of manual oiling is low. Today, with the increasing scale of wind power equipment, the efficiency of manual oiling can no longer meet the rapid production needs. Summary of the Utility Model

[0004] The problem solved by the utility model is that the wind power anchor bolts need to be oiled manually, resulting in low oiling efficiency.

[0005] To solve the above problems, the utility model provides an oiling device, which includes: an oiling part with a hollow oiling space, and a first inlet and a first outlet are respectively arranged at both ends of the oiling part; an oiling channel for accommodating the object to be oiled is formed among the first inlet, the oiling space and the first outlet, and an oil inlet hole communicated with the oiling channel is arranged on the oiling part; a fuel supply assembly communicated with the oil inlet hole to convey grease to the oiling channel.

[0006] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: the oiling part has an oiling space, and the object to be oiled sequentially passes through the oiling channel in the order of the first inlet, the oiling space and the first outlet. When the object to be oiled enters the oiling space along the oiling channel, the fuel supply assembly conveys grease into the oiling channel through the oil inlet hole to oil the object to be oiled. Thus, the automatic oiling operation of the object to be oiled is realized through the oiling part, and the oiling efficiency is improved.

[0007] Furthermore, the oiling device includes: an oil collecting tank with an oil collecting space inside, and the oiling part is arranged in the oil collecting space; the oiling part is provided with an oil outlet hole communicated with the oiling space, and the oil outlet hole is used to discharge the redundant grease in the oiling space into the oil collecting space.

[0008] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: through the setting of the oil collecting tank, the redundant grease in the oiling process can be effectively collected and managed, and the redundant grease in the oiling space is discharged into the oil collecting space through the oil outlet hole, thereby avoiding the waste of grease and environmental pollution.

[0009] Furthermore, the oil collecting tank includes: a second inlet and a second outlet, and the axes of the second inlet, the oiling channel and the second outlet are the same.

[0010] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The second inlet, the second outlet and the axis of the oiling channel are the same, ensuring that the object to be oiled can enter the oil collecting space from the second inlet, undergo the oiling operation through the oiling channel, and finally leave the oil collecting tank from the second outlet.

[0011] Furthermore, the oil collecting tank includes an oil receiving part which is arranged outside the oil collecting tank and corresponds to the position of the second outlet.

[0012] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The oil receiving part is arranged outside the oil collecting tank and corresponds to the position of the second outlet, so that the grease dripping after the object to be oiled is oiled in the oiling channel can be collected by the oil receiving part and flow into the oil collecting tank, thereby preventing the grease from flowing to the outside of the oil collecting tank, avoiding the waste of grease, and ensuring the cleanliness of the working environment.

[0013] Furthermore, the oiling device includes an oil storage tank, and an oil collecting tank and an oil supply assembly are arranged at the upper end of the oil storage tank, and the oil supply assembly is communicated with the oil storage tank.

[0014] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: By providing the oil storage tank, the oiling device can independently store grease without frequently connecting to an external oil source, enhancing the independence and mobility of the oiling device, and enabling it to be flexibly used in different working environments.

[0015] Furthermore, a drain hole communicating with the oil collecting space is provided at the bottom end of the oil collecting tank, and the drain hole is communicated with the oil storage tank for transporting the grease collected by the oil collecting tank to the oil storage tank.

[0016] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The grease collected in the oil collecting tank is transported back to the oil storage tank through the drain hole, realizing the recycling of grease, reducing the waste of grease, and reducing the oiling cost.

[0017] Furthermore, the oil supply assembly includes an oil pump which is respectively communicated with the oil storage tank and the oil inlet hole for transporting the grease in the oil storage tank to the oil inlet hole.

[0018] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The oil pump transports the grease in the storage tank to the oil inlet hole, and then into the oiling channel to oil the oiling object, thereby improving the oiling efficiency and shortening the oiling time. By adjusting the working parameters of the oil pump, such as the pumping speed and pumping time, the amount of grease entering the oiling channel can be precisely controlled, thus ensuring the uniformity and consistency of the oiling effect. The pumping capacity of the oil pump can be adjusted according to the oiling requirements. For wind power anchor bolts or other oiling objects of different sizes and materials, the working parameters of the oil pump can be adjusted to adapt to different oiling requirements, ensuring the accuracy and reliability of the oiling effect.

[0019] Further, the oiling device includes: a cleaning component, which is arranged in the oil collecting space. The cleaning component is located between the second inlet and the first inlet and is used to clean the oiling object.

[0020] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The cleaning component can clean the oiling object before oiling, removing impurities such as oil stains and dust on the surface, and preparing for the subsequent oiling work. After passing through the cleaning component, the surface of the oiling object becomes clean and smooth, which is beneficial to the uniform distribution and adhesion of the grease, improving the uniformity and consistency of the oiling, and enhancing the durability and anti-corrosion performance of the oiling layer.

[0021] Further, the oiling part includes: a flexible part, which is hermetically arranged at both ends of the oiling part provided with the first inlet and the first outlet, and corresponds to the positions of the first inlet and the first outlet; wherein, when the oiling object passes through the first inlet or the first outlet, at least part of the flexible part opens to enable the oiling object to pass through the flexible part.

[0022] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: The flexible part seals the oiling space, so that the grease will gather in the oiling space. When the oiling object enters the oiling space along the oiling channel, the oiling object is completely immersed in the grease, thus realizing the full immersion of the oiling object, and solving the problem of uneven coating that may occur during the oiling process of the oiling object.

[0023] Further, the oil outlet hole is arranged at the upper end of the oiling part.

[0024] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: Arranging the oil outlet hole at the upper end of the oiling part avoids the grease flowing from the oil outlet hole to the oil collecting space when immersing the oiling object. In addition, by adjusting the height of the oil outlet hole, the height of the grease in the oiling part can be controlled to adapt to oiling objects of different sizes.

[0025] After adopting the technical solution of the present utility model, the following technical effects can be achieved:

[0026] (1)When the object to be oiled enters the oiling space along the oiling channel, the oil supply assembly conveys grease into the oiling channel through the oil inlet hole to oil the object to be oiled. Thus, the automatic oiling operation of the object to be oiled is realized through the oiling part, and the oiling efficiency is improved.

[0027] (2)Through the setting of the oil collecting tank, the excess grease during the oiling process can be effectively collected and managed, and the excess grease in the oiling space is discharged to the oil collecting space through the oil outlet hole, thereby avoiding the waste of grease and environmental pollution. Description of the Drawings

[0028] Figure 1 is a schematic structural diagram of the oiling device provided by the embodiment of the present invention;

[0029] Figure 2 is a schematic structural diagram of the oiling device provided by the embodiment of the present invention with the oil collecting tank cover hidden;

[0030] Figure 3 is a schematic structural diagram of the oiling part and the oil collecting tank provided by the embodiment of the present invention.

[0031] Description of the Reference Numerals:

[0032] 100, oiling part; 110, first inlet; 120, first outlet; 130, oil inlet hole; 140, oil outlet hole; 200, oil supply assembly; 210, oil pump; 300, oil collecting tank; 310, oil collecting space; 320, second inlet; 330, second outlet; 340, oil receiving part; 400, oil storage tank. Detailed Embodiments

[0033] In order to make the above objects, features, and advantages of the present invention more obvious and understandable, the following detailed description of the specific embodiments of the present invention will be given with reference to the accompanying drawings.

[0034] As Figure 1 and Figure 2 shown, this embodiment provides an oiling device, which includes: an oiling part 100, the oiling part 100 has a hollow oiling space, and the two ends of the oiling part 100 are respectively provided with a first inlet 110 and a first outlet 120; a first inlet 110, the oiling space, and a first outlet 120 form an oiling channel for accommodating the object to be oiled, and the oiling part 100 is provided with an oil inlet hole 130 communicating with the oiling channel; an oil supply assembly 200, the oil supply assembly 200 is communicated with the oil inlet hole 130 to convey grease to the oiling channel.

[0035] Specifically, the object to be oiled is a wind power anchor bolt, and the oiling part 100 is used to perform an oiling operation on the object to be oiled. The oiling part 100 has a hollow oiling space. The oil inlet hole 130 is arranged at the upper end of the oiling part 100 and corresponds to the position of the oiling channel. The oil supply assembly 200 transports grease into the oiling channel through the oil inlet hole 130, and the grease flows from the oil inlet hole 130 into the lower oiling channel.

[0036] Specifically, when performing the oiling operation, the object to be oiled enters the oiling space along the oiling channel. At this time, the oil supply assembly 200 is controlled to transport grease to the oiling channel, and the grease flows out from the oil inlet hole. When the object to be oiled passes through the oil inlet hole, the grease will be smeared on the surface of the object to be oiled, thus completing the oiling operation.

[0037] It should be noted that in order to ensure that the surface of the object to be oiled can be evenly smeared with grease, during the transportation of the object to be oiled, the object to be oiled can be rotated around the axis. Specifically, a transportation device is arranged outside the oiling device. The transportation device transports the object to be oiled into the oiling channel and at the same time drives the object to be oiled to rotate around the axis.

[0038] As Figure 2 shown, further, the oiling device includes: an oil collecting tank 300. The oil collecting tank 300 has an oil collecting space 310, and the oiling part 100 is arranged in the oil collecting space 310; the oiling part 100 is provided with an oil outlet hole 140 communicating with the oiling space, and the oil outlet hole 140 is used to discharge the excess grease in the oiling space into the oil collecting space 310.

[0039] Specifically, the oil collecting tank 300 has an oil collecting space 310, and the oiling part 100 is arranged in the oil collecting space 310 through a bracket. The oil collecting tank 300 is used to collect the grease flowing out from the oil outlet hole 140 of the oiling part 100 and the grease flowing down after the object to be oiled is oiled. After the object to be oiled completes the oiling operation and exits from the first outlet 120 of the oiling part 100, the excess grease on the object to be oiled will flow into the oil collecting space 310, thereby collecting the excess grease.

[0040] As Figure 2 and Figure 3 shown, further, the oil collecting tank 300 includes: a second inlet 320 and a second outlet 330. The axes of the second inlet 320, the oiling channel, and the second outlet 330 are the same.

[0041] Specifically, the object to be oiled enters the oil collecting space 310 along the second inlet 320, then enters the oiling space from the first inlet 110 for the oiling operation, and then the object to be oiled leaves the oil collecting tank from the first outlet 120 and the second outlet 330.

[0042] Further, the oil collecting tank 300 includes: an oil receiving part 340 which is arranged outside the oil collecting tank 300 and corresponds to the position of the second outlet 330.

[0043] Specifically, the oil receiving part 340 is funnel-shaped and corresponds to the position of the second outlet 330. After the oiling object completes the oiling operation and exits from the oil collecting tank 300, the grease flowing down from the oiling object will flow onto the oil receiving part 340, and the grease collected by the oil receiving part 340 will flow back into the oil collecting space 310, thus preventing the grease from flowing to the outside of the oil collecting tank.

[0044] Further, the oiling device includes: an oil storage tank 400, with an oil collecting tank 300 and an oil supply component 200 arranged at the upper end of the oil storage tank 400, and the oil supply component 200 is communicated with the oil storage tank 400.

[0045] Further, a drain hole communicating with the oil collecting space 310 is arranged at the bottom end of the oil collecting tank 300, and the drain hole is communicated with the oil storage tank 400 for transporting the grease collected by the oil collecting tank 300 into the oil storage tank 400.

[0046] Specifically, the oil collecting tank 300 transports the grease collected in the oil collecting space 310 back to the oil storage tank 400 through the drain hole, thus realizing the recycling of the grease.

[0047] Further, the oil supply component 200 includes: an oil pump 210 which is respectively communicated with the oil storage tank 400 and the oil inlet hole 130 for transporting the grease in the oil storage tank 400 to the oil inlet hole 130.

[0048] Further, the oiling device includes: a cleaning component which is arranged in the oil collecting space 310, and the cleaning component is located between the second inlet 320 and the first inlet 110 for cleaning the oiling object.

[0049] Specifically, the cleaning component is a jet gun which is arranged in the oil collecting space 310 between the second inlet 320 and the first inlet 110. When the oiling object enters the oil collecting space 310 from the second inlet 320, the jet gun jets air on the surface of the oiling object to remove stains, dust, etc. on the surface of the oiling object, preparing for the subsequent oiling work.

[0050] Further, the oiling part 100 includes: a flexible part which is hermetically arranged at both ends of the oiling part 100 provided with the first inlet 110 and the first outlet 120 and corresponds to the positions of the first inlet 110 and the first outlet 120; wherein, when the oiling object passes through the first inlet 110 or the first outlet 120, at least part of the flexible part opens to enable the oiling object to pass through the flexible part.

[0051] It should be noted that by setting flexible members at both ends of the oiling part 100, it is ensured that grease will not leak from the first inlet 110 or the first outlet 120 during the oiling process. The flexible members seal the oiling space, causing the grease to accumulate in the oiling space. When the object to be oiled enters the oiling space along the oiling channel, the object to be oiled is completely immersed in the grease, thus achieving sufficient oil immersion of the object to be oiled and solving the problem of uneven coating during the oiling process of the object to be oiled.

[0052] Furthermore, the oil outlet hole 140 is provided at the upper end of the oiling part 100.

[0053] It should be noted that the flexible members seal the oiling space, causing the grease to accumulate in the oiling space. To prevent the grease from flowing out through the oil outlet hole 140, the oil outlet hole 140 is provided at the upper end of the oiling part 100, avoiding the situation where the grease flows into the oil collecting space 310 when oiling the object to be oiled. In addition, by adjusting the height of the oil outlet hole 140, the height of the grease in the oiling part 100 can be controlled, thereby adapting to objects to be oiled of different sizes.

[0054] Although the present utility model is disclosed as above, the present utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the scope defined by the claims.

Claims

1. An oiling device, characterized in that: The oiling device comprises: An oil coating portion (100), the oil coating portion (100) having a hollow oil coating space, and two ends of the oil coating portion (100) are respectively provided with a first inlet (110) and a first outlet (120); An oiling passage for accommodating an oiling object is formed between the first inlet (110), the oiling space and the first outlet (120), and the oiling portion (100) is provided with an oil inlet hole (130) communicating with the oiling passage; An oil supply assembly (200), the oil supply assembly (200) being in communication with the oil inlet hole (130) so as to transport grease to the oiling channel.

2. The oil coating device according to claim 1, characterized in that: The oiling device comprises: An oil collecting box (300), wherein the oil collecting box (300) has an oil collecting space (310), and the oil coating portion (100) is arranged in the oil collecting space (310); The oil coating portion (100) is provided with an oil outlet hole (140) connected to the oil coating space, and the oil outlet hole (140) is used to discharge excess grease in the oil coating space to the oil collecting space (310).

3. The oil coating device according to claim 2, characterized in that: The oil collecting tank (300) comprises: A second inlet (320) and a second outlet (330), wherein the axes of the second inlet (320), the oil coating channel and the second outlet (330) are the same.

4. The oil coating device according to claim 3, characterized in that: The oil collecting tank (300) comprises: An oil receiving portion (340), the oil receiving portion (340) being arranged outside the oil collecting tank (300) and corresponding to the position of the second outlet (330).

5. The oil coating device according to claim 2, characterized in that: The oiling device comprises: An oil storage tank (400), wherein the oil collecting tank (300) and the oil supply assembly (200) are provided at the upper end of the oil storage tank (400), and the oil supply assembly (200) is connected to the oil storage tank (400).

6. The oil coating device according to claim 5, characterized in that: An oil drain hole in communication with the oil collecting space (310) is provided at the bottom end of the oil collecting tank (300); the oil drain hole is in communication with the oil storage tank (400) and is used to transport the grease collected by the oil collecting tank (300) to the oil storage tank (400).

7. The oil coating device according to claim 5, characterized in that: The oil supply assembly (200) comprises: An oil pump (210), the oil pump (210) being respectively connected to the oil storage tank (400) and the oil inlet hole (130), and being used to transport the grease in the oil storage tank (400) to the oil inlet hole (130).

8. The oil coating device according to claim 3, characterized in that: The oiling device comprises: A cleaning component is disposed in the oil collecting space (310), and the cleaning component is located between the second inlet (320) and the first inlet (110), and is used for cleaning the oiled object.

9. The oil coating device according to claim 2, characterized in that: The oil coating portion (100) comprises: A flexible member, the flexible member being sealingly arranged at two ends of the oil coating portion (100) provided with a first inlet (110) and a first outlet (120), and corresponding to the positions of the first inlet (110) and the first outlet (120); Wherein, when the oiled object passes through the first inlet (110) or the first outlet (120), at least part of the flexible member is opened to allow the oiled object to pass through the flexible member.

10. The oil coating device according to claim 9, characterized in that: The oil outlet hole (140) is arranged at the upper end of the oil coating portion (100).

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