Low-carbon anti-corrosion wood pole deep oil immersion equipment
Through the design of the rotating cylinder and inner top airbag, the amount of oil and the amount of oil is controlled and the oil is rotating and immersed, the problems of oil waste and excessive oil immersion in the low-carbon anti-corrosion wood pole oil immersion equipment are solved, and efficient oil immersion effect and oil reuse are achieved.
Patent Information
- Application Number
- CN202510786061.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2025-08-15
AI Technical Summary
The existing low-carbon anti-corrosion wood pole oil-immersion equipment has problems of waste of oil and excessive oil immersion, which affects the effectiveness of wood pole use.
The rotary cylinder structure is adopted, combined with the inner top airbag and the sealing module, the gap between the inner top airbag and the wooden pole is adjusted through the air pump, the amount of oil is controlled, and the driving motor is used to drive the rotary cylinder to rotate to ensure the susceptibility of oil immersion.
It reduces oil waste, prevents excessive infiltration of oil, achieves the effect of fully immersing oil on the wooden pole, and improves the reuse rate of oil.
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Figure CN120481020A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of oil immersion equipment, and in particular relates to a low-carbon anti-corrosion wooden pole deep oil immersion equipment. Background Art
[0002] For low-carbon anti-corrosion wood poles, in order to ensure their long-term use effect, the wood poles will be immersed in oil. In an oil immersion device for producing anti-corrosion oil wood poles with the published authorization announcement number CN217195906U, in order to ensure the sufficient oil immersion of the wood poles, it "pushes the wood poles into the cage, and the two sets of second drive cylinders are synchronously shortened, and the cage is immersed in the oil immersion pool. The drive motor drives one set of limit rollers to rotate, thereby rotating the cage. The wood poles in the cage rotate with the cage, and the wood poles immersed in the oil immersion pool can fully contact with the anti-corrosion oil. The contact area between the wood pole and the anti-corrosion oil is increased, which provides a guarantee for the anti-corrosion oil coating effect of the wood pole. In the existing technology, the wood pole is immersed in oil through an immersion tank. Each time the oil is immersed, a lot of oil needs to be put in the immersion tank, and then the wood pole is immersed in the oil. The oil in the immersion tank will be used continuously. However, after the oil has soaked the wood pole, the debris separated from the wood pole will contaminate the oil, which is not conducive to the subsequent reuse of the oil, resulting in a waste of oil. In addition, a large amount of oil soaking the wood pole will cause the wood pole to be over-immersed in oil, which affects the subsequent use effect of the wood pole. Summary of the Invention
[0003] The purpose of the present invention is to provide a low-carbon antiseptic wood pole deep oil immersion equipment to solve the problems raised in the above background technology.
[0004] To achieve the above object, the present invention provides the following technical solutions:
[0005] The cam is secured to the outer wall of the cylinder and is secured to the outer wall of the cylinder with a secure connection to the top of the cylinder. The cam is secured to the outer wall of the cylinder with a secure connection to the top of the cylinder. The cam is secured to the outer wall of the cylinder with a secure connection to the top of the cylinder.
[0006] Preferably, a mounting plate is connected to the top of the outer wall of the rotating cylinder, an air pump is connected to the top of the mounting plate through a positioning bolt, a conduit is connected to the bottom of the air pump, the bottom end of the conduit passes through the rotating cylinder and is connected to the inner top airbag, the air pump is turned on, and gas is filled into the inner top airbag through the conduit until the size of the gap between the outer wall of the wooden pole and the inner top airbag matches the amount of oil required to be input.
[0007] Preferably, the rotating module also includes a first-level annular inner groove opening and a first-level rotating roller. The first-level annular inner groove opening is opened in the support member, and the first-level annular inner groove opening is connected to the circular groove opening. The circumferential array of the first-level rotating roller is arranged in the first-level annular inner groove opening, and both ends of the first-level rotating roller are connected to the support member bearings, which supports the rotating cylinder without affecting the rotation effect of the rotating cylinder.
[0008] Preferably, the rotating module also includes an external ring, a secondary annular inner groove and a secondary rotating roller. The external ring is sleeved on the end of the outer side of the rotating cylinder away from the support member. The secondary annular inner groove is opened in the middle of the inner wall of the external ring. The circumferential array of the secondary rotating roller is arranged in the secondary annular inner groove, and the two ends of the secondary rotating roller are connected to the external ring bearings, which supports the rotating cylinder without affecting the rotation effect of the rotating cylinder.
[0009] Preferably, the rotating module also includes a fixed plate and a bottom support plate. The fixed plate is connected to the outer wall of the support in a circular array, and one end of the fixed plate is connected to the support through a positioning bolt, and the other end of the fixed plate is connected to the external ring through a positioning bolt. The bottom support plate is symmetrically connected to both sides of the outer wall of the support, and the bottom support plate is connected to the external ring to connect the support and the external ring. At the same time, the bottom support plate also provides support for the equipment.
[0010] Preferably, the blocking module also includes an arc-shaped plate, a circular plate, a first-level blocking net and a protrusion. The arc-shaped plate and the first-level blocking net are symmetrically connected to the side opposite to the connecting plate and the blocking cover, and the arc-shaped plate and the first-level blocking net are cross-arranged. The arc-shaped plate is connected to the first-level blocking net, the circular plate is connected to the end opposite to the arc-shaped plate and the connecting plate, the first-level blocking net is connected to the circular plate, and the protrusion is connected to the middle part of the side of the circular plate away from the arc-shaped plate, and the protrusion has a hemispherical structure. The first-level solenoid valve is opened to guide the oil through the liquid inlet pipe to the space between the connecting slot and the circular plate, and flows through the first-level blocking net to the gap between the outer wall of the wooden pole and the inner top airbag, and the first-level blocking net can prevent wooden pole debris from entering the liquid inlet pipe. The setting of the protrusion prevents the circular plate from contacting the wooden pole and affecting the oil immersion effect of the wooden pole.
[0011] Preferably, the sealing module also includes a sealing ring, a round rod and a reinforcement ring. The sealing ring is sleeved and connected to the outer wall of the sealing cover. The circular array of round rods is connected to one end of the sealing ring close to the support member. The sealing ring is connected to the end of the round rod opposite to the sealing cover, and the inner wall of the sealing ring and the inner wall of the reinforcement ring are both in contact with the rotating cylinder to enhance the sealing effect between the sealing cover and the rotating cylinder.
[0012] Preferably, the blocking module also includes a connecting slot, a secondary screen, a drain pipe and a secondary solenoid valve. The connecting slot is opened at the lower side of the blocking cover close to the rotating cylinder. The secondary screen is arranged in the connecting slot, and the secondary screen is connected to the blocking cover. The drain pipe is connected to the bottom end of the sealing ring, and the top of the drain pipe passes through the sealing ring and the blocking cover and is connected to the connecting slot. There is a gap between the drain pipe and the side of the secondary screen opposite to the rotating cylinder. The secondary solenoid valve is arranged on the drain pipe. After the oil immersion is completed, the secondary solenoid valve is opened to allow the oil on the outside of the wooden pole to enter the drain pipe through the connecting slot and flow out. The function of the secondary screen can prevent the wood chips in the oil from being discharged with the oil, thereby ensuring the reuse effect of the oil.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: when the present invention is in use, air is inflated into the inner top airbag through the air pump, thereby lifting the wooden pole and reducing the gap between the wooden pole and the inner top airbag, so that the subsequently injected oil is fully attached to the outer wall of the wooden pole, and the device is suitable for wooden poles of different diameters. Through the oil immersion device, the amount of oil injected for a single wooden pole immersion is reduced. At the same time, according to the depth to which the oil needs to be immersed in the wooden pole, the personnel set the amount of oil injected in advance, thereby reducing the waste of oil, and quantitatively injecting the oil, which can also effectively prevent the oil from excessively immersing in the wooden pole. The rotating cylinder is driven by the driving motor to rotate, thereby ensuring that the wooden pole in the rotating cylinder is fully immersed in oil. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the overall structure of a low-carbon anti-corrosion wooden pole deep oil immersion equipment.
[0015] Figure 2 This is a schematic diagram of the rear structure of a low-carbon anti-corrosion wooden pole deep oil immersion equipment.
[0016] Figure 3 This is a cross-sectional view of the support components of a low-carbon antiseptic wooden pole deep oil immersion device.
[0017] Figure 4 A schematic diagram of the bumps of a low-carbon anti-corrosion wood pole deep oil immersion equipment.
[0018] Figure 5 This is a schematic diagram of the connecting plates of a low-carbon anti-corrosion wooden pole deep oil immersion equipment.
[0019] Figure 6This is a cross-sectional view of the inner top airbag of a low-carbon anti-corrosion wooden pole deep oil immersion equipment.
[0020] In the figure: 1. Rotating cylinder; 2. Inner top airbag; 3. Rotating module; 31. Support member; 32. Circular notch; 33. Driving motor; 34. First-level annular inner notch; 35. First-level rotating roller; 36. External ring member; 37. Second-level annular inner notch; 38. Second-level rotating roller; 39. Fixed plate; 310. Bottom support plate; 4. Sealing module; 41. Sealing cover; 42. Connecting plate; 43. Liquid inlet pipe; 44. First-level solenoid valve; 45. Arc plate; 46. Circular plate; 47. First-level blocking net; 48. Bump; 49. Sealing ring; 410. Round rod; 411. Strengthening ring; 412. Connecting notch; 413. Second-level blocking net; 414. Drain pipe; 415. Second-level solenoid valve; 5. Mounting plate; 6. Air pump; 7. Conduit. DETAILED DESCRIPTION
[0021] Example 1
[0022] See also Figures 1-6 As shown, a low-carbon antiseptic wood pole deep oil immersion equipment includes a rotating cylinder 1, the inner wall of the rotating cylinder 1 is connected to an inner top airbag 2, a rotating module 3 is provided at one end of the outer side of the rotating cylinder 1, and a blocking module 4 is provided at the other end of the outer side of the rotating cylinder 1. The rotating module 3 includes a support 31, a circular notch 32 and a driving motor 33. The circular notch 32 is opened in the middle of one side of the support 31, and one end of the rotating cylinder 1 is arranged in the circular notch 32. The driving motor 33 is arranged in the middle of one end of the support 31 away from the rotating cylinder 1 through a positioning bolt. The output shaft of the driving motor 33 passes through the support 31 and is connected to the rotating cylinder 1. The middle part of one side of the rotating drum 1 is connected, and the blocking module 4 includes a blocking cover 41, a connecting plate 42, a liquid inlet pipe 43 and a first-level solenoid valve 44. The blocking cover 41 is connected to the end of the rotating drum 1 away from the support 31 through a positioning bolt, and the connecting plate 42 is connected to the middle part of one side of the blocking cover 41, and the connecting plate 42 is in the rotating drum 1. The liquid inlet pipe 43 and the first-level solenoid valve 44 are both arranged in the middle part of the side opposite to the blocking cover 41 and the connecting plate 42. One end of the liquid inlet pipe 43 passes through the blocking cover 41 and the connecting plate 42 in sequence, and the first-level solenoid valve 44 is arranged on the liquid inlet pipe 43.
[0023] refer to Figure 1-Figure 3 and Figure 6 As shown, a mounting plate 5 is connected to the top of the outer wall of the rotating cylinder 1, and an air pump 6 is connected to the top of the mounting plate 5 through a positioning bolt. A conduit 7 is connected to the bottom of the air pump 6. The bottom end of the conduit 7 passes through the rotating cylinder 1 and is connected to the inner top airbag 2. Turn on the air pump 6 and fill the inner top airbag 2 with gas through the conduit 7 until the size of the gap between the outer wall of the wooden pole and the inner top airbag 2 matches the amount of oil required to be input.
[0024] refer to Figure 1 and Figure 3 As shown, the rotating module 3 also includes a first-level annular inner groove opening 34 and a first-level rotating roller 35. The first-level annular inner groove opening 34 is opened in the support member 31, and the first-level annular inner groove opening 34 is connected to the circular groove 32. The first-level rotating roller 35 is arranged in a circular array in the first-level annular inner groove opening 34, and both ends of the first-level rotating roller 35 are connected to the bearings of the support member 31, which supports the rotating drum 1 without affecting the rotation effect of the rotating drum 1.
[0025] refer to Figure 1-Figure 3 As shown, the rotating module 3 also includes an external ring 36, a secondary annular inner groove 37 and a secondary rotating roller 38. The external ring 36 is sleeved on the end of the outer side of the rotating cylinder 1 away from the support 31, the secondary annular inner groove 37 is opened in the middle of the inner wall of the external ring 36, and the secondary rotating roller 38 is arranged in a circular array in the secondary annular inner groove 37, and both ends of the secondary rotating roller 38 are connected to the bearings of the external ring 36, which supports the rotating cylinder 1 without affecting the rotation effect of the rotating cylinder 1.
[0026] refer to Figure 1 and Figure 2 As shown, the rotating module 3 also includes a fixed plate 39 and a bottom support plate 310. The fixed plate 39 is connected to the outer wall of the support member 31 in a circular array, and one end of the fixed plate 39 is connected to the support member 31 through a positioning bolt, and the other end of the fixed plate 39 is connected to the external ring member 36 through a positioning bolt. The bottom support plate 310 is symmetrically connected to both sides of the outer wall of the support member 31, and the bottom support plate 310 is connected to the external ring member 36 to connect the support member 31 and the external ring member 36. At the same time, the bottom support plate 310 also provides a supporting effect for the equipment.
[0027] refer to Figure 4 and Figure 5 As shown, the blocking module 4 also includes an arc plate 45, a circular plate 46, a first-level blocking net 47 and a protrusion 48. The arc plate 45 and the first-level blocking net 47 are symmetrically connected to the side opposite to the connecting plate 42 and the blocking cover 41, and the arc plate 45 and the first-level blocking net 47 are cross-arranged. The arc plate 45 is connected to the first-level blocking net 47, the circular plate 46 is connected to the end opposite to the arc plate 45 and the connecting plate 42, the first-level blocking net 47 is connected to the circular plate 46, and the protrusion 48 is provided. It is connected to the middle part of one side of the circular plate 46 away from the arc-shaped plate 45, and the protrusion 48 is a hemispherical structure. When the first-level solenoid valve 44 is opened, the oil is guided to the space between the connecting slot 412 and the circular plate 46 through the liquid inlet pipe 43, and flows through the first-level blocking net 47 to the gap between the outer wall of the wooden pole and the inner top airbag 2. The first-level blocking net 47 can prevent wooden pole debris from entering the liquid inlet pipe 43. The setting of the protrusion 48 prevents the circular plate 46 from contacting the wooden pole and affecting the oil immersion effect of the wooden pole.
[0028] refer to Figure 1-Figure 5As shown, the blocking module 4 also includes a sealing ring 49, a round rod 410 and a reinforcement ring 411. The sealing ring 49 is sleeved and connected to the outer wall of the blocking cover 41. The round rod 410 is connected in a circular array to one end of the sealing ring 49 close to the support member 31. The sealing ring 49 is connected to the end of the round rod 410 opposite to the blocking cover 41. The inner wall of the sealing ring 49 and the inner wall of the reinforcement ring 411 are both in contact with the rotating cylinder 1 to enhance the sealing effect between the blocking cover 41 and the rotating cylinder 1.
[0029] refer to Figure 4 and Figure 5 As shown, the blocking module 4 also includes a communication slot 412, a secondary screen 413, a drainage pipe 414 and a secondary solenoid valve 415. The communication slot 412 is opened at the lower side of the blocking cover 41 close to the rotating drum 1, the secondary screen 413 is arranged in the communication slot 412, and the secondary screen 413 is connected to the blocking cover 41, the drainage pipe 414 is connected to the bottom end of the sealing ring 49, and the top end of the drainage pipe 414 passes through the sealing ring 49 and the blocking cover 41 and is connected to the communication slot 412. The slots 412 are connected, and a gap is left between the secondary screen 413 and the side opposite to the rotating drum 1 and the drain pipe 414. The secondary solenoid valve 415 is provided on the drain pipe 414. After the oil immersion is completed, the secondary solenoid valve 415 is opened to allow the oil on the outside of the wooden pole to enter the drain pipe 414 through the connecting slot 412 and flow out. The function of the secondary screen 413 can prevent the wood chips in the oil from being discharged with the oil, thereby ensuring the reuse effect of the oil.
[0030] Working principle: Step 1: Place the wooden pole in the inner top airbag 2 in the rotating cylinder 1. According to the required depth of oil immersed in the wooden pole, the personnel set the amount of oil to be put in advance. After determining the amount of oil, the size of the gap between the outer wall of the wooden pole and the inner top airbag 2 is determined according to the amount of oil. Turn on the air pump 6 and fill the inner top airbag 2 with gas through the conduit 7 until the size of the gap between the outer wall of the wooden pole and the inner top airbag 2 matches the required amount of oil to be put in.
[0031] Step 2: Connect the blocking cover 41 to the rotating drum 1 with the positioning bolts to seal the rotating drum 1, and strengthen the sealing effect between the blocking cover 41 and the rotating drum 1 with the sealing ring 49, the round rod 410 and the reinforcing ring 411;
[0032] Step 3: Open the first-stage solenoid valve 44, directing the oil through the inlet pipe 43 to the space between the communicating slot 412 and the circular plate 46, and then through the first-stage screen 47 to the gap between the outer wall of the wooden pole and the inner top airbag 2. The first-stage screen 47 prevents wooden pole debris from entering the inlet pipe 43. After the oil filling is completed, close the first-stage solenoid valve 44.
[0033] Step 4: Turn on the drive motor 33 to drive the rotating drum 1 to rotate. The rotating drum 1 drives the wooden rod and the oil in the inner top airbag 2 to rotate, so that the wooden rod is fully in contact with the oil to ensure the oil immersion effect of the wooden rod;
[0034] Step 5: After the oil immersion is completed, the secondary solenoid valve 415 is opened to allow the oil on the outside of the wooden pole to enter the drainage pipe 414 through the connecting slot 412 and flow out. The secondary blocking net 413 can prevent the wood chips in the oil from being discharged with the oil, thereby ensuring the reuse effect of the oil.
[0035] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A low-carbon antiseptic wood pole deep oil immersion device, comprising a rotating drum (1), characterized in that: The inner wall of the rotating cylinder (1) is connected to an inner top airbag (2), a rotating module (3) is provided at one end of the outer side of the rotating cylinder (1), and a blocking module (4) is provided at the other end of the outer side of the rotating cylinder (1). The rotating module (3) includes a support member (31), a circular notch (32) and a driving motor (33). The circular notch (32) is opened in the middle of one side of the supporting member (31), one end of the rotating cylinder (1) is arranged in the circular notch (32), the driving motor (33) is arranged in the middle of one end of the supporting member (31) away from the rotating cylinder (1) through a positioning bolt, the output shaft of the driving motor (33) passes through the supporting member (31) and is connected to the middle of one side of the rotating cylinder (1), and the blocking module (4) is provided. The block (4) comprises a blocking cover (41), a connecting plate (42), a liquid inlet pipe (43) and a first-level electromagnetic valve (44); the blocking cover (41) is connected to one end of the rotating cylinder (1) away from the support member (31) through a positioning bolt; the connecting plate (42) is connected to the middle of one side of the blocking cover (41), and the connecting plate (42) is located in the rotating cylinder (1); the liquid inlet pipe (43) and the first-level electromagnetic valve (44) are both arranged in the middle of the side opposite to the blocking cover (41) and the connecting plate (42); one end of the liquid inlet pipe (43) passes through the blocking cover (41) and the connecting plate (42) in sequence; and the first-level electromagnetic valve (44) is arranged on the liquid inlet pipe (43).
2. The low-carbon anticorrosive wood pole deep oil immersion equipment according to claim 1 is characterized by: The top of the outer wall of the rotating cylinder (1) is connected to a mounting plate (5), the top of the mounting plate (5) is connected to an air pump (6) via a positioning bolt, the bottom of the air pump (6) is connected to a conduit (7), the bottom end of the conduit (7) passes through the rotating cylinder (1) and is connected to the inner top air bag (2).
3. The low-carbon antiseptic wood pole deep oil immersion equipment according to claim 1 is characterized by: The rotating module (3) further comprises a first-level annular inner groove opening (34) and a first-level rotating roller (35). The first-level annular inner groove opening (34) is opened in the support member (31), and the first-level annular inner groove opening (34) is connected to the circular groove opening (32). A circumferential array of the first-level rotating rollers (35) is arranged in the first-level annular inner groove opening (34), and both ends of the first-level rotating rollers (35) are connected to the support member (31) bearings.
4. The low-carbon anticorrosive wood pole deep oil immersion equipment according to claim 1, characterized in that: The rotating module (3) further comprises an external ring member (36), a secondary annular inner groove opening (37) and a secondary rotating roller (38). The external ring member (36) is sleeved on an end of the outer side of the rotating cylinder (1) away from the support member (31). The secondary annular inner groove opening (37) is opened in the middle of the inner wall of the external ring member (36). A circumferential array of the secondary rotating rollers (38) is arranged in the secondary annular inner groove opening (37), and both ends of the secondary rotating rollers (38) are connected to the bearings of the external ring member (36).
5. The low-carbon anticorrosive wood pole deep oil immersion equipment according to claim 4, characterized in that: The rotating module (3) further comprises a fixed plate (39) and a bottom support plate (310), wherein the fixed plate (39) is connected to the outer wall of the support member (31) in a circumferential array, and one end of the fixed plate (39) is connected to the support member (31) via a positioning bolt, and the other end of the fixed plate (39) is connected to the external ring member (36) via a positioning bolt, and the bottom support plate (310) is symmetrically connected to both sides of the outer wall of the support member (31), and the bottom support plate (310) is connected to the external ring member (36).
6. The low-carbon antiseptic wood pole deep oil immersion equipment according to claim 1, characterized in that: The blocking module (4) further comprises an arc-shaped plate (45), a circular plate (46), a first-level blocking net (47) and a projection (48). The arc-shaped plate (45) and the first-level blocking net (47) are respectively and symmetrically connected to the side opposite to the connecting plate (42) and the blocking cover (41), and the arc-shaped plate (45) and the first-level blocking net (47) are arranged crosswise. The arc-shaped plate (45) is connected to the first-level blocking net (47), the circular plate (46) is connected to the end opposite to the arc-shaped plate (45) and the connecting plate (42), the first-level blocking net (47) is connected to the circular plate (46), and the projection (48) is connected to the middle part of the side of the circular plate (46) away from the arc-shaped plate (45), and the projection (48) is a hemispherical structure.
7. The low-carbon anticorrosive wood pole deep oil immersion equipment according to claim 1, characterized in that: The blocking module (4) further comprises a sealing ring (49), a round rod (410) and a reinforcing ring (411); the sealing ring (49) is sleeved and connected to the outer wall of the blocking cover (41); the round rod (410) is connected in a circumferential array to one end of the sealing ring (49) close to the support member (31); the sealing ring (49) is connected to the end of the round rod (410) opposite to the blocking cover (41); and the inner wall of the sealing ring (49) and the inner wall of the reinforcing ring (411) are both in contact with the rotating cylinder (1).
8. The low-carbon anticorrosive wood pole deep oil immersion equipment according to claim 7, characterized in that: The blocking module (4) further comprises a communication slot (412), a secondary blocking net (413), a drainage pipe (414) and a secondary electromagnetic valve (415). The communication slot (412) is provided below a side of the blocking cover (41) close to the rotating drum (1). The secondary blocking net (413) is provided in the communication slot (412), and the secondary blocking net (413) is connected to the blocking cover (41). The drainage pipe (414) is connected to the bottom end of the sealing ring (49), and the top end of the drainage pipe (414) passes through the sealing ring (49) and the blocking cover (41) and is connected to the communication slot (412). A gap is left between the drainage pipe (414) and the side of the secondary blocking net (413) opposite to the rotating drum (1). The secondary electromagnetic valve (415) is provided on the drainage pipe (414).
Citation Information
Patent Citations
Oil immersion equipment for production of anti-corrosion oil wooden pole
CN217195906U