Oiling machine

Through the design of the oiling machine, the upper and lower surfaces of the cement fiber board are oiled at the same workstation using the oiling pipe and the upper and lower oil pans, which solves the problems of complex structure and large space occupation of the existing device and achieves the effect of simplifying the structure and saving space.

CN223475453UActive Publication Date: 2025-10-28林继超
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Patent Information

Application Number
CN202422825221.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-10-28
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The existing oiling device requires two stations to complete oiling of the upper and lower surfaces of the cement fiber board curing template, resulting in a complex structure and a large space occupation.

Method used

By designing an oiling machine, the oiling pipe, the first oiling pan and the second oiling pan are used to achieve oil contact, which simplifies the oiling of the upper and lower surfaces of the maintenance formwork at the same workstation. Gear transmission and floating mechanism are used to ensure transmission stability and adapt to formwork thickness deviation.

Benefits of technology

The upper and lower surfaces of the cement fiber board can be oiled at the same workstation, which simplifies the structure and reduces space occupation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oiling machine, which comprises a conveying roller component, an oiling component and a conveying roller component, wherein the conveying roller component comprises an upper conveying roller and a lower conveying roller; conveying roller assemblies are arranged at the initial end and the tail end in the feeding direction A; the oiling assembly comprises an upper rolling brush, a lower rolling brush and an auxiliary rolling brush, the auxiliary rolling brush is arranged on one side of the upper rolling brush, and an oiling pipe is arranged above the position between the upper rolling brush and the auxiliary rolling brush; a first oiling disc is arranged below the auxiliary rolling brush; a second oiling disc is arranged at the bottom of the lower rolling brush, and the first oiling disc is provided with a first pipeline connected with the second oiling disc. Oil liquid makes contact with the upper rolling brush and the lower rolling brush through the oil feeding pipe, the first oil feeding disc and the second oil feeding disc, so that the upper surface and the lower surface of the maintenance formwork are oiled on the same station, the structure is simplified, and occupied space is smaller.
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Description

Technical Field

[0001] This utility model relates to the technical field of oiling devices, and in particular to an oiling machine. Background Technology

[0002] The upper and lower surfaces of the curing template for cement fiberboard need to be oiled. The existing oiling device has two oiling stations. The first oiling station applies oil to one surface of the curing template, and then the curing template is flipped over. The second oiling station applies oil to the other surface of the curing template, which makes the device structure more complicated and occupies more space. Utility Model Content

[0003] The purpose of this utility model is to provide an oiling machine in which oil is applied to the upper and lower roller brushes through an oiling pipe, a first oiling plate, and a second oiling plate, thereby enabling the oiling of the upper and lower surfaces of the curing template at the same work station. This simplifies the structure and reduces the space required.

[0004] To achieve this objective, the present invention adopts the following technical solution:

[0005] An oiling machine, comprising:

[0006] The conveyor roller assembly includes an upper conveyor roller and a lower conveyor roller; the conveyor roller assembly is provided at both the beginning and end of the feed direction A;

[0007] The oiling assembly includes an upper roller brush, a lower roller brush, and an auxiliary roller brush. An auxiliary roller brush is provided on one side of the upper roller brush, and an oiling pipe is provided above the upper roller brush and the auxiliary roller brush.

[0008] The first oiling plate is located below the auxiliary roller brush;

[0009] The bottom of the lower roller brush is provided with a second oiling plate, and the first oiling plate is provided with a first pipe connected to the second oiling plate.

[0010] In some embodiments, the upper oil pipe is provided with an oil outlet; the oil outlet faces downward;

[0011] The oil outlet holes are arranged in a row along the axial direction of the oil supply pipe.

[0012] In some embodiments, the end of the first oiling disc near the upper roller brush protrudes beyond the auxiliary roller brush.

[0013] In some embodiments, the upper conveyor roller and the lower conveyor roller are linked by a first gear transmission mechanism;

[0014] The first gear transmission mechanism includes a first gear and a second gear that mesh with each other;

[0015] The first gear is linked to the upper conveyor roller, and the second gear is linked to the lower conveyor roller.

[0016] In some embodiments, the upper conveyor roller is connected to the first floating mechanism;

[0017] The first floating mechanism includes a first sliding seat, a first guide rail, and an elastic element;

[0018] The upper conveyor roller is rotatably connected to the first sliding seat;

[0019] The first sliding block can slide relative to the first guide rail;

[0020] The elastic element is located above the first sliding seat and abuts against the first sliding seat;

[0021] The elastic element is a gas spring, and the output end of the gas spring abuts against the first sliding seat.

[0022] In some embodiments, the oiling assembly further includes a second floating mechanism and a third floating mechanism;

[0023] The second floating mechanism causes the upper roller brush to move closer to the lower roller brush.

[0024] The third floating mechanism causes the auxiliary roller brush to move upwards.

[0025] In some embodiments, the oiling assembly further includes a second gear transmission mechanism, through which the upper roller brush and the lower roller brush are linked.

[0026] The second gear transmission mechanism is connected to the first gear transmission mechanism of the conveyor roller assembly located at the beginning of the feed direction A via a third gear.

[0027] In some embodiments, the conveyor roller assembly located at the end of the feed direction A is provided with multiple sets, and the first gear transmission mechanisms of the multiple sets of conveyor roller assemblies are connected to each other through a fourth gear.

[0028] In some implementations, an oil receiving assembly is also included;

[0029] The oil receiving assembly includes an oil receiving tray and an oil guide plate;

[0030] The oil receiving pan is located below the second oil upper pan, and the second oil upper pan is equipped with an overflow pipe connected to the oil receiving pan;

[0031] Oil guide plates are provided on both sides of the oil receiving tray;

[0032] The oil guide plate includes a first wall and a second wall. The first wall is located on the outside of the conveyor roller assembly, and the second wall is inclined towards the oil receiving tray.

[0033] In some embodiments, a guide member is also included, which is disposed on one side of the conveyor roller assembly. The guide member is provided with a guide plate, and the bottom of the guide plate is provided with an inclined surface.

[0034] The beneficial effects of this utility model are as follows: the oil is applied to the upper and lower roller brushes through the upper oil pipe, the first oil plate and the second oil plate, thereby enabling the upper and lower surfaces of the curing template to be oiled at the same station, which helps to simplify the structure and occupy less space. Attached Figure Description

[0035] Figure 1 This is a structural diagram of an oiling machine according to the present invention;

[0036] Figure 2 This is a top view of an oiling machine according to the present invention;

[0037] Figure 3 This is a side view of an oiling machine according to the present invention;

[0038] Figure 4 This is a structural diagram of the conveyor roller assembly and oiling assembly of this utility model;

[0039] Figure 5 This is an exploded view of the conveyor roller assembly of this utility model;

[0040] Figure 6 This is a structural diagram of the oiling assembly of this utility model;

[0041] Figure 7 This is a structural diagram of the oiling assembly of this utility model;

[0042] Figure 8 This is a structural diagram of the oil supply pipe of this utility model;

[0043] Figure 9 This is a structural diagram of the oil receiving assembly of this utility model;

[0044] Figure 10 This is a structural diagram of the guide component of this utility model;

[0045] Wherein: 1-Conveying roller assembly; 10-First motor; 11-Upper conveying roller; 12-Lower conveying roller; 13-First gear transmission mechanism; 131-First gear; 132-Second gear; 14-First floating mechanism; 141-First sliding seat; 142-First guide rail; 143-Elastic element; 2-Oil application assembly; 21-Upper roller brush; 22-Lower roller brush; 23-Auxiliary roller brush; 24-Second floating mechanism; 25-Third floating mechanism; 26-Second gear transmission mechanism; 27-Oil inlet pipe; 270-Oil outlet hole; 28-First oil inlet pan; 281-First pipe; 29-Second oil inlet pan; 291-Overflow pipe; 290-Overflow port; 31-Third gear; 32-Fourth gear; 4-Oil receiving assembly; 41-Oil receiving pan; 411-Roller; 412-Handle; 42-Oil guide plate; 421-First wall surface; 422-Second wall surface; 5-Column; 6-Base frame; 61-Railway; 7-Guide component; 71-Guide plate; 711-Inclined surface. Detailed Implementation

[0046] The present invention will now be described in further detail with reference to the accompanying drawings.

[0047] refer to Figures 1 to 10 An oiling machine is used to apply oil to the curing templates of cement fiberboard.

[0048] The oiling machine includes: conveyor roller assembly 1 and oiling assembly 2;

[0049] refer to Figure 2 The conveyor roller assembly 1 is used for feeding the curing template, and includes an upper conveyor roller 11 and a lower conveyor roller 12; the conveyor roller assembly 1 is provided at both the beginning and end of the feeding direction A.

[0050] refer to Figure 5 The oiling assembly 2 is used to apply oil to the curing template. It includes an upper roller brush 21, a lower roller brush 22, and an auxiliary roller brush 23. The upper roller brush 21 and the lower roller brush 22 are arranged opposite each other in the vertical direction. An auxiliary roller brush 23 is provided on one side of the upper roller brush 21. The auxiliary roller brush 23 is in contact with the upper roller brush 21 or has a small gap. An oiling pipe 27 is provided above the upper roller brush 21 and the auxiliary roller brush 23. The oil from the oiling pipe 27 is sprayed downwards and falls between the auxiliary roller brush 23 and the upper roller brush 21. After the surface of the upper roller brush 21 is coated with oil, it applies oil to the upper surface of the curing template.

[0051] A first oiling plate 28 is provided below or at the bottom of the auxiliary roller brush 23;

[0052] The bottom of the lower roller brush 22 is provided with a second oiling plate 29, and the first oiling plate 28 is provided with a first pipe 281 connected to the second oiling plate 29.

[0053] The first oiling pan 28 can catch the oil flowing from between the auxiliary roller brush 23 and the upper roller brush 21, and can also catch the oil flowing or dripping from the auxiliary roller brush 23. Then, the oil flows through the first pipe 281 to the second oiling pan 29, which can hold a certain amount of oil. The bottom of the lower roller brush 22 can be immersed in the oil, thereby getting oil on it and applying oil to the lower surface of the curing template.

[0054] Therefore, by setting up the oil pipe 27, the first oiling plate 28 and the second oiling plate 29, the oil is made to adhere to the surfaces of the upper roller brush 21 and the lower roller brush 22, so that the upper and lower surfaces of the curing template can be oiled at the same station, which helps to simplify the structure and occupy less space.

[0055] refer to Figure 8 The upper oil pipe 27 is provided with an oil outlet hole 270; the oil outlet hole 270 faces downward; the oil outlet hole 270 is provided in a row and is arranged along the axial direction of the upper oil pipe 27.

[0056] refer to Figure 6 The first oiling plate 28 protrudes horizontally from the end near the upper roller brush 21 beyond the auxiliary roller brush 23, thereby enabling the first oiling plate 28 to catch the oil flowing down between the auxiliary roller brush 23 and the upper roller brush 21.

[0057] refer to Figure 5 The upper conveyor roller 11 and the lower conveyor roller 12 are linked by the first gear transmission mechanism 13; the upper conveyor roller 11 and the lower conveyor roller 12 have the same diameter.

[0058] The first gear transmission mechanism 13 includes a first gear 131 and a second gear 132 that mesh with each other; the first gear 131 and the second gear 132 have the same diameter;

[0059] The first gear 131 is linked to the upper conveyor roller 11, and the second gear 132 is linked to the lower conveyor roller 12; thus, compared with chain drive, gear drive is less prone to loosening and the transmission is more stable and reliable.

[0060] refer to Figure 6 The upper conveyor roller 11 is connected to the first floating mechanism 14;

[0061] The first floating mechanism 14 includes a first sliding seat 141, a first guide rail 142, and an elastic element 143;

[0062] The upper conveyor roller 11 is rotatably connected to the first sliding seat 141;

[0063] The first sliding seat 141 can slide relative to the first guide rail 142;

[0064] The elastic element 143 is disposed above the first sliding seat 141 and abuts against the first sliding seat 141;

[0065] The elastic element 143 is a gas spring, and the output end of the gas spring abuts against the first sliding seat 141;

[0066] Therefore, the distance between the upper conveying roller 11 and the lower conveying roller 12 can vary or be adjusted within a certain range, so that the upper conveying roller 11 and the lower conveying roller 12 can effectively contact the upper and lower surfaces of the curing template, adapt to the thickness deviation of the curing template, that is, the floating mechanism enables the upper conveying roller 11 to have the function of moving or adjusting its position in the vertical direction, and enables the upper conveying roller 11 to have the force to move closer to the lower conveying roller 12.

[0067] A gas spring is an industrial component that utilizes a sealed pressure cylinder filled with inert gas or an oil-gas mixture to generate motion through a pressure difference created by the difference in cross-sectional areas of the piston rod and piston. Of course, the elastic element 143 can also be a common helical spring. Using a gas spring results in a simpler assembly structure, greater durability, and higher output force.

[0068] refer to Figure 3 and Figure 4 The oiling assembly 2 also includes a second floating mechanism 24 and a third floating mechanism 25;

[0069] The second floating mechanism 24 causes the upper roller brush 21 to move closer to the lower roller brush 22, which can adapt to the thickness deviation of the curing template and make the upper roller brush 21 and the lower roller brush 22 effectively contact the upper and lower surfaces of the curing template; wherein, the structure of the second floating mechanism 24 is basically the same as that of the first floating mechanism 14.

[0070] The third floating mechanism 25 causes the auxiliary roller brush 23 to move closer to the upward roller brush 21; wherein, the structure of the third floating mechanism 25 is basically the same as that of the first floating mechanism 14, except that the elastic element 143 is a helical spring.

[0071] The oiling assembly 2 also includes a second gear transmission mechanism 26, through which the upper roller brush 21 and the lower roller brush 22 are linked; the structure of the second gear transmission mechanism 26 is basically the same as that of the first gear transmission mechanism 13.

[0072] refer to Figure 3 and Figure 4 The second gear transmission mechanism 26 is connected to the first gear transmission mechanism 13 of the conveyor roller assembly 1 located at the beginning of the feed direction A via a third gear 31. Thus, the first motor 10 simultaneously provides rotational power to both the conveyor roller assembly 1 and the oiling assembly 2 located at the beginning of the feed direction A.

[0073] refer to Figure 3 and Figure 4The conveyor roller assembly 1 located at the end of the feed direction A has multiple sets, and the first gear transmission mechanism 13 of the multiple sets of conveyor roller assemblies 1 are connected to each other through a fourth gear 32. Thus, the multiple conveyor roller assemblies 1 located at the end of the feed direction A are all rotated by the power provided by the first motor 10. Compared with chain drive, gear drive is less prone to loosening and the transmission is more stable and reliable.

[0074] The conveyor roller assembly 1 located at the end of the feed direction A can be set in three sets. The conveyor roller assembly 1 at this position has a feeding function and also has a certain oil squeezing function, that is, it can squeeze away excess oil on the surface of the curing template.

[0075] refer to Figure 9 The oiler also includes an oil receiving assembly 4, which is used to collect the oil that flows downward or drips during the oiling operation;

[0076] The oil receiving assembly 4 includes an oil receiving tray 41 and an oil guide plate 42;

[0077] The oil receiving pan 41 is located below the second upper oil pan 29. The second upper oil pan 29 is provided with an overflow pipe 291 connected to the oil receiving pan 41. An overflow port 290 is provided at the top of the side wall of the second upper oil pan 29. The overflow port 290 is connected to the overflow pipe 291. Oil in the second upper oil pan 29 that is higher than the overflow port 290 can flow from the overflow pipe 291 to the oil receiving pan 41.

[0078] A handle 412 is provided on the outside of the collection tray;

[0079] The bottom of the collection tray is provided with a roller 411, and the roller 411 is provided with an annular groove with a triangular cross section;

[0080] The base frame 6 is equipped with a rail 61 that mates with the rollers 411. The rail 61 has a triangular cross-section. The rollers 411 structure allows for easy lateral pull-out of the oil, facilitating oil handling.

[0081] Oil guide plates 42 are provided on both sides of the oil receiving tray 41;

[0082] The oil guide plate 42 includes a first wall surface 421 and a second wall surface 422. The first wall surface 421 is located on the outside of the conveying roller assembly 1, and the second wall surface 422 is inclined in the direction close to the oil receiving plate 41.

[0083] Therefore, a conveying roller assembly 1 is provided at both the beginning and end of the feeding direction A. The conveying roller assembly 1 has a feeding function and also has a certain oil squeezing function. The first wall surface 421 is located on the outside of the conveying roller assembly 1 and can guide the oil squeezed out by the conveying roller assembly 1 to the oil receiving pan 41.

[0084] refer to Figure 1 and Figure 10The oiling machine also includes a guide component 7, which is located on one side of the conveyor roller assembly 1. The guide component 7 has a guide plate 71, and the bottom of the guide plate 71 has an inclined surface 711. There is one guide component 7, located at the beginning of the feed direction A, which facilitates the smooth entry of the curing template into the conveyor roller assembly 1.

[0085] The oiling machine also includes a base frame 6 and a column 5. The column 5 is located above the base frame 6. The conveying roller assembly 1 and the oiling assembly 2 can be assembled through the column 5. The oil receiving tray 41 can be located on the top of the base frame 6.

[0086] Working principle:

[0087] The curing template is fed under the drive of the conveyor roller assembly 1. The oil flows to the upper roller brush 21 and the lower roller brush 22 under the action of the upper oil pipe 27, the first upper oil plate 28 and the second upper oil plate 29. Then, the upper roller brush 21 and the lower roller brush 22 apply oil to the upper and lower surfaces of the curing template. Then, the conveyor roller assembly 1 located at the end of the feed direction A squeezes the oil from the upper and lower surfaces of the curing template to complete the oiling operation.

[0088] The above description only discloses some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. An oiling machine, characterized in that, include: The conveyor roller assembly (1) includes an upper conveyor roller (11) and a lower conveyor roller (12); Conveying roller assemblies (1) are provided at both the beginning and end of the feed direction A; and The oiling assembly (2) includes an upper roller brush (21), a lower roller brush (22) and an auxiliary roller brush (23). An auxiliary roller brush (23) is provided on one side of the upper roller brush (21), and an oiling pipe (27) is provided above the upper roller brush (21) and the auxiliary roller brush (23). The auxiliary roller brush (23) is provided with a first oiling plate (28) below or at the bottom; The bottom of the lower roller brush (22) is provided with a second oiling plate (29), and the first oiling plate (28) is provided with a first pipe (281) connected to the second oiling plate (29).

2. The oiling machine according to claim 1, characterized in that, The upper oil pipe (27) is provided with an oil outlet (270); the oil outlet (270) faces downward; The oil outlet holes (270) are arranged in a row along the axial direction of the upper oil pipe (27).

3. The oiling machine according to claim 1, characterized in that, The end of the first oiling plate (28) near the upper roller brush (21) protrudes beyond the auxiliary roller brush (23).

4. The oiling machine according to claim 1, characterized in that, The upper conveying roller (11) and the lower conveying roller (12) are linked by a first gear transmission mechanism (13); The first gear transmission mechanism (13) includes a first gear (131) and a second gear (132) that mesh with each other; The first gear (131) is linked with the upper conveying roller (11), and the second gear (132) is linked with the lower conveying roller (12).

5. An oiling machine according to claim 4, characterized in that, The upper conveying roller (11) is connected to the first floating mechanism (14); The first floating mechanism (14) includes a first sliding seat (141), a first guide rail (142), and an elastic element (143); The upper conveying roller (11) is rotatably connected to the first sliding seat (141); The first sliding seat (141) is slidable relative to the first guide rail (142); The elastic element (143) is disposed above the first sliding seat (141) and abuts against the first sliding seat (141); The elastic element (143) is a gas spring, and the output end of the gas spring abuts against the first sliding seat (141).

6. The oiling machine according to claim 1, characterized in that, The oiling assembly (2) also includes a second floating mechanism (24) and a third floating mechanism (25); The second floating mechanism (24) causes the upper roller brush (21) to move closer to the lower roller brush (22); The third floating mechanism (25) causes the auxiliary roller brush (23) to move closer to the upper roller brush (21).

7. An oiling machine according to claim 4, characterized in that, The oiling assembly (2) also includes a second gear transmission mechanism (26), and the upper roller brush (21) and the lower roller brush (22) are linked through the second gear transmission mechanism (26); The second gear transmission mechanism (26) is connected to the first gear transmission mechanism (13) of the conveying roller assembly (1) located at the beginning of the feed direction A via a third gear (31).

8. An oiling machine according to claim 1, characterized in that, The conveying roller assembly (1) located at the end of the feed direction A is provided with multiple sets, and the first gear transmission mechanism (13) of the multiple sets of conveying roller assemblies (1) are connected to each other through a fourth gear (32).

9. An oiling machine according to any one of claims 1-8, characterized in that, It also includes an oil receiving assembly (4); The oil receiving assembly (4) includes an oil receiving tray (41) and an oil guide plate (42); The oil receiving tray (41) is located below the second oil receiving tray (29), and the second oil receiving tray (29) is provided with an overflow pipe (291) connected to the oil receiving tray (41); Oil guide plates (42) are provided on both sides of the oil receiving tray (41); The oil guide plate (42) includes a first wall surface (421) and a second wall surface (422). The first wall surface (421) is located on the outside of the conveying roller assembly (1), and the second wall surface (422) is inclined in the direction close to the oil receiving tray (41).

10. An oiling machine according to any one of claims 1-8, characterized in that, It also includes a guide (7), which is located on one side of the conveyor roller assembly (1). The guide (7) is provided with a guide plate (71), and the bottom of the guide plate (71) is provided with an inclined surface (711).