Automatic filling equipment for oily paint
By using connectors made of flexible and reinforced materials, combined with the design of guide channels, protective rounded corners, and segmented conveyor rollers, the problem of poor adaptability of existing automatic filling machines to irregularly shaped cans has been solved, achieving stable filling and expanding the scope of equipment application, thereby improving production efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-03-27
AI Technical Summary
The existing automatic filling machine's conveyor rollers and connectors are mostly made of hard materials, which cannot effectively adapt to irregularly shaped and various sizes of cans, resulting in unstable filling and limited equipment applicability, increasing the cost of replacing equipment and reducing production efficiency.
The connector is made of flexible material and reinforced with embedded material. The surface of the connector is provided with guide grooves and the ends are designed with protective rounded corners. The conveyor roller is designed in segments and has a built-in telescopic mechanism. The reinforcing material is metal strips or carbon fiber strips. Universal shafts connect the segments to achieve stable guidance and support for tanks of different shapes.
It improves the accuracy and quality of filling, reduces filling errors and product defect rates, expands the applicability of the equipment, reduces equipment replacement and adjustment costs, and improves production efficiency and safety.
Smart Images

Figure CN224045624U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to automatic filling machine's technical field especially relates to a kind of oil paint automatic filling equipment. BACKGROUND
[0002] In the current automatic filling machine field, the existing automatic filling machine usually utilizes the conveying roller and connecting piece of both sides to guide the tank body, to ensure that the tank body remains stable during filling process, to avoid deviation. However, the conveying roller and connecting piece of the prior art are generally made of hard material. Although this hard material can play a certain role when guiding a tank body of a specific shape, its limitations are also very obvious. Because its shape and characteristics are relatively fixed, it is only suitable for specific types of tank bodies with regular shape and single size. Once irregular shape and various sizes of tank bodies are encountered, such as tank bodies with special curvature, special-shaped profile or different diameter and height, the existing hard material conveying roller and connecting piece cannot effectively adapt. This not only leads to instability phenomena such as deviation and shaking of the tank body during conveying, seriously affecting the accuracy and quality of filling, but also limits the application range of the automatic filling machine, cannot meet the market demand for filling of diversified packaging containers, increases the cost of replacing equipment or complex adjustment of enterprises, and reduces production efficiency. Therefore, it is of great practical significance and urgency to develop an automatic filling machine connecting piece and conveying roller structure that can adapt to different shapes of tank bodies. SUMMARY
[0003] The utility model aims at at least one of the problems in the related art. To this end, one of the purposes of the utility model is to provide an oil paint automatic filling equipment for realizing flexible and stable guiding of various shapes and sizes of tank bodies by automatic filling machine for filling operation, improving filling precision and efficiency, and expanding the application range of the equipment.
[0004] An oil paint automatic filling equipment, the oil paint automatic filling equipment comprises:
[0005] a base;
[0006] a conveyor belt provided on the base;
[0007] a filling mechanism provided above the conveyor belt;
[0008] Two clamping mechanisms, two clamping mechanisms are connected to the base and are respectively arranged on both sides of the conveying belt, the clamping mechanism comprises a connecting seat, a plurality of connecting pieces and a plurality of conveying rollers, one end of the connecting seat is connected to the base, a plurality of the connecting pieces are connected to the base in a head-to-tail manner, the conveying roller is rotatably connected to the connecting portion of two adjacent connecting pieces, the material of the connecting piece is flexible material, and the inside of the connecting piece is further embedded with bendable reinforcing material.
[0009] Further, the material of the connecting piece is silica gel or polyurethane.
[0010] Further, the reinforcing material is a metal strip or a carbon fiber strip.
[0011] Further, the length of the reinforcing material is consistent with the length of the connecting piece.
[0012] Further, a plurality of buffer cavities are formed in the flexible material inside the connecting piece, and the buffer cavities are distributed in a honeycomb shape.
[0013] Further, a plurality of flow guide grooves are arranged on the surface of the connecting piece, and the flow guide grooves extend along the width direction of the connecting piece.
[0014] Further, the end of the connecting piece is provided with a protective round corner.
[0015] Further, the conveying roller is composed of a plurality of segments, the segments are connected through a connecting mechanism, and each segment is provided with a telescopic mechanism inside.
[0016] Further, the connecting mechanism is a universal shaft.
[0017] Further, the telescopic mechanism is an internal telescopic rod.
[0018] The above technical scheme provided by the embodiment of the application has the following advantages compared with the prior art:
[0019] The connecting piece is made of flexible material, so that the connecting piece can quickly deform to closely fit the surface of the tank body when contacting different shaped tank bodies, and the reinforcing material is embedded in the connecting piece to compensate for the relative lack of strength of the flexible material, thereby enhancing the strength and wear resistance of the connecting piece, so that the connecting piece can not only maintain flexibility to fit different shaped tank bodies, but also has sufficient strength and will not be easily damaged due to the extrusion or collision of the tank body. Further, the connecting piece can closely fit different shaped tank bodies to provide stable support and guidance for the tank body during conveying and filling, effectively avoiding the deviation and shaking of the tank body, significantly improving the accuracy and quality of filling, and reducing the filling error and product unqualified rate caused by unstable tank body. BRIEF DESCRIPTION OF DRAWINGS
[0020] The drawings incorporated in the specification hereof and constituting a part hereof illustrate embodiments consistent with the present application and together with the description are used to explain the principles of the present application.
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, for those skilled in the art, based on the drawings, other drawings can also be obtained without creative labor.
[0022] Figure 1 It is an embodiment structure diagram of the oil paint automatic filling equipment.
[0023] Figure 2 It is an embodiment structure diagram of the clamping mechanism in the oil paint automatic filling equipment.
[0024] Figure 3 It is an embodiment structure diagram of the clamping mechanism in the oil paint automatic filling equipment.
[0025] Figure 4 It is an embodiment structure diagram of the clamping mechanism in the oil paint automatic filling equipment.
[0026] Figure 5 It is an embodiment structure diagram of the clamping mechanism in the oil paint automatic filling equipment.
[0027] Figure 6 It is an embodiment structure diagram of the clamping mechanism in the oil paint automatic filling equipment.
[0028] Reference signs:
[0029] 1. An oil paint automatic filling equipment; 10, base; 20, conveying belt; 30, filling mechanism; 40, clamping mechanism; 41, connecting seat; 42, connecting piece; 421, reinforcing material; 422, buffer cavity; 423, flow guide groove; 43, conveying roller; 431, connecting mechanism. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.
[0031] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0032] As shown in Figure 1 , Figure 2 , the present application provides an automatic oil paint filling equipment 1, comprising:
[0033] a base 10;
[0034] a conveying belt 20, which is arranged on the base 10;
[0035] a filling mechanism 30, which is arranged above the conveying belt 20;
[0036] two clamping mechanisms 40, which are connected to the base 10 and arranged on both sides of the conveying belt 20 respectively, and each clamping mechanism 40 comprises a connecting seat 41, a plurality of connecting pieces 42 and a plurality of conveying rollers 43, one end of the connecting seat 41 is connected to the base 10, a plurality of the connecting pieces 42 are connected to the base 10 end to end, and the conveying rollers 43 are rotationally connected to the connecting portions of adjacent two connecting pieces 42, the material of the connecting pieces 42 is flexible material, and the connecting pieces 42 are further embedded with bendable reinforcing materials 421.
[0037] The base 10, the conveying belt 20, the filling mechanism 30 and the clamping mechanism 40 work together to realize the automatic filling process. The innovative design of the clamping mechanism 40 is of great significance. The connecting pieces 42 and the conveying rollers 43 made of traditional hard material have poor adaptability, while in this design, the connecting pieces 42 are made of flexible material and embedded with reinforcing materials 421. The flexible material can quickly deform and closely fit the surface of the tank body by virtue of its good flexibility when contacting different shaped tank bodies, providing close support and guidance for the tank body. The embedded reinforcing materials 421 make up for the deficiency of insufficient strength of the flexible material, and enhance the strength and wear resistance of the connecting pieces 42. In this way, whether the tank body is regular or irregular in shape, it can be stably supported and guided during conveying and filling, effectively avoiding deviation and shaking, significantly improving the accuracy and quality of filling, and reducing the filling error and product rejection rate caused by unstable tank body. At the same time, it also expands the application range of the equipment to different shapes and sizes of tank bodies, and reduces the cost of equipment replacement or complex adjustment due to changes in packaging containers.
[0038] Further, the material of the connecting piece 42 is silica gel or polyurethane.
[0039] Silica gel and polyurethane have significant advantages as specific flexible material choices. Silica gel has good flexibility, elasticity and chemical stability. Its flexibility allows the connecting piece 42 to more easily conform to various shaped cans, providing stable guidance; its elasticity can act as a buffer when the can is contacted, reducing the impact force on the can; and its chemical stability ensures that the connecting piece 42 does not chemically react with the paint in an oily paint filling environment, ensuring that the paint quality is not affected, while extending the service life of the connecting piece 42 itself. Polyurethane also has high strength and high elasticity, and excellent wear resistance. High strength ensures that the connecting piece 42 is not easily deformed when subjected to can pressure, high elasticity allows it to effectively adapt to changes in can shape, and wear resistance further extends the service life of the connecting piece 42, reducing the frequency of equipment maintenance and replacement parts, and reducing production costs, further improving the adaptability of the equipment to different shaped cans and the stability of the filling from the perspective of material properties.
[0040] Further, the reinforcing material 421 is a metal strip or a carbon fiber strip.
[0041] The connecting piece 42 is embedded in the reinforcing material 421 to improve strength, and metal strips and carbon fiber strips as reinforcing material 421 have a significant effect. Metal strips represented by aluminum alloy strips have the characteristics of light weight and high strength. The light weight characteristic does not add too much burden to the equipment, facilitating equipment operation; the high strength provides reliable structural support for the connecting piece 42, making it less likely to deform excessively when subjected to can extrusion or impact. Carbon fiber strips have an ultra-high strength-to-weight ratio, significantly increasing the strength of the connecting piece 42 while almost not increasing the weight, greatly improving the stability of the connecting piece 42. Moreover, carbon fiber strips have good corrosion resistance and can effectively resist corrosion in an oily paint filling chemical environment, extending the service life of the connecting piece 42 and ensuring that the connecting piece 42 always maintains good performance during long-term use, continuously providing stable guidance and support for cans of different shapes, further ensuring the accuracy of filling and efficient operation of the equipment.
[0042] Further, the length of the reinforcing material 421 is consistent with the length of the connecting piece 42.
[0043] The length of the reinforcing material 421 is consistent with the length of the connecting piece 42. When the reinforcing material 421 penetrates the entire length of the connecting piece 42, it can uniformly play a reinforcing role at each part of the connecting piece 42. During the guiding of the can body, no matter which position of the can body contacts the connecting piece 42, the connecting piece 42 can obtain stable support force by means of the reinforcing material 421. This avoids the local strength difference caused by uneven distribution of the reinforcing material 421, prevents the connecting piece 42 from appearing local deformation too much when being stressed, and ensures the stability and reliability of the connecting piece 42 as a whole. Thus, the connecting piece 42 can stably fit the can body of different shapes in the entire length range, continuously provide reliable guidance and support for the can body, further improve the stability of the can body in the filling process, and ensure the high precision and high quality of filling.
[0044] Further, a plurality of buffer cavities 422 are formed in the flexible material of the connecting piece 42, and the buffer cavities 422 are distributed in a honeycomb shape.
[0045] The cavity wall of the buffer cavity 422 has elasticity, and when the connecting piece 42 is extruded by the can body, the buffer cavity 422 can be deformed to further enhance the buffering effect. The addition of the honeycomb-shaped buffer cavity 422 brings many benefits. First, when the connecting piece 42 is extruded by the can body, the cavity wall of the buffer cavity 422 has elasticity and can be deformed. The honeycomb distribution enables the buffer cavity 422 to effectively disperse pressure in all directions, just like the structure of the honeycomb can withstand external pressure. This structure can further enhance the buffering effect of the connecting piece 42, and compared with the connecting piece 42 without the buffer cavity 422, it can more effectively reduce the impact force of the can body on the connecting piece 42, and protect the surface of the can body from being scratched or damaged. At the same time, the existence of the buffer cavity 422 also increases the flexibility and adaptability of the connecting piece 42, so that it can better fit the can body with complex shape, provide more stable support and guidance for the can body, further improve the stability of the can body in the filling process, reduce the filling error, and improve the product quality.
[0046] Further, as shown in Figure 6 The surface of the connecting piece 42 is provided with a plurality of flow guide grooves 423, and the flow guide grooves 423 are arranged along the width direction of the connecting piece 42.
[0047] The arrangement of the flow guide groove 423 plays an important role. During the filling of oil-based paint, it is inevitable that some paint will drip onto the connecting piece 42. If the liquid accumulates on the connecting piece 42, it may affect the contact between the connecting piece 42 and the tank, causing the tank to slide or deviate, thereby affecting the accuracy of filling. The flow guide groove 423 extending along the width direction of the connecting piece 42 can timely guide these dripped liquids to the designated position, avoiding liquid accumulation. In this way, the cleanliness of the surface of the connecting piece 42 is ensured, the good contact state between the connecting piece 42 and the tank is maintained, and the stability of the tank during transportation and filling is ensured, effectively reducing the filling errors caused by liquid, improving the filling quality and the reliability of the equipment.
[0048] Further, as shown in Figure 6 , the end of the connecting piece 42 is provided with a protective round corner.
[0049] The protective round corner design of the end of the connecting piece 42 has significant advantages. During the operation of the equipment, the tank frequently contacts the connecting piece 42. If the end of the connecting piece 42 is sharp and has a right angle, it may scratch the surface of the tank, affecting the appearance and quality of the product. At the same time, the sharp corners may cause accidental injury to the operator. The design of the protective round corner eliminates these potential risks, making the end of the connecting piece 42 more smooth and round, and not causing damage to the surface of the tank when contacting the tank, protecting the integrity of the product. For the operator, it also reduces the possibility of injury during equipment operation and maintenance, improving the safety and operation friendliness of the equipment.
[0050] Further, as shown in Figures 3 to 5 , the conveying roller 43 is composed of multiple segments, and the segments are connected through a connecting mechanism 431, and each segment is internally provided with a telescopic mechanism.
[0051] This design improvement of the conveying roller 43 has obvious effect. The traditional integral conveying roller 43 is difficult to adapt to different shapes and sizes of tanks, while the segmented design makes the conveying roller 43 more flexible. The segments are connected through the connecting piece 42 and can move relatively independently. When encountering special-shaped tanks, such as tanks with irregular curves, protrusions or depressions, the conveying roller 43 can better fit the tank profile through the relative movement between the segments. At the same time, the telescopic mechanism inside each segment can be adjusted according to the specific size of the tank, further optimizing the fitting effect. In this way, the conveying roller 43 can closely fit tanks of different shapes and sizes, providing more stable support during transportation, effectively avoiding the deviation and shaking of the tank, greatly improving the adaptability of the equipment to different shapes of tanks, ensuring the stability and accuracy of the filling process, and improving the overall performance of the equipment.
[0052] Further, the connecting mechanism 431 is a universal shaft.
[0053] Adopting the universal shaft as the connecting piece 42 has unique advantages. The universal shaft can allow the segments of the conveying roller 43 to rotate freely in multiple directions, greatly increasing the flexibility of the conveying roller 43 compared to other ordinary connecting pieces 42. When facing a tank body with a complex shape, the segments can quickly and accurately adjust the position and angle through the flexible rotation of the universal shaft, closely fitting the irregular surface of the tank body. This high flexibility enables the conveying roller 43 to better adapt to tank bodies of various special shapes, further improving the guiding and supporting effect on the tank body during conveying, effectively preventing the tank body from deviating and shaking during conveying, ensuring the accuracy of filling and efficient operation of the equipment, and further improving the adaptability of the equipment to different shaped tank bodies from the perspective of the connecting structure.
[0054] Further, the telescopic mechanism is an internal telescopic rod.
[0055] Adopting the internal telescopic rod as the telescopic mechanism has many advantages. The internal telescopic rod structure is compact and installed inside the segments of the conveying roller 43, not occupying additional space, ensuring the simplicity of the overall structure of the conveying roller 43. It can be operated by manual rotation or electric drive, which is convenient and precise in control. When encountering tank bodies of different sizes, the length of the conveying roller 43 can be quickly adjusted according to actual needs, making the conveying roller 43 better fit the tank body and provide stable support. This precise telescopic adjustment function further enhances the adaptability of the conveying roller 43 to tank bodies of different shapes and sizes, ensuring that the tank body remains stable during conveying, reducing filling errors, and improving filling quality and equipment efficiency. From the specific selection of the telescopic mechanism, the design of the conveying roller 43 is further improved, and the performance of the equipment is enhanced.
[0056] It can be understood that the above embodiments only express the preferred embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the present application patent; it should be noted that for ordinary skilled persons in the art, the above technical features can be freely combined without departing from the concept of the present application, and some modifications and improvements can be made, which all belong to the protection scope of the present application; therefore, any equivalent transformation and modification within the scope of the claims of the present application shall belong to the scope of the claims of the present application.
Claims
1. An automatic filling apparatus for oil-based paint, characterized by comprising: The utility model relates to a kind of filling device, including: Base; Conveying belt, the conveying belt is located in the base; Filling mechanism, the filling mechanism is located above the conveying belt; Two clamping mechanisms, two clamping mechanisms are connected to the base and are respectively located in the two sides of the conveying belt, the clamping mechanism includes connecting seat, multiple connecting pieces and multiple conveying rollers, one end of the connecting seat is connected to the base, multiple connecting pieces are connected to the base in head-to-tail, the conveying roller is rotatably connected to the connecting place of adjacent two connecting pieces, the material of the connecting piece is flexible material, the inside of the connecting piece is further embedded with flexible reinforcing material.
2. The automatic filling apparatus for oil-based paint according to claim 1, wherein The material of the connecting piece is silica gel or polyurethane.
3. The automatic filling apparatus for oil-based paint according to claim 1, wherein The reinforcing material is metal strip or carbon fiber strip.
4. The automatic filling apparatus for oil-based paint according to claim 1, wherein The length of the reinforcing material is consistent with the length of the connecting piece.
5. The automatic filling apparatus for oil-based paint according to claim 1, wherein The flexible material inside the connecting piece forms several buffer cavities, and the buffer cavities are distributed in a honeycomb shape.
6. The automatic filling apparatus for oil-based paint according to claim 1, wherein The surface of the connecting piece is provided with several flow guide grooves, and the flow guide grooves are arranged along the width direction of the connecting piece.
7. The automatic filling apparatus for oil-based paint according to claim 1, wherein The end of the connecting piece is provided with a protective round corner.
8. The automatic filling apparatus for oil-based paint according to claim 1, wherein The conveying roller is composed of multiple segments, the segments are connected through connecting mechanisms, and each segment is provided with a telescopic mechanism inside.
9. The automatic filling apparatus for oil-based paint according to claim 8, wherein The connecting mechanism is a universal shaft.
10. The automatic filling apparatus for oil-based paint according to claim 8, wherein The telescopic mechanism is an internal telescopic rod.