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YIbeino New Materials focuses on the research and development of new wear-resistant ceramic materials and is committed to providing material conveying, pneumatic conveying system engineering design and equipment wear problems under various complex working conditions for cement, thermal power, steel, coal, port, chemical, new energy, mineral processing, engineering machinery, concrete pipe pile, and other industries. We have 20 years of industry experience in the field of wear-resistant materials...
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Year Established

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Million+
Employees

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Million+
Customers Served

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Million+
Annual Sales
China Hunan Yibeinuo New Material Co., Ltd. Strict quality assurance system
Each process is strictly carried out in accordance with quality standard procedures, and the quality control process is strictly supervised to ensure that each factory product meets the national standards for wear-resistant ceramics.
China Hunan Yibeinuo New Material Co., Ltd. Leading design and R&D capabilities
Our company has a professional R&D team composed of experts in alumina ceramics and wear-resistant ceramic installation engineers. Through nearly 20 years of accumulated equipment anti-wear experience, we provide customers with customized equipment anti-wear solutions and provide enterprises with reduced costs and increased efficiency.
China Hunan Yibeinuo New Material Co., Ltd. Strong production capacity
It has advanced alumina ceramic production lines and modern steel structure processing plants.
China Hunan Yibeinuo New Material Co., Ltd. Quick response service
Quotation provided within 12 hours Provide anti-wear solutions 24 hours a day Convenient delivery channels: car, train, plane, sea transportation, etc.

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Do you know the classification and processing technology of special-shaped ceramic lining plates?
Compared with standard linings, special-shaped linings are much more difficult to process because they require more complex manufacturing processes. There are mainly two processing methods: 1. Direct production according to the drawing: This method is suitable for special-shaped liners with complex shapes that are difficult to obtain through cutting. Producing directly according to the design drawings can ensure that the shape and size of the liner fully meet the customer's requirements. However, this method requires high-precision molds and complex manufacturing processes, so the cost will be relatively high.   2. Cutting existing square linings: This method is suitable for special-shaped linings that are relatively simple in shape and can be obtained from square linings by cutting. Through cutting processing, the special-shaped lining plates required by customers can be produced efficiently and accurately. However, this method may be limited by the shape and size of the original square liner and cannot meet the needs of all customers. According to the classification of material composition, special-shaped lining boards can be divided into pure ceramic special-shaped lining boards, ceramic rubber special-shaped lining boards, two-in-one special-shaped lining boards, and three-in-one special-shaped lining boards. Each of these different types of special-shaped linings has its own unique properties and application scenarios. 1. Pure ceramic special-shaped lining plate Pure ceramic liners only have the hardness and wear resistance of wear-resistant ceramics, but have weak impact resistance and the risk of fragmentation. They are often used in combination with other structures. Pure ceramic special-shaped lining plates can be directly pressed and sintered according to the drawings, or they can be cut and processed using square lining plates.   2. Ceramic rubber special-shaped lining plate Ceramic rubber linings have both the wear resistance of ceramics and the impact resistance of rubber. To make special-shaped linings, you can first make ceramic special-shaped linings and then remove the vulcanized rubber, or you can cut and process square ceramic rubber linings.   3. Two-in-one special-shaped lining board The two-in-one ceramic composite lining plate specifically refers to the ceramic composite steel plate. The ceramic ensures the wear resistance of the lining plate, and the steel plate provides structural support. The two-in-one special-shaped lining plate can be made by cutting the steel plate into the required size first. However, to arrange the ceramics, you can also make the square two-in-one lining plate first and then cut it as a whole.   4. Three-in-one special-shaped lining board Three-in-one lining plate refers to the three-in-one lining plate of ceramic, rubber, and steel plate. Ceramic is wear-resistant, rubber is impact-resistant, and steel plate provides structural support. The three have complementary advantages and are suitable for most wear-resistant fields. The three-in-one special-shaped lining plate can be made by first making a special-shaped steel plate and then vulcanizing the ceramic rubber plate through high temperature and pressure. It can also be made by cutting the finished square three-in-one lining plate.
Analysis of causes of wear of dust removal pipes and anti-wear measures
The hazards of dust removal pipe wear The dangers of dust collection pipe wear cannot be ignored. This kind of wear phenomenon mainly occurs in local special-shaped construction areas such as elbows and tees of pipelines. These areas are prone to wear and tear on the inner wall of the pipeline due to changes in the airflow direction and acceleration of the flow rate. Although the wear of straight pipes is relatively weak, long-term dust accumulation and airflow erosion will also cause certain damage to them.   Wear and tear will not only cause air leakage in the system and reduce dust removal efficiency but may also seriously damage the function of the dust removal system. When the pipeline wear is serious, the air leakage will increase, making it difficult for the dust removal system to maintain a stable operating state, thus affecting the effective control of dust sources. This will not only lead to an increase in environmental pollution problems but may also affect the production efficiency of enterprises and employees' working environment. Factors affecting dust removal pipe wear 1. The influence of wind speed in the pipe: The wind speed in the pipe is the key factor that determines the movement and collision speed of dust particles. Excessively high wind speeds may cause dust particles to hit the pipe walls at higher velocities, thereby increasing wear. Conversely, wind speeds that are too low can cause dust particles to deposit on the pipe walls, which can also lead to wear in the long term. Therefore, it is essential to choose an appropriate wind speed.   2. Influence of dust concentration: Dust concentration is also an important factor affecting wear. High concentrations of dust mean more particles inside the pipe collide with the walls, increasing the potential for wear. However, dust concentrations that are too low may result in reduced wear in certain areas within the pipe because collisions are less frequent and less severe.   3. Influence of incident angle: The incident angle refers to the angle at which dust particles hit the pipe wall. Different incident angles will lead to different wear effects. For example, particles hitting the wall at right angles may cause more wear, while impacts at oblique angles may reduce wear. Therefore, by adjusting the duct design or optimizing the airflow distribution, the angle of incidence can be controlled, thereby reducing wear.   4. Influence of friction coefficient: The friction coefficient is related to many factors such as the hardness of the dust particle material, the hardness of the wall material, the surface geometry of the particles, and the surface roughness of the pipe. A higher coefficient of friction usually means greater wear. Therefore, choosing materials and surface treatments with lower friction coefficients can effectively reduce the wear of dust collection pipes.   Measures to prevent wear and tear 1. On the premise of ensuring that the dust in the pipe does not settle, try to control the wind speed in the pipe.   2. Reasonably design the vacuum hood structure and exhaust position, control the daily wind speed of the hood, and try to avoid excessive and coarse dust particles in the pipeline.   3. Design a suitable elbow curvature radius, and appropriately increase the wall thickness of 1 to 2 mm at the elbow or tee.   4. Use wear-resistant composite pipes, such as wear-resistant ceramics, wear-resistant cast iron, wear-resistant cast stone, wear-resistant rubber, wear-resistant coating, etc.   The wear-resistant ceramic pipes produced by our company are designed to solve the problem of particularly serious wear and tear in powder and slurry conveying systems. The outer shell is made of steel and the lining is alumina ceramics with excellent wear resistance. It not only plays the role of high-temperature wear resistance, but The corrosion resistance performance also brings into play the characteristics of high strength and high toughness of steel pipe materials. The integrated design makes it easy to replace and install.   This kind of wear-resistant ceramic composite pipe has broken through the long-standing anti-wear problem of industrial pipelines, so it has replaced most elbows and pipes in pneumatic conveying systems in thermal power, metallurgy, steel, coal, cement, petroleum, chemical, and other industries as soon as it came out. It has been proven by hundreds of customers that the use of wear-resistant ceramic pipes can effectively extend the service life of the equipment by more than 10 times.
Explore the diverse and innovative applications of wear-resistant ceramic pipes
With the advancement of industrialization and the growing need for wear resistance, wear-resistant ceramic pipes are increasingly used in various industries. This article will take everyone to explore the diverse and innovative applications of wear-resistant ceramic pipes.   The wear-resistant ceramic pipe is a new type of wear-resistant pipe material that has many advantages. First of all, the thermal expansion coefficient of wear-resistant ceramic pipes is equivalent to that of straight pipes and powder-conveying pipes. Therefore, it is not affected by many factors such as temperature and flushing, and will not be broken due to expansion or contraction. It has excellent durability. Thermal and corrosion resistance. Secondly, the inner wall of the pipe is covered with wear-resistant ceramic material and the transition is smooth, thus improving its wear resistance. The diversification of wear-resistant ceramic pipes is reflected in two aspects. ① The diversification of lining ceramics. In terms of materials, there are not only commonly used alumina ceramics, but also zirconia, silicon carbide, silicon nitride, and other ceramics. In terms of structure, they are not only There are ceramic sheets, ceramic rings, ceramic tubes, etc. ② Diversification of external steel structures. The materials include not only stainless steel but also carbon steel and alloy steel structures. The shapes include straight pipes, elbows, multi-passes, large and small heads, backpack pipes, and distributors.   Wear-resistant ceramic pipes are widely used in all walks of life. In the metallurgical and electric power industries, when a large number of pipelines are needed to transport ingredients such as coal powder, slag, mortar, lime gypsum slurry, etc., wear-resistant ceramic pipelines can be used to replace other pipelines. This type of pipe has the advantages of ultra-wear resistance, long life, and easy installation, which can significantly improve efficiency.   In the power industry, wear-resistant ceramic pipes are widely used in ash discharge pipes, which solves the original problems of severe wear and low service life of the pipes, and greatly extends the service life of the pipes. In addition to being widely used in the above industries, wear-resistant ceramic pipes are also widely used in steel plants and cement plants. In addition, wear-resistant ceramic pipes can be used directly in lithium power plants without external steel structures, and can also be used in applications with strong corrosive flue gas desulfurization devices, these successful cases provide good ideas for the innovative application of wear-resistant ceramic pipes.   Wear-resistant ceramic pipes are gradually being recognized and applied in all walks of life due to their excellent wear resistance and wide application industries. With the continuous development of science and technology and the improvement of wear-resistant performance requirements, the development prospects of wear-resistant ceramic pipes will be broader. We believe that through continuous innovation and technological optimization, wear-resistant ceramic pipes will provide more reliable and durable pipe solutions for various industries.  

2024

05/09

What are the requirements for lithium battery cathode material transportation pipelines? How dou you choose materials?
In recent years, with the rapid development of the new energy industry, lithium batteries are its core component, and its upstream and downstream industries have also shown rapid growth. Lithium battery cathode material powder transportation is a key link in the lithium battery manufacturing process and plays a vital role in ensuring production efficiency and product quality. To ensure the stability, efficiency, and safety of cathode materials during transportation, the design and material selection of transportation pipelines need to meet a series of requirements. Lithium battery cathode material transportation pipeline requirements Isolate metal: The cathode material of lithium battery will directly affect the performance of lithium battery and is very sensitive to metal pollution. Therefore, metal needs to be isolated during transportation. This requires us not to use metal pipes. We can use ceramics, glass, polymers, and other materials. pipeline.   Wear resistance: The cathode material transports a large amount, and the pipeline is in a high-load operation state for a long time and will be subject to continuous wear. Once the wear resistance of the pipeline is poor, it will be worn and worn out in a short period, causing material leakage, pollution, etc. It requires shutdown for maintenance, which is time-consuming, laborious, and cost-intensive. Therefore, pipeline wear resistance is also an important requirement for lithium battery cathode material transportation pipelines.   Good sealing: The positive electrode material transportation process requires good sealing to avoid powder leakage and contamination.   How to select materials for lithium battery cathode material transportation pipelines? The requirement to isolate metal first excludes metal pipes, and good wear resistance also limits the use of glass pipes and polymer pipes. Ordinary glass pipes are too fragile, inconvenient to transport and install, and are prone to breakage, cracking, and other problems. To improve the wear resistance and strength of glass pipes, the cost will increase sharply, which is not in line with actual needs.   The same is true for polymer materials. The wear resistance of ordinary polymer materials cannot meet the requirements, and the ones that meet the requirements are too expensive. Both materials have appeared in lithium battery cathode material transportation pipelines but were quickly replaced by ceramic tubes due to their limitations.   The ceramic tube not only isolates metal and eliminates metal pollution, but also has high hardness and is super wear-resistant. The integrally formed wear-resistant ceramic tube greatly reduces splicing gaps, has good sealing performance, and has a smooth inner wall, which reduces hanging materials and blocking materials. Feedback since it was put into the market is good!  

2024

05/09

How to solve the wear problem of pneumatic ash conveying pipelines in thermal power plants?
The ash-conveying pipeline system of thermal power plants is a key part. Since it involves pneumatic transportation, it faces particularly serious wear problems. Due to the high air pressure, fast flow rate and long-term transportation, as well as the hard particles often contained in the materials, the ash conveying pipeline is prone to wear and tear. This kind of wear will not only cause the leakage of pulverized coal and cause environmental pollution but may also cause safety hazards and waste a lot of materials. To deal with this problem, many power plants are actively seeking effective solutions. Currently, there are three main solutions commonly available on the market: 1. Reduce the airflow pressure during ash conveying: This method can indeed reduce pipeline wear to a certain extent because it can reduce the material flow rate. However, this often sacrifices ash-conveying efficiency, and the extension of pipeline life is also limited. Therefore, although this method is simple and easy to implement, the effect is not ideal.   2. Patch or make a square box around the pipe: The advantage of this method is that it is simple to operate and low cost. Pipe life can be extended to some extent by reinforcing areas that are worn or likely to wear. However, it can only solve local problems and has a certain lag. When pipes show new wear and tear, they need to be patched again, which increases maintenance costs and workload. 3. Use wear-resistant ceramic pipes: The best way to fundamentally solve the wear problem of ash-conveying pipes is to optimize the pipe material and improve the wear resistance of the pipe itself. Wear-resistant ceramic pipes are an effective solution proven by many thermal power plants. The main component of wear-resistant ceramics is corundum, which has extremely high hardness, far exceeding that of metal. Therefore, wear-resistant ceramic pipes have excellent wear resistance and have a service life far longer than traditional metal pipes.   As a high-quality wear-resistant ceramic pipe manufacturer with 20 years of production experience, the ash-conveying pipes produced by our company are not only affordable but also have strong wear resistance. By using a steel pipe as the outer shell and a wear-resistant ceramic lining as the structural design, the ash conveying pipeline not only ensures strength but also has excellent wear resistance. Its service life is 7-10 times that of metal pipes, providing a strong guarantee for the long-term stable operation of thermal power plants.

2024

04/25