The concrete mixer believes that everyone is familiar with it, but for the laymen, the main role of each part of the mixer is to do. Xiaobian found some information on the structure of the mixer truck and the relevant principles, and sorted out hopefully. It helps to understand everyone.

● Ten components of a concrete mixer truck

    The concrete mixer truck is mainly composed of a chassis and a top part, which can be simply divided into: a chassis system, a hydraulic transmission system, a mixing tank, a discharging system, a cleaning system, a sub-frame, an operating system, a supporting wheel system, and a feeding system. , Circuit system consists of ten parts.

1 , the chassis system: the main components of the mixer, the entire concrete mixer transport function is achieved by the chassis.

2. Hydraulic transmission system: The engine power taken out by the power takeoff is converted into hydraulic energy ( displacement and pressure ) , and then the motor output is mechanical energy ( speed and torque ) to provide power for the rotation of the mixer drum.

3. Stirring tank: The mixing drum is the key component of the entire mixing truck and is a container for storing concrete, which plays a decisive role in preventing the concrete from solidifying and segregating. The inside of the tank has blades, which mainly play the role of stirring and guiding .

4 , the discharge system: mainly by the main discharge chute, vice unloading trough, locking rods and other components, vice unloading chute to extend the length of the main discharge chute.

5. Cleaning system: The cleaning system is mainly composed of pressure water tank, water gun, water pipe and valve. The use of air pressure water supply, the main role is to rinse the hopper after loading and unloading the material is completed and rinse the mixing tube, unloading tank to prevent concrete bonding.

Boride Powder

Boride-based powders are commonly used in thermal spray applications due to their high hardness, wear resistance, and thermal stability. Some commonly used boride powders for thermal spray include:

1. Boron Carbide (B4C): Boron carbide is one of the hardest materials known, making it ideal for applications requiring high wear resistance. It also has excellent chemical resistance and thermal stability.

2. Titanium Diboride (TiB2): Titanium diboride offers a combination of high hardness, excellent wear resistance, and good thermal conductivity. It is often used in applications where both wear and heat resistance are required.

3. Tungsten Boride (WB): Tungsten boride powders have high hardness, excellent wear resistance, and good thermal stability. They are commonly used in thermal spray applications for their ability to withstand high temperatures and resist wear.

4. Chromium Boride (CrB2): Chromium boride powders offer high hardness, wear resistance, and good thermal stability. They are often used in thermal spray coatings for applications requiring resistance to abrasion and erosion.

These boride-based powders can be used in various thermal spray processes such as plasma spraying, high-velocity oxy-fuel (HVOF) spraying, and detonation gun spraying to provide protective coatings on surfaces that require enhanced wear resistance and thermal protection.

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