Bore Diameter (30mm): The bore diameter of 30mm indicates the internal diameter of the hydraulic cylinder's cylindrical chamber where the piston moves.
This specific bore size is chosen to provide the necessary force and fluid displacement required for the seeder's operation. A 30mm bore diameter strikes a balance between power and compactness, making it suitable for seeders.
Stroke Length (14000mm): The stroke length refers to the distance the piston can travel within the cylinder. In this case, the 14000mm stroke length suggests that the hydraulic cylinder can provide an extensive range of motion. This long stroke is advantageous for a seeder as it enables precise depth control when planting seeds in varying soil conditions.
Operating Pressure: Hydraulic cylinders for seeders typically operate within a specific pressure range, often determined by the hydraulic system they are a part of. The operating pressure can vary, but it is usually designed to ensure the cylinder can exert the required force for planting seeds effectively.
Material and Construction: The construction material of the hydraulic cylinder is a crucial consideration. High-strength steel is commonly used for its durability and resistance to wear and corrosion. The cylinder's components, including the piston rod and seals, are also carefully selected to withstand the harsh agricultural environment.
Seal and Gasket Type: The choice of seals and gaskets is vital to prevent hydraulic fluid leakage and maintain the cylinder's performance.
High-quality seals are used to ensure long-term reliability and minimize maintenance requirements.
Mounting Configuration: Hydraulic cylinders for seeders come in various mounting configurations to accommodate different seeder designs. Common configurations include trunnion, clevis, and flange mounts. The choice of mounting configuration depends on the specific requirements of the seeder and its compatibility with the hydraulic system.
Hydraulic Fluid Compatibility: The cylinder's design must consider the type of hydraulic fluid used in the seeder's hydraulic system. Compatibility with the hydraulic fluid is essential to prevent fluid breakdown, which can lead to system malfunctions.
Pressure Ports: The hydraulic cylinder will have pressure ports for connecting hydraulic hoses and fittings. Properly designed ports ensure a secure and leak-free connection to the hydraulic system of the seeder.
Rod End Features: The rod end of the hydraulic cylinder may have specific features, such as threaded ends or other attachment points, to connect it to the seeder's seed planting mechanism. These features must be designed to provide a secure and reliable connection