The linear guide rail is divided into high assembly and low assembly. The combination height of the slider determines the high assembly or low assembly, and the determining factor still depends on the allowable height of the plane used. The size specifications are the same, but the height of the slider is different. High assembly refers to the assembly of the guide rail and slider together, and the height is slightly higher compared to low assembly. The height assembly of the slider refers to the height of the slider, or the combination height of the slider and the guide rail.
The high assembly linear guide rail is a four column single arc tooth contact linear guide rail, which integrates a more optimized structural design of a heavy-duty precision linear guide rail. Compared to other linear guide rails, it improves the load and rigidity capabilities. It has the characteristics of equal load in four directions and automatic centering function, which can absorb assembly errors on the installation surface and achieve high-precision demands. The concepts of high speed, high load, high rigidity, and high precision have become the trend of industrial product development worldwide in the future.
The low assembly linear guide rail is designed with four rows of steel balls to withstand loads, giving it high rigidity and high load characteristics. At the same time, it has four directional load characteristics and automatic centering function, which can absorb assembly errors on the installation surface and achieve high-precision demands. In addition, reducing the combination height and the length of the short sliding block makes it very suitable for use in small equipment with high speed automation industry machinery and space requirements.
The high-precision linear guide rail has many advantages, including high precision, strong wear resistance, smooth motion and long service life. It adopts advanced production and precision machining technology, and the surface is made of high hardness material or high-strength steel, providing excellent wear resistance and corrosion resistance. Furthermore, it uses a ball or slider motion method, offering smooth motion and low starting torque, which can reach high-speed and high-frequency motion. In addition, the guiding components utilize high-quality bearings, which have been specially treated and have the characteristics of long service life and low noise, reducing maintenance costs and improving production efficiency.
|Installation||Up Locked And Lower Locked|
|Oil Scraper Friction||0.2kgf--0.68kgf|
|Thickness of Oil Scraper||2.2mm--4.4mm|
|Oil Nozzel Position||Front Or Rear,optional|
|Assembly Guide Block||High|
|Linear Motion Guide Way||Upside Locked|
Linear guides are widely used in a variety of situations, such as robots, CNC machine tools, precision instruments, and automated production lines. It is mainly used in applications requiring high-precision linear motion control, implying high-speed motion, high-precision machining, precision positioning, and high-frequency vibration.
In the context of robotics, high-precision linear guides are indispensable components. They are capable of ensuring the accuracy and stability of a robot's motion. As for CNC machine tools, if equipped with high-precision linear guides, the accuracy of machining and repeated positioning would immensely improve, along with a boost in machining efficiency and product quality. At the same time, precision instruments will be accurately and stably positioned, assuring accuracy and stability. Last but not least, with high-precision linear guides, automated production lines generate greater production efficiency and product quality while reducing equipment maintenance costs.
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