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Duvar testere bıçağı, iyi performans ve hassas teknolojilere sahip Alman Dr. Fritsch tam otomatik lazer kaynak üretim hattı ile kaynaklanmaktadır.
In reinforced concrete cutting operations, efficiency and safety are the sole criteria for measuring the value of a tool. Arix U-shaped wall saw blades are designed for challenging wall cutting and deep cutting applications. We have redefined the cutting performance of wall saws: not only pursuing ultimate sharpness, but also ensuring the stability and durability of each blade under harsh working conditions.
Why choose us:
1. Extreme Sharpness: Arix uses high-quality powder and manufacturing processes, with precise formula control to ensure that the saw blade quickly sharpens to a brand-new, sharp edge when cutting reinforced concrete, significantly reducing cutting resistance.
2. Efficient Heat Dissipation
- Innovative U-groove Design: The segments features a unique "U"-shaped segmented structure. Compared to traditional flat or narrow grooves, the U-groove offers greater chip-carrying space.
- Dual Advantages: During high-speed rotary cutting, the U-groove not only quickly removes concrete debris, preventing the saw blade from jamming, but also allows airflow through the U-groove to more effectively remove heat generated by friction, effectively preventing blade burning and extending the saw blade's lifespan.

3. Extreme Stability: Arix wall saw blades use 30CrMU material for the base body. This material has excellent toughness and fatigue strength, effectively absorbing vibrations during cutting.
- tress Testing:Each substrate undergoes rigorous stress relief treatment before leaving the factory to ensure internal stress balance and prevent deformation during cutting.
- Precision Dynamic Balancing:** High-precision dynamic balancing eliminates centrifugal force deviations under high-speed rotation. This not only protects your cutting equipment spindle but also guarantees the flatness of the cut surface.
4.Absolute Safety: A high-energy laser beam fuses the segments and substrate into a single structure, achieving a bond strength far exceeding that of traditional high-frequency welding.



