Specifically designed for high-wear zones, this plate integrates primary chromium carbides within a tough martensitic matrix, offering unmatched wear life in demanding applications like granite or basalt concrete mixes.
Forged from our proprietary high-chromium alloy (HRC 58-62), it delivers exceptional resistance to abrasive concrete mixes, directly protecting your drum floor and extending service life by 2-3X compared to standard plates.
The Zoomlion JS4000 mixing arms—featuring the side-return small arm and large return arm—are masterfully engineered to conquer the toughest concrete mixing challenges. Crafted from ultra-durable, heat-treated chromium-molybdenum alloy steel, these arms combine brute strength with intelligent design to deliver unmatched wear resistance and fatigue performance.
The Zoomlion JS4000 mixing system integrates advanced components engineered to revolutionize concrete production. The blades' helical geometry accelerates mixing cycles by 18% while reducing energy consumption, backed by fatigue-tested durability for extended service life.
Zoomlion’s JS4000 End Liner Plates redefine longevity and precision in concrete mixing applications. Precision-crafted from high-chromium alloy steel and hardened through advanced vacuum heat treatment, these liners deliver unparalleled resistance to abrasion, impact, and chemical corrosion.
The Zoomlion JS3000 mixing arms includes large return arm, small return arm, large feed arm, small feed arm. They are engineered with a robust structure and precision geometry to ensure homogeneous concrete mixing.
Our JS3000 concrete mixer liner are high-chromium cast iron alloy wear-resistant castings engineered to combat extreme abrasion and impact in demanding concrete production environment..Modular desigh allows for quick installation and tergeted repairs, minimizing operational disruptions during upkeep.
Zoomlion JS3000 concrete mixer liner are engineered with high-wear-resistant alloy cast iron material. They are side return spiral blade and side feed spiral blade. Their design enable rapid material circulation through combined pushing, kneading and compressing actions.
Crafted from wear-resistant high-chromium alloy (C:1.8-3.3%, Cr:13-18%),these blades demonstrate exceptional durability in heavy-duty operations. The optimized arrangement prevents material "shaft-wrapping" issues, and their coordinated motion enables 30% higher mixing efficiency compared to conventional designs.