Advanced Filtration Solutions for the Heavy Machinery Industry
Coolant Filtration in Heavy Machinery Manufacturing
Heavy machinery manufacturing involves large scale machining of engine blocks, gears, crankshafts, camshafts and hydraulic components, requiring high-precision cutting, grinding and drilling. Contaminants such as metal debris, coolant impurities and oil mist can reduce tool life causing frequent breakdowns, affect machining accuracy, leading to dimensional inconsistencies, increase machine downtime raising operational costs and lead to excessive coolant consumption and waste management challenges.
LEX TECHNOAID’s filtration solution ensure clean coolant, efficient chip removal and controlled air quality, optimizing productivity and durability in heavy machinery machining.
Key Challenges in heavy machinery industry | LEX TECHNOAID’s solutions |
Coolant contamination leads to tool wear and surface imperfections. | Advanced Coolant Filtration removes fine metal particles, ensuring cleaner machining. |
Excessive chip accumulation in CNC machines causes performance issues. | Chip Conveyor and Separation System efficiently remove metal debris. |
Oil mist and airborne contaminants pose safety risks and reduce component longevity. | Mist Extraction System improve air quality and maintain clean work environments. |
Hydraulic oil degradation impacts performance in heav duty machinery. | Hydraulic Oil Filtration System maintain fluid integrity, extending service life and minimizing machine failures. |
Applications
Lex Technoaid’s Value Proposition
Durable Filtration System
Stable Hydraulic Cooling
Extended Machine Lifespan
Minimized Equipment Downtime
Enhanced Productivity
Products catered to Machinery Manufacturing Industry
Through Coolant System
Chip Conveyor
Compact "U" Band & Paper-Band Filter
Magnetic Drum Separator & Magnetic Candle
Centralized Filtration System
Customized Filtration System
Cartridge & Bag Filter
Chiller & Panel Air Conditioner
Automated Coolant Filling System
Mist/Fume/Dust Extraction System