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MWF M+
MWF L+ is a medium-viscosity polychlorotrifluoroethylene (PCTFE) fluid formulated for use in metalworking and machining operations. It is recommended for superior lubrication and machinability in demanding applications over conventional metalworking fluids.
Appearance: Water white liquid Kinematic viscosity @ 25°C, cSt: 68 Kinematic viscosity @ 40°C, cSt: 27 Density 25°C, g/cm³: 1.93 Specific Heat 25°C, J/(g·K): 1.0 CAS No 9002-83-9
Primary Chemistry:
MWF L+ is a medium-viscosity polychlorotrifluoroethylene (PCTFE) fluid formulated for use in metalworking and machining operations.
MWF M+ is a synthetic PCTFE metalworking oil with a medium viscosity of 68 cSt at 25°C. Formulated with a high-quality polychlorotrifluoroethylene (CAS No. 9002-83-9) base, it is suitable for demanding machining and forming operations to provide a balance of lubricity, heat transfer, and film strength, helping to reduce friction between machining parts, extend tool life, and improve surface finish on difficult-to-machine metals and alloys. Its chemically inert, nonflammable, and nonreactive composition delivers excellent thermal stability to high-temperature cutting and machining applications and making it the ideal drop-in for various systems.
Specifications
Appearance: Water white liquid Kinematic viscosity @ 25°C, cSt: 68 Kinematic viscosity @ 40°C, cSt: 27 Density 25°C, g/cm³: 1.93 Specific Heat 25°C, J/(g·K): 1.0 CAS No 9002-83-9
Primary Chemistry:
MWF L+ is a medium-viscosity polychlorotrifluoroethylene (PCTFE) fluid formulated for use in metalworking and machining operations.
Features & Benefits
Metalworking fluids
Medium viscosity
Lightweight
Excellent lubricity
Better surface finish
Heat transfer properties
Increased manufacturing output
High thermal stability
PCTFE-based
Superior machinability
Excellent surface finish
Excellent thermal tolerance
Increased machining efficiency
Improved product quality
Reduced operating costs
Nontoxic
Chemically inert
Nonreactive
Nonflammable
Excellent lubricating properties
No sludge formation
Low surface tension
Wide material compatibility
Problems Solved
Thermal stress and fluid degradation in high-temperature conditions Poor machinability of metalworking equipment due to improper lubrication Poor material compatibility of fluids with plastics, polymers, metals, or elastomers Reduced operational efficiency from the chemical breakdown of fluids Hazardous reactions in oxygen, chlorine, or other reactive gases
Applications
Metalworking operations Traditional CNC machining operations Metal forming Tube drawing Wire drawing Metal removal operating