Efficiamax® NANO Metal Surface Modifier


EFFICIAMAX® NANO Metal Surface Modifier

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EFFICIAMAX® NANO Metal Surface Modifier FAQ

Nano Fuel Additive

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Efficiamax® NANO Metal Surface Modifier is an innovative metal treatment application. Nano-sized particles bond with ferrous metal surfaces, which minimizes engine and component friction. This unique patented formula has proven to extend the ability and longevity of oil in protecting engines and components, while increasing fuel efficiency.

Efficiamax® NANO Metal Surface Modifier is not an oil additive. Its unique and patented molecular technology was developed to provide long-lasting protection from wear and corrosion and provide superior lubrication and protection under high-friction and high-heat conditions within engines, gearboxes, and drivetrains. Treat your engine just once a year, and the unique chemical compound of Efficiamax® NANO preforms structural modifications of the metal surfaces within your engine, enabling it to withstand extreme friction, while maintaining flexibility. It is delivered to the metal surfaces of the engine by way of the oil, just like medicine is delivered to the body through the blood. You can think of the Efficiamax® NANO as a vaccine for your engine.

 

NANO-TECHNOLOGY METAL SURFACE MODIFIER

Efficiamax® NANO Metal Surface Modifier utilizes the engine lubrication system to deliver its nano-sized particles directly to the engine components. One gram of Efficiamax® NANO treats 4 quarts of engine oil.

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The NANO binds chemically (from 3 up to 200 operating hours) with any friction points or points of contact between metal surfaces containing Fe and Fe-alloy that operate at 300 degrees Celsius or greater. In this way, it modifies the metal surface structure into a new metal hexagonal crystal lattice. (See Figures 1 & 2.)

 

HOW METAL SURFACE MODIFICATION WORKS

Efficiamax® NANO particles are released into the oil.

nano1Efficiamax® NANO particles


Efficiamax® NANO interacts with metal surface.

nano2Efficiamax® NANO particles start to bond with the metal surface.


A new layer is formed with a lower Coefficient of Friction.

nano3 The interaction between Efficiamax® NANO particles and the metal surface form a new metal hexagonal crystal lattice structure.


NEW PROPERTIES OF MODIFIED SURFACE

Micro Hardness

The hardness of the friction surfaces clearly has a significant impact on durability. Laboratory tests show a 500% increase in the metal surface’s hardness after being treated with Efficiamax® NANO Metal Surface Modifier.

nanomicrohardness

 

Reduced Coefficient of Friction

Removing the surface roughness significantly reduces the Coefficient of Friction (CoF) of metal- on-metal abrasion. The data from laboratory testing showed a reduction in CoF from 0.014 to 0.003 after the treatment of Efficiamax® NANO Metal Surface Modifier.

 

EFFICIAMAX® NANO – TEST RESULTS

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 Laboratory testing using Falex Pin and the VEE Friction Test (ASTM D2714 – 94 and ASTM D5707-11).

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APPLICATION ON 2 HD785-7 KOMATSU DUMP TRUCKS

PamaPersada-GroupThis machine is a 1100 HP diesel engine. After the Efficiamax® NANO Metal Surface Modifier application, the engines operated for 4326 & 4336 hours, with extended oil-drain intervals of 1500 hours; a normal interval is every 250 hours. Based on linear dimension calculations, no liner wear occurred after running 4326 & 4336 hours!

 

FEATURE AND BENEFIT

  • Reduction in oil consumption due to reduced oil burn
  • Significant reduction in maintenance costs due to increased equipment lifetime
  • Reduction of harmful exhaust gases
  • Increased engine output

 

VARIETY OF USES

Essentially, Efficiamax® NANO Metal Surface Modifier can be added to all sizes of engines, manual transmissions, hydraulic systems, differentials, and gearboxes. It works best where friction reduction is needed and heavy loads exist.

(Not For Use In Automatic Transmissions.)

 

DIRECTIONS FOR USE:

  • Bring to operating temperature.
  • Pour Efficiamax® NANO Metal Surface Modifier
  • Operate under normal conditions for a minimum of three hours.
  • Repeat yearly.