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Weapon Shield reacts chemically, under thermal conditions, with the contacting metal surfaces to form a complex surface attaching film of protection. Because Weapon Shield characteristics are “electro-negative”, which causes it to seek out and affix itself to the metallic surface areas, the metal surfaces become uniform in charge and the result is a reduction in friction due to the Faraday reaction of repelling like-charges.

The process of Advanced Boundary Film formation is achieved through a unique combination of long-chain halogenated hydrocarbons and other proprietary additives that are highly stable and non-corrosive to the equipment’s metal parts, and pose no threat to the environment or waste oil recovery systems.

During this process, surface smoothing is accomplished, resulting in improved spread characteristics of the surfaces themselves. The final state of the opposing metal surfaces increases the fluid film strength, even more, resulting in greatly reduced wear while imparting extreme pressure (EP) properties to the opposing metal surfaces.

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