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A Constant Stream of Coolants that have to be stocked, recycled, separated, cleaned up and disposed of. The PPM rates for LMC's HVAI presses are "actual" rates in that the end cut qualities and length tolerances are held to stated specification even at our highest recommended production rates. There is no degradation of quality needed to achieve rate and no reduction of rate needed to achieve quality.

Whether it's for drill blanks that require near exact straightness, or cold forming blanks that require exact length (.0015 0.038mm) or volume/mass tolerances (less than or equal 0.2%), LMC's HVAI presses are recognized as having no peer in cut end quality, production rate, and length, straightness and mass volume tolerances.
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Actually, we sell press systems, but our customers get higher productivity, lower burden costs, and better quality, which has provided them with a competitive advantage in the world marketplace. As the cost of material and energy continue to rise, customers worldwide have learned to rely upon LMC, Inc., to provide them with the Adiabatic Advantage, an advantage that allows manufacturers to gain control of their process and material costs.
Simply put, High Velocity Adiabatic Impact is about controlling energy! In less than a millisecond, measured energy is concentrated and directed through the metal in a confined plane. This concentrated energy causes limited and controlled plastic deformation in the area identified as the "adiabatic zone" and produces sufficient heat to separate the material.
LMC, Inc., is the world's leading authority in and manufacturer of HVAI (High Velocity Adiabatic Impact) cutoff and fine blanking equipment. LMC is committed to further development and application of the adiatic processes in manufacturing. As world-wide competition for resources and customers continue to increase, the need for more innovative ways of moving and forming metal grow at an equal, if not faster, pace. Two areas of growth in industry that are driving Adaiabatic Process R&D are Adiabatic Net Shape Forming and Adiabatic Powder Compaction.
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