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  • FiberGraf Materials LLC. Results of thermal behaviors studyJanuary 2012Note: Presentation Property of FiberGraf Materials LLC.

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  • GrafMatGrafMat is the primary material manufactured and distributed by FiberGraf Materials Llc.. This material, engineered for composite enhancement, is offered in particle sizes ranging from 5 to 250 microns and material densities from 1.76 to 2.0 g/cc. These designations are average particle lengths in microns. Note: Presentation Property of FiberGraf Materials LLC.

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  • How its madeGrafMat is manufactured by encapsulating a high grade carbon fiber in a proprietary resin system, then heat treating. This process ensures the resulting product to have material densities 1.76 g/cc to 2.0g/cc.After several proprietary operations the billet is then reduced and graded into particle sizes.Custom particle sizes can be special ordered to meet engineering needs.

    Note: Presentation Property of FiberGraf Materials LLC.

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  • This chart shows the behavioral effect of adding GrafMat to a composite. The Z axis is drastically altered effectively increasing the surface conductivity.Note: Presentation Property of FiberGraf Materials LLC.

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  • FLIR images Sample AGrafMatSample BSample A / GrafMatSample B / GrafMatThis series provides visual evidence of the superior heat dissipation at 90 seconds with GrafMat at a 400F heat indication Note: Presentation Property of FiberGraf Materials LLC.

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  • Cost in compound Note: Presentation Property of FiberGraf Materials LLC.

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  • Method and ConclusionsAll data collected from samples compounded at 40% additive to 60% nylon 66.Subjects A & B are two of the industries leading carbon fiber thermal additives at 200 microns in lengthThis evaluation was conducted by applying a 400F heat source directly to sample and tracking heat flow over 10 minutes in X,Y and Z axis.Real world testing has proven thermal benefit from the addition of GrafMat.An obvious reduction in directionality is noticed in both chart form and image. Competition cost for sample A@ $29lb and sample B@ $80lb GrafMat@ $13lb in production volumes

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  • This evaluation shows the behaviors of three loading options compared to commercially available compounds for thermal conductivity. Again providing superior Z axis conductivity.Note: Presentation Property of FiberGraf Materials LLC.

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  • Method and ConclusionsData collected in this experiment is designed to compare two leading compounds for the molding industry to three loading options with GrafMat.The polymer used in this test is PPS.This evaluation temperature was 450FMedium to large particle GrafMat compounded exhibits superior behavior in the Z axis than industry standard material

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  • GrafMat Providing a superior material in industrial volume

    FiberGraf Materials LLC.4421 Dockray Dr.Nashport, Oh 43830740-408-6564Note: Presentation Property of FiberGraf Materials LLC.

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