Thermal Conductivity Of Acrylic Sheet »
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3M™ Thermally Conductive Acrylic Interface Pad 5550H.

PLEXIGLAS® SHEET: Thermal Properties 800 523-7500Thermal Properties. PLEXIGLAS® SHEET: U-FACTORS. The amount of heat conducted through Plexiglas® glazing is slightly lower than for glass of the same thickness. The values tabulated below are U-factors for vertical windows and horizontal skylights Plexiglas® glazing. With higher thermal conductivity 3.0W/m・K and low hardness Asker C 5, 3M pad 5550H consists of a highly conformable, slightly tacky acrylic elastomer sheet filled with conductive ceramic particles which provide special features. Coefficients of Thermal Expansions of PlexiglasPLEXIGLAS® SHEET: COEFFICIENT OF THERMAL EXPANSION Plexiglas® acrylic sheet will expand and contract with changes in temperature and humidity. Different temperature and/or humidity conditions on the inner and outer surfaces of Plexiglas® sheet may cause it to bow slightly in the direction of the higher temperature and/or humidity.

ACRYLITE FF sheet is only half the weight of glass and 43% the weight of aluminum. ACRYLITE FF sheet is not as rigid as glass or metals. However, it is more rigid than many other plastics such as acetates, polycarbonates or vinyls. Under wind load an acrylic sheet. Optix Acrylic Sheet Properties. Coefficient of Thermal Expansion – 30 to 30°C D-696 in/in-°F x 10-5 3.0 Thermal Conductivity C-177 BTU-ft/hr-ft2-°F 0.075 Flammability Burning Rate D-635 In/minute 1.019 Smoke Density Rating D-2843 % 3.4 Self-Ignition Temperature D-1929 °F 833.

Acrylics offer high light transmittance with a Refractive Index of 1.49 and can be easily heat- formed without loss of optical clarity. Prolonged exposure to moisture, or even total immersion in water, does not significantly effect the mechanical or optical properties of acrylic. Thermally Conductive Materials Data Sheets - Stockwell Elastomerics provides technical data sheets for various thermally conductive materials such as thermally conductive silicone coated fabrics, thermally conductive tapes, gap fillers, phase change products and thermally insulating materials manufactured by Saint-Gobain, Bergquist, 3M, and Rogers/BISCO. DuPont™ Vespel® SP-1 unfilled offers superior wear and insulation properties with operating temperatures from cryogenic to 260°C 500°F. Vespel® SP-1 has low electrical conductivity and the highest elongation and purity of the SP family. Available as stock shapes. For Vespel® SP-1 chemical resistance view our chart. is the acrylic plastic sheet produced by the A l t u glas International of Arkema Inc. In its colorless form, Plexiglas acrylic sheet is a crystal clear with a transparency equal to optical glass, lightweight material having outstanding weatherability, high impact resistance, good chemical resistance,and excellent thermoforma-bility and. Metals in general have high electrical conductivity, high thermal conductivity, and high density. Typically they are malleable and ductile, deforming under stress without cleaving. In terms of optical properties, metals are shiny and lustrous. Sheets of metal beyond a few micrometres in thickness appear opaque, but gold leaf transmits green light.

A steel ball of 4.11 kg. with a diameter of 100 mm is freely dropped from different heights onto the glazing specimen. The steel ball must impact the specimen 3 times. Lexan9030 sheet reached the highest standard required by the test at a thickness of 5 mm and above. For cold temperature applications where heat transfer is a concern, it is also important to select a plastic material with the right thermal conductivity. At Curbell, we can talk with you about the variability in the thermal conductivities of plastics at cryogenic temperatures, with some materials functioning as thermal insulators and others.


As a rule-of-thumb, the thermal conductivity increases with a few percent in the range 0-100°C. Only below very low temperatures typically 40K, plastics show a clear decrease, in sharp contrast with metals that exhibit a very impressive increase Al: >13,000 W/m 2 K!. Hence, the thermal conductivity increases by a few percent in the range 0 to 100 o C. However, it should be noted that an increase in temperature might result in a decrease in thickness, influencing not the thermal conductivity but certainly the thermal resistance.

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