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Ensinger PEI

Metton LMR M1534 Liquid Molding Resin
Categories: Polymer; Thermoset; Polydicyclopentadiene (PDCPD)

Material Notes: Different product numbers represent different formulations for customer specific needs such as liquid freezing point. Metton LMR is a tough and durable engineering plastic material used to produce large or thick molded parts for many diversified applications. The Metton LMR reaction injection molding process can provide large parts in low pressure molds with the mechanical property performance similar to injection molded engineering thermoplastics. The combination of Metton LMR’s process and material capabilities result in a new design freedom for replacing traditional materials such as metal, wood and fiberglass.

Injection molded engineering thermoplastics have a similar benefit package for smaller parts. Small parts for Metton LMR are in the 8 to 10 ft² (1 m²) range which is the upper end for cost and size capability for standard injection molding. In addition, Metton LMR parts do not require identical part geometry for multi-cavity molds.

Metton LMR is a family of lightly cross linked olefinic thermoset polymers based on polydicyclopentadiene (PDCPD) with mechanical property performance attributes similar to engineering thermoplastics. In the Metton LMR molding process, two low - viscosity DCPD liquid streams - one containing an activator (A Component) and the other a catalyst (B Component) - are impingement mixed at a 1:1 ratio and injected at near room temperature into a closed mold. The resulting exothermic reaction (heat generating) creates a fully polymerized part in less than 60 seconds. Button to button cycle times are generally 4 to 6 minutes depending upon size and geometry

Key Words: Metton LMR
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Physical PropertiesMetricEnglishComments
Density 1.034 g/cc0.03736 lb/in³ASTM D792
Water Absorption 0.12 %0.12 %24 hrs; ASTM D570
Linear Mold Shrinkage 0.0090 cm/cm0.0090 in/in
 
Mechanical PropertiesMetricEnglishComments
Hardness, Rockwell R 114114ASTM D785
Tensile Strength, Yield 46.8 MPa6790 psiASTM D638
Elongation at Yield 4.7 %4.7 %ASTM D638
Tensile Modulus 1.90 GPa276 ksiASTM D638
Flexural Yield Strength 70.0 MPa10200 psi5% strain; ASTM D790
Flexural Modulus 1.88 GPa273 ksiASTM D790
Compressive Yield Strength 58.4 MPa8470 psiASTM D695
Poissons Ratio 0.390.39
Shear Modulus 0.683 GPa99.1 ksiCalculated
Shear Strength 49.5 MPa7180 psiASTM D732
Izod Impact, Notched 4.60 J/cm8.62 ft-lb/inASTM D256
 1.06 J/cm
@Temperature -40.0 °C
1.99 ft-lb/in
@Temperature -40.0 °F
 
Thermal PropertiesMetricEnglishComments
CTE, linear 87.8 µm/m-°C
@Temperature 0.000 - 50.0 °C
48.8 µin/in-°F
@Temperature 32.0 - 122 °F
ASTM E831
Deflection Temperature at 1.8 MPa (264 psi) 108 °C
@Thickness 3.17 mm
226 °F
@Thickness 0.125 in
ASTM D648
Glass Transition Temp, Tg >= 138 °C>= 280 °FDMA
Flammability, UL94 HB
@Thickness 5.50 mm
HB
@Thickness 0.217 in

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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