Heat dissipating elastic body composition and heat dissipating elastic body realized therefrom
A technology of elastomers and compositions, applied in the field of heat-dissipating elastomer compositions and heat-dissipating elastomers formed therefrom, can solve problems such as functional decline, damage to heating elements, inability to absorb physical stimuli such as vibration and impact, and minimize noise. the effect of
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Embodiment 1
[0163] After adding 100 parts by weight of methyl vinyl silicone rubber with a weight average molecular weight of 540000 and a viscosity of 10000000cps into the kneader as the main resin, add 22 parts by weight of a specific surface area of 275m 2 / g, fumed silica with an average particle diameter of 12nm was used as a filling enhancer, and 6.25 parts by weight of methyl vinyl silicon with a degree of polymerization of 17 was added as a physical property enhancing component and kneaded for 90 minutes. Then, 150 parts by weight of alumina having an average particle diameter of 8 μm relative to 100 parts by weight of the main component resin was added to the kneader and mixed. The mixed mixture is mixed under the condition of 2-Roll, while adding 0.31 parts by weight as organic peroxide 2,5-dimethyl-2,5-bis( tert-butyl peroxy) hexane (2,5-dimethyl-2,5-di(t-butyl peroxy) hexane) was used as vulcanizing agent and mixed and defoamed, thus prepared at a temperature of 25 ℃ with a ...
Embodiment 2~3
[0166] Preparation was carried out in the same manner as in Example 1, and as shown in Table 1 below, heat dissipation elastomers as shown in Table 1 below were prepared by changing the composition of the heat dissipation elastomer composition.
experiment example 1
[0170] The following physical property evaluations were performed on the heat-dissipating elastic bodies prepared in Examples 1 to 3 and Comparative Examples 1 and 2, as shown in Table 1.
[0171] First, the thermal conductivity was measured by the method of ASTM E1461. In addition, the hardness was measured with a durometer (Shore-A). In addition, the tensile strength and elongation were measured with a tensile testing machine (UTM).
[0172] Table 1
[0173]
[0174] As can be confirmed in the table, with respect to Comparative Example 1 and Comparative Example 2 containing more heat-dissipating fillers than the content of the present invention, Examples 1 to 3 are all excellent in thermal conductivity, hardness, tensile strength and elongation. In particular, it was confirmed that in the case of Comparative Example 1, hardness, tensile strength, and elongation other than thermal conductivity were somewhat superior to those of Example 1, but the decrease in thermal cond...
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