Flexible Metal Clad Laminates
A flexible metal and metal layer technology, applied in metal layered products, layered products, synthetic resin layered products, etc., can solve the problems of welding resistance and other problems
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preparation example Construction
[0095] Under the same preparation conditions as in Synthesis Example 1, preparation was carried out according to the components and contents described in [Table 1].
[0096] Table 1
[0097] [Table 1]
[0098]
[0099] *E' at 300°C: Storage heat at 300°C
[0100] *E' at 350°C: Storage heat at 350°C
[0101] *CTE: Coefficient of linear thermal expansion measured in the range of 100°C to 200°C
[0102] *Tg: glass transition temperature
Embodiment 1
[0104] The polyamic acid solution prepared by [Synthesis Example 2] was applied on a 12 μm thick electrolytic copper foil (F2WS copper foil made of Furukawa circuit foil, roughness Rz = 2.0 μm), which was then heated at 140° C. dried to form a first polyimide precursor layer. The polyamic acid solution prepared by [Synthesis Example 1] was applied on one side of the first polyimide precursor layer, which was then dried at 140° C. to form a second polyimide precursor layer. After that, the polyamic acid solution prepared by [Synthesis Example 2] was applied on one side of the second polyimide precursor layer, and then dried at 140° C. to form a third polyimide precursor Floor. Under a nitrogen atmosphere, the fabricated laminate was heated from 150°C to 385°C for 9 minutes. After curing, the thickness of each of the first polyimide precursor layer, the second polyimide precursor layer and the third polyimide precursor layer reached 2.5 μm, 14 μm and 3 μm, respectively. The p...
Embodiment 2
[0106] By the same method as in Example 1, a flexible metal-clad laminate was produced according to the layer structure in [Table 2].
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