Multilayer structure
A laminated structure and structure technology, applied to layered products, synthetic resin layered products, and other household appliances, can solve problems such as unusable, adhesive fluctuations, and low adhesiveness of polyamide resin, achieving Excellent durability effect
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Embodiment 1
[0148] Using (A) polyamide 12 resin composition (A-1) and (B) polyamide 9T (B-1) shown above, using Plabor (manufactured by Plastic Engineering Research Institute Co., Ltd.) two-layer tube forming machine, (A) and (B) were melted at an extrusion temperature of 250°C and an extrusion temperature of 330°C respectively, and the jetted molten resins were merged with an adapter to form a laminated tubular body. This is followed by cooling of the sizing die for dimensional control, followed by pulling. When expressed as (a) layer (outer layer) formed of (A) polyamide 12 resin composition, (b) layer (inner layer) formed of (B) polyamide 9T, the layer structure (a) / (b) = 0.75 / 0.25 mm, a laminated tube with an inner diameter of 6 mm and an outer diameter of 8 mm. Table 1 shows the measurement results of the physical properties of the laminated tube.
Embodiment 2
[0150] In Example 1, except that (B) polyamide 9T (B-1) was changed to polyamide 9T (B-2), and (B) was melted at an extrusion temperature of 300°C, the same method as in Example 1 was used. The method for obtaining the laminated tube with the layer structure shown in Table 1. Table 1 shows the measurement results of the physical properties of the laminated tube.
Embodiment 3
[0152] In Example 2, except that (A) polyamide 12 resin composition (A-1) was changed to polyamide 12 resin composition (A-2), the same method as in Example 2 was used to obtain the polyamide 12 resin composition shown in Table 1. Laminated tubes with layer structure. Table 1 shows the measurement results of the physical properties of the laminated tube.
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