Sheet of inner lattice of chamois imitation and similar leather, and its mfg. method
A technology of imitation suede and style, applied in the field of suede-like leather-like sheet and its manufacturing, which can solve the problems of deformation, insufficient breaking strength, and inability to fully meet the use of clothing
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[0074] Hereinafter, the present invention will be described in detail with specific examples. The present invention is not limited to these Examples. Moreover, if the parts and ratios in the examples are not limited in advance, they are all about the quality. In addition, in this example, the golf glove that requires strict abrasion resistance is evaluated, so the color of the golf glove is uniformly black, which is one of the very popular colors. However, the color of the leather-like sheet of the present invention is certainly not limited. intention of.
[0075] Various physical properties were obtained by the following methods.
[0076] (1) The fineness of superfine fiber nascent fiber
[0077] The amount ejected from the spinneret is divided by the number of spinneret holes and the spinning speed to represent the mass equivalent to 10000m of fiber.
[0078] (II) Fineness of microfiber
[0079] A photograph of the cross-section of the fiber was taken with an electron m...
manufacture example 1
[0094] Fiber production example 1 (microfiber as-spun fiber (a) and microfiber (A))
[0095] Nylon 6 resin sheet (island component) and high-fluidity low-density polyethylene resin sheet (sea component) are melt-mixed in the spinneret, and the fineness is extruded from the spinning nozzle at a spinning speed of 350m / min. Spinning was performed for 10 dtex island-in-the-sea microfiber as-spun fibers (island component / sea component=50 / 50). In addition, at the time of spinning, 7 parts by mass of carbon black was added to 100 parts by mass of nylon 6. The island-in-the-sea microfiber nascent fiber is cut into short fibers 1 with a length of 51 mm after mechanical crimping without drafting. Table 1 shows the physical properties of the obtained staple fibers 1 . In addition, the physical properties of the ultrafine fibers obtained by removing the sea component in the short fibers 1 are also described in Table 1.
manufacture example 2
[0096] Fiber production example 2 (microfiber as-spun fiber (b) and microfiber (B))
[0097] Nylon 6 resin sheet (island component) and high-fluidity low-density polyethylene resin sheet (sea component) are melted and mixed in the spinneret, and the fineness is extruded from the spinning nozzle at a spinning speed of 280m / min. Spinning was performed for 10 dtex island-in-the-sea microfiber as-spun fibers (island component / sea component=50 / 50). In addition, at the time of spinning, 4.5 parts by mass of carbon black was added to 100 parts by mass of nylon 6. The island-in-the-sea microfiber nascent fiber was stretched 2.8 times, then mechanically crimped, and then cut into short fibers 2 with a length of 51 mm. Table 1 shows the physical properties of the obtained short fibers 2 . In addition, the physical properties of the ultrafine fibers obtained by removing the sea component in the short fibers 2 are also described in Table 1.
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