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    • 22. 发明申请
    • Dyed Olefin Yarns And Textile Fabrics Using Such Yarns
    • 使用这种纱线染色的烯烃纱线和织物
    • US20150361615A1
    • 2015-12-17
    • US14711354
    • 2015-05-13
    • Edward J. Negola
    • Edward J. Negola
    • D06P3/854D06P7/00
    • D06P3/854D01F1/02D01F6/06D01F6/46D06P1/0096D06P3/791D06P3/8204
    • A novel olefin fiber or yarn, textile fabric or film is manufactured using olefin that contains variable amounts of a unique dyeable concentrate additive including relevant amounts of amorphous nylon and nylon 6 and/or nylon 66. Fabrics, fibers, yarns and films made according this invention can be processed using conventional nylon dyeing systems carried out at atmospheric pressure. The dyeable concentrate additive can be easily dosed into a conventional fiber or film extruder or can be formed into blended pellets which can be extruded into olefin fiber or film dyeable at atmospheric pressures. Multiple tones of a color can be dyed in a single dye bath by using different amounts of dyeable concentrate in different yarns or fibers. This invention is of particular value in the apparel, carpet, home furnishings and soft signage industries. Significant energy savings may be realized in carrying out the dyeing processes at atmospheric pressures.
    • 使用含有可变量的独特的可染色浓缩添加剂的烯烃制造新型烯烃纤维或纱线,织物或薄膜,其包括相关量的无定形尼龙和尼龙6和/或尼龙66.织物,纤维,纱线和薄膜 可以使用在大气压下进行的常规尼龙染色系统来处理本发明。 可染色浓缩添加剂可以容易地投入到常规的纤维或薄膜挤出机中,或者可以形成为可以挤出成烯烃纤维或在大气压下可染色的薄膜的混合颗粒。 通过在不同的纱线或纤维中使用不同量的可染色浓缩物,可以在单个染浴中染色多种色调。 本发明在服装,地毯,家居装饰和软标牌行业中具有特别的价值。 在进行大气压力下的染色工艺时,可以实现显着的节能。
    • 23. 发明授权
    • Polypropylene spunbond fibers and methods for making same
    • 聚丙烯纺粘纤维及其制造方法
    • US09212432B2
    • 2015-12-15
    • US12678626
    • 2008-09-05
    • William M. FerryGalen C. Richeson
    • William M. FerryGalen C. Richeson
    • D04H3/16D01D5/00D01D1/06D01D5/08D01F6/06
    • D01D5/0023D01D1/065D01D5/08D01F6/06D04H3/16D10B2321/022Y10T442/681
    • Disclosed herein is a spunbond fiber of visbroken polypropylene having an Mw/Mn of from 3.5 to 7.0, an Mz/Mw of from greater than 2.0 and a melt flow rate (230/2.16) of from 50 to 100 dg/min. Also disclosed is a process for producing spunbond fibers comprising melt blending a polypropylene having a melt flow rate (230/2.16) of from 10 to 30 dg/min with a peroxide visbreaker such that the resulting melt flow rate of the visbroken polypropylene is from 50 to 100 dg/min; melt extruding the visbroken polypropylene through a die block such that filaments of the visbroken polypropylene being produced are exposed to a cabin pressure of from 4500 to 7000 Pa; and forming fibers of from less than 6.0 denier. Nonwoven fabrics and multiple-layer structures can be made from the fibers described herein that are useful for filtering and absorption related articles.
    • 本文公开了具有3.5至7.0的Mw / Mn,大于2.0的Mz / Mw和50至100dg / min的熔体流动速率(230 / 2.16)的脱模聚丙烯的纺粘纤维。 还公开了一种生产纺粘纤维的方法,其包括将熔体流动速率(230 / 2.16)为10至30dg / min的聚丙烯与过氧化物破乳剂熔融共混,使得所得的抗坏裂聚丙烯的熔体流动速率为50 至100 dg / min; 通过模块将熔融挤出减枝裂纹的聚丙烯,使得生产的抗坏裂聚丙烯的长丝暴露于4500至7000Pa的客舱压力; 并形成小于6.0旦尼尔的纤维。 无纺织物和多层结构可以由本文所述的纤维制成,其可用于过滤和吸收相关物品。