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    • 95. 发明申请
    • MELTBLOWN NONWOVEN WEBS INCLUDING NANOFIBERS AND APPARATUS AND METHOD FOR FORMING SUCH MELTBLOWN NONWOVEN WEBS
    • 包括NANOFIBERS和MERTBLOWN NONWEEVEN WEBS在内的非织造布和装置以及形成这样的非织造布的方法
    • US20060084341A1
    • 2006-04-20
    • US10904002
    • 2004-10-19
    • Hassan BodaghiMehmet Sinangil
    • Hassan BodaghiMehmet Sinangil
    • D04H1/00D01D5/30D04H1/56B28B5/00
    • D01D5/32D01D5/0985D04H1/4382D04H1/56Y10T442/614Y10T442/615Y10T442/637Y10T442/68
    • Apparatus and method for forming nanofibers and nonwoven webs formed of such nanofibers. The nanofibers are formed by changing the rheology in at least first and second flows of a liquid material such that the changed rheology of the first and second flows differs by an amount sufficient to produce a phase separation when the first and second flows are combined to define meltblown fibers. Each meltblown fiber has lengthwise first and second cross-sectional regions formed of the liquid material from the first and second flows, respectively. These regions are separated along a length of at least a majority of the meltblown fibers to form a plurality of nanofibers, which are collected together with any unsplit meltblown fibers to form the nonwoven web. The difference in the changed rheology of the flows may be produced by using two extruders with different barrel diameters to create differ shear histories for the two flows.
    • 用于形成由这种纳米纤维形成的纳米纤维和非织造纤维网的装置和方法。 纳米纤维通过改变至少液体材料的第一和第二流动中的流变学而形成,使得当第一和第二流量被组合以限定时,第一和第二流动的变化的流变学变化足以产生相分离的量 熔喷纤维。 每个熔喷纤维分别具有由第一和第二流动的液体材料形成的纵向第一和第二横截面区域。 这些区域沿着至少大部分熔喷纤维的长度分离以形成多个纳米纤维,其与任何非分裂熔喷纤维一起收集以形成非织造纤维网。 可以通过使用具有不同筒直径的两个挤出机来产生流动的变化流变学的差异,以产生两个流动的不同剪切历史。
    • 97. 发明授权
    • Melt spinning apparatus and process for making nonwoven webs
    • 熔融纺丝设备及其制造方法
    • US07001567B2
    • 2006-02-21
    • US10321735
    • 2002-12-17
    • Martin A. AllenSteve Clark
    • Martin A. AllenSteve Clark
    • D01D5/088D01D7/00D04H3/02
    • D04H1/56D01D5/0985D04H1/70D04H3/02D04H3/16
    • An air handler for collecting air discharged from a melt spinning apparatus. The air handler includes an outer housing having walls defining a first interior space. One of the walls has an intake opening for receiving the discharge air. Another wall has an exhaust opening for discharging the air. The intake opening is in fluid communication with the first interior space. An inner housing is positioned within the first interior space and has walls defining a second interior space. At least one of the walls of the inner housing has an opening. The first interior space communicates with the second interior space through the opening. The second interior space is in fluid communication with the exhaust opening.
    • 一种用于收集从熔融纺丝装置排出的空气的空气处理器。 空气处理器包括具有限定第一内部空间的壁的外壳。 其中一个墙壁具有用于接收排放空气的进气口。 另一个墙壁具有用于排出空气的排气口。 进气口与第一内部空间流体连通。 内壳体定位在第一内部空间内并且具有限定第二内部空间的壁。 内壳体的至少一个壁具有开口。 第一内部空间通过开口与第二内部空间连通。 第二内部空间与排气口流体连通。
    • 100. 发明授权
    • Method for meltblowing multi-component liquid filaments
    • 熔喷多组分液体丝的方法
    • US06946093B2
    • 2005-09-20
    • US10272969
    • 2002-10-17
    • Martin A. Allen
    • Martin A. Allen
    • D01D5/08D01D5/098D01D5/30D04H1/56D04H3/16D01D5/32D01D5/34D01D5/36
    • D01D5/0985D01D5/30D04H1/56
    • An apparatus for meltblowing multiple types of liquid materials into multi-component filaments. A pair of outer manifold elements sandwich an intermediate manifold element. Respective channels are formed between opposing sides of the outer manifold elements and the respective opposite sides of the intermediate manifold element. These recesses form channels which diverge or widen away from associated inlets at the top of the manifold assembly. A die tip is coupled to the manifold assembly at a lower side and communicates with the outlets of the channels. The die tip includes a combining member for producing a desired multi-component filament configuration and further includes air discharge passages for impinging the discharged multi-component filaments with pressurized air.
    • 一种用于将多种类型的液体材料熔化成多组分长丝的设备。 一对外部歧管元件夹着中间歧管元件。 各个通道形成在外歧管元件的相对侧和中间歧管元件的相应相对侧之间。 这些凹槽形成在歧管组件的顶部处与相关入口分离或扩大的通道。 模头在下侧连接到歧管组件,并与通道的出口连通。 模尖包括用于产生期望的多组分细丝构造的组合构件,并且还包括用于用加压空气冲击排出的多组分长丝的空气排放通道。