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    • 1. 发明申请
    • Acrylic synthetic fiber improved in styleability
    • 亚克力合成纤维的款式改善
    • US20050287365A1
    • 2005-12-29
    • US10522759
    • 2003-07-14
    • Satoru YoshimuraKazuaki Fujiwara
    • Satoru YoshimuraKazuaki Fujiwara
    • A41G3/00D01F6/40D02G3/00
    • A41G3/0083D01F6/40Y10T428/2913Y10T428/2967
    • An object of the present invention is to provide an acrylic synthetic fiber having excellent stylability and heat resistance. The object may be attained by an acrylic synthetic fiber having a knot-like unevenness on a fiber surface thereof, a difference of distances between a depression and a projection of 5.0 micrometers to 15.0 micrometers, a distance between peaks of unevenness of 0.05 mm to 0.5 mm, a flexural rigidity value of the fiber of 7.0×10−7 N-m2/m to 10.0×10−7 N-m2/m, and a torsional rigidity value of the fiber of 5.0×10−9 N-m2 to 10.0×10−9 N-m2, and furthermore the object may be attained by an acrylic synthetic fiber comprising an acrylic copolymer having a content of acrylonitrile of not less than 60 mol %, a sulfur content originating in a vinyl based monomer including a sulfonic group of 0.15% by weight to 0.50% by weight, and a specific viscosity of 0.20 to 0.50.
    • 本发明的目的是提供具有优良的造型性和耐热性的丙烯酸类合成纤维。 该目的可以通过在其纤维表面上具有结状凹凸的丙烯酸类合成纤维,凹陷和突起之间的距离差为5.0微米至15.0微米,不平坦峰之间的距离为0.05mm至0.5 mm,纤维的抗弯刚度值为7.0×10 -7 Nm 2 / m至10.0×10 -7 Nm 2, / SUP / m,纤维的扭转刚度值为5.0×10 -9 Nm 2至10.0×10 -9 Nm > 2,此外,目的可以通过丙烯酸类合成纤维来实现,所述丙烯酸类合成纤维包含丙烯腈含量不小于60mol%的丙烯酸共聚物,源自乙烯基类单体的硫含量,所述乙烯基类单体包括磺酸基 0.15重量%〜0.50重量%,比粘度为0.20〜0.50。
    • 3. 发明授权
    • Acrylic synthetic fiber improved in styleability
    • 亚克力合成纤维的款式改善
    • US07135225B2
    • 2006-11-14
    • US10522759
    • 2003-07-14
    • Satoru YoshimuraKazuaki Fujiwara
    • Satoru YoshimuraKazuaki Fujiwara
    • D01F6/00
    • A41G3/0083D01F6/40Y10T428/2913Y10T428/2967
    • An object of the present invention is to provide an acrylic synthetic fiber having excellent stylability and heat resistance. The object may be attained by an acrylic synthetic fiber having a knot-like unevenness on a fiber surface thereof, a difference of distances between a depression and a projection of 5.0 micrometers to 15.0 micrometers, a distance between peaks of unevenness of 0.05 mm to 0.5 mm, a flexural rigidity value of the fiber of 7.0×10−7 N-m2/m to 10.0×10−7 N-m2/m, and a torsional rigidity value of the fiber of 5.0×10−9 N-m2 to 10.0×10−9 N-m2, and furthermore the object may be attained by an acrylic synthetic fiber comprising an acrylic copolymer having a content of acrylonitrile of not less than 60 mol %, a sulfur content originating in a vinyl based monomer including a sulfonic group of 0.15% by weight to 0.50% by weight, and a specific viscosity of 0.20 to 0.50.
    • 本发明的目的是提供具有优良的造型性和耐热性的丙烯酸类合成纤维。 该目的可以通过在其纤维表面上具有结状凹凸的丙烯酸类合成纤维,凹陷和突起之间的距离差为5.0微米至15.0微米,不平坦峰之间的距离为0.05mm至0.5 mm,纤维的抗弯刚度值为7.0×10 -7 Nm 2 / m至10.0×10 -7 Nm 2, / SUP / m,纤维的扭转刚度值为5.0×10 -9 Nm 2至10.0×10 -9 Nm > 2,此外,目的可以通过丙烯酸类合成纤维来实现,所述丙烯酸类合成纤维包含丙烯腈含量不小于60mol%的丙烯酸共聚物,源自乙烯基类单体的硫含量,所述乙烯基类单体包括磺酸基 0.15重量%〜0.50重量%,比粘度为0.20〜0.50。
    • 5. 发明申请
    • MAGNETIC FIELD OBSERVATION DEVICE AND MAGNETIC FIELD OBSERVATION METHOD
    • 磁场观测装置和磁场观测方法
    • US20130174302A1
    • 2013-07-04
    • US13819486
    • 2011-09-05
    • Hitoshi SaitoSatoru Yoshimura
    • Hitoshi SaitoSatoru Yoshimura
    • G01Q60/50
    • G01Q60/38G01Q60/50G01Q60/54G01R33/022G01R33/0385
    • A magnetic-field-observation device and method for measuring magnetic force near a magnetic material specimen's surface with high resolution and detecting the polarity of the magnetic pole of specimen's surface. The device including: a probe; excitation mechanism that excites it; scanning mechanism that relatively moves the probe and specimen; alternating magnetic field generation mechanism to make the probe periodically undergo magnetization reversal and apply thereto an alternating magnetic field having magnitude not making the specimen undergo magnetization reversal; and modulation measurement mechanism for measuring degree of periodical frequency modulation of the probe's oscillation caused by its apparent spring constant periodically changed by force of periodically changed intensity and applied to the probe by alternating force through magnetic interaction between magnetizations of the probe and specimen, by frequency demodulation or by measuring intensity of one sideband wave spectrum among spectrums generated by the frequency modulation. The method performed using the device.
    • 一种用于以高分辨率测量磁性材料试样表面附近的磁力并检测试样表面磁极极性的磁场观测装置和方法。 该装置包括:探头; 激发机制; 相对移动探头和试样的扫描机构; 交变磁场产生机构使探针周期性地进行磁化反转,并向其施加具有不使样本经历磁化反转的量值的交变磁场; 以及用于测量由其由周期性变化的强度周期性地改变的表观弹簧常数引起的探头振荡周期性频率调制程度的调制测量机构,并且通过以探针和样品的磁化之间的磁相互作用的交替力通过频率施加到探针 通过频率调制产生的频谱中的一个边带波谱的强度进行解调或测量。 使用该设备执行的方法。
    • 6. 发明授权
    • Magnetic field observation device and magnetic field observation method
    • 磁场观测装置及磁场观测方法
    • US08621658B2
    • 2013-12-31
    • US13819486
    • 2011-09-05
    • Hitoshi SaitoSatoru Yoshimura
    • Hitoshi SaitoSatoru Yoshimura
    • G01Q60/54G01Q60/38G01Q60/50
    • G01Q60/38G01Q60/50G01Q60/54G01R33/022G01R33/0385
    • A magnetic-field-observation device and method for measuring magnetic force near a magnetic material specimen's surface with high resolution and detecting the polarity of the magnetic pole of specimen's surface. The device including: a probe; excitation mechanism that excites it; scanning mechanism that relatively moves the probe and specimen; alternating magnetic field generation mechanism to make the probe periodically undergo magnetization reversal and apply thereto an alternating magnetic field having magnitude not making the specimen undergo magnetization reversal; and modulation measurement mechanism for measuring degree of periodical frequency modulation of the probe's oscillation caused by its apparent spring constant periodically changed by force of periodically changed intensity and applied to the probe by alternating force through magnetic interaction between magnetizations of the probe and specimen, by frequency demodulation or by measuring intensity of one sideband wave spectrum among spectrums generated by the frequency modulation. The method performed using the device.
    • 一种用于以高分辨率测量磁性材料试样表面附近的磁力并检测试样表面磁极极性的磁场观测装置和方法。 该装置包括:探头; 激发机制; 相对移动探头和试样的扫描机构; 交变磁场产生机构使探针周期性地进行磁化反转,并向其施加具有不使样本经历磁化反转的量值的交变磁场; 以及用于测量由其由周期性变化的强度周期性地改变的表观弹簧常数引起的探头振荡周期性频率调制程度的调制测量机构,并且通过以探针和样品的磁化之间的磁相互作用的交替力通过频率施加到探针 通过频率调制产生的频谱中的一个边带波谱的强度进行解调或测量。 使用该设备执行的方法。