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    • 1. 发明授权
    • Method for producing flat yarn
    • 平纱生产方法
    • US4633662A
    • 1987-01-06
    • US779114
    • 1985-09-23
    • Masahisa TokiSeiji SatohYoshiaki MatsuiKunio MorihataToyoji Murata
    • Masahisa TokiSeiji SatohYoshiaki MatsuiKunio MorihataToyoji Murata
    • D02G3/22D01D5/42D02G1/14D02G3/40D02G1/00
    • D02G3/402
    • A flat yarn wherein fibers composing a yarn are bonded to each other substantially in a side-by-side manner to form a tape-like flat body and the flat body has a plurality of gear-crimped portions across a width thereof. There may be a plurality of reverse points at which front and back surfaces of the yarn replace each other. The points are twisted in the same direction and positioned at random intervals from each other. The gear-crimped portions are arranged randomly in the lengthwise direction of the yarn. The fibers composing the yarn are bonded to each other in an intermittent manner in the lengthwise direction of the yarn. A fabric made from the flat yarn has an aesthetic appearance and soft touch as well as good crease resistance. A method of production for the same is also provided.
    • 其中构成纱线的纤维基本上以并排的方式彼此粘合以形成带状平坦体的扁平纱线,并且平坦体在其宽度上具有多个齿轮卷边部分。 纱线的前表面和后表面可以相互替换的多个反向点。 这些点在相同的方向上扭转并且以彼此的随机间隔定位。 齿轮卷曲部分在纱线的长度方向上随机布置。 构成纱线的纤维在纱线的长度方向上以间歇的方式彼此粘合。 由平纱制成的面料具有美观的外观和柔软的触感以及良好的抗折皱性。 还提供了一种生产方法。
    • 3. 发明授权
    • Thermal storage type gas treating apparatus
    • 蓄热式气体处理装置
    • US07740026B2
    • 2010-06-22
    • US11630933
    • 2005-06-28
    • Yoshiaki MatsuiYuji NagataSatoshi HorisawaTomotaka Miwa
    • Yoshiaki MatsuiYuji NagataSatoshi HorisawaTomotaka Miwa
    • B01D47/06F17C11/00
    • F28D17/02F16K3/085F23G7/068Y10T137/5689Y10T137/86992
    • A thermal storage type gas treating apparatus has a high sealing performance while achieving a simple apparatus construction. The thermal storage type gas treating apparatus includes a valve member rotatable to place successively a supply port for a gas to be treated and an exhaust port for a treated gas formed in the valve member, in an opposed and communicating relationship with supply and exhaust ports formed in a distributor, thereby successively passing gas to be treated and treated gas through a plurality of thermal storage chambers communicating at one end with a combustion chamber. The valve member is supported to be displaceable toward and away from the distributor. A valve biasing device is provided for pressing the valve body to the distributor, while being inoperative with respect to a gas chamber device.
    • 蓄热式气体处理装置在实现简单的装置结构的同时具有高的密封性能。 蓄热式气体处理装置包括:阀构件,可旋转地连续地设置用于待处理气体的供给口和形成在阀构件中的处理气体的排气口,与形成的供排气口相对和连通; 从而将经处理的气体和经处理的气体连续地通过在一端与燃烧室连通的多个储热室。 阀构件被支撑成能够朝向和远离分配器移动。 提供了一种阀偏压装置,用于将阀体压向分配器,同时相对于气室装置不起作用。
    • 4. 发明授权
    • Pressure gradient control system
    • 压力梯度控制系统
    • US5356335A
    • 1994-10-18
    • US905894
    • 1992-06-29
    • Yoshiaki MatsuiMutsumi Moriwaki
    • Yoshiaki MatsuiMutsumi Moriwaki
    • F24F7/007B05B15/12F24F7/08F24F11/02G05D16/20E05B15/12
    • B05B15/1292B05B15/1222F24F11/022F24F7/08G05D16/2073
    • A pressure gradient control system includes a ventilated area divided into a plurality of intercommunicating zones, a zone-to-zone pressure gradient detecting device for detecting pressure gradients between adjacent zones, a control unit for adjusting quantities of air supply or exhaust to/from the zones based on detection information received from the zone-to-zone pressure gradient detecting device to establish a predetermined pressure gradient between adjacent zones, and an interior-ambient pressure gradient detecting device for detecting pressure gradients between an ambient area and those of the zones communicating with the ambient area. The control unit is operable, in response to detection information received from the zone-to-zone pressure gradient detecting device and the interior-ambient pressure gradient detecting device, to adjust quantities of air supply or exhaust to/from the zones, thereby to establish the predetermined pressure gradient between adjacent zones and between the ambient area and those of the zones communicating with the ambient area.
    • 压力梯度控制系统包括被分成多个相互连通的区域的通风区域,用于检测相邻区域之间的压力梯度的区域 - 压力梯度检测装置,用于调节与/ 基于从区域到区域压力梯度检测装置接收的检测信息来建立相邻区域之间的预定压力梯度的区域,以及内部环境压力梯度检测装置,用于检测环境区域与通信区域之间的压力梯度 与环境区域。 响应于从区域 - 压力梯度检测装置和内部 - 环境压力梯度检测装置接收到的检测信息,控制单元可操作以调节到/从区域的空气供应或排出的量,从而建立 相邻区域之间以及环境区域与与环境区域通信的区域之间的预定压力梯度。