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    • 4. 发明授权
    • Inflator and vehicle airbag device using the same
    • 充气器和车辆安全气囊装置使用相同
    • US08393639B2
    • 2013-03-12
    • US12672781
    • 2008-08-08
    • Osamu FukawataseYasushi ItouTakaki FukuyamaHiroki MuraseNaoki MatsudaTomoharu Kobayashi
    • Osamu FukawataseYasushi ItouTakaki FukuyamaHiroki MuraseNaoki MatsudaTomoharu Kobayashi
    • B60R21/26C06D5/00
    • B60R21/26B60R21/2037
    • A disc inflator having gas cooling and mist removal functions, and reduced in weight and in size in a radial direction. An inflator case (40) has an upper case (36) at an occupant side and a lower case (38) at a side opposite an occupant. A tubular holding member (60) having a separation wall (64) at a base portion thereof is provided in the inflator case. A gas flow path (74) is formed at a periphery of the holding member (60), and communication holes (80) communicating with the gas flow path (74) are formed in the separation wall (64). At a peripheral wall portion (36B) of the upper case (36) is formed a gas ejection hole (76) at a position offset towards an occupant side only by a distance δ from a central position P of a combustion chamber (68). Accordingly, a length (L1) of a flow path from the starting end of the flow path to the gas ejection hole (76) increases, enabling effective heat exchange of a high temperature gas and removal of mist (82). Thereby, a conventionally used filter may be disposed of.
    • 具有气体冷却和除雾功能的盘式充气机,并且在径向方向上的重量和尺寸减小。 充气器壳体(40)在乘员侧具有上壳体(36)和与乘员相对的一侧的下壳体(38)。 在充气机壳体中设置有在其基部具有分隔壁(64)的管状保持构件(60)。 在保持构件(60)的周围形成有气体流路(74),在分隔壁(64)上形成有与气体流路(74)连通的连通孔(80)。 在上壳体(36)的周壁部分(36B)处,在朝向乘员侧偏移距离燃烧室(68)的中心位置P的距离δ处形成气体喷射孔(76)。 因此,从流路的起始端到气体喷出孔(76)的流路的长度(L1)增加,能够有效地进行高温气体的热交换和除雾(82)。 因此,可以处理常规使用的过滤器。
    • 5. 发明申请
    • INFLATOR AND VEHICLE AIRBAG DEVICE USING THE SAME
    • 使用其的充气器和车辆安全气囊装置
    • US20110025025A1
    • 2011-02-03
    • US12672781
    • 2008-08-08
    • Osamu FukawataseTakaki FukuyamaHiroki MuraseNaoki MatsudaTomoharu Kobayashi
    • Osamu FukawataseTakaki FukuyamaHiroki MuraseNaoki MatsudaTomoharu Kobayashi
    • B60R21/215B60R21/207
    • B60R21/26B60R21/2037
    • A disc inflator having gas cooling and mist removal functions, and reduced in weight and in size in a radial direction. An inflator case (40) has an upper case (36) at an occupant side and a lower case (38) at a side opposite an occupant. A tubular holding member (60) having a separation wall (64) at a base portion thereof is provided in the inflator case. A gas flow path (74) is formed at a periphery of the holding member (60), and communication holes (80) communicating with the gas flow path (74) are formed in the separation wall (64). At a peripheral wall portion (36B) of the upper case (36) is formed a gas ejection hole (76) at a position offset towards an occupant side only by a distance δ from a central position P of a combustion chamber (68). Accordingly, a length (L1) of a flow path from the starting end of the flow path to the gas ejection hole (76) increases, enabling effective heat exchange of a high temperature gas and removal of mist (82). Thereby, a conventionally used filter may be disposed of.
    • 具有气体冷却和除雾功能的盘式充气机,并且在径向方向上的重量和尺寸减小。 充气器壳体(40)在乘员侧具有上壳体(36)和与乘员相对的一侧的下壳体(38)。 在充气机壳体中设置有在其基部具有分隔壁(64)的管状保持构件(60)。 在保持构件(60)的周围形成有气体流路(74),在分隔壁(64)上形成有与气体流路(74)连通的连通孔(80)。 在上壳体(36)的周壁部分(36B)处,在朝向乘员侧偏移距离燃烧室(68)的中心位置P的距离δ处形成气体喷射孔(76)。 因此,从流路的起始端到气体喷出孔(76)的流路的长度(L1)增加,能够有效地进行高温气体的热交换和除雾(82)。 因此,可以处理常规使用的过滤器。
    • 8. 发明申请
    • Polyethylene filament and a process for producing the same
    • 聚乙烯长丝及其制造方法
    • US20050118418A1
    • 2005-06-02
    • US10510565
    • 2003-04-04
    • Godo SakamotoSyoji OdaHiroki Murase
    • Godo SakamotoSyoji OdaHiroki Murase
    • D01F6/04D02G3/00
    • D02J1/22D01F6/04Y10T428/2913Y10T428/2933Y10T428/2967
    • The invention relates to a filament excellent in incision resistance comprising as a primary component a polyethylene filament having a weight-average molecular weight of 300,000 or less and a ratio of a weight-average molecular weight to a number-average molecular weight (Mw/Mn) of 4.0 or less as determined in the state of a filament as well as a modulus of 500 cN/dtex or more, and to a fabric excellent in incision resistance, a fibrous material for reinforcing cement mortar or concrete, and a rope, each of which comprises the filament. The filament can be produced by drawing a non-drawn polyolefin filament which comprises a polyethylene having a weight-average molecular weight of 60,000-600,000, a ratio of a weight-average molecular weight to a number-average molecular weight (Mw/Mn) of 4.5 or less, and a rate of birefringence (Δn) of 0.008 or more, at a temperature not higher than the α-relaxation temperature of said non-drawn filament.
    • 本发明涉及一种抗切割性优异的丝,其特征在于,以重均分子量为300,000以下,重均分子量与数均分子量(Mw / Mn )为4.0以下,在丝状态下的模量以及500cN / dtex以上的模量,以及耐切割性优异的织物,用于增强水泥砂浆或混凝土的纤维材料和绳索,各自 其中包括细丝。 丝可以通过拉伸非拉伸聚烯烃长丝来制造,所述聚烯烃长丝包含重均分子量为60000-600,000的聚乙烯,重均分子量与数均分子量(Mw / Mn)的比率 在不高于所述未拉伸长丝的α-松弛温度的温度下,双折射率(Deltan)为0.008以上。
    • 9. 发明授权
    • Process of making a high strength polyolefin filament
    • 制造高强度聚烯烃长丝的工艺
    • US07736564B2
    • 2010-06-15
    • US11723548
    • 2007-03-20
    • Godo SakamotoSyoji OdaHiroki Murase
    • Godo SakamotoSyoji OdaHiroki Murase
    • D01D5/08D01D5/16D01F6/04
    • D02J1/22D01F6/04Y10T428/2913Y10T428/2933Y10T428/2967
    • A filament having excellent incision resistance includes as a primary component a polyethylene filament having a weight-average molecular weight of 300,000 or less and a ratio of a weight-average molecular weight to a number-average molecular weight (Mw/Mn) of 4.0 or less as determined in the state of a filament as well as a modulus of 500 cN/dtex or more. This filament is useful to produce a fabric excellent in incision resistance, a fibrous material for reinforcing mortar or concrete, and a rope, each of which comprises the filament. The filament can be produced by drawing a non-drawn polyolefin filament which comprises a polyethylene having a weight-average molecular weight of 60,000-600,000, a ratio of a weight-average molecular weight to a number-average molecular weight (Mw/Mn) of 4.5 or less, and a rate of birefringence (Δn) of 0.008 or more, at a temperature not higher than the α-relaxation temperature of the non-drawn filament.
    • 具有优异的切割性的长丝包括作为主要组分的重均分子量为300,000以下的聚乙烯长丝,重均分子量与数均分子量(Mw / Mn)的比例为4.0或 在灯丝状态下的测定值以及500cN / dtex以上的模量较小。 这种丝线可用于生产切割性优异的织物,用于加强砂浆或混凝土的纤维材料,以及包括丝的绳索。 丝可以通过拉伸非拉伸聚烯烃长丝来制造,所述聚烯烃长丝包含重均分子量为60000-600,000的聚乙烯,重均分子量与数均分子量(Mw / Mn)的比率 的4.5倍以下,双折射率(&Dgr; n)为0.008以上,不高于未拉伸长丝的α-松弛温度。