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    • 1. 发明授权
    • Apparatus for automatically positioning pantyhose materials in a panty
part sewing machine
    • 连裤袜材料自动定位在内裤缝纫机中的装置
    • US5058516A
    • 1991-10-22
    • US620192
    • 1990-11-30
    • Hiroji MaegawaTatsurou OmutaHiroshi OgitaTakanori Imai
    • Hiroji MaegawaTatsurou OmutaHiroshi OgitaTakanori Imai
    • A41B11/14D05B23/00D05B35/12D05B39/00D05B69/00
    • D05B23/008
    • An apparatus for automatically positioning welt portions and garter lines of pantyhose materials by aligning upper and lower positions in relation to each other for carrying out a pantyhose panty part seaming process, in which when detection sensors detect materials roughly fitted to respective upper and lower template assemblies, plates for positioning garter lines cause a panty part to move backward to be inserted deeply onto the template assemblies and the garter lines of the upper and lower materials are positioned by aligning with each other through detection sensors for positioning garter lines, and successively, a plate for positioning welt portions causes the panty part to move backward, stretching the panty part to a prescribed length so that the welt portions of the upper and lower materials are aligned with each other, thus fully fitting the upper and lower materials to the template assemblies and, at the same time completing the positioning of the welt portions and garter lines by aligning upper and lower positions in relation to each other.
    • 一种用于通过将上下位置相对于彼此对准来自动定位连裤袜材料的边缘部分和绞合线的装置,用于执行连裤袜内裤部分接缝过程,其中当检测传感器检测大致配合到相应的上模板组件和下模板组件 用于定位绞合线的板使得内裤部分向后移动以深入地插入到模板组件上,并且通过用于定位袜带线的检测传感器彼此对准来定位上部和下部材料的袜带线,并且连续地 用于定位边缘部分的板使得内裤部分向后移动,将内裤部分延伸到规定的长度,使得上部和下部材料的边缘部分彼此对准,从而将上部和下部材料完全配合到模板组件 并且同时完成边缘部分和吊袜带l的定位 通过相对于彼此对准上下位置来进行。
    • 2. 发明授权
    • Handling of limp fabric
    • 处理柔软面料
    • US4896618A
    • 1990-01-30
    • US271860
    • 1988-08-29
    • Robert C. BlakeShane A. BoneDavid LauYoshinobu FukuyamaHiroji MaegawaHisayoshi MorimotoHiroshi Ogita
    • Robert C. BlakeShane A. BoneDavid LauYoshinobu FukuyamaHiroji MaegawaHisayoshi MorimotoHiroshi Ogita
    • A41H43/02B65H9/08B65H45/04D05B23/00D05B35/00D05B39/00D06F89/00
    • B65H45/04A41H43/0257Y10S112/02
    • Apparatus for stretching and folding a limp fabric piece (1), having a plurality of opposed elastic bands (12,12',13,13') extending therefrom comprising a platform (2) having a foldable segment, means for folding said foldable segment relative to the platform (2),A limp fabric piece feeding plate (5) for feeding said limp fabric piece (1) to said platform (2) and holding said fabric piece (1) thereon in an extended condition and in a pre-determined position to enable eventual folding of the fabric piece (1) to produce a garment,means for moving said plate (5) horizontally or vertically,suction means located adjacent said platform (2) for applying suction to the elastic bands (12,12',13,13') extending from the fabric piece (1),elastic band gripper means associated with the suction means for gripping and holding the sucked-in elastic bands (12,12',13,13'), relative to said suction means,means for moving said suction means relative to said platform (2) to stretch said fabric piece (1),garment gripper means associated with said foldable segment for gripping and holding the stretched fabric piece (1) at the correct position for folding said fabric piece (1) andgarment pressing means associated with said platform (2) for pressing and holding the folded fabric piece (1) adjacent the overlapping elastic bands (12,12',13,13') of said fabric piece (1).
    • PCT No.PCT / AU87 / 00447 Sec。 371日期1988年8月29日第 102(e)日期1988年8月29日PCT提交1987年12月30日PCT公布。 出版物WO88 / 05021 日期:1988年7月14日。用于拉伸和折叠柔软织物片(1)的装置,具有从其延伸的多个相对的弹性带(12,12',13,13'),其包括具有可折叠片段 用于将所述可折叠部分相对于所述平台(2)折叠的装置,用于将所述柔软织物片(1)馈送到所述平台(2)并将所述织物片(1)保持在其中的柔软织物片馈送板(5) 延伸状态和预定位置以使得织物片(1)最终折叠以产生衣服,用于水平或垂直地移动所述板(5)的装置,位于所述平台(2)附近的抽吸装置,用于将吸力施加到 从织物片(1)延伸的弹性带(12,12',13,13'),与抽吸装置相关联的弹性带夹持装置,用于夹持和保持吸入的弹性带(12,12',13,13' 13'),相对于所述抽吸装置,用于使所述抽吸装置相对于所述平台(2)移动以拉伸的装置 辅助织物片(1),与所述可折叠片相关联的衣服夹持器装置,用于将拉伸的织物片(1)夹持并保持在用于折叠所述织物片(1)的正确位置和与所述平台(2)相关联的衣服按压装置 将所述折叠的织物片(1)按压并保持在所述织物片(1)的重叠弹性带(12,12',13,13')附近。
    • 5. 发明授权
    • Recirculating exhaust gas cooling device
    • 循环排气冷却装置
    • US6161528A
    • 2000-12-19
    • US182282
    • 1998-10-29
    • Yoshiyuki AkaoNorio NakazawaHiroshi Ogita
    • Yoshiyuki AkaoNorio NakazawaHiroshi Ogita
    • F02M25/07F28D19/04
    • F28D19/041F02M26/31F02M26/40
    • A recirculating exhaust gas cooling device is provided for cooling exhaust gas of a vehicle engine while the exhaust gas is recirculating through an EGR system designed to lower NOx emission levels. The cooling device includes a housing in which an exhaust gas recirculation passage and a cooling fluid passages are located next to each other, to extend in parallel with each other, and a heat-exchange core member rotatably provided in the housing and defining a multiplicity of passages that extend in substantially parallel with a rotational axis of the core member, and a rotating mechanism that rotates the core member. The multiple passages of the core member communicate with both of the exhaust gas recirculation passage and the cooling fluid passage. With the core member being rotated, EGR gas passing through the exhaust gas recirculation passage is cooled by a part of the passages of the core member that has been cooled by a cooling fluid passing through the cooling fluid passage.
    • 提供一种再循环废气冷却装置,用于冷却车辆发动机的废气,同时废气通过设计成降低NOx排放水平的EGR系统再循环。 冷却装置包括壳体,废气再循环通道和冷却流体通道彼此相邻放置,彼此平行地延伸;以及热交换芯部件,其可旋转地设置在壳体中并限定多个 与芯构件的旋转轴线基本平行地延伸的通路,以及使该芯构件旋转的旋转机构。 芯构件的多个通道与废气再循环通道和冷却流体通道两者连通。 在芯件旋转的情况下,通过排气再循环通道的EGR气体被已经被冷却流体冷却的冷却流体冷却的芯部件的一部分通道冷却。
    • 6. 发明授权
    • Exhaust emission purifier for diesel engines
    • 柴油机排气净化器
    • US4881959A
    • 1989-11-21
    • US221091
    • 1988-07-19
    • Yoichiro KonoYasuaki KumagaiNobuaki TakedaHiroshi Ogita
    • Yoichiro KonoYasuaki KumagaiNobuaki TakedaHiroshi Ogita
    • F01N3/022F01N3/027F01N3/032F02B3/06
    • F01N3/032F01N3/027F01N2330/06F01N2410/04F02B3/06Y10S55/10Y10S55/30
    • An exhaust emission purifier for a diesel engine has a particulate trap disposed in the exhaust emission passage of the diesel engine for entrapping particulates contained in exhaust gases emitted from the diesel engine, the particulate trap being housed in a canning container. An electric heater is disposed in the canning container upstream of the particulate trap for heating the exhaust gases to a temperature which is high enough to burn particulates entrapped by the particulate trap. A heat conductor/converter device disposed in the canning container upstream of the electric heater for absorbing heat radiated from the electric heater and discharging the absorbed heat into air flowing from a position upstream of the canning container into the particulate trap. The heat generated by the electric heater is efficiently utilized to heat the air introduced into the particulate trap for reliably and quickly igniting and burning the entrapped particulates.
    • 用于柴油发动机的排气净化器具有设置在柴油发动机的废气排放通道中的颗粒捕集器,用于捕获从柴油发动机排放的废气中所含的微粒,微粒捕集器容纳在罐头容器中。 电加热器设置在颗粒捕集器上游的罐装容器中,用于将废气加热至足以燃烧由颗粒捕集器捕获的微粒的温度。 一种热导体/转换器装置,设置在电加热器上游的罐头容器中,用于吸收从电加热器辐射的热量并将吸收的热量排放到从罐头容器上游位置流入颗粒捕集器的空气中。 由电加热器产生的热量有效地用于加热引入颗粒捕集器的空气,以可靠和快速地点燃和燃烧被捕获的颗粒。
    • 7. 发明授权
    • Cooling structure of bearing housing for turbocharger
    • 涡轮增压器轴承箱冷却结构
    • US09546568B2
    • 2017-01-17
    • US14117795
    • 2012-06-22
    • Tadashi KanzakaKenichiro IwakiriHiroshi Ogita
    • Tadashi KanzakaKenichiro IwakiriHiroshi Ogita
    • F02B33/44F01D25/12F01D25/14F02B39/00
    • F01D25/125F01D25/14F02B39/005F05D2220/40F05D2260/232
    • A cooling structure for a bearing housing for a turbocharger is provided. The cooling structure is configured so that the cooling structure has improved productivity, the occurrence of heat soak-back is reduced, and the cooling structure has improved cooling performance. The cooling structure cools both a bearing housing 13 and a bearing 52 by cooling water flowing through an annular cooling water path 13f formed in the bearing housing 13, and is provided with: a water path inlet 13h for supplying the cooling water and a water path outlet 13j for discharging the cooling water, which are provided in the bearing housing 13 to communicate with the annular cooling water path 13f; and a partial partition 14a in the bearing housing 13 to partially close a water path which forms the shortest route between the water path inlet 13h and the water path outlet 13j.
    • 提供了一种用于涡轮增压器的轴承壳体的冷却结构。 冷却结构被构造成使得冷却结构具有提高的生产率,减少了热浸回的发生,并且冷却结构具有改善的冷却性能。 冷却结构通过冷却流过形成在轴承箱13中的环形冷却水路径13f的水来冷却轴承壳体13和轴承52,并且设置有:用于供给冷却水的水路入口13h和水路 出口13j,用于排出设置在轴承箱13中以与环形冷却水通道13f连通的冷却水; 以及轴承壳体13中的部分分隔部14a,以部分地闭合在水路入口13h与水路出口13j之间形成最短路线的水路。
    • 10. 发明申请
    • COOLING STRUCTURE OF BEARING HOUSING FOR TURBOCHARGER
    • 滚动轴承轴承冷却结构
    • US20140090375A1
    • 2014-04-03
    • US14117795
    • 2012-06-22
    • Tadashi KanzakaKenichiro IwakiriHiroshi Ogita
    • Tadashi KanzakaKenichiro IwakiriHiroshi Ogita
    • F01D25/12F02B39/00
    • F01D25/125F01D25/14F02B39/005F05D2220/40F05D2260/232
    • It is intended to provide a cooling structure for a bearing housing for a turbocharger, the cooling structure being configured so that the cooling structure is manufactured with improved productivity, the occurrence of heat soak-back is reduced, and the cooling structure has improved cooling performance. The cooling structure is configured to cool both a bearing housing 13 and a bearing 52 by cooling water flowing through an annular cooling water path 13f formed in the bearing housing 13, and is provided with: a water path inlet 13h for supplying the cooling water and a water path outlet 13j for discharging the cooling water, which are provided in the bearing housing 13 so as to communicate with the annular cooling water path 13f and a partial partition 14a in the bearing housing 13 to partially close a water path which forms the shortest route between the water path inlet 13h and the water path outlet 13j.
    • 旨在提供一种用于涡轮增压器的轴承壳体的冷却结构,该冷却结构被构造成使得冷却结构以提高的生产率制造,减少了热吸收的发生,并且冷却结构具有改善的冷却性能 。 冷却结构通过冷却流过形成在轴承箱13中的环形冷却水路13f的水而冷却轴承壳体13和轴承52,并且设置有:用于供给冷却水的水路入口13h, 用于排出冷却水的水路出口13j,其设置在轴承壳体13中以与环形冷却水路径13f连通,并且在轴承箱13中与部分隔板14a连通,以部分地闭合形成最短的水路 水路入口13h与水路出口13j之间的路线。