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    • 1. 发明授权
    • Pressurized steam-jetting nozzle, and method and apparatus for producing nonwoven fabric using the nozzle
    • 加压蒸汽喷嘴,以及使用喷嘴生产无纺布的方法和装置
    • US07395588B2
    • 2008-07-08
    • US10530430
    • 2003-09-30
    • Masahiro TaniguchiTomio SuzukiShinichi Shimizu
    • Masahiro TaniguchiTomio SuzukiShinichi Shimizu
    • D04H1/46
    • D04H18/04
    • The present invention relates to a nozzle suitable for jetting high pressure and high temperature steam, and a method and an apparatus for producing an entangled nonwoven fabric using the nozzle. According to the apparatus, a steam inlet side main conduit (c1) and a steam outlet side conduit (c3) are connected with both end parts of a tubular nozzle holder (11) in a longitudinal direction provided integrally with nozzle members (15, 16, 23) having a plurality of nozzle holes (16a, 26). A steam outlet side conduit (c2) is provided with an opening/closing valve (55) and a trap conduit (57) is branched from a conduit at an upstream side from the opening/closing valve (55). By opening the opening/closing valve (55), a rapid temperature rise of the nozzle holder (11) can be enabled at a time of starting a production of a nonwoven fabric. Furthermore, even in the opening/closing valve (55) is closed in a regular operation, drainage generated inside the nozzle holder (11) can always be discharged to outside so that steam can be jetted stably and continuously, and thus a high quality entangled fiber nonwoven fabric can be produced continuously from the fiber web by the steam.
    • 本发明涉及适用于喷射高压高温蒸汽的喷嘴,以及使用该喷嘴生产缠结无纺布的方法和装置。 根据该装置,蒸汽入口侧主管道(c 1)和蒸汽出口侧管道(c 3)与管状喷嘴保持器(11)的两个端部在喷嘴构件(15)一体地沿纵向连接 ,16,23),具有多个喷嘴孔(16a,26)。 蒸汽出口侧管道(c 2)设置有开/关阀(55),并且捕集导管(57)从开/关阀(55)的上游侧的导管分支。 通过打开开/关阀55,可以在开始制造无纺织物时能够使喷嘴保持架11快速升温。 此外,即使在开闭阀(55)中,即使在常规操作中闭合,喷嘴保持架(11)内产生的排水总是能够排出到外部,从而可以稳定地且连续地喷射蒸汽,因此高质量的缠结 可以通过蒸汽从纤维网连续生产纤维无纺布。
    • 2. 发明授权
    • Concealing door for car mountable equipment
    • 汽车安装设备隐蔽门
    • US06241300B1
    • 2001-06-05
    • US09426004
    • 1999-10-25
    • Tomio Suzuki
    • Tomio Suzuki
    • B60N312
    • B60R11/02B60R11/0235B60R2011/0092B60R2011/0094B60R2011/0096G11B33/027
    • An opening-closing door (20) for closing an equipment body (10) is provided at a front side of a car-mounted-type equipment, and an operating portion (21) for operating the equipment body (10) can be operated only when the opening-closing door (20) is in its open condition. A pivotal movement point, serving as an axis of pivotal movement of the opening-closing door (20), as well as a drive point to which a drive force for pivotally moving the opening-closing door (20) is applied, is provided on the opening-closing door (20). A first drive mechanism (race (35)) for driving the pivotal movement point in a direction perpendicular to the front side of the door (20), disposed in its closed condition, is provided at the opening-closing door (20). A second drive mechanism (lever (36)) for pivotally moving the opening-closing door (20) about the pivotal movement point is provided at the opening-closing door. When the opening-closing door (20) is to be opened, a slide pin (38), serving as the pivotal movement axis, is driven to a predetermined position in the perpendicular direction by the rack (35) prior to of the pivotal movement of the opening-closing door (20), and thereafter the lever (36) presses the drive point, thereby pivotally moving the opening-closing door (20) about the pivotal movement point.
    • 用于关闭设备主体(10)的开闭门(20)设置在轿厢式设备的前侧,并且用于操作设备主体(10)的操作部分(21)仅能够被操作 当打开关闭门(20)处于其打开状态时。 用作开闭门(20)的枢转运动的轴线的枢转运动点以及施加用于枢转运动开闭门(20)的驱动力的驱动点设置在 开闭门(20)。 在所述开闭门(20)处设置有用于在与所述门(20)的前侧垂直的方向上驱动所述枢转运动点的第一驱动机构(座圈(35))。 在开闭门处设置有用于围绕枢转运动点枢转地移动开闭门(20)的第二驱动机构(杠杆(36))。 当打开关闭门(20)打开时,用作枢转运动轴线的滑动销(38)在枢转运动之前由架子(35)在垂直方向上被驱动到预定位置 的开闭门(20),此后,杆(36)按压驱动点,从而使关闭门(20)围绕枢转运动点枢转运动。
    • 3. 发明授权
    • Method of detecting overcoating rubber flowed in space between core member and securing metal fitting of polymer insulator
    • 检测核心部件与聚合物绝缘子固定金属接头之间的空间中流动的复涂橡胶的方法
    • US06189387B1
    • 2001-02-20
    • US09223291
    • 1998-12-30
    • Takao TaniTomio Suzuki
    • Takao TaniTomio Suzuki
    • G01N322
    • H01B19/00H01B17/325
    • A method of detecting an overcoating rubber flowed in a space between a core member and a securing metal fitting of a polymer insulator having the core member, the overcoating arranged around the core member and the securing metal fitting fixed to at least one end of the core member, is disclosed. The method includes the steps of: applying a torque in a circumferential direction to the securing metal fitting, after forming the overcoating rubber but before fixing the securing metal fitting to the core member; deforming an index provided on a surface of the overcoating; and detecting whether the overcoating rubber is existent or not in the space between the securing metal member and the core member in response to a deforming extent indicated by the index.
    • 一种检测在芯构件和具有芯构件的聚合物绝缘体的固定金属配件之间的空间中流动的外涂层橡胶的方法,所述外包层围绕芯构件布置,固定金属配件固定到芯的至少一端 会员,被披露。 该方法包括以下步骤:在形成外涂层橡胶之后,然后将固定金属配件固定到芯构件之前,将周向上的扭矩施加到固定金属配件; 使设置在外涂层的表面上的指数变形; 并且响应于由该指标所示的变形范围,检测在固定金属构件和芯构件之间的空间中是否存在外涂层橡胶。
    • 4. 发明授权
    • Substrates for magnetic discs, magnetic discs and process for producing
magnetic discs
    • 用于磁盘,磁盘的基板和用于制造磁盘的工艺
    • US6048589A
    • 2000-04-11
    • US188982
    • 1998-11-09
    • Tomio SuzukiFuminori TakeyaMasahiro Abe
    • Tomio SuzukiFuminori TakeyaMasahiro Abe
    • C03C10/00C03C21/00G11B5/64G11B5/73G11B5/84
    • G11B5/7315C03C10/0027C03C21/001C03C21/005G11B5/8404Y10T428/24355
    • A magnetic disc substrate is provided, which includes a magnetic disc substrate body made of glass and is characterized in that a metal element capable of absorbing light in at least a surface portion of the magnetic disc substrate body, and a texture is formed on a surface of the magnetic disc substrate body. Ions of the metal element are dispersed in the surface portion of the magnetic disc substrate, or the metal element is contained in a composition of the glass constituting the magnetic disc substrate in the form of an oxide. The glass is preferably a crystallized glass a Li.sub.2 O--Al.sub.2 O.sub.3 --SiO.sub.2 based crystallized glass, which particularly preferably contains 65 to 85 wt % of SiO.sub.2, 8 to 15 wt % of Li.sub.2 O, 2 to 8 wt % of Al.sub.2 O.sub.3, 1 to 5 wt % of P.sub.2 O.sub.5 and 1 to 10 wt % of ZrO.sub.2 and has lithium disilicate (Li.sub.2 O.2SiO.sub.2) as a main crystalline phase.
    • 提供一种磁盘基板,其包括由玻璃制成的磁盘基板主体,其特征在于,在表面上形成能够吸收磁盘基板主体的至少表面部分中的光的金属元件和纹理 的磁盘基板主体。 金属元素的离子分散在磁盘基板的表面部分中,或者金属元素以氧化物的形式包含在构成磁盘基板的玻璃的组成中。 玻璃优选为Li2O-Al2O3-SiO2系微晶玻璃的结晶化玻璃,特别优选含有65〜85重量%的SiO 2,8〜15重量%的Li 2 O,2〜8重量%的Al 2 O 3,1〜5重量% 的P 2 O 5和1〜10重量%的ZrO 2,并且具有二硅酸锂(Li 2 O 2·SiO 2)作为主要结晶相。
    • 5. 发明授权
    • Process for manufacturing a crystallized glass substrate for magnetic
discs
    • 用于制造用于磁盘的结晶玻璃基板的方法
    • US5788731A
    • 1998-08-04
    • US724649
    • 1996-10-01
    • Tomio SuzukiFuminori Takeya
    • Tomio SuzukiFuminori Takeya
    • C03B29/00C03B11/00C03B23/03C03B32/02G11B5/73G11B5/82G11B5/84C03B27/012C03B21/00C03B23/00C03B32/00
    • C03B23/0307C03B32/02
    • A process for producing a crystallized glass substrate for magnetic disks, including the steps of: (a) holding an amorphous glass plate having a uniform thickness and two principal flat surfaces thereof between a pair of pressing setters in a sandwiched fashion, which pressing setters are non-reactive with the amorphous glass and undeformable during heating for crystallization of the amorphous glass; (b) softening the amorphous glass plate in a sandwiched stack form by heating at a temperature above an annealing point of the amorphous glass, whereby the principal surfaces are fitted onto the flat surfaces of the pressing setters to rectify warping to flatten the amorphous glass plate; and (c) then, increasing the temperature to a crystal growth temperature to grow crystals within the amorphous glass, whereby the amorphous glass plate is crystallized as maintaining its warp-free state, followed by solidifying.
    • 一种用于制造用于磁盘的结晶玻璃基板的方法,包括以下步骤:(a)以夹持方式将具有均匀厚度和两个主平面的非晶玻璃板夹持在一对压制装置之间, 与无定形玻璃非反应性,在加热期间无定形玻璃结晶时不能变形; (b)通过在高于无定形玻璃的退火点的温度下加热而使夹层堆叠形式的非晶玻璃板软化,由此将主表面装配到压制装置的平坦表面上,以矫正翘曲以使非晶玻璃板 ; 和(c)然后,将温度升高至晶体生长温度以在非晶玻璃内生长晶体,由此使非晶玻璃板保持其无翘曲状态结晶,然后凝固。