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    • 21. 发明授权
    • Binding device
    • 装订装置
    • US07874758B2
    • 2011-01-25
    • US11577692
    • 2005-01-11
    • Kanji TanakaHiroshi AraiHiroyuki Yamashita
    • Kanji TanakaHiroshi AraiHiroyuki Yamashita
    • B42F9/00
    • B42F9/001Y10T24/204Y10T24/206
    • A binding device having a binding member that operates at a binding position of objects to be bound has a structure with which the bound objects do not readily come off. The binding device includes a board having a bearing plate. A spring member and an operation lever are attached to a shaft inserted in the bearing plate and a turned-up part. Protruding pieces of a binding member are inserted in through holes of turned-up parts formed in the board. One end of the spring member is secured to the operation lever, and the other end is fitted in a through hole of a turned portion at the distal end of the binding member. By closing the operation lever, the binding member rotates around a line connecting the protruding pieces at both ends, thereby pressing down sheets of paper placed on the board with a pressing portion. At this time, the other end of the spring member presses the turned portion, thereby biasing the pressing portion.
    • 具有在要绑定的物体的绑定位置操作的装订构件的装订装置具有结合物体不容易脱离的结构。 装订装置包括具有支承板的板。 弹簧构件和操作杆附接到插入到支承板中的轴和翻转部分上。 装订构件的突出片插入形成在板上的翻边部分的通孔中。 弹簧构件的一端固定在操作杆上,另一端装配在装订构件的远端处的转动部分的通孔中。 通过关闭操作杆,装订构件围绕连接两端的突出片的线旋转,由此用按压部分压下放置在板上的纸张。 此时,弹簧构件的另一端按压转动部分,从而偏压按压部分。
    • 23. 发明授权
    • Method of operating an internal combustion engine
    • 操作内燃机的方法
    • US07669578B2
    • 2010-03-02
    • US12013360
    • 2008-01-11
    • Hiroyuki YamashitaTatsuya TanakaTomomi Watanabe
    • Hiroyuki YamashitaTatsuya TanakaTomomi Watanabe
    • F02B17/00F02B3/00
    • F02D41/3041F02B1/12F02B17/00F02B2075/125F02B2275/16F02D13/0211F02D13/0265F02D41/006F02D41/3047F02D41/3064F02D2041/001F02M26/01Y02T10/123Y02T10/18
    • A method of operating an internal combustion engine having a combustion chamber with a piston and a spark plug, comprising during a first mode, bringing the temperature of the combustion chamber to auto-ignition temperature by adjusting engine operating conditions and producing auto-ignition in said combustion chamber without requiring spark from said spark plug; and during a second mode, bringing the temperature of the combustion chamber close to auto-ignition temperature by adjusting engine operating conditions, forming a small cloud of stratified air-fuel mixture near said spark plug, igniting said fuel cloud by a spark form said spark plug, and then causing cylinder pressure to rise, thereby producing auto-ignition at other sites in said combustion chamber wherein said first mode is implemented in a first operating range and said second mode is implemented only in a second operating range where engine speed and load are lower than said first operating range.
    • 一种操作具有活塞和火花塞的燃烧室的内燃机的方法,包括在第一模式期间,通过调节发动机工作条件使燃烧室的温度达到自燃温度,并在所述燃烧室中产生自动点火 燃烧室,而不需要来自所述火花塞的火花; 并且在第二模式期间,通过调节发动机运行条件使燃烧室的温度接近自燃温度,在火花塞附近形成分层空气 - 燃料混合物的小云,通过火花形式点燃所述燃料云,所述火花 堵塞,然后使气缸压力升高,从而在所述燃烧室中的其他位置产生自动点火,其中所述第一模式在第一操作范围内实现,并且所述第二模式仅在发动机转速和负载的第二操作范围内实现 低于所述第一操作范围。
    • 26. 发明申请
    • BINDING DEVICE
    • 绑定装置
    • US20090067914A1
    • 2009-03-12
    • US11577692
    • 2005-01-11
    • Kanji TanakaHiroshi AraiHiroyuki Yamashita
    • Kanji TanakaHiroshi AraiHiroyuki Yamashita
    • B42F13/20
    • B42F9/001Y10T24/204Y10T24/206
    • A binding device having a binding member that operates at a binding position of objects to be bound has a structure with which the bound objects do not readily come off. The binding device includes a board having a bearing plate. A spring member and an operation lever are attached to a shaft inserted in the bearing plate and a turned-up part. Protruding pieces of a binding member are inserted in through holes of turned-up parts formed in the board. One end of the spring member is secured to the operation lever, and the other end is fitted in a through hole of a turned portion at the distal end of the binding member. By closing the operation lever, the binding member rotates around a line connecting the protruding pieces at both ends, thereby pressing down sheets of paper placed on the board with a pressing portion. At this time, the other end of the spring member presses the turned portion, thereby biasing the pressing portion.
    • 具有在要绑定的物体的绑定位置操作的装订构件的装订装置具有结合物体不容易脱离的结构。 装订装置包括具有支承板的板。 弹簧构件和操作杆附接到插入到支承板中的轴和翻转部分上。 装订构件的突出片插入形成在板上的翻边部分的通孔中。 弹簧构件的一端固定在操作杆上,另一端装配在装订构件的远端处的转动部分的通孔中。 通过关闭操作杆,装订构件围绕连接两端的突出片的线旋转,由此用按压部分压下放置在板上的纸张。 此时,弹簧构件的另一端按压转动部分,从而偏压按压部分。
    • 30. 发明授权
    • Solid-shaped detergent
    • 固体洗涤剂
    • US07067469B2
    • 2006-06-27
    • US10661643
    • 2003-09-15
    • Yuhki YanagisawaNobuyoshi YamaguchiShu YamaguchiHitoshi TakayaHiroyuki Yamashita
    • Yuhki YanagisawaNobuyoshi YamaguchiShu YamaguchiHitoshi TakayaHiroyuki Yamashita
    • C11D17/00
    • C11D3/0052C11D17/0047C11D17/065
    • A solid-shaped detergent comprising particles for detergent, wherein the particles have a dissolution rate of 90% or more, under conditions where the particles are supplied in water at 5° C.; stirred for 60 seconds under the stirring conditions that 1 g of the particles are supplied to a 1-L beaker having an inner diameter of 105 mm which is charged with 1 L of hard water having 71.2 mg CaCO3/L, wherein a molar ratio of Ca/Mg is 7/3, and stirred with a stirring bar of 35 mm in length and 8 mm in diameter at a rotational speed of 800 rpm; and filtered with a standard sieve having a sieve-opening of 74 μm as defined by JIS Z 8801, wherein the dissolution rate of the particles is calculated by the Equation (1): Dissolution Rate (%)=[1−(T/S)]×100,  (1) wherein S is a weight (g) of the particles supplied; and T is a dry weight (g) of insoluble remnants of the particles remaining on the sieve when an aqueous solution prepared under the above stirring conditions is filtered with the sieve.
    • 一种固体形洗涤剂,其包含用于洗涤剂的颗粒,其中颗粒在5℃的水中供应的条件下,其溶解速率为90%以上。 在搅拌条件下搅拌60秒,将1g的颗粒供给到内径为105mm的1L的烧杯中,该烧杯装入1L的具有71.2mg CaCO 3的硬水, / L,其中Ca / Mg的摩尔比为7/3,并以800rpm的转速与长35mm,直径8mm的搅拌棒一起搅拌; 并用JIS Z 8801定义的筛孔为74μm的筛孔进行过滤,其中通过式(1)计算出颗粒的溶解速度:<?in-line-formula description =“In-line 公式“end =”lead“?>溶解速率(%)= [1-(T / S)] x100,(1)<?在线公式描述=”在线公式“end =”tail“? >其中S是所供应颗粒的重量(g); 当用筛子过滤在上述搅拌条件下制备的水溶液时,T是残留在筛上的颗粒的不溶性残留物的干重(g)。