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    • 1. 发明专利
    • Flow control valve
    • GB1067308A
    • 1967-05-03
    • GB1085066
    • 1966-03-11
    • MASAO YOSHINO
    • F15B13/02F16K11/065
    • 1,067,308. Valves. M. YOSHINO. March 11, 1966 [April 8, 1965], No. 10850/66. Heading F2V. A flow control valve for the synchronous operation of hydraulic equipment divides a flow of hydraulic fluid from an inlet port 4 to two outlet ports 5, and comprises a valve body 1 having a bore Q and an axially slidable valve member B serving upon movement in one direction to increase the flow area to one outlet port and to decrease the flow area to the other outlet port and vice versa, end chambers H being formed in the bore at opposite ends of the valve member, the valve member B being divided into two outer chambers S, R and an intermediate chamber A, the intermediate chamber communicating with the inlet 4 and the outer chambers communicating with outlets 5, narrow passages connecting the outer chambers with the intermediate chamber A and the end chambers H, the valve member being adapted to move axially in the bore in response to a pressure differential between the end chambers H whereby increased resistance to flow out of one outlet port will result in movement of the valve member to increase the flow area to the one outlet port and decrease the flow to the other outlet port. Each of the outlets may be provided with a one-way check valve P and alternatively, with a further oppositely arranged one-way check valve L, whereby the flow control valve can be used to combine the flow of fluid from two sources, the outlet ports serving as inlet ports and the inlet port serving as an outlet port. The volume of end chambers H may be adjusted independently of the valve member B by rotating knobs 3 which displace plungers M.
    • 5. 发明授权
    • Shaped foamable materials
    • 成型发泡材料
    • US06357819B1
    • 2002-03-19
    • US09450932
    • 1999-11-29
    • Masao Yoshino
    • Masao Yoshino
    • B62D2904
    • B29C44/18B60R13/08B62D29/002
    • Shaped foamable structures 10 for filling hollow structural members 1 preferably include a shaped foamable material 11 constructed from a plurality of foamable pieces 12 that are arranged with desired clearances and are interconnected with each other, and a support member 30 for positioning the shaped foamable material 11 within a cavity 6 of the hollow structural member 1. Methods for using the shaped foamable structures 10 include placing the shaped foamable structures 10 within the hollow structural members 1 and heating the foamable material 11 to expand and fill the hollow structural member 1.
    • 用于填充中空结构构件1的成型可发泡结构10优选地包括由多个可发泡片12构成的成形的可发泡材料11,所述可发泡件11以所需的间隙布置并彼此互连,以及用于将成形的可发泡材料11定位的支撑构件30 在中空结构构件1的空腔6内。使用成型的可发泡结构10的方法包括将成形的可发泡结构10放置在中空结构构件1内并加热可发泡材料11以膨胀和填充中空结构构件1。
    • 7. 发明授权
    • Liquid crystal cell assembly and liquid crystal cell manufacturing method
    • 液晶单元组装和液晶单元制造方法
    • US08120744B2
    • 2012-02-21
    • US12552950
    • 2009-09-02
    • Masao YoshinoToshiharu Nishino
    • Masao YoshinoToshiharu Nishino
    • G02F1/1339
    • G02F1/1339G02F1/133351
    • A liquid crystal cell assembly includes a first substrate member on which at least first electrodes are formed on each of cell regions which respectively correspond to liquid crystal cells and are arranged to be adjacent to each other, a second substrate member on which at least a second electrode opposing the first electrodes is formed on each cell region to correspond to each cell region of the first substrate member, and frame-like seal members which are arranged between the first substrate member and second substrate member, include common sides each formed by continuously connecting at least two adjacent side, are formed into frames that respectively define the cell regions, and bond the first and second substrate members.
    • 液晶单元组件包括:第一基板构件,在其上至少第一电极形成在各自对应于液晶单元并且被布置为彼此相邻的单元区域中;第二基板构件,其上至少第二基板构件 在每个单元区域上形成与第一电极相对的电极,以对应于第一基板构件的每个单元区域,并且布置在第一基板构件和第二基板构件之间的框架状密封构件包括共同的边, 至少两个相邻侧被形成为分别限定单元区域并且结合第一和​​第二基板构件的框架。
    • 9. 发明授权
    • Mechanical governor for internal combustion engine
    • 内燃机机械调速器
    • US4095574A
    • 1978-06-20
    • US750321
    • 1976-12-13
    • Masao YoshinoKoichi Mori
    • Masao YoshinoKoichi Mori
    • F02B3/06F02D1/10F02D1/04
    • F02D1/10F02B3/06
    • A mechanical governor for a Diesel construction vehicle engine includes a centrally pivoted torque lever 32 whose lower end is proximate a stop pin 33 on the lower end of a conventional main spring tension lever 9, and whose upper end is cammed against an adjustable torque spring 29 by an extension arm 19a integral with a conventional speed control lever 18 at low or partial load speed settings. This pivots the lower end of the torque lever 32 away from and out of engagement with the pin stop 33, whereby the torque spring 29 is inoperable and no additional engine slowdown is caused thereby. At full throttle or maximum load settings, however, the extension arm 19a releases the torque lever 32 and the torque spring 29 pivots the lower end of the arm into engagement with the pin stop 33. Thus, the added restraining force of the torque spring retards the speed increasing movement of the tension lever, to thereby provide the desired anti-stall delay during which the operator has time to back off or shift to a lower gear ratio.
    • 用于柴油机车辆发动机的机械调速器包括中心枢转的扭矩杆32,其下端靠近常规主弹簧拉杆9的下端上的止动销33,并且其上端凸轮抵靠可调节的扭矩弹簧29 通过在低或部分负载速度设置下与常规速度控制杆18成一体的延伸臂19a。 这使得转矩杆32的下端远离销止动件33离开和脱离接合,由此扭矩弹簧29不可操作,并且不会引起额外的发动机减速。 然而,在全油门或最大负载设置下,延伸臂19a释放扭矩杆32,并且扭矩弹簧29使臂的下端枢转成与销止动件33接合。因此,扭矩弹簧的增加的约束力延迟 张力杆的增速运动,从而提供期望的防失速延迟,在此期间操作者有时间退回或转换到较低的传动比。