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    • 117. 发明授权
    • Connector-shaking prevention structure
    • US06527579B2
    • 2003-03-04
    • US09556843
    • 2000-04-21
    • Naotoshi SatoMasaya Yamamoto
    • Naotoshi SatoMasaya Yamamoto
    • H01R438
    • H01R13/4364H01R13/533H01R13/6273
    • An elastic arm (2), having a shaking prevention projection (3), is formed on one connector (1), and a recess (5) for fitting engagement with the projection (3) is formed in the other connector (4). When the two connectors (1, 4) are completely fitted together, the projection (3) is engaged in the recess (5) in such a manner that front and rear surfaces (3a, 3b) of the projection (3) are held in intimate contact with front and rear surfaces (5a, 5b) of the recess (5), respectively. These surfaces (3a, 3b, 5a, 5b) are slanting. When the projection (3) is engaged in the recess (5), elastic deformation of the arm (2) is canceled. The arm (2) extends straight along a connector fitting chamber (6), and the recess (5) is formed in an outer wall (45) of the connector (4). A lock mechanism (12, 27) for locking the two connectors to each other are provided generally in opposed relation to the arm (2). Second and third arms (31, 32) for shaking prevention purposes are provided 90° out of phase with the arm (2) in opposite directions. Preferably, the second and third arms (31, 32) are disposed flush with opposite side walls (30) of the connector (1), respectively, and each of the second and third arms has a projection (34; 35) which projects from the corresponding side wall (30).
    • 119. 发明授权
    • Wire shaking prevention structure of connector
    • 连接器的防抖结构
    • US06280234B1
    • 2001-08-28
    • US09544554
    • 2000-04-06
    • Masaya YamamotoKenji SuzukiSatoshi Yamada
    • Masaya YamamotoKenji SuzukiSatoshi Yamada
    • H01R1358
    • H01R13/582H01R33/7664H01R2201/26
    • A plurality of rows (stages) of wire receiving portions (13, 14) are formed in a connector housing (1), and are arranged in a stepped manner in a direction of a length of the wires, and a plurality of rows (stages) of wire-pressing projections (8, 9) are formed on the spacer (7), and are offset from each other in the direction of the length of the wires, and each row of wires are pressed against a corresponding wall portion (11, 12), extending from the corresponding row of wire receiving portions, by the corresponding row of projections, respectively. The first row of wire receiving portions (14) are provided at an inlet side of a spacer receiving portion (3), and the second row of wire receiving portions (13) are provided at an inner side of the spacer receiving portion, and are longer than the first row of wire receiving portions, and the projections (9) are opposed to a step wall portion (12a) formed between the first and second rows of wire receiving portions, and the projections (8) are opposed to the wall portion (11). Formed on a base wall portion (27) of the spacer (7), and terminal receiving portions (31) are formed in the spacer, and are offset from the projections (9) in the direction of the length of the wires. The projections (8) are formed on the outer wall portion (29) of the terminal receiving portions. Terminal-retaining projected portions (35-38) are formed on the base wall portion (27) and the outer wall portion (29). Each of the projections (8, 9) has slanting surfaces (8a-9b) or an arcuate surface for preventing damage to the wire. A terminal support portion (18) is provided within the spacer receiving portion in the connector housing.
    • 在连接器壳体(1)中形成有多个(级)的电线接收部分(13,14),并且沿着电线长度的方向以阶梯状布置多个行(阶段) 的线挤压突起(8,9)形成在间隔件(7)上,并且在电线的长度方向上彼此偏移,并且每排电线被压靠在相应的壁部(11 ,12),从相应的导线接收部分排延伸,分别由相应的一排凸起延伸。 第一排线接收部分(14)设置在间隔件接收部分(3)的入口侧,第二排电线接收部分(13)设置在间隔件接收部分的内侧,并且 比第一排电线接收部分长,并且突起(9)与形成在第一和第二排电线接收部分之间的台阶壁部分(12a)相对,并且突起(8)与壁部分 (11)。 形成在间隔件(7)的基壁部分(27)上,并且在间隔件中形成端子接收部分(31),并且在电线长度方向上从凸起(9)偏移。 突起(8)形成在端子容纳部的外壁部(29)上。 端部保持突出部分(35-38)形成在基壁部分(27)和外壁部分(29)上。 每个突起(8,9)具有倾斜表面(8a-9b)或弧形表面,用于防止对金属丝的损坏。 端子支撑部分(18)设置在连接器壳体中的间隔件接收部分内。
    • 120. 发明授权
    • Husking apparatus
    • 老虎机
    • US5678477A
    • 1997-10-21
    • US725427
    • 1996-10-03
    • Satoru SatakeHiroyuki FukumitsuMasaya Yamamoto
    • Satoru SatakeHiroyuki FukumitsuMasaya Yamamoto
    • B02B7/02B02B3/04B02B3/00B02B3/06
    • B02B3/045
    • In a husking apparatus comprising: a husking portion having a pair of husking rolls which are adjustable in clearance between them and rotated in opposite directions with different peripheral speeds to perform husking of paddy grain; and a supply portion disposed above the husking portion for supplying paddy grain to be husked to the husking portion, wherein the supply portion is so constructed as to supply paddy grain from the supply portion to the husking portion in the form of a layer in such a manner that a thickness of the layer of a flow of paddy grain becomes not greater than two grains at the husking portion, and the supply portion is so constructed as to supply paddy grain to the husking portion at a speed not less than a flowing-down speed corresponding to a minimum husking throughput desired of the husking apparatus so that husking is performed with a throughput not less than the minimum husking throughput, it is possible to enhance the husking throughput while minimizing the breakage of paddy grain. In cases where paddy is the one of long-grain variety of rice, the flowing-down speed of paddy grain is set to be not less than 3 m/sec when the paddy grain reaches a region around the clearance between the pair of husking rolls.
    • 一种脱壳装置,包括:脱壳部,其具有一对脱壳辊,所述一对脱壳辊可以间隙间调节并以不同的圆周速度沿相反方向旋转,从而进行稻谷的脱壳; 以及设置在脱壳部上方的供给部,用于将脱壳的稻谷供给到脱壳部,其中,供给部构成为将谷物从供给部以层状的形式供给到脱壳部, 稻谷流的层的厚度在脱壳部分变得不大于两个晶粒的方式,并且供应部分被构造成以不小于下流的速度将稻谷供应到脱壳部分 速度对应于脱壳装置所需的最小脱壳吞吐量,从而以不小于最小脱壳生产量的生产量进行脱壳,可以在使稻谷破碎最小化的同时提高脱壳生产能力。 在水稻是长粒米饭的情况下,当稻谷到达一对脱壳辊之间的间隙周围的区域时,稻谷的流下速度设定为不小于3m / sec 。