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    • 1. 发明授权
    • Spark ignited internal combustion engine system
    • 火花点火内燃机系统
    • US08677957B2
    • 2014-03-25
    • US12853595
    • 2010-08-10
    • Tsuyoshi GotoHidetoshi KudouMasami Nishida
    • Tsuyoshi GotoHidetoshi KudouMasami Nishida
    • F02D13/02F01L1/34
    • F02D41/0002F02B2075/125F02D13/0219F02D13/0269F02D15/04F02M26/13Y02T10/123Y02T10/142Y02T10/42
    • There is provided, in one aspect of the present description, an internal combustion engine system. In one example, the system comprises a controller configured to control an intake valve closing timing varying mechanism to vary a closing timing of the intake valve to regulate air charged in a combustion chamber in accordance with engine operating conditions and, in a first engine operating condition where a least volume of air is required to be charged into the combustion chamber, retard a closing timing of the intake valve to a most retarded crank angle which is after bottom dead center during a cylinder cycle and satisfies the following formulas: α≧−0.2685×ε02+10.723×ε0+15.815 and ε0≧11.0, where α is the most retarded crank angle and ε0 is a geometric compression ratio of the engine.
    • 在本说明书的一个方面,提供一种内燃机系统。 在一个示例中,该系统包括控制器,该控制器被配置为控制进气门关闭正时改变机构以改变进气门的关闭正时,以根据发动机运行状况调节在燃烧室中充入的空气,并且在第一发动机运行状态 其中需要将最少体积的空气装入燃烧室中,将进气门的关闭正时延迟到在汽缸循环内处于下死点之后的最大延迟曲柄角,并且满足以下公式:α≥-0.0685 ×&egr; 02 + 10.723×&egr; 0 + 15.815和&egr;0≥11.0,其中α是最大延迟的曲柄角,&egr; 0是发动机的几何压缩比。
    • 3. 发明授权
    • Spark-ignition internal combustion engine
    • 火花点火内燃机
    • US08820292B2
    • 2014-09-02
    • US12907394
    • 2010-10-19
    • Tsuyoshi GotoHidetoshi KudouYasushi NakaharaMasami Nishida
    • Tsuyoshi GotoHidetoshi KudouYasushi NakaharaMasami Nishida
    • F02F3/26
    • F02B23/104Y02T10/125
    • Provided is a spark-ignition internal combustion engine capable of ensuring engine output power while setting a geometric compression ratio of an engine body to a high value. In the spark-ignition internal combustion engine, each of a clearance between a top surface (3a) of a piston (3) located at a top dead center position and a lower surface (8a) of each of two intake valves (8) in a full-closed state, and a clearance between the top surface (3a) of the piston (3) located at the top dead center position and a lower surface (9a) of each of two exhaust valves (9) in a full-closed state, is set to 5 mm or more, and a stroke length S of the piston (3) is set to satisfy the following relation: S≦0.977×B+18.2, where B is a bore diameter of a cylinder.
    • 提供一种能够在将发动机主体的几何压缩比设定为高值的同时确保发动机输出功率的火花点火式内燃机。 在火花点火式内燃机中,位于上止点位置的活塞(3)的上表面(3a)和两个进气门(8)中的每一个的下表面(8a)之间的间隙中的每一个在 全闭合状态和位于上死点位置的活塞(3)的顶表面(3a)与两个排气门(9)中的每一个的下表面(9a)之间的间隙处于全封闭状态 状态设定为5mm以上,将活塞(3)的行程长度S设定为满足以下关系:S< ll; 0.977×B + 18.2,其中B是气缸的孔径。
    • 4. 发明申请
    • FEED FOR FISH FARMING
    • 饲料用于鱼类种植
    • US20120076897A1
    • 2012-03-29
    • US13260117
    • 2010-03-24
    • Tsuyoshi GotoYasuhiro FukudaItaru ShioyaHideki NikaidoYosuke TanakaTaeko Kousaka
    • Tsuyoshi GotoYasuhiro FukudaItaru ShioyaHideki NikaidoYosuke TanakaTaeko Kousaka
    • A23K1/18A23K1/16
    • A23K50/80A23K20/158A23K40/30Y02A40/818
    • [Problem]To provide a feed for fish farming which is excellent in terms of stability of feed supply and feed shelf life and which has excellent feed intake and feed efficiency.[Solution]A feed for fish farming consisting of an outer layer and an inner layer, characterized in that a composition constituting the outer layer has a breaking stress of 5×104 to 1×106 N/m2, a cohesiveness (30%) of 0.4 to 1.0, and a breaking strain of 30 to 80%. A feed for fish farming characterized by consisting of an outer layer constructed from a heat-induced gel which comprises a protein and/or a starch, and an inner layer comprising a composition which contains nutrient ingredients having fish meal and an oil as essential ingredients. As the protein, surimi, ground fish meat, krill, gelatin, collagen, gluten, egg albumen and soy bean protein are preferred. As the starch, tapioca starch, wheat starch, potato starch, corn starch, bean starch, waxy corn starch and processed products of these starches are preferred.
    • [问题]提供饲料供应稳定性和饲料保质期优异的鱼饲料,并且具有优异的进料量和进料效率。 [解决方案]一种由外层和内层构成的鱼饲料,其特征在于,构成外层的组合物的断裂应力为5×10 4〜1×10 6 N / m 2,内聚力(30%)为 0.4〜1.0,断裂应变为30〜80%。 一种用于鱼类养殖的饲料,其特征在于由包含蛋白质和/或淀粉的热诱导凝胶构成的外层,以及包含含有具有鱼粉和油作为必需成分的营养成分的组合物的内层。 作为蛋白质,优选鱼糜,地面鱼肉,磷虾,明胶,胶原蛋白,麸质,蛋清蛋白和大豆蛋白。 作为淀粉,木薯淀粉,小麦淀粉,马铃薯淀粉,玉米淀粉,豆淀粉,蜡质玉米淀粉和这些淀粉的加工产物是优选的。
    • 7. 发明申请
    • Fluid abrasive machining method and apparatus thereof
    • 流体磨料加工方法及其装置
    • US20070141952A1
    • 2007-06-21
    • US11641201
    • 2006-12-18
    • Yuji SodaTsuyoshi GotoTakayuki MinoshimaAkinao MiuraShigeya Kato
    • Yuji SodaTsuyoshi GotoTakayuki MinoshimaAkinao MiuraShigeya Kato
    • B24B51/00
    • B24B31/116
    • In a fluid abrasive machining method for abrasively machining a fine pore on a work (5) to be machined by supplying a slurry (7) which is an abrasive machining fluid from a supplying device (2) to the work to be machined comprising steps of: supplying the slurry to the work to be machined from the supplying device; measuring a first pressure (P1) upstream in a discharge side of the supplying device; measuring a second pressure (P2) downstream of a measuring point of the first pressure (P1) and at an upstream side of the work to be machined; calculating a pressure difference (dp) between the first pressure and the second pressure; and terminating a machining operation when the pressure difference dp reaches a specific value. A fluid abrasive machining apparatus (100) which can perform the above-mentioned fluid abrasive machining method is provided.
    • 在流体磨料加工方法中,通过从供给装置(2)将作为研磨加工液的浆料(7)供给到待加工的工件,对要加工的工件(5)上的细孔进行磨蚀加工,包括以下步骤: :将浆料从供给装置供给到待加工的工件; 测量所述供应装置的排放侧上游的第一压力(P 1); 测量第一压力(P 1)的测量点和待加工的工件的上游侧的下游的第二压力(P 2); 计算第一压力和第二压力之间的压力差(dp); 并且当压力差dp达到特定值时终止加工操作。 提供一种能够执行上述流体研磨加工方法的流体研磨加工装置(100)。
    • 9. 发明授权
    • Fuel supply device for direct injection engine
    • 直喷发动机燃油供应装置
    • US06484342B2
    • 2002-11-26
    • US09757853
    • 2001-01-10
    • Nobuaki TakasakiTsuyoshi GotoIsao Shimizu
    • Nobuaki TakasakiTsuyoshi GotoIsao Shimizu
    • F02M3704
    • F02M39/00F02B75/20F02B2075/125F02B2275/18F02M39/02F02M63/0225F02M69/465Y02T10/123
    • A high-pressure fuel pump is provided for an internal combustion engine having an intake system and an exhaust system installed to the front and back of the engine, respectively. The fuel pump is located adjacent to a front upper part of the engine so as to be driven by a camshaft, but is positioned in an inclined position relative to the engine instead of a vertical position. This arrangement shifts the fuel pump backward in installing position with an effect of eliminating mechanical interference of the fuel pump with an engine compartment hood, and provides a long distance between the fuel pump and a dash panel behind the fuel pump with an effect of lowing energy of an impact applied to the fuel pump from the dash panel when the engine moves rearward due to a front-end collision.
    • 为具有分别安装在发动机的前后的进气系统和排气系统的内燃机提供高压燃料泵。 燃油泵位于与发动机的前上部相邻的位置,以便由凸轮轴驱动,而是位于相对于发动机的倾斜位置,而不是垂直位置。 这种布置使燃料泵在安装位置向后移动,具有消除燃料泵与发动机舱罩的机械干扰的作用,并且在燃料泵后面的仪表板之间提供了长距离,具有降低能量的作用 当发动机由于前端碰撞而向后移动时,从仪表板施加到燃料泵的冲击。