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    • 2. 发明授权
    • Locking mechanism of deflector for watercraft
    • 船舶导流板锁定机构
    • US06179672B2
    • 2001-01-30
    • US09469564
    • 1999-12-22
    • Yoshinori TsumiyamaKenichi NakagawaTomohiro KanazawaMasafumi Ikeyama
    • Yoshinori TsumiyamaKenichi NakagawaTomohiro KanazawaMasafumi Ikeyama
    • B63H1111
    • B63H11/11
    • It is an object to provide a locking mechanism of a deflector for a watercraft which can perform the locking and unlocking operation of the locking mechanism simply by executing up-down movement of the deflector. A locking mechanism (1L) of a deflector (1A) for a watercraft comprises a first member (a locking member) (1E), a second member (an engaging member) (1K) to be engaged with the first member (1E), and a third member (an unlocking member) (1R) for disengaging the first member (1E) from the second member (1R), the first member being attached to a fixing side to be able to engage the second member therewith, the second member being attached to a deflector side, and the third member being capable of performing up-down movement of the deflector (1A), and the engaging state of the first member is released in an initial stage of operation of the third member, the second member is caused to be operated interlockingly at a succeeding stage to perform the up-down movement of the deflector, and the second member is brought into the engaging state by the first member in a succeeding final stage.
    • 本发明的目的是提供一种用于船舶的偏转器的锁定机构,其可以通过执行偏转器的上下移动来执行锁定机构的锁定和解锁操作。 用于船舶的偏转器(1A)的锁定机构(1L)包括第一构件(锁定构件)(1E),与第一构件(1E)接合的第二构件(接合构件)(1K) 以及用于使所述第一构件(1E)与所述第二构件(1R)分离的第三构件(解锁构件)(1R),所述第一构件附接到固定侧以能够与所述第二构件接合,所述第二构件 附接到偏转器侧,并且第三构件能够执行偏转器(1A)的上下移动,并且第一构件的接合状态在第三构件的初始操作阶段被释放,第二构件 导致在后续阶段互锁地操作以执行偏转器的上下运动,并且第二构件在接下来的最后阶段由第一构件进入接合状态。
    • 4. 发明授权
    • Personal watercraft
    • 个人船只
    • US06192823B1
    • 2001-02-27
    • US09482485
    • 2000-01-12
    • Yoshinori TsumiyamaKenichi NakagawaTomohiro KanazawaKiyoaki MaedaKunihiko KamioJoe HeimWilliam Peter Engle, Jr.Gary Bozych
    • Yoshinori TsumiyamaKenichi NakagawaTomohiro KanazawaKiyoaki MaedaKunihiko KamioJoe HeimWilliam Peter Engle, Jr.Gary Bozych
    • B63B800
    • B63B27/143B63B35/731
    • It is an object of the invention to provide a personal watercraft having a rear deck floor which can house goods necessary for water-skiing or the like and is provided with a space where a water-skier or the like sits when getting into the water or a space for embarkation when coming out of the water into a watercraft. In a personal watercraft having a whole plane view almost shell-shaped comprising a riding seat S provided from an almost central portion of a body A of a watercraft to a rear portion thereof, a steering handlebar 21 provided in front of the riding seat S, an engine E for propulsion provided below the riding seat S, and a jet pump P provided behind the engine, the jet pump being provided with an outlet port rearward for being driven by the engine, a rear deck floor 1 having a space for at least one adult to sit is provided behind the riding seat S and has an openable hatch cover 1A formed on the space, and a rear storage box 1B is formed under the hatch cover 1A.
    • 本发明的目的是提供一种具有后甲板地板的个人船只,其可以容纳滑水等所需的物品,并且在进入水中时设置有滑水者等等的空间,或者 在从水中进入船只时的登乘空间。在具有整个平面视图的个人船舶中,几乎是壳形的,包括从船体的主体A的大致中心部分提供到其后部的骑乘座位S 设置在乘坐座椅S前方的转向车把21,设在乘坐座S下方的用于推进的发动机E和设置在发动机后方的喷射泵P,喷射泵设置有后方的出口,用于被驱动 发动机,具有用于至少一个成年人坐下的空间的后甲板地板1设置在乘坐座椅S的后面,并且具有形成在该空间上的可开启的舱口盖1A,并且在舱口盖1A下方形成有后储存箱1B 。
    • 8. 发明授权
    • Deck floor for personal watercraft
    • 个人船只甲板地板
    • US6158378A
    • 2000-12-12
    • US303665
    • 1999-05-03
    • Yoshinori TsumiyamaKenichi Nakagawa
    • Yoshinori TsumiyamaKenichi Nakagawa
    • B63B3/48B63B29/04B63B35/73B63B17/00
    • B63B29/04B63B3/48B63B35/731
    • A deck floor for a personal watercraft establishes the foot placement based on the body build of the driver without the soles of the feet being bent back. The deck floor includes: a pair of floor faces with a floor face positioned on each side of a seat, a pair of step faces formed ahead of the floor faces, and a pair of intermediate step faces formed between the floor faces and the step faces. Each floor face includes a first plane portion which is substantially horizontal and is continuous to the intermediate step face, and the step face includes a second plane portion which also is continuous to the intermediate step face and is inclined forwardly and upwardly. The intermediate step face is a plane which is inclined at a middle inclined angle between an inclined angle of the first plane portion and an inclined angle of the second plane portion.
    • 个人船只的甲板地板基于驾驶员的身体构造建立脚部放置,而脚部的脚底不会弯曲。 甲板地板包括:一对地板面,其位于座椅的每一侧上的地板面,一对台阶面形成在地板表面之前,一对中间台阶面形成在地板面与台阶面之间 。 每个地板面包括基本上水平并且与中间台阶面连续的第一平面部分,并且台阶面包括第二平面部分,该第二平面部分也与中间台阶面连续并且向前和向上倾斜。 中间台阶面是在第一平面部分的倾斜角和第二平面部分的倾斜角之间以中间倾斜角度倾斜的平面。
    • 9. 发明授权
    • Retardation compensation element, liquid crystal display device, and liquid crystal projector
    • 延迟补偿元件,液晶显示装置和液晶投影机
    • US07764343B2
    • 2010-07-27
    • US11994798
    • 2006-07-03
    • Kenichi Nakagawa
    • Kenichi Nakagawa
    • G02F1/13363
    • G02F1/1393G02F1/13363G02F2413/03G02F2413/07G02F2413/08G02F2413/10G02F2413/11G02F2413/13
    • A retardation compensation element (32, 32a) has a first optical anisotropic layer (42) that functions as a negative C-plate, and a second and a third optical anisotropic layers (43, 44) that function as positive O-plates. VA mode liquid crystal molecules (37) tilt at an azimuth angle of 45 degrees and a polar angle of 5 degrees when no voltage is applied thereto. The second and third optical anisotropic layers have optical axes respectively at an angle of −105 degrees and +105 degrees from the tilt direction of the liquid crystal molecule. The first optical anisotropic layer (42) compensates the retardation of light that enters a liquid crystal layer (38) at an oblique angle while the second and third optical anisotropic layers (43, 44) compensate the retardation of light that enters the liquid crystal layer at a right angle.
    • 延迟补偿元件(32,32a)具有用作负C板的第一光学各向异性层(42)和用作正O板的第二和第三光学各向异性层(43,44)。 当不施加电压时,VA模式液晶分子(37)以45度的方位角和5度的极角倾斜。 第二和第三光学各向异性层分别具有与液晶分子的倾斜方向成-105度和+ 105度角的光轴。 第一光学各向异性层(42)在第二和第三光学各向异性层(43,44)补偿进入液晶层的光的延迟的同时补偿以倾斜角进入液晶层(38)的光的延迟 以直角。
    • 10. 发明授权
    • Liquid crystal projector, liquid crystal device and substrate for liquid crystal device
    • 液晶投影仪,液晶显示装置及液晶装置用基板
    • US07554635B2
    • 2009-06-30
    • US10512683
    • 2003-07-16
    • Kenichi Nakagawa
    • Kenichi Nakagawa
    • G02F1/1335
    • H04N9/3105G02F1/13363G02F2001/133565G02F2413/02G02F2413/10G02F2413/11G02F2413/14H04N9/3167
    • Red incident light is reflected on a mirror (19) and linearly polarized by a polarizer (26R). Linearly polarized incident light enters a transmissive liquid crystal device (11R), in which oblique incident light is changed into elliptically polarized light. A retardation compensator (27R) between the liquid crystal device (11R) and an analyzer (28R) has an inorganic form birefringence layer. The retardation compensator (27R) yields birefringence effect to change elliptical polarized light into linearly polarized light. Linearly polarized light from the retardation compensator (27R) can pass the analyzer (28R) without decreasing intensity, and enters a color recombining prism (24). The liquid crystal device (11R) may have the inorganic form birefringence layer. Retardation in green and blue light is also compensated in the same manner. Red, green and blue image light, mixed in the color recombining prism (24), is projected onto a screen 3 by a projection lens system (25).
    • 红色入射光在反射镜(19)上反射并被偏振器(26R)线偏振。 线性偏振入射光入射到倾斜入射光变为椭圆偏振光的透射型液晶装置(11R)。 液晶装置(11R)和分析器(28R)之间的相位差补偿器(27R)具有无机形式的双折射层。 延迟补偿器(27R)产生双折射效应以将椭圆偏振光变为线偏振光。 来自延迟补偿器(27R)的线偏振光可以通过分析器(28R)而不降低强度,并进入重新组合棱镜(24)。 液晶装置(11R)可以具有无机形式的双折射层。 绿色和蓝色光的延迟也以相同的方式得到补偿。 在彩色复合棱镜(24)中混合的红色,绿色和蓝色图像光通过投影透镜系统(25)投影到屏幕3上。