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    • 5. 发明申请
    • IMPACT ENERGY ABSORBING MEMBER
    • 冲击能量吸收构件
    • US20110233962A1
    • 2011-09-29
    • US12671831
    • 2008-06-20
    • Shin TadaYutaka Hirata
    • Shin TadaYutaka Hirata
    • B60J5/04
    • B60J5/0468B60J5/0451B60J5/0452F16F1/371
    • An energy absorbing member has a mounting portion with a reinforced proximal end, and is easy to produce. The energy absorbing member (20) includes a disc-like main body portion (21) comprised of foamed resin such as hard urethane foam, a mounting portion (22) protruding from the side surface of the main body portion (21), and a reinforcing piece (23) embedded in the mounting portion (22). The reinforcing piece (23) extends from the mounting portion (22) to the interior of the main body portion (21). A mounting hole 24 is formed in the mounting portion (22), for securing the energy absorbing member (20) to a core member or the like. The mounting hole (24) extends through the reinforcing piece (23) in the thickness direction of the mounting portion (22).
    • 能量吸收构件具有具有增强的近端的安装部分,并且易于制造。 能量吸收构件(20)包括由诸如硬质聚氨酯泡沫的泡沫树脂构成的盘状主体部分(21),从主体部分(21)的侧表面突出的安装部分(22) 加强件(23)嵌入安装部分(22)中。 加强件(23)从安装部分(22)延伸到主体部分(21)的内部。 安装孔24形成在安装部分22中,用于将能量吸收部件20固定在芯部件等上。 安装孔(24)在安装部(22)的厚度方向上延伸穿过加强件(23)。
    • 8. 发明授权
    • Method for molding expanded synthetic resin
    • 膨胀合成树脂成型方法
    • US5895615A
    • 1999-04-20
    • US925644
    • 1997-09-09
    • Yutaka HirataTeruo IwaiToshio Iwasawa
    • Yutaka HirataTeruo IwaiToshio Iwasawa
    • B29C33/10B29C33/36B29C44/34B29C44/58B29C44/02
    • B29C44/588B29C33/10B29C44/3403B29C44/582B29C33/36Y10S425/812
    • A mold apparatus for producing a synthetic resin foam part has a mold assembly (1) comprising a lower mold (2), an upper mold (3) removably attached to the lower mold to define a closed space, and an insert (4) removably disposed in the closed space. The insert has a partition (6) which is faced to the upper mold through a gap (11). The partition defines a chamber (7) between the insert and the upper mold. The closed space excluding the chamber constitutes a cavity (8) into which a molding compound is introduced. A pressure regulator means (21) is provided for exhausting air from the chamber (7) to keep the chamber in a subatmospheric pressure whereby air in the cavity (8) is also exhausted through the gap. A foam part is produced by feeding a synthetic resin blow molding compound into the cavity (8) under atmospheric pressure, tightly closing the mold assembly, exhausting air from the chamber and from the cavity through the gap to establish a subatmospheric pressure in the cavity, and causing the molding compound to be blow molded.
    • 一种用于制造合成树脂泡沫部件的模具设备具有模具组件(1),其包括下模具(2),可拆卸地附接到下模具以限定封闭空间的上模具(3)和可拆卸地插入件 处于封闭空间。 插入件具有通过间隙(11)面向上模具的隔板(6)。 分隔件限定了插入件和上模具之间的腔室(7)。 除了室之外的封闭空间构成了引入模塑料的空腔(8)。 设置有压力调节装置(21),用于排出来自腔室(7)的空气,以将腔室保持在低于大气压的压力,由此空腔(8)中的空气也通过间隙排出。 通过在大气压力下将合成树脂吹塑化合物进料到空腔(8)中,密封模具组件,从腔室排出空气并通过间隙从空腔排出空气,产生泡沫部分,以在空腔中形成低于大气压的压力, 并使成型化合物进行吹塑。
    • 10. 发明授权
    • Sleepiness signal detector
    • 睡眠信号检测器
    • US08356899B2
    • 2013-01-22
    • US13050811
    • 2011-03-17
    • Yutaka Hirata
    • Yutaka Hirata
    • A61B3/14
    • A61B3/113A61B3/112A61B5/1114A61B5/18A61B5/4809A61B2562/0219G06K9/00604G06K9/00845G08B21/06
    • A sleepiness sign detection apparatus, includes: a head movement detection unit configured to detect a head movement to generate a head movement data; an eye movement detection unit configured to detect an eye movement to generate an eye movement data; an ideal eye movement angular velocity calculation unit configured to calculate an ideal eye movement angular velocity based on the head movement data generated by the head movement detection unit; an eye-rotation angular velocity calculation unit configured to calculate an eye-rotation angular velocity based on the eye movement data generated by the eye movement detection unit; and a sleepiness sign detection unit configured to detect vestibule-ocular reflex (VOR) from the ideal eye movement angular velocity and the eye-rotation angular velocity, and determine a sign of sleepiness based on the vestibule-ocular reflex.
    • 睡意征检测装置包括:头部移动检测单元,被配置为检测头部移动以产生头部移动数据; 眼动检测单元,被配置为检测眼动以生成眼动数据; 理想的眼睛运动角速度计算单元,被配置为基于由头部移动检测单元生成的头部移动数据来计算理想的眼睛运动角速度; 眼旋转角速度计算单元,被配置为基于由眼动检测单元生成的眼动数据来计算眼旋转角速度; 以及睡眠标志检测单元,被配置为从所述理想的眼睛运动角速度和眼睛旋转角速度检测前庭眼反射(VOR),并且基于前庭眼反射来确定困倦的征兆。