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    • 3. 发明授权
    • Vehicle body frame and rear fender assembly for a motorcycle, and motorcycle including same
    • 用于摩托车的车体框架和后挡泥板组件,以及包括其的摩托车
    • US08931791B2
    • 2015-01-13
    • US13425453
    • 2012-03-21
    • Satoshi MatsushimaYusuke Inoue
    • Satoshi MatsushimaYusuke Inoue
    • B62J15/02B62J37/00B62J15/00B62K11/04
    • B62J37/00B62J15/00B62K11/04
    • A motorcycle has a rear fender configured for strength and rigidity when the rear fender is lifted upwardly, while minimizing mass thereof. The motorcycle includes main frame sections extending rearwardly from a head pipe, left and right pivot plates attached to rear ends of the main frame sections and extending downwardly, and a swing arm, having a front end supported on the pivot plates to be swingably movable thereon, and a rear end configured to support a rear wheel. The motorcycle also includes left and right seat rails for supporting a seat thereon, left and right reinforcing rods extending between the seat rails and the pivot plates, and a rear fender mounted on the seat rails above the rear wheel. The rear fender includes projecting portions supported at front end portions thereof by front mounting flanges, the projecting portions projecting forwardly and contacting the seat rails from above.
    • 摩托车具有后挡泥板,其构造为当后挡泥板向上提升同时使其质量最小时的强度和刚度。 摩托车包括从头管向后延伸的主框架部分,附接到主框架部分的后端并向下延伸的左右枢转板,以及摆臂,其具有支撑在枢轴板上以在其上可摆动地移动的前端 以及构造成支撑后轮的后端。 摩托车还包括用于支撑座椅的左右座椅导轨,在座椅导轨和枢转板之间延伸的左右加强杆,以及安装在后轮上方的座椅导轨上的后挡泥板。 后挡泥板包括通过前安装凸缘在其前端部分支撑的突出部分,突出部分向前突出并从上方接触座椅导轨。
    • 7. 发明授权
    • Muffler device for motorcycle
    • 摩托车消声器
    • US08151932B2
    • 2012-04-10
    • US12716424
    • 2010-03-03
    • Yusuke Inoue
    • Yusuke Inoue
    • F01N13/00
    • F01N13/08F01N13/082F01N13/1838F01N2590/04
    • An exhaust outlet 34 is formed at the center of a rear end wall 46 of a tail cap 21 closing a rear end opening of a muffler body 20, and a tail pipe 30 is connected at its rear end to the exhaust outlet 34. The exhaust outlet 34 is formed through a tail pipe supporting member 35 mounted on the rear end wall 46. The tail pipe supporting member 35 is formed with an annular mud guiding groove 37 opening rearward around the exhaust outlet 34. The mud accumulated on the rear end wall 46 is guided into the mud guiding groove 37 and moved in the mud guiding groove 37 owing to its capillarity. Accordingly, the mud can be moved down along the mud guiding groove 37 and smoothly dropped to the ground, thus preventing the clogging of the exhaust outlet 34 with the mud on the rear end wall 46.
    • 排气出口34形成在封闭消音器主体20的后端开口的尾盖21的后端壁46的中心,尾管30的后端连接到排气出口34.排气口 出口34通过安装在后端壁46上的尾管支撑构件35形成。尾管支撑构件35形成有围绕排气出口34向后开口的环形泥浆引导槽37。 46被引导到泥浆引导槽37中,并由于其毛细作用而在泥浆引导槽37中移动。 因此,泥浆可以沿着泥浆引导槽37向下移动并平滑地落到地面上,从而防止排气出口34与后端壁46上的泥浆堵塞。
    • 9. 发明授权
    • Optimization method of deposition time and an optimization system of deposition time
    • 沉积时间的优化方法和沉积时间优化系统
    • US07280884B2
    • 2007-10-09
    • US10785711
    • 2004-02-23
    • Akira TadanoYusuke InoueIsao Yokoyama
    • Akira TadanoYusuke InoueIsao Yokoyama
    • G06F19/00
    • H01L22/20
    • An optimum method for deposition time is provided that can improve uniformity of processing time of oxidation thickness. When starting a heat oxidation process, a time for optimum oxidation processing in the process management system is calculated based on atmospheric pressure data, a target thickness of that process, oxidization time, thickness data and atmospheric pressure data in the immediately preceding process under the same oxidization processing job. The optimum system comprises a process management system such as a host computer, a device having a barometer, a heat oxidation-processing device and a thickness-measuring device. The host computer, the barometer, the heat oxidation processing device and the thickness-measuring device are connected via a network so as to transmit data to and from each device.
    • 提供了一种最佳的沉积时间方法,可以提高氧化厚度的处理时间的均匀性。 当开始热氧化过程时,基于大气压力数据,该过程的目标厚度,氧化时间,厚度数据和大气压力数据,在相同的前一过程中计算过程管理系统中最佳氧化处理的时间 氧化处理工作。 最佳系统包括诸如主计算机,具有气压计的装置,热氧化处理装置和厚度测量装置之类的过程管理系统。 主计算机,气压计,热氧化处理装置和厚度测量装置经由网络连接,以便从每个装置传送数据。