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    • 5. 发明授权
    • Fuel tank construction of motor vehicle
    • 汽车油箱结构
    • US4469339A
    • 1984-09-04
    • US388426
    • 1982-06-14
    • Hiroyuki WatanabeYasushi Tanaka
    • Hiroyuki WatanabeYasushi Tanaka
    • B60K15/063B60K15/04B60K15/067B60K15/073B62D25/20
    • B60K15/073B60K15/04B60K15/067
    • A fuel tank construction of a motor vehicle, wherein: a tunnel upwardly projecting from the surface of a floor panel, connected at the rear end thereof to a back panel and disposed in the longitudinal direction of the vehicle is formed at the central portion in the widthwise direction of the floor panel and a fuel tank is disposed in the tunnel; and the construction comprises a through-hole formed in the back panel at a position corresponding to an upper portion of an internal of the tunnel, a cross member forming a closed cross-section in the widthwise direction of the vehicle cooperation with the back panel at a position downwardly of the through-hole, an inlet pipe on the tank's side connected to the fuel tank, passing through said through-hole of the back panel and reaching a position upwardly of the cross member, and further, bent outwardly in the widthwise direction of the vehicle along the upper surface of the cross member, and a hose disposed upwardly of the cross member and connecting the inlet pipe on the tank's side to an inlet pipe on the body's side.
    • 一种机动车辆的燃料箱结构,其特征在于,在所述车辆的中央部形成有从其后端连接到后板并沿车辆的长度方向配置的从地面板的表面向上突出的隧道 地板镶板的宽度方向和燃料箱设置在隧道内; 并且该结构包括形成在后面板中的与隧道内部的上部相对应的位置处的通孔,在车辆的宽度方向上与后板协同地形成封闭横截面的横向构件 连通到燃料箱的罐侧的入口管通过后面板的通孔并到达横向构件的上方的位置,并且进一步沿宽度方向向外弯曲 沿横向构件的上表面的车辆方向,以及设置在横向构件的上方并将罐侧的入口管连接到身体侧的入口管的软管。
    • 8. 发明申请
    • ELECTROPHOTOGRAPHIC PHOTORECEPTOR, METHOD FOR MANUFACTURING SAME, AND ELECTROPHOTOGRAPHIC APPARATUS USING SAME
    • 电子照相机,其制造方法和使用相同的电子照相设备
    • US20140199619A1
    • 2014-07-17
    • US14232900
    • 2011-08-05
    • Seizo KitagawaYasushi TanakaShinjiro SuzukiHiroshi EmoriKazuki Nebashi
    • Seizo KitagawaYasushi TanakaShinjiro SuzukiHiroshi EmoriKazuki Nebashi
    • G03G15/00B05D5/12
    • G03G5/047B05D1/18G03G5/04G03G5/0503G03G5/0525G03G5/0564G03G5/0696
    • A layered, positively-charged electrophotographic photoreceptor, a method for manufacturing the photoreceptor and an electrophotographic apparatus using the photoreceptor are disclosed. The layered, positively-charged electrophotographic photoreceptor includes a conductive support on which is provided a sequential stack composed of a charge transport layer containing at least a first hole transport material and a first binder resin; and a charge generation layer containing at least a charge generation material, a second hole transport material, an electron transport material, and a second binder resin, wherein the charge generation layer and the charge transport layer have a total amount of residual solvents that is 50 μg/cm2 or less. The photoreceptor is highly sensitive, highly durable, and has excellent image qualities including low image defects from cracks generated due to image memory or contact contamination. The photoreceptor is applicable to a high-resolution and high-speed positively-charged electrophotographic apparatuses and provides excellent operational stability.
    • 公开了层状的带正电荷的电子照相感光体,感光体的制造方法和使用感光体的电子照相设备。 层状的带正电荷的电子照相感光体包括导电支撑体,其上设置有由至少含有第一空穴传输材料和第一粘合剂树脂的电荷输送层构成的顺序叠层; 以及至少包含电荷产生材料,第二空穴传输材料,电子传输材料和第二粘合剂树脂的电荷产生层,其中电荷产生层和电荷输送层具有总量为50的残留溶剂 μg/ cm2以下。 感光体高度敏感,高度耐用,并且具有优异的图像质量,包括由于图像记忆或接触污染而产生的裂纹的低图像缺陷。 感光体适用于高分辨率和高速正电照相设备,并提供优异的操作稳定性。
    • 9. 发明申请
    • HIGH STRENGTH PRESS-FORMED MEMBER AND METHOD FOR MANUFACTURING THE SAME
    • 高强度压制成型体及其制造方法
    • US20130048161A1
    • 2013-02-28
    • US13583407
    • 2011-02-28
    • Hiroshi MatsudaYoshimasa FunakawaYasushi Tanaka
    • Hiroshi MatsudaYoshimasa FunakawaYasushi Tanaka
    • C21D8/02C22C38/04C22C38/38C22C38/08C22C38/12C22C38/16C22C38/02C22C38/06
    • C21D8/0247C21D1/22C21D8/0205C21D9/46C21D2211/001C21D2211/002C21D2211/008C22C38/001C22C38/02C22C38/04C22C38/06
    • A high strength press-formed member includes a steel sheet constituting the member including a composition including by mass %, C: 0.12% to 0.69%, Si: 3.0% or less, Mn: 0.5% to 3.0%, P: 0.1% or less, S: 0.07% or less, Al: 3.0% or less, N: 0.010% or less, Si+Al: at least 0.7%, and remainder as Fe and incidental impurities, wherein a microstructure of the steel sheet includes martensite, retained martensite, and bainite containing bainitic ferrite, an area ratio of said martensite with respect to the entire microstructure of the steel sheet is 10% to 85%, at least 25% of said martensite is tempered martensite, content of retained austenite is 5% to 40%, area ratio of said bainitic ferrite in said bainite with respect to the entire microstructure of the steel sheet is at least 5%, total of area ratios of said martensite, said retained austenite, and said bainitic ferrite in said bainite with respect to the entire microstructure of the steel sheet is at least 65%, and average carbon concentration in the retained austenite is at least 0.65 mass %.
    • 高强度压力成形构件包括构成该构件的钢板,该钢板包括质量%C:0.12%〜0.69%,Si:3.0%以下,Mn:0.5〜3.0%,P:0.1% S:0.07%以下,Al:3.0%以下,N:0.010%以下,Si + Al:0.7%以上,剩余部分作为Fe和附带杂质,其中,钢板的显微组织包括马氏体, 所含马氏体的贝氏体含有贝氏体铁素体,所述马氏体相对于钢板整体的面积比为10%〜85%,所述马氏体的回弹马氏体的至少25%为回火马氏体,残留奥氏体含量为5% 至所述贝氏体中所述贝氏体铁素体相对于钢板整体的面积比至少为40%,所述贝氏体中的所述马氏体,所述残留奥氏体和所述贝氏体铁素体的面积率为所述贝氏体的面积率的至少5% 钢板的整个微观结构至少为65%,平均碳浓度为 残留奥氏体中的残留率为0.65质量%以上。