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    • 1. 发明授权
    • Damper-mounting structure
    • 减震器结构
    • US07185746B2
    • 2007-03-06
    • US10801966
    • 2004-03-16
    • Kiyoshi NakajimaHidetoshi AmanoHiro Nushii
    • Kiyoshi NakajimaHidetoshi AmanoHiro Nushii
    • F16F9/00
    • B60G15/067
    • An upper portion of a damper connected at its lower end to a lower arm of a suspension is accommodated within a side frame having a closed section. An upper spring seat, which is a mounting portion for the damper, is fixed to a lower surface of the side frame by a bolt. Thus, the support rigidity of the damper is enhanced, whereby the responsiveness of the damper to a load input from the lower arm is improved. Moreover, since the upper portion of the damper is accommodated within the side frame, an internal space in the side frame can be utilized for disposition of the damper. In addition, it is unnecessary to arrange the side frame and the damper side-by-side in a lateral direction of the vehicle body, and hence it is easy to ensure a space for disposition of the suspension.
    • 在其下端连接到悬架的下臂的阻尼器的上部容纳在具有封闭部分的侧框架内。 作为阻尼器的安装部的上弹簧座通过螺栓固定在侧架的下表面。 因此,增强了阻尼器的支撑刚度,从而提高了阻尼器对从下臂输入的负载的响应性。 此外,由于阻尼器的上部容纳在侧框架内,因此可以利用侧框架中的内部空间来设置阻尼器。 此外,不需要将侧框架和阻尼器并排设置在车体的横向方向上,因此容易确保用于配置悬架的空间。
    • 2. 发明申请
    • Vehicular rear suspension system
    • 车辆后悬挂系统
    • US20050275183A1
    • 2005-12-15
    • US11055015
    • 2005-02-11
    • Hidetoshi Amano
    • Hidetoshi Amano
    • B60G3/20B60G3/18
    • B60G3/20B60G2200/156B60G2200/184
    • A vehicular rear suspension system includes an upper arm, a lower arm, and a control arm, each of which is connected to a knuckle. A straight line passing through a ball joint and a rubber bushing joint intersects the road surface at an intersection point that is positioned behind a ground contact point of the rear wheel in the longitudinal direction of the vehicle body. The ball joint connects the upper arm to the knuckle, and the rubber bushing joint connects the lower arm to the knuckle. Longitudinal elastic coefficients of the three arms are set in a predetermined relationship. Therefore, the intersection point at which an elastic kingpin intersects the road surface is positioned without fail behind a point of action of a lateral force when turning in the longitudinal direction of the vehicle body to achieve a lateral force toe-in and enhanced steering stability of the vehicle.
    • 车辆后悬架系统包括上臂,下臂和控制臂,每个臂连接到转向节。 穿过球窝接头和橡胶衬套接头的直线在车身纵向上位于后轮接地点后面的交点处与路面相交。 球接头将上臂连接到转向节,橡胶衬套接头将下臂连接到转向节。 将三个臂的纵向弹性系数设定为预定的关系。 因此,弹性中心销与路面相交的交叉点在车身纵向转动时侧向力的作用点后方定位,以实现侧向力脚趾和增强的转向稳定性 机动车。
    • 6. 发明授权
    • Vehicular rear suspension system
    • 车辆后悬挂系统
    • US07258355B2
    • 2007-08-21
    • US11055015
    • 2005-02-11
    • Hidetoshi Amano
    • Hidetoshi Amano
    • B60G3/04
    • B60G3/20B60G2200/156B60G2200/184
    • A vehicular rear suspension system includes an upper arm, a lower arm, and a control arm, each of which is connected to a knuckle. A straight line passing through a ball joint and a rubber bushing joint intersects the road surface at an intersection point that is positioned behind a ground contact point of the rear wheel in the longitudinal direction of the vehicle body. The ball joint connects the upper arm to the knuckle, and the rubber bushing joint connects the lower arm to the knuckle. Longitudinal elastic coefficients of the three arms are set in a predetermined relationship. Therefore, the intersection point at which an elastic kingpin intersects the road surface is positioned without fail behind a point of action of a lateral force when turning in the longitudinal direction of the vehicle body to achieve a lateral force toe-in and enhanced steering stability of the vehicle.
    • 车辆后悬架系统包括上臂,下臂和控制臂,每个臂连接到转向节。 穿过球窝接头和橡胶衬套接头的直线在车身纵向上位于后轮接地点后面的交点处与路面相交。 球接头将上臂连接到转向节,橡胶衬套接头将下臂连接到转向节。 将三个臂的纵向弹性系数设定为预定的关系。 因此,弹性中心销与路面相交的交叉点在车身纵向转动时侧向力的作用点后方定位,以实现侧向力脚趾和增强的转向稳定性 机动车。
    • 8. 发明授权
    • Misfire detecting apparatus for an internal combustion engine and a method for detecting misfires
    • 用于内燃机的失火检测装置和用于检测失火的方法
    • US06634220B1
    • 2003-10-21
    • US09671258
    • 2000-09-28
    • Hidetoshi Amano
    • Hidetoshi Amano
    • G01L326
    • G01M15/11
    • A misfire detecting apparatus for an internal combustion engine has a start determinator, a rotation counter, a misfire detector, a misfire calculator, a setting means, an abnormality determinator, and a warning means. The start determinator determines a starting condition of the internal combustion engine. The rotation counter counts a total number of rotations of the internal combustion engine. The misfire detector detects a misfire of the internal combustion engine. The misfire calculator calculates a rate of misfire using data from the misfire detector, and the rate of misfire is the number of misfires per a predetermined total number of rotations. The setting means sets a basic rate of misfire in response to the start condition of the internal combustion engine. The abnormality determinator determines an abnormal condition of the internal combustion engine when the rate of misfire calculated by the misfire calculator is greater than the basic rate of misfire set by the setting means. The warning means warns of an abnormality of the internal combustion engine when the abnormality determinator determines an abnormal condition of the internal combustion engine. The detection whether the internal combustion engine is abnormal or not can be accurate by this misfire detecting apparatus.
    • 用于内燃机的失火检测装置具有起动确定器,旋转计数器,失火检测器,失火计算器,设定装置,异常判定器和警告装置。 起动判定器确定内燃机的启动状态。 旋转计数器计数内燃机的总转数。 失火探测器检测内燃机的失火。 失火计算器使用来自失火探测器的数据计算失火率,并且失火速率是每预定总转数的失火次数。 设定装置根据内燃机的起动条件设定失火的基本速度。 当由失火计算器计算的失火率大于由设定装置设定的基本不发火速率时,异常判定器确定内燃机的异常状态。 当异常判定器确定内燃机的异常状态时,警告装置警告内燃机的异常。 该失火检测装置可以准确地检测内燃机是否异常。
    • 10. 发明授权
    • Misfire detecting device of multicylinder internal combustion engine
    • 多缸内燃机失火检测装置
    • US5906651A
    • 1999-05-25
    • US80039
    • 1998-05-15
    • Hidetoshi Amano
    • Hidetoshi Amano
    • F02D45/00G01M15/11G01M15/00F02B77/08
    • G01M15/11
    • A rotational fluctuation amount between consecutively ignited cylinders is sequentially calculated. When the rotational fluctuation amount exceeds a first predetermined value and an emergence interval of the rotational fluctuation assumes a predetermined value, or when the rotational fluctuation amount exceeds a second predetermined value larger than the first predetermined value, the rotational fluctuation is judged to result from misfire. A cylinder subjected to the rotational fluctuation is then specified. By comparing rotational fluctuation amounts in the specified cylinder, and the two cylinders firing immediately after the specified cylinder, a determination is made as to whether it is only the specified cylinder which has misfired, the specified cylinder and the cylinder immediately following the specified cylinder have consecutively misfired, or the specified cylinder and a cylinder other than the immediately following cylinder have intermittently misfired.
    • 依次计算连续点火的气缸之间的旋转波动量。 当旋转波动量超过第一预定值并且旋转波动的出现间隔呈现预定值时,或者当旋转波动量超过大于第一预定值的第二预定值时,判断旋转波动是由于失火 。 然后指定经受旋转波动的圆筒。 通过比较指定气缸中的旋转波动量和在指定气缸后立即点燃的两个气缸,确定是否只是指定的气缸发生了失火,指定气缸和紧跟指定气缸的气缸有 连续失火,或者指定的气缸和紧随其后的气缸以外的气缸间歇性地失火。