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    • 1. 发明申请
    • Automatic portable door operating system
    • 自动便携式门操作系统
    • US20050091928A1
    • 2005-05-05
    • US10933409
    • 2004-09-03
    • Paul OkulovAmir Zouak
    • Paul OkulovAmir Zouak
    • E05F3/22E05F15/00E05F15/12E05F15/20E05F1/04
    • E05F15/63E05F3/22E05F3/227E05F15/00E05F15/40E05F15/41E05F15/619E05F15/622E05F15/624E05F15/74E05Y2201/214E05Y2201/236E05Y2201/47E05Y2400/53E05Y2400/614E05Y2400/86E05Y2600/13E05Y2800/246E05Y2800/252E05Y2900/112E05Y2900/132
    • The present invention relates to a door operating system for controlling the movement of a door, more particularly to “no touch” door openers for public washrooms and households. The system has a motor with a gear chain where the high gear is generally semicircularly shaped engaged with a swinging arm coupled with the door through the roller and a pilot plate. The unit is activated upon receipt of the signal from overhead passive infrared or hand proximity detecting sensors and has a controlling system to provide for opening and closing the door, as well as retraction of the arm in the event of door encountering an obstacle or in an overload condition of the motor. The arm and a gear are linked pivotally with each other and with the unit housing. They are coupled through a spring suspension system and have a clutch mechanism preventing overloading. The only external moving part is the arm, which is, along with geared sector, protected by a flexible member providing security to prevent accidental jamming of objects by it. The unit may be battery operated with a low voltage and low power AC/DC switching wall adapter. In autonomous operation it can provide up to 700 opening cycles without external power.
    • 本发明涉及一种用于控制门的移动的门操作系统,更具体地涉及公厕和家庭的“无触摸”开门器。 该系统具有带齿轮链的马达,其中高齿轮通常半圆形地与通过滚子和导向板与门连接的摆臂相配合。 当接收到来自顶置被动红外线或手近距离检测传感器的信号时,该单元被激活,并且具有控制系统以提供打开和关闭门,以及在遇到障碍物的情况下臂的收回 电机过载状态 臂和齿轮相互枢转并与单元壳体连接。 它们通过弹簧悬挂系统联接并具有防止过载的离合器机构。 唯一的外部移动部件是手臂,它与齿轮传动部分一起被柔性部件保护,提供安全性,以防止物体意外堵塞。 该单元可以使用低电压和低功率AC / DC开关墙适配器进行电池供电。 在自主操作中,可以提供多达700个开启周期而无需外部电源。
    • 2. 发明申请
    • Ballanced rotary internal combustion engine or cycling volume machine
    • 气动旋转内燃机或循环量机
    • US20050000483A1
    • 2005-01-06
    • US10834984
    • 2004-04-30
    • Paul Okulov
    • Paul Okulov
    • F01C1/00F01C1/10F01C1/22F01C1/34F01C1/40F01C5/04F01C19/00F01C19/02F01C21/00F01C21/08F01C21/10F02B53/00F02B75/36F04C27/00
    • F01C1/10F01C1/22F01C1/34F01C1/40F01C19/02F01C21/0809F01C21/0836F01C21/10F02B53/00F02B57/00F02B75/36F02B2053/005F04C27/001F04C2250/301Y02T10/17
    • A balanced rotary cycling machine suitable for use as an internal combustion engine, compressed gas or steam engine, compressor or pump is disclosed herein. The rotor assembly consists of four articulating pistons where the opposite pistons are inter-linked with each other by pivoted rods comprising a parallelogram mechanism and therefore eliminating a need for pivots between pistons. The rotor assembly rotates inside or outside of a circular or non-circular stator depending on the configuration chosen. A variety of mechanisms for shape deformation of four piston assembly during its rotating cycle is also disclosed herein, as well as detailed descriptions of preferred embodiments, including a four cycle internal combustion engine with circular stator, marine engine with polymer parts and a four cycle automobile rotary engine with conventional oil pan. In addition, a method of operation of external rotary combustion engine, employing a high-pressure compressor and an external combustion chamber, is disclosed. This invention also teaches a novel lubrication system for rotary engine providing low emissions. The engine has few moving parts, simplified circular or semi-circular stator shape and utilizes simple and effective sealing techniques. It is fully balanced, has very low friction and heat losses and can employ a pre-designed configuration of the combustion chamber for a desired compression ratio and power output.
    • 本文公开了适合用作内燃机,压缩气体或蒸汽发动机,压缩机或泵的平衡旋转循环机。 转子组件由四个铰接活塞组成,其中相对的活塞通过包括平行四边形机构的枢转杆彼此相互连接,因此消除了活塞之间的枢轴的需要。 转子组件根据所选择的配置在圆形或非圆形定子内部或外部旋转。 本文还公开了四个活塞组件在其旋转循环期间的形状变形的各种机构,以及优选实施例的详细描述,包括具有圆形定子的四循环内燃机,具有聚合物部件的船用发动机和四循环汽车 带常规油底壳的旋转发动机。 此外,公开了采用高压压缩机和外部燃烧室的外部旋转燃烧发动机的操作方法。 本发明还教导了一种用于提供低排放的旋转发动机的新型润滑系统。 发动机运动部件少,圆形或半圆形简化,采用简单有效的密封技术。 它是完全平衡的,具有非常低的摩擦和热损失,并且可以采用燃烧室的预先设计的构造以达到期望的压缩比和功率输出。
    • 4. 发明授权
    • Variable transmission
    • 可变传动
    • US07856902B2
    • 2010-12-28
    • US11494615
    • 2006-07-28
    • Paul Okulov
    • Paul Okulov
    • F16H3/22F16H1/14F16H15/16
    • F16H37/0853F16H15/20F16H2037/088Y10T74/1934Y10T74/19665
    • A drive system suitable for use in a variable transmission with a plurality of rotatable and adjustable disk members, gear means adapted for contact with the plurality of disk members, carriage means for mounting the gear means and configured for axial movement along the axis of a rotatable drive shaft and a rotatable cone adapted for contact with the plurality of disk members, the cone and the conical gear means connected for relative rotation by the plurality of disk members, the disk members being adjustable transversely relative to the axis of rotation for maintaining positive contact with said rotatable cone.
    • 适用于具有多个可旋转和可调节的盘构件的可变传动装置的驱动系统,适于与多个盘构件接触的齿轮装置,用于安装齿轮装置并构造成沿着可旋转 驱动轴和适于与多个盘构件接触的可旋转锥体,锥体和锥形齿轮装置连接用于多个盘构件的相对旋转,盘构件相对于旋转轴线可横向调节以保持正接触 与所述可旋转锥体。
    • 5. 发明授权
    • Infinitely variable traction drive employing alternate steerable rollers
    • 无级变速牵引驱动采用替代可转向滚轮
    • US09587721B2
    • 2017-03-07
    • US14352695
    • 2012-10-19
    • Paul Okulov
    • Paul Okulov
    • F16H15/40F16H15/30
    • F16H15/40F16H15/30
    • The invention relates to a method for achieving a continuously variable transmission. A power transmission is realized by a drive and driven members creating at least one point of a contact between each other. Each of members may be at least one roller pressed against an opposite members surfaces with virtual surfaces. The method consists in adjustment of movement directions between the surfaces and the roller defined by a first movement vector of the surface relative to contact point, a second movement vector of the roller and a third movement vector of rolling direction of the roller, a steering angle and a correction angle. The steering angle is varied in accordance with a desired transmission ratio and lateral/thrust load on the roller while respecting the deformability of the contact points.
    • 本发明涉及一种实现无级变速器的方法。 通过驱动和驱动构件实现动力传递,其产生彼此之间的至少一个接触点。 每个构件可以是至少一个压靠在具有虚拟表面的相对构件表面上的辊。 该方法包括调整由表面相对于接触点的第一移动矢量定义的表面和辊之间的运动方向,辊的第二运动矢量和辊的滚动方向的第三运动矢量,转向角 和校正角度。 转向角根据期望的传动比和辊上的横向/推力负载而变化,同时相对于接触点的变形性。
    • 10. 发明申请
    • INFINITELY VARIABLE TRACTION DRIVE EMPLOYING ALTERNATE STEERABLE ROLLERS
    • 无限可变的跟踪驱动器使用替代的可转向滚子
    • US20140243146A1
    • 2014-08-28
    • US14352695
    • 2012-10-19
    • Paul Okulov
    • Paul Okulov
    • F16H15/40
    • F16H15/40F16H15/30
    • The invention relates to a method for achieving a continuously variable transmission. A power transmission is realized by a drive and driven members creating at least one point of a contact between each other. Each of members may be at least one roller pressed against an opposite members surfaces with virtual surfaces. The method consists in adjustment of movement directions between the surfaces and the roller defined by a first movement vector of the surface relative to contact point, a second movement vector of the roller and a third movement vector of rolling direction of the roller, a steering angle and a correction angle. The steering angle is varied in accordance with a desired transmission ratio and lateral/thrust load on the roller while respecting the deformability of the contact points.
    • 本发明涉及一种实现无级变速器的方法。 通过驱动和驱动构件实现动力传递,其产生彼此之间的至少一个接触点。 每个构件可以是被压靠在具有虚拟表面的相对构件表面上的至少一个辊。 该方法包括调整由表面相对于接触点的第一移动矢量定义的表面和辊之间的运动方向,辊的第二运动矢量和辊的滚动方向的第三运动矢量,转向角 和校正角度。 转向角根据期望的传动比和辊上的横向/推力负载而变化,同时相对于接触点的变形性。