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    • 5. 发明申请
    • COMBUSTION ENGINE WITHOUT COMPRESSION AND METHOD
    • 燃烧发动机没有压缩和方法
    • US20170002730A1
    • 2017-01-05
    • US15114859
    • 2014-01-28
    • Imre NAGY
    • Imre NAGY
    • F02B53/02F02B55/14
    • F02B53/02F01C1/20F02B55/14Y02T10/17
    • A none-compression internal combustion rotor motor and method to eliminate all of the disadvantages of the presently available internal combustion engines. By eliminating the compression stroke, increasing the efficiency. By replacing the crank shaft, the valve train and the cast iron parts with the main rotor, the combustion pressure can be converted into much higher rotational power and torque and efficiency. By having less parts, and by manufacturing from aluminum, eliminating all of the cast iron parts, reducing the manufacturing energy consumption. By having only balanced rotating parts that rotate on bearings without touching each other, greatly increasing the lifetime of the motor. The none-compression internal combustion rotor motor is air cooled needing no coolant, making it environmentally friendly.
    • 一种无压缩内燃转子电动机和消除目前可用的内燃机的所有缺点的方法。 通过消除压缩冲程,提高效率。 通过用主转子代替曲轴,气门机构和铸铁部件,燃烧压力可以转化成更高的旋转功率和扭矩和效率。 通过减少零件,并通过铝制造,消除所有铸铁零件,降低​​制造能耗。 通过只有平衡的旋转部件在轴承上旋转而不会相互接触,大大增加了电机的使用寿命。 无压缩内燃转子电动机是不需要冷却剂的空气冷却,使其环境友好。
    • 6. 发明申请
    • ROTARY PUMP OR MOTOR WITH ORBITAL PISTON ASPIRATION, METHODS OF PRODUCTION AND USES THEREOF
    • 旋转泵或电动机,带有活塞式活塞,其生产方法及其用途
    • US20150132167A1
    • 2015-05-14
    • US14450566
    • 2014-08-04
    • Fritz ForgyJohn Novak, JR.
    • Fritz ForgyJohn Novak, JR.
    • F04C15/06F04C15/00F04C2/08
    • F04C15/06F01C1/20F01C19/005F04C2/084F04C15/0096F05C2225/00
    • Rotary components are described that include a housing comprising a rotor having a rotor working face and a gate having a gate working face and a pocket; at least one vane, wherein the vane is coupled to the rotor; at least one wiper coupled to the vane; a plurality of endplates coupled to the housing, wherein at least one of the endplates is a float plate; an intake chamber; and an outlet chamber. In addition, methods of aspirating a working medium by utilizing the rotary component having at least one float plate includes pulling the working medium into the intake chamber, depositing the working medium into a working chamber that is located between the intake chamber and the outlet chamber; maintaining the working medium in a stationary position until the vane sweeps around toward the outlet chamber; accumulating the working medium into the outlet channel of the outlet chamber; and centrifugally ejecting the working medium into the outlet chamber and out of the system.
    • 描述了包括壳体的旋转部件,该壳体包括具有转子工作面的转子和具有闸门工作面和口袋的闸门; 至少一个叶片,其中所述叶片联接到所述转子; 耦合到所述叶片的至少一个擦拭器; 耦合到所述壳体的多个端板,其中所述端板中的至少一个是浮板; 进气室 和出口室。 另外,通过利用具有至少一个浮板的旋转部件吸入工作介质的方法包括将工作介质拉入进气室,将工作介质沉积到位于进气室和出口室之间的工作室中; 将工作介质保持在静止位置,直到叶片朝向出口腔室周围扫过; 将工作介质积聚到出口室的出口通道中; 并将工作介质离心地排出到出口室并离开系统。
    • 7. 发明授权
    • Fixed-vane positive displacement rotary devices
    • 固定叶片正位移旋转装置
    • US08956134B2
    • 2015-02-17
    • US13593279
    • 2012-08-23
    • David Alton McDaniel, Jr.Thomas Towles Lawson, Jr.James W. Newman, Jr.
    • David Alton McDaniel, Jr.Thomas Towles Lawson, Jr.James W. Newman, Jr.
    • F03C2/00F03C4/00F04C2/00
    • F01C1/123F01C1/20F01C19/02F01C21/08F04C2250/20Y10T29/49336
    • A fixed vane positive displacement rotary device is disclosed that includes a primary rotor and one or more scavenging rotors rotatably disposed in a rotor encasement. The primary rotor includes a plurality of protrusions. And each of the scavenging rotors includes a first curved surface that is configured to move adjacent to the primary rotor between the protrusions as the primary rotor and scavenging rotors rotate, a protrusion-receiving groove extending that is configured to receive one of the plurality of protrusions therein so that at least a tip of that protrusion moves adjacent to the protrusion-receiving groove as the primary rotor and scavenging rotors rotate, and a second curved surface and a third curved surface extending away from a center of the protrusion-receiving groove on opposing sides of the protrusion-receiving groove that are configured to move adjacent to a leading side and a trailing side of the one protrusion, respectively.
    • 公开了一种固定叶片正位移旋转装置,其包括主转子和可旋转地设置在转子壳体中的一个或多个扫气转子。 主转子包括多个突起。 并且每个扫气转子包括第一弯曲表面,该第一弯曲表面构造成当主转子和扫气转子旋转时在突起之间相邻于主转子移动;突起接收凹槽,其被构造成接收多个突起中的一个 使得当主转子和扫气转子旋转时,该突起的至少一个尖端邻近突起容纳槽移动;以及第二弯曲表面和第三弯曲表面,该第二弯曲表面和第三弯曲表面相对于突起容纳槽的中心延伸 突起容纳槽的侧面分别配置成相对于一个突起的前侧和后侧移动。
    • 9. 发明申请
    • ROTARY THREE DIMENSIONAL VARIABLE VOLUME MACHINE
    • 旋转三维可变量机
    • US20140076155A1
    • 2014-03-20
    • US13868237
    • 2013-04-23
    • Arvind Kumar SharmaArvind Kumar Singh
    • Arvind Kumar SharmaArvind Kumar Singh
    • F04C2/26
    • F04C2/26F01C1/00F01C1/20F04C2/00F04C2/36
    • An embodiment may have two rotary discs including a second disc (a cap) and a first disc; and a rotary ‘cam’ (having ports) placed in the central hole of the first disc. A cap is half the diameter of the first disc. Both face each other and maintain contour complementarity (wall height of the second disc+radial depth of the first disc is constant at contact); either, when both discs rotate on their axes, placed the second disc's radius apart, or when the second disc rotates and revolves on the face of stationary first disc. The cap seals the cavity underneath during the two motions, and without jeopardizing the sealing, permits entry and exit of the radial ridges and furrows of the first disc into it. The ridges sweep the floor (under surface) of the cap and divide the cavity into variable volume compartments that suck and expel fluid simultaneously through the ‘cam’. The machine is designed to work as rotary pump, compressor, turbine or internal combustion engine.
    • 实施例可以具有包括第二盘(帽)和第一盘的两个旋转盘; 以及放置在第一盘的中心孔中的旋转“凸轮”(具有端口)。 帽是第一盘的直径的一半。 两者彼此面对并保持轮廓互补性(第二盘的壁高度+第一盘的径向深度在接触时是恒定的); 当两个盘在其轴上旋转时,将第二盘的半径分开,或者当第二盘旋转并在固定的第一盘的表面上旋转时。 在两次运动期间,盖子密封下面的空腔,并且在不危及密封的情况下,允许将第一盘的径向脊和沟的进入和退出进入其中。 脊部扫过盖子的底部(下表面),并将空腔分成可变容积的隔间,通过“凸轮”同时吸入和排出流体。 该机器设计用作旋转泵,压缩机,涡轮机或内燃机。
    • 10. 发明申请
    • 3-STROKE/6-STROKE ROCKET JET ENGINE
    • 3-STROKE / 6-STROKE ROCKET喷气式发动机
    • US20130333553A1
    • 2013-12-19
    • US14002908
    • 2012-03-21
    • Takeshi Ishii
    • Takeshi Ishii
    • F01B3/00
    • F01B3/00F01C1/20F01C1/28F01C1/36F02B53/00F02B75/021F02B2075/026Y02T10/17
    • The present invention has an object to provide an engine and a pump useful in three-stroke/six-stroke rocket/jet engine pump and the like in each of a speed volume type and an isokinetic circular rotation internal combustion engine type which operates only by isokinetic circular rotation similarly to a jet engine, has no pressure leakage, has all the increased/decreased pressures immediately work as a rotation torque and is excellent in super-high speed and super-low speed limitation performance, silence and fuel-cost saving performances.The present invention provides an engine pump having a housing (A) having a cylinder space; an output shaft unit (B) composed of one or two or more pistons, a ring disk, and an output disk capable of an isokinetic circular rotation in the cylinder space; a rotor (C) capable of the isokinetic circular rotation at a constant rotation specific speed with respect to the rotation of the piston; a rotor guide (D) having the same center as the output shaft unit (B) and in charge of the inside of the cylinder, having a recess surface contact holding portion with the rotor (C) and a planar contact outer peripheral surface with the piston, and supporting the center of the output shaft unit (B) and the rotor (C) making the isokinetic circular rotation; and driving means (E) giving an operation to the piston, in which the cylinder of the housing (A) has a notch portion for sealing in planar contact with a part of the outer peripheral surface of the rotor (C) at a part of the inner peripheral wall surface thereof.
    • 本发明的目的是提供一种用于三冲程/六冲程火箭/喷气发动机泵等的发动机和泵,其中,所述三冲程/六冲程火箭/喷气式发动机泵等以速度体积型和等动态圆旋转内燃机型分别运行,其仅由 等速旋转与喷气发动机类似,没有压力泄漏,所有增压/降压都立即作为旋转转矩起作用,超高速和超低速限制性能优良,静音和节省燃油成本 。 本发明提供一种具有壳体(A)的发动机泵,其具有气缸空间; 由一个或两个以上的活塞构成的输出轴单元(B),环形盘,以及能够在气缸空间中等速旋转的输出盘; 能够相对于活塞的旋转以恒定的旋转比速度等速旋转的转子(C); 与所述输出轴单元(B)具有相同中心并且负责所述气缸内部的转子引导件(D),具有与所述转子(C)的凹面接触保持部分和具有与所述转子 活塞,并支撑输出轴单元(B)和转子(C)的中心进行等速旋转; 以及向活塞施加操作的驱动装置(E),其中壳体(A)的气缸具有用于密封的切口部分,用于与转子(C)的一部分的外周面的一部分平行地接触 其内周壁表面。