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    • 21. 发明专利
    • ROTARY FLUID MACHINE
    • CA2838858C
    • 2017-08-22
    • CA2838858
    • 2012-07-06
    • GREYSTONE TECH PTY LTD
    • WHEELER DARYLERWIN JUSTIN WADEBURNS TIMOTHY DONALD SR
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • A rotary fluid machine (10) has a rotor (12), a stator (14), and a plurality of gates. The (rotor 12) and stator (14) are rotatable relative to each other and arranged one inside the other to define a working chamber (18) there between. Gates (16) are supported in radial gate slots (20) formed in the rotor (12) and cyclically extend from and retract into the gate (slots 20) as the rotor (12) rotates about stator (14). A plurality of demountable lobes is supported on an outer circumferential surface (24) of stator (14). The surface (24) forms a surface of the working chamber (18). Circumferential surface (24) is composed of an intermediate surface (48) which extends in an axial direction and opposite curved surfaces (46). The gate (16) has opposite rounded corners (130) separated by an axial planar surface (132). The shape and configuration of the gate (16) and corresponding is made to match that of the outer circumferential surface (24) so that when the axial surface (132) lies substantially adjacent and parallel to intermediate surface (48) each of the curved surfaces (130) lie closely adjacent to and substantially parallel with the concavely curved surfaces (46).
    • 22. 发明专利
    • Rotary fluid machine
    • AU2012283747B2
    • 2015-09-24
    • AU2012283747
    • 2012-07-06
    • GREYSTONE TECH PTY LTD
    • WHEELER DARYLERWIN JUSTIN WADEBURNS SR TIMOTHY DONALD
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • A rotary fluid machine (10) has a rotor (12), a stator (14), and a plurality of gates. The (rotor 12) and stator (14) are rotatable relative to each other and arranged one inside the other to define a working chamber (18) there between. Gates (16) are supported in radial gate slots (20) formed in the rotor (12) and cyclically extend from and retract into the gate (slots 20) as the rotor (12) rotates about stator (14). A plurality of demountable lobes is supported on an outer circumferential surface (24) of stator (14). The surface (24) forms a surface of the working chamber (18). Circumferential surface (24) is composed of an intermediate surface (48) which extends in an axial direction and opposite curved surfaces (46). The gate (16) has opposite rounded corners (130) separated by an axial planar surface (132). The shape and configuration of the gate (16) and corresponding is made to match that of the outer circumferential surface (24) so that when the axial surface (132) lies substantially adjacent and parallel to intermediate surface (48) each of the curved surfaces (130) lie closely adjacent to and substantially parallel with the concavely curved surfaces (46).
    • 23. 发明专利
    • Rotary fluid machine
    • AU2012283747A1
    • 2013-05-02
    • AU2012283747
    • 2012-07-06
    • GREYSTONE TECHNOLOGIES PTY LTD
    • WHEELER DARYLERWIN JUSTIN WADEBURNS SR TIMOTHY DONALD
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • A rotary fluid machine (10) has a rotor (12), a stator (14), and a plurality of gates. The (rotor 12) and stator (14) are rotatable relative to each other and arranged one inside the other to define a working chamber (18) there between. Gates (16) are supported in radial gate slots (20) formed in the rotor (12) and cyclically extend from and retract into the gate (slots 20) as the rotor (12) rotates about stator (14). A plurality of demountable lobes is supported on an outer circumferential surface (24) of stator (14). The surface (24) forms a surface of the working chamber (18). Circumferential surface (24) is composed of an intermediate surface (48) which extends in an axial direction and opposite curved surfaces (46). The gate (16) has opposite rounded corners (130) separated by an axial planar surface (132). The shape and configuration of the gate (16) and corresponding is made to match that of the outer circumferential surface (24) so that when the axial surface (132) lies substantially adjacent and parallel to intermediate surface (48) each of the curved surfaces (130) lie closely adjacent to and substantially parallel with the concavely curved surfaces (46).
    • 27. 发明专利
    • A ROTARY FLUID DRIVE
    • AU2018200233A1
    • 2018-02-01
    • AU2018200233
    • 2018-01-11
    • GREYSTONE TECH PTY LTD
    • MARCHAND NICHOLAS RYANCLAUSEN JEFFERY RONALD
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • -23 A concentric rotary fluid machine 100 has a first body 102 and a second body 104 that are rotatable relative to each other about a rotation axis 108. The bodies 102, 104 are 5 coaxially arranged one inside the other and form a working chamber 106 there between. A plurality of gates 110 are supported by the second body 104 in respective gate pockets 140. Each gate 110 has a gate cylinder 126 at one end and sealing portion 128 at an opposite end. Each gate pocket 140 has: a gate retention recess 142 which receives a gate cylinder 126; a gate seal recess 144 which receives sealing 10 portion 128; and an intervening land 146. The sealing portion 128 reciprocates up and down within a corresponding gate seal recess and is always in contact with both the recess 144 and the second body 102. A plurality of lobes 112 on the first body cause the gates 110 to swing about respective swing axes 114 as the first body rotates relative to the second body. The lobes 112 and the lands 146 are configured so that a 15 lobe 112 is able to form a substantial seal against a land 146 when in mutual radial alignment.
    • 28. 发明专利
    • MAQUINA GIRATORIA CONCENTRICA DE FLUIDO.
    • MX2016001935A
    • 2016-09-06
    • MX2016001935
    • 2014-08-12
    • GREYSTONE TECH PTY LTD
    • NICHOLAS RYAN MARCHANDJEFFERY RONALD CLAUSEN
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • Se describe una máquina giratoria concéntrica de fluido (100) que tiene un primer cuerpo (102) y un segundo cuerpo (104), que son rotables uno con relación al otro alrededor de un eje de rotación (108). Los cuerpos (102, 104) están coaxialmente acomodados uno dentro del otro y forman una cámara de trabajo (106) entre éstos. Una pluralidad de compuertas (110) son soportadas por el segundo cuerpo (104) en cavidades de compuerta respectiva (140). Cada compuerta (110) tiene un cilindro de compuerta (126) en un extremo y una porción de selladura (128) en un extremo opuesto. Cada cavidad de compuerta (140) tiene: un hueco de retención de compuerta (42) el cual recibe un cilindro de compuerta (126); un hueco de sello de compuerta (144) el cual recibe la porción de selladura (128); y un borde de intervención (146). La porción de selladura (128) se mueve alternadamente hacia arriba y hacia abajo (10) dentro de un hueco de sello de compuerta correspondiente, y está siempre en contacto con el hueco (144) y el segundo cuerpo (102). Una pluralidad de lóbulos (112) sobre el primer cuerpo provoca que las compuertas (110) oscilen alrededor de los ejes de oscilación respectivos (114) conforme el primer cuerpo gira con relación al segundo cuerpo. Los lóbulos (112) y los bordes (146) están configurados de modo que un lóbulo (112) es capaz de formar un sello sustancial contra un borde (146) cuando está en alineamiento radial mutuo.
    • 29. 发明专利
    • A CONCENTRIC ROTARY FLUID MACHINE
    • CA2921229A1
    • 2015-02-19
    • CA2921229
    • 2014-08-12
    • GREYSTONE TECHNOLOGIES PTY LTD
    • MARCHAND NICHOLAS RYANCLAUSEN JEFFERY RONALD
    • F04C2/40F01C1/40F03C2/30F04C18/40
    • A concentric rotary fluid machine (100) has a first body (102) and a second body (104) that are rotatable relative to each other about a rotation axis (108). The bodies (102, 104) are coaxially arranged one inside the other and form a working chamber (106) there between. A plurality of gates (110) are supported by the second body (104) in respective gate pockets (140). Each gate (110) has a gate cylinder (126) at one end and sealing portion (128) at an opposite end. Each gate pocket (140) has: a gate retention recess (42) which receives a gate cylinder (126); a gate seal recess (144) which receives sealing portion (128); and an intervening land (146). The sealing portion (128) reciprocates up and (10) down within a corresponding gate seal recess and is always in contact with both the recess (144) and the second body (102). A plurality of lobes (112) on the first body cause the gates (110) to swing about respective swing axes (114) as the first body rotates relative to the second body. The lobes (112) and the lands (146) are configured so that a lobe (112) is able to form a substantial seal against a land (146) when in mutual radial alignment.