Claims
- 1. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein said independently operable member is a thrust body, said interior space is a thrust chamber which contains said member therein, and
- wherein thrust flow control means are provided to drive said thrust member against a spring means which opposes a movement of said thrust body towards said spring means.
- 2. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor, and;
- wherein said independently operable member is a revolvably borne element at least partially located in said interior space, while clutch means are provided between said rotor and said element to temporarily drive said element by said rotor and to temporarily release said element from said rotor to permit free-wheeling of said revolvably borne element.
- 3. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein said interior space locates at least a portion of said independently operable member,
- while said member controls the flow of a thrust fluid to a root holding head provided on said shaft,
- wherein said root holding head provides holders for the reception of roots of blades of propellers,
- wherein said roots of said propellers are pivotable in said holders, and,
- wherein a pivot gear is provided to said member and to said root holding head and to said roots to control the inclination of said blades of propellers.
- 4. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to said housing to control the flow of said driving fluid from an inlet on the housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein said interior space locates at least a portion of said independently operable member,
- while said member controls the flow of a thrust fluid to a root holding head provided on said shaft,
- wherein said root holding head provides holders for the reception of roots of blades of propellers,
- wherein said roots of said propellers are pivotable in said holders,
- wherein a pivot gear in provided to said member and to said root holding head and to said roots to control the inclination of said blades of propellers, and,
- wherein said pivot gear includes a spring means and a thrust chamber with a thrust body therein, attached to said pivot gear,
- while a thrust fluid line is communicated to said thrust chamber to control said angle of inclination of said propeller blades together with said spring means.
- 5. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein a bore is provided substantially centrically in said rotor to extend axially along the axis of said rotor;
- wherein a cylindrical member constituting said operable member is provided in said housing and in said rotor to engage portions of said housing and of said rotor;
- wherein at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor; and;
- wherein a cylinder is formed in communication with said bore in said rotor, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said pressurized fluid and the respective compression of said spring means.
- 6. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet of said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein a bore is provided substantially centrically in said rotor to extend axially along the axis of said rotor;
- wherein a cylindrical member constituting said operable member is provided in said housing and in said rotor to engage portions of said housing and of said rotor;
- wherein at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor;
- wherein a cylinder is formed in communication with said bore in said rotor, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said pressurized fluid and the respective compression of said spring means; and;
- wherein said piston has a piston shaft extending sealingly through one end of said cylinder and engages and moves an element endwards of said cylinder in response to said axial locations.
- 7. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to said housing to control the flow of said driving fluid from an inlet on the housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein a stationary member constituting said operable member extends from a portion of said housing into a portion of said rotor independently of said control body;
- wherein three entrance ports are provided on said member;
- wherein said member is provided with two separated passages extending from said ports through a portion of said member to end in two separated ports;
- wherein said member has at least three seal faces in the neighborhood of said separated ports;
- wherein said rotor includes a seal portion having at least three complementary faces of a configuration complementary to said seal faces and able to seal in combination with said seal faces between said seal faces and said complementary faces; and,
- wherein one of said seal faces and one of said complementary faces are located between said two separated ports, one of said seal faces and one of said complementary faces are located endwards of one end of one of said ports and one of said seal faces and one of said complementary faces are located on the opposite end of the other of said ports.
- 8. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers;
- wherein said motor contains in addition to said rotor, said shaft and said control body for the control of said driving fluid at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid which flows through said working chambers of said motor,
- wherein a stationary member constituting said operable member extends from a portion of said housing into a portion of said rotor independently of said control body;
- wherein three entrance ports are provided on said member;
- wherein said member is provided with two separated passages extending from said ports through a portion of said member to end in two separated ports;
- wherein said member has at least three seal faces in the neighborhood of said separated ports;
- wherein said rotor includes a seal portion having at least three complementary faces of a configuration complementary to said seal faces and able to seal in combination with said seal faces between said seal faces and said complementary faces;
- wherein one of said seal faces and one of said complementary faces are located between said two separated ports, one of said seal faces and one of said complementary faces are located endwards of one end of one of said ports and one of said seal faces and one of said complementary faces are located on the opposite end of the other of said ports, and;
- wherein said seal portion includes a control face and two separated fluid-transfer lines which end in two separated openings in said control face;
- wherein said lines extend through said seal portion and separatedly communicate said ports with said openings.
- 9. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- while said housing and said rotor include parts;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially eccentrically in one of said parts to extend axially in a defined direction relative to said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other of said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said piston includes a shaft with ability to extend at least partially out of said cylinder and one end of said part,
- wherein an arresting recess is provided in a portion of the other of said parts and axially of the axis of said piston when said piston is aligned with said recess by a respective angle of revolution of said rotor, and,
- wherein said shaft is able to extend into said recess and thereby arrests said rotor relatively to said recess and to said housing to prevent rotation of said rotor in said housing when said shaft is engaged in said recess.
- 10. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to said housing to control the flow of said driving fluid from an inlet on the housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially centrically in said rotor to extend axially along the axis of said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said rotor extends axially through one end of said housing and locates a body endwards of said housing;
- wherein said body provides a pair of cylindrical spaces in a direction substantially normal to the direction of the axis of said rotor; and;
- wherein pivots are assembled in said spaces and connected to said piston
- whereby said pivots in said spaces are kept in defined pivot-angles in response to said axial locations of said pistons.
- 11. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to said housing to control the flow of said driving fluid from an inlet on the housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- while said housing and said rotor include parts;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially eccentrically in one of said parts to extend axially in a defined direction relative to said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said piston includes a shaft with ability to extend at least partially out of said cylinder and one end of said part, while an arresting recess is provided in a portion of the other of said parts and axially of the axis of said piston when said piston is aligned with said recess by a respective angle of revolution of said rotor and said shaft is able to extend into said recess and thereby arrests said rotor relatively to said recess and to said housing to prevent rotation of said rotor in said housing when said shaft is engaged in said recess; and;
- wherein a bore meets a bore radially of said cylindrical member in said rotor and a sealing means which surrounds said cylindrical member while one of said bores is communicated to the pressure port of said motor;
- wherein said spring means presses said shaft automatically into said recess when said recess moves over the end of said shaft and said cylinder is free of pressure in fluid
- wherein said shaft disengages from said recess only at that times when pressure in fluid is supplied into said entrance port of said motor, and;
- wherein said rotor is at all times automatically arrested relatively to said housing to prevent rotation relative to said housing when no pressure is supplied to said entrance port of said motor.
- 12. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; and control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially eccentrically in said rotor to extend axially parallel to the axis of said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said piston includes a shaft with ability to extend at least partially out of said cylinder and one end of said cylinder;
- wherein an arresting recess is provided in a portion of said housing and axially of the axis of said piston when said piston is aligned with said recess by a respective angle of revolution of said rotor, and,
- wherein said shaft is able to extend into said recess and thereby arrests said rotor relatively to said recess and to said housing to prevent rotation of said rotor in said housing when said shaft is engaged in said recess.
- 13. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- while said housing and said rotor include parts;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially eccentrically in one of said parts to extend axially in a defined direction relative to said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations is said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said piston includes a shaft with ability to extend at least partially out of said cylinder and one end of said part, while an arresting recess is provided in a portion of the other of said parts and axially of the axis of said piston when said piston is aligned with said recess by a respective angle of revolution of said rotor and said shaft is able to extend into said recess and thereby arrests said rotor relatively to said recess and to said housing to prevent rotation of said rotor in said housing when said shaft is engaged in said recess; and;
- wherein said shaft and said recess are utilized to prevent any undesired move of said vehicle, when said vehicle is unattended by persons whereby the arrangement of the vehicle serves to prevent accidents when the vehicle is unattended to.
- 14. A vehicle including a power plant to operate a fluid flow creating arrangement for the supply of at least one flow of pressurized driving fluid to a hydrostatic fluid motor, and in said fluid motor a housing, a revolvably mounted rotor which contains working chambers for the reception of said pressurized driving fluid, displacement means for the transfer of force of fluid to a portion of the rotor; a control body associated to the rotor and to the housing to control the flow of said driving fluid from an inlet on said housing to said working chambers of said rotor and from said working chambers of said rotor to an outlet on said housing and said vehicle including a revolvable shaft to be driven with said rotor;
- while said housing and said rotor include parts;
- wherein said rotor includes at least one interior space in addition to said working chambers; said motor contains in addition to said rotor, said shaft and said control body at least one independently operable member which is at least partially operable independently of subjection to pressure in said driving fluid,
- wherein a bore is provided substantially eccentrically in one of said parts to extend axially in a defined direction relative to said rotor;
- wherein a cylindrical member is provided to said housing and to said rotor to constitute said operable member and to engage portions of said housing and of said rotor while at least one stationary and at least one rotary sealing arrangement are provided to said member whereof one is fitting to said housing and the other to said rotor,
- wherein a cylinder is formed in communication with said bore in said part, said cylinder contains a piston and a spring means on one end of said piston in said cylinder, while the other end of said piston is adapted to said bore and said bore ends in a port for the reception of a pressurized fluid whereby said piston may be subjected to a forces-play of said spring means from one end and of said pressurized fluid from the other end of said piston and said piston thereby obtains defined axial locations in said cylinder depending on the height of the pressure in said fluid and the respective compression of said spring means;
- wherein said piston includes a shaft with ability to extend at least partially out of said cylinder and one end of said part, while an arresting recess is provided in a portion of the other of said parts and axially of the axis of said piston when said piston is aligned with said recess by a respective angle of revolution of said rotor and said shaft is able to extend into said recess and thereby arrests said rotor relatively to said recess and to said housing to prevent rotation of said rotor in said housing when said shaft is engaged in said recess;
- wherein said cylinder and said piston are located in said rotor and said shaft, of said piston engages an element to revolve said element together with said rotor and to move said element with said piston in axial direction; and;
- wherein said element forms an outer end face of waved configuration with wave hills and wave valleys, while said part of said housing forms an inner end face portion with wave hills and wave valleys of a wave configuration complementary to said configuration of said outer end face of said element;
- while said wave hills and wave valleys are engaging each other and block said rotor from rotation when said piston presses said element into engagement with said inner end face portion of said housing.
REFERENCE TO RELATED APPLICATIONS
This is a continuation in part application of my co-pending patent application, Ser. No. 954,555 which was filed on Oct. 25, 1978 and also a continuation in part application of my co-pending patent application Ser. No. 110,157, filed on Jan. 7, 1980. The mentioned co-pending application Ser. No. 954,555 is a continuation in part application of Ser. No. 800,756, filed on May 26, 1977, now abandoned and said application Ser. No. 800,756 was a continuation in part application of the earlier application, Ser. No. 465,413, now abandoned, filed on Apr. 30, 1974 under title: "Vehicle for travelling in the air and on the ground equipped with hydraulically driven propellers"; and this is partially also a continuation in part application of my co-pending patent applications Ser. No. 610,872 of Sept. 8, 1975, entitled: "Hydraulically controlled fluid stream driven vehicle" and Ser. No. 610,871 of Sept. 8, 1975 entitled: "Hydraulically controlled fluid stream driven vehicle" whereof the latter two co-pending patent applications are divisionals of former patent application Ser. No. 416,237, filed on Nov. 15, 1973, now abandoned and which was a divisional patent application of patent application Ser. No. 131,782 of Apr. 6, 1971, now U.S. Pat. No. 3,790,105, issued Feb. 5, 1974, whereby priority for this present continuation in part application is claimed of Apr. 6, 1971; Nov. 15, 1973; Apr. 30, 1974; Sept. 8, 1975; May 26, 1977; and of Jan. 7, 1980.
The above mentioned application Ser. No. 110,157 is now a continuation in part application of Ser. No. 895,687, filed Apr. 12, 1978, now abandoned.
Application Ser. No. 895,687 is a continuation in part application of my earlier application, Ser. No. 760,006, filed on Jan. 17, 1977. Application Ser. No. 760,006 is now U.S. Pat. No. 4,136,845 and issued on Jan. 30, 1979. Application Ser. No. 895,687 is now abandoned. Application Ser. No. 760,006 was a continuation in part application of my still earlier application Ser. No. 104,676, filed on Mar. 8, 1971, now U.S. Pat. No. 3,823,898. Application Ser. No. 104,676 itself arrived from earlier applications, which are mentioned in now granted U.S. Pat. No. 3,823,898. The eldest application therein is application Ser. No. 328,395 of Dec. 5, 1963, now U.S. Pat. No. 3,220,898. Another important application therein is application Ser. No. 551,023 of May 18, 1966, now abandoned. Priority for the equalness of rates of flow in flows to hydraulic motors which drive propellers is thereby substantiated by application Ser. No. 328,395 of Dec. 5, 1963 and the priority for the use of such drive to propeller vehicles forward and maintain their straight forward path by equally driven propeller pairs which one propeller of each pair on another side of the vehicle is obtained by application Ser. No. 551,023 of May 18, 1966.
Partial priority is thereby also claimed of application Ser. No. 110,157 and of its fore-runners as shown above, namely of: Jan. 7, 1980; Apr. 12, 1978; Jan. 17, 1977; Mar. 8, 1971; May 18, 1966 and Dec. 5, 1963.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
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2521478 |
Nov 1975 |
DEX |
Related Publications (1)
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Date |
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610871 |
Sep 1975 |
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Divisions (2)
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416237 |
Nov 1973 |
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Parent |
131782 |
Apr 1971 |
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Continuation in Parts (7)
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954555 |
Oct 1978 |
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895687 |
Apr 1978 |
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760006 |
Jan 1977 |
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104676 |
Mar 1971 |
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800756 |
May 1977 |
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465413 |
Apr 1974 |
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610872 |
Sep 1975 |
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