Claims
        
                - 1. In an apparatus comprising a cylinder defining a cylinder axis and a piston having a predetermined radial clearance with said cylinder and being movable in a reciprocating manner in said cylinder for working on a gaseous medium present in said cylinder or for being worked on by said gaseous medium for reciprocating said piston in said cylinder, wherein the improvement comprises:
 
                - means for centering said piston in said cylinder for rotation-free reciprocation of said piston in said cylinder, said means comprising an elongate circular cylindrical guide coaxial with said cylinder axis, a rotary member disposed between said guide and said piston, said guide and said rotary member comprising a first pair of axially spaced dynamic grooved bearings for centering said rotary member with respect to said guide during rotation of said rotary member, and said rotary member and said piston comprising a second pair of axially spaced dynamic grooved bearings for centering said piston with respect to said rotary member and said cylinder during rotation of said rotary member.
 
                - 2. An apparatus as claimed in claim 1, wherein said rotary member is comprised of a rotary pipe concentrically surrounding said circular cylindrical guide and rotatable about said cylinder axis, said apparatus further comprises a rotary drive means for rotating said rotary pipe, and said first pair of axially spaced bearings is comprised of two axially spaced groove patterns on said guide and an inner surface of said rotary pipe which cooperates with said patterns of grooves disposed on said guide.
 
                - 3. An apparatus as claimed in claim 2, wherein said piston comprises translatory pipe fixed coaxially to said piston, said translatory pipe extending from said piston and surrounding a portion of said rotary pipe, said translatory pipe and said portion of said rotary pipe comprising said second pair of dynamic grooved bearings for centering said translatory pipe with respect to said rotary pipe and said cylinder axis for translation of said translatory pipe during reciprocation of said piston.
 
                - 4. In a piston engine comprising a cylinder defining a cylinder axis and a piston having a predetermined radial clearance with said cylinder and being movable in a reciprocating manner in said cylinder for working on a gaseous medium present in said cylinder or for being worked on by said gaseous medium for reciprocating said piston in said cylinder, wherein the improvement comprises:
 
                - centering means for centering said piston in said cylinder for rotation-free reciprocation of said piston in said cylinder, said centering means comprising
 
                - a guide coaxial with said cylinder,
 
                - a translatory member fixed to said piston and extending in the direction of said guide and coaxial with said piston, and
 
                - a rotary member disposed radially between said guide and said translatory member, said translatory member being translatable with respect to said rotary member during reciprocation of said piston, and
 
                - rotary drive means for rotating said rotary member,
 
                - said guide and said rotary member comprising a first pair of axially spaced grooved dynamic bearings for centering said rotary member with respect to said guide for rotation of said rotary member, and
 
                - said rotary member and said translatory member comprising a second pair of axially spaced grooved dynamic bearings for centering said translatory member with respect to said rotary member for translation of said translatory member during reciprocation of said piston.
 
                - 5. A piston engine as claimed in claim 4, wherein said rotary member concentrically surrounds said guide and said translatory member surrounds and translates over said rotary member.
 
                - 6. A piston engine as claimed in claim 5, wherein said translatory member has a portion extending axially into said piston and defining a cavity therein.
 
                - 7. A piston engine as claimed in claim 6, further comprising said guide having an end face proximate said piston, said end face and said portion of said translatory member extending into said piston forming a chamber having a length varying with the axial translation of said piston during reciprocation, a said dynamic groove bearing comprising an assymetric pattern of grooves for pumping a gas into said chamber during rotation of said rotary member for axially moving said piston, and control means for sensing the axial position of said piston and for controlling the rotational speed of said rotary member for controlling the gas flow into said chamber and the movement of said piston.
 
                - 8. A piston engine as claimed in claim 7, wherein said rotary drive means comprises an electric rotary motor.
 
                - 9. A piston engine as claimed in claim 8, wherein said piston engine further comprises a translatory drive means comprising a linear motor for controlling the translation of said piston, and means for connecting said piston to said linear motor.
 
                - 10. A piston engine as claimed in claim 9, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 11. A piston engine as claimed in claim 6, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 12. A piston engine as claimed in claim 5, wherein said apparatus further comprises a translatory drive means comprising a linear motor for controlling the translation of said piston, and means for connecting said piston to said linear motor.
 
                - 13. A piston engine as claimed in claim 5, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 14. In a cryo-cooler comprising an expansion chamber defining a chamber axis, a displacer reciprocable in said expansion chamber, and compression means for supplying a gas under pressure to said expansion chamber for reciprocating said displacer, wherein the improvement comprises:
 
                - centering means for centering said displacer in said expansion chamber for rotation-free reciprocation of said displacer in said expansion chamber, said centering means comprising
 
                - a guide coaxial with said expansion chamber,
 
                - a translatory member fixed to said displacer and extending in the direction of said guide coaxial with said displacer,
 
                - a rotary member disposed radially between said fixed guide and said translatory member, said translatory member being translatable with respect to said rotary member during reciprocation of said piston, and
 
                - rotary drive means for rotating said rotary member
 
                - said fixed guide and said rotary member comprising a first pair of axially spaced grooved dynamic bearings for centering said rotary member with respect to said guide for rotation of said rotary member, and
 
                - said rotary member and said translatory member comprising a second pair of axially spaced grooved dynamic bearings for centering said translatory member with respect to said rotary member for translation of said translatory member during reciprocation of said displacer.
 
                - 15. A cryo-cooler as claimed in claim 14, wherein said rotary member concentrically surrounds said guide and said translatory member surrounds and translates over said rotary member.
 
                - 16. A cryo-cooler as claimed in claim 15, wherein said translatory member has a portion extending axially into said displacer defining a cavity therein.
 
                - 17. A cryo-cooler as claimed in claim 15, further comprising said guide having an end face proximate said displacer, said end face and said portion of said translatory member extending into said displacer forming a chamber having a length varying with the axial translation of said displacer during reciprocation, a said dynamic groove bearing comprising an assymetric pattern of grooves for pumping a gas into said chamber during rotation of said rotary member for axially moving said displacer, and control means for sensing the axial position of said displacer and for controlling the rotational speed of said rotary member for controlling the gas flow into said chamber and the movement of said displacer.
 
                - 18. A cryo-cooler as claimed in claim 17, wherein said rotary drive means comprises an electric rotary motor.
 
                - 19. A cryo-cooler as claimed in claim 18, wherein said cryo-cooler further comprises a translatory drive means comprising a linear motor for controlling the translation of said displacer, and means for connecting said displacer to said linear motor.
 
                - 20. A cryo-cooler as claimed in claim 19, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 21. A cryo-cooler as claimed in claim 17, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 22. A cryo-cooler as claimed in claim 14, wherein said guide comprises an elongate circular cylinder, and said rotary member and said translatory member each comprise a circular pipe.
 
                - 23. A cryo-cooler as claimed in claim 14, wherein said cryo-cooler further comprises a translatory drive means comprising a linear motor for controlling the translation of said displacer, and connecting means for connecting said displacer to said linear motor.
 
                - 24. A cryo-cooler as claimed inc laim 20, wherein said asymmetric pattern of grooves are formed on said rotary pipe, said pattern pumping gas into said chamber via the gap between said rotary pipe and said translatory pipe.
 
                - 25. A cryo-cooler as claimed in claim 23, wherein said connecting means comprises an elongate rod extending from said displacer through said guide to said translatory motor, and said cryo-cooler further comprises a diaphragm spring connecting to said elongate rod for controlling the movement of said displacer and for centering said elongate rod with said guide.
 
        
                        Priority Claims (1)
        
            
                
                    | Number | 
                    Date | 
                    Country | 
                    Kind | 
                
            
            
                    
                        | 8800055 | 
                        Jan 1988 | 
                        NLX | 
                         | 
                    
            
        
                        Parent Case Info
        This is a continuation of application Ser. No. 317,114, filed Feb. 28, 1989, now abandoned, which is a continuation of application Ser. No. 194,763, filed May 17, 1988, now abandoned.
                
                
                
                            US Referenced Citations (4)
            
                        Continuations (2)
        
            
                
                     | 
                    Number | 
                    Date | 
                    Country | 
                
            
            
    
        | Parent | 
            317114 | 
        Feb 1989 | 
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        | Parent | 
            194763 | 
        May 1988 | 
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