US2006257242A1PendingUtilityA1

Gas-jet driven rotary device for generating a field and a process for treating items within the field for increased performance

Individually held — no corporate assignee on recordPriority: Mar 28, 2003Filed: Dec 21, 2005Published: Nov 16, 2006
Est. expiryMar 28, 2023(expired)· nominal 20-yr term from priority
Inventors:Karl Aegerter
F01D 1/32F02K 7/005
28
PatentIndex Score
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Cited by
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References
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Claims

Abstract

A gas-jet driven rotary device is provided which, when being operated, creates a field which may be utilized to treat a variety of electrical, chemical, and mechanical systems, device and/or components for increased performance gains. The device includes a wheel-like rotor mounted between parallel walls defining part of a housing capable of being hermetically sealed such that a vacuum may be formed within the housing. One feature of the rotor is the structure forming the arcuate segment of the passageway around the shaft, which includes a flexible inner tube centered concentrically within a rigid outer tube or conduit of larger diameter. The annular space between the inner and outer tubes is in communication with the atmosphere. To power the rotary device, compressed gas is fed to it through the inlet opening into the passageway. The gas flows through the passageway and out the exit port in the form of a jet which imparts thrust to the rotor and causes it to spin.

Claims

exact text as granted — not AI-modified
1 . A gas-jet driven rotary device comprising: 
 a rotor having a hub shaft and means adapted to support said rotor for rotation about the axis of said hub shaft; 
 said rotor comprising structure defining a fluid passageway extending from an inlet opening in a first end of said hub shaft, arcuately about said rotor, and to an outlet opening in a second end of said hub shaft;  
 said structure having a metallic band attached to said rotor;  
 said rotor being adapted to spin around the axis of its hub shaft when a pressurized gas is introduced into said fluid passageway through said inlet opening and exhausts therefrom through said outlet opening as a jet, the direction of spin being opposite to the direction of gas flow in the jet in reaction to the thrust of said jet.  
   
     
     
         2 . The gas-jet driven rotary device in accordance with  claim 1  including a housing for enclosing a portion of said rotor having a pair of walls in which opposite ends of said hub shaft are rotatably supported.  
     
     
         3 . The gas-jet driven rotary device in accordance with  claim 2  in which said housing is adapted to be hermetically sealed against gas leakage.  
     
     
         4 . The gas-jet driven rotary device in accordance with  claim 3  in which said housing has a cylindrical wall interposed between and separating said pair of walls.  
     
     
         5 . The gas-jet driven rotary device in accordance with  claim 4  in which said outlet opening faces in a rotational direction about the axis of spin of said rotor.  
     
     
         6 . The gas-jet driven rotary device in accordance with  claim 5  in which that part of said structure extending arcuately about said rotor comprises tubular means.  
     
     
         7 . The gas-jet driven rotary device in accordance with  claim 6  in which said tubular means comprises a rigid outer tube and a flexible inner tube, the latter being of smaller diameter than, and supported in generally concentrically spaced disposition within the former.  
     
     
         8 . The gas-jet driven rotary device in accordance with  claim 7  in which said tubular means is partially supported in position by means of a plurality of spoke elements interconnecting it with said hub shaft.  
     
     
         9 . The gas-jet driven rotary device in accordance with  claim 8  in which at least one of said spoke elements has a hollow interior.  
     
     
         10 . The gas-jet driven rotary device according to  claim 1 , further comprising a base stand for supporting said gas-jet driven rotary device above a floor.  
     
     
         11 . The gas-jet driven rotary device according to  claim 10 , further comprising a pair of sidewall panels forming a partial enclosure around two contiguous sides of four vertical sides defined by said gas-jet driven rotary device and said base supporting stand.  
     
     
         12 . The gas-jet driven rotary device according to  claim 1 , wherein said hub shaft is rotatably supported within said pair of walls by ball bearing assemblies.  
     
     
         13 . The gas-jet driven rotary device according to  claim 3 , wherein said ball bearing assemblies are purposely fitted to induce a wobble into said rotor when said rotor spins about the axis of said hub shaft.  
     
     
         14 . The gas-jet driven rotary device according to  claim 11 , wherein when said rotor is driven by the gas-jet, the exhausted jet ricochets off from said pair of sidewall panels during each revolution of the rotor.  
     
     
         15 . The gas-jet driven rotary device according to  claim 14 , wherein the ricochet induces a wobble into said rotor when said rotor spins about the axis of said hub shaft.  
     
     
         16 . A gas-jet driven rotary device for generating a field and process for exposing at least one of mechanical, electrical, and chemical system, device, or component to the field generated by said gas-jet driven rotary device: 
 the device comprising:    a rotor having a hub shaft and means adapted to support said rotor for rotation about the axis of said hub shaft; 
 said rotor comprising structure defining a fluid passageway extending from an inlet opening in a first end of said hub shaft, arcuately about said rotor, and to an outlet opening in a second end of said hub shaft;  
 said structure having a metallic band attached to said rotor;  
 said rotor being adapted to spin around the axis of its hub shaft when a pressurized gas is introduced into said fluid passageway through said inlet opening and exhausts therefrom through said outlet opening as a jet, the direction of spin being opposite to the direction of gas flow in the jet in reaction to the thrust of said jet; and  
 a housing for a portion of said rotor having a pair of walls in which opposite ends of said hub shaft are rotatably supported, said housing having a cylindrical wall interposed between and separating said pair of walls, said housing adapted to be hermetically sealed against gas leakage;  
 the process including:  
 exposing the at least one of mechanical, electrical, and chemical system or component to the field generated by the device.  
   
     
     
         17 . The process according to  claim 16 , wherein said outlet opening faces in a rotational direction about the axis of spin of said rotor.  
     
     
         18 . The process according to  claim 17 , that part of said structure extending arcuately about said rotor comprises tubular means.  
     
     
         19 . The process according to  claim 18  in which said tubular means comprises a rigid outer tube and a flexible inner tube, the latter being of smaller diameter than, and supported in generally concentrically spaced disposition within the former.  
     
     
         20 . The process according to  claim 19  in which said tubular means is partially supported in position by means of a plurality of spoke elements interconnecting it with said hub shaft, wherein at least one of said spoke elements has a hollow interior.  
     
     
         21 . The process according to  claim 16 , wherein the rotary device further comprises a base stand for supporting said gas-jet driven rotary device above a floor.  
     
     
         22 . The process according to  claim 21 , wherein the gas-jet driven rotary device and the base stand further comprising a pair of sidewall panels forming a partial enclosure around two contiguous sides of four vertical sides defined by said gas-jet driven rotary device and said base supporting stand.  
     
     
         23 . The process according to  claim 16 , wherein said hub shaft is rotatably supported within said pair of walls by ball bearing assemblies.  
     
     
         24 . The process according to  claim 23 , wherein said ball bearing assemblies are purposely fitted to induce a wobble into said rotor when said rotor spins about the axis of said hub shaft.  
     
     
         25 . The process according to  claim 22 , wherein when said rotor is driven by the gas-jet, the exhausted jet ricochets off from said pair of sidewall panels during each revolution of the rotor.  
     
     
         26 . The process according to  claim 25 , wherein the ricochet induces a wobble into said rotor when said rotor spins about the axis of said hub shaft.  
     
     
         27 - 31 . (canceled)  
     
     
         32 . A gas-jet driven device comprising: 
 a rotor comprising, 
 a hub adapted to rotate about a center axis;  
 a jacketed wheel concentrically surrounding said hub and connected to said hub by a jacketed radial section, and having a radially inclined arm attached to a bottom end of said hub, said wheel supported by a plurality of tubular radial spokes; and  
 a gas conduit having an inlet and exhaust outlet, said conduit routed through said hub, said spoke, and said jacketed wheel,  
   a housing adapted to support said hub in a vertical orientation about the center axis and impart a wobble upon said rotor, the housing further adapted to substantially enclose and support said hub and said jacketed wheel in a horizontal orientation;    wherein said rotor is driven about the center axis by flowing pressurized gas through said inlet such that a jet is formed at said exhaust outlet.    
     
     
         33 - 34 . (canceled)  
     
     
         35 . A gas-jet driven device comprising: 
 a rotor comprising, 
 a hub adapted to rotate about a center axis;  
   a jacketed wheel concentrically surrounding said hub and connected to said hub by a jacketed radial section, and having a radially inclined arm attached to a bottom end of said hub, said wheel supported by a plurality of tubular radial spokes; and 
 a gas conduit having an inlet and exhaust outlet, said conduit routed through said hub, said spoke, and said jacketed wheel,  
   a housing adapted to support said hub in a vertical orientation about the center axis and to substantially enclose and support said hub and said jacketed wheel in a horizontally orientation; and    a base stand having a plurality of vertical sides for supporting said rotor above a floor and a pair of sidewall panels forming a partial enclosure around two contiguous sides of said vertical sides,    wherein said rotor is driven about the center axis by flowing pressurized gas through said inlet such that a jet is formed at said exhaust outlet.    
     
     
         36 . The gas-jet driven device according to  claim 35 , wherein when said rotor is driven by the pressurized gas, the exhausted jet ricochets off from said pair of sidewall panels during each revolution inducing wobble into said rotor when said rotor spins about the center axis.

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