Claims
- 1. A pressure intensifier for a fluid medium and comprising:
- a stationary low pressure cylinder block portion defining two ends;
- stationary high pressure cylinder block portions located at respective ends of said low pressure cylinder block;
- at least three piston assemblies, said piston assemblies being disposed along mutually parallel axes equiangularly disposed with respect to a central axis of said intensifier and radially equidistant therefrom, each said piston assembly comprising:
- low pressure cylinder means in said low pressure cylinder block portion;
- a pair of axially aligned and opposed high pressure cylinders coaxially disposed with said low pressure cylinder means in said high pressure cylinder block portions;
- low pressure piston means disposed within said low pressure cylinder means for axial movement therein; and,
- a pair of high pressure pistons disposed within respective ones of said high pressure cylinders for axial movement therein, each said pair of high pressure pistons being linked to said low pressure piston means for conjoint axial movement therewith;
- low pressure fluid supply means for the supply of low pressure fluid to said low pressure cylinder means of each said piston assembly;
- low pressure fluid discharge means for the discharge of low pressure fluid from said low pressure cylinder means of each said piston assembly;
- movable low pressure valve means in said low pressure cylinder block portion and disposed along a central axis thereof within said mutually parallel axes of said piston assemblies, and being movable within said low pressure block portion, said valve means being coupled to said low pressure cylinder means of each said piston assembly and adapted to control the supply of low pressure fluid to said low pressure cylinder means of each said piston assembly from said low pressure fluid supply means and to control the discharge of low pressure fluid from said low pressure cylinder means of each said piston assembly to said low pressure fluid discharge means;
- valve drive transmission means operatively coupled to each of said piston assemblies between said two high pressure pistons of each said piston assembly, and disposed within said mutually parallel axes of said piston assemblies whereby movement of said piston assemblies in response to supply of low pressure fluid will cause movement of said low pressure valve means, and simultaneously synchronize movement of said piston assemblies;
- high pressure fluid supply means for supplying fluid to said high pressure cylinders; and,
- high pressure fluid collector means for receiving high pressure fluid from said high pressure cylinders.
- 2. A pressure intensifier as claimed in claim 1 and in which said low pressure valve means comprises a central rotary valve shaft, a rotary valve on said shaft and operable to distribute fluid to respective low pressure cylinder means as it rotates, and a rotary drive device on said valve shaft, in driving engagement with said low and high pressure piston assemblies.
- 3. A pressure intensifier as claimed in claim 1 and which includes a fluid transfer passageway communicating between said low pressure fluid supply means and said high pressure fluid supply means, a plurality of high pressure fluid distribution passageways communicating from said high pressure fluid supply means to a respective ones of said high pressure cylinders for supplying fluid thereto, and one-way flow valve means in said high pressure fluid distribution passageways.
- 4. A pressure intensifier as claimed in claim 1 in which each said piston assembly comprises a said low pressure piston means and cylinder having a predetermined first diameter, and said high pressure pistons and cylinders each having a predetermined diameter less than the diameter of said low pressure piston and cylinder means.
- 5. A pressure intensifier as claimed in claim 4 and in which said valve drive transmission means comprises a swash plate mechanism.
- 6. A pressure intensifier as claimed in claim 5, in which said swash plate mechanism comprises a swash plate mounted on an axial shaft of said intensifier and in which said low pressure valve means is mounted on said axial shaft and adapted to interconnect for fluid flow therebetween a fluid supply port and a fluid discharge port sequentially and alternately with a fluid transfer port for each of said low pressure cylinder means.
- 7. A pressure intensifier as claimed in claim 1 and in which said high pressure fluid collector means and said high pressure cylinders comprise a closed circuit for each said piston assembly including pressure reaction means for reaction to high pressure therein.
- 8. A pressure intensifier as claimed in claim 7 and in which said pressure reaction means comprises a bellows means forming a fluid tight barrier and disposed in a pump chamber for pumping a second fluid through said pump chamber.
- 9. A pressure intensifier as claimed in claim 8 and which comprises a passage interconnecting said low pressure fluid discharge means and said closed circuit and including a replenishment flow control valve for replenishing fluid in said closed circuit for fluid losses due to leakage.
- 10. A pressure intensifier as claimed in claim 9 and in which said bellows means is secured to a movable piston head carrying an actuating piston rod connected to said replenishment flow control valve for actuating that valve.
- 11. A pressure intensifier for a fluid medium and comprising:
- at least three piston assemblies, said piston assemblies being disposed along mutually parallel axes equiangularly disposed with respect to a central axis of said intensifier and radially equidistant therefrom, each said piston assembly comprising:
- a pair of low pressure cylinders;
- a pair of axially aligned and opposed high pressure cylinders coaxially disposed with said low pressure cylinders;
- a pair of low pressure pistons disposed within said low pressure cylinders for axial movement therein; and,
- a pair of high pressure pistons disposed within respective ones of said high ressure cylinders for axial movement therein, each said pair of high pressure pistons being connected to said low pressure pistons for conjoint axial movement therewith by linkage means for transmitting axial movement therebetween;
- low pressure fluid supply means for the supply of low pressure fluid to said low pressure cylinders of each said piston assembly;
- low pressure fluid discharge means for the discharge of low pressure fluid from said low pressure cylinders of each said piston assembly;
- low pressure valve means coupled to said low pressure cylinders of each said piston assembly and adapted to control the supply of low pressure fluid to said low pressure cylinders of each said piston assembly from said low pressure fluid supply means and to control the discharge of low pressure fluid from said low pressure cylinders of each said piston assembly to said low pressure fluid discharge means;
- valve drive transmission means operatively coupled to each of said piston assemblies whereby movement of said piston assemblies in response to supply of low pressure fluid will cause movement of said low pressure valve means, and simultaneously synchronize movement of said piston assemblies;
- high pressure fluid supply means for supplying fluid to said high pressure cylinders; and,
- high pressure fluid collector means for receiving high pressure fluid from said high pressure cylinders.
- 12. A pressure intensifier as claimed in claim 11, in which, in each said piston assembly, said high pressure cylinders and said low pressure cylinders are interconnected and in which said low pressure pistons are connected to said low pressure valve means by said valve drive transmission means so that, in each said piston assembly, axial movement of said low pressure piston of one of said first and second pairs of cylinders and pistons is effective through a respective one of said linkage means to cause axial movement of said high pressure piston of the other of said first and second pair of cylinders and pistons, and vice-versa.
- 13. A pressure intensifier for a fluid medium and comprising:
- at least three piston assemblies, said piston assemblies being disposed along mutually parallel axes equiangularly disposed with respect to a central axis of said intensifier and radially equidistant therefrom, each said piston assembly comprising:
- at least one low pressure cylinder;
- at least one axially aligned and opposed high pressure cylinder coaxially disposed with said low pressure cylinder;
- a low pressure piston disposed within said low pressure cylinder for axial movement therein; and
- a high pressure piston disposed within said high pressure cylinder for axial movement therein, said high pressure piston being connected to said low pressure piston for conjoint axial movement therewith;
- low pressure fluid supply means for the supply of low pressure fluid to said low pressure cylinder of each said piston assembly;
- low pressure fluid discharge means for the discharge of low pressure fluid from said low pressure cylinder of each said piston assembly;
- a swash plate operatively interconnecting said pistons of said piston assemblies and comprising a ball connected to said swash plate and movably supported in a fixed cup formed in said intensifier;
- low pressure valve means comprising a low pressure fluid supply passage, and a plurality of low pressure transfer passages, said passages opening as ports in said fixed cup and said transfer passages communicating with respective ones of said low pressure cylinders, and recesses in the surface of said ball for permitting fluid transfer between respective pairs of said ports in said cup for controling the supply of low pressure fluid to said low pressure cylinder of each said piston assembly from said low pressure fluid supply means and the discharge of low pressure fluid from said low pressure cylinder of each said piston assembly to said low pressure fluid discharge means;
- high pressure fluid supply means for supplying fluid to said high pressure cylinders; and
- high pressure fluid collector means for receiving high pressure fluid from said high pressure cylinders.
Parent Case Info
This application is a continuation-in-part of U.S. patent application Ser. No. 829,919 now abandoned in the name of Viljo K. Valavaara assigned to 685562 Ontario Ltd., as filed Feb. 18, 1986 and entitled "ROTARY PRESSURE INTENSIFIER".
US Referenced Citations (17)
Foreign Referenced Citations (2)
Number |
Date |
Country |
3027878 |
Feb 1982 |
DEX |
28076 |
Feb 1984 |
JPX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
829919 |
Feb 1986 |
|