Plunger or floating piston pump

4572056
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Inventors

Funke, Herbert

Application #

669443

Filed

Nov-8-1984

Published

Feb-25-1986

Current US Class

092/168
092/170.1
092/86
092/86.5
417/568

International Classes

F01B 031/10; F16J 015/18; F04B 039/02

Field of Search

417/568 417/521 92/170 92/168 92/86 92/86.5

Assignee

Saphirwerk Industrieprodukte AG (Nidau, CH)

US Patent References

4173437   Dual-piston recipro...
4197287   Method and appar...
4389163   Pressure booster sy...

Referenced by:

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Citation

Cite This Patent

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Abstract
The present invention relates to a plunger or floating piston pump which is particularly adapted for use as a small-size metering pump in performing chemical analyses. In a pump head casing there is disposed a plunger guide bushing made of a ceramic material in which a plunger made of sapphire is slidably guided permanently with extreme accuracy in relation to the bore in an annular seal, said annular seal itself cooperating with said plunger in such a way that there is no clearance between the plunger and said plunger guide bushing. In a modification of the invention, said displacement chamber is formed in a pump head liner which is mounted in said pump head casing. The pump head liner is made of a chemically inert material, preferably of a ceramic material.
 
Claims
What is claimed is:

1. In a pump having a pump head casing with a bore, the improvement comprising:

a pump head liner positioned in said bore end having a displacement chamber open at one end and an annular groove at said one end;

a plunger guide bushing of ceramic material and having a guide bore and fitted in said casing bore in axial alignment with said pump head liner and adjacent to said one end of the pump head liner;

a resilient annular seal positioned in said annular groove; and

a plunger of sapphire extending through said guide bore, said annular seal and into said displacement chamber through said open end thereof, the diameter of the plunger inner end in said displacement chamber being less than that of the displacement chamber to avoid contact therebetween, the plunger defining an outer end portion provided with means for transmitting axial forces only to the plunger in effecting axial reciprocation thereof whereby said plunger is guided for axial movement solely by the plunger guide bushing free of substantially all transverse forces, thereby providing accurate centered reciprocation of the plunger with extremely accurate play-free cooperation between the long-wearing, substantially equally hard ceramic and sapphire surfaces avoiding radial deflection of the plunger and flexing and wear of the annular seal; and said plunger guide bushing having means for flushing the guide bore comprising a peripheral internal groove and a transverse through bore crossing said groove in a radial direction adjacent the end of the plunger guide bushing facing said annular seal.



Description
TECHNICAL FIELD OF THE INVENTION

The present invention relates to a plunger or floating piston pump comprising a pump head casing, a displacement chamber enclosed by said head casing, a rod-shaped floating piston made of sapphire having a diameter smaller than the diameter of said displacement chamber, an elastic annular seal disposed at the open end of said displacement chamber with said floating piston extending through said seal and a piston guide bushing fixedly mounted in said pump head liner on its side facing away from said displacement chamber.

BRIEF DESCRIPTION OF THE PRIOR ART

In a prior-art plunger pump, the pump plunger is not guided by means of the walls of the displacement chamber, it being, therefore, necessary to provide for the plunger to be guided at least by its annular seal in the manner described, for example, in U.S. Pat. No. 3,810,716, according to which said annular seal is made of an elastomeric material. However, should the plunger be subject to radial deflection in a way which is unavoidable in practice due to manufacturing tolerances, this means that the annular seal is constantly subjected to a kneading effect. This results in the material of the annular seal to be subject to fatigue and wear with the result that leaks may develop.
 
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