Claims
- 1. A process of making a stator for a helical gear expansible chamber device of the type having an elongated rotor with convex helically convoluted lobes, and an elongated stator having an elongated chamber for receiving said rotor, said chamber defining concave helically convoluted lobes, said chamber defining at least one more lobe than said rotor, said process comprising;
- forming a plurality of substantially identical metal disks, each of said disks defining in cross-section a rotor opening defining radially extending lobes corresponding to the size and shape of said rotor,
- placing the disks in aligned face-to-face stacked relationship with one another, with each disk rotated with respect to the next adjacent disks progressively along the length of the aligned disks in one direction of rotation to form the lobes of the disks into a concave helically convoluted chamber;
- inserting the stacked disks in a cylindrical housing, and connecting the disks to said housing with a shrink fit in substantially rigid relationship with respect to said housing.
- 2. The process of claim 1 and wherein the step of placing the disks in aligned face-to-face abutting relationship comprises mounting the disks with their openings positioned about a helically lobed mandrel of a breadth less than the openings of said disks, and passing the mandrel and disks through a swaging member to align the disks.
- 3. The process of claim 1 and wherein the step of forming the disks comprises forming the disks with perimeter notches, wherein the notches of the disks form a helical channel on the outer surfaces of the stacked disks.
- 4. The process of claim 3 and further including placing brazing material in the helical channels and heating the brazing material to its brazing temperature.
- 5. The process of claim 3 and wherein the step of forming the disks comprises die cutting metal sheet material into a disk shape.
- 6. The process of claim 3 and wherein the step of forming the disks comprises forming the disks with internally projecting lobes, and forming openings in said lobes, so that when the disks are aligned in a stack, the openings form helical channels through the stack.
- 7. A process of making a stator for a helical gear expansible chamber device of the type having an elongated rotor with convex helically convoluted lobes, and an elongated stator having an elongated chamber for receiving said rotor, said chamber defining concave helically convoluted lobes, said chamber defining at least one more lobe than said rotor, said process comprising;
- forming a plurality of substantially identical metal disks, each of said disks defining in cross-section an opening defining radially extending lobes corresponding to the size and shape of said stator,
- placing the disks in aligned face-to-face stacked relationship with one another, with each disk rotated with respect to the next adjacent disks progressively along the length of the aligned disks in one direction of rotation to form the lobes of the disks into a concave helically convoluted chamber;
- inserting the stacked disks in a cylindrical housing, and
- metal brazing the disks to adjacent disks and to said housing.
- 8. The process of claim 7 and
- wherein the step of forming a plurality of disks comprises forming notches in the perimeters of the disks,
- wherein the step of placing the disks in stacked relationship includes arranging the notches of the disks in a helical channel,
- wherein the step of metal brazing the disks comprises placing brazing metal in the helical channels of the stacked disks and heating the brazing metal to a temperature sufficient to melt the brazing metal.
- 9. A process of making a stator for a helical gear expansible chamber device of the type having an elongated rotor with convex helically convoluted lobes, and an elongated stator having an elongated chamber for receiving said rotor, said chamber defining concave helically convoluted lobes, said process comprising:
- forming a plurality of substantially identical disks, each of said disks defining a centrally positioned symmetrical rotor opening with lobes corresponding to the size and shape of the size and shape of said rotor, and a circular perimeter;
- placing the disks in a stacked relationship with respect to one another about a mandrel;
- passing the disks and the mandrel through a swaging tool to urge the circular perimeters of the disks in alignment with one another;
- inserting the disks into a housing; and
- bonding the disks to one another and to the housing.
CROSS REFERENCE
The present application is a division of U.S. patent application Ser. No. 08/638,889, filed on Apr. 25, 1996 abandoned, which is in turn a continuation-in-part of Provisional Patent Application Ser. No. 60/003,422, filed Sep. 8, 1995.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2408186 |
Aug 1975 |
DEX |
Divisions (1)
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Number |
Date |
Country |
Parent |
638889 |
Apr 1996 |
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